1 /*- 2 * Copyright (c) 2003-2009 Silicon Graphics International Corp. 3 * Copyright (c) 2012 The FreeBSD Foundation 4 * Copyright (c) 2015 Alexander Motin <mav@FreeBSD.org> 5 * All rights reserved. 6 * 7 * Portions of this software were developed by Edward Tomasz Napierala 8 * under sponsorship from the FreeBSD Foundation. 9 * 10 * Redistribution and use in source and binary forms, with or without 11 * modification, are permitted provided that the following conditions 12 * are met: 13 * 1. Redistributions of source code must retain the above copyright 14 * notice, this list of conditions, and the following disclaimer, 15 * without modification. 16 * 2. Redistributions in binary form must reproduce at minimum a disclaimer 17 * substantially similar to the "NO WARRANTY" disclaimer below 18 * ("Disclaimer") and any redistribution must be conditioned upon 19 * including a substantially similar Disclaimer requirement for further 20 * binary redistribution. 21 * 22 * NO WARRANTY 23 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS 24 * "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT 25 * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTIBILITY AND FITNESS FOR 26 * A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT 27 * HOLDERS OR CONTRIBUTORS BE LIABLE FOR SPECIAL, EXEMPLARY, OR CONSEQUENTIAL 28 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS 29 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) 30 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, 31 * STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING 32 * IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE 33 * POSSIBILITY OF SUCH DAMAGES. 34 * 35 * $Id$ 36 */ 37 /* 38 * CAM Target Layer, a SCSI device emulation subsystem. 39 * 40 * Author: Ken Merry <ken@FreeBSD.org> 41 */ 42 43 #define _CTL_C 44 45 #include <sys/cdefs.h> 46 __FBSDID("$FreeBSD$"); 47 48 #include <sys/param.h> 49 #include <sys/systm.h> 50 #include <sys/ctype.h> 51 #include <sys/kernel.h> 52 #include <sys/types.h> 53 #include <sys/kthread.h> 54 #include <sys/bio.h> 55 #include <sys/fcntl.h> 56 #include <sys/lock.h> 57 #include <sys/module.h> 58 #include <sys/mutex.h> 59 #include <sys/condvar.h> 60 #include <sys/malloc.h> 61 #include <sys/conf.h> 62 #include <sys/ioccom.h> 63 #include <sys/queue.h> 64 #include <sys/sbuf.h> 65 #include <sys/smp.h> 66 #include <sys/endian.h> 67 #include <sys/sysctl.h> 68 #include <vm/uma.h> 69 70 #include <cam/cam.h> 71 #include <cam/scsi/scsi_all.h> 72 #include <cam/scsi/scsi_cd.h> 73 #include <cam/scsi/scsi_da.h> 74 #include <cam/ctl/ctl_io.h> 75 #include <cam/ctl/ctl.h> 76 #include <cam/ctl/ctl_frontend.h> 77 #include <cam/ctl/ctl_util.h> 78 #include <cam/ctl/ctl_backend.h> 79 #include <cam/ctl/ctl_ioctl.h> 80 #include <cam/ctl/ctl_ha.h> 81 #include <cam/ctl/ctl_private.h> 82 #include <cam/ctl/ctl_debug.h> 83 #include <cam/ctl/ctl_scsi_all.h> 84 #include <cam/ctl/ctl_error.h> 85 86 struct ctl_softc *control_softc = NULL; 87 88 /* 89 * Template mode pages. 90 */ 91 92 /* 93 * Note that these are default values only. The actual values will be 94 * filled in when the user does a mode sense. 95 */ 96 const static struct copan_debugconf_subpage debugconf_page_default = { 97 DBGCNF_PAGE_CODE | SMPH_SPF, /* page_code */ 98 DBGCNF_SUBPAGE_CODE, /* subpage */ 99 {(sizeof(struct copan_debugconf_subpage) - 4) >> 8, 100 (sizeof(struct copan_debugconf_subpage) - 4) >> 0}, /* page_length */ 101 DBGCNF_VERSION, /* page_version */ 102 {CTL_TIME_IO_DEFAULT_SECS>>8, 103 CTL_TIME_IO_DEFAULT_SECS>>0}, /* ctl_time_io_secs */ 104 }; 105 106 const static struct copan_debugconf_subpage debugconf_page_changeable = { 107 DBGCNF_PAGE_CODE | SMPH_SPF, /* page_code */ 108 DBGCNF_SUBPAGE_CODE, /* subpage */ 109 {(sizeof(struct copan_debugconf_subpage) - 4) >> 8, 110 (sizeof(struct copan_debugconf_subpage) - 4) >> 0}, /* page_length */ 111 0, /* page_version */ 112 {0xff,0xff}, /* ctl_time_io_secs */ 113 }; 114 115 const static struct scsi_da_rw_recovery_page rw_er_page_default = { 116 /*page_code*/SMS_RW_ERROR_RECOVERY_PAGE, 117 /*page_length*/sizeof(struct scsi_da_rw_recovery_page) - 2, 118 /*byte3*/SMS_RWER_AWRE|SMS_RWER_ARRE, 119 /*read_retry_count*/0, 120 /*correction_span*/0, 121 /*head_offset_count*/0, 122 /*data_strobe_offset_cnt*/0, 123 /*byte8*/SMS_RWER_LBPERE, 124 /*write_retry_count*/0, 125 /*reserved2*/0, 126 /*recovery_time_limit*/{0, 0}, 127 }; 128 129 const static struct scsi_da_rw_recovery_page rw_er_page_changeable = { 130 /*page_code*/SMS_RW_ERROR_RECOVERY_PAGE, 131 /*page_length*/sizeof(struct scsi_da_rw_recovery_page) - 2, 132 /*byte3*/0, 133 /*read_retry_count*/0, 134 /*correction_span*/0, 135 /*head_offset_count*/0, 136 /*data_strobe_offset_cnt*/0, 137 /*byte8*/0, 138 /*write_retry_count*/0, 139 /*reserved2*/0, 140 /*recovery_time_limit*/{0, 0}, 141 }; 142 143 const static struct scsi_format_page format_page_default = { 144 /*page_code*/SMS_FORMAT_DEVICE_PAGE, 145 /*page_length*/sizeof(struct scsi_format_page) - 2, 146 /*tracks_per_zone*/ {0, 0}, 147 /*alt_sectors_per_zone*/ {0, 0}, 148 /*alt_tracks_per_zone*/ {0, 0}, 149 /*alt_tracks_per_lun*/ {0, 0}, 150 /*sectors_per_track*/ {(CTL_DEFAULT_SECTORS_PER_TRACK >> 8) & 0xff, 151 CTL_DEFAULT_SECTORS_PER_TRACK & 0xff}, 152 /*bytes_per_sector*/ {0, 0}, 153 /*interleave*/ {0, 0}, 154 /*track_skew*/ {0, 0}, 155 /*cylinder_skew*/ {0, 0}, 156 /*flags*/ SFP_HSEC, 157 /*reserved*/ {0, 0, 0} 158 }; 159 160 const static struct scsi_format_page format_page_changeable = { 161 /*page_code*/SMS_FORMAT_DEVICE_PAGE, 162 /*page_length*/sizeof(struct scsi_format_page) - 2, 163 /*tracks_per_zone*/ {0, 0}, 164 /*alt_sectors_per_zone*/ {0, 0}, 165 /*alt_tracks_per_zone*/ {0, 0}, 166 /*alt_tracks_per_lun*/ {0, 0}, 167 /*sectors_per_track*/ {0, 0}, 168 /*bytes_per_sector*/ {0, 0}, 169 /*interleave*/ {0, 0}, 170 /*track_skew*/ {0, 0}, 171 /*cylinder_skew*/ {0, 0}, 172 /*flags*/ 0, 173 /*reserved*/ {0, 0, 0} 174 }; 175 176 const static struct scsi_rigid_disk_page rigid_disk_page_default = { 177 /*page_code*/SMS_RIGID_DISK_PAGE, 178 /*page_length*/sizeof(struct scsi_rigid_disk_page) - 2, 179 /*cylinders*/ {0, 0, 0}, 180 /*heads*/ CTL_DEFAULT_HEADS, 181 /*start_write_precomp*/ {0, 0, 0}, 182 /*start_reduced_current*/ {0, 0, 0}, 183 /*step_rate*/ {0, 0}, 184 /*landing_zone_cylinder*/ {0, 0, 0}, 185 /*rpl*/ SRDP_RPL_DISABLED, 186 /*rotational_offset*/ 0, 187 /*reserved1*/ 0, 188 /*rotation_rate*/ {(CTL_DEFAULT_ROTATION_RATE >> 8) & 0xff, 189 CTL_DEFAULT_ROTATION_RATE & 0xff}, 190 /*reserved2*/ {0, 0} 191 }; 192 193 const static struct scsi_rigid_disk_page rigid_disk_page_changeable = { 194 /*page_code*/SMS_RIGID_DISK_PAGE, 195 /*page_length*/sizeof(struct scsi_rigid_disk_page) - 2, 196 /*cylinders*/ {0, 0, 0}, 197 /*heads*/ 0, 198 /*start_write_precomp*/ {0, 0, 0}, 199 /*start_reduced_current*/ {0, 0, 0}, 200 /*step_rate*/ {0, 0}, 201 /*landing_zone_cylinder*/ {0, 0, 0}, 202 /*rpl*/ 0, 203 /*rotational_offset*/ 0, 204 /*reserved1*/ 0, 205 /*rotation_rate*/ {0, 0}, 206 /*reserved2*/ {0, 0} 207 }; 208 209 const static struct scsi_caching_page caching_page_default = { 210 /*page_code*/SMS_CACHING_PAGE, 211 /*page_length*/sizeof(struct scsi_caching_page) - 2, 212 /*flags1*/ SCP_DISC | SCP_WCE, 213 /*ret_priority*/ 0, 214 /*disable_pf_transfer_len*/ {0xff, 0xff}, 215 /*min_prefetch*/ {0, 0}, 216 /*max_prefetch*/ {0xff, 0xff}, 217 /*max_pf_ceiling*/ {0xff, 0xff}, 218 /*flags2*/ 0, 219 /*cache_segments*/ 0, 220 /*cache_seg_size*/ {0, 0}, 221 /*reserved*/ 0, 222 /*non_cache_seg_size*/ {0, 0, 0} 223 }; 224 225 const static struct scsi_caching_page caching_page_changeable = { 226 /*page_code*/SMS_CACHING_PAGE, 227 /*page_length*/sizeof(struct scsi_caching_page) - 2, 228 /*flags1*/ SCP_WCE | SCP_RCD, 229 /*ret_priority*/ 0, 230 /*disable_pf_transfer_len*/ {0, 0}, 231 /*min_prefetch*/ {0, 0}, 232 /*max_prefetch*/ {0, 0}, 233 /*max_pf_ceiling*/ {0, 0}, 234 /*flags2*/ 0, 235 /*cache_segments*/ 0, 236 /*cache_seg_size*/ {0, 0}, 237 /*reserved*/ 0, 238 /*non_cache_seg_size*/ {0, 0, 0} 239 }; 240 241 const static struct scsi_control_page control_page_default = { 242 /*page_code*/SMS_CONTROL_MODE_PAGE, 243 /*page_length*/sizeof(struct scsi_control_page) - 2, 244 /*rlec*/0, 245 /*queue_flags*/SCP_QUEUE_ALG_RESTRICTED, 246 /*eca_and_aen*/0, 247 /*flags4*/SCP_TAS, 248 /*aen_holdoff_period*/{0, 0}, 249 /*busy_timeout_period*/{0, 0}, 250 /*extended_selftest_completion_time*/{0, 0} 251 }; 252 253 const static struct scsi_control_page control_page_changeable = { 254 /*page_code*/SMS_CONTROL_MODE_PAGE, 255 /*page_length*/sizeof(struct scsi_control_page) - 2, 256 /*rlec*/SCP_DSENSE, 257 /*queue_flags*/SCP_QUEUE_ALG_MASK, 258 /*eca_and_aen*/SCP_SWP, 259 /*flags4*/0, 260 /*aen_holdoff_period*/{0, 0}, 261 /*busy_timeout_period*/{0, 0}, 262 /*extended_selftest_completion_time*/{0, 0} 263 }; 264 265 #define CTL_CEM_LEN (sizeof(struct scsi_control_ext_page) - 4) 266 267 const static struct scsi_control_ext_page control_ext_page_default = { 268 /*page_code*/SMS_CONTROL_MODE_PAGE | SMPH_SPF, 269 /*subpage_code*/0x01, 270 /*page_length*/{CTL_CEM_LEN >> 8, CTL_CEM_LEN}, 271 /*flags*/0, 272 /*prio*/0, 273 /*max_sense*/0 274 }; 275 276 const static struct scsi_control_ext_page control_ext_page_changeable = { 277 /*page_code*/SMS_CONTROL_MODE_PAGE | SMPH_SPF, 278 /*subpage_code*/0x01, 279 /*page_length*/{CTL_CEM_LEN >> 8, CTL_CEM_LEN}, 280 /*flags*/0, 281 /*prio*/0, 282 /*max_sense*/0 283 }; 284 285 const static struct scsi_info_exceptions_page ie_page_default = { 286 /*page_code*/SMS_INFO_EXCEPTIONS_PAGE, 287 /*page_length*/sizeof(struct scsi_info_exceptions_page) - 2, 288 /*info_flags*/SIEP_FLAGS_DEXCPT, 289 /*mrie*/0, 290 /*interval_timer*/{0, 0, 0, 0}, 291 /*report_count*/{0, 0, 0, 0} 292 }; 293 294 const static struct scsi_info_exceptions_page ie_page_changeable = { 295 /*page_code*/SMS_INFO_EXCEPTIONS_PAGE, 296 /*page_length*/sizeof(struct scsi_info_exceptions_page) - 2, 297 /*info_flags*/0, 298 /*mrie*/0, 299 /*interval_timer*/{0, 0, 0, 0}, 300 /*report_count*/{0, 0, 0, 0} 301 }; 302 303 #define CTL_LBPM_LEN (sizeof(struct ctl_logical_block_provisioning_page) - 4) 304 305 const static struct ctl_logical_block_provisioning_page lbp_page_default = {{ 306 /*page_code*/SMS_INFO_EXCEPTIONS_PAGE | SMPH_SPF, 307 /*subpage_code*/0x02, 308 /*page_length*/{CTL_LBPM_LEN >> 8, CTL_LBPM_LEN}, 309 /*flags*/0, 310 /*reserved*/{0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0}, 311 /*descr*/{}}, 312 {{/*flags*/0, 313 /*resource*/0x01, 314 /*reserved*/{0, 0}, 315 /*count*/{0, 0, 0, 0}}, 316 {/*flags*/0, 317 /*resource*/0x02, 318 /*reserved*/{0, 0}, 319 /*count*/{0, 0, 0, 0}}, 320 {/*flags*/0, 321 /*resource*/0xf1, 322 /*reserved*/{0, 0}, 323 /*count*/{0, 0, 0, 0}}, 324 {/*flags*/0, 325 /*resource*/0xf2, 326 /*reserved*/{0, 0}, 327 /*count*/{0, 0, 0, 0}} 328 } 329 }; 330 331 const static struct ctl_logical_block_provisioning_page lbp_page_changeable = {{ 332 /*page_code*/SMS_INFO_EXCEPTIONS_PAGE | SMPH_SPF, 333 /*subpage_code*/0x02, 334 /*page_length*/{CTL_LBPM_LEN >> 8, CTL_LBPM_LEN}, 335 /*flags*/0, 336 /*reserved*/{0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0}, 337 /*descr*/{}}, 338 {{/*flags*/0, 339 /*resource*/0, 340 /*reserved*/{0, 0}, 341 /*count*/{0, 0, 0, 0}}, 342 {/*flags*/0, 343 /*resource*/0, 344 /*reserved*/{0, 0}, 345 /*count*/{0, 0, 0, 0}}, 346 {/*flags*/0, 347 /*resource*/0, 348 /*reserved*/{0, 0}, 349 /*count*/{0, 0, 0, 0}}, 350 {/*flags*/0, 351 /*resource*/0, 352 /*reserved*/{0, 0}, 353 /*count*/{0, 0, 0, 0}} 354 } 355 }; 356 357 const static struct scsi_cddvd_capabilities_page cddvd_page_default = { 358 /*page_code*/SMS_CDDVD_CAPS_PAGE, 359 /*page_length*/sizeof(struct scsi_cddvd_capabilities_page) - 2, 360 /*caps1*/0x3f, 361 /*caps2*/0x00, 362 /*caps3*/0xf0, 363 /*caps4*/0x00, 364 /*caps5*/0x29, 365 /*caps6*/0x00, 366 /*obsolete*/{0, 0}, 367 /*nvol_levels*/{0, 0}, 368 /*buffer_size*/{8, 0}, 369 /*obsolete2*/{0, 0}, 370 /*reserved*/0, 371 /*digital*/0, 372 /*obsolete3*/0, 373 /*copy_management*/0, 374 /*reserved2*/0, 375 /*rotation_control*/0, 376 /*cur_write_speed*/0, 377 /*num_speed_descr*/0, 378 }; 379 380 const static struct scsi_cddvd_capabilities_page cddvd_page_changeable = { 381 /*page_code*/SMS_CDDVD_CAPS_PAGE, 382 /*page_length*/sizeof(struct scsi_cddvd_capabilities_page) - 2, 383 /*caps1*/0, 384 /*caps2*/0, 385 /*caps3*/0, 386 /*caps4*/0, 387 /*caps5*/0, 388 /*caps6*/0, 389 /*obsolete*/{0, 0}, 390 /*nvol_levels*/{0, 0}, 391 /*buffer_size*/{0, 0}, 392 /*obsolete2*/{0, 0}, 393 /*reserved*/0, 394 /*digital*/0, 395 /*obsolete3*/0, 396 /*copy_management*/0, 397 /*reserved2*/0, 398 /*rotation_control*/0, 399 /*cur_write_speed*/0, 400 /*num_speed_descr*/0, 401 }; 402 403 SYSCTL_NODE(_kern_cam, OID_AUTO, ctl, CTLFLAG_RD, 0, "CAM Target Layer"); 404 static int worker_threads = -1; 405 SYSCTL_INT(_kern_cam_ctl, OID_AUTO, worker_threads, CTLFLAG_RDTUN, 406 &worker_threads, 1, "Number of worker threads"); 407 static int ctl_debug = CTL_DEBUG_NONE; 408 SYSCTL_INT(_kern_cam_ctl, OID_AUTO, debug, CTLFLAG_RWTUN, 409 &ctl_debug, 0, "Enabled debug flags"); 410 411 /* 412 * Supported pages (0x00), Serial number (0x80), Device ID (0x83), 413 * Extended INQUIRY Data (0x86), Mode Page Policy (0x87), 414 * SCSI Ports (0x88), Third-party Copy (0x8F), Block limits (0xB0), 415 * Block Device Characteristics (0xB1) and Logical Block Provisioning (0xB2) 416 */ 417 #define SCSI_EVPD_NUM_SUPPORTED_PAGES 10 418 419 static void ctl_isc_event_handler(ctl_ha_channel chanel, ctl_ha_event event, 420 int param); 421 static void ctl_copy_sense_data(union ctl_ha_msg *src, union ctl_io *dest); 422 static void ctl_copy_sense_data_back(union ctl_io *src, union ctl_ha_msg *dest); 423 static int ctl_init(void); 424 void ctl_shutdown(void); 425 static int ctl_open(struct cdev *dev, int flags, int fmt, struct thread *td); 426 static int ctl_close(struct cdev *dev, int flags, int fmt, struct thread *td); 427 static int ctl_serialize_other_sc_cmd(struct ctl_scsiio *ctsio); 428 static void ctl_ioctl_fill_ooa(struct ctl_lun *lun, uint32_t *cur_fill_num, 429 struct ctl_ooa *ooa_hdr, 430 struct ctl_ooa_entry *kern_entries); 431 static int ctl_ioctl(struct cdev *dev, u_long cmd, caddr_t addr, int flag, 432 struct thread *td); 433 static int ctl_alloc_lun(struct ctl_softc *ctl_softc, struct ctl_lun *lun, 434 struct ctl_be_lun *be_lun); 435 static int ctl_free_lun(struct ctl_lun *lun); 436 static void ctl_create_lun(struct ctl_be_lun *be_lun); 437 static struct ctl_port * ctl_io_port(struct ctl_io_hdr *io_hdr); 438 439 static int ctl_do_mode_select(union ctl_io *io); 440 static int ctl_pro_preempt(struct ctl_softc *softc, struct ctl_lun *lun, 441 uint64_t res_key, uint64_t sa_res_key, 442 uint8_t type, uint32_t residx, 443 struct ctl_scsiio *ctsio, 444 struct scsi_per_res_out *cdb, 445 struct scsi_per_res_out_parms* param); 446 static void ctl_pro_preempt_other(struct ctl_lun *lun, 447 union ctl_ha_msg *msg); 448 static void ctl_hndl_per_res_out_on_other_sc(union ctl_ha_msg *msg); 449 static int ctl_inquiry_evpd_supported(struct ctl_scsiio *ctsio, int alloc_len); 450 static int ctl_inquiry_evpd_serial(struct ctl_scsiio *ctsio, int alloc_len); 451 static int ctl_inquiry_evpd_devid(struct ctl_scsiio *ctsio, int alloc_len); 452 static int ctl_inquiry_evpd_eid(struct ctl_scsiio *ctsio, int alloc_len); 453 static int ctl_inquiry_evpd_mpp(struct ctl_scsiio *ctsio, int alloc_len); 454 static int ctl_inquiry_evpd_scsi_ports(struct ctl_scsiio *ctsio, 455 int alloc_len); 456 static int ctl_inquiry_evpd_block_limits(struct ctl_scsiio *ctsio, 457 int alloc_len); 458 static int ctl_inquiry_evpd_bdc(struct ctl_scsiio *ctsio, int alloc_len); 459 static int ctl_inquiry_evpd_lbp(struct ctl_scsiio *ctsio, int alloc_len); 460 static int ctl_inquiry_evpd(struct ctl_scsiio *ctsio); 461 static int ctl_inquiry_std(struct ctl_scsiio *ctsio); 462 static int ctl_get_lba_len(union ctl_io *io, uint64_t *lba, uint64_t *len); 463 static ctl_action ctl_extent_check(union ctl_io *io1, union ctl_io *io2, 464 bool seq); 465 static ctl_action ctl_extent_check_seq(union ctl_io *io1, union ctl_io *io2); 466 static ctl_action ctl_check_for_blockage(struct ctl_lun *lun, 467 union ctl_io *pending_io, union ctl_io *ooa_io); 468 static ctl_action ctl_check_ooa(struct ctl_lun *lun, union ctl_io *pending_io, 469 union ctl_io *starting_io); 470 static int ctl_check_blocked(struct ctl_lun *lun); 471 static int ctl_scsiio_lun_check(struct ctl_lun *lun, 472 const struct ctl_cmd_entry *entry, 473 struct ctl_scsiio *ctsio); 474 static void ctl_failover_lun(union ctl_io *io); 475 static int ctl_scsiio_precheck(struct ctl_softc *ctl_softc, 476 struct ctl_scsiio *ctsio); 477 static int ctl_scsiio(struct ctl_scsiio *ctsio); 478 479 static int ctl_bus_reset(struct ctl_softc *ctl_softc, union ctl_io *io); 480 static int ctl_target_reset(struct ctl_softc *ctl_softc, union ctl_io *io, 481 ctl_ua_type ua_type); 482 static int ctl_do_lun_reset(struct ctl_lun *lun, union ctl_io *io, 483 ctl_ua_type ua_type); 484 static int ctl_lun_reset(struct ctl_softc *ctl_softc, union ctl_io *io); 485 static int ctl_abort_task(union ctl_io *io); 486 static int ctl_abort_task_set(union ctl_io *io); 487 static int ctl_query_task(union ctl_io *io, int task_set); 488 static int ctl_i_t_nexus_reset(union ctl_io *io); 489 static int ctl_query_async_event(union ctl_io *io); 490 static void ctl_run_task(union ctl_io *io); 491 #ifdef CTL_IO_DELAY 492 static void ctl_datamove_timer_wakeup(void *arg); 493 static void ctl_done_timer_wakeup(void *arg); 494 #endif /* CTL_IO_DELAY */ 495 496 static void ctl_send_datamove_done(union ctl_io *io, int have_lock); 497 static void ctl_datamove_remote_write_cb(struct ctl_ha_dt_req *rq); 498 static int ctl_datamove_remote_dm_write_cb(union ctl_io *io); 499 static void ctl_datamove_remote_write(union ctl_io *io); 500 static int ctl_datamove_remote_dm_read_cb(union ctl_io *io); 501 static void ctl_datamove_remote_read_cb(struct ctl_ha_dt_req *rq); 502 static int ctl_datamove_remote_sgl_setup(union ctl_io *io); 503 static int ctl_datamove_remote_xfer(union ctl_io *io, unsigned command, 504 ctl_ha_dt_cb callback); 505 static void ctl_datamove_remote_read(union ctl_io *io); 506 static void ctl_datamove_remote(union ctl_io *io); 507 static void ctl_process_done(union ctl_io *io); 508 static void ctl_lun_thread(void *arg); 509 static void ctl_thresh_thread(void *arg); 510 static void ctl_work_thread(void *arg); 511 static void ctl_enqueue_incoming(union ctl_io *io); 512 static void ctl_enqueue_rtr(union ctl_io *io); 513 static void ctl_enqueue_done(union ctl_io *io); 514 static void ctl_enqueue_isc(union ctl_io *io); 515 static const struct ctl_cmd_entry * 516 ctl_get_cmd_entry(struct ctl_scsiio *ctsio, int *sa); 517 static const struct ctl_cmd_entry * 518 ctl_validate_command(struct ctl_scsiio *ctsio); 519 static int ctl_cmd_applicable(uint8_t lun_type, 520 const struct ctl_cmd_entry *entry); 521 522 static uint64_t ctl_get_prkey(struct ctl_lun *lun, uint32_t residx); 523 static void ctl_clr_prkey(struct ctl_lun *lun, uint32_t residx); 524 static void ctl_alloc_prkey(struct ctl_lun *lun, uint32_t residx); 525 static void ctl_set_prkey(struct ctl_lun *lun, uint32_t residx, uint64_t key); 526 527 /* 528 * Load the serialization table. This isn't very pretty, but is probably 529 * the easiest way to do it. 530 */ 531 #include "ctl_ser_table.c" 532 533 /* 534 * We only need to define open, close and ioctl routines for this driver. 535 */ 536 static struct cdevsw ctl_cdevsw = { 537 .d_version = D_VERSION, 538 .d_flags = 0, 539 .d_open = ctl_open, 540 .d_close = ctl_close, 541 .d_ioctl = ctl_ioctl, 542 .d_name = "ctl", 543 }; 544 545 546 MALLOC_DEFINE(M_CTL, "ctlmem", "Memory used for CTL"); 547 548 static int ctl_module_event_handler(module_t, int /*modeventtype_t*/, void *); 549 550 static moduledata_t ctl_moduledata = { 551 "ctl", 552 ctl_module_event_handler, 553 NULL 554 }; 555 556 DECLARE_MODULE(ctl, ctl_moduledata, SI_SUB_CONFIGURE, SI_ORDER_THIRD); 557 MODULE_VERSION(ctl, 1); 558 559 static struct ctl_frontend ha_frontend = 560 { 561 .name = "ha", 562 }; 563 564 static void 565 ctl_ha_datamove(union ctl_io *io) 566 { 567 struct ctl_lun *lun; 568 struct ctl_sg_entry *sgl; 569 union ctl_ha_msg msg; 570 uint32_t sg_entries_sent; 571 int do_sg_copy, i, j; 572 573 lun = (struct ctl_lun *)io->io_hdr.ctl_private[CTL_PRIV_LUN].ptr; 574 memset(&msg.dt, 0, sizeof(msg.dt)); 575 msg.hdr.msg_type = CTL_MSG_DATAMOVE; 576 msg.hdr.original_sc = io->io_hdr.original_sc; 577 msg.hdr.serializing_sc = io; 578 msg.hdr.nexus = io->io_hdr.nexus; 579 msg.hdr.status = io->io_hdr.status; 580 msg.dt.flags = io->io_hdr.flags; 581 582 /* 583 * We convert everything into a S/G list here. We can't 584 * pass by reference, only by value between controllers. 585 * So we can't pass a pointer to the S/G list, only as many 586 * S/G entries as we can fit in here. If it's possible for 587 * us to get more than CTL_HA_MAX_SG_ENTRIES S/G entries, 588 * then we need to break this up into multiple transfers. 589 */ 590 if (io->scsiio.kern_sg_entries == 0) { 591 msg.dt.kern_sg_entries = 1; 592 #if 0 593 if (io->io_hdr.flags & CTL_FLAG_BUS_ADDR) { 594 msg.dt.sg_list[0].addr = io->scsiio.kern_data_ptr; 595 } else { 596 /* XXX KDM use busdma here! */ 597 msg.dt.sg_list[0].addr = 598 (void *)vtophys(io->scsiio.kern_data_ptr); 599 } 600 #else 601 KASSERT((io->io_hdr.flags & CTL_FLAG_BUS_ADDR) == 0, 602 ("HA does not support BUS_ADDR")); 603 msg.dt.sg_list[0].addr = io->scsiio.kern_data_ptr; 604 #endif 605 msg.dt.sg_list[0].len = io->scsiio.kern_data_len; 606 do_sg_copy = 0; 607 } else { 608 msg.dt.kern_sg_entries = io->scsiio.kern_sg_entries; 609 do_sg_copy = 1; 610 } 611 612 msg.dt.kern_data_len = io->scsiio.kern_data_len; 613 msg.dt.kern_total_len = io->scsiio.kern_total_len; 614 msg.dt.kern_data_resid = io->scsiio.kern_data_resid; 615 msg.dt.kern_rel_offset = io->scsiio.kern_rel_offset; 616 msg.dt.sg_sequence = 0; 617 618 /* 619 * Loop until we've sent all of the S/G entries. On the 620 * other end, we'll recompose these S/G entries into one 621 * contiguous list before processing. 622 */ 623 for (sg_entries_sent = 0; sg_entries_sent < msg.dt.kern_sg_entries; 624 msg.dt.sg_sequence++) { 625 msg.dt.cur_sg_entries = MIN((sizeof(msg.dt.sg_list) / 626 sizeof(msg.dt.sg_list[0])), 627 msg.dt.kern_sg_entries - sg_entries_sent); 628 if (do_sg_copy != 0) { 629 sgl = (struct ctl_sg_entry *)io->scsiio.kern_data_ptr; 630 for (i = sg_entries_sent, j = 0; 631 i < msg.dt.cur_sg_entries; i++, j++) { 632 #if 0 633 if (io->io_hdr.flags & CTL_FLAG_BUS_ADDR) { 634 msg.dt.sg_list[j].addr = sgl[i].addr; 635 } else { 636 /* XXX KDM use busdma here! */ 637 msg.dt.sg_list[j].addr = 638 (void *)vtophys(sgl[i].addr); 639 } 640 #else 641 KASSERT((io->io_hdr.flags & 642 CTL_FLAG_BUS_ADDR) == 0, 643 ("HA does not support BUS_ADDR")); 644 msg.dt.sg_list[j].addr = sgl[i].addr; 645 #endif 646 msg.dt.sg_list[j].len = sgl[i].len; 647 } 648 } 649 650 sg_entries_sent += msg.dt.cur_sg_entries; 651 msg.dt.sg_last = (sg_entries_sent >= msg.dt.kern_sg_entries); 652 if (ctl_ha_msg_send(CTL_HA_CHAN_CTL, &msg, 653 sizeof(msg.dt) - sizeof(msg.dt.sg_list) + 654 sizeof(struct ctl_sg_entry) * msg.dt.cur_sg_entries, 655 M_WAITOK) > CTL_HA_STATUS_SUCCESS) { 656 io->io_hdr.port_status = 31341; 657 io->scsiio.be_move_done(io); 658 return; 659 } 660 msg.dt.sent_sg_entries = sg_entries_sent; 661 } 662 663 /* 664 * Officially handover the request from us to peer. 665 * If failover has just happened, then we must return error. 666 * If failover happen just after, then it is not our problem. 667 */ 668 if (lun) 669 mtx_lock(&lun->lun_lock); 670 if (io->io_hdr.flags & CTL_FLAG_FAILOVER) { 671 if (lun) 672 mtx_unlock(&lun->lun_lock); 673 io->io_hdr.port_status = 31342; 674 io->scsiio.be_move_done(io); 675 return; 676 } 677 io->io_hdr.flags &= ~CTL_FLAG_IO_ACTIVE; 678 io->io_hdr.flags |= CTL_FLAG_DMA_INPROG; 679 if (lun) 680 mtx_unlock(&lun->lun_lock); 681 } 682 683 static void 684 ctl_ha_done(union ctl_io *io) 685 { 686 union ctl_ha_msg msg; 687 688 if (io->io_hdr.io_type == CTL_IO_SCSI) { 689 memset(&msg, 0, sizeof(msg)); 690 msg.hdr.msg_type = CTL_MSG_FINISH_IO; 691 msg.hdr.original_sc = io->io_hdr.original_sc; 692 msg.hdr.nexus = io->io_hdr.nexus; 693 msg.hdr.status = io->io_hdr.status; 694 msg.scsi.scsi_status = io->scsiio.scsi_status; 695 msg.scsi.tag_num = io->scsiio.tag_num; 696 msg.scsi.tag_type = io->scsiio.tag_type; 697 msg.scsi.sense_len = io->scsiio.sense_len; 698 msg.scsi.sense_residual = io->scsiio.sense_residual; 699 msg.scsi.residual = io->scsiio.residual; 700 memcpy(&msg.scsi.sense_data, &io->scsiio.sense_data, 701 io->scsiio.sense_len); 702 ctl_ha_msg_send(CTL_HA_CHAN_CTL, &msg, 703 sizeof(msg.scsi) - sizeof(msg.scsi.sense_data) + 704 msg.scsi.sense_len, M_WAITOK); 705 } 706 ctl_free_io(io); 707 } 708 709 static void 710 ctl_isc_handler_finish_xfer(struct ctl_softc *ctl_softc, 711 union ctl_ha_msg *msg_info) 712 { 713 struct ctl_scsiio *ctsio; 714 715 if (msg_info->hdr.original_sc == NULL) { 716 printf("%s: original_sc == NULL!\n", __func__); 717 /* XXX KDM now what? */ 718 return; 719 } 720 721 ctsio = &msg_info->hdr.original_sc->scsiio; 722 ctsio->io_hdr.flags |= CTL_FLAG_IO_ACTIVE; 723 ctsio->io_hdr.msg_type = CTL_MSG_FINISH_IO; 724 ctsio->io_hdr.status = msg_info->hdr.status; 725 ctsio->scsi_status = msg_info->scsi.scsi_status; 726 ctsio->sense_len = msg_info->scsi.sense_len; 727 ctsio->sense_residual = msg_info->scsi.sense_residual; 728 ctsio->residual = msg_info->scsi.residual; 729 memcpy(&ctsio->sense_data, &msg_info->scsi.sense_data, 730 msg_info->scsi.sense_len); 731 ctl_enqueue_isc((union ctl_io *)ctsio); 732 } 733 734 static void 735 ctl_isc_handler_finish_ser_only(struct ctl_softc *ctl_softc, 736 union ctl_ha_msg *msg_info) 737 { 738 struct ctl_scsiio *ctsio; 739 740 if (msg_info->hdr.serializing_sc == NULL) { 741 printf("%s: serializing_sc == NULL!\n", __func__); 742 /* XXX KDM now what? */ 743 return; 744 } 745 746 ctsio = &msg_info->hdr.serializing_sc->scsiio; 747 ctsio->io_hdr.msg_type = CTL_MSG_FINISH_IO; 748 ctl_enqueue_isc((union ctl_io *)ctsio); 749 } 750 751 void 752 ctl_isc_announce_lun(struct ctl_lun *lun) 753 { 754 struct ctl_softc *softc = lun->ctl_softc; 755 union ctl_ha_msg *msg; 756 struct ctl_ha_msg_lun_pr_key pr_key; 757 int i, k; 758 759 if (softc->ha_link != CTL_HA_LINK_ONLINE) 760 return; 761 mtx_lock(&lun->lun_lock); 762 i = sizeof(msg->lun); 763 if (lun->lun_devid) 764 i += lun->lun_devid->len; 765 i += sizeof(pr_key) * lun->pr_key_count; 766 alloc: 767 mtx_unlock(&lun->lun_lock); 768 msg = malloc(i, M_CTL, M_WAITOK); 769 mtx_lock(&lun->lun_lock); 770 k = sizeof(msg->lun); 771 if (lun->lun_devid) 772 k += lun->lun_devid->len; 773 k += sizeof(pr_key) * lun->pr_key_count; 774 if (i < k) { 775 free(msg, M_CTL); 776 i = k; 777 goto alloc; 778 } 779 bzero(&msg->lun, sizeof(msg->lun)); 780 msg->hdr.msg_type = CTL_MSG_LUN_SYNC; 781 msg->hdr.nexus.targ_lun = lun->lun; 782 msg->hdr.nexus.targ_mapped_lun = lun->lun; 783 msg->lun.flags = lun->flags; 784 msg->lun.pr_generation = lun->pr_generation; 785 msg->lun.pr_res_idx = lun->pr_res_idx; 786 msg->lun.pr_res_type = lun->pr_res_type; 787 msg->lun.pr_key_count = lun->pr_key_count; 788 i = 0; 789 if (lun->lun_devid) { 790 msg->lun.lun_devid_len = lun->lun_devid->len; 791 memcpy(&msg->lun.data[i], lun->lun_devid->data, 792 msg->lun.lun_devid_len); 793 i += msg->lun.lun_devid_len; 794 } 795 for (k = 0; k < CTL_MAX_INITIATORS; k++) { 796 if ((pr_key.pr_key = ctl_get_prkey(lun, k)) == 0) 797 continue; 798 pr_key.pr_iid = k; 799 memcpy(&msg->lun.data[i], &pr_key, sizeof(pr_key)); 800 i += sizeof(pr_key); 801 } 802 mtx_unlock(&lun->lun_lock); 803 ctl_ha_msg_send(CTL_HA_CHAN_CTL, &msg->port, sizeof(msg->port) + i, 804 M_WAITOK); 805 free(msg, M_CTL); 806 807 if (lun->flags & CTL_LUN_PRIMARY_SC) { 808 for (i = 0; i < CTL_NUM_MODE_PAGES; i++) { 809 ctl_isc_announce_mode(lun, -1, 810 lun->mode_pages.index[i].page_code & SMPH_PC_MASK, 811 lun->mode_pages.index[i].subpage); 812 } 813 } 814 } 815 816 void 817 ctl_isc_announce_port(struct ctl_port *port) 818 { 819 struct ctl_softc *softc = port->ctl_softc; 820 union ctl_ha_msg *msg; 821 int i; 822 823 if (port->targ_port < softc->port_min || 824 port->targ_port >= softc->port_max || 825 softc->ha_link != CTL_HA_LINK_ONLINE) 826 return; 827 i = sizeof(msg->port) + strlen(port->port_name) + 1; 828 if (port->lun_map) 829 i += sizeof(uint32_t) * CTL_MAX_LUNS; 830 if (port->port_devid) 831 i += port->port_devid->len; 832 if (port->target_devid) 833 i += port->target_devid->len; 834 if (port->init_devid) 835 i += port->init_devid->len; 836 msg = malloc(i, M_CTL, M_WAITOK); 837 bzero(&msg->port, sizeof(msg->port)); 838 msg->hdr.msg_type = CTL_MSG_PORT_SYNC; 839 msg->hdr.nexus.targ_port = port->targ_port; 840 msg->port.port_type = port->port_type; 841 msg->port.physical_port = port->physical_port; 842 msg->port.virtual_port = port->virtual_port; 843 msg->port.status = port->status; 844 i = 0; 845 msg->port.name_len = sprintf(&msg->port.data[i], 846 "%d:%s", softc->ha_id, port->port_name) + 1; 847 i += msg->port.name_len; 848 if (port->lun_map) { 849 msg->port.lun_map_len = sizeof(uint32_t) * CTL_MAX_LUNS; 850 memcpy(&msg->port.data[i], port->lun_map, 851 msg->port.lun_map_len); 852 i += msg->port.lun_map_len; 853 } 854 if (port->port_devid) { 855 msg->port.port_devid_len = port->port_devid->len; 856 memcpy(&msg->port.data[i], port->port_devid->data, 857 msg->port.port_devid_len); 858 i += msg->port.port_devid_len; 859 } 860 if (port->target_devid) { 861 msg->port.target_devid_len = port->target_devid->len; 862 memcpy(&msg->port.data[i], port->target_devid->data, 863 msg->port.target_devid_len); 864 i += msg->port.target_devid_len; 865 } 866 if (port->init_devid) { 867 msg->port.init_devid_len = port->init_devid->len; 868 memcpy(&msg->port.data[i], port->init_devid->data, 869 msg->port.init_devid_len); 870 i += msg->port.init_devid_len; 871 } 872 ctl_ha_msg_send(CTL_HA_CHAN_CTL, &msg->port, sizeof(msg->port) + i, 873 M_WAITOK); 874 free(msg, M_CTL); 875 } 876 877 void 878 ctl_isc_announce_iid(struct ctl_port *port, int iid) 879 { 880 struct ctl_softc *softc = port->ctl_softc; 881 union ctl_ha_msg *msg; 882 int i, l; 883 884 if (port->targ_port < softc->port_min || 885 port->targ_port >= softc->port_max || 886 softc->ha_link != CTL_HA_LINK_ONLINE) 887 return; 888 mtx_lock(&softc->ctl_lock); 889 i = sizeof(msg->iid); 890 l = 0; 891 if (port->wwpn_iid[iid].name) 892 l = strlen(port->wwpn_iid[iid].name) + 1; 893 i += l; 894 msg = malloc(i, M_CTL, M_NOWAIT); 895 if (msg == NULL) { 896 mtx_unlock(&softc->ctl_lock); 897 return; 898 } 899 bzero(&msg->iid, sizeof(msg->iid)); 900 msg->hdr.msg_type = CTL_MSG_IID_SYNC; 901 msg->hdr.nexus.targ_port = port->targ_port; 902 msg->hdr.nexus.initid = iid; 903 msg->iid.in_use = port->wwpn_iid[iid].in_use; 904 msg->iid.name_len = l; 905 msg->iid.wwpn = port->wwpn_iid[iid].wwpn; 906 if (port->wwpn_iid[iid].name) 907 strlcpy(msg->iid.data, port->wwpn_iid[iid].name, l); 908 mtx_unlock(&softc->ctl_lock); 909 ctl_ha_msg_send(CTL_HA_CHAN_CTL, &msg->iid, i, M_NOWAIT); 910 free(msg, M_CTL); 911 } 912 913 void 914 ctl_isc_announce_mode(struct ctl_lun *lun, uint32_t initidx, 915 uint8_t page, uint8_t subpage) 916 { 917 struct ctl_softc *softc = lun->ctl_softc; 918 union ctl_ha_msg msg; 919 int i; 920 921 if (softc->ha_link != CTL_HA_LINK_ONLINE) 922 return; 923 for (i = 0; i < CTL_NUM_MODE_PAGES; i++) { 924 if ((lun->mode_pages.index[i].page_code & SMPH_PC_MASK) == 925 page && lun->mode_pages.index[i].subpage == subpage) 926 break; 927 } 928 if (i == CTL_NUM_MODE_PAGES) 929 return; 930 931 /* Don't try to replicate pages not present on this device. */ 932 if (lun->mode_pages.index[i].page_data == NULL) 933 return; 934 935 bzero(&msg.mode, sizeof(msg.mode)); 936 msg.hdr.msg_type = CTL_MSG_MODE_SYNC; 937 msg.hdr.nexus.targ_port = initidx / CTL_MAX_INIT_PER_PORT; 938 msg.hdr.nexus.initid = initidx % CTL_MAX_INIT_PER_PORT; 939 msg.hdr.nexus.targ_lun = lun->lun; 940 msg.hdr.nexus.targ_mapped_lun = lun->lun; 941 msg.mode.page_code = page; 942 msg.mode.subpage = subpage; 943 msg.mode.page_len = lun->mode_pages.index[i].page_len; 944 memcpy(msg.mode.data, lun->mode_pages.index[i].page_data, 945 msg.mode.page_len); 946 ctl_ha_msg_send(CTL_HA_CHAN_CTL, &msg.mode, sizeof(msg.mode), 947 M_WAITOK); 948 } 949 950 static void 951 ctl_isc_ha_link_up(struct ctl_softc *softc) 952 { 953 struct ctl_port *port; 954 struct ctl_lun *lun; 955 union ctl_ha_msg msg; 956 int i; 957 958 /* Announce this node parameters to peer for validation. */ 959 msg.login.msg_type = CTL_MSG_LOGIN; 960 msg.login.version = CTL_HA_VERSION; 961 msg.login.ha_mode = softc->ha_mode; 962 msg.login.ha_id = softc->ha_id; 963 msg.login.max_luns = CTL_MAX_LUNS; 964 msg.login.max_ports = CTL_MAX_PORTS; 965 msg.login.max_init_per_port = CTL_MAX_INIT_PER_PORT; 966 ctl_ha_msg_send(CTL_HA_CHAN_CTL, &msg.login, sizeof(msg.login), 967 M_WAITOK); 968 969 STAILQ_FOREACH(port, &softc->port_list, links) { 970 ctl_isc_announce_port(port); 971 for (i = 0; i < CTL_MAX_INIT_PER_PORT; i++) { 972 if (port->wwpn_iid[i].in_use) 973 ctl_isc_announce_iid(port, i); 974 } 975 } 976 STAILQ_FOREACH(lun, &softc->lun_list, links) 977 ctl_isc_announce_lun(lun); 978 } 979 980 static void 981 ctl_isc_ha_link_down(struct ctl_softc *softc) 982 { 983 struct ctl_port *port; 984 struct ctl_lun *lun; 985 union ctl_io *io; 986 int i; 987 988 mtx_lock(&softc->ctl_lock); 989 STAILQ_FOREACH(lun, &softc->lun_list, links) { 990 mtx_lock(&lun->lun_lock); 991 if (lun->flags & CTL_LUN_PEER_SC_PRIMARY) { 992 lun->flags &= ~CTL_LUN_PEER_SC_PRIMARY; 993 ctl_est_ua_all(lun, -1, CTL_UA_ASYM_ACC_CHANGE); 994 } 995 mtx_unlock(&lun->lun_lock); 996 997 mtx_unlock(&softc->ctl_lock); 998 io = ctl_alloc_io(softc->othersc_pool); 999 mtx_lock(&softc->ctl_lock); 1000 ctl_zero_io(io); 1001 io->io_hdr.msg_type = CTL_MSG_FAILOVER; 1002 io->io_hdr.nexus.targ_mapped_lun = lun->lun; 1003 ctl_enqueue_isc(io); 1004 } 1005 1006 STAILQ_FOREACH(port, &softc->port_list, links) { 1007 if (port->targ_port >= softc->port_min && 1008 port->targ_port < softc->port_max) 1009 continue; 1010 port->status &= ~CTL_PORT_STATUS_ONLINE; 1011 for (i = 0; i < CTL_MAX_INIT_PER_PORT; i++) { 1012 port->wwpn_iid[i].in_use = 0; 1013 free(port->wwpn_iid[i].name, M_CTL); 1014 port->wwpn_iid[i].name = NULL; 1015 } 1016 } 1017 mtx_unlock(&softc->ctl_lock); 1018 } 1019 1020 static void 1021 ctl_isc_ua(struct ctl_softc *softc, union ctl_ha_msg *msg, int len) 1022 { 1023 struct ctl_lun *lun; 1024 uint32_t iid = ctl_get_initindex(&msg->hdr.nexus); 1025 1026 mtx_lock(&softc->ctl_lock); 1027 if (msg->hdr.nexus.targ_lun < CTL_MAX_LUNS && 1028 (lun = softc->ctl_luns[msg->hdr.nexus.targ_mapped_lun]) != NULL) { 1029 mtx_lock(&lun->lun_lock); 1030 mtx_unlock(&softc->ctl_lock); 1031 if (msg->ua.ua_type == CTL_UA_THIN_PROV_THRES && 1032 msg->ua.ua_set) 1033 memcpy(lun->ua_tpt_info, msg->ua.ua_info, 8); 1034 if (msg->ua.ua_all) { 1035 if (msg->ua.ua_set) 1036 ctl_est_ua_all(lun, iid, msg->ua.ua_type); 1037 else 1038 ctl_clr_ua_all(lun, iid, msg->ua.ua_type); 1039 } else { 1040 if (msg->ua.ua_set) 1041 ctl_est_ua(lun, iid, msg->ua.ua_type); 1042 else 1043 ctl_clr_ua(lun, iid, msg->ua.ua_type); 1044 } 1045 mtx_unlock(&lun->lun_lock); 1046 } else 1047 mtx_unlock(&softc->ctl_lock); 1048 } 1049 1050 static void 1051 ctl_isc_lun_sync(struct ctl_softc *softc, union ctl_ha_msg *msg, int len) 1052 { 1053 struct ctl_lun *lun; 1054 struct ctl_ha_msg_lun_pr_key pr_key; 1055 int i, k; 1056 ctl_lun_flags oflags; 1057 uint32_t targ_lun; 1058 1059 targ_lun = msg->hdr.nexus.targ_mapped_lun; 1060 mtx_lock(&softc->ctl_lock); 1061 if ((targ_lun >= CTL_MAX_LUNS) || 1062 ((lun = softc->ctl_luns[targ_lun]) == NULL)) { 1063 mtx_unlock(&softc->ctl_lock); 1064 return; 1065 } 1066 mtx_lock(&lun->lun_lock); 1067 mtx_unlock(&softc->ctl_lock); 1068 if (lun->flags & CTL_LUN_DISABLED) { 1069 mtx_unlock(&lun->lun_lock); 1070 return; 1071 } 1072 i = (lun->lun_devid != NULL) ? lun->lun_devid->len : 0; 1073 if (msg->lun.lun_devid_len != i || (i > 0 && 1074 memcmp(&msg->lun.data[0], lun->lun_devid->data, i) != 0)) { 1075 mtx_unlock(&lun->lun_lock); 1076 printf("%s: Received conflicting HA LUN %d\n", 1077 __func__, msg->hdr.nexus.targ_lun); 1078 return; 1079 } else { 1080 /* Record whether peer is primary. */ 1081 oflags = lun->flags; 1082 if ((msg->lun.flags & CTL_LUN_PRIMARY_SC) && 1083 (msg->lun.flags & CTL_LUN_DISABLED) == 0) 1084 lun->flags |= CTL_LUN_PEER_SC_PRIMARY; 1085 else 1086 lun->flags &= ~CTL_LUN_PEER_SC_PRIMARY; 1087 if (oflags != lun->flags) 1088 ctl_est_ua_all(lun, -1, CTL_UA_ASYM_ACC_CHANGE); 1089 1090 /* If peer is primary and we are not -- use data */ 1091 if ((lun->flags & CTL_LUN_PRIMARY_SC) == 0 && 1092 (lun->flags & CTL_LUN_PEER_SC_PRIMARY)) { 1093 lun->pr_generation = msg->lun.pr_generation; 1094 lun->pr_res_idx = msg->lun.pr_res_idx; 1095 lun->pr_res_type = msg->lun.pr_res_type; 1096 lun->pr_key_count = msg->lun.pr_key_count; 1097 for (k = 0; k < CTL_MAX_INITIATORS; k++) 1098 ctl_clr_prkey(lun, k); 1099 for (k = 0; k < msg->lun.pr_key_count; k++) { 1100 memcpy(&pr_key, &msg->lun.data[i], 1101 sizeof(pr_key)); 1102 ctl_alloc_prkey(lun, pr_key.pr_iid); 1103 ctl_set_prkey(lun, pr_key.pr_iid, 1104 pr_key.pr_key); 1105 i += sizeof(pr_key); 1106 } 1107 } 1108 1109 mtx_unlock(&lun->lun_lock); 1110 CTL_DEBUG_PRINT(("%s: Known LUN %d, peer is %s\n", 1111 __func__, msg->hdr.nexus.targ_lun, 1112 (msg->lun.flags & CTL_LUN_PRIMARY_SC) ? 1113 "primary" : "secondary")); 1114 1115 /* If we are primary but peer doesn't know -- notify */ 1116 if ((lun->flags & CTL_LUN_PRIMARY_SC) && 1117 (msg->lun.flags & CTL_LUN_PEER_SC_PRIMARY) == 0) 1118 ctl_isc_announce_lun(lun); 1119 } 1120 } 1121 1122 static void 1123 ctl_isc_port_sync(struct ctl_softc *softc, union ctl_ha_msg *msg, int len) 1124 { 1125 struct ctl_port *port; 1126 struct ctl_lun *lun; 1127 int i, new; 1128 1129 port = softc->ctl_ports[msg->hdr.nexus.targ_port]; 1130 if (port == NULL) { 1131 CTL_DEBUG_PRINT(("%s: New port %d\n", __func__, 1132 msg->hdr.nexus.targ_port)); 1133 new = 1; 1134 port = malloc(sizeof(*port), M_CTL, M_WAITOK | M_ZERO); 1135 port->frontend = &ha_frontend; 1136 port->targ_port = msg->hdr.nexus.targ_port; 1137 port->fe_datamove = ctl_ha_datamove; 1138 port->fe_done = ctl_ha_done; 1139 } else if (port->frontend == &ha_frontend) { 1140 CTL_DEBUG_PRINT(("%s: Updated port %d\n", __func__, 1141 msg->hdr.nexus.targ_port)); 1142 new = 0; 1143 } else { 1144 printf("%s: Received conflicting HA port %d\n", 1145 __func__, msg->hdr.nexus.targ_port); 1146 return; 1147 } 1148 port->port_type = msg->port.port_type; 1149 port->physical_port = msg->port.physical_port; 1150 port->virtual_port = msg->port.virtual_port; 1151 port->status = msg->port.status; 1152 i = 0; 1153 free(port->port_name, M_CTL); 1154 port->port_name = strndup(&msg->port.data[i], msg->port.name_len, 1155 M_CTL); 1156 i += msg->port.name_len; 1157 if (msg->port.lun_map_len != 0) { 1158 if (port->lun_map == NULL) 1159 port->lun_map = malloc(sizeof(uint32_t) * CTL_MAX_LUNS, 1160 M_CTL, M_WAITOK); 1161 memcpy(port->lun_map, &msg->port.data[i], 1162 sizeof(uint32_t) * CTL_MAX_LUNS); 1163 i += msg->port.lun_map_len; 1164 } else { 1165 free(port->lun_map, M_CTL); 1166 port->lun_map = NULL; 1167 } 1168 if (msg->port.port_devid_len != 0) { 1169 if (port->port_devid == NULL || 1170 port->port_devid->len != msg->port.port_devid_len) { 1171 free(port->port_devid, M_CTL); 1172 port->port_devid = malloc(sizeof(struct ctl_devid) + 1173 msg->port.port_devid_len, M_CTL, M_WAITOK); 1174 } 1175 memcpy(port->port_devid->data, &msg->port.data[i], 1176 msg->port.port_devid_len); 1177 port->port_devid->len = msg->port.port_devid_len; 1178 i += msg->port.port_devid_len; 1179 } else { 1180 free(port->port_devid, M_CTL); 1181 port->port_devid = NULL; 1182 } 1183 if (msg->port.target_devid_len != 0) { 1184 if (port->target_devid == NULL || 1185 port->target_devid->len != msg->port.target_devid_len) { 1186 free(port->target_devid, M_CTL); 1187 port->target_devid = malloc(sizeof(struct ctl_devid) + 1188 msg->port.target_devid_len, M_CTL, M_WAITOK); 1189 } 1190 memcpy(port->target_devid->data, &msg->port.data[i], 1191 msg->port.target_devid_len); 1192 port->target_devid->len = msg->port.target_devid_len; 1193 i += msg->port.target_devid_len; 1194 } else { 1195 free(port->target_devid, M_CTL); 1196 port->target_devid = NULL; 1197 } 1198 if (msg->port.init_devid_len != 0) { 1199 if (port->init_devid == NULL || 1200 port->init_devid->len != msg->port.init_devid_len) { 1201 free(port->init_devid, M_CTL); 1202 port->init_devid = malloc(sizeof(struct ctl_devid) + 1203 msg->port.init_devid_len, M_CTL, M_WAITOK); 1204 } 1205 memcpy(port->init_devid->data, &msg->port.data[i], 1206 msg->port.init_devid_len); 1207 port->init_devid->len = msg->port.init_devid_len; 1208 i += msg->port.init_devid_len; 1209 } else { 1210 free(port->init_devid, M_CTL); 1211 port->init_devid = NULL; 1212 } 1213 if (new) { 1214 if (ctl_port_register(port) != 0) { 1215 printf("%s: ctl_port_register() failed with error\n", 1216 __func__); 1217 } 1218 } 1219 mtx_lock(&softc->ctl_lock); 1220 STAILQ_FOREACH(lun, &softc->lun_list, links) { 1221 if (ctl_lun_map_to_port(port, lun->lun) >= CTL_MAX_LUNS) 1222 continue; 1223 mtx_lock(&lun->lun_lock); 1224 ctl_est_ua_all(lun, -1, CTL_UA_INQ_CHANGE); 1225 mtx_unlock(&lun->lun_lock); 1226 } 1227 mtx_unlock(&softc->ctl_lock); 1228 } 1229 1230 static void 1231 ctl_isc_iid_sync(struct ctl_softc *softc, union ctl_ha_msg *msg, int len) 1232 { 1233 struct ctl_port *port; 1234 int iid; 1235 1236 port = softc->ctl_ports[msg->hdr.nexus.targ_port]; 1237 if (port == NULL) { 1238 printf("%s: Received IID for unknown port %d\n", 1239 __func__, msg->hdr.nexus.targ_port); 1240 return; 1241 } 1242 iid = msg->hdr.nexus.initid; 1243 port->wwpn_iid[iid].in_use = msg->iid.in_use; 1244 port->wwpn_iid[iid].wwpn = msg->iid.wwpn; 1245 free(port->wwpn_iid[iid].name, M_CTL); 1246 if (msg->iid.name_len) { 1247 port->wwpn_iid[iid].name = strndup(&msg->iid.data[0], 1248 msg->iid.name_len, M_CTL); 1249 } else 1250 port->wwpn_iid[iid].name = NULL; 1251 } 1252 1253 static void 1254 ctl_isc_login(struct ctl_softc *softc, union ctl_ha_msg *msg, int len) 1255 { 1256 1257 if (msg->login.version != CTL_HA_VERSION) { 1258 printf("CTL HA peers have different versions %d != %d\n", 1259 msg->login.version, CTL_HA_VERSION); 1260 ctl_ha_msg_abort(CTL_HA_CHAN_CTL); 1261 return; 1262 } 1263 if (msg->login.ha_mode != softc->ha_mode) { 1264 printf("CTL HA peers have different ha_mode %d != %d\n", 1265 msg->login.ha_mode, softc->ha_mode); 1266 ctl_ha_msg_abort(CTL_HA_CHAN_CTL); 1267 return; 1268 } 1269 if (msg->login.ha_id == softc->ha_id) { 1270 printf("CTL HA peers have same ha_id %d\n", msg->login.ha_id); 1271 ctl_ha_msg_abort(CTL_HA_CHAN_CTL); 1272 return; 1273 } 1274 if (msg->login.max_luns != CTL_MAX_LUNS || 1275 msg->login.max_ports != CTL_MAX_PORTS || 1276 msg->login.max_init_per_port != CTL_MAX_INIT_PER_PORT) { 1277 printf("CTL HA peers have different limits\n"); 1278 ctl_ha_msg_abort(CTL_HA_CHAN_CTL); 1279 return; 1280 } 1281 } 1282 1283 static void 1284 ctl_isc_mode_sync(struct ctl_softc *softc, union ctl_ha_msg *msg, int len) 1285 { 1286 struct ctl_lun *lun; 1287 int i; 1288 uint32_t initidx, targ_lun; 1289 1290 targ_lun = msg->hdr.nexus.targ_mapped_lun; 1291 mtx_lock(&softc->ctl_lock); 1292 if ((targ_lun >= CTL_MAX_LUNS) || 1293 ((lun = softc->ctl_luns[targ_lun]) == NULL)) { 1294 mtx_unlock(&softc->ctl_lock); 1295 return; 1296 } 1297 mtx_lock(&lun->lun_lock); 1298 mtx_unlock(&softc->ctl_lock); 1299 if (lun->flags & CTL_LUN_DISABLED) { 1300 mtx_unlock(&lun->lun_lock); 1301 return; 1302 } 1303 for (i = 0; i < CTL_NUM_MODE_PAGES; i++) { 1304 if ((lun->mode_pages.index[i].page_code & SMPH_PC_MASK) == 1305 msg->mode.page_code && 1306 lun->mode_pages.index[i].subpage == msg->mode.subpage) 1307 break; 1308 } 1309 if (i == CTL_NUM_MODE_PAGES) { 1310 mtx_unlock(&lun->lun_lock); 1311 return; 1312 } 1313 memcpy(lun->mode_pages.index[i].page_data, msg->mode.data, 1314 lun->mode_pages.index[i].page_len); 1315 initidx = ctl_get_initindex(&msg->hdr.nexus); 1316 if (initidx != -1) 1317 ctl_est_ua_all(lun, initidx, CTL_UA_MODE_CHANGE); 1318 mtx_unlock(&lun->lun_lock); 1319 } 1320 1321 /* 1322 * ISC (Inter Shelf Communication) event handler. Events from the HA 1323 * subsystem come in here. 1324 */ 1325 static void 1326 ctl_isc_event_handler(ctl_ha_channel channel, ctl_ha_event event, int param) 1327 { 1328 struct ctl_softc *softc = control_softc; 1329 union ctl_io *io; 1330 struct ctl_prio *presio; 1331 ctl_ha_status isc_status; 1332 1333 CTL_DEBUG_PRINT(("CTL: Isc Msg event %d\n", event)); 1334 if (event == CTL_HA_EVT_MSG_RECV) { 1335 union ctl_ha_msg *msg, msgbuf; 1336 1337 if (param > sizeof(msgbuf)) 1338 msg = malloc(param, M_CTL, M_WAITOK); 1339 else 1340 msg = &msgbuf; 1341 isc_status = ctl_ha_msg_recv(CTL_HA_CHAN_CTL, msg, param, 1342 M_WAITOK); 1343 if (isc_status != CTL_HA_STATUS_SUCCESS) { 1344 printf("%s: Error receiving message: %d\n", 1345 __func__, isc_status); 1346 if (msg != &msgbuf) 1347 free(msg, M_CTL); 1348 return; 1349 } 1350 1351 CTL_DEBUG_PRINT(("CTL: msg_type %d\n", msg->msg_type)); 1352 switch (msg->hdr.msg_type) { 1353 case CTL_MSG_SERIALIZE: 1354 io = ctl_alloc_io(softc->othersc_pool); 1355 ctl_zero_io(io); 1356 // populate ctsio from msg 1357 io->io_hdr.io_type = CTL_IO_SCSI; 1358 io->io_hdr.msg_type = CTL_MSG_SERIALIZE; 1359 io->io_hdr.original_sc = msg->hdr.original_sc; 1360 io->io_hdr.flags |= CTL_FLAG_FROM_OTHER_SC | 1361 CTL_FLAG_IO_ACTIVE; 1362 /* 1363 * If we're in serialization-only mode, we don't 1364 * want to go through full done processing. Thus 1365 * the COPY flag. 1366 * 1367 * XXX KDM add another flag that is more specific. 1368 */ 1369 if (softc->ha_mode != CTL_HA_MODE_XFER) 1370 io->io_hdr.flags |= CTL_FLAG_INT_COPY; 1371 io->io_hdr.nexus = msg->hdr.nexus; 1372 #if 0 1373 printf("port %u, iid %u, lun %u\n", 1374 io->io_hdr.nexus.targ_port, 1375 io->io_hdr.nexus.initid, 1376 io->io_hdr.nexus.targ_lun); 1377 #endif 1378 io->scsiio.tag_num = msg->scsi.tag_num; 1379 io->scsiio.tag_type = msg->scsi.tag_type; 1380 #ifdef CTL_TIME_IO 1381 io->io_hdr.start_time = time_uptime; 1382 getbinuptime(&io->io_hdr.start_bt); 1383 #endif /* CTL_TIME_IO */ 1384 io->scsiio.cdb_len = msg->scsi.cdb_len; 1385 memcpy(io->scsiio.cdb, msg->scsi.cdb, 1386 CTL_MAX_CDBLEN); 1387 if (softc->ha_mode == CTL_HA_MODE_XFER) { 1388 const struct ctl_cmd_entry *entry; 1389 1390 entry = ctl_get_cmd_entry(&io->scsiio, NULL); 1391 io->io_hdr.flags &= ~CTL_FLAG_DATA_MASK; 1392 io->io_hdr.flags |= 1393 entry->flags & CTL_FLAG_DATA_MASK; 1394 } 1395 ctl_enqueue_isc(io); 1396 break; 1397 1398 /* Performed on the Originating SC, XFER mode only */ 1399 case CTL_MSG_DATAMOVE: { 1400 struct ctl_sg_entry *sgl; 1401 int i, j; 1402 1403 io = msg->hdr.original_sc; 1404 if (io == NULL) { 1405 printf("%s: original_sc == NULL!\n", __func__); 1406 /* XXX KDM do something here */ 1407 break; 1408 } 1409 io->io_hdr.msg_type = CTL_MSG_DATAMOVE; 1410 io->io_hdr.flags |= CTL_FLAG_IO_ACTIVE; 1411 /* 1412 * Keep track of this, we need to send it back over 1413 * when the datamove is complete. 1414 */ 1415 io->io_hdr.serializing_sc = msg->hdr.serializing_sc; 1416 if (msg->hdr.status == CTL_SUCCESS) 1417 io->io_hdr.status = msg->hdr.status; 1418 1419 if (msg->dt.sg_sequence == 0) { 1420 #ifdef CTL_TIME_IO 1421 getbinuptime(&io->io_hdr.dma_start_bt); 1422 #endif 1423 i = msg->dt.kern_sg_entries + 1424 msg->dt.kern_data_len / 1425 CTL_HA_DATAMOVE_SEGMENT + 1; 1426 sgl = malloc(sizeof(*sgl) * i, M_CTL, 1427 M_WAITOK | M_ZERO); 1428 io->io_hdr.remote_sglist = sgl; 1429 io->io_hdr.local_sglist = 1430 &sgl[msg->dt.kern_sg_entries]; 1431 1432 io->scsiio.kern_data_ptr = (uint8_t *)sgl; 1433 1434 io->scsiio.kern_sg_entries = 1435 msg->dt.kern_sg_entries; 1436 io->scsiio.rem_sg_entries = 1437 msg->dt.kern_sg_entries; 1438 io->scsiio.kern_data_len = 1439 msg->dt.kern_data_len; 1440 io->scsiio.kern_total_len = 1441 msg->dt.kern_total_len; 1442 io->scsiio.kern_data_resid = 1443 msg->dt.kern_data_resid; 1444 io->scsiio.kern_rel_offset = 1445 msg->dt.kern_rel_offset; 1446 io->io_hdr.flags &= ~CTL_FLAG_BUS_ADDR; 1447 io->io_hdr.flags |= msg->dt.flags & 1448 CTL_FLAG_BUS_ADDR; 1449 } else 1450 sgl = (struct ctl_sg_entry *) 1451 io->scsiio.kern_data_ptr; 1452 1453 for (i = msg->dt.sent_sg_entries, j = 0; 1454 i < (msg->dt.sent_sg_entries + 1455 msg->dt.cur_sg_entries); i++, j++) { 1456 sgl[i].addr = msg->dt.sg_list[j].addr; 1457 sgl[i].len = msg->dt.sg_list[j].len; 1458 1459 #if 0 1460 printf("%s: DATAMOVE: %p,%lu j=%d, i=%d\n", 1461 __func__, sgl[i].addr, sgl[i].len, j, i); 1462 #endif 1463 } 1464 1465 /* 1466 * If this is the last piece of the I/O, we've got 1467 * the full S/G list. Queue processing in the thread. 1468 * Otherwise wait for the next piece. 1469 */ 1470 if (msg->dt.sg_last != 0) 1471 ctl_enqueue_isc(io); 1472 break; 1473 } 1474 /* Performed on the Serializing (primary) SC, XFER mode only */ 1475 case CTL_MSG_DATAMOVE_DONE: { 1476 if (msg->hdr.serializing_sc == NULL) { 1477 printf("%s: serializing_sc == NULL!\n", 1478 __func__); 1479 /* XXX KDM now what? */ 1480 break; 1481 } 1482 /* 1483 * We grab the sense information here in case 1484 * there was a failure, so we can return status 1485 * back to the initiator. 1486 */ 1487 io = msg->hdr.serializing_sc; 1488 io->io_hdr.msg_type = CTL_MSG_DATAMOVE_DONE; 1489 io->io_hdr.flags &= ~CTL_FLAG_DMA_INPROG; 1490 io->io_hdr.flags |= CTL_FLAG_IO_ACTIVE; 1491 io->io_hdr.port_status = msg->scsi.fetd_status; 1492 io->scsiio.residual = msg->scsi.residual; 1493 if (msg->hdr.status != CTL_STATUS_NONE) { 1494 io->io_hdr.status = msg->hdr.status; 1495 io->scsiio.scsi_status = msg->scsi.scsi_status; 1496 io->scsiio.sense_len = msg->scsi.sense_len; 1497 io->scsiio.sense_residual =msg->scsi.sense_residual; 1498 memcpy(&io->scsiio.sense_data, 1499 &msg->scsi.sense_data, 1500 msg->scsi.sense_len); 1501 if (msg->hdr.status == CTL_SUCCESS) 1502 io->io_hdr.flags |= CTL_FLAG_STATUS_SENT; 1503 } 1504 ctl_enqueue_isc(io); 1505 break; 1506 } 1507 1508 /* Preformed on Originating SC, SER_ONLY mode */ 1509 case CTL_MSG_R2R: 1510 io = msg->hdr.original_sc; 1511 if (io == NULL) { 1512 printf("%s: original_sc == NULL!\n", 1513 __func__); 1514 break; 1515 } 1516 io->io_hdr.flags |= CTL_FLAG_IO_ACTIVE; 1517 io->io_hdr.msg_type = CTL_MSG_R2R; 1518 io->io_hdr.serializing_sc = msg->hdr.serializing_sc; 1519 ctl_enqueue_isc(io); 1520 break; 1521 1522 /* 1523 * Performed on Serializing(i.e. primary SC) SC in SER_ONLY 1524 * mode. 1525 * Performed on the Originating (i.e. secondary) SC in XFER 1526 * mode 1527 */ 1528 case CTL_MSG_FINISH_IO: 1529 if (softc->ha_mode == CTL_HA_MODE_XFER) 1530 ctl_isc_handler_finish_xfer(softc, msg); 1531 else 1532 ctl_isc_handler_finish_ser_only(softc, msg); 1533 break; 1534 1535 /* Preformed on Originating SC */ 1536 case CTL_MSG_BAD_JUJU: 1537 io = msg->hdr.original_sc; 1538 if (io == NULL) { 1539 printf("%s: Bad JUJU!, original_sc is NULL!\n", 1540 __func__); 1541 break; 1542 } 1543 ctl_copy_sense_data(msg, io); 1544 /* 1545 * IO should have already been cleaned up on other 1546 * SC so clear this flag so we won't send a message 1547 * back to finish the IO there. 1548 */ 1549 io->io_hdr.flags &= ~CTL_FLAG_SENT_2OTHER_SC; 1550 io->io_hdr.flags |= CTL_FLAG_IO_ACTIVE; 1551 1552 /* io = msg->hdr.serializing_sc; */ 1553 io->io_hdr.msg_type = CTL_MSG_BAD_JUJU; 1554 ctl_enqueue_isc(io); 1555 break; 1556 1557 /* Handle resets sent from the other side */ 1558 case CTL_MSG_MANAGE_TASKS: { 1559 struct ctl_taskio *taskio; 1560 taskio = (struct ctl_taskio *)ctl_alloc_io( 1561 softc->othersc_pool); 1562 ctl_zero_io((union ctl_io *)taskio); 1563 taskio->io_hdr.io_type = CTL_IO_TASK; 1564 taskio->io_hdr.flags |= CTL_FLAG_FROM_OTHER_SC; 1565 taskio->io_hdr.nexus = msg->hdr.nexus; 1566 taskio->task_action = msg->task.task_action; 1567 taskio->tag_num = msg->task.tag_num; 1568 taskio->tag_type = msg->task.tag_type; 1569 #ifdef CTL_TIME_IO 1570 taskio->io_hdr.start_time = time_uptime; 1571 getbinuptime(&taskio->io_hdr.start_bt); 1572 #endif /* CTL_TIME_IO */ 1573 ctl_run_task((union ctl_io *)taskio); 1574 break; 1575 } 1576 /* Persistent Reserve action which needs attention */ 1577 case CTL_MSG_PERS_ACTION: 1578 presio = (struct ctl_prio *)ctl_alloc_io( 1579 softc->othersc_pool); 1580 ctl_zero_io((union ctl_io *)presio); 1581 presio->io_hdr.msg_type = CTL_MSG_PERS_ACTION; 1582 presio->io_hdr.flags |= CTL_FLAG_FROM_OTHER_SC; 1583 presio->io_hdr.nexus = msg->hdr.nexus; 1584 presio->pr_msg = msg->pr; 1585 ctl_enqueue_isc((union ctl_io *)presio); 1586 break; 1587 case CTL_MSG_UA: 1588 ctl_isc_ua(softc, msg, param); 1589 break; 1590 case CTL_MSG_PORT_SYNC: 1591 ctl_isc_port_sync(softc, msg, param); 1592 break; 1593 case CTL_MSG_LUN_SYNC: 1594 ctl_isc_lun_sync(softc, msg, param); 1595 break; 1596 case CTL_MSG_IID_SYNC: 1597 ctl_isc_iid_sync(softc, msg, param); 1598 break; 1599 case CTL_MSG_LOGIN: 1600 ctl_isc_login(softc, msg, param); 1601 break; 1602 case CTL_MSG_MODE_SYNC: 1603 ctl_isc_mode_sync(softc, msg, param); 1604 break; 1605 default: 1606 printf("Received HA message of unknown type %d\n", 1607 msg->hdr.msg_type); 1608 ctl_ha_msg_abort(CTL_HA_CHAN_CTL); 1609 break; 1610 } 1611 if (msg != &msgbuf) 1612 free(msg, M_CTL); 1613 } else if (event == CTL_HA_EVT_LINK_CHANGE) { 1614 printf("CTL: HA link status changed from %d to %d\n", 1615 softc->ha_link, param); 1616 if (param == softc->ha_link) 1617 return; 1618 if (softc->ha_link == CTL_HA_LINK_ONLINE) { 1619 softc->ha_link = param; 1620 ctl_isc_ha_link_down(softc); 1621 } else { 1622 softc->ha_link = param; 1623 if (softc->ha_link == CTL_HA_LINK_ONLINE) 1624 ctl_isc_ha_link_up(softc); 1625 } 1626 return; 1627 } else { 1628 printf("ctl_isc_event_handler: Unknown event %d\n", event); 1629 return; 1630 } 1631 } 1632 1633 static void 1634 ctl_copy_sense_data(union ctl_ha_msg *src, union ctl_io *dest) 1635 { 1636 1637 memcpy(&dest->scsiio.sense_data, &src->scsi.sense_data, 1638 src->scsi.sense_len); 1639 dest->scsiio.scsi_status = src->scsi.scsi_status; 1640 dest->scsiio.sense_len = src->scsi.sense_len; 1641 dest->io_hdr.status = src->hdr.status; 1642 } 1643 1644 static void 1645 ctl_copy_sense_data_back(union ctl_io *src, union ctl_ha_msg *dest) 1646 { 1647 1648 memcpy(&dest->scsi.sense_data, &src->scsiio.sense_data, 1649 src->scsiio.sense_len); 1650 dest->scsi.scsi_status = src->scsiio.scsi_status; 1651 dest->scsi.sense_len = src->scsiio.sense_len; 1652 dest->hdr.status = src->io_hdr.status; 1653 } 1654 1655 void 1656 ctl_est_ua(struct ctl_lun *lun, uint32_t initidx, ctl_ua_type ua) 1657 { 1658 struct ctl_softc *softc = lun->ctl_softc; 1659 ctl_ua_type *pu; 1660 1661 if (initidx < softc->init_min || initidx >= softc->init_max) 1662 return; 1663 mtx_assert(&lun->lun_lock, MA_OWNED); 1664 pu = lun->pending_ua[initidx / CTL_MAX_INIT_PER_PORT]; 1665 if (pu == NULL) 1666 return; 1667 pu[initidx % CTL_MAX_INIT_PER_PORT] |= ua; 1668 } 1669 1670 void 1671 ctl_est_ua_port(struct ctl_lun *lun, int port, uint32_t except, ctl_ua_type ua) 1672 { 1673 int i; 1674 1675 mtx_assert(&lun->lun_lock, MA_OWNED); 1676 if (lun->pending_ua[port] == NULL) 1677 return; 1678 for (i = 0; i < CTL_MAX_INIT_PER_PORT; i++) { 1679 if (port * CTL_MAX_INIT_PER_PORT + i == except) 1680 continue; 1681 lun->pending_ua[port][i] |= ua; 1682 } 1683 } 1684 1685 void 1686 ctl_est_ua_all(struct ctl_lun *lun, uint32_t except, ctl_ua_type ua) 1687 { 1688 struct ctl_softc *softc = lun->ctl_softc; 1689 int i; 1690 1691 mtx_assert(&lun->lun_lock, MA_OWNED); 1692 for (i = softc->port_min; i < softc->port_max; i++) 1693 ctl_est_ua_port(lun, i, except, ua); 1694 } 1695 1696 void 1697 ctl_clr_ua(struct ctl_lun *lun, uint32_t initidx, ctl_ua_type ua) 1698 { 1699 struct ctl_softc *softc = lun->ctl_softc; 1700 ctl_ua_type *pu; 1701 1702 if (initidx < softc->init_min || initidx >= softc->init_max) 1703 return; 1704 mtx_assert(&lun->lun_lock, MA_OWNED); 1705 pu = lun->pending_ua[initidx / CTL_MAX_INIT_PER_PORT]; 1706 if (pu == NULL) 1707 return; 1708 pu[initidx % CTL_MAX_INIT_PER_PORT] &= ~ua; 1709 } 1710 1711 void 1712 ctl_clr_ua_all(struct ctl_lun *lun, uint32_t except, ctl_ua_type ua) 1713 { 1714 struct ctl_softc *softc = lun->ctl_softc; 1715 int i, j; 1716 1717 mtx_assert(&lun->lun_lock, MA_OWNED); 1718 for (i = softc->port_min; i < softc->port_max; i++) { 1719 if (lun->pending_ua[i] == NULL) 1720 continue; 1721 for (j = 0; j < CTL_MAX_INIT_PER_PORT; j++) { 1722 if (i * CTL_MAX_INIT_PER_PORT + j == except) 1723 continue; 1724 lun->pending_ua[i][j] &= ~ua; 1725 } 1726 } 1727 } 1728 1729 void 1730 ctl_clr_ua_allluns(struct ctl_softc *ctl_softc, uint32_t initidx, 1731 ctl_ua_type ua_type) 1732 { 1733 struct ctl_lun *lun; 1734 1735 mtx_assert(&ctl_softc->ctl_lock, MA_OWNED); 1736 STAILQ_FOREACH(lun, &ctl_softc->lun_list, links) { 1737 mtx_lock(&lun->lun_lock); 1738 ctl_clr_ua(lun, initidx, ua_type); 1739 mtx_unlock(&lun->lun_lock); 1740 } 1741 } 1742 1743 static int 1744 ctl_ha_role_sysctl(SYSCTL_HANDLER_ARGS) 1745 { 1746 struct ctl_softc *softc = (struct ctl_softc *)arg1; 1747 struct ctl_lun *lun; 1748 struct ctl_lun_req ireq; 1749 int error, value; 1750 1751 value = (softc->flags & CTL_FLAG_ACTIVE_SHELF) ? 0 : 1; 1752 error = sysctl_handle_int(oidp, &value, 0, req); 1753 if ((error != 0) || (req->newptr == NULL)) 1754 return (error); 1755 1756 mtx_lock(&softc->ctl_lock); 1757 if (value == 0) 1758 softc->flags |= CTL_FLAG_ACTIVE_SHELF; 1759 else 1760 softc->flags &= ~CTL_FLAG_ACTIVE_SHELF; 1761 STAILQ_FOREACH(lun, &softc->lun_list, links) { 1762 mtx_unlock(&softc->ctl_lock); 1763 bzero(&ireq, sizeof(ireq)); 1764 ireq.reqtype = CTL_LUNREQ_MODIFY; 1765 ireq.reqdata.modify.lun_id = lun->lun; 1766 lun->backend->ioctl(NULL, CTL_LUN_REQ, (caddr_t)&ireq, 0, 1767 curthread); 1768 if (ireq.status != CTL_LUN_OK) { 1769 printf("%s: CTL_LUNREQ_MODIFY returned %d '%s'\n", 1770 __func__, ireq.status, ireq.error_str); 1771 } 1772 mtx_lock(&softc->ctl_lock); 1773 } 1774 mtx_unlock(&softc->ctl_lock); 1775 return (0); 1776 } 1777 1778 static int 1779 ctl_init(void) 1780 { 1781 struct ctl_softc *softc; 1782 void *other_pool; 1783 int i, error; 1784 1785 softc = control_softc = malloc(sizeof(*control_softc), M_DEVBUF, 1786 M_WAITOK | M_ZERO); 1787 1788 softc->dev = make_dev(&ctl_cdevsw, 0, UID_ROOT, GID_OPERATOR, 0600, 1789 "cam/ctl"); 1790 softc->dev->si_drv1 = softc; 1791 1792 sysctl_ctx_init(&softc->sysctl_ctx); 1793 softc->sysctl_tree = SYSCTL_ADD_NODE(&softc->sysctl_ctx, 1794 SYSCTL_STATIC_CHILDREN(_kern_cam), OID_AUTO, "ctl", 1795 CTLFLAG_RD, 0, "CAM Target Layer"); 1796 1797 if (softc->sysctl_tree == NULL) { 1798 printf("%s: unable to allocate sysctl tree\n", __func__); 1799 destroy_dev(softc->dev); 1800 free(control_softc, M_DEVBUF); 1801 control_softc = NULL; 1802 return (ENOMEM); 1803 } 1804 1805 mtx_init(&softc->ctl_lock, "CTL mutex", NULL, MTX_DEF); 1806 softc->io_zone = uma_zcreate("CTL IO", sizeof(union ctl_io), 1807 NULL, NULL, NULL, NULL, UMA_ALIGN_PTR, 0); 1808 softc->flags = 0; 1809 1810 SYSCTL_ADD_INT(&softc->sysctl_ctx, SYSCTL_CHILDREN(softc->sysctl_tree), 1811 OID_AUTO, "ha_mode", CTLFLAG_RDTUN, (int *)&softc->ha_mode, 0, 1812 "HA mode (0 - act/stby, 1 - serialize only, 2 - xfer)"); 1813 1814 /* 1815 * In Copan's HA scheme, the "master" and "slave" roles are 1816 * figured out through the slot the controller is in. Although it 1817 * is an active/active system, someone has to be in charge. 1818 */ 1819 SYSCTL_ADD_INT(&softc->sysctl_ctx, SYSCTL_CHILDREN(softc->sysctl_tree), 1820 OID_AUTO, "ha_id", CTLFLAG_RDTUN, &softc->ha_id, 0, 1821 "HA head ID (0 - no HA)"); 1822 if (softc->ha_id == 0 || softc->ha_id > NUM_TARGET_PORT_GROUPS) { 1823 softc->flags |= CTL_FLAG_ACTIVE_SHELF; 1824 softc->is_single = 1; 1825 softc->port_cnt = CTL_MAX_PORTS; 1826 softc->port_min = 0; 1827 } else { 1828 softc->port_cnt = CTL_MAX_PORTS / NUM_TARGET_PORT_GROUPS; 1829 softc->port_min = (softc->ha_id - 1) * softc->port_cnt; 1830 } 1831 softc->port_max = softc->port_min + softc->port_cnt; 1832 softc->init_min = softc->port_min * CTL_MAX_INIT_PER_PORT; 1833 softc->init_max = softc->port_max * CTL_MAX_INIT_PER_PORT; 1834 1835 SYSCTL_ADD_INT(&softc->sysctl_ctx, SYSCTL_CHILDREN(softc->sysctl_tree), 1836 OID_AUTO, "ha_link", CTLFLAG_RD, (int *)&softc->ha_link, 0, 1837 "HA link state (0 - offline, 1 - unknown, 2 - online)"); 1838 1839 STAILQ_INIT(&softc->lun_list); 1840 STAILQ_INIT(&softc->pending_lun_queue); 1841 STAILQ_INIT(&softc->fe_list); 1842 STAILQ_INIT(&softc->port_list); 1843 STAILQ_INIT(&softc->be_list); 1844 ctl_tpc_init(softc); 1845 1846 if (ctl_pool_create(softc, "othersc", CTL_POOL_ENTRIES_OTHER_SC, 1847 &other_pool) != 0) 1848 { 1849 printf("ctl: can't allocate %d entry other SC pool, " 1850 "exiting\n", CTL_POOL_ENTRIES_OTHER_SC); 1851 return (ENOMEM); 1852 } 1853 softc->othersc_pool = other_pool; 1854 1855 if (worker_threads <= 0) 1856 worker_threads = max(1, mp_ncpus / 4); 1857 if (worker_threads > CTL_MAX_THREADS) 1858 worker_threads = CTL_MAX_THREADS; 1859 1860 for (i = 0; i < worker_threads; i++) { 1861 struct ctl_thread *thr = &softc->threads[i]; 1862 1863 mtx_init(&thr->queue_lock, "CTL queue mutex", NULL, MTX_DEF); 1864 thr->ctl_softc = softc; 1865 STAILQ_INIT(&thr->incoming_queue); 1866 STAILQ_INIT(&thr->rtr_queue); 1867 STAILQ_INIT(&thr->done_queue); 1868 STAILQ_INIT(&thr->isc_queue); 1869 1870 error = kproc_kthread_add(ctl_work_thread, thr, 1871 &softc->ctl_proc, &thr->thread, 0, 0, "ctl", "work%d", i); 1872 if (error != 0) { 1873 printf("error creating CTL work thread!\n"); 1874 ctl_pool_free(other_pool); 1875 return (error); 1876 } 1877 } 1878 error = kproc_kthread_add(ctl_lun_thread, softc, 1879 &softc->ctl_proc, NULL, 0, 0, "ctl", "lun"); 1880 if (error != 0) { 1881 printf("error creating CTL lun thread!\n"); 1882 ctl_pool_free(other_pool); 1883 return (error); 1884 } 1885 error = kproc_kthread_add(ctl_thresh_thread, softc, 1886 &softc->ctl_proc, NULL, 0, 0, "ctl", "thresh"); 1887 if (error != 0) { 1888 printf("error creating CTL threshold thread!\n"); 1889 ctl_pool_free(other_pool); 1890 return (error); 1891 } 1892 1893 SYSCTL_ADD_PROC(&softc->sysctl_ctx,SYSCTL_CHILDREN(softc->sysctl_tree), 1894 OID_AUTO, "ha_role", CTLTYPE_INT | CTLFLAG_RWTUN, 1895 softc, 0, ctl_ha_role_sysctl, "I", "HA role for this head"); 1896 1897 if (softc->is_single == 0) { 1898 ctl_frontend_register(&ha_frontend); 1899 if (ctl_ha_msg_init(softc) != CTL_HA_STATUS_SUCCESS) { 1900 printf("ctl_init: ctl_ha_msg_init failed.\n"); 1901 softc->is_single = 1; 1902 } else 1903 if (ctl_ha_msg_register(CTL_HA_CHAN_CTL, ctl_isc_event_handler) 1904 != CTL_HA_STATUS_SUCCESS) { 1905 printf("ctl_init: ctl_ha_msg_register failed.\n"); 1906 softc->is_single = 1; 1907 } 1908 } 1909 return (0); 1910 } 1911 1912 void 1913 ctl_shutdown(void) 1914 { 1915 struct ctl_softc *softc = control_softc; 1916 struct ctl_lun *lun, *next_lun; 1917 1918 if (softc->is_single == 0) { 1919 ctl_ha_msg_shutdown(softc); 1920 if (ctl_ha_msg_deregister(CTL_HA_CHAN_CTL) 1921 != CTL_HA_STATUS_SUCCESS) 1922 printf("%s: ctl_ha_msg_deregister failed.\n", __func__); 1923 if (ctl_ha_msg_destroy(softc) != CTL_HA_STATUS_SUCCESS) 1924 printf("%s: ctl_ha_msg_destroy failed.\n", __func__); 1925 ctl_frontend_deregister(&ha_frontend); 1926 } 1927 1928 mtx_lock(&softc->ctl_lock); 1929 1930 STAILQ_FOREACH_SAFE(lun, &softc->lun_list, links, next_lun) 1931 ctl_free_lun(lun); 1932 1933 mtx_unlock(&softc->ctl_lock); 1934 1935 #if 0 1936 ctl_shutdown_thread(softc->work_thread); 1937 mtx_destroy(&softc->queue_lock); 1938 #endif 1939 1940 ctl_tpc_shutdown(softc); 1941 uma_zdestroy(softc->io_zone); 1942 mtx_destroy(&softc->ctl_lock); 1943 1944 destroy_dev(softc->dev); 1945 1946 sysctl_ctx_free(&softc->sysctl_ctx); 1947 1948 free(control_softc, M_DEVBUF); 1949 control_softc = NULL; 1950 } 1951 1952 static int 1953 ctl_module_event_handler(module_t mod, int what, void *arg) 1954 { 1955 1956 switch (what) { 1957 case MOD_LOAD: 1958 return (ctl_init()); 1959 case MOD_UNLOAD: 1960 return (EBUSY); 1961 default: 1962 return (EOPNOTSUPP); 1963 } 1964 } 1965 1966 /* 1967 * XXX KDM should we do some access checks here? Bump a reference count to 1968 * prevent a CTL module from being unloaded while someone has it open? 1969 */ 1970 static int 1971 ctl_open(struct cdev *dev, int flags, int fmt, struct thread *td) 1972 { 1973 return (0); 1974 } 1975 1976 static int 1977 ctl_close(struct cdev *dev, int flags, int fmt, struct thread *td) 1978 { 1979 return (0); 1980 } 1981 1982 /* 1983 * Remove an initiator by port number and initiator ID. 1984 * Returns 0 for success, -1 for failure. 1985 */ 1986 int 1987 ctl_remove_initiator(struct ctl_port *port, int iid) 1988 { 1989 struct ctl_softc *softc = port->ctl_softc; 1990 1991 mtx_assert(&softc->ctl_lock, MA_NOTOWNED); 1992 1993 if (iid > CTL_MAX_INIT_PER_PORT) { 1994 printf("%s: initiator ID %u > maximun %u!\n", 1995 __func__, iid, CTL_MAX_INIT_PER_PORT); 1996 return (-1); 1997 } 1998 1999 mtx_lock(&softc->ctl_lock); 2000 port->wwpn_iid[iid].in_use--; 2001 port->wwpn_iid[iid].last_use = time_uptime; 2002 mtx_unlock(&softc->ctl_lock); 2003 ctl_isc_announce_iid(port, iid); 2004 2005 return (0); 2006 } 2007 2008 /* 2009 * Add an initiator to the initiator map. 2010 * Returns iid for success, < 0 for failure. 2011 */ 2012 int 2013 ctl_add_initiator(struct ctl_port *port, int iid, uint64_t wwpn, char *name) 2014 { 2015 struct ctl_softc *softc = port->ctl_softc; 2016 time_t best_time; 2017 int i, best; 2018 2019 mtx_assert(&softc->ctl_lock, MA_NOTOWNED); 2020 2021 if (iid >= CTL_MAX_INIT_PER_PORT) { 2022 printf("%s: WWPN %#jx initiator ID %u > maximum %u!\n", 2023 __func__, wwpn, iid, CTL_MAX_INIT_PER_PORT); 2024 free(name, M_CTL); 2025 return (-1); 2026 } 2027 2028 mtx_lock(&softc->ctl_lock); 2029 2030 if (iid < 0 && (wwpn != 0 || name != NULL)) { 2031 for (i = 0; i < CTL_MAX_INIT_PER_PORT; i++) { 2032 if (wwpn != 0 && wwpn == port->wwpn_iid[i].wwpn) { 2033 iid = i; 2034 break; 2035 } 2036 if (name != NULL && port->wwpn_iid[i].name != NULL && 2037 strcmp(name, port->wwpn_iid[i].name) == 0) { 2038 iid = i; 2039 break; 2040 } 2041 } 2042 } 2043 2044 if (iid < 0) { 2045 for (i = 0; i < CTL_MAX_INIT_PER_PORT; i++) { 2046 if (port->wwpn_iid[i].in_use == 0 && 2047 port->wwpn_iid[i].wwpn == 0 && 2048 port->wwpn_iid[i].name == NULL) { 2049 iid = i; 2050 break; 2051 } 2052 } 2053 } 2054 2055 if (iid < 0) { 2056 best = -1; 2057 best_time = INT32_MAX; 2058 for (i = 0; i < CTL_MAX_INIT_PER_PORT; i++) { 2059 if (port->wwpn_iid[i].in_use == 0) { 2060 if (port->wwpn_iid[i].last_use < best_time) { 2061 best = i; 2062 best_time = port->wwpn_iid[i].last_use; 2063 } 2064 } 2065 } 2066 iid = best; 2067 } 2068 2069 if (iid < 0) { 2070 mtx_unlock(&softc->ctl_lock); 2071 free(name, M_CTL); 2072 return (-2); 2073 } 2074 2075 if (port->wwpn_iid[iid].in_use > 0 && (wwpn != 0 || name != NULL)) { 2076 /* 2077 * This is not an error yet. 2078 */ 2079 if (wwpn != 0 && wwpn == port->wwpn_iid[iid].wwpn) { 2080 #if 0 2081 printf("%s: port %d iid %u WWPN %#jx arrived" 2082 " again\n", __func__, port->targ_port, 2083 iid, (uintmax_t)wwpn); 2084 #endif 2085 goto take; 2086 } 2087 if (name != NULL && port->wwpn_iid[iid].name != NULL && 2088 strcmp(name, port->wwpn_iid[iid].name) == 0) { 2089 #if 0 2090 printf("%s: port %d iid %u name '%s' arrived" 2091 " again\n", __func__, port->targ_port, 2092 iid, name); 2093 #endif 2094 goto take; 2095 } 2096 2097 /* 2098 * This is an error, but what do we do about it? The 2099 * driver is telling us we have a new WWPN for this 2100 * initiator ID, so we pretty much need to use it. 2101 */ 2102 printf("%s: port %d iid %u WWPN %#jx '%s' arrived," 2103 " but WWPN %#jx '%s' is still at that address\n", 2104 __func__, port->targ_port, iid, wwpn, name, 2105 (uintmax_t)port->wwpn_iid[iid].wwpn, 2106 port->wwpn_iid[iid].name); 2107 2108 /* 2109 * XXX KDM clear have_ca and ua_pending on each LUN for 2110 * this initiator. 2111 */ 2112 } 2113 take: 2114 free(port->wwpn_iid[iid].name, M_CTL); 2115 port->wwpn_iid[iid].name = name; 2116 port->wwpn_iid[iid].wwpn = wwpn; 2117 port->wwpn_iid[iid].in_use++; 2118 mtx_unlock(&softc->ctl_lock); 2119 ctl_isc_announce_iid(port, iid); 2120 2121 return (iid); 2122 } 2123 2124 static int 2125 ctl_create_iid(struct ctl_port *port, int iid, uint8_t *buf) 2126 { 2127 int len; 2128 2129 switch (port->port_type) { 2130 case CTL_PORT_FC: 2131 { 2132 struct scsi_transportid_fcp *id = 2133 (struct scsi_transportid_fcp *)buf; 2134 if (port->wwpn_iid[iid].wwpn == 0) 2135 return (0); 2136 memset(id, 0, sizeof(*id)); 2137 id->format_protocol = SCSI_PROTO_FC; 2138 scsi_u64to8b(port->wwpn_iid[iid].wwpn, id->n_port_name); 2139 return (sizeof(*id)); 2140 } 2141 case CTL_PORT_ISCSI: 2142 { 2143 struct scsi_transportid_iscsi_port *id = 2144 (struct scsi_transportid_iscsi_port *)buf; 2145 if (port->wwpn_iid[iid].name == NULL) 2146 return (0); 2147 memset(id, 0, 256); 2148 id->format_protocol = SCSI_TRN_ISCSI_FORMAT_PORT | 2149 SCSI_PROTO_ISCSI; 2150 len = strlcpy(id->iscsi_name, port->wwpn_iid[iid].name, 252) + 1; 2151 len = roundup2(min(len, 252), 4); 2152 scsi_ulto2b(len, id->additional_length); 2153 return (sizeof(*id) + len); 2154 } 2155 case CTL_PORT_SAS: 2156 { 2157 struct scsi_transportid_sas *id = 2158 (struct scsi_transportid_sas *)buf; 2159 if (port->wwpn_iid[iid].wwpn == 0) 2160 return (0); 2161 memset(id, 0, sizeof(*id)); 2162 id->format_protocol = SCSI_PROTO_SAS; 2163 scsi_u64to8b(port->wwpn_iid[iid].wwpn, id->sas_address); 2164 return (sizeof(*id)); 2165 } 2166 default: 2167 { 2168 struct scsi_transportid_spi *id = 2169 (struct scsi_transportid_spi *)buf; 2170 memset(id, 0, sizeof(*id)); 2171 id->format_protocol = SCSI_PROTO_SPI; 2172 scsi_ulto2b(iid, id->scsi_addr); 2173 scsi_ulto2b(port->targ_port, id->rel_trgt_port_id); 2174 return (sizeof(*id)); 2175 } 2176 } 2177 } 2178 2179 /* 2180 * Serialize a command that went down the "wrong" side, and so was sent to 2181 * this controller for execution. The logic is a little different than the 2182 * standard case in ctl_scsiio_precheck(). Errors in this case need to get 2183 * sent back to the other side, but in the success case, we execute the 2184 * command on this side (XFER mode) or tell the other side to execute it 2185 * (SER_ONLY mode). 2186 */ 2187 static int 2188 ctl_serialize_other_sc_cmd(struct ctl_scsiio *ctsio) 2189 { 2190 struct ctl_softc *softc = control_softc; 2191 union ctl_ha_msg msg_info; 2192 struct ctl_port *port; 2193 struct ctl_lun *lun; 2194 const struct ctl_cmd_entry *entry; 2195 int retval = 0; 2196 uint32_t targ_lun; 2197 2198 targ_lun = ctsio->io_hdr.nexus.targ_mapped_lun; 2199 mtx_lock(&softc->ctl_lock); 2200 2201 /* Make sure that we know about this port. */ 2202 port = ctl_io_port(&ctsio->io_hdr); 2203 if (port == NULL || (port->status & CTL_PORT_STATUS_ONLINE) == 0) { 2204 ctl_set_internal_failure(ctsio, /*sks_valid*/ 0, 2205 /*retry_count*/ 1); 2206 goto badjuju; 2207 } 2208 2209 /* Make sure that we know about this LUN. */ 2210 if ((targ_lun < CTL_MAX_LUNS) && 2211 ((lun = softc->ctl_luns[targ_lun]) != NULL)) { 2212 mtx_lock(&lun->lun_lock); 2213 mtx_unlock(&softc->ctl_lock); 2214 /* 2215 * If the LUN is invalid, pretend that it doesn't exist. 2216 * It will go away as soon as all pending I/O has been 2217 * completed. 2218 */ 2219 if (lun->flags & CTL_LUN_DISABLED) { 2220 mtx_unlock(&lun->lun_lock); 2221 lun = NULL; 2222 } 2223 } else { 2224 mtx_unlock(&softc->ctl_lock); 2225 lun = NULL; 2226 } 2227 if (lun == NULL) { 2228 /* 2229 * The other node would not send this request to us unless 2230 * received announce that we are primary node for this LUN. 2231 * If this LUN does not exist now, it is probably result of 2232 * a race, so respond to initiator in the most opaque way. 2233 */ 2234 ctl_set_busy(ctsio); 2235 goto badjuju; 2236 } 2237 2238 entry = ctl_get_cmd_entry(ctsio, NULL); 2239 if (ctl_scsiio_lun_check(lun, entry, ctsio) != 0) { 2240 mtx_unlock(&lun->lun_lock); 2241 goto badjuju; 2242 } 2243 2244 ctsio->io_hdr.ctl_private[CTL_PRIV_LUN].ptr = lun; 2245 ctsio->io_hdr.ctl_private[CTL_PRIV_BACKEND_LUN].ptr = lun->be_lun; 2246 2247 /* 2248 * Every I/O goes into the OOA queue for a 2249 * particular LUN, and stays there until completion. 2250 */ 2251 #ifdef CTL_TIME_IO 2252 if (TAILQ_EMPTY(&lun->ooa_queue)) 2253 lun->idle_time += getsbinuptime() - lun->last_busy; 2254 #endif 2255 TAILQ_INSERT_TAIL(&lun->ooa_queue, &ctsio->io_hdr, ooa_links); 2256 2257 switch (ctl_check_ooa(lun, (union ctl_io *)ctsio, 2258 (union ctl_io *)TAILQ_PREV(&ctsio->io_hdr, ctl_ooaq, 2259 ooa_links))) { 2260 case CTL_ACTION_BLOCK: 2261 ctsio->io_hdr.flags |= CTL_FLAG_BLOCKED; 2262 TAILQ_INSERT_TAIL(&lun->blocked_queue, &ctsio->io_hdr, 2263 blocked_links); 2264 mtx_unlock(&lun->lun_lock); 2265 break; 2266 case CTL_ACTION_PASS: 2267 case CTL_ACTION_SKIP: 2268 if (softc->ha_mode == CTL_HA_MODE_XFER) { 2269 ctsio->io_hdr.flags |= CTL_FLAG_IS_WAS_ON_RTR; 2270 ctl_enqueue_rtr((union ctl_io *)ctsio); 2271 mtx_unlock(&lun->lun_lock); 2272 } else { 2273 ctsio->io_hdr.flags &= ~CTL_FLAG_IO_ACTIVE; 2274 mtx_unlock(&lun->lun_lock); 2275 2276 /* send msg back to other side */ 2277 msg_info.hdr.original_sc = ctsio->io_hdr.original_sc; 2278 msg_info.hdr.serializing_sc = (union ctl_io *)ctsio; 2279 msg_info.hdr.msg_type = CTL_MSG_R2R; 2280 ctl_ha_msg_send(CTL_HA_CHAN_CTL, &msg_info, 2281 sizeof(msg_info.hdr), M_WAITOK); 2282 } 2283 break; 2284 case CTL_ACTION_OVERLAP: 2285 TAILQ_REMOVE(&lun->ooa_queue, &ctsio->io_hdr, ooa_links); 2286 mtx_unlock(&lun->lun_lock); 2287 ctl_set_overlapped_cmd(ctsio); 2288 goto badjuju; 2289 case CTL_ACTION_OVERLAP_TAG: 2290 TAILQ_REMOVE(&lun->ooa_queue, &ctsio->io_hdr, ooa_links); 2291 mtx_unlock(&lun->lun_lock); 2292 ctl_set_overlapped_tag(ctsio, ctsio->tag_num); 2293 goto badjuju; 2294 case CTL_ACTION_ERROR: 2295 default: 2296 TAILQ_REMOVE(&lun->ooa_queue, &ctsio->io_hdr, ooa_links); 2297 mtx_unlock(&lun->lun_lock); 2298 2299 ctl_set_internal_failure(ctsio, /*sks_valid*/ 0, 2300 /*retry_count*/ 0); 2301 badjuju: 2302 ctl_copy_sense_data_back((union ctl_io *)ctsio, &msg_info); 2303 msg_info.hdr.original_sc = ctsio->io_hdr.original_sc; 2304 msg_info.hdr.serializing_sc = NULL; 2305 msg_info.hdr.msg_type = CTL_MSG_BAD_JUJU; 2306 ctl_ha_msg_send(CTL_HA_CHAN_CTL, &msg_info, 2307 sizeof(msg_info.scsi), M_WAITOK); 2308 retval = 1; 2309 break; 2310 } 2311 return (retval); 2312 } 2313 2314 /* 2315 * Returns 0 for success, errno for failure. 2316 */ 2317 static void 2318 ctl_ioctl_fill_ooa(struct ctl_lun *lun, uint32_t *cur_fill_num, 2319 struct ctl_ooa *ooa_hdr, struct ctl_ooa_entry *kern_entries) 2320 { 2321 union ctl_io *io; 2322 2323 mtx_lock(&lun->lun_lock); 2324 for (io = (union ctl_io *)TAILQ_FIRST(&lun->ooa_queue); (io != NULL); 2325 (*cur_fill_num)++, io = (union ctl_io *)TAILQ_NEXT(&io->io_hdr, 2326 ooa_links)) { 2327 struct ctl_ooa_entry *entry; 2328 2329 /* 2330 * If we've got more than we can fit, just count the 2331 * remaining entries. 2332 */ 2333 if (*cur_fill_num >= ooa_hdr->alloc_num) 2334 continue; 2335 2336 entry = &kern_entries[*cur_fill_num]; 2337 2338 entry->tag_num = io->scsiio.tag_num; 2339 entry->lun_num = lun->lun; 2340 #ifdef CTL_TIME_IO 2341 entry->start_bt = io->io_hdr.start_bt; 2342 #endif 2343 bcopy(io->scsiio.cdb, entry->cdb, io->scsiio.cdb_len); 2344 entry->cdb_len = io->scsiio.cdb_len; 2345 if (io->io_hdr.flags & CTL_FLAG_BLOCKED) 2346 entry->cmd_flags |= CTL_OOACMD_FLAG_BLOCKED; 2347 2348 if (io->io_hdr.flags & CTL_FLAG_DMA_INPROG) 2349 entry->cmd_flags |= CTL_OOACMD_FLAG_DMA; 2350 2351 if (io->io_hdr.flags & CTL_FLAG_ABORT) 2352 entry->cmd_flags |= CTL_OOACMD_FLAG_ABORT; 2353 2354 if (io->io_hdr.flags & CTL_FLAG_IS_WAS_ON_RTR) 2355 entry->cmd_flags |= CTL_OOACMD_FLAG_RTR; 2356 2357 if (io->io_hdr.flags & CTL_FLAG_DMA_QUEUED) 2358 entry->cmd_flags |= CTL_OOACMD_FLAG_DMA_QUEUED; 2359 } 2360 mtx_unlock(&lun->lun_lock); 2361 } 2362 2363 static void * 2364 ctl_copyin_alloc(void *user_addr, int len, char *error_str, 2365 size_t error_str_len) 2366 { 2367 void *kptr; 2368 2369 kptr = malloc(len, M_CTL, M_WAITOK | M_ZERO); 2370 2371 if (copyin(user_addr, kptr, len) != 0) { 2372 snprintf(error_str, error_str_len, "Error copying %d bytes " 2373 "from user address %p to kernel address %p", len, 2374 user_addr, kptr); 2375 free(kptr, M_CTL); 2376 return (NULL); 2377 } 2378 2379 return (kptr); 2380 } 2381 2382 static void 2383 ctl_free_args(int num_args, struct ctl_be_arg *args) 2384 { 2385 int i; 2386 2387 if (args == NULL) 2388 return; 2389 2390 for (i = 0; i < num_args; i++) { 2391 free(args[i].kname, M_CTL); 2392 free(args[i].kvalue, M_CTL); 2393 } 2394 2395 free(args, M_CTL); 2396 } 2397 2398 static struct ctl_be_arg * 2399 ctl_copyin_args(int num_args, struct ctl_be_arg *uargs, 2400 char *error_str, size_t error_str_len) 2401 { 2402 struct ctl_be_arg *args; 2403 int i; 2404 2405 args = ctl_copyin_alloc(uargs, num_args * sizeof(*args), 2406 error_str, error_str_len); 2407 2408 if (args == NULL) 2409 goto bailout; 2410 2411 for (i = 0; i < num_args; i++) { 2412 args[i].kname = NULL; 2413 args[i].kvalue = NULL; 2414 } 2415 2416 for (i = 0; i < num_args; i++) { 2417 uint8_t *tmpptr; 2418 2419 args[i].kname = ctl_copyin_alloc(args[i].name, 2420 args[i].namelen, error_str, error_str_len); 2421 if (args[i].kname == NULL) 2422 goto bailout; 2423 2424 if (args[i].kname[args[i].namelen - 1] != '\0') { 2425 snprintf(error_str, error_str_len, "Argument %d " 2426 "name is not NUL-terminated", i); 2427 goto bailout; 2428 } 2429 2430 if (args[i].flags & CTL_BEARG_RD) { 2431 tmpptr = ctl_copyin_alloc(args[i].value, 2432 args[i].vallen, error_str, error_str_len); 2433 if (tmpptr == NULL) 2434 goto bailout; 2435 if ((args[i].flags & CTL_BEARG_ASCII) 2436 && (tmpptr[args[i].vallen - 1] != '\0')) { 2437 snprintf(error_str, error_str_len, "Argument " 2438 "%d value is not NUL-terminated", i); 2439 goto bailout; 2440 } 2441 args[i].kvalue = tmpptr; 2442 } else { 2443 args[i].kvalue = malloc(args[i].vallen, 2444 M_CTL, M_WAITOK | M_ZERO); 2445 } 2446 } 2447 2448 return (args); 2449 bailout: 2450 2451 ctl_free_args(num_args, args); 2452 2453 return (NULL); 2454 } 2455 2456 static void 2457 ctl_copyout_args(int num_args, struct ctl_be_arg *args) 2458 { 2459 int i; 2460 2461 for (i = 0; i < num_args; i++) { 2462 if (args[i].flags & CTL_BEARG_WR) 2463 copyout(args[i].kvalue, args[i].value, args[i].vallen); 2464 } 2465 } 2466 2467 /* 2468 * Escape characters that are illegal or not recommended in XML. 2469 */ 2470 int 2471 ctl_sbuf_printf_esc(struct sbuf *sb, char *str, int size) 2472 { 2473 char *end = str + size; 2474 int retval; 2475 2476 retval = 0; 2477 2478 for (; *str && str < end; str++) { 2479 switch (*str) { 2480 case '&': 2481 retval = sbuf_printf(sb, "&"); 2482 break; 2483 case '>': 2484 retval = sbuf_printf(sb, ">"); 2485 break; 2486 case '<': 2487 retval = sbuf_printf(sb, "<"); 2488 break; 2489 default: 2490 retval = sbuf_putc(sb, *str); 2491 break; 2492 } 2493 2494 if (retval != 0) 2495 break; 2496 2497 } 2498 2499 return (retval); 2500 } 2501 2502 static void 2503 ctl_id_sbuf(struct ctl_devid *id, struct sbuf *sb) 2504 { 2505 struct scsi_vpd_id_descriptor *desc; 2506 int i; 2507 2508 if (id == NULL || id->len < 4) 2509 return; 2510 desc = (struct scsi_vpd_id_descriptor *)id->data; 2511 switch (desc->id_type & SVPD_ID_TYPE_MASK) { 2512 case SVPD_ID_TYPE_T10: 2513 sbuf_printf(sb, "t10."); 2514 break; 2515 case SVPD_ID_TYPE_EUI64: 2516 sbuf_printf(sb, "eui."); 2517 break; 2518 case SVPD_ID_TYPE_NAA: 2519 sbuf_printf(sb, "naa."); 2520 break; 2521 case SVPD_ID_TYPE_SCSI_NAME: 2522 break; 2523 } 2524 switch (desc->proto_codeset & SVPD_ID_CODESET_MASK) { 2525 case SVPD_ID_CODESET_BINARY: 2526 for (i = 0; i < desc->length; i++) 2527 sbuf_printf(sb, "%02x", desc->identifier[i]); 2528 break; 2529 case SVPD_ID_CODESET_ASCII: 2530 sbuf_printf(sb, "%.*s", (int)desc->length, 2531 (char *)desc->identifier); 2532 break; 2533 case SVPD_ID_CODESET_UTF8: 2534 sbuf_printf(sb, "%s", (char *)desc->identifier); 2535 break; 2536 } 2537 } 2538 2539 static int 2540 ctl_ioctl(struct cdev *dev, u_long cmd, caddr_t addr, int flag, 2541 struct thread *td) 2542 { 2543 struct ctl_softc *softc = dev->si_drv1; 2544 struct ctl_lun *lun; 2545 int retval; 2546 2547 retval = 0; 2548 2549 switch (cmd) { 2550 case CTL_IO: 2551 retval = ctl_ioctl_io(dev, cmd, addr, flag, td); 2552 break; 2553 case CTL_ENABLE_PORT: 2554 case CTL_DISABLE_PORT: 2555 case CTL_SET_PORT_WWNS: { 2556 struct ctl_port *port; 2557 struct ctl_port_entry *entry; 2558 2559 entry = (struct ctl_port_entry *)addr; 2560 2561 mtx_lock(&softc->ctl_lock); 2562 STAILQ_FOREACH(port, &softc->port_list, links) { 2563 int action, done; 2564 2565 if (port->targ_port < softc->port_min || 2566 port->targ_port >= softc->port_max) 2567 continue; 2568 2569 action = 0; 2570 done = 0; 2571 if ((entry->port_type == CTL_PORT_NONE) 2572 && (entry->targ_port == port->targ_port)) { 2573 /* 2574 * If the user only wants to enable or 2575 * disable or set WWNs on a specific port, 2576 * do the operation and we're done. 2577 */ 2578 action = 1; 2579 done = 1; 2580 } else if (entry->port_type & port->port_type) { 2581 /* 2582 * Compare the user's type mask with the 2583 * particular frontend type to see if we 2584 * have a match. 2585 */ 2586 action = 1; 2587 done = 0; 2588 2589 /* 2590 * Make sure the user isn't trying to set 2591 * WWNs on multiple ports at the same time. 2592 */ 2593 if (cmd == CTL_SET_PORT_WWNS) { 2594 printf("%s: Can't set WWNs on " 2595 "multiple ports\n", __func__); 2596 retval = EINVAL; 2597 break; 2598 } 2599 } 2600 if (action == 0) 2601 continue; 2602 2603 /* 2604 * XXX KDM we have to drop the lock here, because 2605 * the online/offline operations can potentially 2606 * block. We need to reference count the frontends 2607 * so they can't go away, 2608 */ 2609 if (cmd == CTL_ENABLE_PORT) { 2610 mtx_unlock(&softc->ctl_lock); 2611 ctl_port_online(port); 2612 mtx_lock(&softc->ctl_lock); 2613 } else if (cmd == CTL_DISABLE_PORT) { 2614 mtx_unlock(&softc->ctl_lock); 2615 ctl_port_offline(port); 2616 mtx_lock(&softc->ctl_lock); 2617 } else if (cmd == CTL_SET_PORT_WWNS) { 2618 ctl_port_set_wwns(port, 2619 (entry->flags & CTL_PORT_WWNN_VALID) ? 2620 1 : 0, entry->wwnn, 2621 (entry->flags & CTL_PORT_WWPN_VALID) ? 2622 1 : 0, entry->wwpn); 2623 } 2624 if (done != 0) 2625 break; 2626 } 2627 mtx_unlock(&softc->ctl_lock); 2628 break; 2629 } 2630 case CTL_GET_OOA: { 2631 struct ctl_ooa *ooa_hdr; 2632 struct ctl_ooa_entry *entries; 2633 uint32_t cur_fill_num; 2634 2635 ooa_hdr = (struct ctl_ooa *)addr; 2636 2637 if ((ooa_hdr->alloc_len == 0) 2638 || (ooa_hdr->alloc_num == 0)) { 2639 printf("%s: CTL_GET_OOA: alloc len %u and alloc num %u " 2640 "must be non-zero\n", __func__, 2641 ooa_hdr->alloc_len, ooa_hdr->alloc_num); 2642 retval = EINVAL; 2643 break; 2644 } 2645 2646 if (ooa_hdr->alloc_len != (ooa_hdr->alloc_num * 2647 sizeof(struct ctl_ooa_entry))) { 2648 printf("%s: CTL_GET_OOA: alloc len %u must be alloc " 2649 "num %d * sizeof(struct ctl_ooa_entry) %zd\n", 2650 __func__, ooa_hdr->alloc_len, 2651 ooa_hdr->alloc_num,sizeof(struct ctl_ooa_entry)); 2652 retval = EINVAL; 2653 break; 2654 } 2655 2656 entries = malloc(ooa_hdr->alloc_len, M_CTL, M_WAITOK | M_ZERO); 2657 if (entries == NULL) { 2658 printf("%s: could not allocate %d bytes for OOA " 2659 "dump\n", __func__, ooa_hdr->alloc_len); 2660 retval = ENOMEM; 2661 break; 2662 } 2663 2664 mtx_lock(&softc->ctl_lock); 2665 if (((ooa_hdr->flags & CTL_OOA_FLAG_ALL_LUNS) == 0) 2666 && ((ooa_hdr->lun_num >= CTL_MAX_LUNS) 2667 || (softc->ctl_luns[ooa_hdr->lun_num] == NULL))) { 2668 mtx_unlock(&softc->ctl_lock); 2669 free(entries, M_CTL); 2670 printf("%s: CTL_GET_OOA: invalid LUN %ju\n", 2671 __func__, (uintmax_t)ooa_hdr->lun_num); 2672 retval = EINVAL; 2673 break; 2674 } 2675 2676 cur_fill_num = 0; 2677 2678 if (ooa_hdr->flags & CTL_OOA_FLAG_ALL_LUNS) { 2679 STAILQ_FOREACH(lun, &softc->lun_list, links) { 2680 ctl_ioctl_fill_ooa(lun, &cur_fill_num, 2681 ooa_hdr, entries); 2682 } 2683 } else { 2684 lun = softc->ctl_luns[ooa_hdr->lun_num]; 2685 ctl_ioctl_fill_ooa(lun, &cur_fill_num, ooa_hdr, 2686 entries); 2687 } 2688 mtx_unlock(&softc->ctl_lock); 2689 2690 ooa_hdr->fill_num = min(cur_fill_num, ooa_hdr->alloc_num); 2691 ooa_hdr->fill_len = ooa_hdr->fill_num * 2692 sizeof(struct ctl_ooa_entry); 2693 retval = copyout(entries, ooa_hdr->entries, ooa_hdr->fill_len); 2694 if (retval != 0) { 2695 printf("%s: error copying out %d bytes for OOA dump\n", 2696 __func__, ooa_hdr->fill_len); 2697 } 2698 2699 getbinuptime(&ooa_hdr->cur_bt); 2700 2701 if (cur_fill_num > ooa_hdr->alloc_num) { 2702 ooa_hdr->dropped_num = cur_fill_num -ooa_hdr->alloc_num; 2703 ooa_hdr->status = CTL_OOA_NEED_MORE_SPACE; 2704 } else { 2705 ooa_hdr->dropped_num = 0; 2706 ooa_hdr->status = CTL_OOA_OK; 2707 } 2708 2709 free(entries, M_CTL); 2710 break; 2711 } 2712 case CTL_DELAY_IO: { 2713 struct ctl_io_delay_info *delay_info; 2714 2715 delay_info = (struct ctl_io_delay_info *)addr; 2716 2717 #ifdef CTL_IO_DELAY 2718 mtx_lock(&softc->ctl_lock); 2719 2720 if ((delay_info->lun_id >= CTL_MAX_LUNS) 2721 || (softc->ctl_luns[delay_info->lun_id] == NULL)) { 2722 delay_info->status = CTL_DELAY_STATUS_INVALID_LUN; 2723 } else { 2724 lun = softc->ctl_luns[delay_info->lun_id]; 2725 mtx_lock(&lun->lun_lock); 2726 2727 delay_info->status = CTL_DELAY_STATUS_OK; 2728 2729 switch (delay_info->delay_type) { 2730 case CTL_DELAY_TYPE_CONT: 2731 break; 2732 case CTL_DELAY_TYPE_ONESHOT: 2733 break; 2734 default: 2735 delay_info->status = 2736 CTL_DELAY_STATUS_INVALID_TYPE; 2737 break; 2738 } 2739 2740 switch (delay_info->delay_loc) { 2741 case CTL_DELAY_LOC_DATAMOVE: 2742 lun->delay_info.datamove_type = 2743 delay_info->delay_type; 2744 lun->delay_info.datamove_delay = 2745 delay_info->delay_secs; 2746 break; 2747 case CTL_DELAY_LOC_DONE: 2748 lun->delay_info.done_type = 2749 delay_info->delay_type; 2750 lun->delay_info.done_delay = 2751 delay_info->delay_secs; 2752 break; 2753 default: 2754 delay_info->status = 2755 CTL_DELAY_STATUS_INVALID_LOC; 2756 break; 2757 } 2758 mtx_unlock(&lun->lun_lock); 2759 } 2760 2761 mtx_unlock(&softc->ctl_lock); 2762 #else 2763 delay_info->status = CTL_DELAY_STATUS_NOT_IMPLEMENTED; 2764 #endif /* CTL_IO_DELAY */ 2765 break; 2766 } 2767 case CTL_GETSTATS: { 2768 struct ctl_stats *stats; 2769 int i; 2770 2771 stats = (struct ctl_stats *)addr; 2772 2773 if ((sizeof(struct ctl_lun_io_stats) * softc->num_luns) > 2774 stats->alloc_len) { 2775 stats->status = CTL_SS_NEED_MORE_SPACE; 2776 stats->num_luns = softc->num_luns; 2777 break; 2778 } 2779 /* 2780 * XXX KDM no locking here. If the LUN list changes, 2781 * things can blow up. 2782 */ 2783 i = 0; 2784 STAILQ_FOREACH(lun, &softc->lun_list, links) { 2785 retval = copyout(&lun->stats, &stats->lun_stats[i++], 2786 sizeof(lun->stats)); 2787 if (retval != 0) 2788 break; 2789 } 2790 stats->num_luns = softc->num_luns; 2791 stats->fill_len = sizeof(struct ctl_lun_io_stats) * 2792 softc->num_luns; 2793 stats->status = CTL_SS_OK; 2794 #ifdef CTL_TIME_IO 2795 stats->flags = CTL_STATS_FLAG_TIME_VALID; 2796 #else 2797 stats->flags = CTL_STATS_FLAG_NONE; 2798 #endif 2799 getnanouptime(&stats->timestamp); 2800 break; 2801 } 2802 case CTL_ERROR_INJECT: { 2803 struct ctl_error_desc *err_desc, *new_err_desc; 2804 2805 err_desc = (struct ctl_error_desc *)addr; 2806 2807 new_err_desc = malloc(sizeof(*new_err_desc), M_CTL, 2808 M_WAITOK | M_ZERO); 2809 bcopy(err_desc, new_err_desc, sizeof(*new_err_desc)); 2810 2811 mtx_lock(&softc->ctl_lock); 2812 lun = softc->ctl_luns[err_desc->lun_id]; 2813 if (lun == NULL) { 2814 mtx_unlock(&softc->ctl_lock); 2815 free(new_err_desc, M_CTL); 2816 printf("%s: CTL_ERROR_INJECT: invalid LUN %ju\n", 2817 __func__, (uintmax_t)err_desc->lun_id); 2818 retval = EINVAL; 2819 break; 2820 } 2821 mtx_lock(&lun->lun_lock); 2822 mtx_unlock(&softc->ctl_lock); 2823 2824 /* 2825 * We could do some checking here to verify the validity 2826 * of the request, but given the complexity of error 2827 * injection requests, the checking logic would be fairly 2828 * complex. 2829 * 2830 * For now, if the request is invalid, it just won't get 2831 * executed and might get deleted. 2832 */ 2833 STAILQ_INSERT_TAIL(&lun->error_list, new_err_desc, links); 2834 2835 /* 2836 * XXX KDM check to make sure the serial number is unique, 2837 * in case we somehow manage to wrap. That shouldn't 2838 * happen for a very long time, but it's the right thing to 2839 * do. 2840 */ 2841 new_err_desc->serial = lun->error_serial; 2842 err_desc->serial = lun->error_serial; 2843 lun->error_serial++; 2844 2845 mtx_unlock(&lun->lun_lock); 2846 break; 2847 } 2848 case CTL_ERROR_INJECT_DELETE: { 2849 struct ctl_error_desc *delete_desc, *desc, *desc2; 2850 int delete_done; 2851 2852 delete_desc = (struct ctl_error_desc *)addr; 2853 delete_done = 0; 2854 2855 mtx_lock(&softc->ctl_lock); 2856 lun = softc->ctl_luns[delete_desc->lun_id]; 2857 if (lun == NULL) { 2858 mtx_unlock(&softc->ctl_lock); 2859 printf("%s: CTL_ERROR_INJECT_DELETE: invalid LUN %ju\n", 2860 __func__, (uintmax_t)delete_desc->lun_id); 2861 retval = EINVAL; 2862 break; 2863 } 2864 mtx_lock(&lun->lun_lock); 2865 mtx_unlock(&softc->ctl_lock); 2866 STAILQ_FOREACH_SAFE(desc, &lun->error_list, links, desc2) { 2867 if (desc->serial != delete_desc->serial) 2868 continue; 2869 2870 STAILQ_REMOVE(&lun->error_list, desc, ctl_error_desc, 2871 links); 2872 free(desc, M_CTL); 2873 delete_done = 1; 2874 } 2875 mtx_unlock(&lun->lun_lock); 2876 if (delete_done == 0) { 2877 printf("%s: CTL_ERROR_INJECT_DELETE: can't find " 2878 "error serial %ju on LUN %u\n", __func__, 2879 delete_desc->serial, delete_desc->lun_id); 2880 retval = EINVAL; 2881 break; 2882 } 2883 break; 2884 } 2885 case CTL_DUMP_STRUCTS: { 2886 int i, j, k; 2887 struct ctl_port *port; 2888 struct ctl_frontend *fe; 2889 2890 mtx_lock(&softc->ctl_lock); 2891 printf("CTL Persistent Reservation information start:\n"); 2892 for (i = 0; i < CTL_MAX_LUNS; i++) { 2893 lun = softc->ctl_luns[i]; 2894 2895 if ((lun == NULL) 2896 || ((lun->flags & CTL_LUN_DISABLED) != 0)) 2897 continue; 2898 2899 for (j = 0; j < CTL_MAX_PORTS; j++) { 2900 if (lun->pr_keys[j] == NULL) 2901 continue; 2902 for (k = 0; k < CTL_MAX_INIT_PER_PORT; k++){ 2903 if (lun->pr_keys[j][k] == 0) 2904 continue; 2905 printf(" LUN %d port %d iid %d key " 2906 "%#jx\n", i, j, k, 2907 (uintmax_t)lun->pr_keys[j][k]); 2908 } 2909 } 2910 } 2911 printf("CTL Persistent Reservation information end\n"); 2912 printf("CTL Ports:\n"); 2913 STAILQ_FOREACH(port, &softc->port_list, links) { 2914 printf(" Port %d '%s' Frontend '%s' Type %u pp %d vp %d WWNN " 2915 "%#jx WWPN %#jx\n", port->targ_port, port->port_name, 2916 port->frontend->name, port->port_type, 2917 port->physical_port, port->virtual_port, 2918 (uintmax_t)port->wwnn, (uintmax_t)port->wwpn); 2919 for (j = 0; j < CTL_MAX_INIT_PER_PORT; j++) { 2920 if (port->wwpn_iid[j].in_use == 0 && 2921 port->wwpn_iid[j].wwpn == 0 && 2922 port->wwpn_iid[j].name == NULL) 2923 continue; 2924 2925 printf(" iid %u use %d WWPN %#jx '%s'\n", 2926 j, port->wwpn_iid[j].in_use, 2927 (uintmax_t)port->wwpn_iid[j].wwpn, 2928 port->wwpn_iid[j].name); 2929 } 2930 } 2931 printf("CTL Port information end\n"); 2932 mtx_unlock(&softc->ctl_lock); 2933 /* 2934 * XXX KDM calling this without a lock. We'd likely want 2935 * to drop the lock before calling the frontend's dump 2936 * routine anyway. 2937 */ 2938 printf("CTL Frontends:\n"); 2939 STAILQ_FOREACH(fe, &softc->fe_list, links) { 2940 printf(" Frontend '%s'\n", fe->name); 2941 if (fe->fe_dump != NULL) 2942 fe->fe_dump(); 2943 } 2944 printf("CTL Frontend information end\n"); 2945 break; 2946 } 2947 case CTL_LUN_REQ: { 2948 struct ctl_lun_req *lun_req; 2949 struct ctl_backend_driver *backend; 2950 2951 lun_req = (struct ctl_lun_req *)addr; 2952 2953 backend = ctl_backend_find(lun_req->backend); 2954 if (backend == NULL) { 2955 lun_req->status = CTL_LUN_ERROR; 2956 snprintf(lun_req->error_str, 2957 sizeof(lun_req->error_str), 2958 "Backend \"%s\" not found.", 2959 lun_req->backend); 2960 break; 2961 } 2962 if (lun_req->num_be_args > 0) { 2963 lun_req->kern_be_args = ctl_copyin_args( 2964 lun_req->num_be_args, 2965 lun_req->be_args, 2966 lun_req->error_str, 2967 sizeof(lun_req->error_str)); 2968 if (lun_req->kern_be_args == NULL) { 2969 lun_req->status = CTL_LUN_ERROR; 2970 break; 2971 } 2972 } 2973 2974 retval = backend->ioctl(dev, cmd, addr, flag, td); 2975 2976 if (lun_req->num_be_args > 0) { 2977 ctl_copyout_args(lun_req->num_be_args, 2978 lun_req->kern_be_args); 2979 ctl_free_args(lun_req->num_be_args, 2980 lun_req->kern_be_args); 2981 } 2982 break; 2983 } 2984 case CTL_LUN_LIST: { 2985 struct sbuf *sb; 2986 struct ctl_lun_list *list; 2987 struct ctl_option *opt; 2988 2989 list = (struct ctl_lun_list *)addr; 2990 2991 /* 2992 * Allocate a fixed length sbuf here, based on the length 2993 * of the user's buffer. We could allocate an auto-extending 2994 * buffer, and then tell the user how much larger our 2995 * amount of data is than his buffer, but that presents 2996 * some problems: 2997 * 2998 * 1. The sbuf(9) routines use a blocking malloc, and so 2999 * we can't hold a lock while calling them with an 3000 * auto-extending buffer. 3001 * 3002 * 2. There is not currently a LUN reference counting 3003 * mechanism, outside of outstanding transactions on 3004 * the LUN's OOA queue. So a LUN could go away on us 3005 * while we're getting the LUN number, backend-specific 3006 * information, etc. Thus, given the way things 3007 * currently work, we need to hold the CTL lock while 3008 * grabbing LUN information. 3009 * 3010 * So, from the user's standpoint, the best thing to do is 3011 * allocate what he thinks is a reasonable buffer length, 3012 * and then if he gets a CTL_LUN_LIST_NEED_MORE_SPACE error, 3013 * double the buffer length and try again. (And repeat 3014 * that until he succeeds.) 3015 */ 3016 sb = sbuf_new(NULL, NULL, list->alloc_len, SBUF_FIXEDLEN); 3017 if (sb == NULL) { 3018 list->status = CTL_LUN_LIST_ERROR; 3019 snprintf(list->error_str, sizeof(list->error_str), 3020 "Unable to allocate %d bytes for LUN list", 3021 list->alloc_len); 3022 break; 3023 } 3024 3025 sbuf_printf(sb, "<ctllunlist>\n"); 3026 3027 mtx_lock(&softc->ctl_lock); 3028 STAILQ_FOREACH(lun, &softc->lun_list, links) { 3029 mtx_lock(&lun->lun_lock); 3030 retval = sbuf_printf(sb, "<lun id=\"%ju\">\n", 3031 (uintmax_t)lun->lun); 3032 3033 /* 3034 * Bail out as soon as we see that we've overfilled 3035 * the buffer. 3036 */ 3037 if (retval != 0) 3038 break; 3039 3040 retval = sbuf_printf(sb, "\t<backend_type>%s" 3041 "</backend_type>\n", 3042 (lun->backend == NULL) ? "none" : 3043 lun->backend->name); 3044 3045 if (retval != 0) 3046 break; 3047 3048 retval = sbuf_printf(sb, "\t<lun_type>%d</lun_type>\n", 3049 lun->be_lun->lun_type); 3050 3051 if (retval != 0) 3052 break; 3053 3054 if (lun->backend == NULL) { 3055 retval = sbuf_printf(sb, "</lun>\n"); 3056 if (retval != 0) 3057 break; 3058 continue; 3059 } 3060 3061 retval = sbuf_printf(sb, "\t<size>%ju</size>\n", 3062 (lun->be_lun->maxlba > 0) ? 3063 lun->be_lun->maxlba + 1 : 0); 3064 3065 if (retval != 0) 3066 break; 3067 3068 retval = sbuf_printf(sb, "\t<blocksize>%u</blocksize>\n", 3069 lun->be_lun->blocksize); 3070 3071 if (retval != 0) 3072 break; 3073 3074 retval = sbuf_printf(sb, "\t<serial_number>"); 3075 3076 if (retval != 0) 3077 break; 3078 3079 retval = ctl_sbuf_printf_esc(sb, 3080 lun->be_lun->serial_num, 3081 sizeof(lun->be_lun->serial_num)); 3082 3083 if (retval != 0) 3084 break; 3085 3086 retval = sbuf_printf(sb, "</serial_number>\n"); 3087 3088 if (retval != 0) 3089 break; 3090 3091 retval = sbuf_printf(sb, "\t<device_id>"); 3092 3093 if (retval != 0) 3094 break; 3095 3096 retval = ctl_sbuf_printf_esc(sb, 3097 lun->be_lun->device_id, 3098 sizeof(lun->be_lun->device_id)); 3099 3100 if (retval != 0) 3101 break; 3102 3103 retval = sbuf_printf(sb, "</device_id>\n"); 3104 3105 if (retval != 0) 3106 break; 3107 3108 if (lun->backend->lun_info != NULL) { 3109 retval = lun->backend->lun_info(lun->be_lun->be_lun, sb); 3110 if (retval != 0) 3111 break; 3112 } 3113 STAILQ_FOREACH(opt, &lun->be_lun->options, links) { 3114 retval = sbuf_printf(sb, "\t<%s>%s</%s>\n", 3115 opt->name, opt->value, opt->name); 3116 if (retval != 0) 3117 break; 3118 } 3119 3120 retval = sbuf_printf(sb, "</lun>\n"); 3121 3122 if (retval != 0) 3123 break; 3124 mtx_unlock(&lun->lun_lock); 3125 } 3126 if (lun != NULL) 3127 mtx_unlock(&lun->lun_lock); 3128 mtx_unlock(&softc->ctl_lock); 3129 3130 if ((retval != 0) 3131 || ((retval = sbuf_printf(sb, "</ctllunlist>\n")) != 0)) { 3132 retval = 0; 3133 sbuf_delete(sb); 3134 list->status = CTL_LUN_LIST_NEED_MORE_SPACE; 3135 snprintf(list->error_str, sizeof(list->error_str), 3136 "Out of space, %d bytes is too small", 3137 list->alloc_len); 3138 break; 3139 } 3140 3141 sbuf_finish(sb); 3142 3143 retval = copyout(sbuf_data(sb), list->lun_xml, 3144 sbuf_len(sb) + 1); 3145 3146 list->fill_len = sbuf_len(sb) + 1; 3147 list->status = CTL_LUN_LIST_OK; 3148 sbuf_delete(sb); 3149 break; 3150 } 3151 case CTL_ISCSI: { 3152 struct ctl_iscsi *ci; 3153 struct ctl_frontend *fe; 3154 3155 ci = (struct ctl_iscsi *)addr; 3156 3157 fe = ctl_frontend_find("iscsi"); 3158 if (fe == NULL) { 3159 ci->status = CTL_ISCSI_ERROR; 3160 snprintf(ci->error_str, sizeof(ci->error_str), 3161 "Frontend \"iscsi\" not found."); 3162 break; 3163 } 3164 3165 retval = fe->ioctl(dev, cmd, addr, flag, td); 3166 break; 3167 } 3168 case CTL_PORT_REQ: { 3169 struct ctl_req *req; 3170 struct ctl_frontend *fe; 3171 3172 req = (struct ctl_req *)addr; 3173 3174 fe = ctl_frontend_find(req->driver); 3175 if (fe == NULL) { 3176 req->status = CTL_LUN_ERROR; 3177 snprintf(req->error_str, sizeof(req->error_str), 3178 "Frontend \"%s\" not found.", req->driver); 3179 break; 3180 } 3181 if (req->num_args > 0) { 3182 req->kern_args = ctl_copyin_args(req->num_args, 3183 req->args, req->error_str, sizeof(req->error_str)); 3184 if (req->kern_args == NULL) { 3185 req->status = CTL_LUN_ERROR; 3186 break; 3187 } 3188 } 3189 3190 if (fe->ioctl) 3191 retval = fe->ioctl(dev, cmd, addr, flag, td); 3192 else 3193 retval = ENODEV; 3194 3195 if (req->num_args > 0) { 3196 ctl_copyout_args(req->num_args, req->kern_args); 3197 ctl_free_args(req->num_args, req->kern_args); 3198 } 3199 break; 3200 } 3201 case CTL_PORT_LIST: { 3202 struct sbuf *sb; 3203 struct ctl_port *port; 3204 struct ctl_lun_list *list; 3205 struct ctl_option *opt; 3206 int j; 3207 uint32_t plun; 3208 3209 list = (struct ctl_lun_list *)addr; 3210 3211 sb = sbuf_new(NULL, NULL, list->alloc_len, SBUF_FIXEDLEN); 3212 if (sb == NULL) { 3213 list->status = CTL_LUN_LIST_ERROR; 3214 snprintf(list->error_str, sizeof(list->error_str), 3215 "Unable to allocate %d bytes for LUN list", 3216 list->alloc_len); 3217 break; 3218 } 3219 3220 sbuf_printf(sb, "<ctlportlist>\n"); 3221 3222 mtx_lock(&softc->ctl_lock); 3223 STAILQ_FOREACH(port, &softc->port_list, links) { 3224 retval = sbuf_printf(sb, "<targ_port id=\"%ju\">\n", 3225 (uintmax_t)port->targ_port); 3226 3227 /* 3228 * Bail out as soon as we see that we've overfilled 3229 * the buffer. 3230 */ 3231 if (retval != 0) 3232 break; 3233 3234 retval = sbuf_printf(sb, "\t<frontend_type>%s" 3235 "</frontend_type>\n", port->frontend->name); 3236 if (retval != 0) 3237 break; 3238 3239 retval = sbuf_printf(sb, "\t<port_type>%d</port_type>\n", 3240 port->port_type); 3241 if (retval != 0) 3242 break; 3243 3244 retval = sbuf_printf(sb, "\t<online>%s</online>\n", 3245 (port->status & CTL_PORT_STATUS_ONLINE) ? "YES" : "NO"); 3246 if (retval != 0) 3247 break; 3248 3249 retval = sbuf_printf(sb, "\t<port_name>%s</port_name>\n", 3250 port->port_name); 3251 if (retval != 0) 3252 break; 3253 3254 retval = sbuf_printf(sb, "\t<physical_port>%d</physical_port>\n", 3255 port->physical_port); 3256 if (retval != 0) 3257 break; 3258 3259 retval = sbuf_printf(sb, "\t<virtual_port>%d</virtual_port>\n", 3260 port->virtual_port); 3261 if (retval != 0) 3262 break; 3263 3264 if (port->target_devid != NULL) { 3265 sbuf_printf(sb, "\t<target>"); 3266 ctl_id_sbuf(port->target_devid, sb); 3267 sbuf_printf(sb, "</target>\n"); 3268 } 3269 3270 if (port->port_devid != NULL) { 3271 sbuf_printf(sb, "\t<port>"); 3272 ctl_id_sbuf(port->port_devid, sb); 3273 sbuf_printf(sb, "</port>\n"); 3274 } 3275 3276 if (port->port_info != NULL) { 3277 retval = port->port_info(port->onoff_arg, sb); 3278 if (retval != 0) 3279 break; 3280 } 3281 STAILQ_FOREACH(opt, &port->options, links) { 3282 retval = sbuf_printf(sb, "\t<%s>%s</%s>\n", 3283 opt->name, opt->value, opt->name); 3284 if (retval != 0) 3285 break; 3286 } 3287 3288 if (port->lun_map != NULL) { 3289 sbuf_printf(sb, "\t<lun_map>on</lun_map>\n"); 3290 for (j = 0; j < CTL_MAX_LUNS; j++) { 3291 plun = ctl_lun_map_from_port(port, j); 3292 if (plun >= CTL_MAX_LUNS) 3293 continue; 3294 sbuf_printf(sb, 3295 "\t<lun id=\"%u\">%u</lun>\n", 3296 j, plun); 3297 } 3298 } 3299 3300 for (j = 0; j < CTL_MAX_INIT_PER_PORT; j++) { 3301 if (port->wwpn_iid[j].in_use == 0 || 3302 (port->wwpn_iid[j].wwpn == 0 && 3303 port->wwpn_iid[j].name == NULL)) 3304 continue; 3305 3306 if (port->wwpn_iid[j].name != NULL) 3307 retval = sbuf_printf(sb, 3308 "\t<initiator id=\"%u\">%s</initiator>\n", 3309 j, port->wwpn_iid[j].name); 3310 else 3311 retval = sbuf_printf(sb, 3312 "\t<initiator id=\"%u\">naa.%08jx</initiator>\n", 3313 j, port->wwpn_iid[j].wwpn); 3314 if (retval != 0) 3315 break; 3316 } 3317 if (retval != 0) 3318 break; 3319 3320 retval = sbuf_printf(sb, "</targ_port>\n"); 3321 if (retval != 0) 3322 break; 3323 } 3324 mtx_unlock(&softc->ctl_lock); 3325 3326 if ((retval != 0) 3327 || ((retval = sbuf_printf(sb, "</ctlportlist>\n")) != 0)) { 3328 retval = 0; 3329 sbuf_delete(sb); 3330 list->status = CTL_LUN_LIST_NEED_MORE_SPACE; 3331 snprintf(list->error_str, sizeof(list->error_str), 3332 "Out of space, %d bytes is too small", 3333 list->alloc_len); 3334 break; 3335 } 3336 3337 sbuf_finish(sb); 3338 3339 retval = copyout(sbuf_data(sb), list->lun_xml, 3340 sbuf_len(sb) + 1); 3341 3342 list->fill_len = sbuf_len(sb) + 1; 3343 list->status = CTL_LUN_LIST_OK; 3344 sbuf_delete(sb); 3345 break; 3346 } 3347 case CTL_LUN_MAP: { 3348 struct ctl_lun_map *lm = (struct ctl_lun_map *)addr; 3349 struct ctl_port *port; 3350 3351 mtx_lock(&softc->ctl_lock); 3352 if (lm->port < softc->port_min || 3353 lm->port >= softc->port_max || 3354 (port = softc->ctl_ports[lm->port]) == NULL) { 3355 mtx_unlock(&softc->ctl_lock); 3356 return (ENXIO); 3357 } 3358 if (port->status & CTL_PORT_STATUS_ONLINE) { 3359 STAILQ_FOREACH(lun, &softc->lun_list, links) { 3360 if (ctl_lun_map_to_port(port, lun->lun) >= 3361 CTL_MAX_LUNS) 3362 continue; 3363 mtx_lock(&lun->lun_lock); 3364 ctl_est_ua_port(lun, lm->port, -1, 3365 CTL_UA_LUN_CHANGE); 3366 mtx_unlock(&lun->lun_lock); 3367 } 3368 } 3369 mtx_unlock(&softc->ctl_lock); // XXX: port_enable sleeps 3370 if (lm->plun < CTL_MAX_LUNS) { 3371 if (lm->lun == UINT32_MAX) 3372 retval = ctl_lun_map_unset(port, lm->plun); 3373 else if (lm->lun < CTL_MAX_LUNS && 3374 softc->ctl_luns[lm->lun] != NULL) 3375 retval = ctl_lun_map_set(port, lm->plun, lm->lun); 3376 else 3377 return (ENXIO); 3378 } else if (lm->plun == UINT32_MAX) { 3379 if (lm->lun == UINT32_MAX) 3380 retval = ctl_lun_map_deinit(port); 3381 else 3382 retval = ctl_lun_map_init(port); 3383 } else 3384 return (ENXIO); 3385 if (port->status & CTL_PORT_STATUS_ONLINE) 3386 ctl_isc_announce_port(port); 3387 break; 3388 } 3389 default: { 3390 /* XXX KDM should we fix this? */ 3391 #if 0 3392 struct ctl_backend_driver *backend; 3393 unsigned int type; 3394 int found; 3395 3396 found = 0; 3397 3398 /* 3399 * We encode the backend type as the ioctl type for backend 3400 * ioctls. So parse it out here, and then search for a 3401 * backend of this type. 3402 */ 3403 type = _IOC_TYPE(cmd); 3404 3405 STAILQ_FOREACH(backend, &softc->be_list, links) { 3406 if (backend->type == type) { 3407 found = 1; 3408 break; 3409 } 3410 } 3411 if (found == 0) { 3412 printf("ctl: unknown ioctl command %#lx or backend " 3413 "%d\n", cmd, type); 3414 retval = EINVAL; 3415 break; 3416 } 3417 retval = backend->ioctl(dev, cmd, addr, flag, td); 3418 #endif 3419 retval = ENOTTY; 3420 break; 3421 } 3422 } 3423 return (retval); 3424 } 3425 3426 uint32_t 3427 ctl_get_initindex(struct ctl_nexus *nexus) 3428 { 3429 return (nexus->initid + (nexus->targ_port * CTL_MAX_INIT_PER_PORT)); 3430 } 3431 3432 int 3433 ctl_lun_map_init(struct ctl_port *port) 3434 { 3435 struct ctl_softc *softc = port->ctl_softc; 3436 struct ctl_lun *lun; 3437 uint32_t i; 3438 3439 if (port->lun_map == NULL) 3440 port->lun_map = malloc(sizeof(uint32_t) * CTL_MAX_LUNS, 3441 M_CTL, M_NOWAIT); 3442 if (port->lun_map == NULL) 3443 return (ENOMEM); 3444 for (i = 0; i < CTL_MAX_LUNS; i++) 3445 port->lun_map[i] = UINT32_MAX; 3446 if (port->status & CTL_PORT_STATUS_ONLINE) { 3447 if (port->lun_disable != NULL) { 3448 STAILQ_FOREACH(lun, &softc->lun_list, links) 3449 port->lun_disable(port->targ_lun_arg, lun->lun); 3450 } 3451 ctl_isc_announce_port(port); 3452 } 3453 return (0); 3454 } 3455 3456 int 3457 ctl_lun_map_deinit(struct ctl_port *port) 3458 { 3459 struct ctl_softc *softc = port->ctl_softc; 3460 struct ctl_lun *lun; 3461 3462 if (port->lun_map == NULL) 3463 return (0); 3464 free(port->lun_map, M_CTL); 3465 port->lun_map = NULL; 3466 if (port->status & CTL_PORT_STATUS_ONLINE) { 3467 if (port->lun_enable != NULL) { 3468 STAILQ_FOREACH(lun, &softc->lun_list, links) 3469 port->lun_enable(port->targ_lun_arg, lun->lun); 3470 } 3471 ctl_isc_announce_port(port); 3472 } 3473 return (0); 3474 } 3475 3476 int 3477 ctl_lun_map_set(struct ctl_port *port, uint32_t plun, uint32_t glun) 3478 { 3479 int status; 3480 uint32_t old; 3481 3482 if (port->lun_map == NULL) { 3483 status = ctl_lun_map_init(port); 3484 if (status != 0) 3485 return (status); 3486 } 3487 old = port->lun_map[plun]; 3488 port->lun_map[plun] = glun; 3489 if ((port->status & CTL_PORT_STATUS_ONLINE) && old >= CTL_MAX_LUNS) { 3490 if (port->lun_enable != NULL) 3491 port->lun_enable(port->targ_lun_arg, plun); 3492 ctl_isc_announce_port(port); 3493 } 3494 return (0); 3495 } 3496 3497 int 3498 ctl_lun_map_unset(struct ctl_port *port, uint32_t plun) 3499 { 3500 uint32_t old; 3501 3502 if (port->lun_map == NULL) 3503 return (0); 3504 old = port->lun_map[plun]; 3505 port->lun_map[plun] = UINT32_MAX; 3506 if ((port->status & CTL_PORT_STATUS_ONLINE) && old < CTL_MAX_LUNS) { 3507 if (port->lun_disable != NULL) 3508 port->lun_disable(port->targ_lun_arg, plun); 3509 ctl_isc_announce_port(port); 3510 } 3511 return (0); 3512 } 3513 3514 uint32_t 3515 ctl_lun_map_from_port(struct ctl_port *port, uint32_t lun_id) 3516 { 3517 3518 if (port == NULL) 3519 return (UINT32_MAX); 3520 if (port->lun_map == NULL || lun_id >= CTL_MAX_LUNS) 3521 return (lun_id); 3522 return (port->lun_map[lun_id]); 3523 } 3524 3525 uint32_t 3526 ctl_lun_map_to_port(struct ctl_port *port, uint32_t lun_id) 3527 { 3528 uint32_t i; 3529 3530 if (port == NULL) 3531 return (UINT32_MAX); 3532 if (port->lun_map == NULL) 3533 return (lun_id); 3534 for (i = 0; i < CTL_MAX_LUNS; i++) { 3535 if (port->lun_map[i] == lun_id) 3536 return (i); 3537 } 3538 return (UINT32_MAX); 3539 } 3540 3541 uint32_t 3542 ctl_decode_lun(uint64_t encoded) 3543 { 3544 uint8_t lun[8]; 3545 uint32_t result = 0xffffffff; 3546 3547 be64enc(lun, encoded); 3548 switch (lun[0] & RPL_LUNDATA_ATYP_MASK) { 3549 case RPL_LUNDATA_ATYP_PERIPH: 3550 if ((lun[0] & 0x3f) == 0 && lun[2] == 0 && lun[3] == 0 && 3551 lun[4] == 0 && lun[5] == 0 && lun[6] == 0 && lun[7] == 0) 3552 result = lun[1]; 3553 break; 3554 case RPL_LUNDATA_ATYP_FLAT: 3555 if (lun[2] == 0 && lun[3] == 0 && lun[4] == 0 && lun[5] == 0 && 3556 lun[6] == 0 && lun[7] == 0) 3557 result = ((lun[0] & 0x3f) << 8) + lun[1]; 3558 break; 3559 case RPL_LUNDATA_ATYP_EXTLUN: 3560 switch (lun[0] & RPL_LUNDATA_EXT_EAM_MASK) { 3561 case 0x02: 3562 switch (lun[0] & RPL_LUNDATA_EXT_LEN_MASK) { 3563 case 0x00: 3564 result = lun[1]; 3565 break; 3566 case 0x10: 3567 result = (lun[1] << 16) + (lun[2] << 8) + 3568 lun[3]; 3569 break; 3570 case 0x20: 3571 if (lun[1] == 0 && lun[6] == 0 && lun[7] == 0) 3572 result = (lun[2] << 24) + 3573 (lun[3] << 16) + (lun[4] << 8) + 3574 lun[5]; 3575 break; 3576 } 3577 break; 3578 case RPL_LUNDATA_EXT_EAM_NOT_SPEC: 3579 result = 0xffffffff; 3580 break; 3581 } 3582 break; 3583 } 3584 return (result); 3585 } 3586 3587 uint64_t 3588 ctl_encode_lun(uint32_t decoded) 3589 { 3590 uint64_t l = decoded; 3591 3592 if (l <= 0xff) 3593 return (((uint64_t)RPL_LUNDATA_ATYP_PERIPH << 56) | (l << 48)); 3594 if (l <= 0x3fff) 3595 return (((uint64_t)RPL_LUNDATA_ATYP_FLAT << 56) | (l << 48)); 3596 if (l <= 0xffffff) 3597 return (((uint64_t)(RPL_LUNDATA_ATYP_EXTLUN | 0x12) << 56) | 3598 (l << 32)); 3599 return ((((uint64_t)RPL_LUNDATA_ATYP_EXTLUN | 0x22) << 56) | (l << 16)); 3600 } 3601 3602 static struct ctl_port * 3603 ctl_io_port(struct ctl_io_hdr *io_hdr) 3604 { 3605 3606 return (control_softc->ctl_ports[io_hdr->nexus.targ_port]); 3607 } 3608 3609 int 3610 ctl_ffz(uint32_t *mask, uint32_t first, uint32_t last) 3611 { 3612 int i; 3613 3614 for (i = first; i < last; i++) { 3615 if ((mask[i / 32] & (1 << (i % 32))) == 0) 3616 return (i); 3617 } 3618 return (-1); 3619 } 3620 3621 int 3622 ctl_set_mask(uint32_t *mask, uint32_t bit) 3623 { 3624 uint32_t chunk, piece; 3625 3626 chunk = bit >> 5; 3627 piece = bit % (sizeof(uint32_t) * 8); 3628 3629 if ((mask[chunk] & (1 << piece)) != 0) 3630 return (-1); 3631 else 3632 mask[chunk] |= (1 << piece); 3633 3634 return (0); 3635 } 3636 3637 int 3638 ctl_clear_mask(uint32_t *mask, uint32_t bit) 3639 { 3640 uint32_t chunk, piece; 3641 3642 chunk = bit >> 5; 3643 piece = bit % (sizeof(uint32_t) * 8); 3644 3645 if ((mask[chunk] & (1 << piece)) == 0) 3646 return (-1); 3647 else 3648 mask[chunk] &= ~(1 << piece); 3649 3650 return (0); 3651 } 3652 3653 int 3654 ctl_is_set(uint32_t *mask, uint32_t bit) 3655 { 3656 uint32_t chunk, piece; 3657 3658 chunk = bit >> 5; 3659 piece = bit % (sizeof(uint32_t) * 8); 3660 3661 if ((mask[chunk] & (1 << piece)) == 0) 3662 return (0); 3663 else 3664 return (1); 3665 } 3666 3667 static uint64_t 3668 ctl_get_prkey(struct ctl_lun *lun, uint32_t residx) 3669 { 3670 uint64_t *t; 3671 3672 t = lun->pr_keys[residx/CTL_MAX_INIT_PER_PORT]; 3673 if (t == NULL) 3674 return (0); 3675 return (t[residx % CTL_MAX_INIT_PER_PORT]); 3676 } 3677 3678 static void 3679 ctl_clr_prkey(struct ctl_lun *lun, uint32_t residx) 3680 { 3681 uint64_t *t; 3682 3683 t = lun->pr_keys[residx/CTL_MAX_INIT_PER_PORT]; 3684 if (t == NULL) 3685 return; 3686 t[residx % CTL_MAX_INIT_PER_PORT] = 0; 3687 } 3688 3689 static void 3690 ctl_alloc_prkey(struct ctl_lun *lun, uint32_t residx) 3691 { 3692 uint64_t *p; 3693 u_int i; 3694 3695 i = residx/CTL_MAX_INIT_PER_PORT; 3696 if (lun->pr_keys[i] != NULL) 3697 return; 3698 mtx_unlock(&lun->lun_lock); 3699 p = malloc(sizeof(uint64_t) * CTL_MAX_INIT_PER_PORT, M_CTL, 3700 M_WAITOK | M_ZERO); 3701 mtx_lock(&lun->lun_lock); 3702 if (lun->pr_keys[i] == NULL) 3703 lun->pr_keys[i] = p; 3704 else 3705 free(p, M_CTL); 3706 } 3707 3708 static void 3709 ctl_set_prkey(struct ctl_lun *lun, uint32_t residx, uint64_t key) 3710 { 3711 uint64_t *t; 3712 3713 t = lun->pr_keys[residx/CTL_MAX_INIT_PER_PORT]; 3714 KASSERT(t != NULL, ("prkey %d is not allocated", residx)); 3715 t[residx % CTL_MAX_INIT_PER_PORT] = key; 3716 } 3717 3718 /* 3719 * ctl_softc, pool_name, total_ctl_io are passed in. 3720 * npool is passed out. 3721 */ 3722 int 3723 ctl_pool_create(struct ctl_softc *ctl_softc, const char *pool_name, 3724 uint32_t total_ctl_io, void **npool) 3725 { 3726 #ifdef IO_POOLS 3727 struct ctl_io_pool *pool; 3728 3729 pool = (struct ctl_io_pool *)malloc(sizeof(*pool), M_CTL, 3730 M_NOWAIT | M_ZERO); 3731 if (pool == NULL) 3732 return (ENOMEM); 3733 3734 snprintf(pool->name, sizeof(pool->name), "CTL IO %s", pool_name); 3735 pool->ctl_softc = ctl_softc; 3736 pool->zone = uma_zsecond_create(pool->name, NULL, 3737 NULL, NULL, NULL, ctl_softc->io_zone); 3738 /* uma_prealloc(pool->zone, total_ctl_io); */ 3739 3740 *npool = pool; 3741 #else 3742 *npool = ctl_softc->io_zone; 3743 #endif 3744 return (0); 3745 } 3746 3747 void 3748 ctl_pool_free(struct ctl_io_pool *pool) 3749 { 3750 3751 if (pool == NULL) 3752 return; 3753 3754 #ifdef IO_POOLS 3755 uma_zdestroy(pool->zone); 3756 free(pool, M_CTL); 3757 #endif 3758 } 3759 3760 union ctl_io * 3761 ctl_alloc_io(void *pool_ref) 3762 { 3763 union ctl_io *io; 3764 #ifdef IO_POOLS 3765 struct ctl_io_pool *pool = (struct ctl_io_pool *)pool_ref; 3766 3767 io = uma_zalloc(pool->zone, M_WAITOK); 3768 #else 3769 io = uma_zalloc((uma_zone_t)pool_ref, M_WAITOK); 3770 #endif 3771 if (io != NULL) 3772 io->io_hdr.pool = pool_ref; 3773 return (io); 3774 } 3775 3776 union ctl_io * 3777 ctl_alloc_io_nowait(void *pool_ref) 3778 { 3779 union ctl_io *io; 3780 #ifdef IO_POOLS 3781 struct ctl_io_pool *pool = (struct ctl_io_pool *)pool_ref; 3782 3783 io = uma_zalloc(pool->zone, M_NOWAIT); 3784 #else 3785 io = uma_zalloc((uma_zone_t)pool_ref, M_NOWAIT); 3786 #endif 3787 if (io != NULL) 3788 io->io_hdr.pool = pool_ref; 3789 return (io); 3790 } 3791 3792 void 3793 ctl_free_io(union ctl_io *io) 3794 { 3795 #ifdef IO_POOLS 3796 struct ctl_io_pool *pool; 3797 #endif 3798 3799 if (io == NULL) 3800 return; 3801 3802 #ifdef IO_POOLS 3803 pool = (struct ctl_io_pool *)io->io_hdr.pool; 3804 uma_zfree(pool->zone, io); 3805 #else 3806 uma_zfree((uma_zone_t)io->io_hdr.pool, io); 3807 #endif 3808 } 3809 3810 void 3811 ctl_zero_io(union ctl_io *io) 3812 { 3813 void *pool_ref; 3814 3815 if (io == NULL) 3816 return; 3817 3818 /* 3819 * May need to preserve linked list pointers at some point too. 3820 */ 3821 pool_ref = io->io_hdr.pool; 3822 memset(io, 0, sizeof(*io)); 3823 io->io_hdr.pool = pool_ref; 3824 } 3825 3826 int 3827 ctl_expand_number(const char *buf, uint64_t *num) 3828 { 3829 char *endptr; 3830 uint64_t number; 3831 unsigned shift; 3832 3833 number = strtoq(buf, &endptr, 0); 3834 3835 switch (tolower((unsigned char)*endptr)) { 3836 case 'e': 3837 shift = 60; 3838 break; 3839 case 'p': 3840 shift = 50; 3841 break; 3842 case 't': 3843 shift = 40; 3844 break; 3845 case 'g': 3846 shift = 30; 3847 break; 3848 case 'm': 3849 shift = 20; 3850 break; 3851 case 'k': 3852 shift = 10; 3853 break; 3854 case 'b': 3855 case '\0': /* No unit. */ 3856 *num = number; 3857 return (0); 3858 default: 3859 /* Unrecognized unit. */ 3860 return (-1); 3861 } 3862 3863 if ((number << shift) >> shift != number) { 3864 /* Overflow */ 3865 return (-1); 3866 } 3867 *num = number << shift; 3868 return (0); 3869 } 3870 3871 3872 /* 3873 * This routine could be used in the future to load default and/or saved 3874 * mode page parameters for a particuar lun. 3875 */ 3876 static int 3877 ctl_init_page_index(struct ctl_lun *lun) 3878 { 3879 int i, page_code; 3880 struct ctl_page_index *page_index; 3881 const char *value; 3882 uint64_t ival; 3883 3884 memcpy(&lun->mode_pages.index, page_index_template, 3885 sizeof(page_index_template)); 3886 3887 for (i = 0; i < CTL_NUM_MODE_PAGES; i++) { 3888 3889 page_index = &lun->mode_pages.index[i]; 3890 if (lun->be_lun->lun_type == T_DIRECT && 3891 (page_index->page_flags & CTL_PAGE_FLAG_DIRECT) == 0) 3892 continue; 3893 if (lun->be_lun->lun_type == T_PROCESSOR && 3894 (page_index->page_flags & CTL_PAGE_FLAG_PROC) == 0) 3895 continue; 3896 if (lun->be_lun->lun_type == T_CDROM && 3897 (page_index->page_flags & CTL_PAGE_FLAG_CDROM) == 0) 3898 continue; 3899 3900 page_code = page_index->page_code & SMPH_PC_MASK; 3901 switch (page_code) { 3902 case SMS_RW_ERROR_RECOVERY_PAGE: { 3903 KASSERT(page_index->subpage == SMS_SUBPAGE_PAGE_0, 3904 ("subpage %#x for page %#x is incorrect!", 3905 page_index->subpage, page_code)); 3906 memcpy(&lun->mode_pages.rw_er_page[CTL_PAGE_CURRENT], 3907 &rw_er_page_default, 3908 sizeof(rw_er_page_default)); 3909 memcpy(&lun->mode_pages.rw_er_page[CTL_PAGE_CHANGEABLE], 3910 &rw_er_page_changeable, 3911 sizeof(rw_er_page_changeable)); 3912 memcpy(&lun->mode_pages.rw_er_page[CTL_PAGE_DEFAULT], 3913 &rw_er_page_default, 3914 sizeof(rw_er_page_default)); 3915 memcpy(&lun->mode_pages.rw_er_page[CTL_PAGE_SAVED], 3916 &rw_er_page_default, 3917 sizeof(rw_er_page_default)); 3918 page_index->page_data = 3919 (uint8_t *)lun->mode_pages.rw_er_page; 3920 break; 3921 } 3922 case SMS_FORMAT_DEVICE_PAGE: { 3923 struct scsi_format_page *format_page; 3924 3925 KASSERT(page_index->subpage == SMS_SUBPAGE_PAGE_0, 3926 ("subpage %#x for page %#x is incorrect!", 3927 page_index->subpage, page_code)); 3928 3929 /* 3930 * Sectors per track are set above. Bytes per 3931 * sector need to be set here on a per-LUN basis. 3932 */ 3933 memcpy(&lun->mode_pages.format_page[CTL_PAGE_CURRENT], 3934 &format_page_default, 3935 sizeof(format_page_default)); 3936 memcpy(&lun->mode_pages.format_page[ 3937 CTL_PAGE_CHANGEABLE], &format_page_changeable, 3938 sizeof(format_page_changeable)); 3939 memcpy(&lun->mode_pages.format_page[CTL_PAGE_DEFAULT], 3940 &format_page_default, 3941 sizeof(format_page_default)); 3942 memcpy(&lun->mode_pages.format_page[CTL_PAGE_SAVED], 3943 &format_page_default, 3944 sizeof(format_page_default)); 3945 3946 format_page = &lun->mode_pages.format_page[ 3947 CTL_PAGE_CURRENT]; 3948 scsi_ulto2b(lun->be_lun->blocksize, 3949 format_page->bytes_per_sector); 3950 3951 format_page = &lun->mode_pages.format_page[ 3952 CTL_PAGE_DEFAULT]; 3953 scsi_ulto2b(lun->be_lun->blocksize, 3954 format_page->bytes_per_sector); 3955 3956 format_page = &lun->mode_pages.format_page[ 3957 CTL_PAGE_SAVED]; 3958 scsi_ulto2b(lun->be_lun->blocksize, 3959 format_page->bytes_per_sector); 3960 3961 page_index->page_data = 3962 (uint8_t *)lun->mode_pages.format_page; 3963 break; 3964 } 3965 case SMS_RIGID_DISK_PAGE: { 3966 struct scsi_rigid_disk_page *rigid_disk_page; 3967 uint32_t sectors_per_cylinder; 3968 uint64_t cylinders; 3969 #ifndef __XSCALE__ 3970 int shift; 3971 #endif /* !__XSCALE__ */ 3972 3973 KASSERT(page_index->subpage == SMS_SUBPAGE_PAGE_0, 3974 ("subpage %#x for page %#x is incorrect!", 3975 page_index->subpage, page_code)); 3976 3977 /* 3978 * Rotation rate and sectors per track are set 3979 * above. We calculate the cylinders here based on 3980 * capacity. Due to the number of heads and 3981 * sectors per track we're using, smaller arrays 3982 * may turn out to have 0 cylinders. Linux and 3983 * FreeBSD don't pay attention to these mode pages 3984 * to figure out capacity, but Solaris does. It 3985 * seems to deal with 0 cylinders just fine, and 3986 * works out a fake geometry based on the capacity. 3987 */ 3988 memcpy(&lun->mode_pages.rigid_disk_page[ 3989 CTL_PAGE_DEFAULT], &rigid_disk_page_default, 3990 sizeof(rigid_disk_page_default)); 3991 memcpy(&lun->mode_pages.rigid_disk_page[ 3992 CTL_PAGE_CHANGEABLE],&rigid_disk_page_changeable, 3993 sizeof(rigid_disk_page_changeable)); 3994 3995 sectors_per_cylinder = CTL_DEFAULT_SECTORS_PER_TRACK * 3996 CTL_DEFAULT_HEADS; 3997 3998 /* 3999 * The divide method here will be more accurate, 4000 * probably, but results in floating point being 4001 * used in the kernel on i386 (__udivdi3()). On the 4002 * XScale, though, __udivdi3() is implemented in 4003 * software. 4004 * 4005 * The shift method for cylinder calculation is 4006 * accurate if sectors_per_cylinder is a power of 4007 * 2. Otherwise it might be slightly off -- you 4008 * might have a bit of a truncation problem. 4009 */ 4010 #ifdef __XSCALE__ 4011 cylinders = (lun->be_lun->maxlba + 1) / 4012 sectors_per_cylinder; 4013 #else 4014 for (shift = 31; shift > 0; shift--) { 4015 if (sectors_per_cylinder & (1 << shift)) 4016 break; 4017 } 4018 cylinders = (lun->be_lun->maxlba + 1) >> shift; 4019 #endif 4020 4021 /* 4022 * We've basically got 3 bytes, or 24 bits for the 4023 * cylinder size in the mode page. If we're over, 4024 * just round down to 2^24. 4025 */ 4026 if (cylinders > 0xffffff) 4027 cylinders = 0xffffff; 4028 4029 rigid_disk_page = &lun->mode_pages.rigid_disk_page[ 4030 CTL_PAGE_DEFAULT]; 4031 scsi_ulto3b(cylinders, rigid_disk_page->cylinders); 4032 4033 if ((value = ctl_get_opt(&lun->be_lun->options, 4034 "rpm")) != NULL) { 4035 scsi_ulto2b(strtol(value, NULL, 0), 4036 rigid_disk_page->rotation_rate); 4037 } 4038 4039 memcpy(&lun->mode_pages.rigid_disk_page[CTL_PAGE_CURRENT], 4040 &lun->mode_pages.rigid_disk_page[CTL_PAGE_DEFAULT], 4041 sizeof(rigid_disk_page_default)); 4042 memcpy(&lun->mode_pages.rigid_disk_page[CTL_PAGE_SAVED], 4043 &lun->mode_pages.rigid_disk_page[CTL_PAGE_DEFAULT], 4044 sizeof(rigid_disk_page_default)); 4045 4046 page_index->page_data = 4047 (uint8_t *)lun->mode_pages.rigid_disk_page; 4048 break; 4049 } 4050 case SMS_CACHING_PAGE: { 4051 struct scsi_caching_page *caching_page; 4052 4053 KASSERT(page_index->subpage == SMS_SUBPAGE_PAGE_0, 4054 ("subpage %#x for page %#x is incorrect!", 4055 page_index->subpage, page_code)); 4056 memcpy(&lun->mode_pages.caching_page[CTL_PAGE_DEFAULT], 4057 &caching_page_default, 4058 sizeof(caching_page_default)); 4059 memcpy(&lun->mode_pages.caching_page[ 4060 CTL_PAGE_CHANGEABLE], &caching_page_changeable, 4061 sizeof(caching_page_changeable)); 4062 memcpy(&lun->mode_pages.caching_page[CTL_PAGE_SAVED], 4063 &caching_page_default, 4064 sizeof(caching_page_default)); 4065 caching_page = &lun->mode_pages.caching_page[ 4066 CTL_PAGE_SAVED]; 4067 value = ctl_get_opt(&lun->be_lun->options, "writecache"); 4068 if (value != NULL && strcmp(value, "off") == 0) 4069 caching_page->flags1 &= ~SCP_WCE; 4070 value = ctl_get_opt(&lun->be_lun->options, "readcache"); 4071 if (value != NULL && strcmp(value, "off") == 0) 4072 caching_page->flags1 |= SCP_RCD; 4073 memcpy(&lun->mode_pages.caching_page[CTL_PAGE_CURRENT], 4074 &lun->mode_pages.caching_page[CTL_PAGE_SAVED], 4075 sizeof(caching_page_default)); 4076 page_index->page_data = 4077 (uint8_t *)lun->mode_pages.caching_page; 4078 break; 4079 } 4080 case SMS_CONTROL_MODE_PAGE: { 4081 switch (page_index->subpage) { 4082 case SMS_SUBPAGE_PAGE_0: { 4083 struct scsi_control_page *control_page; 4084 4085 memcpy(&lun->mode_pages.control_page[ 4086 CTL_PAGE_DEFAULT], 4087 &control_page_default, 4088 sizeof(control_page_default)); 4089 memcpy(&lun->mode_pages.control_page[ 4090 CTL_PAGE_CHANGEABLE], 4091 &control_page_changeable, 4092 sizeof(control_page_changeable)); 4093 memcpy(&lun->mode_pages.control_page[ 4094 CTL_PAGE_SAVED], 4095 &control_page_default, 4096 sizeof(control_page_default)); 4097 control_page = &lun->mode_pages.control_page[ 4098 CTL_PAGE_SAVED]; 4099 value = ctl_get_opt(&lun->be_lun->options, 4100 "reordering"); 4101 if (value != NULL && 4102 strcmp(value, "unrestricted") == 0) { 4103 control_page->queue_flags &= 4104 ~SCP_QUEUE_ALG_MASK; 4105 control_page->queue_flags |= 4106 SCP_QUEUE_ALG_UNRESTRICTED; 4107 } 4108 memcpy(&lun->mode_pages.control_page[ 4109 CTL_PAGE_CURRENT], 4110 &lun->mode_pages.control_page[ 4111 CTL_PAGE_SAVED], 4112 sizeof(control_page_default)); 4113 page_index->page_data = 4114 (uint8_t *)lun->mode_pages.control_page; 4115 break; 4116 } 4117 case 0x01: 4118 memcpy(&lun->mode_pages.control_ext_page[ 4119 CTL_PAGE_DEFAULT], 4120 &control_ext_page_default, 4121 sizeof(control_ext_page_default)); 4122 memcpy(&lun->mode_pages.control_ext_page[ 4123 CTL_PAGE_CHANGEABLE], 4124 &control_ext_page_changeable, 4125 sizeof(control_ext_page_changeable)); 4126 memcpy(&lun->mode_pages.control_ext_page[ 4127 CTL_PAGE_SAVED], 4128 &control_ext_page_default, 4129 sizeof(control_ext_page_default)); 4130 memcpy(&lun->mode_pages.control_ext_page[ 4131 CTL_PAGE_CURRENT], 4132 &lun->mode_pages.control_ext_page[ 4133 CTL_PAGE_SAVED], 4134 sizeof(control_ext_page_default)); 4135 page_index->page_data = 4136 (uint8_t *)lun->mode_pages.control_ext_page; 4137 break; 4138 default: 4139 panic("subpage %#x for page %#x is incorrect!", 4140 page_index->subpage, page_code); 4141 } 4142 break; 4143 } 4144 case SMS_INFO_EXCEPTIONS_PAGE: { 4145 switch (page_index->subpage) { 4146 case SMS_SUBPAGE_PAGE_0: 4147 memcpy(&lun->mode_pages.ie_page[CTL_PAGE_CURRENT], 4148 &ie_page_default, 4149 sizeof(ie_page_default)); 4150 memcpy(&lun->mode_pages.ie_page[ 4151 CTL_PAGE_CHANGEABLE], &ie_page_changeable, 4152 sizeof(ie_page_changeable)); 4153 memcpy(&lun->mode_pages.ie_page[CTL_PAGE_DEFAULT], 4154 &ie_page_default, 4155 sizeof(ie_page_default)); 4156 memcpy(&lun->mode_pages.ie_page[CTL_PAGE_SAVED], 4157 &ie_page_default, 4158 sizeof(ie_page_default)); 4159 page_index->page_data = 4160 (uint8_t *)lun->mode_pages.ie_page; 4161 break; 4162 case 0x02: { 4163 struct ctl_logical_block_provisioning_page *page; 4164 4165 memcpy(&lun->mode_pages.lbp_page[CTL_PAGE_DEFAULT], 4166 &lbp_page_default, 4167 sizeof(lbp_page_default)); 4168 memcpy(&lun->mode_pages.lbp_page[ 4169 CTL_PAGE_CHANGEABLE], &lbp_page_changeable, 4170 sizeof(lbp_page_changeable)); 4171 memcpy(&lun->mode_pages.lbp_page[CTL_PAGE_SAVED], 4172 &lbp_page_default, 4173 sizeof(lbp_page_default)); 4174 page = &lun->mode_pages.lbp_page[CTL_PAGE_SAVED]; 4175 value = ctl_get_opt(&lun->be_lun->options, 4176 "avail-threshold"); 4177 if (value != NULL && 4178 ctl_expand_number(value, &ival) == 0) { 4179 page->descr[0].flags |= SLBPPD_ENABLED | 4180 SLBPPD_ARMING_DEC; 4181 if (lun->be_lun->blocksize) 4182 ival /= lun->be_lun->blocksize; 4183 else 4184 ival /= 512; 4185 scsi_ulto4b(ival >> CTL_LBP_EXPONENT, 4186 page->descr[0].count); 4187 } 4188 value = ctl_get_opt(&lun->be_lun->options, 4189 "used-threshold"); 4190 if (value != NULL && 4191 ctl_expand_number(value, &ival) == 0) { 4192 page->descr[1].flags |= SLBPPD_ENABLED | 4193 SLBPPD_ARMING_INC; 4194 if (lun->be_lun->blocksize) 4195 ival /= lun->be_lun->blocksize; 4196 else 4197 ival /= 512; 4198 scsi_ulto4b(ival >> CTL_LBP_EXPONENT, 4199 page->descr[1].count); 4200 } 4201 value = ctl_get_opt(&lun->be_lun->options, 4202 "pool-avail-threshold"); 4203 if (value != NULL && 4204 ctl_expand_number(value, &ival) == 0) { 4205 page->descr[2].flags |= SLBPPD_ENABLED | 4206 SLBPPD_ARMING_DEC; 4207 if (lun->be_lun->blocksize) 4208 ival /= lun->be_lun->blocksize; 4209 else 4210 ival /= 512; 4211 scsi_ulto4b(ival >> CTL_LBP_EXPONENT, 4212 page->descr[2].count); 4213 } 4214 value = ctl_get_opt(&lun->be_lun->options, 4215 "pool-used-threshold"); 4216 if (value != NULL && 4217 ctl_expand_number(value, &ival) == 0) { 4218 page->descr[3].flags |= SLBPPD_ENABLED | 4219 SLBPPD_ARMING_INC; 4220 if (lun->be_lun->blocksize) 4221 ival /= lun->be_lun->blocksize; 4222 else 4223 ival /= 512; 4224 scsi_ulto4b(ival >> CTL_LBP_EXPONENT, 4225 page->descr[3].count); 4226 } 4227 memcpy(&lun->mode_pages.lbp_page[CTL_PAGE_CURRENT], 4228 &lun->mode_pages.lbp_page[CTL_PAGE_SAVED], 4229 sizeof(lbp_page_default)); 4230 page_index->page_data = 4231 (uint8_t *)lun->mode_pages.lbp_page; 4232 break; 4233 } 4234 default: 4235 panic("subpage %#x for page %#x is incorrect!", 4236 page_index->subpage, page_code); 4237 } 4238 break; 4239 } 4240 case SMS_CDDVD_CAPS_PAGE:{ 4241 KASSERT(page_index->subpage == SMS_SUBPAGE_PAGE_0, 4242 ("subpage %#x for page %#x is incorrect!", 4243 page_index->subpage, page_code)); 4244 memcpy(&lun->mode_pages.cddvd_page[CTL_PAGE_DEFAULT], 4245 &cddvd_page_default, 4246 sizeof(cddvd_page_default)); 4247 memcpy(&lun->mode_pages.cddvd_page[ 4248 CTL_PAGE_CHANGEABLE], &cddvd_page_changeable, 4249 sizeof(cddvd_page_changeable)); 4250 memcpy(&lun->mode_pages.cddvd_page[CTL_PAGE_SAVED], 4251 &cddvd_page_default, 4252 sizeof(cddvd_page_default)); 4253 memcpy(&lun->mode_pages.cddvd_page[CTL_PAGE_CURRENT], 4254 &lun->mode_pages.cddvd_page[CTL_PAGE_SAVED], 4255 sizeof(cddvd_page_default)); 4256 page_index->page_data = 4257 (uint8_t *)lun->mode_pages.cddvd_page; 4258 break; 4259 } 4260 case SMS_VENDOR_SPECIFIC_PAGE:{ 4261 switch (page_index->subpage) { 4262 case DBGCNF_SUBPAGE_CODE: { 4263 memcpy(&lun->mode_pages.debugconf_subpage[ 4264 CTL_PAGE_CURRENT], 4265 &debugconf_page_default, 4266 sizeof(debugconf_page_default)); 4267 memcpy(&lun->mode_pages.debugconf_subpage[ 4268 CTL_PAGE_CHANGEABLE], 4269 &debugconf_page_changeable, 4270 sizeof(debugconf_page_changeable)); 4271 memcpy(&lun->mode_pages.debugconf_subpage[ 4272 CTL_PAGE_DEFAULT], 4273 &debugconf_page_default, 4274 sizeof(debugconf_page_default)); 4275 memcpy(&lun->mode_pages.debugconf_subpage[ 4276 CTL_PAGE_SAVED], 4277 &debugconf_page_default, 4278 sizeof(debugconf_page_default)); 4279 page_index->page_data = 4280 (uint8_t *)lun->mode_pages.debugconf_subpage; 4281 break; 4282 } 4283 default: 4284 panic("subpage %#x for page %#x is incorrect!", 4285 page_index->subpage, page_code); 4286 } 4287 break; 4288 } 4289 default: 4290 panic("invalid page code value %#x", page_code); 4291 } 4292 } 4293 4294 return (CTL_RETVAL_COMPLETE); 4295 } 4296 4297 static int 4298 ctl_init_log_page_index(struct ctl_lun *lun) 4299 { 4300 struct ctl_page_index *page_index; 4301 int i, j, k, prev; 4302 4303 memcpy(&lun->log_pages.index, log_page_index_template, 4304 sizeof(log_page_index_template)); 4305 4306 prev = -1; 4307 for (i = 0, j = 0, k = 0; i < CTL_NUM_LOG_PAGES; i++) { 4308 4309 page_index = &lun->log_pages.index[i]; 4310 if (lun->be_lun->lun_type == T_DIRECT && 4311 (page_index->page_flags & CTL_PAGE_FLAG_DIRECT) == 0) 4312 continue; 4313 if (lun->be_lun->lun_type == T_PROCESSOR && 4314 (page_index->page_flags & CTL_PAGE_FLAG_PROC) == 0) 4315 continue; 4316 if (lun->be_lun->lun_type == T_CDROM && 4317 (page_index->page_flags & CTL_PAGE_FLAG_CDROM) == 0) 4318 continue; 4319 4320 if (page_index->page_code == SLS_LOGICAL_BLOCK_PROVISIONING && 4321 lun->backend->lun_attr == NULL) 4322 continue; 4323 4324 if (page_index->page_code != prev) { 4325 lun->log_pages.pages_page[j] = page_index->page_code; 4326 prev = page_index->page_code; 4327 j++; 4328 } 4329 lun->log_pages.subpages_page[k*2] = page_index->page_code; 4330 lun->log_pages.subpages_page[k*2+1] = page_index->subpage; 4331 k++; 4332 } 4333 lun->log_pages.index[0].page_data = &lun->log_pages.pages_page[0]; 4334 lun->log_pages.index[0].page_len = j; 4335 lun->log_pages.index[1].page_data = &lun->log_pages.subpages_page[0]; 4336 lun->log_pages.index[1].page_len = k * 2; 4337 lun->log_pages.index[2].page_data = &lun->log_pages.lbp_page[0]; 4338 lun->log_pages.index[2].page_len = 12*CTL_NUM_LBP_PARAMS; 4339 lun->log_pages.index[3].page_data = (uint8_t *)&lun->log_pages.stat_page; 4340 lun->log_pages.index[3].page_len = sizeof(lun->log_pages.stat_page); 4341 4342 return (CTL_RETVAL_COMPLETE); 4343 } 4344 4345 static int 4346 hex2bin(const char *str, uint8_t *buf, int buf_size) 4347 { 4348 int i; 4349 u_char c; 4350 4351 memset(buf, 0, buf_size); 4352 while (isspace(str[0])) 4353 str++; 4354 if (str[0] == '0' && (str[1] == 'x' || str[1] == 'X')) 4355 str += 2; 4356 buf_size *= 2; 4357 for (i = 0; str[i] != 0 && i < buf_size; i++) { 4358 c = str[i]; 4359 if (isdigit(c)) 4360 c -= '0'; 4361 else if (isalpha(c)) 4362 c -= isupper(c) ? 'A' - 10 : 'a' - 10; 4363 else 4364 break; 4365 if (c >= 16) 4366 break; 4367 if ((i & 1) == 0) 4368 buf[i / 2] |= (c << 4); 4369 else 4370 buf[i / 2] |= c; 4371 } 4372 return ((i + 1) / 2); 4373 } 4374 4375 /* 4376 * LUN allocation. 4377 * 4378 * Requirements: 4379 * - caller allocates and zeros LUN storage, or passes in a NULL LUN if he 4380 * wants us to allocate the LUN and he can block. 4381 * - ctl_softc is always set 4382 * - be_lun is set if the LUN has a backend (needed for disk LUNs) 4383 * 4384 * Returns 0 for success, non-zero (errno) for failure. 4385 */ 4386 static int 4387 ctl_alloc_lun(struct ctl_softc *ctl_softc, struct ctl_lun *ctl_lun, 4388 struct ctl_be_lun *const be_lun) 4389 { 4390 struct ctl_lun *nlun, *lun; 4391 struct scsi_vpd_id_descriptor *desc; 4392 struct scsi_vpd_id_t10 *t10id; 4393 const char *eui, *naa, *scsiname, *vendor, *value; 4394 int lun_number, i, lun_malloced; 4395 int devidlen, idlen1, idlen2 = 0, len; 4396 4397 if (be_lun == NULL) 4398 return (EINVAL); 4399 4400 /* 4401 * We currently only support Direct Access or Processor LUN types. 4402 */ 4403 switch (be_lun->lun_type) { 4404 case T_DIRECT: 4405 case T_PROCESSOR: 4406 case T_CDROM: 4407 break; 4408 case T_SEQUENTIAL: 4409 case T_CHANGER: 4410 default: 4411 be_lun->lun_config_status(be_lun->be_lun, 4412 CTL_LUN_CONFIG_FAILURE); 4413 break; 4414 } 4415 if (ctl_lun == NULL) { 4416 lun = malloc(sizeof(*lun), M_CTL, M_WAITOK); 4417 lun_malloced = 1; 4418 } else { 4419 lun_malloced = 0; 4420 lun = ctl_lun; 4421 } 4422 4423 memset(lun, 0, sizeof(*lun)); 4424 if (lun_malloced) 4425 lun->flags = CTL_LUN_MALLOCED; 4426 4427 /* Generate LUN ID. */ 4428 devidlen = max(CTL_DEVID_MIN_LEN, 4429 strnlen(be_lun->device_id, CTL_DEVID_LEN)); 4430 idlen1 = sizeof(*t10id) + devidlen; 4431 len = sizeof(struct scsi_vpd_id_descriptor) + idlen1; 4432 scsiname = ctl_get_opt(&be_lun->options, "scsiname"); 4433 if (scsiname != NULL) { 4434 idlen2 = roundup2(strlen(scsiname) + 1, 4); 4435 len += sizeof(struct scsi_vpd_id_descriptor) + idlen2; 4436 } 4437 eui = ctl_get_opt(&be_lun->options, "eui"); 4438 if (eui != NULL) { 4439 len += sizeof(struct scsi_vpd_id_descriptor) + 16; 4440 } 4441 naa = ctl_get_opt(&be_lun->options, "naa"); 4442 if (naa != NULL) { 4443 len += sizeof(struct scsi_vpd_id_descriptor) + 16; 4444 } 4445 lun->lun_devid = malloc(sizeof(struct ctl_devid) + len, 4446 M_CTL, M_WAITOK | M_ZERO); 4447 desc = (struct scsi_vpd_id_descriptor *)lun->lun_devid->data; 4448 desc->proto_codeset = SVPD_ID_CODESET_ASCII; 4449 desc->id_type = SVPD_ID_PIV | SVPD_ID_ASSOC_LUN | SVPD_ID_TYPE_T10; 4450 desc->length = idlen1; 4451 t10id = (struct scsi_vpd_id_t10 *)&desc->identifier[0]; 4452 memset(t10id->vendor, ' ', sizeof(t10id->vendor)); 4453 if ((vendor = ctl_get_opt(&be_lun->options, "vendor")) == NULL) { 4454 strncpy((char *)t10id->vendor, CTL_VENDOR, sizeof(t10id->vendor)); 4455 } else { 4456 strncpy(t10id->vendor, vendor, 4457 min(sizeof(t10id->vendor), strlen(vendor))); 4458 } 4459 strncpy((char *)t10id->vendor_spec_id, 4460 (char *)be_lun->device_id, devidlen); 4461 if (scsiname != NULL) { 4462 desc = (struct scsi_vpd_id_descriptor *)(&desc->identifier[0] + 4463 desc->length); 4464 desc->proto_codeset = SVPD_ID_CODESET_UTF8; 4465 desc->id_type = SVPD_ID_PIV | SVPD_ID_ASSOC_LUN | 4466 SVPD_ID_TYPE_SCSI_NAME; 4467 desc->length = idlen2; 4468 strlcpy(desc->identifier, scsiname, idlen2); 4469 } 4470 if (eui != NULL) { 4471 desc = (struct scsi_vpd_id_descriptor *)(&desc->identifier[0] + 4472 desc->length); 4473 desc->proto_codeset = SVPD_ID_CODESET_BINARY; 4474 desc->id_type = SVPD_ID_PIV | SVPD_ID_ASSOC_LUN | 4475 SVPD_ID_TYPE_EUI64; 4476 desc->length = hex2bin(eui, desc->identifier, 16); 4477 desc->length = desc->length > 12 ? 16 : 4478 (desc->length > 8 ? 12 : 8); 4479 len -= 16 - desc->length; 4480 } 4481 if (naa != NULL) { 4482 desc = (struct scsi_vpd_id_descriptor *)(&desc->identifier[0] + 4483 desc->length); 4484 desc->proto_codeset = SVPD_ID_CODESET_BINARY; 4485 desc->id_type = SVPD_ID_PIV | SVPD_ID_ASSOC_LUN | 4486 SVPD_ID_TYPE_NAA; 4487 desc->length = hex2bin(naa, desc->identifier, 16); 4488 desc->length = desc->length > 8 ? 16 : 8; 4489 len -= 16 - desc->length; 4490 } 4491 lun->lun_devid->len = len; 4492 4493 mtx_lock(&ctl_softc->ctl_lock); 4494 /* 4495 * See if the caller requested a particular LUN number. If so, see 4496 * if it is available. Otherwise, allocate the first available LUN. 4497 */ 4498 if (be_lun->flags & CTL_LUN_FLAG_ID_REQ) { 4499 if ((be_lun->req_lun_id > (CTL_MAX_LUNS - 1)) 4500 || (ctl_is_set(ctl_softc->ctl_lun_mask, be_lun->req_lun_id))) { 4501 mtx_unlock(&ctl_softc->ctl_lock); 4502 if (be_lun->req_lun_id > (CTL_MAX_LUNS - 1)) { 4503 printf("ctl: requested LUN ID %d is higher " 4504 "than CTL_MAX_LUNS - 1 (%d)\n", 4505 be_lun->req_lun_id, CTL_MAX_LUNS - 1); 4506 } else { 4507 /* 4508 * XXX KDM return an error, or just assign 4509 * another LUN ID in this case?? 4510 */ 4511 printf("ctl: requested LUN ID %d is already " 4512 "in use\n", be_lun->req_lun_id); 4513 } 4514 if (lun->flags & CTL_LUN_MALLOCED) 4515 free(lun, M_CTL); 4516 be_lun->lun_config_status(be_lun->be_lun, 4517 CTL_LUN_CONFIG_FAILURE); 4518 return (ENOSPC); 4519 } 4520 lun_number = be_lun->req_lun_id; 4521 } else { 4522 lun_number = ctl_ffz(ctl_softc->ctl_lun_mask, 0, CTL_MAX_LUNS); 4523 if (lun_number == -1) { 4524 mtx_unlock(&ctl_softc->ctl_lock); 4525 printf("ctl: can't allocate LUN, out of LUNs\n"); 4526 if (lun->flags & CTL_LUN_MALLOCED) 4527 free(lun, M_CTL); 4528 be_lun->lun_config_status(be_lun->be_lun, 4529 CTL_LUN_CONFIG_FAILURE); 4530 return (ENOSPC); 4531 } 4532 } 4533 ctl_set_mask(ctl_softc->ctl_lun_mask, lun_number); 4534 4535 mtx_init(&lun->lun_lock, "CTL LUN", NULL, MTX_DEF); 4536 lun->lun = lun_number; 4537 lun->be_lun = be_lun; 4538 /* 4539 * The processor LUN is always enabled. Disk LUNs come on line 4540 * disabled, and must be enabled by the backend. 4541 */ 4542 lun->flags |= CTL_LUN_DISABLED; 4543 lun->backend = be_lun->be; 4544 be_lun->ctl_lun = lun; 4545 be_lun->lun_id = lun_number; 4546 atomic_add_int(&be_lun->be->num_luns, 1); 4547 if (be_lun->flags & CTL_LUN_FLAG_EJECTED) 4548 lun->flags |= CTL_LUN_EJECTED; 4549 if (be_lun->flags & CTL_LUN_FLAG_NO_MEDIA) 4550 lun->flags |= CTL_LUN_NO_MEDIA; 4551 if (be_lun->flags & CTL_LUN_FLAG_STOPPED) 4552 lun->flags |= CTL_LUN_STOPPED; 4553 4554 if (be_lun->flags & CTL_LUN_FLAG_PRIMARY) 4555 lun->flags |= CTL_LUN_PRIMARY_SC; 4556 4557 value = ctl_get_opt(&be_lun->options, "removable"); 4558 if (value != NULL) { 4559 if (strcmp(value, "on") == 0) 4560 lun->flags |= CTL_LUN_REMOVABLE; 4561 } else if (be_lun->lun_type == T_CDROM) 4562 lun->flags |= CTL_LUN_REMOVABLE; 4563 4564 lun->ctl_softc = ctl_softc; 4565 #ifdef CTL_TIME_IO 4566 lun->last_busy = getsbinuptime(); 4567 #endif 4568 TAILQ_INIT(&lun->ooa_queue); 4569 TAILQ_INIT(&lun->blocked_queue); 4570 STAILQ_INIT(&lun->error_list); 4571 ctl_tpc_lun_init(lun); 4572 4573 /* 4574 * Initialize the mode and log page index. 4575 */ 4576 ctl_init_page_index(lun); 4577 ctl_init_log_page_index(lun); 4578 4579 /* 4580 * Now, before we insert this lun on the lun list, set the lun 4581 * inventory changed UA for all other luns. 4582 */ 4583 STAILQ_FOREACH(nlun, &ctl_softc->lun_list, links) { 4584 mtx_lock(&nlun->lun_lock); 4585 ctl_est_ua_all(nlun, -1, CTL_UA_LUN_CHANGE); 4586 mtx_unlock(&nlun->lun_lock); 4587 } 4588 4589 STAILQ_INSERT_TAIL(&ctl_softc->lun_list, lun, links); 4590 4591 ctl_softc->ctl_luns[lun_number] = lun; 4592 4593 ctl_softc->num_luns++; 4594 4595 /* Setup statistics gathering */ 4596 lun->stats.device_type = be_lun->lun_type; 4597 lun->stats.lun_number = lun_number; 4598 lun->stats.blocksize = be_lun->blocksize; 4599 if (be_lun->blocksize == 0) 4600 lun->stats.flags = CTL_LUN_STATS_NO_BLOCKSIZE; 4601 for (i = 0;i < CTL_MAX_PORTS;i++) 4602 lun->stats.ports[i].targ_port = i; 4603 4604 mtx_unlock(&ctl_softc->ctl_lock); 4605 4606 lun->be_lun->lun_config_status(lun->be_lun->be_lun, CTL_LUN_CONFIG_OK); 4607 return (0); 4608 } 4609 4610 /* 4611 * Delete a LUN. 4612 * Assumptions: 4613 * - LUN has already been marked invalid and any pending I/O has been taken 4614 * care of. 4615 */ 4616 static int 4617 ctl_free_lun(struct ctl_lun *lun) 4618 { 4619 struct ctl_softc *softc; 4620 struct ctl_lun *nlun; 4621 int i; 4622 4623 softc = lun->ctl_softc; 4624 4625 mtx_assert(&softc->ctl_lock, MA_OWNED); 4626 4627 STAILQ_REMOVE(&softc->lun_list, lun, ctl_lun, links); 4628 4629 ctl_clear_mask(softc->ctl_lun_mask, lun->lun); 4630 4631 softc->ctl_luns[lun->lun] = NULL; 4632 4633 if (!TAILQ_EMPTY(&lun->ooa_queue)) 4634 panic("Freeing a LUN %p with outstanding I/O!!\n", lun); 4635 4636 softc->num_luns--; 4637 4638 /* 4639 * Tell the backend to free resources, if this LUN has a backend. 4640 */ 4641 atomic_subtract_int(&lun->be_lun->be->num_luns, 1); 4642 lun->be_lun->lun_shutdown(lun->be_lun->be_lun); 4643 4644 ctl_tpc_lun_shutdown(lun); 4645 mtx_destroy(&lun->lun_lock); 4646 free(lun->lun_devid, M_CTL); 4647 for (i = 0; i < CTL_MAX_PORTS; i++) 4648 free(lun->pending_ua[i], M_CTL); 4649 for (i = 0; i < CTL_MAX_PORTS; i++) 4650 free(lun->pr_keys[i], M_CTL); 4651 free(lun->write_buffer, M_CTL); 4652 if (lun->flags & CTL_LUN_MALLOCED) 4653 free(lun, M_CTL); 4654 4655 STAILQ_FOREACH(nlun, &softc->lun_list, links) { 4656 mtx_lock(&nlun->lun_lock); 4657 ctl_est_ua_all(nlun, -1, CTL_UA_LUN_CHANGE); 4658 mtx_unlock(&nlun->lun_lock); 4659 } 4660 4661 return (0); 4662 } 4663 4664 static void 4665 ctl_create_lun(struct ctl_be_lun *be_lun) 4666 { 4667 4668 /* 4669 * ctl_alloc_lun() should handle all potential failure cases. 4670 */ 4671 ctl_alloc_lun(control_softc, NULL, be_lun); 4672 } 4673 4674 int 4675 ctl_add_lun(struct ctl_be_lun *be_lun) 4676 { 4677 struct ctl_softc *softc = control_softc; 4678 4679 mtx_lock(&softc->ctl_lock); 4680 STAILQ_INSERT_TAIL(&softc->pending_lun_queue, be_lun, links); 4681 mtx_unlock(&softc->ctl_lock); 4682 wakeup(&softc->pending_lun_queue); 4683 4684 return (0); 4685 } 4686 4687 int 4688 ctl_enable_lun(struct ctl_be_lun *be_lun) 4689 { 4690 struct ctl_softc *softc; 4691 struct ctl_port *port, *nport; 4692 struct ctl_lun *lun; 4693 int retval; 4694 4695 lun = (struct ctl_lun *)be_lun->ctl_lun; 4696 softc = lun->ctl_softc; 4697 4698 mtx_lock(&softc->ctl_lock); 4699 mtx_lock(&lun->lun_lock); 4700 if ((lun->flags & CTL_LUN_DISABLED) == 0) { 4701 /* 4702 * eh? Why did we get called if the LUN is already 4703 * enabled? 4704 */ 4705 mtx_unlock(&lun->lun_lock); 4706 mtx_unlock(&softc->ctl_lock); 4707 return (0); 4708 } 4709 lun->flags &= ~CTL_LUN_DISABLED; 4710 mtx_unlock(&lun->lun_lock); 4711 4712 STAILQ_FOREACH_SAFE(port, &softc->port_list, links, nport) { 4713 if ((port->status & CTL_PORT_STATUS_ONLINE) == 0 || 4714 port->lun_map != NULL || port->lun_enable == NULL) 4715 continue; 4716 4717 /* 4718 * Drop the lock while we call the FETD's enable routine. 4719 * This can lead to a callback into CTL (at least in the 4720 * case of the internal initiator frontend. 4721 */ 4722 mtx_unlock(&softc->ctl_lock); 4723 retval = port->lun_enable(port->targ_lun_arg, lun->lun); 4724 mtx_lock(&softc->ctl_lock); 4725 if (retval != 0) { 4726 printf("%s: FETD %s port %d returned error " 4727 "%d for lun_enable on lun %jd\n", 4728 __func__, port->port_name, port->targ_port, 4729 retval, (intmax_t)lun->lun); 4730 } 4731 } 4732 4733 mtx_unlock(&softc->ctl_lock); 4734 ctl_isc_announce_lun(lun); 4735 4736 return (0); 4737 } 4738 4739 int 4740 ctl_disable_lun(struct ctl_be_lun *be_lun) 4741 { 4742 struct ctl_softc *softc; 4743 struct ctl_port *port; 4744 struct ctl_lun *lun; 4745 int retval; 4746 4747 lun = (struct ctl_lun *)be_lun->ctl_lun; 4748 softc = lun->ctl_softc; 4749 4750 mtx_lock(&softc->ctl_lock); 4751 mtx_lock(&lun->lun_lock); 4752 if (lun->flags & CTL_LUN_DISABLED) { 4753 mtx_unlock(&lun->lun_lock); 4754 mtx_unlock(&softc->ctl_lock); 4755 return (0); 4756 } 4757 lun->flags |= CTL_LUN_DISABLED; 4758 mtx_unlock(&lun->lun_lock); 4759 4760 STAILQ_FOREACH(port, &softc->port_list, links) { 4761 if ((port->status & CTL_PORT_STATUS_ONLINE) == 0 || 4762 port->lun_map != NULL || port->lun_disable == NULL) 4763 continue; 4764 4765 /* 4766 * Drop the lock before we call the frontend's disable 4767 * routine, to avoid lock order reversals. 4768 * 4769 * XXX KDM what happens if the frontend list changes while 4770 * we're traversing it? It's unlikely, but should be handled. 4771 */ 4772 mtx_unlock(&softc->ctl_lock); 4773 retval = port->lun_disable(port->targ_lun_arg, lun->lun); 4774 mtx_lock(&softc->ctl_lock); 4775 if (retval != 0) { 4776 printf("%s: FETD %s port %d returned error " 4777 "%d for lun_disable on lun %jd\n", 4778 __func__, port->port_name, port->targ_port, 4779 retval, (intmax_t)lun->lun); 4780 } 4781 } 4782 4783 mtx_unlock(&softc->ctl_lock); 4784 ctl_isc_announce_lun(lun); 4785 4786 return (0); 4787 } 4788 4789 int 4790 ctl_start_lun(struct ctl_be_lun *be_lun) 4791 { 4792 struct ctl_lun *lun = (struct ctl_lun *)be_lun->ctl_lun; 4793 4794 mtx_lock(&lun->lun_lock); 4795 lun->flags &= ~CTL_LUN_STOPPED; 4796 mtx_unlock(&lun->lun_lock); 4797 return (0); 4798 } 4799 4800 int 4801 ctl_stop_lun(struct ctl_be_lun *be_lun) 4802 { 4803 struct ctl_lun *lun = (struct ctl_lun *)be_lun->ctl_lun; 4804 4805 mtx_lock(&lun->lun_lock); 4806 lun->flags |= CTL_LUN_STOPPED; 4807 mtx_unlock(&lun->lun_lock); 4808 return (0); 4809 } 4810 4811 int 4812 ctl_lun_no_media(struct ctl_be_lun *be_lun) 4813 { 4814 struct ctl_lun *lun = (struct ctl_lun *)be_lun->ctl_lun; 4815 4816 mtx_lock(&lun->lun_lock); 4817 lun->flags |= CTL_LUN_NO_MEDIA; 4818 mtx_unlock(&lun->lun_lock); 4819 return (0); 4820 } 4821 4822 int 4823 ctl_lun_has_media(struct ctl_be_lun *be_lun) 4824 { 4825 struct ctl_lun *lun = (struct ctl_lun *)be_lun->ctl_lun; 4826 union ctl_ha_msg msg; 4827 4828 mtx_lock(&lun->lun_lock); 4829 lun->flags &= ~(CTL_LUN_NO_MEDIA | CTL_LUN_EJECTED); 4830 if (lun->flags & CTL_LUN_REMOVABLE) 4831 ctl_est_ua_all(lun, -1, CTL_UA_MEDIUM_CHANGE); 4832 mtx_unlock(&lun->lun_lock); 4833 if ((lun->flags & CTL_LUN_REMOVABLE) && 4834 lun->ctl_softc->ha_mode == CTL_HA_MODE_XFER) { 4835 bzero(&msg.ua, sizeof(msg.ua)); 4836 msg.hdr.msg_type = CTL_MSG_UA; 4837 msg.hdr.nexus.initid = -1; 4838 msg.hdr.nexus.targ_port = -1; 4839 msg.hdr.nexus.targ_lun = lun->lun; 4840 msg.hdr.nexus.targ_mapped_lun = lun->lun; 4841 msg.ua.ua_all = 1; 4842 msg.ua.ua_set = 1; 4843 msg.ua.ua_type = CTL_UA_MEDIUM_CHANGE; 4844 ctl_ha_msg_send(CTL_HA_CHAN_CTL, &msg, sizeof(msg.ua), 4845 M_WAITOK); 4846 } 4847 return (0); 4848 } 4849 4850 int 4851 ctl_lun_ejected(struct ctl_be_lun *be_lun) 4852 { 4853 struct ctl_lun *lun = (struct ctl_lun *)be_lun->ctl_lun; 4854 4855 mtx_lock(&lun->lun_lock); 4856 lun->flags |= CTL_LUN_EJECTED; 4857 mtx_unlock(&lun->lun_lock); 4858 return (0); 4859 } 4860 4861 int 4862 ctl_lun_primary(struct ctl_be_lun *be_lun) 4863 { 4864 struct ctl_lun *lun = (struct ctl_lun *)be_lun->ctl_lun; 4865 4866 mtx_lock(&lun->lun_lock); 4867 lun->flags |= CTL_LUN_PRIMARY_SC; 4868 ctl_est_ua_all(lun, -1, CTL_UA_ASYM_ACC_CHANGE); 4869 mtx_unlock(&lun->lun_lock); 4870 ctl_isc_announce_lun(lun); 4871 return (0); 4872 } 4873 4874 int 4875 ctl_lun_secondary(struct ctl_be_lun *be_lun) 4876 { 4877 struct ctl_lun *lun = (struct ctl_lun *)be_lun->ctl_lun; 4878 4879 mtx_lock(&lun->lun_lock); 4880 lun->flags &= ~CTL_LUN_PRIMARY_SC; 4881 ctl_est_ua_all(lun, -1, CTL_UA_ASYM_ACC_CHANGE); 4882 mtx_unlock(&lun->lun_lock); 4883 ctl_isc_announce_lun(lun); 4884 return (0); 4885 } 4886 4887 int 4888 ctl_invalidate_lun(struct ctl_be_lun *be_lun) 4889 { 4890 struct ctl_softc *softc; 4891 struct ctl_lun *lun; 4892 4893 lun = (struct ctl_lun *)be_lun->ctl_lun; 4894 softc = lun->ctl_softc; 4895 4896 mtx_lock(&lun->lun_lock); 4897 4898 /* 4899 * The LUN needs to be disabled before it can be marked invalid. 4900 */ 4901 if ((lun->flags & CTL_LUN_DISABLED) == 0) { 4902 mtx_unlock(&lun->lun_lock); 4903 return (-1); 4904 } 4905 /* 4906 * Mark the LUN invalid. 4907 */ 4908 lun->flags |= CTL_LUN_INVALID; 4909 4910 /* 4911 * If there is nothing in the OOA queue, go ahead and free the LUN. 4912 * If we have something in the OOA queue, we'll free it when the 4913 * last I/O completes. 4914 */ 4915 if (TAILQ_EMPTY(&lun->ooa_queue)) { 4916 mtx_unlock(&lun->lun_lock); 4917 mtx_lock(&softc->ctl_lock); 4918 ctl_free_lun(lun); 4919 mtx_unlock(&softc->ctl_lock); 4920 } else 4921 mtx_unlock(&lun->lun_lock); 4922 4923 return (0); 4924 } 4925 4926 void 4927 ctl_lun_capacity_changed(struct ctl_be_lun *be_lun) 4928 { 4929 struct ctl_lun *lun = (struct ctl_lun *)be_lun->ctl_lun; 4930 union ctl_ha_msg msg; 4931 4932 mtx_lock(&lun->lun_lock); 4933 ctl_est_ua_all(lun, -1, CTL_UA_CAPACITY_CHANGE); 4934 mtx_unlock(&lun->lun_lock); 4935 if (lun->ctl_softc->ha_mode == CTL_HA_MODE_XFER) { 4936 /* Send msg to other side. */ 4937 bzero(&msg.ua, sizeof(msg.ua)); 4938 msg.hdr.msg_type = CTL_MSG_UA; 4939 msg.hdr.nexus.initid = -1; 4940 msg.hdr.nexus.targ_port = -1; 4941 msg.hdr.nexus.targ_lun = lun->lun; 4942 msg.hdr.nexus.targ_mapped_lun = lun->lun; 4943 msg.ua.ua_all = 1; 4944 msg.ua.ua_set = 1; 4945 msg.ua.ua_type = CTL_UA_CAPACITY_CHANGE; 4946 ctl_ha_msg_send(CTL_HA_CHAN_CTL, &msg, sizeof(msg.ua), 4947 M_WAITOK); 4948 } 4949 } 4950 4951 /* 4952 * Backend "memory move is complete" callback for requests that never 4953 * make it down to say RAIDCore's configuration code. 4954 */ 4955 int 4956 ctl_config_move_done(union ctl_io *io) 4957 { 4958 int retval; 4959 4960 CTL_DEBUG_PRINT(("ctl_config_move_done\n")); 4961 KASSERT(io->io_hdr.io_type == CTL_IO_SCSI, 4962 ("Config I/O type isn't CTL_IO_SCSI (%d)!", io->io_hdr.io_type)); 4963 4964 if ((io->io_hdr.port_status != 0) && 4965 ((io->io_hdr.status & CTL_STATUS_MASK) == CTL_STATUS_NONE || 4966 (io->io_hdr.status & CTL_STATUS_MASK) == CTL_SUCCESS)) { 4967 /* 4968 * For hardware error sense keys, the sense key 4969 * specific value is defined to be a retry count, 4970 * but we use it to pass back an internal FETD 4971 * error code. XXX KDM Hopefully the FETD is only 4972 * using 16 bits for an error code, since that's 4973 * all the space we have in the sks field. 4974 */ 4975 ctl_set_internal_failure(&io->scsiio, 4976 /*sks_valid*/ 1, 4977 /*retry_count*/ 4978 io->io_hdr.port_status); 4979 } 4980 4981 if (ctl_debug & CTL_DEBUG_CDB_DATA) 4982 ctl_data_print(io); 4983 if (((io->io_hdr.flags & CTL_FLAG_DATA_MASK) == CTL_FLAG_DATA_IN) || 4984 ((io->io_hdr.status & CTL_STATUS_MASK) != CTL_STATUS_NONE && 4985 (io->io_hdr.status & CTL_STATUS_MASK) != CTL_SUCCESS) || 4986 ((io->io_hdr.flags & CTL_FLAG_ABORT) != 0)) { 4987 /* 4988 * XXX KDM just assuming a single pointer here, and not a 4989 * S/G list. If we start using S/G lists for config data, 4990 * we'll need to know how to clean them up here as well. 4991 */ 4992 if (io->io_hdr.flags & CTL_FLAG_ALLOCATED) 4993 free(io->scsiio.kern_data_ptr, M_CTL); 4994 ctl_done(io); 4995 retval = CTL_RETVAL_COMPLETE; 4996 } else { 4997 /* 4998 * XXX KDM now we need to continue data movement. Some 4999 * options: 5000 * - call ctl_scsiio() again? We don't do this for data 5001 * writes, because for those at least we know ahead of 5002 * time where the write will go and how long it is. For 5003 * config writes, though, that information is largely 5004 * contained within the write itself, thus we need to 5005 * parse out the data again. 5006 * 5007 * - Call some other function once the data is in? 5008 */ 5009 5010 /* 5011 * XXX KDM call ctl_scsiio() again for now, and check flag 5012 * bits to see whether we're allocated or not. 5013 */ 5014 retval = ctl_scsiio(&io->scsiio); 5015 } 5016 return (retval); 5017 } 5018 5019 /* 5020 * This gets called by a backend driver when it is done with a 5021 * data_submit method. 5022 */ 5023 void 5024 ctl_data_submit_done(union ctl_io *io) 5025 { 5026 /* 5027 * If the IO_CONT flag is set, we need to call the supplied 5028 * function to continue processing the I/O, instead of completing 5029 * the I/O just yet. 5030 * 5031 * If there is an error, though, we don't want to keep processing. 5032 * Instead, just send status back to the initiator. 5033 */ 5034 if ((io->io_hdr.flags & CTL_FLAG_IO_CONT) && 5035 (io->io_hdr.flags & CTL_FLAG_ABORT) == 0 && 5036 ((io->io_hdr.status & CTL_STATUS_MASK) == CTL_STATUS_NONE || 5037 (io->io_hdr.status & CTL_STATUS_MASK) == CTL_SUCCESS)) { 5038 io->scsiio.io_cont(io); 5039 return; 5040 } 5041 ctl_done(io); 5042 } 5043 5044 /* 5045 * This gets called by a backend driver when it is done with a 5046 * configuration write. 5047 */ 5048 void 5049 ctl_config_write_done(union ctl_io *io) 5050 { 5051 uint8_t *buf; 5052 5053 /* 5054 * If the IO_CONT flag is set, we need to call the supplied 5055 * function to continue processing the I/O, instead of completing 5056 * the I/O just yet. 5057 * 5058 * If there is an error, though, we don't want to keep processing. 5059 * Instead, just send status back to the initiator. 5060 */ 5061 if ((io->io_hdr.flags & CTL_FLAG_IO_CONT) && 5062 (io->io_hdr.flags & CTL_FLAG_ABORT) == 0 && 5063 ((io->io_hdr.status & CTL_STATUS_MASK) == CTL_STATUS_NONE || 5064 (io->io_hdr.status & CTL_STATUS_MASK) == CTL_SUCCESS)) { 5065 io->scsiio.io_cont(io); 5066 return; 5067 } 5068 /* 5069 * Since a configuration write can be done for commands that actually 5070 * have data allocated, like write buffer, and commands that have 5071 * no data, like start/stop unit, we need to check here. 5072 */ 5073 if (io->io_hdr.flags & CTL_FLAG_ALLOCATED) 5074 buf = io->scsiio.kern_data_ptr; 5075 else 5076 buf = NULL; 5077 ctl_done(io); 5078 if (buf) 5079 free(buf, M_CTL); 5080 } 5081 5082 void 5083 ctl_config_read_done(union ctl_io *io) 5084 { 5085 uint8_t *buf; 5086 5087 /* 5088 * If there is some error -- we are done, skip data transfer. 5089 */ 5090 if ((io->io_hdr.flags & CTL_FLAG_ABORT) != 0 || 5091 ((io->io_hdr.status & CTL_STATUS_MASK) != CTL_STATUS_NONE && 5092 (io->io_hdr.status & CTL_STATUS_MASK) != CTL_SUCCESS)) { 5093 if (io->io_hdr.flags & CTL_FLAG_ALLOCATED) 5094 buf = io->scsiio.kern_data_ptr; 5095 else 5096 buf = NULL; 5097 ctl_done(io); 5098 if (buf) 5099 free(buf, M_CTL); 5100 return; 5101 } 5102 5103 /* 5104 * If the IO_CONT flag is set, we need to call the supplied 5105 * function to continue processing the I/O, instead of completing 5106 * the I/O just yet. 5107 */ 5108 if (io->io_hdr.flags & CTL_FLAG_IO_CONT) { 5109 io->scsiio.io_cont(io); 5110 return; 5111 } 5112 5113 ctl_datamove(io); 5114 } 5115 5116 /* 5117 * SCSI release command. 5118 */ 5119 int 5120 ctl_scsi_release(struct ctl_scsiio *ctsio) 5121 { 5122 struct ctl_lun *lun; 5123 uint32_t residx; 5124 5125 CTL_DEBUG_PRINT(("ctl_scsi_release\n")); 5126 5127 residx = ctl_get_initindex(&ctsio->io_hdr.nexus); 5128 lun = (struct ctl_lun *)ctsio->io_hdr.ctl_private[CTL_PRIV_LUN].ptr; 5129 5130 /* 5131 * XXX KDM right now, we only support LUN reservation. We don't 5132 * support 3rd party reservations, or extent reservations, which 5133 * might actually need the parameter list. If we've gotten this 5134 * far, we've got a LUN reservation. Anything else got kicked out 5135 * above. So, according to SPC, ignore the length. 5136 */ 5137 5138 mtx_lock(&lun->lun_lock); 5139 5140 /* 5141 * According to SPC, it is not an error for an intiator to attempt 5142 * to release a reservation on a LUN that isn't reserved, or that 5143 * is reserved by another initiator. The reservation can only be 5144 * released, though, by the initiator who made it or by one of 5145 * several reset type events. 5146 */ 5147 if ((lun->flags & CTL_LUN_RESERVED) && (lun->res_idx == residx)) 5148 lun->flags &= ~CTL_LUN_RESERVED; 5149 5150 mtx_unlock(&lun->lun_lock); 5151 5152 ctl_set_success(ctsio); 5153 ctl_done((union ctl_io *)ctsio); 5154 return (CTL_RETVAL_COMPLETE); 5155 } 5156 5157 int 5158 ctl_scsi_reserve(struct ctl_scsiio *ctsio) 5159 { 5160 struct ctl_lun *lun; 5161 uint32_t residx; 5162 5163 CTL_DEBUG_PRINT(("ctl_reserve\n")); 5164 5165 residx = ctl_get_initindex(&ctsio->io_hdr.nexus); 5166 lun = (struct ctl_lun *)ctsio->io_hdr.ctl_private[CTL_PRIV_LUN].ptr; 5167 5168 /* 5169 * XXX KDM right now, we only support LUN reservation. We don't 5170 * support 3rd party reservations, or extent reservations, which 5171 * might actually need the parameter list. If we've gotten this 5172 * far, we've got a LUN reservation. Anything else got kicked out 5173 * above. So, according to SPC, ignore the length. 5174 */ 5175 5176 mtx_lock(&lun->lun_lock); 5177 if ((lun->flags & CTL_LUN_RESERVED) && (lun->res_idx != residx)) { 5178 ctl_set_reservation_conflict(ctsio); 5179 goto bailout; 5180 } 5181 5182 /* SPC-3 exceptions to SPC-2 RESERVE and RELEASE behavior. */ 5183 if (lun->flags & CTL_LUN_PR_RESERVED) { 5184 ctl_set_success(ctsio); 5185 goto bailout; 5186 } 5187 5188 lun->flags |= CTL_LUN_RESERVED; 5189 lun->res_idx = residx; 5190 ctl_set_success(ctsio); 5191 5192 bailout: 5193 mtx_unlock(&lun->lun_lock); 5194 ctl_done((union ctl_io *)ctsio); 5195 return (CTL_RETVAL_COMPLETE); 5196 } 5197 5198 int 5199 ctl_start_stop(struct ctl_scsiio *ctsio) 5200 { 5201 struct scsi_start_stop_unit *cdb; 5202 struct ctl_lun *lun; 5203 int retval; 5204 5205 CTL_DEBUG_PRINT(("ctl_start_stop\n")); 5206 5207 lun = (struct ctl_lun *)ctsio->io_hdr.ctl_private[CTL_PRIV_LUN].ptr; 5208 cdb = (struct scsi_start_stop_unit *)ctsio->cdb; 5209 5210 if ((cdb->how & SSS_PC_MASK) == 0) { 5211 if ((lun->flags & CTL_LUN_PR_RESERVED) && 5212 (cdb->how & SSS_START) == 0) { 5213 uint32_t residx; 5214 5215 residx = ctl_get_initindex(&ctsio->io_hdr.nexus); 5216 if (ctl_get_prkey(lun, residx) == 0 || 5217 (lun->pr_res_idx != residx && lun->pr_res_type < 4)) { 5218 5219 ctl_set_reservation_conflict(ctsio); 5220 ctl_done((union ctl_io *)ctsio); 5221 return (CTL_RETVAL_COMPLETE); 5222 } 5223 } 5224 5225 if ((cdb->how & SSS_LOEJ) && 5226 (lun->flags & CTL_LUN_REMOVABLE) == 0) { 5227 ctl_set_invalid_field(ctsio, 5228 /*sks_valid*/ 1, 5229 /*command*/ 1, 5230 /*field*/ 4, 5231 /*bit_valid*/ 1, 5232 /*bit*/ 1); 5233 ctl_done((union ctl_io *)ctsio); 5234 return (CTL_RETVAL_COMPLETE); 5235 } 5236 5237 if ((cdb->how & SSS_START) == 0 && (cdb->how & SSS_LOEJ) && 5238 lun->prevent_count > 0) { 5239 /* "Medium removal prevented" */ 5240 ctl_set_sense(ctsio, /*current_error*/ 1, 5241 /*sense_key*/(lun->flags & CTL_LUN_NO_MEDIA) ? 5242 SSD_KEY_NOT_READY : SSD_KEY_ILLEGAL_REQUEST, 5243 /*asc*/ 0x53, /*ascq*/ 0x02, SSD_ELEM_NONE); 5244 ctl_done((union ctl_io *)ctsio); 5245 return (CTL_RETVAL_COMPLETE); 5246 } 5247 } 5248 5249 retval = lun->backend->config_write((union ctl_io *)ctsio); 5250 return (retval); 5251 } 5252 5253 int 5254 ctl_prevent_allow(struct ctl_scsiio *ctsio) 5255 { 5256 struct ctl_lun *lun; 5257 struct scsi_prevent *cdb; 5258 int retval; 5259 uint32_t initidx; 5260 5261 CTL_DEBUG_PRINT(("ctl_prevent_allow\n")); 5262 5263 lun = (struct ctl_lun *)ctsio->io_hdr.ctl_private[CTL_PRIV_LUN].ptr; 5264 cdb = (struct scsi_prevent *)ctsio->cdb; 5265 5266 if ((lun->flags & CTL_LUN_REMOVABLE) == 0) { 5267 ctl_set_invalid_opcode(ctsio); 5268 ctl_done((union ctl_io *)ctsio); 5269 return (CTL_RETVAL_COMPLETE); 5270 } 5271 5272 initidx = ctl_get_initindex(&ctsio->io_hdr.nexus); 5273 mtx_lock(&lun->lun_lock); 5274 if ((cdb->how & PR_PREVENT) && 5275 ctl_is_set(lun->prevent, initidx) == 0) { 5276 ctl_set_mask(lun->prevent, initidx); 5277 lun->prevent_count++; 5278 } else if ((cdb->how & PR_PREVENT) == 0 && 5279 ctl_is_set(lun->prevent, initidx)) { 5280 ctl_clear_mask(lun->prevent, initidx); 5281 lun->prevent_count--; 5282 } 5283 mtx_unlock(&lun->lun_lock); 5284 retval = lun->backend->config_write((union ctl_io *)ctsio); 5285 return (retval); 5286 } 5287 5288 /* 5289 * We support the SYNCHRONIZE CACHE command (10 and 16 byte versions), but 5290 * we don't really do anything with the LBA and length fields if the user 5291 * passes them in. Instead we'll just flush out the cache for the entire 5292 * LUN. 5293 */ 5294 int 5295 ctl_sync_cache(struct ctl_scsiio *ctsio) 5296 { 5297 struct ctl_lun *lun; 5298 struct ctl_softc *softc; 5299 struct ctl_lba_len_flags *lbalen; 5300 uint64_t starting_lba; 5301 uint32_t block_count; 5302 int retval; 5303 uint8_t byte2; 5304 5305 CTL_DEBUG_PRINT(("ctl_sync_cache\n")); 5306 5307 lun = (struct ctl_lun *)ctsio->io_hdr.ctl_private[CTL_PRIV_LUN].ptr; 5308 softc = lun->ctl_softc; 5309 retval = 0; 5310 5311 switch (ctsio->cdb[0]) { 5312 case SYNCHRONIZE_CACHE: { 5313 struct scsi_sync_cache *cdb; 5314 cdb = (struct scsi_sync_cache *)ctsio->cdb; 5315 5316 starting_lba = scsi_4btoul(cdb->begin_lba); 5317 block_count = scsi_2btoul(cdb->lb_count); 5318 byte2 = cdb->byte2; 5319 break; 5320 } 5321 case SYNCHRONIZE_CACHE_16: { 5322 struct scsi_sync_cache_16 *cdb; 5323 cdb = (struct scsi_sync_cache_16 *)ctsio->cdb; 5324 5325 starting_lba = scsi_8btou64(cdb->begin_lba); 5326 block_count = scsi_4btoul(cdb->lb_count); 5327 byte2 = cdb->byte2; 5328 break; 5329 } 5330 default: 5331 ctl_set_invalid_opcode(ctsio); 5332 ctl_done((union ctl_io *)ctsio); 5333 goto bailout; 5334 break; /* NOTREACHED */ 5335 } 5336 5337 /* 5338 * We check the LBA and length, but don't do anything with them. 5339 * A SYNCHRONIZE CACHE will cause the entire cache for this lun to 5340 * get flushed. This check will just help satisfy anyone who wants 5341 * to see an error for an out of range LBA. 5342 */ 5343 if ((starting_lba + block_count) > (lun->be_lun->maxlba + 1)) { 5344 ctl_set_lba_out_of_range(ctsio); 5345 ctl_done((union ctl_io *)ctsio); 5346 goto bailout; 5347 } 5348 5349 lbalen = (struct ctl_lba_len_flags *)&ctsio->io_hdr.ctl_private[CTL_PRIV_LBA_LEN]; 5350 lbalen->lba = starting_lba; 5351 lbalen->len = block_count; 5352 lbalen->flags = byte2; 5353 retval = lun->backend->config_write((union ctl_io *)ctsio); 5354 5355 bailout: 5356 return (retval); 5357 } 5358 5359 int 5360 ctl_format(struct ctl_scsiio *ctsio) 5361 { 5362 struct scsi_format *cdb; 5363 struct ctl_lun *lun; 5364 int length, defect_list_len; 5365 5366 CTL_DEBUG_PRINT(("ctl_format\n")); 5367 5368 lun = (struct ctl_lun *)ctsio->io_hdr.ctl_private[CTL_PRIV_LUN].ptr; 5369 5370 cdb = (struct scsi_format *)ctsio->cdb; 5371 5372 length = 0; 5373 if (cdb->byte2 & SF_FMTDATA) { 5374 if (cdb->byte2 & SF_LONGLIST) 5375 length = sizeof(struct scsi_format_header_long); 5376 else 5377 length = sizeof(struct scsi_format_header_short); 5378 } 5379 5380 if (((ctsio->io_hdr.flags & CTL_FLAG_ALLOCATED) == 0) 5381 && (length > 0)) { 5382 ctsio->kern_data_ptr = malloc(length, M_CTL, M_WAITOK); 5383 ctsio->kern_data_len = length; 5384 ctsio->kern_total_len = length; 5385 ctsio->kern_data_resid = 0; 5386 ctsio->kern_rel_offset = 0; 5387 ctsio->kern_sg_entries = 0; 5388 ctsio->io_hdr.flags |= CTL_FLAG_ALLOCATED; 5389 ctsio->be_move_done = ctl_config_move_done; 5390 ctl_datamove((union ctl_io *)ctsio); 5391 5392 return (CTL_RETVAL_COMPLETE); 5393 } 5394 5395 defect_list_len = 0; 5396 5397 if (cdb->byte2 & SF_FMTDATA) { 5398 if (cdb->byte2 & SF_LONGLIST) { 5399 struct scsi_format_header_long *header; 5400 5401 header = (struct scsi_format_header_long *) 5402 ctsio->kern_data_ptr; 5403 5404 defect_list_len = scsi_4btoul(header->defect_list_len); 5405 if (defect_list_len != 0) { 5406 ctl_set_invalid_field(ctsio, 5407 /*sks_valid*/ 1, 5408 /*command*/ 0, 5409 /*field*/ 2, 5410 /*bit_valid*/ 0, 5411 /*bit*/ 0); 5412 goto bailout; 5413 } 5414 } else { 5415 struct scsi_format_header_short *header; 5416 5417 header = (struct scsi_format_header_short *) 5418 ctsio->kern_data_ptr; 5419 5420 defect_list_len = scsi_2btoul(header->defect_list_len); 5421 if (defect_list_len != 0) { 5422 ctl_set_invalid_field(ctsio, 5423 /*sks_valid*/ 1, 5424 /*command*/ 0, 5425 /*field*/ 2, 5426 /*bit_valid*/ 0, 5427 /*bit*/ 0); 5428 goto bailout; 5429 } 5430 } 5431 } 5432 5433 ctl_set_success(ctsio); 5434 bailout: 5435 5436 if (ctsio->io_hdr.flags & CTL_FLAG_ALLOCATED) { 5437 free(ctsio->kern_data_ptr, M_CTL); 5438 ctsio->io_hdr.flags &= ~CTL_FLAG_ALLOCATED; 5439 } 5440 5441 ctl_done((union ctl_io *)ctsio); 5442 return (CTL_RETVAL_COMPLETE); 5443 } 5444 5445 int 5446 ctl_read_buffer(struct ctl_scsiio *ctsio) 5447 { 5448 struct ctl_lun *lun; 5449 uint64_t buffer_offset; 5450 uint32_t len; 5451 uint8_t byte2; 5452 static uint8_t descr[4]; 5453 static uint8_t echo_descr[4] = { 0 }; 5454 5455 CTL_DEBUG_PRINT(("ctl_read_buffer\n")); 5456 lun = (struct ctl_lun *)ctsio->io_hdr.ctl_private[CTL_PRIV_LUN].ptr; 5457 switch (ctsio->cdb[0]) { 5458 case READ_BUFFER: { 5459 struct scsi_read_buffer *cdb; 5460 5461 cdb = (struct scsi_read_buffer *)ctsio->cdb; 5462 buffer_offset = scsi_3btoul(cdb->offset); 5463 len = scsi_3btoul(cdb->length); 5464 byte2 = cdb->byte2; 5465 break; 5466 } 5467 case READ_BUFFER_16: { 5468 struct scsi_read_buffer_16 *cdb; 5469 5470 cdb = (struct scsi_read_buffer_16 *)ctsio->cdb; 5471 buffer_offset = scsi_8btou64(cdb->offset); 5472 len = scsi_4btoul(cdb->length); 5473 byte2 = cdb->byte2; 5474 break; 5475 } 5476 default: /* This shouldn't happen. */ 5477 ctl_set_invalid_opcode(ctsio); 5478 ctl_done((union ctl_io *)ctsio); 5479 return (CTL_RETVAL_COMPLETE); 5480 } 5481 5482 if ((byte2 & RWB_MODE) != RWB_MODE_DATA && 5483 (byte2 & RWB_MODE) != RWB_MODE_ECHO_DESCR && 5484 (byte2 & RWB_MODE) != RWB_MODE_DESCR) { 5485 ctl_set_invalid_field(ctsio, 5486 /*sks_valid*/ 1, 5487 /*command*/ 1, 5488 /*field*/ 1, 5489 /*bit_valid*/ 1, 5490 /*bit*/ 4); 5491 ctl_done((union ctl_io *)ctsio); 5492 return (CTL_RETVAL_COMPLETE); 5493 } 5494 5495 if (buffer_offset > CTL_WRITE_BUFFER_SIZE || 5496 buffer_offset + len > CTL_WRITE_BUFFER_SIZE) { 5497 ctl_set_invalid_field(ctsio, 5498 /*sks_valid*/ 1, 5499 /*command*/ 1, 5500 /*field*/ 6, 5501 /*bit_valid*/ 0, 5502 /*bit*/ 0); 5503 ctl_done((union ctl_io *)ctsio); 5504 return (CTL_RETVAL_COMPLETE); 5505 } 5506 5507 if ((byte2 & RWB_MODE) == RWB_MODE_DESCR) { 5508 descr[0] = 0; 5509 scsi_ulto3b(CTL_WRITE_BUFFER_SIZE, &descr[1]); 5510 ctsio->kern_data_ptr = descr; 5511 len = min(len, sizeof(descr)); 5512 } else if ((byte2 & RWB_MODE) == RWB_MODE_ECHO_DESCR) { 5513 ctsio->kern_data_ptr = echo_descr; 5514 len = min(len, sizeof(echo_descr)); 5515 } else { 5516 if (lun->write_buffer == NULL) { 5517 lun->write_buffer = malloc(CTL_WRITE_BUFFER_SIZE, 5518 M_CTL, M_WAITOK); 5519 } 5520 ctsio->kern_data_ptr = lun->write_buffer + buffer_offset; 5521 } 5522 ctsio->kern_data_len = len; 5523 ctsio->kern_total_len = len; 5524 ctsio->kern_data_resid = 0; 5525 ctsio->kern_rel_offset = 0; 5526 ctsio->kern_sg_entries = 0; 5527 ctl_set_success(ctsio); 5528 ctsio->be_move_done = ctl_config_move_done; 5529 ctl_datamove((union ctl_io *)ctsio); 5530 return (CTL_RETVAL_COMPLETE); 5531 } 5532 5533 int 5534 ctl_write_buffer(struct ctl_scsiio *ctsio) 5535 { 5536 struct scsi_write_buffer *cdb; 5537 struct ctl_lun *lun; 5538 int buffer_offset, len; 5539 5540 CTL_DEBUG_PRINT(("ctl_write_buffer\n")); 5541 5542 lun = (struct ctl_lun *)ctsio->io_hdr.ctl_private[CTL_PRIV_LUN].ptr; 5543 cdb = (struct scsi_write_buffer *)ctsio->cdb; 5544 5545 if ((cdb->byte2 & RWB_MODE) != RWB_MODE_DATA) { 5546 ctl_set_invalid_field(ctsio, 5547 /*sks_valid*/ 1, 5548 /*command*/ 1, 5549 /*field*/ 1, 5550 /*bit_valid*/ 1, 5551 /*bit*/ 4); 5552 ctl_done((union ctl_io *)ctsio); 5553 return (CTL_RETVAL_COMPLETE); 5554 } 5555 5556 len = scsi_3btoul(cdb->length); 5557 buffer_offset = scsi_3btoul(cdb->offset); 5558 5559 if (buffer_offset + len > CTL_WRITE_BUFFER_SIZE) { 5560 ctl_set_invalid_field(ctsio, 5561 /*sks_valid*/ 1, 5562 /*command*/ 1, 5563 /*field*/ 6, 5564 /*bit_valid*/ 0, 5565 /*bit*/ 0); 5566 ctl_done((union ctl_io *)ctsio); 5567 return (CTL_RETVAL_COMPLETE); 5568 } 5569 5570 /* 5571 * If we've got a kernel request that hasn't been malloced yet, 5572 * malloc it and tell the caller the data buffer is here. 5573 */ 5574 if ((ctsio->io_hdr.flags & CTL_FLAG_ALLOCATED) == 0) { 5575 if (lun->write_buffer == NULL) { 5576 lun->write_buffer = malloc(CTL_WRITE_BUFFER_SIZE, 5577 M_CTL, M_WAITOK); 5578 } 5579 ctsio->kern_data_ptr = lun->write_buffer + buffer_offset; 5580 ctsio->kern_data_len = len; 5581 ctsio->kern_total_len = len; 5582 ctsio->kern_data_resid = 0; 5583 ctsio->kern_rel_offset = 0; 5584 ctsio->kern_sg_entries = 0; 5585 ctsio->io_hdr.flags |= CTL_FLAG_ALLOCATED; 5586 ctsio->be_move_done = ctl_config_move_done; 5587 ctl_datamove((union ctl_io *)ctsio); 5588 5589 return (CTL_RETVAL_COMPLETE); 5590 } 5591 5592 ctl_set_success(ctsio); 5593 ctl_done((union ctl_io *)ctsio); 5594 return (CTL_RETVAL_COMPLETE); 5595 } 5596 5597 int 5598 ctl_write_same(struct ctl_scsiio *ctsio) 5599 { 5600 struct ctl_lun *lun; 5601 struct ctl_lba_len_flags *lbalen; 5602 uint64_t lba; 5603 uint32_t num_blocks; 5604 int len, retval; 5605 uint8_t byte2; 5606 5607 CTL_DEBUG_PRINT(("ctl_write_same\n")); 5608 5609 lun = (struct ctl_lun *)ctsio->io_hdr.ctl_private[CTL_PRIV_LUN].ptr; 5610 5611 switch (ctsio->cdb[0]) { 5612 case WRITE_SAME_10: { 5613 struct scsi_write_same_10 *cdb; 5614 5615 cdb = (struct scsi_write_same_10 *)ctsio->cdb; 5616 5617 lba = scsi_4btoul(cdb->addr); 5618 num_blocks = scsi_2btoul(cdb->length); 5619 byte2 = cdb->byte2; 5620 break; 5621 } 5622 case WRITE_SAME_16: { 5623 struct scsi_write_same_16 *cdb; 5624 5625 cdb = (struct scsi_write_same_16 *)ctsio->cdb; 5626 5627 lba = scsi_8btou64(cdb->addr); 5628 num_blocks = scsi_4btoul(cdb->length); 5629 byte2 = cdb->byte2; 5630 break; 5631 } 5632 default: 5633 /* 5634 * We got a command we don't support. This shouldn't 5635 * happen, commands should be filtered out above us. 5636 */ 5637 ctl_set_invalid_opcode(ctsio); 5638 ctl_done((union ctl_io *)ctsio); 5639 5640 return (CTL_RETVAL_COMPLETE); 5641 break; /* NOTREACHED */ 5642 } 5643 5644 /* ANCHOR flag can be used only together with UNMAP */ 5645 if ((byte2 & SWS_UNMAP) == 0 && (byte2 & SWS_ANCHOR) != 0) { 5646 ctl_set_invalid_field(ctsio, /*sks_valid*/ 1, 5647 /*command*/ 1, /*field*/ 1, /*bit_valid*/ 1, /*bit*/ 0); 5648 ctl_done((union ctl_io *)ctsio); 5649 return (CTL_RETVAL_COMPLETE); 5650 } 5651 5652 /* 5653 * The first check is to make sure we're in bounds, the second 5654 * check is to catch wrap-around problems. If the lba + num blocks 5655 * is less than the lba, then we've wrapped around and the block 5656 * range is invalid anyway. 5657 */ 5658 if (((lba + num_blocks) > (lun->be_lun->maxlba + 1)) 5659 || ((lba + num_blocks) < lba)) { 5660 ctl_set_lba_out_of_range(ctsio); 5661 ctl_done((union ctl_io *)ctsio); 5662 return (CTL_RETVAL_COMPLETE); 5663 } 5664 5665 /* Zero number of blocks means "to the last logical block" */ 5666 if (num_blocks == 0) { 5667 if ((lun->be_lun->maxlba + 1) - lba > UINT32_MAX) { 5668 ctl_set_invalid_field(ctsio, 5669 /*sks_valid*/ 0, 5670 /*command*/ 1, 5671 /*field*/ 0, 5672 /*bit_valid*/ 0, 5673 /*bit*/ 0); 5674 ctl_done((union ctl_io *)ctsio); 5675 return (CTL_RETVAL_COMPLETE); 5676 } 5677 num_blocks = (lun->be_lun->maxlba + 1) - lba; 5678 } 5679 5680 len = lun->be_lun->blocksize; 5681 5682 /* 5683 * If we've got a kernel request that hasn't been malloced yet, 5684 * malloc it and tell the caller the data buffer is here. 5685 */ 5686 if ((byte2 & SWS_NDOB) == 0 && 5687 (ctsio->io_hdr.flags & CTL_FLAG_ALLOCATED) == 0) { 5688 ctsio->kern_data_ptr = malloc(len, M_CTL, M_WAITOK);; 5689 ctsio->kern_data_len = len; 5690 ctsio->kern_total_len = len; 5691 ctsio->kern_data_resid = 0; 5692 ctsio->kern_rel_offset = 0; 5693 ctsio->kern_sg_entries = 0; 5694 ctsio->io_hdr.flags |= CTL_FLAG_ALLOCATED; 5695 ctsio->be_move_done = ctl_config_move_done; 5696 ctl_datamove((union ctl_io *)ctsio); 5697 5698 return (CTL_RETVAL_COMPLETE); 5699 } 5700 5701 lbalen = (struct ctl_lba_len_flags *)&ctsio->io_hdr.ctl_private[CTL_PRIV_LBA_LEN]; 5702 lbalen->lba = lba; 5703 lbalen->len = num_blocks; 5704 lbalen->flags = byte2; 5705 retval = lun->backend->config_write((union ctl_io *)ctsio); 5706 5707 return (retval); 5708 } 5709 5710 int 5711 ctl_unmap(struct ctl_scsiio *ctsio) 5712 { 5713 struct ctl_lun *lun; 5714 struct scsi_unmap *cdb; 5715 struct ctl_ptr_len_flags *ptrlen; 5716 struct scsi_unmap_header *hdr; 5717 struct scsi_unmap_desc *buf, *end, *endnz, *range; 5718 uint64_t lba; 5719 uint32_t num_blocks; 5720 int len, retval; 5721 uint8_t byte2; 5722 5723 CTL_DEBUG_PRINT(("ctl_unmap\n")); 5724 5725 lun = (struct ctl_lun *)ctsio->io_hdr.ctl_private[CTL_PRIV_LUN].ptr; 5726 cdb = (struct scsi_unmap *)ctsio->cdb; 5727 5728 len = scsi_2btoul(cdb->length); 5729 byte2 = cdb->byte2; 5730 5731 /* 5732 * If we've got a kernel request that hasn't been malloced yet, 5733 * malloc it and tell the caller the data buffer is here. 5734 */ 5735 if ((ctsio->io_hdr.flags & CTL_FLAG_ALLOCATED) == 0) { 5736 ctsio->kern_data_ptr = malloc(len, M_CTL, M_WAITOK);; 5737 ctsio->kern_data_len = len; 5738 ctsio->kern_total_len = len; 5739 ctsio->kern_data_resid = 0; 5740 ctsio->kern_rel_offset = 0; 5741 ctsio->kern_sg_entries = 0; 5742 ctsio->io_hdr.flags |= CTL_FLAG_ALLOCATED; 5743 ctsio->be_move_done = ctl_config_move_done; 5744 ctl_datamove((union ctl_io *)ctsio); 5745 5746 return (CTL_RETVAL_COMPLETE); 5747 } 5748 5749 len = ctsio->kern_total_len - ctsio->kern_data_resid; 5750 hdr = (struct scsi_unmap_header *)ctsio->kern_data_ptr; 5751 if (len < sizeof (*hdr) || 5752 len < (scsi_2btoul(hdr->length) + sizeof(hdr->length)) || 5753 len < (scsi_2btoul(hdr->desc_length) + sizeof (*hdr)) || 5754 scsi_2btoul(hdr->desc_length) % sizeof(*buf) != 0) { 5755 ctl_set_invalid_field(ctsio, 5756 /*sks_valid*/ 0, 5757 /*command*/ 0, 5758 /*field*/ 0, 5759 /*bit_valid*/ 0, 5760 /*bit*/ 0); 5761 goto done; 5762 } 5763 len = scsi_2btoul(hdr->desc_length); 5764 buf = (struct scsi_unmap_desc *)(hdr + 1); 5765 end = buf + len / sizeof(*buf); 5766 5767 endnz = buf; 5768 for (range = buf; range < end; range++) { 5769 lba = scsi_8btou64(range->lba); 5770 num_blocks = scsi_4btoul(range->length); 5771 if (((lba + num_blocks) > (lun->be_lun->maxlba + 1)) 5772 || ((lba + num_blocks) < lba)) { 5773 ctl_set_lba_out_of_range(ctsio); 5774 ctl_done((union ctl_io *)ctsio); 5775 return (CTL_RETVAL_COMPLETE); 5776 } 5777 if (num_blocks != 0) 5778 endnz = range + 1; 5779 } 5780 5781 /* 5782 * Block backend can not handle zero last range. 5783 * Filter it out and return if there is nothing left. 5784 */ 5785 len = (uint8_t *)endnz - (uint8_t *)buf; 5786 if (len == 0) { 5787 ctl_set_success(ctsio); 5788 goto done; 5789 } 5790 5791 mtx_lock(&lun->lun_lock); 5792 ptrlen = (struct ctl_ptr_len_flags *) 5793 &ctsio->io_hdr.ctl_private[CTL_PRIV_LBA_LEN]; 5794 ptrlen->ptr = (void *)buf; 5795 ptrlen->len = len; 5796 ptrlen->flags = byte2; 5797 ctl_check_blocked(lun); 5798 mtx_unlock(&lun->lun_lock); 5799 5800 retval = lun->backend->config_write((union ctl_io *)ctsio); 5801 return (retval); 5802 5803 done: 5804 if (ctsio->io_hdr.flags & CTL_FLAG_ALLOCATED) { 5805 free(ctsio->kern_data_ptr, M_CTL); 5806 ctsio->io_hdr.flags &= ~CTL_FLAG_ALLOCATED; 5807 } 5808 ctl_done((union ctl_io *)ctsio); 5809 return (CTL_RETVAL_COMPLETE); 5810 } 5811 5812 /* 5813 * Note that this function currently doesn't actually do anything inside 5814 * CTL to enforce things if the DQue bit is turned on. 5815 * 5816 * Also note that this function can't be used in the default case, because 5817 * the DQue bit isn't set in the changeable mask for the control mode page 5818 * anyway. This is just here as an example for how to implement a page 5819 * handler, and a placeholder in case we want to allow the user to turn 5820 * tagged queueing on and off. 5821 * 5822 * The D_SENSE bit handling is functional, however, and will turn 5823 * descriptor sense on and off for a given LUN. 5824 */ 5825 int 5826 ctl_control_page_handler(struct ctl_scsiio *ctsio, 5827 struct ctl_page_index *page_index, uint8_t *page_ptr) 5828 { 5829 struct scsi_control_page *current_cp, *saved_cp, *user_cp; 5830 struct ctl_lun *lun; 5831 int set_ua; 5832 uint32_t initidx; 5833 5834 lun = (struct ctl_lun *)ctsio->io_hdr.ctl_private[CTL_PRIV_LUN].ptr; 5835 initidx = ctl_get_initindex(&ctsio->io_hdr.nexus); 5836 set_ua = 0; 5837 5838 user_cp = (struct scsi_control_page *)page_ptr; 5839 current_cp = (struct scsi_control_page *) 5840 (page_index->page_data + (page_index->page_len * 5841 CTL_PAGE_CURRENT)); 5842 saved_cp = (struct scsi_control_page *) 5843 (page_index->page_data + (page_index->page_len * 5844 CTL_PAGE_SAVED)); 5845 5846 mtx_lock(&lun->lun_lock); 5847 if (((current_cp->rlec & SCP_DSENSE) == 0) 5848 && ((user_cp->rlec & SCP_DSENSE) != 0)) { 5849 /* 5850 * Descriptor sense is currently turned off and the user 5851 * wants to turn it on. 5852 */ 5853 current_cp->rlec |= SCP_DSENSE; 5854 saved_cp->rlec |= SCP_DSENSE; 5855 lun->flags |= CTL_LUN_SENSE_DESC; 5856 set_ua = 1; 5857 } else if (((current_cp->rlec & SCP_DSENSE) != 0) 5858 && ((user_cp->rlec & SCP_DSENSE) == 0)) { 5859 /* 5860 * Descriptor sense is currently turned on, and the user 5861 * wants to turn it off. 5862 */ 5863 current_cp->rlec &= ~SCP_DSENSE; 5864 saved_cp->rlec &= ~SCP_DSENSE; 5865 lun->flags &= ~CTL_LUN_SENSE_DESC; 5866 set_ua = 1; 5867 } 5868 if ((current_cp->queue_flags & SCP_QUEUE_ALG_MASK) != 5869 (user_cp->queue_flags & SCP_QUEUE_ALG_MASK)) { 5870 current_cp->queue_flags &= ~SCP_QUEUE_ALG_MASK; 5871 current_cp->queue_flags |= user_cp->queue_flags & SCP_QUEUE_ALG_MASK; 5872 saved_cp->queue_flags &= ~SCP_QUEUE_ALG_MASK; 5873 saved_cp->queue_flags |= user_cp->queue_flags & SCP_QUEUE_ALG_MASK; 5874 set_ua = 1; 5875 } 5876 if ((current_cp->eca_and_aen & SCP_SWP) != 5877 (user_cp->eca_and_aen & SCP_SWP)) { 5878 current_cp->eca_and_aen &= ~SCP_SWP; 5879 current_cp->eca_and_aen |= user_cp->eca_and_aen & SCP_SWP; 5880 saved_cp->eca_and_aen &= ~SCP_SWP; 5881 saved_cp->eca_and_aen |= user_cp->eca_and_aen & SCP_SWP; 5882 set_ua = 1; 5883 } 5884 if (set_ua != 0) 5885 ctl_est_ua_all(lun, initidx, CTL_UA_MODE_CHANGE); 5886 mtx_unlock(&lun->lun_lock); 5887 if (set_ua) { 5888 ctl_isc_announce_mode(lun, 5889 ctl_get_initindex(&ctsio->io_hdr.nexus), 5890 page_index->page_code, page_index->subpage); 5891 } 5892 return (0); 5893 } 5894 5895 int 5896 ctl_caching_sp_handler(struct ctl_scsiio *ctsio, 5897 struct ctl_page_index *page_index, uint8_t *page_ptr) 5898 { 5899 struct scsi_caching_page *current_cp, *saved_cp, *user_cp; 5900 struct ctl_lun *lun; 5901 int set_ua; 5902 uint32_t initidx; 5903 5904 lun = (struct ctl_lun *)ctsio->io_hdr.ctl_private[CTL_PRIV_LUN].ptr; 5905 initidx = ctl_get_initindex(&ctsio->io_hdr.nexus); 5906 set_ua = 0; 5907 5908 user_cp = (struct scsi_caching_page *)page_ptr; 5909 current_cp = (struct scsi_caching_page *) 5910 (page_index->page_data + (page_index->page_len * 5911 CTL_PAGE_CURRENT)); 5912 saved_cp = (struct scsi_caching_page *) 5913 (page_index->page_data + (page_index->page_len * 5914 CTL_PAGE_SAVED)); 5915 5916 mtx_lock(&lun->lun_lock); 5917 if ((current_cp->flags1 & (SCP_WCE | SCP_RCD)) != 5918 (user_cp->flags1 & (SCP_WCE | SCP_RCD))) { 5919 current_cp->flags1 &= ~(SCP_WCE | SCP_RCD); 5920 current_cp->flags1 |= user_cp->flags1 & (SCP_WCE | SCP_RCD); 5921 saved_cp->flags1 &= ~(SCP_WCE | SCP_RCD); 5922 saved_cp->flags1 |= user_cp->flags1 & (SCP_WCE | SCP_RCD); 5923 set_ua = 1; 5924 } 5925 if (set_ua != 0) 5926 ctl_est_ua_all(lun, initidx, CTL_UA_MODE_CHANGE); 5927 mtx_unlock(&lun->lun_lock); 5928 if (set_ua) { 5929 ctl_isc_announce_mode(lun, 5930 ctl_get_initindex(&ctsio->io_hdr.nexus), 5931 page_index->page_code, page_index->subpage); 5932 } 5933 return (0); 5934 } 5935 5936 int 5937 ctl_debugconf_sp_select_handler(struct ctl_scsiio *ctsio, 5938 struct ctl_page_index *page_index, 5939 uint8_t *page_ptr) 5940 { 5941 uint8_t *c; 5942 int i; 5943 5944 c = ((struct copan_debugconf_subpage *)page_ptr)->ctl_time_io_secs; 5945 ctl_time_io_secs = 5946 (c[0] << 8) | 5947 (c[1] << 0) | 5948 0; 5949 CTL_DEBUG_PRINT(("set ctl_time_io_secs to %d\n", ctl_time_io_secs)); 5950 printf("set ctl_time_io_secs to %d\n", ctl_time_io_secs); 5951 printf("page data:"); 5952 for (i=0; i<8; i++) 5953 printf(" %.2x",page_ptr[i]); 5954 printf("\n"); 5955 return (0); 5956 } 5957 5958 int 5959 ctl_debugconf_sp_sense_handler(struct ctl_scsiio *ctsio, 5960 struct ctl_page_index *page_index, 5961 int pc) 5962 { 5963 struct copan_debugconf_subpage *page; 5964 5965 page = (struct copan_debugconf_subpage *)page_index->page_data + 5966 (page_index->page_len * pc); 5967 5968 switch (pc) { 5969 case SMS_PAGE_CTRL_CHANGEABLE >> 6: 5970 case SMS_PAGE_CTRL_DEFAULT >> 6: 5971 case SMS_PAGE_CTRL_SAVED >> 6: 5972 /* 5973 * We don't update the changable or default bits for this page. 5974 */ 5975 break; 5976 case SMS_PAGE_CTRL_CURRENT >> 6: 5977 page->ctl_time_io_secs[0] = ctl_time_io_secs >> 8; 5978 page->ctl_time_io_secs[1] = ctl_time_io_secs >> 0; 5979 break; 5980 default: 5981 break; 5982 } 5983 return (0); 5984 } 5985 5986 5987 static int 5988 ctl_do_mode_select(union ctl_io *io) 5989 { 5990 struct scsi_mode_page_header *page_header; 5991 struct ctl_page_index *page_index; 5992 struct ctl_scsiio *ctsio; 5993 int page_len, page_len_offset, page_len_size; 5994 union ctl_modepage_info *modepage_info; 5995 struct ctl_lun *lun; 5996 int *len_left, *len_used; 5997 int retval, i; 5998 5999 ctsio = &io->scsiio; 6000 page_index = NULL; 6001 page_len = 0; 6002 lun = (struct ctl_lun *)ctsio->io_hdr.ctl_private[CTL_PRIV_LUN].ptr; 6003 6004 modepage_info = (union ctl_modepage_info *) 6005 ctsio->io_hdr.ctl_private[CTL_PRIV_MODEPAGE].bytes; 6006 len_left = &modepage_info->header.len_left; 6007 len_used = &modepage_info->header.len_used; 6008 6009 do_next_page: 6010 6011 page_header = (struct scsi_mode_page_header *) 6012 (ctsio->kern_data_ptr + *len_used); 6013 6014 if (*len_left == 0) { 6015 free(ctsio->kern_data_ptr, M_CTL); 6016 ctl_set_success(ctsio); 6017 ctl_done((union ctl_io *)ctsio); 6018 return (CTL_RETVAL_COMPLETE); 6019 } else if (*len_left < sizeof(struct scsi_mode_page_header)) { 6020 6021 free(ctsio->kern_data_ptr, M_CTL); 6022 ctl_set_param_len_error(ctsio); 6023 ctl_done((union ctl_io *)ctsio); 6024 return (CTL_RETVAL_COMPLETE); 6025 6026 } else if ((page_header->page_code & SMPH_SPF) 6027 && (*len_left < sizeof(struct scsi_mode_page_header_sp))) { 6028 6029 free(ctsio->kern_data_ptr, M_CTL); 6030 ctl_set_param_len_error(ctsio); 6031 ctl_done((union ctl_io *)ctsio); 6032 return (CTL_RETVAL_COMPLETE); 6033 } 6034 6035 6036 /* 6037 * XXX KDM should we do something with the block descriptor? 6038 */ 6039 for (i = 0; i < CTL_NUM_MODE_PAGES; i++) { 6040 page_index = &lun->mode_pages.index[i]; 6041 if (lun->be_lun->lun_type == T_DIRECT && 6042 (page_index->page_flags & CTL_PAGE_FLAG_DIRECT) == 0) 6043 continue; 6044 if (lun->be_lun->lun_type == T_PROCESSOR && 6045 (page_index->page_flags & CTL_PAGE_FLAG_PROC) == 0) 6046 continue; 6047 if (lun->be_lun->lun_type == T_CDROM && 6048 (page_index->page_flags & CTL_PAGE_FLAG_CDROM) == 0) 6049 continue; 6050 6051 if ((page_index->page_code & SMPH_PC_MASK) != 6052 (page_header->page_code & SMPH_PC_MASK)) 6053 continue; 6054 6055 /* 6056 * If neither page has a subpage code, then we've got a 6057 * match. 6058 */ 6059 if (((page_index->page_code & SMPH_SPF) == 0) 6060 && ((page_header->page_code & SMPH_SPF) == 0)) { 6061 page_len = page_header->page_length; 6062 break; 6063 } 6064 6065 /* 6066 * If both pages have subpages, then the subpage numbers 6067 * have to match. 6068 */ 6069 if ((page_index->page_code & SMPH_SPF) 6070 && (page_header->page_code & SMPH_SPF)) { 6071 struct scsi_mode_page_header_sp *sph; 6072 6073 sph = (struct scsi_mode_page_header_sp *)page_header; 6074 if (page_index->subpage == sph->subpage) { 6075 page_len = scsi_2btoul(sph->page_length); 6076 break; 6077 } 6078 } 6079 } 6080 6081 /* 6082 * If we couldn't find the page, or if we don't have a mode select 6083 * handler for it, send back an error to the user. 6084 */ 6085 if ((i >= CTL_NUM_MODE_PAGES) 6086 || (page_index->select_handler == NULL)) { 6087 ctl_set_invalid_field(ctsio, 6088 /*sks_valid*/ 1, 6089 /*command*/ 0, 6090 /*field*/ *len_used, 6091 /*bit_valid*/ 0, 6092 /*bit*/ 0); 6093 free(ctsio->kern_data_ptr, M_CTL); 6094 ctl_done((union ctl_io *)ctsio); 6095 return (CTL_RETVAL_COMPLETE); 6096 } 6097 6098 if (page_index->page_code & SMPH_SPF) { 6099 page_len_offset = 2; 6100 page_len_size = 2; 6101 } else { 6102 page_len_size = 1; 6103 page_len_offset = 1; 6104 } 6105 6106 /* 6107 * If the length the initiator gives us isn't the one we specify in 6108 * the mode page header, or if they didn't specify enough data in 6109 * the CDB to avoid truncating this page, kick out the request. 6110 */ 6111 if ((page_len != (page_index->page_len - page_len_offset - 6112 page_len_size)) 6113 || (*len_left < page_index->page_len)) { 6114 6115 6116 ctl_set_invalid_field(ctsio, 6117 /*sks_valid*/ 1, 6118 /*command*/ 0, 6119 /*field*/ *len_used + page_len_offset, 6120 /*bit_valid*/ 0, 6121 /*bit*/ 0); 6122 free(ctsio->kern_data_ptr, M_CTL); 6123 ctl_done((union ctl_io *)ctsio); 6124 return (CTL_RETVAL_COMPLETE); 6125 } 6126 6127 /* 6128 * Run through the mode page, checking to make sure that the bits 6129 * the user changed are actually legal for him to change. 6130 */ 6131 for (i = 0; i < page_index->page_len; i++) { 6132 uint8_t *user_byte, *change_mask, *current_byte; 6133 int bad_bit; 6134 int j; 6135 6136 user_byte = (uint8_t *)page_header + i; 6137 change_mask = page_index->page_data + 6138 (page_index->page_len * CTL_PAGE_CHANGEABLE) + i; 6139 current_byte = page_index->page_data + 6140 (page_index->page_len * CTL_PAGE_CURRENT) + i; 6141 6142 /* 6143 * Check to see whether the user set any bits in this byte 6144 * that he is not allowed to set. 6145 */ 6146 if ((*user_byte & ~(*change_mask)) == 6147 (*current_byte & ~(*change_mask))) 6148 continue; 6149 6150 /* 6151 * Go through bit by bit to determine which one is illegal. 6152 */ 6153 bad_bit = 0; 6154 for (j = 7; j >= 0; j--) { 6155 if ((((1 << i) & ~(*change_mask)) & *user_byte) != 6156 (((1 << i) & ~(*change_mask)) & *current_byte)) { 6157 bad_bit = i; 6158 break; 6159 } 6160 } 6161 ctl_set_invalid_field(ctsio, 6162 /*sks_valid*/ 1, 6163 /*command*/ 0, 6164 /*field*/ *len_used + i, 6165 /*bit_valid*/ 1, 6166 /*bit*/ bad_bit); 6167 free(ctsio->kern_data_ptr, M_CTL); 6168 ctl_done((union ctl_io *)ctsio); 6169 return (CTL_RETVAL_COMPLETE); 6170 } 6171 6172 /* 6173 * Decrement these before we call the page handler, since we may 6174 * end up getting called back one way or another before the handler 6175 * returns to this context. 6176 */ 6177 *len_left -= page_index->page_len; 6178 *len_used += page_index->page_len; 6179 6180 retval = page_index->select_handler(ctsio, page_index, 6181 (uint8_t *)page_header); 6182 6183 /* 6184 * If the page handler returns CTL_RETVAL_QUEUED, then we need to 6185 * wait until this queued command completes to finish processing 6186 * the mode page. If it returns anything other than 6187 * CTL_RETVAL_COMPLETE (e.g. CTL_RETVAL_ERROR), then it should have 6188 * already set the sense information, freed the data pointer, and 6189 * completed the io for us. 6190 */ 6191 if (retval != CTL_RETVAL_COMPLETE) 6192 goto bailout_no_done; 6193 6194 /* 6195 * If the initiator sent us more than one page, parse the next one. 6196 */ 6197 if (*len_left > 0) 6198 goto do_next_page; 6199 6200 ctl_set_success(ctsio); 6201 free(ctsio->kern_data_ptr, M_CTL); 6202 ctl_done((union ctl_io *)ctsio); 6203 6204 bailout_no_done: 6205 6206 return (CTL_RETVAL_COMPLETE); 6207 6208 } 6209 6210 int 6211 ctl_mode_select(struct ctl_scsiio *ctsio) 6212 { 6213 int param_len, pf, sp; 6214 int header_size, bd_len; 6215 union ctl_modepage_info *modepage_info; 6216 6217 switch (ctsio->cdb[0]) { 6218 case MODE_SELECT_6: { 6219 struct scsi_mode_select_6 *cdb; 6220 6221 cdb = (struct scsi_mode_select_6 *)ctsio->cdb; 6222 6223 pf = (cdb->byte2 & SMS_PF) ? 1 : 0; 6224 sp = (cdb->byte2 & SMS_SP) ? 1 : 0; 6225 param_len = cdb->length; 6226 header_size = sizeof(struct scsi_mode_header_6); 6227 break; 6228 } 6229 case MODE_SELECT_10: { 6230 struct scsi_mode_select_10 *cdb; 6231 6232 cdb = (struct scsi_mode_select_10 *)ctsio->cdb; 6233 6234 pf = (cdb->byte2 & SMS_PF) ? 1 : 0; 6235 sp = (cdb->byte2 & SMS_SP) ? 1 : 0; 6236 param_len = scsi_2btoul(cdb->length); 6237 header_size = sizeof(struct scsi_mode_header_10); 6238 break; 6239 } 6240 default: 6241 ctl_set_invalid_opcode(ctsio); 6242 ctl_done((union ctl_io *)ctsio); 6243 return (CTL_RETVAL_COMPLETE); 6244 } 6245 6246 /* 6247 * From SPC-3: 6248 * "A parameter list length of zero indicates that the Data-Out Buffer 6249 * shall be empty. This condition shall not be considered as an error." 6250 */ 6251 if (param_len == 0) { 6252 ctl_set_success(ctsio); 6253 ctl_done((union ctl_io *)ctsio); 6254 return (CTL_RETVAL_COMPLETE); 6255 } 6256 6257 /* 6258 * Since we'll hit this the first time through, prior to 6259 * allocation, we don't need to free a data buffer here. 6260 */ 6261 if (param_len < header_size) { 6262 ctl_set_param_len_error(ctsio); 6263 ctl_done((union ctl_io *)ctsio); 6264 return (CTL_RETVAL_COMPLETE); 6265 } 6266 6267 /* 6268 * Allocate the data buffer and grab the user's data. In theory, 6269 * we shouldn't have to sanity check the parameter list length here 6270 * because the maximum size is 64K. We should be able to malloc 6271 * that much without too many problems. 6272 */ 6273 if ((ctsio->io_hdr.flags & CTL_FLAG_ALLOCATED) == 0) { 6274 ctsio->kern_data_ptr = malloc(param_len, M_CTL, M_WAITOK); 6275 ctsio->kern_data_len = param_len; 6276 ctsio->kern_total_len = param_len; 6277 ctsio->kern_data_resid = 0; 6278 ctsio->kern_rel_offset = 0; 6279 ctsio->kern_sg_entries = 0; 6280 ctsio->io_hdr.flags |= CTL_FLAG_ALLOCATED; 6281 ctsio->be_move_done = ctl_config_move_done; 6282 ctl_datamove((union ctl_io *)ctsio); 6283 6284 return (CTL_RETVAL_COMPLETE); 6285 } 6286 6287 switch (ctsio->cdb[0]) { 6288 case MODE_SELECT_6: { 6289 struct scsi_mode_header_6 *mh6; 6290 6291 mh6 = (struct scsi_mode_header_6 *)ctsio->kern_data_ptr; 6292 bd_len = mh6->blk_desc_len; 6293 break; 6294 } 6295 case MODE_SELECT_10: { 6296 struct scsi_mode_header_10 *mh10; 6297 6298 mh10 = (struct scsi_mode_header_10 *)ctsio->kern_data_ptr; 6299 bd_len = scsi_2btoul(mh10->blk_desc_len); 6300 break; 6301 } 6302 default: 6303 panic("%s: Invalid CDB type %#x", __func__, ctsio->cdb[0]); 6304 } 6305 6306 if (param_len < (header_size + bd_len)) { 6307 free(ctsio->kern_data_ptr, M_CTL); 6308 ctl_set_param_len_error(ctsio); 6309 ctl_done((union ctl_io *)ctsio); 6310 return (CTL_RETVAL_COMPLETE); 6311 } 6312 6313 /* 6314 * Set the IO_CONT flag, so that if this I/O gets passed to 6315 * ctl_config_write_done(), it'll get passed back to 6316 * ctl_do_mode_select() for further processing, or completion if 6317 * we're all done. 6318 */ 6319 ctsio->io_hdr.flags |= CTL_FLAG_IO_CONT; 6320 ctsio->io_cont = ctl_do_mode_select; 6321 6322 modepage_info = (union ctl_modepage_info *) 6323 ctsio->io_hdr.ctl_private[CTL_PRIV_MODEPAGE].bytes; 6324 memset(modepage_info, 0, sizeof(*modepage_info)); 6325 modepage_info->header.len_left = param_len - header_size - bd_len; 6326 modepage_info->header.len_used = header_size + bd_len; 6327 6328 return (ctl_do_mode_select((union ctl_io *)ctsio)); 6329 } 6330 6331 int 6332 ctl_mode_sense(struct ctl_scsiio *ctsio) 6333 { 6334 struct ctl_lun *lun; 6335 int pc, page_code, dbd, llba, subpage; 6336 int alloc_len, page_len, header_len, total_len; 6337 struct scsi_mode_block_descr *block_desc; 6338 struct ctl_page_index *page_index; 6339 6340 dbd = 0; 6341 llba = 0; 6342 block_desc = NULL; 6343 6344 CTL_DEBUG_PRINT(("ctl_mode_sense\n")); 6345 6346 lun = (struct ctl_lun *)ctsio->io_hdr.ctl_private[CTL_PRIV_LUN].ptr; 6347 switch (ctsio->cdb[0]) { 6348 case MODE_SENSE_6: { 6349 struct scsi_mode_sense_6 *cdb; 6350 6351 cdb = (struct scsi_mode_sense_6 *)ctsio->cdb; 6352 6353 header_len = sizeof(struct scsi_mode_hdr_6); 6354 if (cdb->byte2 & SMS_DBD) 6355 dbd = 1; 6356 else 6357 header_len += sizeof(struct scsi_mode_block_descr); 6358 6359 pc = (cdb->page & SMS_PAGE_CTRL_MASK) >> 6; 6360 page_code = cdb->page & SMS_PAGE_CODE; 6361 subpage = cdb->subpage; 6362 alloc_len = cdb->length; 6363 break; 6364 } 6365 case MODE_SENSE_10: { 6366 struct scsi_mode_sense_10 *cdb; 6367 6368 cdb = (struct scsi_mode_sense_10 *)ctsio->cdb; 6369 6370 header_len = sizeof(struct scsi_mode_hdr_10); 6371 6372 if (cdb->byte2 & SMS_DBD) 6373 dbd = 1; 6374 else 6375 header_len += sizeof(struct scsi_mode_block_descr); 6376 if (cdb->byte2 & SMS10_LLBAA) 6377 llba = 1; 6378 pc = (cdb->page & SMS_PAGE_CTRL_MASK) >> 6; 6379 page_code = cdb->page & SMS_PAGE_CODE; 6380 subpage = cdb->subpage; 6381 alloc_len = scsi_2btoul(cdb->length); 6382 break; 6383 } 6384 default: 6385 ctl_set_invalid_opcode(ctsio); 6386 ctl_done((union ctl_io *)ctsio); 6387 return (CTL_RETVAL_COMPLETE); 6388 break; /* NOTREACHED */ 6389 } 6390 6391 /* 6392 * We have to make a first pass through to calculate the size of 6393 * the pages that match the user's query. Then we allocate enough 6394 * memory to hold it, and actually copy the data into the buffer. 6395 */ 6396 switch (page_code) { 6397 case SMS_ALL_PAGES_PAGE: { 6398 int i; 6399 6400 page_len = 0; 6401 6402 /* 6403 * At the moment, values other than 0 and 0xff here are 6404 * reserved according to SPC-3. 6405 */ 6406 if ((subpage != SMS_SUBPAGE_PAGE_0) 6407 && (subpage != SMS_SUBPAGE_ALL)) { 6408 ctl_set_invalid_field(ctsio, 6409 /*sks_valid*/ 1, 6410 /*command*/ 1, 6411 /*field*/ 3, 6412 /*bit_valid*/ 0, 6413 /*bit*/ 0); 6414 ctl_done((union ctl_io *)ctsio); 6415 return (CTL_RETVAL_COMPLETE); 6416 } 6417 6418 for (i = 0; i < CTL_NUM_MODE_PAGES; i++) { 6419 page_index = &lun->mode_pages.index[i]; 6420 6421 /* Make sure the page is supported for this dev type */ 6422 if (lun->be_lun->lun_type == T_DIRECT && 6423 (page_index->page_flags & CTL_PAGE_FLAG_DIRECT) == 0) 6424 continue; 6425 if (lun->be_lun->lun_type == T_PROCESSOR && 6426 (page_index->page_flags & CTL_PAGE_FLAG_PROC) == 0) 6427 continue; 6428 if (lun->be_lun->lun_type == T_CDROM && 6429 (page_index->page_flags & CTL_PAGE_FLAG_CDROM) == 0) 6430 continue; 6431 6432 /* 6433 * We don't use this subpage if the user didn't 6434 * request all subpages. 6435 */ 6436 if ((page_index->subpage != 0) 6437 && (subpage == SMS_SUBPAGE_PAGE_0)) 6438 continue; 6439 6440 #if 0 6441 printf("found page %#x len %d\n", 6442 page_index->page_code & SMPH_PC_MASK, 6443 page_index->page_len); 6444 #endif 6445 page_len += page_index->page_len; 6446 } 6447 break; 6448 } 6449 default: { 6450 int i; 6451 6452 page_len = 0; 6453 6454 for (i = 0; i < CTL_NUM_MODE_PAGES; i++) { 6455 page_index = &lun->mode_pages.index[i]; 6456 6457 /* Make sure the page is supported for this dev type */ 6458 if (lun->be_lun->lun_type == T_DIRECT && 6459 (page_index->page_flags & CTL_PAGE_FLAG_DIRECT) == 0) 6460 continue; 6461 if (lun->be_lun->lun_type == T_PROCESSOR && 6462 (page_index->page_flags & CTL_PAGE_FLAG_PROC) == 0) 6463 continue; 6464 if (lun->be_lun->lun_type == T_CDROM && 6465 (page_index->page_flags & CTL_PAGE_FLAG_CDROM) == 0) 6466 continue; 6467 6468 /* Look for the right page code */ 6469 if ((page_index->page_code & SMPH_PC_MASK) != page_code) 6470 continue; 6471 6472 /* Look for the right subpage or the subpage wildcard*/ 6473 if ((page_index->subpage != subpage) 6474 && (subpage != SMS_SUBPAGE_ALL)) 6475 continue; 6476 6477 #if 0 6478 printf("found page %#x len %d\n", 6479 page_index->page_code & SMPH_PC_MASK, 6480 page_index->page_len); 6481 #endif 6482 6483 page_len += page_index->page_len; 6484 } 6485 6486 if (page_len == 0) { 6487 ctl_set_invalid_field(ctsio, 6488 /*sks_valid*/ 1, 6489 /*command*/ 1, 6490 /*field*/ 2, 6491 /*bit_valid*/ 1, 6492 /*bit*/ 5); 6493 ctl_done((union ctl_io *)ctsio); 6494 return (CTL_RETVAL_COMPLETE); 6495 } 6496 break; 6497 } 6498 } 6499 6500 total_len = header_len + page_len; 6501 #if 0 6502 printf("header_len = %d, page_len = %d, total_len = %d\n", 6503 header_len, page_len, total_len); 6504 #endif 6505 6506 ctsio->kern_data_ptr = malloc(total_len, M_CTL, M_WAITOK | M_ZERO); 6507 ctsio->kern_sg_entries = 0; 6508 ctsio->kern_data_resid = 0; 6509 ctsio->kern_rel_offset = 0; 6510 if (total_len < alloc_len) { 6511 ctsio->residual = alloc_len - total_len; 6512 ctsio->kern_data_len = total_len; 6513 ctsio->kern_total_len = total_len; 6514 } else { 6515 ctsio->residual = 0; 6516 ctsio->kern_data_len = alloc_len; 6517 ctsio->kern_total_len = alloc_len; 6518 } 6519 6520 switch (ctsio->cdb[0]) { 6521 case MODE_SENSE_6: { 6522 struct scsi_mode_hdr_6 *header; 6523 6524 header = (struct scsi_mode_hdr_6 *)ctsio->kern_data_ptr; 6525 6526 header->datalen = MIN(total_len - 1, 254); 6527 if (lun->be_lun->lun_type == T_DIRECT) { 6528 header->dev_specific = 0x10; /* DPOFUA */ 6529 if ((lun->be_lun->flags & CTL_LUN_FLAG_READONLY) || 6530 (lun->mode_pages.control_page[CTL_PAGE_CURRENT] 6531 .eca_and_aen & SCP_SWP) != 0) 6532 header->dev_specific |= 0x80; /* WP */ 6533 } 6534 if (dbd) 6535 header->block_descr_len = 0; 6536 else 6537 header->block_descr_len = 6538 sizeof(struct scsi_mode_block_descr); 6539 block_desc = (struct scsi_mode_block_descr *)&header[1]; 6540 break; 6541 } 6542 case MODE_SENSE_10: { 6543 struct scsi_mode_hdr_10 *header; 6544 int datalen; 6545 6546 header = (struct scsi_mode_hdr_10 *)ctsio->kern_data_ptr; 6547 6548 datalen = MIN(total_len - 2, 65533); 6549 scsi_ulto2b(datalen, header->datalen); 6550 if (lun->be_lun->lun_type == T_DIRECT) { 6551 header->dev_specific = 0x10; /* DPOFUA */ 6552 if ((lun->be_lun->flags & CTL_LUN_FLAG_READONLY) || 6553 (lun->mode_pages.control_page[CTL_PAGE_CURRENT] 6554 .eca_and_aen & SCP_SWP) != 0) 6555 header->dev_specific |= 0x80; /* WP */ 6556 } 6557 if (dbd) 6558 scsi_ulto2b(0, header->block_descr_len); 6559 else 6560 scsi_ulto2b(sizeof(struct scsi_mode_block_descr), 6561 header->block_descr_len); 6562 block_desc = (struct scsi_mode_block_descr *)&header[1]; 6563 break; 6564 } 6565 default: 6566 panic("%s: Invalid CDB type %#x", __func__, ctsio->cdb[0]); 6567 } 6568 6569 /* 6570 * If we've got a disk, use its blocksize in the block 6571 * descriptor. Otherwise, just set it to 0. 6572 */ 6573 if (dbd == 0) { 6574 if (lun->be_lun->lun_type == T_DIRECT) 6575 scsi_ulto3b(lun->be_lun->blocksize, 6576 block_desc->block_len); 6577 else 6578 scsi_ulto3b(0, block_desc->block_len); 6579 } 6580 6581 switch (page_code) { 6582 case SMS_ALL_PAGES_PAGE: { 6583 int i, data_used; 6584 6585 data_used = header_len; 6586 for (i = 0; i < CTL_NUM_MODE_PAGES; i++) { 6587 struct ctl_page_index *page_index; 6588 6589 page_index = &lun->mode_pages.index[i]; 6590 if (lun->be_lun->lun_type == T_DIRECT && 6591 (page_index->page_flags & CTL_PAGE_FLAG_DIRECT) == 0) 6592 continue; 6593 if (lun->be_lun->lun_type == T_PROCESSOR && 6594 (page_index->page_flags & CTL_PAGE_FLAG_PROC) == 0) 6595 continue; 6596 if (lun->be_lun->lun_type == T_CDROM && 6597 (page_index->page_flags & CTL_PAGE_FLAG_CDROM) == 0) 6598 continue; 6599 6600 /* 6601 * We don't use this subpage if the user didn't 6602 * request all subpages. We already checked (above) 6603 * to make sure the user only specified a subpage 6604 * of 0 or 0xff in the SMS_ALL_PAGES_PAGE case. 6605 */ 6606 if ((page_index->subpage != 0) 6607 && (subpage == SMS_SUBPAGE_PAGE_0)) 6608 continue; 6609 6610 /* 6611 * Call the handler, if it exists, to update the 6612 * page to the latest values. 6613 */ 6614 if (page_index->sense_handler != NULL) 6615 page_index->sense_handler(ctsio, page_index,pc); 6616 6617 memcpy(ctsio->kern_data_ptr + data_used, 6618 page_index->page_data + 6619 (page_index->page_len * pc), 6620 page_index->page_len); 6621 data_used += page_index->page_len; 6622 } 6623 break; 6624 } 6625 default: { 6626 int i, data_used; 6627 6628 data_used = header_len; 6629 6630 for (i = 0; i < CTL_NUM_MODE_PAGES; i++) { 6631 struct ctl_page_index *page_index; 6632 6633 page_index = &lun->mode_pages.index[i]; 6634 6635 /* Look for the right page code */ 6636 if ((page_index->page_code & SMPH_PC_MASK) != page_code) 6637 continue; 6638 6639 /* Look for the right subpage or the subpage wildcard*/ 6640 if ((page_index->subpage != subpage) 6641 && (subpage != SMS_SUBPAGE_ALL)) 6642 continue; 6643 6644 /* Make sure the page is supported for this dev type */ 6645 if (lun->be_lun->lun_type == T_DIRECT && 6646 (page_index->page_flags & CTL_PAGE_FLAG_DIRECT) == 0) 6647 continue; 6648 if (lun->be_lun->lun_type == T_PROCESSOR && 6649 (page_index->page_flags & CTL_PAGE_FLAG_PROC) == 0) 6650 continue; 6651 if (lun->be_lun->lun_type == T_CDROM && 6652 (page_index->page_flags & CTL_PAGE_FLAG_CDROM) == 0) 6653 continue; 6654 6655 /* 6656 * Call the handler, if it exists, to update the 6657 * page to the latest values. 6658 */ 6659 if (page_index->sense_handler != NULL) 6660 page_index->sense_handler(ctsio, page_index,pc); 6661 6662 memcpy(ctsio->kern_data_ptr + data_used, 6663 page_index->page_data + 6664 (page_index->page_len * pc), 6665 page_index->page_len); 6666 data_used += page_index->page_len; 6667 } 6668 break; 6669 } 6670 } 6671 6672 ctl_set_success(ctsio); 6673 ctsio->io_hdr.flags |= CTL_FLAG_ALLOCATED; 6674 ctsio->be_move_done = ctl_config_move_done; 6675 ctl_datamove((union ctl_io *)ctsio); 6676 return (CTL_RETVAL_COMPLETE); 6677 } 6678 6679 int 6680 ctl_lbp_log_sense_handler(struct ctl_scsiio *ctsio, 6681 struct ctl_page_index *page_index, 6682 int pc) 6683 { 6684 struct ctl_lun *lun; 6685 struct scsi_log_param_header *phdr; 6686 uint8_t *data; 6687 uint64_t val; 6688 6689 lun = (struct ctl_lun *)ctsio->io_hdr.ctl_private[CTL_PRIV_LUN].ptr; 6690 data = page_index->page_data; 6691 6692 if (lun->backend->lun_attr != NULL && 6693 (val = lun->backend->lun_attr(lun->be_lun->be_lun, "blocksavail")) 6694 != UINT64_MAX) { 6695 phdr = (struct scsi_log_param_header *)data; 6696 scsi_ulto2b(0x0001, phdr->param_code); 6697 phdr->param_control = SLP_LBIN | SLP_LP; 6698 phdr->param_len = 8; 6699 data = (uint8_t *)(phdr + 1); 6700 scsi_ulto4b(val >> CTL_LBP_EXPONENT, data); 6701 data[4] = 0x02; /* per-pool */ 6702 data += phdr->param_len; 6703 } 6704 6705 if (lun->backend->lun_attr != NULL && 6706 (val = lun->backend->lun_attr(lun->be_lun->be_lun, "blocksused")) 6707 != UINT64_MAX) { 6708 phdr = (struct scsi_log_param_header *)data; 6709 scsi_ulto2b(0x0002, phdr->param_code); 6710 phdr->param_control = SLP_LBIN | SLP_LP; 6711 phdr->param_len = 8; 6712 data = (uint8_t *)(phdr + 1); 6713 scsi_ulto4b(val >> CTL_LBP_EXPONENT, data); 6714 data[4] = 0x01; /* per-LUN */ 6715 data += phdr->param_len; 6716 } 6717 6718 if (lun->backend->lun_attr != NULL && 6719 (val = lun->backend->lun_attr(lun->be_lun->be_lun, "poolblocksavail")) 6720 != UINT64_MAX) { 6721 phdr = (struct scsi_log_param_header *)data; 6722 scsi_ulto2b(0x00f1, phdr->param_code); 6723 phdr->param_control = SLP_LBIN | SLP_LP; 6724 phdr->param_len = 8; 6725 data = (uint8_t *)(phdr + 1); 6726 scsi_ulto4b(val >> CTL_LBP_EXPONENT, data); 6727 data[4] = 0x02; /* per-pool */ 6728 data += phdr->param_len; 6729 } 6730 6731 if (lun->backend->lun_attr != NULL && 6732 (val = lun->backend->lun_attr(lun->be_lun->be_lun, "poolblocksused")) 6733 != UINT64_MAX) { 6734 phdr = (struct scsi_log_param_header *)data; 6735 scsi_ulto2b(0x00f2, phdr->param_code); 6736 phdr->param_control = SLP_LBIN | SLP_LP; 6737 phdr->param_len = 8; 6738 data = (uint8_t *)(phdr + 1); 6739 scsi_ulto4b(val >> CTL_LBP_EXPONENT, data); 6740 data[4] = 0x02; /* per-pool */ 6741 data += phdr->param_len; 6742 } 6743 6744 page_index->page_len = data - page_index->page_data; 6745 return (0); 6746 } 6747 6748 int 6749 ctl_sap_log_sense_handler(struct ctl_scsiio *ctsio, 6750 struct ctl_page_index *page_index, 6751 int pc) 6752 { 6753 struct ctl_lun *lun; 6754 struct stat_page *data; 6755 uint64_t rn, wn, rb, wb; 6756 struct bintime rt, wt; 6757 int i; 6758 6759 lun = (struct ctl_lun *)ctsio->io_hdr.ctl_private[CTL_PRIV_LUN].ptr; 6760 data = (struct stat_page *)page_index->page_data; 6761 6762 scsi_ulto2b(SLP_SAP, data->sap.hdr.param_code); 6763 data->sap.hdr.param_control = SLP_LBIN; 6764 data->sap.hdr.param_len = sizeof(struct scsi_log_stat_and_perf) - 6765 sizeof(struct scsi_log_param_header); 6766 rn = wn = rb = wb = 0; 6767 bintime_clear(&rt); 6768 bintime_clear(&wt); 6769 for (i = 0; i < CTL_MAX_PORTS; i++) { 6770 rn += lun->stats.ports[i].operations[CTL_STATS_READ]; 6771 wn += lun->stats.ports[i].operations[CTL_STATS_WRITE]; 6772 rb += lun->stats.ports[i].bytes[CTL_STATS_READ]; 6773 wb += lun->stats.ports[i].bytes[CTL_STATS_WRITE]; 6774 bintime_add(&rt, &lun->stats.ports[i].time[CTL_STATS_READ]); 6775 bintime_add(&wt, &lun->stats.ports[i].time[CTL_STATS_WRITE]); 6776 } 6777 scsi_u64to8b(rn, data->sap.read_num); 6778 scsi_u64to8b(wn, data->sap.write_num); 6779 if (lun->stats.blocksize > 0) { 6780 scsi_u64to8b(wb / lun->stats.blocksize, 6781 data->sap.recvieved_lba); 6782 scsi_u64to8b(rb / lun->stats.blocksize, 6783 data->sap.transmitted_lba); 6784 } 6785 scsi_u64to8b((uint64_t)rt.sec * 1000 + rt.frac / (UINT64_MAX / 1000), 6786 data->sap.read_int); 6787 scsi_u64to8b((uint64_t)wt.sec * 1000 + wt.frac / (UINT64_MAX / 1000), 6788 data->sap.write_int); 6789 scsi_u64to8b(0, data->sap.weighted_num); 6790 scsi_u64to8b(0, data->sap.weighted_int); 6791 scsi_ulto2b(SLP_IT, data->it.hdr.param_code); 6792 data->it.hdr.param_control = SLP_LBIN; 6793 data->it.hdr.param_len = sizeof(struct scsi_log_idle_time) - 6794 sizeof(struct scsi_log_param_header); 6795 #ifdef CTL_TIME_IO 6796 scsi_u64to8b(lun->idle_time / SBT_1MS, data->it.idle_int); 6797 #endif 6798 scsi_ulto2b(SLP_TI, data->ti.hdr.param_code); 6799 data->it.hdr.param_control = SLP_LBIN; 6800 data->ti.hdr.param_len = sizeof(struct scsi_log_time_interval) - 6801 sizeof(struct scsi_log_param_header); 6802 scsi_ulto4b(3, data->ti.exponent); 6803 scsi_ulto4b(1, data->ti.integer); 6804 6805 page_index->page_len = sizeof(*data); 6806 return (0); 6807 } 6808 6809 int 6810 ctl_log_sense(struct ctl_scsiio *ctsio) 6811 { 6812 struct ctl_lun *lun; 6813 int i, pc, page_code, subpage; 6814 int alloc_len, total_len; 6815 struct ctl_page_index *page_index; 6816 struct scsi_log_sense *cdb; 6817 struct scsi_log_header *header; 6818 6819 CTL_DEBUG_PRINT(("ctl_log_sense\n")); 6820 6821 lun = (struct ctl_lun *)ctsio->io_hdr.ctl_private[CTL_PRIV_LUN].ptr; 6822 cdb = (struct scsi_log_sense *)ctsio->cdb; 6823 pc = (cdb->page & SLS_PAGE_CTRL_MASK) >> 6; 6824 page_code = cdb->page & SLS_PAGE_CODE; 6825 subpage = cdb->subpage; 6826 alloc_len = scsi_2btoul(cdb->length); 6827 6828 page_index = NULL; 6829 for (i = 0; i < CTL_NUM_LOG_PAGES; i++) { 6830 page_index = &lun->log_pages.index[i]; 6831 6832 /* Look for the right page code */ 6833 if ((page_index->page_code & SL_PAGE_CODE) != page_code) 6834 continue; 6835 6836 /* Look for the right subpage or the subpage wildcard*/ 6837 if (page_index->subpage != subpage) 6838 continue; 6839 6840 break; 6841 } 6842 if (i >= CTL_NUM_LOG_PAGES) { 6843 ctl_set_invalid_field(ctsio, 6844 /*sks_valid*/ 1, 6845 /*command*/ 1, 6846 /*field*/ 2, 6847 /*bit_valid*/ 0, 6848 /*bit*/ 0); 6849 ctl_done((union ctl_io *)ctsio); 6850 return (CTL_RETVAL_COMPLETE); 6851 } 6852 6853 total_len = sizeof(struct scsi_log_header) + page_index->page_len; 6854 6855 ctsio->kern_data_ptr = malloc(total_len, M_CTL, M_WAITOK | M_ZERO); 6856 ctsio->kern_sg_entries = 0; 6857 ctsio->kern_data_resid = 0; 6858 ctsio->kern_rel_offset = 0; 6859 if (total_len < alloc_len) { 6860 ctsio->residual = alloc_len - total_len; 6861 ctsio->kern_data_len = total_len; 6862 ctsio->kern_total_len = total_len; 6863 } else { 6864 ctsio->residual = 0; 6865 ctsio->kern_data_len = alloc_len; 6866 ctsio->kern_total_len = alloc_len; 6867 } 6868 6869 header = (struct scsi_log_header *)ctsio->kern_data_ptr; 6870 header->page = page_index->page_code; 6871 if (page_index->subpage) { 6872 header->page |= SL_SPF; 6873 header->subpage = page_index->subpage; 6874 } 6875 scsi_ulto2b(page_index->page_len, header->datalen); 6876 6877 /* 6878 * Call the handler, if it exists, to update the 6879 * page to the latest values. 6880 */ 6881 if (page_index->sense_handler != NULL) 6882 page_index->sense_handler(ctsio, page_index, pc); 6883 6884 memcpy(header + 1, page_index->page_data, page_index->page_len); 6885 6886 ctl_set_success(ctsio); 6887 ctsio->io_hdr.flags |= CTL_FLAG_ALLOCATED; 6888 ctsio->be_move_done = ctl_config_move_done; 6889 ctl_datamove((union ctl_io *)ctsio); 6890 return (CTL_RETVAL_COMPLETE); 6891 } 6892 6893 int 6894 ctl_read_capacity(struct ctl_scsiio *ctsio) 6895 { 6896 struct scsi_read_capacity *cdb; 6897 struct scsi_read_capacity_data *data; 6898 struct ctl_lun *lun; 6899 uint32_t lba; 6900 6901 CTL_DEBUG_PRINT(("ctl_read_capacity\n")); 6902 6903 cdb = (struct scsi_read_capacity *)ctsio->cdb; 6904 6905 lba = scsi_4btoul(cdb->addr); 6906 if (((cdb->pmi & SRC_PMI) == 0) 6907 && (lba != 0)) { 6908 ctl_set_invalid_field(/*ctsio*/ ctsio, 6909 /*sks_valid*/ 1, 6910 /*command*/ 1, 6911 /*field*/ 2, 6912 /*bit_valid*/ 0, 6913 /*bit*/ 0); 6914 ctl_done((union ctl_io *)ctsio); 6915 return (CTL_RETVAL_COMPLETE); 6916 } 6917 6918 lun = (struct ctl_lun *)ctsio->io_hdr.ctl_private[CTL_PRIV_LUN].ptr; 6919 6920 ctsio->kern_data_ptr = malloc(sizeof(*data), M_CTL, M_WAITOK | M_ZERO); 6921 data = (struct scsi_read_capacity_data *)ctsio->kern_data_ptr; 6922 ctsio->residual = 0; 6923 ctsio->kern_data_len = sizeof(*data); 6924 ctsio->kern_total_len = sizeof(*data); 6925 ctsio->kern_data_resid = 0; 6926 ctsio->kern_rel_offset = 0; 6927 ctsio->kern_sg_entries = 0; 6928 6929 /* 6930 * If the maximum LBA is greater than 0xfffffffe, the user must 6931 * issue a SERVICE ACTION IN (16) command, with the read capacity 6932 * serivce action set. 6933 */ 6934 if (lun->be_lun->maxlba > 0xfffffffe) 6935 scsi_ulto4b(0xffffffff, data->addr); 6936 else 6937 scsi_ulto4b(lun->be_lun->maxlba, data->addr); 6938 6939 /* 6940 * XXX KDM this may not be 512 bytes... 6941 */ 6942 scsi_ulto4b(lun->be_lun->blocksize, data->length); 6943 6944 ctl_set_success(ctsio); 6945 ctsio->io_hdr.flags |= CTL_FLAG_ALLOCATED; 6946 ctsio->be_move_done = ctl_config_move_done; 6947 ctl_datamove((union ctl_io *)ctsio); 6948 return (CTL_RETVAL_COMPLETE); 6949 } 6950 6951 int 6952 ctl_read_capacity_16(struct ctl_scsiio *ctsio) 6953 { 6954 struct scsi_read_capacity_16 *cdb; 6955 struct scsi_read_capacity_data_long *data; 6956 struct ctl_lun *lun; 6957 uint64_t lba; 6958 uint32_t alloc_len; 6959 6960 CTL_DEBUG_PRINT(("ctl_read_capacity_16\n")); 6961 6962 cdb = (struct scsi_read_capacity_16 *)ctsio->cdb; 6963 6964 alloc_len = scsi_4btoul(cdb->alloc_len); 6965 lba = scsi_8btou64(cdb->addr); 6966 6967 if ((cdb->reladr & SRC16_PMI) 6968 && (lba != 0)) { 6969 ctl_set_invalid_field(/*ctsio*/ ctsio, 6970 /*sks_valid*/ 1, 6971 /*command*/ 1, 6972 /*field*/ 2, 6973 /*bit_valid*/ 0, 6974 /*bit*/ 0); 6975 ctl_done((union ctl_io *)ctsio); 6976 return (CTL_RETVAL_COMPLETE); 6977 } 6978 6979 lun = (struct ctl_lun *)ctsio->io_hdr.ctl_private[CTL_PRIV_LUN].ptr; 6980 6981 ctsio->kern_data_ptr = malloc(sizeof(*data), M_CTL, M_WAITOK | M_ZERO); 6982 data = (struct scsi_read_capacity_data_long *)ctsio->kern_data_ptr; 6983 6984 if (sizeof(*data) < alloc_len) { 6985 ctsio->residual = alloc_len - sizeof(*data); 6986 ctsio->kern_data_len = sizeof(*data); 6987 ctsio->kern_total_len = sizeof(*data); 6988 } else { 6989 ctsio->residual = 0; 6990 ctsio->kern_data_len = alloc_len; 6991 ctsio->kern_total_len = alloc_len; 6992 } 6993 ctsio->kern_data_resid = 0; 6994 ctsio->kern_rel_offset = 0; 6995 ctsio->kern_sg_entries = 0; 6996 6997 scsi_u64to8b(lun->be_lun->maxlba, data->addr); 6998 /* XXX KDM this may not be 512 bytes... */ 6999 scsi_ulto4b(lun->be_lun->blocksize, data->length); 7000 data->prot_lbppbe = lun->be_lun->pblockexp & SRC16_LBPPBE; 7001 scsi_ulto2b(lun->be_lun->pblockoff & SRC16_LALBA_A, data->lalba_lbp); 7002 if (lun->be_lun->flags & CTL_LUN_FLAG_UNMAP) 7003 data->lalba_lbp[0] |= SRC16_LBPME | SRC16_LBPRZ; 7004 7005 ctl_set_success(ctsio); 7006 ctsio->io_hdr.flags |= CTL_FLAG_ALLOCATED; 7007 ctsio->be_move_done = ctl_config_move_done; 7008 ctl_datamove((union ctl_io *)ctsio); 7009 return (CTL_RETVAL_COMPLETE); 7010 } 7011 7012 int 7013 ctl_get_lba_status(struct ctl_scsiio *ctsio) 7014 { 7015 struct scsi_get_lba_status *cdb; 7016 struct scsi_get_lba_status_data *data; 7017 struct ctl_lun *lun; 7018 struct ctl_lba_len_flags *lbalen; 7019 uint64_t lba; 7020 uint32_t alloc_len, total_len; 7021 int retval; 7022 7023 CTL_DEBUG_PRINT(("ctl_get_lba_status\n")); 7024 7025 lun = (struct ctl_lun *)ctsio->io_hdr.ctl_private[CTL_PRIV_LUN].ptr; 7026 cdb = (struct scsi_get_lba_status *)ctsio->cdb; 7027 lba = scsi_8btou64(cdb->addr); 7028 alloc_len = scsi_4btoul(cdb->alloc_len); 7029 7030 if (lba > lun->be_lun->maxlba) { 7031 ctl_set_lba_out_of_range(ctsio); 7032 ctl_done((union ctl_io *)ctsio); 7033 return (CTL_RETVAL_COMPLETE); 7034 } 7035 7036 total_len = sizeof(*data) + sizeof(data->descr[0]); 7037 ctsio->kern_data_ptr = malloc(total_len, M_CTL, M_WAITOK | M_ZERO); 7038 data = (struct scsi_get_lba_status_data *)ctsio->kern_data_ptr; 7039 7040 if (total_len < alloc_len) { 7041 ctsio->residual = alloc_len - total_len; 7042 ctsio->kern_data_len = total_len; 7043 ctsio->kern_total_len = total_len; 7044 } else { 7045 ctsio->residual = 0; 7046 ctsio->kern_data_len = alloc_len; 7047 ctsio->kern_total_len = alloc_len; 7048 } 7049 ctsio->kern_data_resid = 0; 7050 ctsio->kern_rel_offset = 0; 7051 ctsio->kern_sg_entries = 0; 7052 7053 /* Fill dummy data in case backend can't tell anything. */ 7054 scsi_ulto4b(4 + sizeof(data->descr[0]), data->length); 7055 scsi_u64to8b(lba, data->descr[0].addr); 7056 scsi_ulto4b(MIN(UINT32_MAX, lun->be_lun->maxlba + 1 - lba), 7057 data->descr[0].length); 7058 data->descr[0].status = 0; /* Mapped or unknown. */ 7059 7060 ctl_set_success(ctsio); 7061 ctsio->io_hdr.flags |= CTL_FLAG_ALLOCATED; 7062 ctsio->be_move_done = ctl_config_move_done; 7063 7064 lbalen = (struct ctl_lba_len_flags *)&ctsio->io_hdr.ctl_private[CTL_PRIV_LBA_LEN]; 7065 lbalen->lba = lba; 7066 lbalen->len = total_len; 7067 lbalen->flags = 0; 7068 retval = lun->backend->config_read((union ctl_io *)ctsio); 7069 return (CTL_RETVAL_COMPLETE); 7070 } 7071 7072 int 7073 ctl_read_defect(struct ctl_scsiio *ctsio) 7074 { 7075 struct scsi_read_defect_data_10 *ccb10; 7076 struct scsi_read_defect_data_12 *ccb12; 7077 struct scsi_read_defect_data_hdr_10 *data10; 7078 struct scsi_read_defect_data_hdr_12 *data12; 7079 uint32_t alloc_len, data_len; 7080 uint8_t format; 7081 7082 CTL_DEBUG_PRINT(("ctl_read_defect\n")); 7083 7084 if (ctsio->cdb[0] == READ_DEFECT_DATA_10) { 7085 ccb10 = (struct scsi_read_defect_data_10 *)&ctsio->cdb; 7086 format = ccb10->format; 7087 alloc_len = scsi_2btoul(ccb10->alloc_length); 7088 data_len = sizeof(*data10); 7089 } else { 7090 ccb12 = (struct scsi_read_defect_data_12 *)&ctsio->cdb; 7091 format = ccb12->format; 7092 alloc_len = scsi_4btoul(ccb12->alloc_length); 7093 data_len = sizeof(*data12); 7094 } 7095 if (alloc_len == 0) { 7096 ctl_set_success(ctsio); 7097 ctl_done((union ctl_io *)ctsio); 7098 return (CTL_RETVAL_COMPLETE); 7099 } 7100 7101 ctsio->kern_data_ptr = malloc(data_len, M_CTL, M_WAITOK | M_ZERO); 7102 if (data_len < alloc_len) { 7103 ctsio->residual = alloc_len - data_len; 7104 ctsio->kern_data_len = data_len; 7105 ctsio->kern_total_len = data_len; 7106 } else { 7107 ctsio->residual = 0; 7108 ctsio->kern_data_len = alloc_len; 7109 ctsio->kern_total_len = alloc_len; 7110 } 7111 ctsio->kern_data_resid = 0; 7112 ctsio->kern_rel_offset = 0; 7113 ctsio->kern_sg_entries = 0; 7114 7115 if (ctsio->cdb[0] == READ_DEFECT_DATA_10) { 7116 data10 = (struct scsi_read_defect_data_hdr_10 *) 7117 ctsio->kern_data_ptr; 7118 data10->format = format; 7119 scsi_ulto2b(0, data10->length); 7120 } else { 7121 data12 = (struct scsi_read_defect_data_hdr_12 *) 7122 ctsio->kern_data_ptr; 7123 data12->format = format; 7124 scsi_ulto2b(0, data12->generation); 7125 scsi_ulto4b(0, data12->length); 7126 } 7127 7128 ctl_set_success(ctsio); 7129 ctsio->io_hdr.flags |= CTL_FLAG_ALLOCATED; 7130 ctsio->be_move_done = ctl_config_move_done; 7131 ctl_datamove((union ctl_io *)ctsio); 7132 return (CTL_RETVAL_COMPLETE); 7133 } 7134 7135 int 7136 ctl_report_tagret_port_groups(struct ctl_scsiio *ctsio) 7137 { 7138 struct scsi_maintenance_in *cdb; 7139 int retval; 7140 int alloc_len, ext, total_len = 0, g, pc, pg, gs, os; 7141 int num_target_port_groups, num_target_ports; 7142 struct ctl_lun *lun; 7143 struct ctl_softc *softc; 7144 struct ctl_port *port; 7145 struct scsi_target_group_data *rtg_ptr; 7146 struct scsi_target_group_data_extended *rtg_ext_ptr; 7147 struct scsi_target_port_group_descriptor *tpg_desc; 7148 7149 CTL_DEBUG_PRINT(("ctl_report_tagret_port_groups\n")); 7150 7151 cdb = (struct scsi_maintenance_in *)ctsio->cdb; 7152 lun = (struct ctl_lun *)ctsio->io_hdr.ctl_private[CTL_PRIV_LUN].ptr; 7153 softc = lun->ctl_softc; 7154 7155 retval = CTL_RETVAL_COMPLETE; 7156 7157 switch (cdb->byte2 & STG_PDF_MASK) { 7158 case STG_PDF_LENGTH: 7159 ext = 0; 7160 break; 7161 case STG_PDF_EXTENDED: 7162 ext = 1; 7163 break; 7164 default: 7165 ctl_set_invalid_field(/*ctsio*/ ctsio, 7166 /*sks_valid*/ 1, 7167 /*command*/ 1, 7168 /*field*/ 2, 7169 /*bit_valid*/ 1, 7170 /*bit*/ 5); 7171 ctl_done((union ctl_io *)ctsio); 7172 return(retval); 7173 } 7174 7175 if (softc->is_single) 7176 num_target_port_groups = 1; 7177 else 7178 num_target_port_groups = NUM_TARGET_PORT_GROUPS; 7179 num_target_ports = 0; 7180 mtx_lock(&softc->ctl_lock); 7181 STAILQ_FOREACH(port, &softc->port_list, links) { 7182 if ((port->status & CTL_PORT_STATUS_ONLINE) == 0) 7183 continue; 7184 if (ctl_lun_map_to_port(port, lun->lun) >= CTL_MAX_LUNS) 7185 continue; 7186 num_target_ports++; 7187 } 7188 mtx_unlock(&softc->ctl_lock); 7189 7190 if (ext) 7191 total_len = sizeof(struct scsi_target_group_data_extended); 7192 else 7193 total_len = sizeof(struct scsi_target_group_data); 7194 total_len += sizeof(struct scsi_target_port_group_descriptor) * 7195 num_target_port_groups + 7196 sizeof(struct scsi_target_port_descriptor) * num_target_ports; 7197 7198 alloc_len = scsi_4btoul(cdb->length); 7199 7200 ctsio->kern_data_ptr = malloc(total_len, M_CTL, M_WAITOK | M_ZERO); 7201 7202 ctsio->kern_sg_entries = 0; 7203 7204 if (total_len < alloc_len) { 7205 ctsio->residual = alloc_len - total_len; 7206 ctsio->kern_data_len = total_len; 7207 ctsio->kern_total_len = total_len; 7208 } else { 7209 ctsio->residual = 0; 7210 ctsio->kern_data_len = alloc_len; 7211 ctsio->kern_total_len = alloc_len; 7212 } 7213 ctsio->kern_data_resid = 0; 7214 ctsio->kern_rel_offset = 0; 7215 7216 if (ext) { 7217 rtg_ext_ptr = (struct scsi_target_group_data_extended *) 7218 ctsio->kern_data_ptr; 7219 scsi_ulto4b(total_len - 4, rtg_ext_ptr->length); 7220 rtg_ext_ptr->format_type = 0x10; 7221 rtg_ext_ptr->implicit_transition_time = 0; 7222 tpg_desc = &rtg_ext_ptr->groups[0]; 7223 } else { 7224 rtg_ptr = (struct scsi_target_group_data *) 7225 ctsio->kern_data_ptr; 7226 scsi_ulto4b(total_len - 4, rtg_ptr->length); 7227 tpg_desc = &rtg_ptr->groups[0]; 7228 } 7229 7230 mtx_lock(&softc->ctl_lock); 7231 pg = softc->port_min / softc->port_cnt; 7232 if (softc->ha_link == CTL_HA_LINK_OFFLINE) 7233 gs = TPG_ASYMMETRIC_ACCESS_UNAVAILABLE; 7234 else if (softc->ha_link == CTL_HA_LINK_UNKNOWN) 7235 gs = TPG_ASYMMETRIC_ACCESS_TRANSITIONING; 7236 else if (softc->ha_mode == CTL_HA_MODE_ACT_STBY) 7237 gs = TPG_ASYMMETRIC_ACCESS_STANDBY; 7238 else 7239 gs = TPG_ASYMMETRIC_ACCESS_NONOPTIMIZED; 7240 if (lun->flags & CTL_LUN_PRIMARY_SC) { 7241 os = gs; 7242 gs = TPG_ASYMMETRIC_ACCESS_OPTIMIZED; 7243 } else 7244 os = TPG_ASYMMETRIC_ACCESS_OPTIMIZED; 7245 for (g = 0; g < num_target_port_groups; g++) { 7246 tpg_desc->pref_state = (g == pg) ? gs : os; 7247 tpg_desc->support = TPG_AO_SUP | TPG_AN_SUP | TPG_S_SUP | 7248 TPG_U_SUP | TPG_T_SUP; 7249 scsi_ulto2b(g + 1, tpg_desc->target_port_group); 7250 tpg_desc->status = TPG_IMPLICIT; 7251 pc = 0; 7252 STAILQ_FOREACH(port, &softc->port_list, links) { 7253 if (port->targ_port < g * softc->port_cnt || 7254 port->targ_port >= (g + 1) * softc->port_cnt) 7255 continue; 7256 if ((port->status & CTL_PORT_STATUS_ONLINE) == 0) 7257 continue; 7258 if (ctl_lun_map_to_port(port, lun->lun) >= CTL_MAX_LUNS) 7259 continue; 7260 scsi_ulto2b(port->targ_port, tpg_desc->descriptors[pc]. 7261 relative_target_port_identifier); 7262 pc++; 7263 } 7264 tpg_desc->target_port_count = pc; 7265 tpg_desc = (struct scsi_target_port_group_descriptor *) 7266 &tpg_desc->descriptors[pc]; 7267 } 7268 mtx_unlock(&softc->ctl_lock); 7269 7270 ctl_set_success(ctsio); 7271 ctsio->io_hdr.flags |= CTL_FLAG_ALLOCATED; 7272 ctsio->be_move_done = ctl_config_move_done; 7273 ctl_datamove((union ctl_io *)ctsio); 7274 return(retval); 7275 } 7276 7277 int 7278 ctl_report_supported_opcodes(struct ctl_scsiio *ctsio) 7279 { 7280 struct ctl_lun *lun; 7281 struct scsi_report_supported_opcodes *cdb; 7282 const struct ctl_cmd_entry *entry, *sentry; 7283 struct scsi_report_supported_opcodes_all *all; 7284 struct scsi_report_supported_opcodes_descr *descr; 7285 struct scsi_report_supported_opcodes_one *one; 7286 int retval; 7287 int alloc_len, total_len; 7288 int opcode, service_action, i, j, num; 7289 7290 CTL_DEBUG_PRINT(("ctl_report_supported_opcodes\n")); 7291 7292 cdb = (struct scsi_report_supported_opcodes *)ctsio->cdb; 7293 lun = (struct ctl_lun *)ctsio->io_hdr.ctl_private[CTL_PRIV_LUN].ptr; 7294 7295 retval = CTL_RETVAL_COMPLETE; 7296 7297 opcode = cdb->requested_opcode; 7298 service_action = scsi_2btoul(cdb->requested_service_action); 7299 switch (cdb->options & RSO_OPTIONS_MASK) { 7300 case RSO_OPTIONS_ALL: 7301 num = 0; 7302 for (i = 0; i < 256; i++) { 7303 entry = &ctl_cmd_table[i]; 7304 if (entry->flags & CTL_CMD_FLAG_SA5) { 7305 for (j = 0; j < 32; j++) { 7306 sentry = &((const struct ctl_cmd_entry *) 7307 entry->execute)[j]; 7308 if (ctl_cmd_applicable( 7309 lun->be_lun->lun_type, sentry)) 7310 num++; 7311 } 7312 } else { 7313 if (ctl_cmd_applicable(lun->be_lun->lun_type, 7314 entry)) 7315 num++; 7316 } 7317 } 7318 total_len = sizeof(struct scsi_report_supported_opcodes_all) + 7319 num * sizeof(struct scsi_report_supported_opcodes_descr); 7320 break; 7321 case RSO_OPTIONS_OC: 7322 if (ctl_cmd_table[opcode].flags & CTL_CMD_FLAG_SA5) { 7323 ctl_set_invalid_field(/*ctsio*/ ctsio, 7324 /*sks_valid*/ 1, 7325 /*command*/ 1, 7326 /*field*/ 2, 7327 /*bit_valid*/ 1, 7328 /*bit*/ 2); 7329 ctl_done((union ctl_io *)ctsio); 7330 return (CTL_RETVAL_COMPLETE); 7331 } 7332 total_len = sizeof(struct scsi_report_supported_opcodes_one) + 32; 7333 break; 7334 case RSO_OPTIONS_OC_SA: 7335 if ((ctl_cmd_table[opcode].flags & CTL_CMD_FLAG_SA5) == 0 || 7336 service_action >= 32) { 7337 ctl_set_invalid_field(/*ctsio*/ ctsio, 7338 /*sks_valid*/ 1, 7339 /*command*/ 1, 7340 /*field*/ 2, 7341 /*bit_valid*/ 1, 7342 /*bit*/ 2); 7343 ctl_done((union ctl_io *)ctsio); 7344 return (CTL_RETVAL_COMPLETE); 7345 } 7346 total_len = sizeof(struct scsi_report_supported_opcodes_one) + 32; 7347 break; 7348 default: 7349 ctl_set_invalid_field(/*ctsio*/ ctsio, 7350 /*sks_valid*/ 1, 7351 /*command*/ 1, 7352 /*field*/ 2, 7353 /*bit_valid*/ 1, 7354 /*bit*/ 2); 7355 ctl_done((union ctl_io *)ctsio); 7356 return (CTL_RETVAL_COMPLETE); 7357 } 7358 7359 alloc_len = scsi_4btoul(cdb->length); 7360 7361 ctsio->kern_data_ptr = malloc(total_len, M_CTL, M_WAITOK | M_ZERO); 7362 7363 ctsio->kern_sg_entries = 0; 7364 7365 if (total_len < alloc_len) { 7366 ctsio->residual = alloc_len - total_len; 7367 ctsio->kern_data_len = total_len; 7368 ctsio->kern_total_len = total_len; 7369 } else { 7370 ctsio->residual = 0; 7371 ctsio->kern_data_len = alloc_len; 7372 ctsio->kern_total_len = alloc_len; 7373 } 7374 ctsio->kern_data_resid = 0; 7375 ctsio->kern_rel_offset = 0; 7376 7377 switch (cdb->options & RSO_OPTIONS_MASK) { 7378 case RSO_OPTIONS_ALL: 7379 all = (struct scsi_report_supported_opcodes_all *) 7380 ctsio->kern_data_ptr; 7381 num = 0; 7382 for (i = 0; i < 256; i++) { 7383 entry = &ctl_cmd_table[i]; 7384 if (entry->flags & CTL_CMD_FLAG_SA5) { 7385 for (j = 0; j < 32; j++) { 7386 sentry = &((const struct ctl_cmd_entry *) 7387 entry->execute)[j]; 7388 if (!ctl_cmd_applicable( 7389 lun->be_lun->lun_type, sentry)) 7390 continue; 7391 descr = &all->descr[num++]; 7392 descr->opcode = i; 7393 scsi_ulto2b(j, descr->service_action); 7394 descr->flags = RSO_SERVACTV; 7395 scsi_ulto2b(sentry->length, 7396 descr->cdb_length); 7397 } 7398 } else { 7399 if (!ctl_cmd_applicable(lun->be_lun->lun_type, 7400 entry)) 7401 continue; 7402 descr = &all->descr[num++]; 7403 descr->opcode = i; 7404 scsi_ulto2b(0, descr->service_action); 7405 descr->flags = 0; 7406 scsi_ulto2b(entry->length, descr->cdb_length); 7407 } 7408 } 7409 scsi_ulto4b( 7410 num * sizeof(struct scsi_report_supported_opcodes_descr), 7411 all->length); 7412 break; 7413 case RSO_OPTIONS_OC: 7414 one = (struct scsi_report_supported_opcodes_one *) 7415 ctsio->kern_data_ptr; 7416 entry = &ctl_cmd_table[opcode]; 7417 goto fill_one; 7418 case RSO_OPTIONS_OC_SA: 7419 one = (struct scsi_report_supported_opcodes_one *) 7420 ctsio->kern_data_ptr; 7421 entry = &ctl_cmd_table[opcode]; 7422 entry = &((const struct ctl_cmd_entry *) 7423 entry->execute)[service_action]; 7424 fill_one: 7425 if (ctl_cmd_applicable(lun->be_lun->lun_type, entry)) { 7426 one->support = 3; 7427 scsi_ulto2b(entry->length, one->cdb_length); 7428 one->cdb_usage[0] = opcode; 7429 memcpy(&one->cdb_usage[1], entry->usage, 7430 entry->length - 1); 7431 } else 7432 one->support = 1; 7433 break; 7434 } 7435 7436 ctl_set_success(ctsio); 7437 ctsio->io_hdr.flags |= CTL_FLAG_ALLOCATED; 7438 ctsio->be_move_done = ctl_config_move_done; 7439 ctl_datamove((union ctl_io *)ctsio); 7440 return(retval); 7441 } 7442 7443 int 7444 ctl_report_supported_tmf(struct ctl_scsiio *ctsio) 7445 { 7446 struct scsi_report_supported_tmf *cdb; 7447 struct scsi_report_supported_tmf_data *data; 7448 int retval; 7449 int alloc_len, total_len; 7450 7451 CTL_DEBUG_PRINT(("ctl_report_supported_tmf\n")); 7452 7453 cdb = (struct scsi_report_supported_tmf *)ctsio->cdb; 7454 7455 retval = CTL_RETVAL_COMPLETE; 7456 7457 total_len = sizeof(struct scsi_report_supported_tmf_data); 7458 alloc_len = scsi_4btoul(cdb->length); 7459 7460 ctsio->kern_data_ptr = malloc(total_len, M_CTL, M_WAITOK | M_ZERO); 7461 7462 ctsio->kern_sg_entries = 0; 7463 7464 if (total_len < alloc_len) { 7465 ctsio->residual = alloc_len - total_len; 7466 ctsio->kern_data_len = total_len; 7467 ctsio->kern_total_len = total_len; 7468 } else { 7469 ctsio->residual = 0; 7470 ctsio->kern_data_len = alloc_len; 7471 ctsio->kern_total_len = alloc_len; 7472 } 7473 ctsio->kern_data_resid = 0; 7474 ctsio->kern_rel_offset = 0; 7475 7476 data = (struct scsi_report_supported_tmf_data *)ctsio->kern_data_ptr; 7477 data->byte1 |= RST_ATS | RST_ATSS | RST_CTSS | RST_LURS | RST_QTS | 7478 RST_TRS; 7479 data->byte2 |= RST_QAES | RST_QTSS | RST_ITNRS; 7480 7481 ctl_set_success(ctsio); 7482 ctsio->io_hdr.flags |= CTL_FLAG_ALLOCATED; 7483 ctsio->be_move_done = ctl_config_move_done; 7484 ctl_datamove((union ctl_io *)ctsio); 7485 return (retval); 7486 } 7487 7488 int 7489 ctl_report_timestamp(struct ctl_scsiio *ctsio) 7490 { 7491 struct scsi_report_timestamp *cdb; 7492 struct scsi_report_timestamp_data *data; 7493 struct timeval tv; 7494 int64_t timestamp; 7495 int retval; 7496 int alloc_len, total_len; 7497 7498 CTL_DEBUG_PRINT(("ctl_report_timestamp\n")); 7499 7500 cdb = (struct scsi_report_timestamp *)ctsio->cdb; 7501 7502 retval = CTL_RETVAL_COMPLETE; 7503 7504 total_len = sizeof(struct scsi_report_timestamp_data); 7505 alloc_len = scsi_4btoul(cdb->length); 7506 7507 ctsio->kern_data_ptr = malloc(total_len, M_CTL, M_WAITOK | M_ZERO); 7508 7509 ctsio->kern_sg_entries = 0; 7510 7511 if (total_len < alloc_len) { 7512 ctsio->residual = alloc_len - total_len; 7513 ctsio->kern_data_len = total_len; 7514 ctsio->kern_total_len = total_len; 7515 } else { 7516 ctsio->residual = 0; 7517 ctsio->kern_data_len = alloc_len; 7518 ctsio->kern_total_len = alloc_len; 7519 } 7520 ctsio->kern_data_resid = 0; 7521 ctsio->kern_rel_offset = 0; 7522 7523 data = (struct scsi_report_timestamp_data *)ctsio->kern_data_ptr; 7524 scsi_ulto2b(sizeof(*data) - 2, data->length); 7525 data->origin = RTS_ORIG_OUTSIDE; 7526 getmicrotime(&tv); 7527 timestamp = (int64_t)tv.tv_sec * 1000 + tv.tv_usec / 1000; 7528 scsi_ulto4b(timestamp >> 16, data->timestamp); 7529 scsi_ulto2b(timestamp & 0xffff, &data->timestamp[4]); 7530 7531 ctl_set_success(ctsio); 7532 ctsio->io_hdr.flags |= CTL_FLAG_ALLOCATED; 7533 ctsio->be_move_done = ctl_config_move_done; 7534 ctl_datamove((union ctl_io *)ctsio); 7535 return (retval); 7536 } 7537 7538 int 7539 ctl_persistent_reserve_in(struct ctl_scsiio *ctsio) 7540 { 7541 struct scsi_per_res_in *cdb; 7542 int alloc_len, total_len = 0; 7543 /* struct scsi_per_res_in_rsrv in_data; */ 7544 struct ctl_lun *lun; 7545 struct ctl_softc *softc; 7546 uint64_t key; 7547 7548 CTL_DEBUG_PRINT(("ctl_persistent_reserve_in\n")); 7549 7550 cdb = (struct scsi_per_res_in *)ctsio->cdb; 7551 7552 alloc_len = scsi_2btoul(cdb->length); 7553 7554 lun = (struct ctl_lun *)ctsio->io_hdr.ctl_private[CTL_PRIV_LUN].ptr; 7555 softc = lun->ctl_softc; 7556 7557 retry: 7558 mtx_lock(&lun->lun_lock); 7559 switch (cdb->action) { 7560 case SPRI_RK: /* read keys */ 7561 total_len = sizeof(struct scsi_per_res_in_keys) + 7562 lun->pr_key_count * 7563 sizeof(struct scsi_per_res_key); 7564 break; 7565 case SPRI_RR: /* read reservation */ 7566 if (lun->flags & CTL_LUN_PR_RESERVED) 7567 total_len = sizeof(struct scsi_per_res_in_rsrv); 7568 else 7569 total_len = sizeof(struct scsi_per_res_in_header); 7570 break; 7571 case SPRI_RC: /* report capabilities */ 7572 total_len = sizeof(struct scsi_per_res_cap); 7573 break; 7574 case SPRI_RS: /* read full status */ 7575 total_len = sizeof(struct scsi_per_res_in_header) + 7576 (sizeof(struct scsi_per_res_in_full_desc) + 256) * 7577 lun->pr_key_count; 7578 break; 7579 default: 7580 panic("%s: Invalid PR type %#x", __func__, cdb->action); 7581 } 7582 mtx_unlock(&lun->lun_lock); 7583 7584 ctsio->kern_data_ptr = malloc(total_len, M_CTL, M_WAITOK | M_ZERO); 7585 7586 if (total_len < alloc_len) { 7587 ctsio->residual = alloc_len - total_len; 7588 ctsio->kern_data_len = total_len; 7589 ctsio->kern_total_len = total_len; 7590 } else { 7591 ctsio->residual = 0; 7592 ctsio->kern_data_len = alloc_len; 7593 ctsio->kern_total_len = alloc_len; 7594 } 7595 7596 ctsio->kern_data_resid = 0; 7597 ctsio->kern_rel_offset = 0; 7598 ctsio->kern_sg_entries = 0; 7599 7600 mtx_lock(&lun->lun_lock); 7601 switch (cdb->action) { 7602 case SPRI_RK: { // read keys 7603 struct scsi_per_res_in_keys *res_keys; 7604 int i, key_count; 7605 7606 res_keys = (struct scsi_per_res_in_keys*)ctsio->kern_data_ptr; 7607 7608 /* 7609 * We had to drop the lock to allocate our buffer, which 7610 * leaves time for someone to come in with another 7611 * persistent reservation. (That is unlikely, though, 7612 * since this should be the only persistent reservation 7613 * command active right now.) 7614 */ 7615 if (total_len != (sizeof(struct scsi_per_res_in_keys) + 7616 (lun->pr_key_count * 7617 sizeof(struct scsi_per_res_key)))){ 7618 mtx_unlock(&lun->lun_lock); 7619 free(ctsio->kern_data_ptr, M_CTL); 7620 printf("%s: reservation length changed, retrying\n", 7621 __func__); 7622 goto retry; 7623 } 7624 7625 scsi_ulto4b(lun->pr_generation, res_keys->header.generation); 7626 7627 scsi_ulto4b(sizeof(struct scsi_per_res_key) * 7628 lun->pr_key_count, res_keys->header.length); 7629 7630 for (i = 0, key_count = 0; i < CTL_MAX_INITIATORS; i++) { 7631 if ((key = ctl_get_prkey(lun, i)) == 0) 7632 continue; 7633 7634 /* 7635 * We used lun->pr_key_count to calculate the 7636 * size to allocate. If it turns out the number of 7637 * initiators with the registered flag set is 7638 * larger than that (i.e. they haven't been kept in 7639 * sync), we've got a problem. 7640 */ 7641 if (key_count >= lun->pr_key_count) { 7642 key_count++; 7643 continue; 7644 } 7645 scsi_u64to8b(key, res_keys->keys[key_count].key); 7646 key_count++; 7647 } 7648 break; 7649 } 7650 case SPRI_RR: { // read reservation 7651 struct scsi_per_res_in_rsrv *res; 7652 int tmp_len, header_only; 7653 7654 res = (struct scsi_per_res_in_rsrv *)ctsio->kern_data_ptr; 7655 7656 scsi_ulto4b(lun->pr_generation, res->header.generation); 7657 7658 if (lun->flags & CTL_LUN_PR_RESERVED) 7659 { 7660 tmp_len = sizeof(struct scsi_per_res_in_rsrv); 7661 scsi_ulto4b(sizeof(struct scsi_per_res_in_rsrv_data), 7662 res->header.length); 7663 header_only = 0; 7664 } else { 7665 tmp_len = sizeof(struct scsi_per_res_in_header); 7666 scsi_ulto4b(0, res->header.length); 7667 header_only = 1; 7668 } 7669 7670 /* 7671 * We had to drop the lock to allocate our buffer, which 7672 * leaves time for someone to come in with another 7673 * persistent reservation. (That is unlikely, though, 7674 * since this should be the only persistent reservation 7675 * command active right now.) 7676 */ 7677 if (tmp_len != total_len) { 7678 mtx_unlock(&lun->lun_lock); 7679 free(ctsio->kern_data_ptr, M_CTL); 7680 printf("%s: reservation status changed, retrying\n", 7681 __func__); 7682 goto retry; 7683 } 7684 7685 /* 7686 * No reservation held, so we're done. 7687 */ 7688 if (header_only != 0) 7689 break; 7690 7691 /* 7692 * If the registration is an All Registrants type, the key 7693 * is 0, since it doesn't really matter. 7694 */ 7695 if (lun->pr_res_idx != CTL_PR_ALL_REGISTRANTS) { 7696 scsi_u64to8b(ctl_get_prkey(lun, lun->pr_res_idx), 7697 res->data.reservation); 7698 } 7699 res->data.scopetype = lun->pr_res_type; 7700 break; 7701 } 7702 case SPRI_RC: //report capabilities 7703 { 7704 struct scsi_per_res_cap *res_cap; 7705 uint16_t type_mask; 7706 7707 res_cap = (struct scsi_per_res_cap *)ctsio->kern_data_ptr; 7708 scsi_ulto2b(sizeof(*res_cap), res_cap->length); 7709 res_cap->flags1 = SPRI_CRH; 7710 res_cap->flags2 = SPRI_TMV | SPRI_ALLOW_5; 7711 type_mask = SPRI_TM_WR_EX_AR | 7712 SPRI_TM_EX_AC_RO | 7713 SPRI_TM_WR_EX_RO | 7714 SPRI_TM_EX_AC | 7715 SPRI_TM_WR_EX | 7716 SPRI_TM_EX_AC_AR; 7717 scsi_ulto2b(type_mask, res_cap->type_mask); 7718 break; 7719 } 7720 case SPRI_RS: { // read full status 7721 struct scsi_per_res_in_full *res_status; 7722 struct scsi_per_res_in_full_desc *res_desc; 7723 struct ctl_port *port; 7724 int i, len; 7725 7726 res_status = (struct scsi_per_res_in_full*)ctsio->kern_data_ptr; 7727 7728 /* 7729 * We had to drop the lock to allocate our buffer, which 7730 * leaves time for someone to come in with another 7731 * persistent reservation. (That is unlikely, though, 7732 * since this should be the only persistent reservation 7733 * command active right now.) 7734 */ 7735 if (total_len < (sizeof(struct scsi_per_res_in_header) + 7736 (sizeof(struct scsi_per_res_in_full_desc) + 256) * 7737 lun->pr_key_count)){ 7738 mtx_unlock(&lun->lun_lock); 7739 free(ctsio->kern_data_ptr, M_CTL); 7740 printf("%s: reservation length changed, retrying\n", 7741 __func__); 7742 goto retry; 7743 } 7744 7745 scsi_ulto4b(lun->pr_generation, res_status->header.generation); 7746 7747 res_desc = &res_status->desc[0]; 7748 for (i = 0; i < CTL_MAX_INITIATORS; i++) { 7749 if ((key = ctl_get_prkey(lun, i)) == 0) 7750 continue; 7751 7752 scsi_u64to8b(key, res_desc->res_key.key); 7753 if ((lun->flags & CTL_LUN_PR_RESERVED) && 7754 (lun->pr_res_idx == i || 7755 lun->pr_res_idx == CTL_PR_ALL_REGISTRANTS)) { 7756 res_desc->flags = SPRI_FULL_R_HOLDER; 7757 res_desc->scopetype = lun->pr_res_type; 7758 } 7759 scsi_ulto2b(i / CTL_MAX_INIT_PER_PORT, 7760 res_desc->rel_trgt_port_id); 7761 len = 0; 7762 port = softc->ctl_ports[i / CTL_MAX_INIT_PER_PORT]; 7763 if (port != NULL) 7764 len = ctl_create_iid(port, 7765 i % CTL_MAX_INIT_PER_PORT, 7766 res_desc->transport_id); 7767 scsi_ulto4b(len, res_desc->additional_length); 7768 res_desc = (struct scsi_per_res_in_full_desc *) 7769 &res_desc->transport_id[len]; 7770 } 7771 scsi_ulto4b((uint8_t *)res_desc - (uint8_t *)&res_status->desc[0], 7772 res_status->header.length); 7773 break; 7774 } 7775 default: 7776 panic("%s: Invalid PR type %#x", __func__, cdb->action); 7777 } 7778 mtx_unlock(&lun->lun_lock); 7779 7780 ctl_set_success(ctsio); 7781 ctsio->io_hdr.flags |= CTL_FLAG_ALLOCATED; 7782 ctsio->be_move_done = ctl_config_move_done; 7783 ctl_datamove((union ctl_io *)ctsio); 7784 return (CTL_RETVAL_COMPLETE); 7785 } 7786 7787 /* 7788 * Returns 0 if ctl_persistent_reserve_out() should continue, non-zero if 7789 * it should return. 7790 */ 7791 static int 7792 ctl_pro_preempt(struct ctl_softc *softc, struct ctl_lun *lun, uint64_t res_key, 7793 uint64_t sa_res_key, uint8_t type, uint32_t residx, 7794 struct ctl_scsiio *ctsio, struct scsi_per_res_out *cdb, 7795 struct scsi_per_res_out_parms* param) 7796 { 7797 union ctl_ha_msg persis_io; 7798 int i; 7799 7800 mtx_lock(&lun->lun_lock); 7801 if (sa_res_key == 0) { 7802 if (lun->pr_res_idx == CTL_PR_ALL_REGISTRANTS) { 7803 /* validate scope and type */ 7804 if ((cdb->scope_type & SPR_SCOPE_MASK) != 7805 SPR_LU_SCOPE) { 7806 mtx_unlock(&lun->lun_lock); 7807 ctl_set_invalid_field(/*ctsio*/ ctsio, 7808 /*sks_valid*/ 1, 7809 /*command*/ 1, 7810 /*field*/ 2, 7811 /*bit_valid*/ 1, 7812 /*bit*/ 4); 7813 ctl_done((union ctl_io *)ctsio); 7814 return (1); 7815 } 7816 7817 if (type>8 || type==2 || type==4 || type==0) { 7818 mtx_unlock(&lun->lun_lock); 7819 ctl_set_invalid_field(/*ctsio*/ ctsio, 7820 /*sks_valid*/ 1, 7821 /*command*/ 1, 7822 /*field*/ 2, 7823 /*bit_valid*/ 1, 7824 /*bit*/ 0); 7825 ctl_done((union ctl_io *)ctsio); 7826 return (1); 7827 } 7828 7829 /* 7830 * Unregister everybody else and build UA for 7831 * them 7832 */ 7833 for(i = 0; i < CTL_MAX_INITIATORS; i++) { 7834 if (i == residx || ctl_get_prkey(lun, i) == 0) 7835 continue; 7836 7837 ctl_clr_prkey(lun, i); 7838 ctl_est_ua(lun, i, CTL_UA_REG_PREEMPT); 7839 } 7840 lun->pr_key_count = 1; 7841 lun->pr_res_type = type; 7842 if (lun->pr_res_type != SPR_TYPE_WR_EX_AR && 7843 lun->pr_res_type != SPR_TYPE_EX_AC_AR) 7844 lun->pr_res_idx = residx; 7845 lun->pr_generation++; 7846 mtx_unlock(&lun->lun_lock); 7847 7848 /* send msg to other side */ 7849 persis_io.hdr.nexus = ctsio->io_hdr.nexus; 7850 persis_io.hdr.msg_type = CTL_MSG_PERS_ACTION; 7851 persis_io.pr.pr_info.action = CTL_PR_PREEMPT; 7852 persis_io.pr.pr_info.residx = lun->pr_res_idx; 7853 persis_io.pr.pr_info.res_type = type; 7854 memcpy(persis_io.pr.pr_info.sa_res_key, 7855 param->serv_act_res_key, 7856 sizeof(param->serv_act_res_key)); 7857 ctl_ha_msg_send(CTL_HA_CHAN_CTL, &persis_io, 7858 sizeof(persis_io.pr), M_WAITOK); 7859 } else { 7860 /* not all registrants */ 7861 mtx_unlock(&lun->lun_lock); 7862 free(ctsio->kern_data_ptr, M_CTL); 7863 ctl_set_invalid_field(ctsio, 7864 /*sks_valid*/ 1, 7865 /*command*/ 0, 7866 /*field*/ 8, 7867 /*bit_valid*/ 0, 7868 /*bit*/ 0); 7869 ctl_done((union ctl_io *)ctsio); 7870 return (1); 7871 } 7872 } else if (lun->pr_res_idx == CTL_PR_ALL_REGISTRANTS 7873 || !(lun->flags & CTL_LUN_PR_RESERVED)) { 7874 int found = 0; 7875 7876 if (res_key == sa_res_key) { 7877 /* special case */ 7878 /* 7879 * The spec implies this is not good but doesn't 7880 * say what to do. There are two choices either 7881 * generate a res conflict or check condition 7882 * with illegal field in parameter data. Since 7883 * that is what is done when the sa_res_key is 7884 * zero I'll take that approach since this has 7885 * to do with the sa_res_key. 7886 */ 7887 mtx_unlock(&lun->lun_lock); 7888 free(ctsio->kern_data_ptr, M_CTL); 7889 ctl_set_invalid_field(ctsio, 7890 /*sks_valid*/ 1, 7891 /*command*/ 0, 7892 /*field*/ 8, 7893 /*bit_valid*/ 0, 7894 /*bit*/ 0); 7895 ctl_done((union ctl_io *)ctsio); 7896 return (1); 7897 } 7898 7899 for (i = 0; i < CTL_MAX_INITIATORS; i++) { 7900 if (ctl_get_prkey(lun, i) != sa_res_key) 7901 continue; 7902 7903 found = 1; 7904 ctl_clr_prkey(lun, i); 7905 lun->pr_key_count--; 7906 ctl_est_ua(lun, i, CTL_UA_REG_PREEMPT); 7907 } 7908 if (!found) { 7909 mtx_unlock(&lun->lun_lock); 7910 free(ctsio->kern_data_ptr, M_CTL); 7911 ctl_set_reservation_conflict(ctsio); 7912 ctl_done((union ctl_io *)ctsio); 7913 return (CTL_RETVAL_COMPLETE); 7914 } 7915 lun->pr_generation++; 7916 mtx_unlock(&lun->lun_lock); 7917 7918 /* send msg to other side */ 7919 persis_io.hdr.nexus = ctsio->io_hdr.nexus; 7920 persis_io.hdr.msg_type = CTL_MSG_PERS_ACTION; 7921 persis_io.pr.pr_info.action = CTL_PR_PREEMPT; 7922 persis_io.pr.pr_info.residx = lun->pr_res_idx; 7923 persis_io.pr.pr_info.res_type = type; 7924 memcpy(persis_io.pr.pr_info.sa_res_key, 7925 param->serv_act_res_key, 7926 sizeof(param->serv_act_res_key)); 7927 ctl_ha_msg_send(CTL_HA_CHAN_CTL, &persis_io, 7928 sizeof(persis_io.pr), M_WAITOK); 7929 } else { 7930 /* Reserved but not all registrants */ 7931 /* sa_res_key is res holder */ 7932 if (sa_res_key == ctl_get_prkey(lun, lun->pr_res_idx)) { 7933 /* validate scope and type */ 7934 if ((cdb->scope_type & SPR_SCOPE_MASK) != 7935 SPR_LU_SCOPE) { 7936 mtx_unlock(&lun->lun_lock); 7937 ctl_set_invalid_field(/*ctsio*/ ctsio, 7938 /*sks_valid*/ 1, 7939 /*command*/ 1, 7940 /*field*/ 2, 7941 /*bit_valid*/ 1, 7942 /*bit*/ 4); 7943 ctl_done((union ctl_io *)ctsio); 7944 return (1); 7945 } 7946 7947 if (type>8 || type==2 || type==4 || type==0) { 7948 mtx_unlock(&lun->lun_lock); 7949 ctl_set_invalid_field(/*ctsio*/ ctsio, 7950 /*sks_valid*/ 1, 7951 /*command*/ 1, 7952 /*field*/ 2, 7953 /*bit_valid*/ 1, 7954 /*bit*/ 0); 7955 ctl_done((union ctl_io *)ctsio); 7956 return (1); 7957 } 7958 7959 /* 7960 * Do the following: 7961 * if sa_res_key != res_key remove all 7962 * registrants w/sa_res_key and generate UA 7963 * for these registrants(Registrations 7964 * Preempted) if it wasn't an exclusive 7965 * reservation generate UA(Reservations 7966 * Preempted) for all other registered nexuses 7967 * if the type has changed. Establish the new 7968 * reservation and holder. If res_key and 7969 * sa_res_key are the same do the above 7970 * except don't unregister the res holder. 7971 */ 7972 7973 for(i = 0; i < CTL_MAX_INITIATORS; i++) { 7974 if (i == residx || ctl_get_prkey(lun, i) == 0) 7975 continue; 7976 7977 if (sa_res_key == ctl_get_prkey(lun, i)) { 7978 ctl_clr_prkey(lun, i); 7979 lun->pr_key_count--; 7980 ctl_est_ua(lun, i, CTL_UA_REG_PREEMPT); 7981 } else if (type != lun->pr_res_type && 7982 (lun->pr_res_type == SPR_TYPE_WR_EX_RO || 7983 lun->pr_res_type == SPR_TYPE_EX_AC_RO)) { 7984 ctl_est_ua(lun, i, CTL_UA_RES_RELEASE); 7985 } 7986 } 7987 lun->pr_res_type = type; 7988 if (lun->pr_res_type != SPR_TYPE_WR_EX_AR && 7989 lun->pr_res_type != SPR_TYPE_EX_AC_AR) 7990 lun->pr_res_idx = residx; 7991 else 7992 lun->pr_res_idx = CTL_PR_ALL_REGISTRANTS; 7993 lun->pr_generation++; 7994 mtx_unlock(&lun->lun_lock); 7995 7996 persis_io.hdr.nexus = ctsio->io_hdr.nexus; 7997 persis_io.hdr.msg_type = CTL_MSG_PERS_ACTION; 7998 persis_io.pr.pr_info.action = CTL_PR_PREEMPT; 7999 persis_io.pr.pr_info.residx = lun->pr_res_idx; 8000 persis_io.pr.pr_info.res_type = type; 8001 memcpy(persis_io.pr.pr_info.sa_res_key, 8002 param->serv_act_res_key, 8003 sizeof(param->serv_act_res_key)); 8004 ctl_ha_msg_send(CTL_HA_CHAN_CTL, &persis_io, 8005 sizeof(persis_io.pr), M_WAITOK); 8006 } else { 8007 /* 8008 * sa_res_key is not the res holder just 8009 * remove registrants 8010 */ 8011 int found=0; 8012 8013 for (i = 0; i < CTL_MAX_INITIATORS; i++) { 8014 if (sa_res_key != ctl_get_prkey(lun, i)) 8015 continue; 8016 8017 found = 1; 8018 ctl_clr_prkey(lun, i); 8019 lun->pr_key_count--; 8020 ctl_est_ua(lun, i, CTL_UA_REG_PREEMPT); 8021 } 8022 8023 if (!found) { 8024 mtx_unlock(&lun->lun_lock); 8025 free(ctsio->kern_data_ptr, M_CTL); 8026 ctl_set_reservation_conflict(ctsio); 8027 ctl_done((union ctl_io *)ctsio); 8028 return (1); 8029 } 8030 lun->pr_generation++; 8031 mtx_unlock(&lun->lun_lock); 8032 8033 persis_io.hdr.nexus = ctsio->io_hdr.nexus; 8034 persis_io.hdr.msg_type = CTL_MSG_PERS_ACTION; 8035 persis_io.pr.pr_info.action = CTL_PR_PREEMPT; 8036 persis_io.pr.pr_info.residx = lun->pr_res_idx; 8037 persis_io.pr.pr_info.res_type = type; 8038 memcpy(persis_io.pr.pr_info.sa_res_key, 8039 param->serv_act_res_key, 8040 sizeof(param->serv_act_res_key)); 8041 ctl_ha_msg_send(CTL_HA_CHAN_CTL, &persis_io, 8042 sizeof(persis_io.pr), M_WAITOK); 8043 } 8044 } 8045 return (0); 8046 } 8047 8048 static void 8049 ctl_pro_preempt_other(struct ctl_lun *lun, union ctl_ha_msg *msg) 8050 { 8051 uint64_t sa_res_key; 8052 int i; 8053 8054 sa_res_key = scsi_8btou64(msg->pr.pr_info.sa_res_key); 8055 8056 if (lun->pr_res_idx == CTL_PR_ALL_REGISTRANTS 8057 || lun->pr_res_idx == CTL_PR_NO_RESERVATION 8058 || sa_res_key != ctl_get_prkey(lun, lun->pr_res_idx)) { 8059 if (sa_res_key == 0) { 8060 /* 8061 * Unregister everybody else and build UA for 8062 * them 8063 */ 8064 for(i = 0; i < CTL_MAX_INITIATORS; i++) { 8065 if (i == msg->pr.pr_info.residx || 8066 ctl_get_prkey(lun, i) == 0) 8067 continue; 8068 8069 ctl_clr_prkey(lun, i); 8070 ctl_est_ua(lun, i, CTL_UA_REG_PREEMPT); 8071 } 8072 8073 lun->pr_key_count = 1; 8074 lun->pr_res_type = msg->pr.pr_info.res_type; 8075 if (lun->pr_res_type != SPR_TYPE_WR_EX_AR && 8076 lun->pr_res_type != SPR_TYPE_EX_AC_AR) 8077 lun->pr_res_idx = msg->pr.pr_info.residx; 8078 } else { 8079 for (i = 0; i < CTL_MAX_INITIATORS; i++) { 8080 if (sa_res_key == ctl_get_prkey(lun, i)) 8081 continue; 8082 8083 ctl_clr_prkey(lun, i); 8084 lun->pr_key_count--; 8085 ctl_est_ua(lun, i, CTL_UA_REG_PREEMPT); 8086 } 8087 } 8088 } else { 8089 for (i = 0; i < CTL_MAX_INITIATORS; i++) { 8090 if (i == msg->pr.pr_info.residx || 8091 ctl_get_prkey(lun, i) == 0) 8092 continue; 8093 8094 if (sa_res_key == ctl_get_prkey(lun, i)) { 8095 ctl_clr_prkey(lun, i); 8096 lun->pr_key_count--; 8097 ctl_est_ua(lun, i, CTL_UA_REG_PREEMPT); 8098 } else if (msg->pr.pr_info.res_type != lun->pr_res_type 8099 && (lun->pr_res_type == SPR_TYPE_WR_EX_RO || 8100 lun->pr_res_type == SPR_TYPE_EX_AC_RO)) { 8101 ctl_est_ua(lun, i, CTL_UA_RES_RELEASE); 8102 } 8103 } 8104 lun->pr_res_type = msg->pr.pr_info.res_type; 8105 if (lun->pr_res_type != SPR_TYPE_WR_EX_AR && 8106 lun->pr_res_type != SPR_TYPE_EX_AC_AR) 8107 lun->pr_res_idx = msg->pr.pr_info.residx; 8108 else 8109 lun->pr_res_idx = CTL_PR_ALL_REGISTRANTS; 8110 } 8111 lun->pr_generation++; 8112 8113 } 8114 8115 8116 int 8117 ctl_persistent_reserve_out(struct ctl_scsiio *ctsio) 8118 { 8119 int retval; 8120 u_int32_t param_len; 8121 struct scsi_per_res_out *cdb; 8122 struct ctl_lun *lun; 8123 struct scsi_per_res_out_parms* param; 8124 struct ctl_softc *softc; 8125 uint32_t residx; 8126 uint64_t res_key, sa_res_key, key; 8127 uint8_t type; 8128 union ctl_ha_msg persis_io; 8129 int i; 8130 8131 CTL_DEBUG_PRINT(("ctl_persistent_reserve_out\n")); 8132 8133 retval = CTL_RETVAL_COMPLETE; 8134 8135 cdb = (struct scsi_per_res_out *)ctsio->cdb; 8136 lun = (struct ctl_lun *)ctsio->io_hdr.ctl_private[CTL_PRIV_LUN].ptr; 8137 softc = lun->ctl_softc; 8138 8139 /* 8140 * We only support whole-LUN scope. The scope & type are ignored for 8141 * register, register and ignore existing key and clear. 8142 * We sometimes ignore scope and type on preempts too!! 8143 * Verify reservation type here as well. 8144 */ 8145 type = cdb->scope_type & SPR_TYPE_MASK; 8146 if ((cdb->action == SPRO_RESERVE) 8147 || (cdb->action == SPRO_RELEASE)) { 8148 if ((cdb->scope_type & SPR_SCOPE_MASK) != SPR_LU_SCOPE) { 8149 ctl_set_invalid_field(/*ctsio*/ ctsio, 8150 /*sks_valid*/ 1, 8151 /*command*/ 1, 8152 /*field*/ 2, 8153 /*bit_valid*/ 1, 8154 /*bit*/ 4); 8155 ctl_done((union ctl_io *)ctsio); 8156 return (CTL_RETVAL_COMPLETE); 8157 } 8158 8159 if (type>8 || type==2 || type==4 || type==0) { 8160 ctl_set_invalid_field(/*ctsio*/ ctsio, 8161 /*sks_valid*/ 1, 8162 /*command*/ 1, 8163 /*field*/ 2, 8164 /*bit_valid*/ 1, 8165 /*bit*/ 0); 8166 ctl_done((union ctl_io *)ctsio); 8167 return (CTL_RETVAL_COMPLETE); 8168 } 8169 } 8170 8171 param_len = scsi_4btoul(cdb->length); 8172 8173 if ((ctsio->io_hdr.flags & CTL_FLAG_ALLOCATED) == 0) { 8174 ctsio->kern_data_ptr = malloc(param_len, M_CTL, M_WAITOK); 8175 ctsio->kern_data_len = param_len; 8176 ctsio->kern_total_len = param_len; 8177 ctsio->kern_data_resid = 0; 8178 ctsio->kern_rel_offset = 0; 8179 ctsio->kern_sg_entries = 0; 8180 ctsio->io_hdr.flags |= CTL_FLAG_ALLOCATED; 8181 ctsio->be_move_done = ctl_config_move_done; 8182 ctl_datamove((union ctl_io *)ctsio); 8183 8184 return (CTL_RETVAL_COMPLETE); 8185 } 8186 8187 param = (struct scsi_per_res_out_parms *)ctsio->kern_data_ptr; 8188 8189 residx = ctl_get_initindex(&ctsio->io_hdr.nexus); 8190 res_key = scsi_8btou64(param->res_key.key); 8191 sa_res_key = scsi_8btou64(param->serv_act_res_key); 8192 8193 /* 8194 * Validate the reservation key here except for SPRO_REG_IGNO 8195 * This must be done for all other service actions 8196 */ 8197 if ((cdb->action & SPRO_ACTION_MASK) != SPRO_REG_IGNO) { 8198 mtx_lock(&lun->lun_lock); 8199 if ((key = ctl_get_prkey(lun, residx)) != 0) { 8200 if (res_key != key) { 8201 /* 8202 * The current key passed in doesn't match 8203 * the one the initiator previously 8204 * registered. 8205 */ 8206 mtx_unlock(&lun->lun_lock); 8207 free(ctsio->kern_data_ptr, M_CTL); 8208 ctl_set_reservation_conflict(ctsio); 8209 ctl_done((union ctl_io *)ctsio); 8210 return (CTL_RETVAL_COMPLETE); 8211 } 8212 } else if ((cdb->action & SPRO_ACTION_MASK) != SPRO_REGISTER) { 8213 /* 8214 * We are not registered 8215 */ 8216 mtx_unlock(&lun->lun_lock); 8217 free(ctsio->kern_data_ptr, M_CTL); 8218 ctl_set_reservation_conflict(ctsio); 8219 ctl_done((union ctl_io *)ctsio); 8220 return (CTL_RETVAL_COMPLETE); 8221 } else if (res_key != 0) { 8222 /* 8223 * We are not registered and trying to register but 8224 * the register key isn't zero. 8225 */ 8226 mtx_unlock(&lun->lun_lock); 8227 free(ctsio->kern_data_ptr, M_CTL); 8228 ctl_set_reservation_conflict(ctsio); 8229 ctl_done((union ctl_io *)ctsio); 8230 return (CTL_RETVAL_COMPLETE); 8231 } 8232 mtx_unlock(&lun->lun_lock); 8233 } 8234 8235 switch (cdb->action & SPRO_ACTION_MASK) { 8236 case SPRO_REGISTER: 8237 case SPRO_REG_IGNO: { 8238 8239 #if 0 8240 printf("Registration received\n"); 8241 #endif 8242 8243 /* 8244 * We don't support any of these options, as we report in 8245 * the read capabilities request (see 8246 * ctl_persistent_reserve_in(), above). 8247 */ 8248 if ((param->flags & SPR_SPEC_I_PT) 8249 || (param->flags & SPR_ALL_TG_PT) 8250 || (param->flags & SPR_APTPL)) { 8251 int bit_ptr; 8252 8253 if (param->flags & SPR_APTPL) 8254 bit_ptr = 0; 8255 else if (param->flags & SPR_ALL_TG_PT) 8256 bit_ptr = 2; 8257 else /* SPR_SPEC_I_PT */ 8258 bit_ptr = 3; 8259 8260 free(ctsio->kern_data_ptr, M_CTL); 8261 ctl_set_invalid_field(ctsio, 8262 /*sks_valid*/ 1, 8263 /*command*/ 0, 8264 /*field*/ 20, 8265 /*bit_valid*/ 1, 8266 /*bit*/ bit_ptr); 8267 ctl_done((union ctl_io *)ctsio); 8268 return (CTL_RETVAL_COMPLETE); 8269 } 8270 8271 mtx_lock(&lun->lun_lock); 8272 8273 /* 8274 * The initiator wants to clear the 8275 * key/unregister. 8276 */ 8277 if (sa_res_key == 0) { 8278 if ((res_key == 0 8279 && (cdb->action & SPRO_ACTION_MASK) == SPRO_REGISTER) 8280 || ((cdb->action & SPRO_ACTION_MASK) == SPRO_REG_IGNO 8281 && ctl_get_prkey(lun, residx) == 0)) { 8282 mtx_unlock(&lun->lun_lock); 8283 goto done; 8284 } 8285 8286 ctl_clr_prkey(lun, residx); 8287 lun->pr_key_count--; 8288 8289 if (residx == lun->pr_res_idx) { 8290 lun->flags &= ~CTL_LUN_PR_RESERVED; 8291 lun->pr_res_idx = CTL_PR_NO_RESERVATION; 8292 8293 if ((lun->pr_res_type == SPR_TYPE_WR_EX_RO || 8294 lun->pr_res_type == SPR_TYPE_EX_AC_RO) && 8295 lun->pr_key_count) { 8296 /* 8297 * If the reservation is a registrants 8298 * only type we need to generate a UA 8299 * for other registered inits. The 8300 * sense code should be RESERVATIONS 8301 * RELEASED 8302 */ 8303 8304 for (i = softc->init_min; i < softc->init_max; i++){ 8305 if (ctl_get_prkey(lun, i) == 0) 8306 continue; 8307 ctl_est_ua(lun, i, 8308 CTL_UA_RES_RELEASE); 8309 } 8310 } 8311 lun->pr_res_type = 0; 8312 } else if (lun->pr_res_idx == CTL_PR_ALL_REGISTRANTS) { 8313 if (lun->pr_key_count==0) { 8314 lun->flags &= ~CTL_LUN_PR_RESERVED; 8315 lun->pr_res_type = 0; 8316 lun->pr_res_idx = CTL_PR_NO_RESERVATION; 8317 } 8318 } 8319 lun->pr_generation++; 8320 mtx_unlock(&lun->lun_lock); 8321 8322 persis_io.hdr.nexus = ctsio->io_hdr.nexus; 8323 persis_io.hdr.msg_type = CTL_MSG_PERS_ACTION; 8324 persis_io.pr.pr_info.action = CTL_PR_UNREG_KEY; 8325 persis_io.pr.pr_info.residx = residx; 8326 ctl_ha_msg_send(CTL_HA_CHAN_CTL, &persis_io, 8327 sizeof(persis_io.pr), M_WAITOK); 8328 } else /* sa_res_key != 0 */ { 8329 8330 /* 8331 * If we aren't registered currently then increment 8332 * the key count and set the registered flag. 8333 */ 8334 ctl_alloc_prkey(lun, residx); 8335 if (ctl_get_prkey(lun, residx) == 0) 8336 lun->pr_key_count++; 8337 ctl_set_prkey(lun, residx, sa_res_key); 8338 lun->pr_generation++; 8339 mtx_unlock(&lun->lun_lock); 8340 8341 persis_io.hdr.nexus = ctsio->io_hdr.nexus; 8342 persis_io.hdr.msg_type = CTL_MSG_PERS_ACTION; 8343 persis_io.pr.pr_info.action = CTL_PR_REG_KEY; 8344 persis_io.pr.pr_info.residx = residx; 8345 memcpy(persis_io.pr.pr_info.sa_res_key, 8346 param->serv_act_res_key, 8347 sizeof(param->serv_act_res_key)); 8348 ctl_ha_msg_send(CTL_HA_CHAN_CTL, &persis_io, 8349 sizeof(persis_io.pr), M_WAITOK); 8350 } 8351 8352 break; 8353 } 8354 case SPRO_RESERVE: 8355 #if 0 8356 printf("Reserve executed type %d\n", type); 8357 #endif 8358 mtx_lock(&lun->lun_lock); 8359 if (lun->flags & CTL_LUN_PR_RESERVED) { 8360 /* 8361 * if this isn't the reservation holder and it's 8362 * not a "all registrants" type or if the type is 8363 * different then we have a conflict 8364 */ 8365 if ((lun->pr_res_idx != residx 8366 && lun->pr_res_idx != CTL_PR_ALL_REGISTRANTS) 8367 || lun->pr_res_type != type) { 8368 mtx_unlock(&lun->lun_lock); 8369 free(ctsio->kern_data_ptr, M_CTL); 8370 ctl_set_reservation_conflict(ctsio); 8371 ctl_done((union ctl_io *)ctsio); 8372 return (CTL_RETVAL_COMPLETE); 8373 } 8374 mtx_unlock(&lun->lun_lock); 8375 } else /* create a reservation */ { 8376 /* 8377 * If it's not an "all registrants" type record 8378 * reservation holder 8379 */ 8380 if (type != SPR_TYPE_WR_EX_AR 8381 && type != SPR_TYPE_EX_AC_AR) 8382 lun->pr_res_idx = residx; /* Res holder */ 8383 else 8384 lun->pr_res_idx = CTL_PR_ALL_REGISTRANTS; 8385 8386 lun->flags |= CTL_LUN_PR_RESERVED; 8387 lun->pr_res_type = type; 8388 8389 mtx_unlock(&lun->lun_lock); 8390 8391 /* send msg to other side */ 8392 persis_io.hdr.nexus = ctsio->io_hdr.nexus; 8393 persis_io.hdr.msg_type = CTL_MSG_PERS_ACTION; 8394 persis_io.pr.pr_info.action = CTL_PR_RESERVE; 8395 persis_io.pr.pr_info.residx = lun->pr_res_idx; 8396 persis_io.pr.pr_info.res_type = type; 8397 ctl_ha_msg_send(CTL_HA_CHAN_CTL, &persis_io, 8398 sizeof(persis_io.pr), M_WAITOK); 8399 } 8400 break; 8401 8402 case SPRO_RELEASE: 8403 mtx_lock(&lun->lun_lock); 8404 if ((lun->flags & CTL_LUN_PR_RESERVED) == 0) { 8405 /* No reservation exists return good status */ 8406 mtx_unlock(&lun->lun_lock); 8407 goto done; 8408 } 8409 /* 8410 * Is this nexus a reservation holder? 8411 */ 8412 if (lun->pr_res_idx != residx 8413 && lun->pr_res_idx != CTL_PR_ALL_REGISTRANTS) { 8414 /* 8415 * not a res holder return good status but 8416 * do nothing 8417 */ 8418 mtx_unlock(&lun->lun_lock); 8419 goto done; 8420 } 8421 8422 if (lun->pr_res_type != type) { 8423 mtx_unlock(&lun->lun_lock); 8424 free(ctsio->kern_data_ptr, M_CTL); 8425 ctl_set_illegal_pr_release(ctsio); 8426 ctl_done((union ctl_io *)ctsio); 8427 return (CTL_RETVAL_COMPLETE); 8428 } 8429 8430 /* okay to release */ 8431 lun->flags &= ~CTL_LUN_PR_RESERVED; 8432 lun->pr_res_idx = CTL_PR_NO_RESERVATION; 8433 lun->pr_res_type = 0; 8434 8435 /* 8436 * if this isn't an exclusive access 8437 * res generate UA for all other 8438 * registrants. 8439 */ 8440 if (type != SPR_TYPE_EX_AC 8441 && type != SPR_TYPE_WR_EX) { 8442 for (i = softc->init_min; i < softc->init_max; i++) { 8443 if (i == residx || ctl_get_prkey(lun, i) == 0) 8444 continue; 8445 ctl_est_ua(lun, i, CTL_UA_RES_RELEASE); 8446 } 8447 } 8448 mtx_unlock(&lun->lun_lock); 8449 8450 /* Send msg to other side */ 8451 persis_io.hdr.nexus = ctsio->io_hdr.nexus; 8452 persis_io.hdr.msg_type = CTL_MSG_PERS_ACTION; 8453 persis_io.pr.pr_info.action = CTL_PR_RELEASE; 8454 ctl_ha_msg_send(CTL_HA_CHAN_CTL, &persis_io, 8455 sizeof(persis_io.pr), M_WAITOK); 8456 break; 8457 8458 case SPRO_CLEAR: 8459 /* send msg to other side */ 8460 8461 mtx_lock(&lun->lun_lock); 8462 lun->flags &= ~CTL_LUN_PR_RESERVED; 8463 lun->pr_res_type = 0; 8464 lun->pr_key_count = 0; 8465 lun->pr_res_idx = CTL_PR_NO_RESERVATION; 8466 8467 ctl_clr_prkey(lun, residx); 8468 for (i = 0; i < CTL_MAX_INITIATORS; i++) 8469 if (ctl_get_prkey(lun, i) != 0) { 8470 ctl_clr_prkey(lun, i); 8471 ctl_est_ua(lun, i, CTL_UA_REG_PREEMPT); 8472 } 8473 lun->pr_generation++; 8474 mtx_unlock(&lun->lun_lock); 8475 8476 persis_io.hdr.nexus = ctsio->io_hdr.nexus; 8477 persis_io.hdr.msg_type = CTL_MSG_PERS_ACTION; 8478 persis_io.pr.pr_info.action = CTL_PR_CLEAR; 8479 ctl_ha_msg_send(CTL_HA_CHAN_CTL, &persis_io, 8480 sizeof(persis_io.pr), M_WAITOK); 8481 break; 8482 8483 case SPRO_PREEMPT: 8484 case SPRO_PRE_ABO: { 8485 int nretval; 8486 8487 nretval = ctl_pro_preempt(softc, lun, res_key, sa_res_key, type, 8488 residx, ctsio, cdb, param); 8489 if (nretval != 0) 8490 return (CTL_RETVAL_COMPLETE); 8491 break; 8492 } 8493 default: 8494 panic("%s: Invalid PR type %#x", __func__, cdb->action); 8495 } 8496 8497 done: 8498 free(ctsio->kern_data_ptr, M_CTL); 8499 ctl_set_success(ctsio); 8500 ctl_done((union ctl_io *)ctsio); 8501 8502 return (retval); 8503 } 8504 8505 /* 8506 * This routine is for handling a message from the other SC pertaining to 8507 * persistent reserve out. All the error checking will have been done 8508 * so only perorming the action need be done here to keep the two 8509 * in sync. 8510 */ 8511 static void 8512 ctl_hndl_per_res_out_on_other_sc(union ctl_ha_msg *msg) 8513 { 8514 struct ctl_softc *softc = control_softc; 8515 struct ctl_lun *lun; 8516 int i; 8517 uint32_t residx, targ_lun; 8518 8519 targ_lun = msg->hdr.nexus.targ_mapped_lun; 8520 mtx_lock(&softc->ctl_lock); 8521 if ((targ_lun >= CTL_MAX_LUNS) || 8522 ((lun = softc->ctl_luns[targ_lun]) == NULL)) { 8523 mtx_unlock(&softc->ctl_lock); 8524 return; 8525 } 8526 mtx_lock(&lun->lun_lock); 8527 mtx_unlock(&softc->ctl_lock); 8528 if (lun->flags & CTL_LUN_DISABLED) { 8529 mtx_unlock(&lun->lun_lock); 8530 return; 8531 } 8532 residx = ctl_get_initindex(&msg->hdr.nexus); 8533 switch(msg->pr.pr_info.action) { 8534 case CTL_PR_REG_KEY: 8535 ctl_alloc_prkey(lun, msg->pr.pr_info.residx); 8536 if (ctl_get_prkey(lun, msg->pr.pr_info.residx) == 0) 8537 lun->pr_key_count++; 8538 ctl_set_prkey(lun, msg->pr.pr_info.residx, 8539 scsi_8btou64(msg->pr.pr_info.sa_res_key)); 8540 lun->pr_generation++; 8541 break; 8542 8543 case CTL_PR_UNREG_KEY: 8544 ctl_clr_prkey(lun, msg->pr.pr_info.residx); 8545 lun->pr_key_count--; 8546 8547 /* XXX Need to see if the reservation has been released */ 8548 /* if so do we need to generate UA? */ 8549 if (msg->pr.pr_info.residx == lun->pr_res_idx) { 8550 lun->flags &= ~CTL_LUN_PR_RESERVED; 8551 lun->pr_res_idx = CTL_PR_NO_RESERVATION; 8552 8553 if ((lun->pr_res_type == SPR_TYPE_WR_EX_RO || 8554 lun->pr_res_type == SPR_TYPE_EX_AC_RO) && 8555 lun->pr_key_count) { 8556 /* 8557 * If the reservation is a registrants 8558 * only type we need to generate a UA 8559 * for other registered inits. The 8560 * sense code should be RESERVATIONS 8561 * RELEASED 8562 */ 8563 8564 for (i = softc->init_min; i < softc->init_max; i++) { 8565 if (ctl_get_prkey(lun, i) == 0) 8566 continue; 8567 8568 ctl_est_ua(lun, i, CTL_UA_RES_RELEASE); 8569 } 8570 } 8571 lun->pr_res_type = 0; 8572 } else if (lun->pr_res_idx == CTL_PR_ALL_REGISTRANTS) { 8573 if (lun->pr_key_count==0) { 8574 lun->flags &= ~CTL_LUN_PR_RESERVED; 8575 lun->pr_res_type = 0; 8576 lun->pr_res_idx = CTL_PR_NO_RESERVATION; 8577 } 8578 } 8579 lun->pr_generation++; 8580 break; 8581 8582 case CTL_PR_RESERVE: 8583 lun->flags |= CTL_LUN_PR_RESERVED; 8584 lun->pr_res_type = msg->pr.pr_info.res_type; 8585 lun->pr_res_idx = msg->pr.pr_info.residx; 8586 8587 break; 8588 8589 case CTL_PR_RELEASE: 8590 /* 8591 * if this isn't an exclusive access res generate UA for all 8592 * other registrants. 8593 */ 8594 if (lun->pr_res_type != SPR_TYPE_EX_AC && 8595 lun->pr_res_type != SPR_TYPE_WR_EX) { 8596 for (i = softc->init_min; i < softc->init_max; i++) 8597 if (i == residx || ctl_get_prkey(lun, i) == 0) 8598 continue; 8599 ctl_est_ua(lun, i, CTL_UA_RES_RELEASE); 8600 } 8601 8602 lun->flags &= ~CTL_LUN_PR_RESERVED; 8603 lun->pr_res_idx = CTL_PR_NO_RESERVATION; 8604 lun->pr_res_type = 0; 8605 break; 8606 8607 case CTL_PR_PREEMPT: 8608 ctl_pro_preempt_other(lun, msg); 8609 break; 8610 case CTL_PR_CLEAR: 8611 lun->flags &= ~CTL_LUN_PR_RESERVED; 8612 lun->pr_res_type = 0; 8613 lun->pr_key_count = 0; 8614 lun->pr_res_idx = CTL_PR_NO_RESERVATION; 8615 8616 for (i=0; i < CTL_MAX_INITIATORS; i++) { 8617 if (ctl_get_prkey(lun, i) == 0) 8618 continue; 8619 ctl_clr_prkey(lun, i); 8620 ctl_est_ua(lun, i, CTL_UA_REG_PREEMPT); 8621 } 8622 lun->pr_generation++; 8623 break; 8624 } 8625 8626 mtx_unlock(&lun->lun_lock); 8627 } 8628 8629 int 8630 ctl_read_write(struct ctl_scsiio *ctsio) 8631 { 8632 struct ctl_lun *lun; 8633 struct ctl_lba_len_flags *lbalen; 8634 uint64_t lba; 8635 uint32_t num_blocks; 8636 int flags, retval; 8637 int isread; 8638 8639 lun = (struct ctl_lun *)ctsio->io_hdr.ctl_private[CTL_PRIV_LUN].ptr; 8640 8641 CTL_DEBUG_PRINT(("ctl_read_write: command: %#x\n", ctsio->cdb[0])); 8642 8643 flags = 0; 8644 isread = ctsio->cdb[0] == READ_6 || ctsio->cdb[0] == READ_10 8645 || ctsio->cdb[0] == READ_12 || ctsio->cdb[0] == READ_16; 8646 switch (ctsio->cdb[0]) { 8647 case READ_6: 8648 case WRITE_6: { 8649 struct scsi_rw_6 *cdb; 8650 8651 cdb = (struct scsi_rw_6 *)ctsio->cdb; 8652 8653 lba = scsi_3btoul(cdb->addr); 8654 /* only 5 bits are valid in the most significant address byte */ 8655 lba &= 0x1fffff; 8656 num_blocks = cdb->length; 8657 /* 8658 * This is correct according to SBC-2. 8659 */ 8660 if (num_blocks == 0) 8661 num_blocks = 256; 8662 break; 8663 } 8664 case READ_10: 8665 case WRITE_10: { 8666 struct scsi_rw_10 *cdb; 8667 8668 cdb = (struct scsi_rw_10 *)ctsio->cdb; 8669 if (cdb->byte2 & SRW10_FUA) 8670 flags |= CTL_LLF_FUA; 8671 if (cdb->byte2 & SRW10_DPO) 8672 flags |= CTL_LLF_DPO; 8673 lba = scsi_4btoul(cdb->addr); 8674 num_blocks = scsi_2btoul(cdb->length); 8675 break; 8676 } 8677 case WRITE_VERIFY_10: { 8678 struct scsi_write_verify_10 *cdb; 8679 8680 cdb = (struct scsi_write_verify_10 *)ctsio->cdb; 8681 flags |= CTL_LLF_FUA; 8682 if (cdb->byte2 & SWV_DPO) 8683 flags |= CTL_LLF_DPO; 8684 lba = scsi_4btoul(cdb->addr); 8685 num_blocks = scsi_2btoul(cdb->length); 8686 break; 8687 } 8688 case READ_12: 8689 case WRITE_12: { 8690 struct scsi_rw_12 *cdb; 8691 8692 cdb = (struct scsi_rw_12 *)ctsio->cdb; 8693 if (cdb->byte2 & SRW12_FUA) 8694 flags |= CTL_LLF_FUA; 8695 if (cdb->byte2 & SRW12_DPO) 8696 flags |= CTL_LLF_DPO; 8697 lba = scsi_4btoul(cdb->addr); 8698 num_blocks = scsi_4btoul(cdb->length); 8699 break; 8700 } 8701 case WRITE_VERIFY_12: { 8702 struct scsi_write_verify_12 *cdb; 8703 8704 cdb = (struct scsi_write_verify_12 *)ctsio->cdb; 8705 flags |= CTL_LLF_FUA; 8706 if (cdb->byte2 & SWV_DPO) 8707 flags |= CTL_LLF_DPO; 8708 lba = scsi_4btoul(cdb->addr); 8709 num_blocks = scsi_4btoul(cdb->length); 8710 break; 8711 } 8712 case READ_16: 8713 case WRITE_16: { 8714 struct scsi_rw_16 *cdb; 8715 8716 cdb = (struct scsi_rw_16 *)ctsio->cdb; 8717 if (cdb->byte2 & SRW12_FUA) 8718 flags |= CTL_LLF_FUA; 8719 if (cdb->byte2 & SRW12_DPO) 8720 flags |= CTL_LLF_DPO; 8721 lba = scsi_8btou64(cdb->addr); 8722 num_blocks = scsi_4btoul(cdb->length); 8723 break; 8724 } 8725 case WRITE_ATOMIC_16: { 8726 struct scsi_write_atomic_16 *cdb; 8727 8728 if (lun->be_lun->atomicblock == 0) { 8729 ctl_set_invalid_opcode(ctsio); 8730 ctl_done((union ctl_io *)ctsio); 8731 return (CTL_RETVAL_COMPLETE); 8732 } 8733 8734 cdb = (struct scsi_write_atomic_16 *)ctsio->cdb; 8735 if (cdb->byte2 & SRW12_FUA) 8736 flags |= CTL_LLF_FUA; 8737 if (cdb->byte2 & SRW12_DPO) 8738 flags |= CTL_LLF_DPO; 8739 lba = scsi_8btou64(cdb->addr); 8740 num_blocks = scsi_2btoul(cdb->length); 8741 if (num_blocks > lun->be_lun->atomicblock) { 8742 ctl_set_invalid_field(ctsio, /*sks_valid*/ 1, 8743 /*command*/ 1, /*field*/ 12, /*bit_valid*/ 0, 8744 /*bit*/ 0); 8745 ctl_done((union ctl_io *)ctsio); 8746 return (CTL_RETVAL_COMPLETE); 8747 } 8748 break; 8749 } 8750 case WRITE_VERIFY_16: { 8751 struct scsi_write_verify_16 *cdb; 8752 8753 cdb = (struct scsi_write_verify_16 *)ctsio->cdb; 8754 flags |= CTL_LLF_FUA; 8755 if (cdb->byte2 & SWV_DPO) 8756 flags |= CTL_LLF_DPO; 8757 lba = scsi_8btou64(cdb->addr); 8758 num_blocks = scsi_4btoul(cdb->length); 8759 break; 8760 } 8761 default: 8762 /* 8763 * We got a command we don't support. This shouldn't 8764 * happen, commands should be filtered out above us. 8765 */ 8766 ctl_set_invalid_opcode(ctsio); 8767 ctl_done((union ctl_io *)ctsio); 8768 8769 return (CTL_RETVAL_COMPLETE); 8770 break; /* NOTREACHED */ 8771 } 8772 8773 /* 8774 * The first check is to make sure we're in bounds, the second 8775 * check is to catch wrap-around problems. If the lba + num blocks 8776 * is less than the lba, then we've wrapped around and the block 8777 * range is invalid anyway. 8778 */ 8779 if (((lba + num_blocks) > (lun->be_lun->maxlba + 1)) 8780 || ((lba + num_blocks) < lba)) { 8781 ctl_set_lba_out_of_range(ctsio); 8782 ctl_done((union ctl_io *)ctsio); 8783 return (CTL_RETVAL_COMPLETE); 8784 } 8785 8786 /* 8787 * According to SBC-3, a transfer length of 0 is not an error. 8788 * Note that this cannot happen with WRITE(6) or READ(6), since 0 8789 * translates to 256 blocks for those commands. 8790 */ 8791 if (num_blocks == 0) { 8792 ctl_set_success(ctsio); 8793 ctl_done((union ctl_io *)ctsio); 8794 return (CTL_RETVAL_COMPLETE); 8795 } 8796 8797 /* Set FUA and/or DPO if caches are disabled. */ 8798 if (isread) { 8799 if ((lun->mode_pages.caching_page[CTL_PAGE_CURRENT].flags1 & 8800 SCP_RCD) != 0) 8801 flags |= CTL_LLF_FUA | CTL_LLF_DPO; 8802 } else { 8803 if ((lun->mode_pages.caching_page[CTL_PAGE_CURRENT].flags1 & 8804 SCP_WCE) == 0) 8805 flags |= CTL_LLF_FUA; 8806 } 8807 8808 lbalen = (struct ctl_lba_len_flags *) 8809 &ctsio->io_hdr.ctl_private[CTL_PRIV_LBA_LEN]; 8810 lbalen->lba = lba; 8811 lbalen->len = num_blocks; 8812 lbalen->flags = (isread ? CTL_LLF_READ : CTL_LLF_WRITE) | flags; 8813 8814 ctsio->kern_total_len = num_blocks * lun->be_lun->blocksize; 8815 ctsio->kern_rel_offset = 0; 8816 8817 CTL_DEBUG_PRINT(("ctl_read_write: calling data_submit()\n")); 8818 8819 retval = lun->backend->data_submit((union ctl_io *)ctsio); 8820 return (retval); 8821 } 8822 8823 static int 8824 ctl_cnw_cont(union ctl_io *io) 8825 { 8826 struct ctl_scsiio *ctsio; 8827 struct ctl_lun *lun; 8828 struct ctl_lba_len_flags *lbalen; 8829 int retval; 8830 8831 ctsio = &io->scsiio; 8832 ctsio->io_hdr.status = CTL_STATUS_NONE; 8833 ctsio->io_hdr.flags &= ~CTL_FLAG_IO_CONT; 8834 lun = (struct ctl_lun *)ctsio->io_hdr.ctl_private[CTL_PRIV_LUN].ptr; 8835 lbalen = (struct ctl_lba_len_flags *) 8836 &ctsio->io_hdr.ctl_private[CTL_PRIV_LBA_LEN]; 8837 lbalen->flags &= ~CTL_LLF_COMPARE; 8838 lbalen->flags |= CTL_LLF_WRITE; 8839 8840 CTL_DEBUG_PRINT(("ctl_cnw_cont: calling data_submit()\n")); 8841 retval = lun->backend->data_submit((union ctl_io *)ctsio); 8842 return (retval); 8843 } 8844 8845 int 8846 ctl_cnw(struct ctl_scsiio *ctsio) 8847 { 8848 struct ctl_lun *lun; 8849 struct ctl_lba_len_flags *lbalen; 8850 uint64_t lba; 8851 uint32_t num_blocks; 8852 int flags, retval; 8853 8854 lun = (struct ctl_lun *)ctsio->io_hdr.ctl_private[CTL_PRIV_LUN].ptr; 8855 8856 CTL_DEBUG_PRINT(("ctl_cnw: command: %#x\n", ctsio->cdb[0])); 8857 8858 flags = 0; 8859 switch (ctsio->cdb[0]) { 8860 case COMPARE_AND_WRITE: { 8861 struct scsi_compare_and_write *cdb; 8862 8863 cdb = (struct scsi_compare_and_write *)ctsio->cdb; 8864 if (cdb->byte2 & SRW10_FUA) 8865 flags |= CTL_LLF_FUA; 8866 if (cdb->byte2 & SRW10_DPO) 8867 flags |= CTL_LLF_DPO; 8868 lba = scsi_8btou64(cdb->addr); 8869 num_blocks = cdb->length; 8870 break; 8871 } 8872 default: 8873 /* 8874 * We got a command we don't support. This shouldn't 8875 * happen, commands should be filtered out above us. 8876 */ 8877 ctl_set_invalid_opcode(ctsio); 8878 ctl_done((union ctl_io *)ctsio); 8879 8880 return (CTL_RETVAL_COMPLETE); 8881 break; /* NOTREACHED */ 8882 } 8883 8884 /* 8885 * The first check is to make sure we're in bounds, the second 8886 * check is to catch wrap-around problems. If the lba + num blocks 8887 * is less than the lba, then we've wrapped around and the block 8888 * range is invalid anyway. 8889 */ 8890 if (((lba + num_blocks) > (lun->be_lun->maxlba + 1)) 8891 || ((lba + num_blocks) < lba)) { 8892 ctl_set_lba_out_of_range(ctsio); 8893 ctl_done((union ctl_io *)ctsio); 8894 return (CTL_RETVAL_COMPLETE); 8895 } 8896 8897 /* 8898 * According to SBC-3, a transfer length of 0 is not an error. 8899 */ 8900 if (num_blocks == 0) { 8901 ctl_set_success(ctsio); 8902 ctl_done((union ctl_io *)ctsio); 8903 return (CTL_RETVAL_COMPLETE); 8904 } 8905 8906 /* Set FUA if write cache is disabled. */ 8907 if ((lun->mode_pages.caching_page[CTL_PAGE_CURRENT].flags1 & 8908 SCP_WCE) == 0) 8909 flags |= CTL_LLF_FUA; 8910 8911 ctsio->kern_total_len = 2 * num_blocks * lun->be_lun->blocksize; 8912 ctsio->kern_rel_offset = 0; 8913 8914 /* 8915 * Set the IO_CONT flag, so that if this I/O gets passed to 8916 * ctl_data_submit_done(), it'll get passed back to 8917 * ctl_ctl_cnw_cont() for further processing. 8918 */ 8919 ctsio->io_hdr.flags |= CTL_FLAG_IO_CONT; 8920 ctsio->io_cont = ctl_cnw_cont; 8921 8922 lbalen = (struct ctl_lba_len_flags *) 8923 &ctsio->io_hdr.ctl_private[CTL_PRIV_LBA_LEN]; 8924 lbalen->lba = lba; 8925 lbalen->len = num_blocks; 8926 lbalen->flags = CTL_LLF_COMPARE | flags; 8927 8928 CTL_DEBUG_PRINT(("ctl_cnw: calling data_submit()\n")); 8929 retval = lun->backend->data_submit((union ctl_io *)ctsio); 8930 return (retval); 8931 } 8932 8933 int 8934 ctl_verify(struct ctl_scsiio *ctsio) 8935 { 8936 struct ctl_lun *lun; 8937 struct ctl_lba_len_flags *lbalen; 8938 uint64_t lba; 8939 uint32_t num_blocks; 8940 int bytchk, flags; 8941 int retval; 8942 8943 lun = (struct ctl_lun *)ctsio->io_hdr.ctl_private[CTL_PRIV_LUN].ptr; 8944 8945 CTL_DEBUG_PRINT(("ctl_verify: command: %#x\n", ctsio->cdb[0])); 8946 8947 bytchk = 0; 8948 flags = CTL_LLF_FUA; 8949 switch (ctsio->cdb[0]) { 8950 case VERIFY_10: { 8951 struct scsi_verify_10 *cdb; 8952 8953 cdb = (struct scsi_verify_10 *)ctsio->cdb; 8954 if (cdb->byte2 & SVFY_BYTCHK) 8955 bytchk = 1; 8956 if (cdb->byte2 & SVFY_DPO) 8957 flags |= CTL_LLF_DPO; 8958 lba = scsi_4btoul(cdb->addr); 8959 num_blocks = scsi_2btoul(cdb->length); 8960 break; 8961 } 8962 case VERIFY_12: { 8963 struct scsi_verify_12 *cdb; 8964 8965 cdb = (struct scsi_verify_12 *)ctsio->cdb; 8966 if (cdb->byte2 & SVFY_BYTCHK) 8967 bytchk = 1; 8968 if (cdb->byte2 & SVFY_DPO) 8969 flags |= CTL_LLF_DPO; 8970 lba = scsi_4btoul(cdb->addr); 8971 num_blocks = scsi_4btoul(cdb->length); 8972 break; 8973 } 8974 case VERIFY_16: { 8975 struct scsi_rw_16 *cdb; 8976 8977 cdb = (struct scsi_rw_16 *)ctsio->cdb; 8978 if (cdb->byte2 & SVFY_BYTCHK) 8979 bytchk = 1; 8980 if (cdb->byte2 & SVFY_DPO) 8981 flags |= CTL_LLF_DPO; 8982 lba = scsi_8btou64(cdb->addr); 8983 num_blocks = scsi_4btoul(cdb->length); 8984 break; 8985 } 8986 default: 8987 /* 8988 * We got a command we don't support. This shouldn't 8989 * happen, commands should be filtered out above us. 8990 */ 8991 ctl_set_invalid_opcode(ctsio); 8992 ctl_done((union ctl_io *)ctsio); 8993 return (CTL_RETVAL_COMPLETE); 8994 } 8995 8996 /* 8997 * The first check is to make sure we're in bounds, the second 8998 * check is to catch wrap-around problems. If the lba + num blocks 8999 * is less than the lba, then we've wrapped around and the block 9000 * range is invalid anyway. 9001 */ 9002 if (((lba + num_blocks) > (lun->be_lun->maxlba + 1)) 9003 || ((lba + num_blocks) < lba)) { 9004 ctl_set_lba_out_of_range(ctsio); 9005 ctl_done((union ctl_io *)ctsio); 9006 return (CTL_RETVAL_COMPLETE); 9007 } 9008 9009 /* 9010 * According to SBC-3, a transfer length of 0 is not an error. 9011 */ 9012 if (num_blocks == 0) { 9013 ctl_set_success(ctsio); 9014 ctl_done((union ctl_io *)ctsio); 9015 return (CTL_RETVAL_COMPLETE); 9016 } 9017 9018 lbalen = (struct ctl_lba_len_flags *) 9019 &ctsio->io_hdr.ctl_private[CTL_PRIV_LBA_LEN]; 9020 lbalen->lba = lba; 9021 lbalen->len = num_blocks; 9022 if (bytchk) { 9023 lbalen->flags = CTL_LLF_COMPARE | flags; 9024 ctsio->kern_total_len = num_blocks * lun->be_lun->blocksize; 9025 } else { 9026 lbalen->flags = CTL_LLF_VERIFY | flags; 9027 ctsio->kern_total_len = 0; 9028 } 9029 ctsio->kern_rel_offset = 0; 9030 9031 CTL_DEBUG_PRINT(("ctl_verify: calling data_submit()\n")); 9032 retval = lun->backend->data_submit((union ctl_io *)ctsio); 9033 return (retval); 9034 } 9035 9036 int 9037 ctl_report_luns(struct ctl_scsiio *ctsio) 9038 { 9039 struct ctl_softc *softc; 9040 struct scsi_report_luns *cdb; 9041 struct scsi_report_luns_data *lun_data; 9042 struct ctl_lun *lun, *request_lun; 9043 struct ctl_port *port; 9044 int num_luns, retval; 9045 uint32_t alloc_len, lun_datalen; 9046 int num_filled; 9047 uint32_t initidx, targ_lun_id, lun_id; 9048 9049 retval = CTL_RETVAL_COMPLETE; 9050 cdb = (struct scsi_report_luns *)ctsio->cdb; 9051 port = ctl_io_port(&ctsio->io_hdr); 9052 softc = port->ctl_softc; 9053 9054 CTL_DEBUG_PRINT(("ctl_report_luns\n")); 9055 9056 mtx_lock(&softc->ctl_lock); 9057 num_luns = 0; 9058 for (targ_lun_id = 0; targ_lun_id < CTL_MAX_LUNS; targ_lun_id++) { 9059 if (ctl_lun_map_from_port(port, targ_lun_id) < CTL_MAX_LUNS) 9060 num_luns++; 9061 } 9062 mtx_unlock(&softc->ctl_lock); 9063 9064 switch (cdb->select_report) { 9065 case RPL_REPORT_DEFAULT: 9066 case RPL_REPORT_ALL: 9067 case RPL_REPORT_NONSUBSID: 9068 break; 9069 case RPL_REPORT_WELLKNOWN: 9070 case RPL_REPORT_ADMIN: 9071 case RPL_REPORT_CONGLOM: 9072 num_luns = 0; 9073 break; 9074 default: 9075 ctl_set_invalid_field(ctsio, 9076 /*sks_valid*/ 1, 9077 /*command*/ 1, 9078 /*field*/ 2, 9079 /*bit_valid*/ 0, 9080 /*bit*/ 0); 9081 ctl_done((union ctl_io *)ctsio); 9082 return (retval); 9083 break; /* NOTREACHED */ 9084 } 9085 9086 alloc_len = scsi_4btoul(cdb->length); 9087 /* 9088 * The initiator has to allocate at least 16 bytes for this request, 9089 * so he can at least get the header and the first LUN. Otherwise 9090 * we reject the request (per SPC-3 rev 14, section 6.21). 9091 */ 9092 if (alloc_len < (sizeof(struct scsi_report_luns_data) + 9093 sizeof(struct scsi_report_luns_lundata))) { 9094 ctl_set_invalid_field(ctsio, 9095 /*sks_valid*/ 1, 9096 /*command*/ 1, 9097 /*field*/ 6, 9098 /*bit_valid*/ 0, 9099 /*bit*/ 0); 9100 ctl_done((union ctl_io *)ctsio); 9101 return (retval); 9102 } 9103 9104 request_lun = (struct ctl_lun *) 9105 ctsio->io_hdr.ctl_private[CTL_PRIV_LUN].ptr; 9106 9107 lun_datalen = sizeof(*lun_data) + 9108 (num_luns * sizeof(struct scsi_report_luns_lundata)); 9109 9110 ctsio->kern_data_ptr = malloc(lun_datalen, M_CTL, M_WAITOK | M_ZERO); 9111 lun_data = (struct scsi_report_luns_data *)ctsio->kern_data_ptr; 9112 ctsio->kern_sg_entries = 0; 9113 9114 initidx = ctl_get_initindex(&ctsio->io_hdr.nexus); 9115 9116 mtx_lock(&softc->ctl_lock); 9117 for (targ_lun_id = 0, num_filled = 0; targ_lun_id < CTL_MAX_LUNS && num_filled < num_luns; targ_lun_id++) { 9118 lun_id = ctl_lun_map_from_port(port, targ_lun_id); 9119 if (lun_id >= CTL_MAX_LUNS) 9120 continue; 9121 lun = softc->ctl_luns[lun_id]; 9122 if (lun == NULL) 9123 continue; 9124 9125 be64enc(lun_data->luns[num_filled++].lundata, 9126 ctl_encode_lun(targ_lun_id)); 9127 9128 /* 9129 * According to SPC-3, rev 14 section 6.21: 9130 * 9131 * "The execution of a REPORT LUNS command to any valid and 9132 * installed logical unit shall clear the REPORTED LUNS DATA 9133 * HAS CHANGED unit attention condition for all logical 9134 * units of that target with respect to the requesting 9135 * initiator. A valid and installed logical unit is one 9136 * having a PERIPHERAL QUALIFIER of 000b in the standard 9137 * INQUIRY data (see 6.4.2)." 9138 * 9139 * If request_lun is NULL, the LUN this report luns command 9140 * was issued to is either disabled or doesn't exist. In that 9141 * case, we shouldn't clear any pending lun change unit 9142 * attention. 9143 */ 9144 if (request_lun != NULL) { 9145 mtx_lock(&lun->lun_lock); 9146 ctl_clr_ua(lun, initidx, CTL_UA_LUN_CHANGE); 9147 mtx_unlock(&lun->lun_lock); 9148 } 9149 } 9150 mtx_unlock(&softc->ctl_lock); 9151 9152 /* 9153 * It's quite possible that we've returned fewer LUNs than we allocated 9154 * space for. Trim it. 9155 */ 9156 lun_datalen = sizeof(*lun_data) + 9157 (num_filled * sizeof(struct scsi_report_luns_lundata)); 9158 9159 if (lun_datalen < alloc_len) { 9160 ctsio->residual = alloc_len - lun_datalen; 9161 ctsio->kern_data_len = lun_datalen; 9162 ctsio->kern_total_len = lun_datalen; 9163 } else { 9164 ctsio->residual = 0; 9165 ctsio->kern_data_len = alloc_len; 9166 ctsio->kern_total_len = alloc_len; 9167 } 9168 ctsio->kern_data_resid = 0; 9169 ctsio->kern_rel_offset = 0; 9170 ctsio->kern_sg_entries = 0; 9171 9172 /* 9173 * We set this to the actual data length, regardless of how much 9174 * space we actually have to return results. If the user looks at 9175 * this value, he'll know whether or not he allocated enough space 9176 * and reissue the command if necessary. We don't support well 9177 * known logical units, so if the user asks for that, return none. 9178 */ 9179 scsi_ulto4b(lun_datalen - 8, lun_data->length); 9180 9181 /* 9182 * We can only return SCSI_STATUS_CHECK_COND when we can't satisfy 9183 * this request. 9184 */ 9185 ctl_set_success(ctsio); 9186 ctsio->io_hdr.flags |= CTL_FLAG_ALLOCATED; 9187 ctsio->be_move_done = ctl_config_move_done; 9188 ctl_datamove((union ctl_io *)ctsio); 9189 return (retval); 9190 } 9191 9192 int 9193 ctl_request_sense(struct ctl_scsiio *ctsio) 9194 { 9195 struct scsi_request_sense *cdb; 9196 struct scsi_sense_data *sense_ptr; 9197 struct ctl_softc *ctl_softc; 9198 struct ctl_lun *lun; 9199 uint32_t initidx; 9200 int have_error; 9201 scsi_sense_data_type sense_format; 9202 ctl_ua_type ua_type; 9203 9204 cdb = (struct scsi_request_sense *)ctsio->cdb; 9205 9206 ctl_softc = control_softc; 9207 lun = (struct ctl_lun *)ctsio->io_hdr.ctl_private[CTL_PRIV_LUN].ptr; 9208 9209 CTL_DEBUG_PRINT(("ctl_request_sense\n")); 9210 9211 /* 9212 * Determine which sense format the user wants. 9213 */ 9214 if (cdb->byte2 & SRS_DESC) 9215 sense_format = SSD_TYPE_DESC; 9216 else 9217 sense_format = SSD_TYPE_FIXED; 9218 9219 ctsio->kern_data_ptr = malloc(sizeof(*sense_ptr), M_CTL, M_WAITOK); 9220 sense_ptr = (struct scsi_sense_data *)ctsio->kern_data_ptr; 9221 ctsio->kern_sg_entries = 0; 9222 9223 /* 9224 * struct scsi_sense_data, which is currently set to 256 bytes, is 9225 * larger than the largest allowed value for the length field in the 9226 * REQUEST SENSE CDB, which is 252 bytes as of SPC-4. 9227 */ 9228 ctsio->residual = 0; 9229 ctsio->kern_data_len = cdb->length; 9230 ctsio->kern_total_len = cdb->length; 9231 9232 ctsio->kern_data_resid = 0; 9233 ctsio->kern_rel_offset = 0; 9234 ctsio->kern_sg_entries = 0; 9235 9236 /* 9237 * If we don't have a LUN, we don't have any pending sense. 9238 */ 9239 if (lun == NULL) 9240 goto no_sense; 9241 9242 have_error = 0; 9243 initidx = ctl_get_initindex(&ctsio->io_hdr.nexus); 9244 /* 9245 * Check for pending sense, and then for pending unit attentions. 9246 * Pending sense gets returned first, then pending unit attentions. 9247 */ 9248 mtx_lock(&lun->lun_lock); 9249 #ifdef CTL_WITH_CA 9250 if (ctl_is_set(lun->have_ca, initidx)) { 9251 scsi_sense_data_type stored_format; 9252 9253 /* 9254 * Check to see which sense format was used for the stored 9255 * sense data. 9256 */ 9257 stored_format = scsi_sense_type(&lun->pending_sense[initidx]); 9258 9259 /* 9260 * If the user requested a different sense format than the 9261 * one we stored, then we need to convert it to the other 9262 * format. If we're going from descriptor to fixed format 9263 * sense data, we may lose things in translation, depending 9264 * on what options were used. 9265 * 9266 * If the stored format is SSD_TYPE_NONE (i.e. invalid), 9267 * for some reason we'll just copy it out as-is. 9268 */ 9269 if ((stored_format == SSD_TYPE_FIXED) 9270 && (sense_format == SSD_TYPE_DESC)) 9271 ctl_sense_to_desc((struct scsi_sense_data_fixed *) 9272 &lun->pending_sense[initidx], 9273 (struct scsi_sense_data_desc *)sense_ptr); 9274 else if ((stored_format == SSD_TYPE_DESC) 9275 && (sense_format == SSD_TYPE_FIXED)) 9276 ctl_sense_to_fixed((struct scsi_sense_data_desc *) 9277 &lun->pending_sense[initidx], 9278 (struct scsi_sense_data_fixed *)sense_ptr); 9279 else 9280 memcpy(sense_ptr, &lun->pending_sense[initidx], 9281 MIN(sizeof(*sense_ptr), 9282 sizeof(lun->pending_sense[initidx]))); 9283 9284 ctl_clear_mask(lun->have_ca, initidx); 9285 have_error = 1; 9286 } else 9287 #endif 9288 { 9289 ua_type = ctl_build_ua(lun, initidx, sense_ptr, sense_format); 9290 if (ua_type != CTL_UA_NONE) 9291 have_error = 1; 9292 if (ua_type == CTL_UA_LUN_CHANGE) { 9293 mtx_unlock(&lun->lun_lock); 9294 mtx_lock(&ctl_softc->ctl_lock); 9295 ctl_clr_ua_allluns(ctl_softc, initidx, ua_type); 9296 mtx_unlock(&ctl_softc->ctl_lock); 9297 mtx_lock(&lun->lun_lock); 9298 } 9299 9300 } 9301 mtx_unlock(&lun->lun_lock); 9302 9303 /* 9304 * We already have a pending error, return it. 9305 */ 9306 if (have_error != 0) { 9307 /* 9308 * We report the SCSI status as OK, since the status of the 9309 * request sense command itself is OK. 9310 * We report 0 for the sense length, because we aren't doing 9311 * autosense in this case. We're reporting sense as 9312 * parameter data. 9313 */ 9314 ctl_set_success(ctsio); 9315 ctsio->io_hdr.flags |= CTL_FLAG_ALLOCATED; 9316 ctsio->be_move_done = ctl_config_move_done; 9317 ctl_datamove((union ctl_io *)ctsio); 9318 return (CTL_RETVAL_COMPLETE); 9319 } 9320 9321 no_sense: 9322 9323 /* 9324 * No sense information to report, so we report that everything is 9325 * okay. 9326 */ 9327 ctl_set_sense_data(sense_ptr, 9328 lun, 9329 sense_format, 9330 /*current_error*/ 1, 9331 /*sense_key*/ SSD_KEY_NO_SENSE, 9332 /*asc*/ 0x00, 9333 /*ascq*/ 0x00, 9334 SSD_ELEM_NONE); 9335 9336 /* 9337 * We report 0 for the sense length, because we aren't doing 9338 * autosense in this case. We're reporting sense as parameter data. 9339 */ 9340 ctl_set_success(ctsio); 9341 ctsio->io_hdr.flags |= CTL_FLAG_ALLOCATED; 9342 ctsio->be_move_done = ctl_config_move_done; 9343 ctl_datamove((union ctl_io *)ctsio); 9344 return (CTL_RETVAL_COMPLETE); 9345 } 9346 9347 int 9348 ctl_tur(struct ctl_scsiio *ctsio) 9349 { 9350 9351 CTL_DEBUG_PRINT(("ctl_tur\n")); 9352 9353 ctl_set_success(ctsio); 9354 ctl_done((union ctl_io *)ctsio); 9355 9356 return (CTL_RETVAL_COMPLETE); 9357 } 9358 9359 /* 9360 * SCSI VPD page 0x00, the Supported VPD Pages page. 9361 */ 9362 static int 9363 ctl_inquiry_evpd_supported(struct ctl_scsiio *ctsio, int alloc_len) 9364 { 9365 struct scsi_vpd_supported_pages *pages; 9366 int sup_page_size; 9367 struct ctl_lun *lun; 9368 int p; 9369 9370 lun = (struct ctl_lun *)ctsio->io_hdr.ctl_private[CTL_PRIV_LUN].ptr; 9371 9372 sup_page_size = sizeof(struct scsi_vpd_supported_pages) * 9373 SCSI_EVPD_NUM_SUPPORTED_PAGES; 9374 ctsio->kern_data_ptr = malloc(sup_page_size, M_CTL, M_WAITOK | M_ZERO); 9375 pages = (struct scsi_vpd_supported_pages *)ctsio->kern_data_ptr; 9376 ctsio->kern_sg_entries = 0; 9377 9378 if (sup_page_size < alloc_len) { 9379 ctsio->residual = alloc_len - sup_page_size; 9380 ctsio->kern_data_len = sup_page_size; 9381 ctsio->kern_total_len = sup_page_size; 9382 } else { 9383 ctsio->residual = 0; 9384 ctsio->kern_data_len = alloc_len; 9385 ctsio->kern_total_len = alloc_len; 9386 } 9387 ctsio->kern_data_resid = 0; 9388 ctsio->kern_rel_offset = 0; 9389 ctsio->kern_sg_entries = 0; 9390 9391 /* 9392 * The control device is always connected. The disk device, on the 9393 * other hand, may not be online all the time. Need to change this 9394 * to figure out whether the disk device is actually online or not. 9395 */ 9396 if (lun != NULL) 9397 pages->device = (SID_QUAL_LU_CONNECTED << 5) | 9398 lun->be_lun->lun_type; 9399 else 9400 pages->device = (SID_QUAL_LU_OFFLINE << 5) | T_DIRECT; 9401 9402 p = 0; 9403 /* Supported VPD pages */ 9404 pages->page_list[p++] = SVPD_SUPPORTED_PAGES; 9405 /* Serial Number */ 9406 pages->page_list[p++] = SVPD_UNIT_SERIAL_NUMBER; 9407 /* Device Identification */ 9408 pages->page_list[p++] = SVPD_DEVICE_ID; 9409 /* Extended INQUIRY Data */ 9410 pages->page_list[p++] = SVPD_EXTENDED_INQUIRY_DATA; 9411 /* Mode Page Policy */ 9412 pages->page_list[p++] = SVPD_MODE_PAGE_POLICY; 9413 /* SCSI Ports */ 9414 pages->page_list[p++] = SVPD_SCSI_PORTS; 9415 /* Third-party Copy */ 9416 pages->page_list[p++] = SVPD_SCSI_TPC; 9417 if (lun != NULL && lun->be_lun->lun_type == T_DIRECT) { 9418 /* Block limits */ 9419 pages->page_list[p++] = SVPD_BLOCK_LIMITS; 9420 /* Block Device Characteristics */ 9421 pages->page_list[p++] = SVPD_BDC; 9422 /* Logical Block Provisioning */ 9423 pages->page_list[p++] = SVPD_LBP; 9424 } 9425 pages->length = p; 9426 9427 ctl_set_success(ctsio); 9428 ctsio->io_hdr.flags |= CTL_FLAG_ALLOCATED; 9429 ctsio->be_move_done = ctl_config_move_done; 9430 ctl_datamove((union ctl_io *)ctsio); 9431 return (CTL_RETVAL_COMPLETE); 9432 } 9433 9434 /* 9435 * SCSI VPD page 0x80, the Unit Serial Number page. 9436 */ 9437 static int 9438 ctl_inquiry_evpd_serial(struct ctl_scsiio *ctsio, int alloc_len) 9439 { 9440 struct scsi_vpd_unit_serial_number *sn_ptr; 9441 struct ctl_lun *lun; 9442 int data_len; 9443 9444 lun = (struct ctl_lun *)ctsio->io_hdr.ctl_private[CTL_PRIV_LUN].ptr; 9445 9446 data_len = 4 + CTL_SN_LEN; 9447 ctsio->kern_data_ptr = malloc(data_len, M_CTL, M_WAITOK | M_ZERO); 9448 sn_ptr = (struct scsi_vpd_unit_serial_number *)ctsio->kern_data_ptr; 9449 if (data_len < alloc_len) { 9450 ctsio->residual = alloc_len - data_len; 9451 ctsio->kern_data_len = data_len; 9452 ctsio->kern_total_len = data_len; 9453 } else { 9454 ctsio->residual = 0; 9455 ctsio->kern_data_len = alloc_len; 9456 ctsio->kern_total_len = alloc_len; 9457 } 9458 ctsio->kern_data_resid = 0; 9459 ctsio->kern_rel_offset = 0; 9460 ctsio->kern_sg_entries = 0; 9461 9462 /* 9463 * The control device is always connected. The disk device, on the 9464 * other hand, may not be online all the time. Need to change this 9465 * to figure out whether the disk device is actually online or not. 9466 */ 9467 if (lun != NULL) 9468 sn_ptr->device = (SID_QUAL_LU_CONNECTED << 5) | 9469 lun->be_lun->lun_type; 9470 else 9471 sn_ptr->device = (SID_QUAL_LU_OFFLINE << 5) | T_DIRECT; 9472 9473 sn_ptr->page_code = SVPD_UNIT_SERIAL_NUMBER; 9474 sn_ptr->length = CTL_SN_LEN; 9475 /* 9476 * If we don't have a LUN, we just leave the serial number as 9477 * all spaces. 9478 */ 9479 if (lun != NULL) { 9480 strncpy((char *)sn_ptr->serial_num, 9481 (char *)lun->be_lun->serial_num, CTL_SN_LEN); 9482 } else 9483 memset(sn_ptr->serial_num, 0x20, CTL_SN_LEN); 9484 9485 ctl_set_success(ctsio); 9486 ctsio->io_hdr.flags |= CTL_FLAG_ALLOCATED; 9487 ctsio->be_move_done = ctl_config_move_done; 9488 ctl_datamove((union ctl_io *)ctsio); 9489 return (CTL_RETVAL_COMPLETE); 9490 } 9491 9492 9493 /* 9494 * SCSI VPD page 0x86, the Extended INQUIRY Data page. 9495 */ 9496 static int 9497 ctl_inquiry_evpd_eid(struct ctl_scsiio *ctsio, int alloc_len) 9498 { 9499 struct scsi_vpd_extended_inquiry_data *eid_ptr; 9500 struct ctl_lun *lun; 9501 int data_len; 9502 9503 lun = (struct ctl_lun *)ctsio->io_hdr.ctl_private[CTL_PRIV_LUN].ptr; 9504 9505 data_len = sizeof(struct scsi_vpd_extended_inquiry_data); 9506 ctsio->kern_data_ptr = malloc(data_len, M_CTL, M_WAITOK | M_ZERO); 9507 eid_ptr = (struct scsi_vpd_extended_inquiry_data *)ctsio->kern_data_ptr; 9508 ctsio->kern_sg_entries = 0; 9509 9510 if (data_len < alloc_len) { 9511 ctsio->residual = alloc_len - data_len; 9512 ctsio->kern_data_len = data_len; 9513 ctsio->kern_total_len = data_len; 9514 } else { 9515 ctsio->residual = 0; 9516 ctsio->kern_data_len = alloc_len; 9517 ctsio->kern_total_len = alloc_len; 9518 } 9519 ctsio->kern_data_resid = 0; 9520 ctsio->kern_rel_offset = 0; 9521 ctsio->kern_sg_entries = 0; 9522 9523 /* 9524 * The control device is always connected. The disk device, on the 9525 * other hand, may not be online all the time. 9526 */ 9527 if (lun != NULL) 9528 eid_ptr->device = (SID_QUAL_LU_CONNECTED << 5) | 9529 lun->be_lun->lun_type; 9530 else 9531 eid_ptr->device = (SID_QUAL_LU_OFFLINE << 5) | T_DIRECT; 9532 eid_ptr->page_code = SVPD_EXTENDED_INQUIRY_DATA; 9533 scsi_ulto2b(data_len - 4, eid_ptr->page_length); 9534 /* 9535 * We support head of queue, ordered and simple tags. 9536 */ 9537 eid_ptr->flags2 = SVPD_EID_HEADSUP | SVPD_EID_ORDSUP | SVPD_EID_SIMPSUP; 9538 /* 9539 * Volatile cache supported. 9540 */ 9541 eid_ptr->flags3 = SVPD_EID_V_SUP; 9542 9543 /* 9544 * This means that we clear the REPORTED LUNS DATA HAS CHANGED unit 9545 * attention for a particular IT nexus on all LUNs once we report 9546 * it to that nexus once. This bit is required as of SPC-4. 9547 */ 9548 eid_ptr->flags4 = SVPD_EID_LUICLT; 9549 9550 /* 9551 * XXX KDM in order to correctly answer this, we would need 9552 * information from the SIM to determine how much sense data it 9553 * can send. So this would really be a path inquiry field, most 9554 * likely. This can be set to a maximum of 252 according to SPC-4, 9555 * but the hardware may or may not be able to support that much. 9556 * 0 just means that the maximum sense data length is not reported. 9557 */ 9558 eid_ptr->max_sense_length = 0; 9559 9560 ctl_set_success(ctsio); 9561 ctsio->io_hdr.flags |= CTL_FLAG_ALLOCATED; 9562 ctsio->be_move_done = ctl_config_move_done; 9563 ctl_datamove((union ctl_io *)ctsio); 9564 return (CTL_RETVAL_COMPLETE); 9565 } 9566 9567 static int 9568 ctl_inquiry_evpd_mpp(struct ctl_scsiio *ctsio, int alloc_len) 9569 { 9570 struct scsi_vpd_mode_page_policy *mpp_ptr; 9571 struct ctl_lun *lun; 9572 int data_len; 9573 9574 lun = (struct ctl_lun *)ctsio->io_hdr.ctl_private[CTL_PRIV_LUN].ptr; 9575 9576 data_len = sizeof(struct scsi_vpd_mode_page_policy) + 9577 sizeof(struct scsi_vpd_mode_page_policy_descr); 9578 9579 ctsio->kern_data_ptr = malloc(data_len, M_CTL, M_WAITOK | M_ZERO); 9580 mpp_ptr = (struct scsi_vpd_mode_page_policy *)ctsio->kern_data_ptr; 9581 ctsio->kern_sg_entries = 0; 9582 9583 if (data_len < alloc_len) { 9584 ctsio->residual = alloc_len - data_len; 9585 ctsio->kern_data_len = data_len; 9586 ctsio->kern_total_len = data_len; 9587 } else { 9588 ctsio->residual = 0; 9589 ctsio->kern_data_len = alloc_len; 9590 ctsio->kern_total_len = alloc_len; 9591 } 9592 ctsio->kern_data_resid = 0; 9593 ctsio->kern_rel_offset = 0; 9594 ctsio->kern_sg_entries = 0; 9595 9596 /* 9597 * The control device is always connected. The disk device, on the 9598 * other hand, may not be online all the time. 9599 */ 9600 if (lun != NULL) 9601 mpp_ptr->device = (SID_QUAL_LU_CONNECTED << 5) | 9602 lun->be_lun->lun_type; 9603 else 9604 mpp_ptr->device = (SID_QUAL_LU_OFFLINE << 5) | T_DIRECT; 9605 mpp_ptr->page_code = SVPD_MODE_PAGE_POLICY; 9606 scsi_ulto2b(data_len - 4, mpp_ptr->page_length); 9607 mpp_ptr->descr[0].page_code = 0x3f; 9608 mpp_ptr->descr[0].subpage_code = 0xff; 9609 mpp_ptr->descr[0].policy = SVPD_MPP_SHARED; 9610 9611 ctl_set_success(ctsio); 9612 ctsio->io_hdr.flags |= CTL_FLAG_ALLOCATED; 9613 ctsio->be_move_done = ctl_config_move_done; 9614 ctl_datamove((union ctl_io *)ctsio); 9615 return (CTL_RETVAL_COMPLETE); 9616 } 9617 9618 /* 9619 * SCSI VPD page 0x83, the Device Identification page. 9620 */ 9621 static int 9622 ctl_inquiry_evpd_devid(struct ctl_scsiio *ctsio, int alloc_len) 9623 { 9624 struct scsi_vpd_device_id *devid_ptr; 9625 struct scsi_vpd_id_descriptor *desc; 9626 struct ctl_softc *softc; 9627 struct ctl_lun *lun; 9628 struct ctl_port *port; 9629 int data_len; 9630 uint8_t proto; 9631 9632 softc = control_softc; 9633 9634 port = ctl_io_port(&ctsio->io_hdr); 9635 lun = (struct ctl_lun *)ctsio->io_hdr.ctl_private[CTL_PRIV_LUN].ptr; 9636 9637 data_len = sizeof(struct scsi_vpd_device_id) + 9638 sizeof(struct scsi_vpd_id_descriptor) + 9639 sizeof(struct scsi_vpd_id_rel_trgt_port_id) + 9640 sizeof(struct scsi_vpd_id_descriptor) + 9641 sizeof(struct scsi_vpd_id_trgt_port_grp_id); 9642 if (lun && lun->lun_devid) 9643 data_len += lun->lun_devid->len; 9644 if (port && port->port_devid) 9645 data_len += port->port_devid->len; 9646 if (port && port->target_devid) 9647 data_len += port->target_devid->len; 9648 9649 ctsio->kern_data_ptr = malloc(data_len, M_CTL, M_WAITOK | M_ZERO); 9650 devid_ptr = (struct scsi_vpd_device_id *)ctsio->kern_data_ptr; 9651 ctsio->kern_sg_entries = 0; 9652 9653 if (data_len < alloc_len) { 9654 ctsio->residual = alloc_len - data_len; 9655 ctsio->kern_data_len = data_len; 9656 ctsio->kern_total_len = data_len; 9657 } else { 9658 ctsio->residual = 0; 9659 ctsio->kern_data_len = alloc_len; 9660 ctsio->kern_total_len = alloc_len; 9661 } 9662 ctsio->kern_data_resid = 0; 9663 ctsio->kern_rel_offset = 0; 9664 ctsio->kern_sg_entries = 0; 9665 9666 /* 9667 * The control device is always connected. The disk device, on the 9668 * other hand, may not be online all the time. 9669 */ 9670 if (lun != NULL) 9671 devid_ptr->device = (SID_QUAL_LU_CONNECTED << 5) | 9672 lun->be_lun->lun_type; 9673 else 9674 devid_ptr->device = (SID_QUAL_LU_OFFLINE << 5) | T_DIRECT; 9675 devid_ptr->page_code = SVPD_DEVICE_ID; 9676 scsi_ulto2b(data_len - 4, devid_ptr->length); 9677 9678 if (port && port->port_type == CTL_PORT_FC) 9679 proto = SCSI_PROTO_FC << 4; 9680 else if (port && port->port_type == CTL_PORT_ISCSI) 9681 proto = SCSI_PROTO_ISCSI << 4; 9682 else 9683 proto = SCSI_PROTO_SPI << 4; 9684 desc = (struct scsi_vpd_id_descriptor *)devid_ptr->desc_list; 9685 9686 /* 9687 * We're using a LUN association here. i.e., this device ID is a 9688 * per-LUN identifier. 9689 */ 9690 if (lun && lun->lun_devid) { 9691 memcpy(desc, lun->lun_devid->data, lun->lun_devid->len); 9692 desc = (struct scsi_vpd_id_descriptor *)((uint8_t *)desc + 9693 lun->lun_devid->len); 9694 } 9695 9696 /* 9697 * This is for the WWPN which is a port association. 9698 */ 9699 if (port && port->port_devid) { 9700 memcpy(desc, port->port_devid->data, port->port_devid->len); 9701 desc = (struct scsi_vpd_id_descriptor *)((uint8_t *)desc + 9702 port->port_devid->len); 9703 } 9704 9705 /* 9706 * This is for the Relative Target Port(type 4h) identifier 9707 */ 9708 desc->proto_codeset = proto | SVPD_ID_CODESET_BINARY; 9709 desc->id_type = SVPD_ID_PIV | SVPD_ID_ASSOC_PORT | 9710 SVPD_ID_TYPE_RELTARG; 9711 desc->length = 4; 9712 scsi_ulto2b(ctsio->io_hdr.nexus.targ_port, &desc->identifier[2]); 9713 desc = (struct scsi_vpd_id_descriptor *)(&desc->identifier[0] + 9714 sizeof(struct scsi_vpd_id_rel_trgt_port_id)); 9715 9716 /* 9717 * This is for the Target Port Group(type 5h) identifier 9718 */ 9719 desc->proto_codeset = proto | SVPD_ID_CODESET_BINARY; 9720 desc->id_type = SVPD_ID_PIV | SVPD_ID_ASSOC_PORT | 9721 SVPD_ID_TYPE_TPORTGRP; 9722 desc->length = 4; 9723 scsi_ulto2b(ctsio->io_hdr.nexus.targ_port / softc->port_cnt + 1, 9724 &desc->identifier[2]); 9725 desc = (struct scsi_vpd_id_descriptor *)(&desc->identifier[0] + 9726 sizeof(struct scsi_vpd_id_trgt_port_grp_id)); 9727 9728 /* 9729 * This is for the Target identifier 9730 */ 9731 if (port && port->target_devid) { 9732 memcpy(desc, port->target_devid->data, port->target_devid->len); 9733 } 9734 9735 ctl_set_success(ctsio); 9736 ctsio->io_hdr.flags |= CTL_FLAG_ALLOCATED; 9737 ctsio->be_move_done = ctl_config_move_done; 9738 ctl_datamove((union ctl_io *)ctsio); 9739 return (CTL_RETVAL_COMPLETE); 9740 } 9741 9742 static int 9743 ctl_inquiry_evpd_scsi_ports(struct ctl_scsiio *ctsio, int alloc_len) 9744 { 9745 struct ctl_softc *softc = control_softc; 9746 struct scsi_vpd_scsi_ports *sp; 9747 struct scsi_vpd_port_designation *pd; 9748 struct scsi_vpd_port_designation_cont *pdc; 9749 struct ctl_lun *lun; 9750 struct ctl_port *port; 9751 int data_len, num_target_ports, iid_len, id_len; 9752 9753 lun = (struct ctl_lun *)ctsio->io_hdr.ctl_private[CTL_PRIV_LUN].ptr; 9754 9755 num_target_ports = 0; 9756 iid_len = 0; 9757 id_len = 0; 9758 mtx_lock(&softc->ctl_lock); 9759 STAILQ_FOREACH(port, &softc->port_list, links) { 9760 if ((port->status & CTL_PORT_STATUS_ONLINE) == 0) 9761 continue; 9762 if (lun != NULL && 9763 ctl_lun_map_to_port(port, lun->lun) >= CTL_MAX_LUNS) 9764 continue; 9765 num_target_ports++; 9766 if (port->init_devid) 9767 iid_len += port->init_devid->len; 9768 if (port->port_devid) 9769 id_len += port->port_devid->len; 9770 } 9771 mtx_unlock(&softc->ctl_lock); 9772 9773 data_len = sizeof(struct scsi_vpd_scsi_ports) + 9774 num_target_ports * (sizeof(struct scsi_vpd_port_designation) + 9775 sizeof(struct scsi_vpd_port_designation_cont)) + iid_len + id_len; 9776 ctsio->kern_data_ptr = malloc(data_len, M_CTL, M_WAITOK | M_ZERO); 9777 sp = (struct scsi_vpd_scsi_ports *)ctsio->kern_data_ptr; 9778 ctsio->kern_sg_entries = 0; 9779 9780 if (data_len < alloc_len) { 9781 ctsio->residual = alloc_len - data_len; 9782 ctsio->kern_data_len = data_len; 9783 ctsio->kern_total_len = data_len; 9784 } else { 9785 ctsio->residual = 0; 9786 ctsio->kern_data_len = alloc_len; 9787 ctsio->kern_total_len = alloc_len; 9788 } 9789 ctsio->kern_data_resid = 0; 9790 ctsio->kern_rel_offset = 0; 9791 ctsio->kern_sg_entries = 0; 9792 9793 /* 9794 * The control device is always connected. The disk device, on the 9795 * other hand, may not be online all the time. Need to change this 9796 * to figure out whether the disk device is actually online or not. 9797 */ 9798 if (lun != NULL) 9799 sp->device = (SID_QUAL_LU_CONNECTED << 5) | 9800 lun->be_lun->lun_type; 9801 else 9802 sp->device = (SID_QUAL_LU_OFFLINE << 5) | T_DIRECT; 9803 9804 sp->page_code = SVPD_SCSI_PORTS; 9805 scsi_ulto2b(data_len - sizeof(struct scsi_vpd_scsi_ports), 9806 sp->page_length); 9807 pd = &sp->design[0]; 9808 9809 mtx_lock(&softc->ctl_lock); 9810 STAILQ_FOREACH(port, &softc->port_list, links) { 9811 if ((port->status & CTL_PORT_STATUS_ONLINE) == 0) 9812 continue; 9813 if (lun != NULL && 9814 ctl_lun_map_to_port(port, lun->lun) >= CTL_MAX_LUNS) 9815 continue; 9816 scsi_ulto2b(port->targ_port, pd->relative_port_id); 9817 if (port->init_devid) { 9818 iid_len = port->init_devid->len; 9819 memcpy(pd->initiator_transportid, 9820 port->init_devid->data, port->init_devid->len); 9821 } else 9822 iid_len = 0; 9823 scsi_ulto2b(iid_len, pd->initiator_transportid_length); 9824 pdc = (struct scsi_vpd_port_designation_cont *) 9825 (&pd->initiator_transportid[iid_len]); 9826 if (port->port_devid) { 9827 id_len = port->port_devid->len; 9828 memcpy(pdc->target_port_descriptors, 9829 port->port_devid->data, port->port_devid->len); 9830 } else 9831 id_len = 0; 9832 scsi_ulto2b(id_len, pdc->target_port_descriptors_length); 9833 pd = (struct scsi_vpd_port_designation *) 9834 ((uint8_t *)pdc->target_port_descriptors + id_len); 9835 } 9836 mtx_unlock(&softc->ctl_lock); 9837 9838 ctl_set_success(ctsio); 9839 ctsio->io_hdr.flags |= CTL_FLAG_ALLOCATED; 9840 ctsio->be_move_done = ctl_config_move_done; 9841 ctl_datamove((union ctl_io *)ctsio); 9842 return (CTL_RETVAL_COMPLETE); 9843 } 9844 9845 static int 9846 ctl_inquiry_evpd_block_limits(struct ctl_scsiio *ctsio, int alloc_len) 9847 { 9848 struct scsi_vpd_block_limits *bl_ptr; 9849 struct ctl_lun *lun; 9850 9851 lun = (struct ctl_lun *)ctsio->io_hdr.ctl_private[CTL_PRIV_LUN].ptr; 9852 9853 ctsio->kern_data_ptr = malloc(sizeof(*bl_ptr), M_CTL, M_WAITOK | M_ZERO); 9854 bl_ptr = (struct scsi_vpd_block_limits *)ctsio->kern_data_ptr; 9855 ctsio->kern_sg_entries = 0; 9856 9857 if (sizeof(*bl_ptr) < alloc_len) { 9858 ctsio->residual = alloc_len - sizeof(*bl_ptr); 9859 ctsio->kern_data_len = sizeof(*bl_ptr); 9860 ctsio->kern_total_len = sizeof(*bl_ptr); 9861 } else { 9862 ctsio->residual = 0; 9863 ctsio->kern_data_len = alloc_len; 9864 ctsio->kern_total_len = alloc_len; 9865 } 9866 ctsio->kern_data_resid = 0; 9867 ctsio->kern_rel_offset = 0; 9868 ctsio->kern_sg_entries = 0; 9869 9870 /* 9871 * The control device is always connected. The disk device, on the 9872 * other hand, may not be online all the time. Need to change this 9873 * to figure out whether the disk device is actually online or not. 9874 */ 9875 if (lun != NULL) 9876 bl_ptr->device = (SID_QUAL_LU_CONNECTED << 5) | 9877 lun->be_lun->lun_type; 9878 else 9879 bl_ptr->device = (SID_QUAL_LU_OFFLINE << 5) | T_DIRECT; 9880 9881 bl_ptr->page_code = SVPD_BLOCK_LIMITS; 9882 scsi_ulto2b(sizeof(*bl_ptr) - 4, bl_ptr->page_length); 9883 bl_ptr->max_cmp_write_len = 0xff; 9884 scsi_ulto4b(0xffffffff, bl_ptr->max_txfer_len); 9885 if (lun != NULL) { 9886 scsi_ulto4b(lun->be_lun->opttxferlen, bl_ptr->opt_txfer_len); 9887 if (lun->be_lun->flags & CTL_LUN_FLAG_UNMAP) { 9888 scsi_ulto4b(0xffffffff, bl_ptr->max_unmap_lba_cnt); 9889 scsi_ulto4b(0xffffffff, bl_ptr->max_unmap_blk_cnt); 9890 if (lun->be_lun->ublockexp != 0) { 9891 scsi_ulto4b((1 << lun->be_lun->ublockexp), 9892 bl_ptr->opt_unmap_grain); 9893 scsi_ulto4b(0x80000000 | lun->be_lun->ublockoff, 9894 bl_ptr->unmap_grain_align); 9895 } 9896 } 9897 scsi_ulto4b(lun->be_lun->atomicblock, 9898 bl_ptr->max_atomic_transfer_length); 9899 scsi_ulto4b(0, bl_ptr->atomic_alignment); 9900 scsi_ulto4b(0, bl_ptr->atomic_transfer_length_granularity); 9901 scsi_ulto4b(0, bl_ptr->max_atomic_transfer_length_with_atomic_boundary); 9902 scsi_ulto4b(0, bl_ptr->max_atomic_boundary_size); 9903 } 9904 scsi_u64to8b(UINT64_MAX, bl_ptr->max_write_same_length); 9905 9906 ctl_set_success(ctsio); 9907 ctsio->io_hdr.flags |= CTL_FLAG_ALLOCATED; 9908 ctsio->be_move_done = ctl_config_move_done; 9909 ctl_datamove((union ctl_io *)ctsio); 9910 return (CTL_RETVAL_COMPLETE); 9911 } 9912 9913 static int 9914 ctl_inquiry_evpd_bdc(struct ctl_scsiio *ctsio, int alloc_len) 9915 { 9916 struct scsi_vpd_block_device_characteristics *bdc_ptr; 9917 struct ctl_lun *lun; 9918 const char *value; 9919 u_int i; 9920 9921 lun = (struct ctl_lun *)ctsio->io_hdr.ctl_private[CTL_PRIV_LUN].ptr; 9922 9923 ctsio->kern_data_ptr = malloc(sizeof(*bdc_ptr), M_CTL, M_WAITOK | M_ZERO); 9924 bdc_ptr = (struct scsi_vpd_block_device_characteristics *)ctsio->kern_data_ptr; 9925 ctsio->kern_sg_entries = 0; 9926 9927 if (sizeof(*bdc_ptr) < alloc_len) { 9928 ctsio->residual = alloc_len - sizeof(*bdc_ptr); 9929 ctsio->kern_data_len = sizeof(*bdc_ptr); 9930 ctsio->kern_total_len = sizeof(*bdc_ptr); 9931 } else { 9932 ctsio->residual = 0; 9933 ctsio->kern_data_len = alloc_len; 9934 ctsio->kern_total_len = alloc_len; 9935 } 9936 ctsio->kern_data_resid = 0; 9937 ctsio->kern_rel_offset = 0; 9938 ctsio->kern_sg_entries = 0; 9939 9940 /* 9941 * The control device is always connected. The disk device, on the 9942 * other hand, may not be online all the time. Need to change this 9943 * to figure out whether the disk device is actually online or not. 9944 */ 9945 if (lun != NULL) 9946 bdc_ptr->device = (SID_QUAL_LU_CONNECTED << 5) | 9947 lun->be_lun->lun_type; 9948 else 9949 bdc_ptr->device = (SID_QUAL_LU_OFFLINE << 5) | T_DIRECT; 9950 bdc_ptr->page_code = SVPD_BDC; 9951 scsi_ulto2b(sizeof(*bdc_ptr) - 4, bdc_ptr->page_length); 9952 if (lun != NULL && 9953 (value = ctl_get_opt(&lun->be_lun->options, "rpm")) != NULL) 9954 i = strtol(value, NULL, 0); 9955 else 9956 i = CTL_DEFAULT_ROTATION_RATE; 9957 scsi_ulto2b(i, bdc_ptr->medium_rotation_rate); 9958 if (lun != NULL && 9959 (value = ctl_get_opt(&lun->be_lun->options, "formfactor")) != NULL) 9960 i = strtol(value, NULL, 0); 9961 else 9962 i = 0; 9963 bdc_ptr->wab_wac_ff = (i & 0x0f); 9964 bdc_ptr->flags = SVPD_FUAB | SVPD_VBULS; 9965 9966 ctl_set_success(ctsio); 9967 ctsio->io_hdr.flags |= CTL_FLAG_ALLOCATED; 9968 ctsio->be_move_done = ctl_config_move_done; 9969 ctl_datamove((union ctl_io *)ctsio); 9970 return (CTL_RETVAL_COMPLETE); 9971 } 9972 9973 static int 9974 ctl_inquiry_evpd_lbp(struct ctl_scsiio *ctsio, int alloc_len) 9975 { 9976 struct scsi_vpd_logical_block_prov *lbp_ptr; 9977 struct ctl_lun *lun; 9978 9979 lun = (struct ctl_lun *)ctsio->io_hdr.ctl_private[CTL_PRIV_LUN].ptr; 9980 9981 ctsio->kern_data_ptr = malloc(sizeof(*lbp_ptr), M_CTL, M_WAITOK | M_ZERO); 9982 lbp_ptr = (struct scsi_vpd_logical_block_prov *)ctsio->kern_data_ptr; 9983 ctsio->kern_sg_entries = 0; 9984 9985 if (sizeof(*lbp_ptr) < alloc_len) { 9986 ctsio->residual = alloc_len - sizeof(*lbp_ptr); 9987 ctsio->kern_data_len = sizeof(*lbp_ptr); 9988 ctsio->kern_total_len = sizeof(*lbp_ptr); 9989 } else { 9990 ctsio->residual = 0; 9991 ctsio->kern_data_len = alloc_len; 9992 ctsio->kern_total_len = alloc_len; 9993 } 9994 ctsio->kern_data_resid = 0; 9995 ctsio->kern_rel_offset = 0; 9996 ctsio->kern_sg_entries = 0; 9997 9998 /* 9999 * The control device is always connected. The disk device, on the 10000 * other hand, may not be online all the time. Need to change this 10001 * to figure out whether the disk device is actually online or not. 10002 */ 10003 if (lun != NULL) 10004 lbp_ptr->device = (SID_QUAL_LU_CONNECTED << 5) | 10005 lun->be_lun->lun_type; 10006 else 10007 lbp_ptr->device = (SID_QUAL_LU_OFFLINE << 5) | T_DIRECT; 10008 10009 lbp_ptr->page_code = SVPD_LBP; 10010 scsi_ulto2b(sizeof(*lbp_ptr) - 4, lbp_ptr->page_length); 10011 lbp_ptr->threshold_exponent = CTL_LBP_EXPONENT; 10012 if (lun != NULL && lun->be_lun->flags & CTL_LUN_FLAG_UNMAP) { 10013 lbp_ptr->flags = SVPD_LBP_UNMAP | SVPD_LBP_WS16 | 10014 SVPD_LBP_WS10 | SVPD_LBP_RZ | SVPD_LBP_ANC_SUP; 10015 lbp_ptr->prov_type = SVPD_LBP_THIN; 10016 } 10017 10018 ctl_set_success(ctsio); 10019 ctsio->io_hdr.flags |= CTL_FLAG_ALLOCATED; 10020 ctsio->be_move_done = ctl_config_move_done; 10021 ctl_datamove((union ctl_io *)ctsio); 10022 return (CTL_RETVAL_COMPLETE); 10023 } 10024 10025 /* 10026 * INQUIRY with the EVPD bit set. 10027 */ 10028 static int 10029 ctl_inquiry_evpd(struct ctl_scsiio *ctsio) 10030 { 10031 struct ctl_lun *lun; 10032 struct scsi_inquiry *cdb; 10033 int alloc_len, retval; 10034 10035 lun = (struct ctl_lun *)ctsio->io_hdr.ctl_private[CTL_PRIV_LUN].ptr; 10036 cdb = (struct scsi_inquiry *)ctsio->cdb; 10037 alloc_len = scsi_2btoul(cdb->length); 10038 10039 switch (cdb->page_code) { 10040 case SVPD_SUPPORTED_PAGES: 10041 retval = ctl_inquiry_evpd_supported(ctsio, alloc_len); 10042 break; 10043 case SVPD_UNIT_SERIAL_NUMBER: 10044 retval = ctl_inquiry_evpd_serial(ctsio, alloc_len); 10045 break; 10046 case SVPD_DEVICE_ID: 10047 retval = ctl_inquiry_evpd_devid(ctsio, alloc_len); 10048 break; 10049 case SVPD_EXTENDED_INQUIRY_DATA: 10050 retval = ctl_inquiry_evpd_eid(ctsio, alloc_len); 10051 break; 10052 case SVPD_MODE_PAGE_POLICY: 10053 retval = ctl_inquiry_evpd_mpp(ctsio, alloc_len); 10054 break; 10055 case SVPD_SCSI_PORTS: 10056 retval = ctl_inquiry_evpd_scsi_ports(ctsio, alloc_len); 10057 break; 10058 case SVPD_SCSI_TPC: 10059 retval = ctl_inquiry_evpd_tpc(ctsio, alloc_len); 10060 break; 10061 case SVPD_BLOCK_LIMITS: 10062 if (lun == NULL || lun->be_lun->lun_type != T_DIRECT) 10063 goto err; 10064 retval = ctl_inquiry_evpd_block_limits(ctsio, alloc_len); 10065 break; 10066 case SVPD_BDC: 10067 if (lun == NULL || lun->be_lun->lun_type != T_DIRECT) 10068 goto err; 10069 retval = ctl_inquiry_evpd_bdc(ctsio, alloc_len); 10070 break; 10071 case SVPD_LBP: 10072 if (lun == NULL || lun->be_lun->lun_type != T_DIRECT) 10073 goto err; 10074 retval = ctl_inquiry_evpd_lbp(ctsio, alloc_len); 10075 break; 10076 default: 10077 err: 10078 ctl_set_invalid_field(ctsio, 10079 /*sks_valid*/ 1, 10080 /*command*/ 1, 10081 /*field*/ 2, 10082 /*bit_valid*/ 0, 10083 /*bit*/ 0); 10084 ctl_done((union ctl_io *)ctsio); 10085 retval = CTL_RETVAL_COMPLETE; 10086 break; 10087 } 10088 10089 return (retval); 10090 } 10091 10092 /* 10093 * Standard INQUIRY data. 10094 */ 10095 static int 10096 ctl_inquiry_std(struct ctl_scsiio *ctsio) 10097 { 10098 struct scsi_inquiry_data *inq_ptr; 10099 struct scsi_inquiry *cdb; 10100 struct ctl_softc *softc = control_softc; 10101 struct ctl_port *port; 10102 struct ctl_lun *lun; 10103 char *val; 10104 uint32_t alloc_len, data_len; 10105 ctl_port_type port_type; 10106 10107 port = ctl_io_port(&ctsio->io_hdr); 10108 port_type = port->port_type; 10109 if (port_type == CTL_PORT_IOCTL || port_type == CTL_PORT_INTERNAL) 10110 port_type = CTL_PORT_SCSI; 10111 10112 lun = ctsio->io_hdr.ctl_private[CTL_PRIV_LUN].ptr; 10113 cdb = (struct scsi_inquiry *)ctsio->cdb; 10114 alloc_len = scsi_2btoul(cdb->length); 10115 10116 /* 10117 * We malloc the full inquiry data size here and fill it 10118 * in. If the user only asks for less, we'll give him 10119 * that much. 10120 */ 10121 data_len = offsetof(struct scsi_inquiry_data, vendor_specific1); 10122 ctsio->kern_data_ptr = malloc(data_len, M_CTL, M_WAITOK | M_ZERO); 10123 inq_ptr = (struct scsi_inquiry_data *)ctsio->kern_data_ptr; 10124 ctsio->kern_sg_entries = 0; 10125 ctsio->kern_data_resid = 0; 10126 ctsio->kern_rel_offset = 0; 10127 10128 if (data_len < alloc_len) { 10129 ctsio->residual = alloc_len - data_len; 10130 ctsio->kern_data_len = data_len; 10131 ctsio->kern_total_len = data_len; 10132 } else { 10133 ctsio->residual = 0; 10134 ctsio->kern_data_len = alloc_len; 10135 ctsio->kern_total_len = alloc_len; 10136 } 10137 10138 if (lun != NULL) { 10139 if ((lun->flags & CTL_LUN_PRIMARY_SC) || 10140 softc->ha_link >= CTL_HA_LINK_UNKNOWN) { 10141 inq_ptr->device = (SID_QUAL_LU_CONNECTED << 5) | 10142 lun->be_lun->lun_type; 10143 } else { 10144 inq_ptr->device = (SID_QUAL_LU_OFFLINE << 5) | 10145 lun->be_lun->lun_type; 10146 } 10147 if (lun->flags & CTL_LUN_REMOVABLE) 10148 inq_ptr->dev_qual2 |= SID_RMB; 10149 } else 10150 inq_ptr->device = (SID_QUAL_BAD_LU << 5) | T_NODEVICE; 10151 10152 /* RMB in byte 2 is 0 */ 10153 inq_ptr->version = SCSI_REV_SPC4; 10154 10155 /* 10156 * According to SAM-3, even if a device only supports a single 10157 * level of LUN addressing, it should still set the HISUP bit: 10158 * 10159 * 4.9.1 Logical unit numbers overview 10160 * 10161 * All logical unit number formats described in this standard are 10162 * hierarchical in structure even when only a single level in that 10163 * hierarchy is used. The HISUP bit shall be set to one in the 10164 * standard INQUIRY data (see SPC-2) when any logical unit number 10165 * format described in this standard is used. Non-hierarchical 10166 * formats are outside the scope of this standard. 10167 * 10168 * Therefore we set the HiSup bit here. 10169 * 10170 * The reponse format is 2, per SPC-3. 10171 */ 10172 inq_ptr->response_format = SID_HiSup | 2; 10173 10174 inq_ptr->additional_length = data_len - 10175 (offsetof(struct scsi_inquiry_data, additional_length) + 1); 10176 CTL_DEBUG_PRINT(("additional_length = %d\n", 10177 inq_ptr->additional_length)); 10178 10179 inq_ptr->spc3_flags = SPC3_SID_3PC | SPC3_SID_TPGS_IMPLICIT; 10180 if (port_type == CTL_PORT_SCSI) 10181 inq_ptr->spc2_flags = SPC2_SID_ADDR16; 10182 inq_ptr->spc2_flags |= SPC2_SID_MultiP; 10183 inq_ptr->flags = SID_CmdQue; 10184 if (port_type == CTL_PORT_SCSI) 10185 inq_ptr->flags |= SID_WBus16 | SID_Sync; 10186 10187 /* 10188 * Per SPC-3, unused bytes in ASCII strings are filled with spaces. 10189 * We have 8 bytes for the vendor name, and 16 bytes for the device 10190 * name and 4 bytes for the revision. 10191 */ 10192 if (lun == NULL || (val = ctl_get_opt(&lun->be_lun->options, 10193 "vendor")) == NULL) { 10194 strncpy(inq_ptr->vendor, CTL_VENDOR, sizeof(inq_ptr->vendor)); 10195 } else { 10196 memset(inq_ptr->vendor, ' ', sizeof(inq_ptr->vendor)); 10197 strncpy(inq_ptr->vendor, val, 10198 min(sizeof(inq_ptr->vendor), strlen(val))); 10199 } 10200 if (lun == NULL) { 10201 strncpy(inq_ptr->product, CTL_DIRECT_PRODUCT, 10202 sizeof(inq_ptr->product)); 10203 } else if ((val = ctl_get_opt(&lun->be_lun->options, "product")) == NULL) { 10204 switch (lun->be_lun->lun_type) { 10205 case T_DIRECT: 10206 strncpy(inq_ptr->product, CTL_DIRECT_PRODUCT, 10207 sizeof(inq_ptr->product)); 10208 break; 10209 case T_PROCESSOR: 10210 strncpy(inq_ptr->product, CTL_PROCESSOR_PRODUCT, 10211 sizeof(inq_ptr->product)); 10212 break; 10213 case T_CDROM: 10214 strncpy(inq_ptr->product, CTL_CDROM_PRODUCT, 10215 sizeof(inq_ptr->product)); 10216 break; 10217 default: 10218 strncpy(inq_ptr->product, CTL_UNKNOWN_PRODUCT, 10219 sizeof(inq_ptr->product)); 10220 break; 10221 } 10222 } else { 10223 memset(inq_ptr->product, ' ', sizeof(inq_ptr->product)); 10224 strncpy(inq_ptr->product, val, 10225 min(sizeof(inq_ptr->product), strlen(val))); 10226 } 10227 10228 /* 10229 * XXX make this a macro somewhere so it automatically gets 10230 * incremented when we make changes. 10231 */ 10232 if (lun == NULL || (val = ctl_get_opt(&lun->be_lun->options, 10233 "revision")) == NULL) { 10234 strncpy(inq_ptr->revision, "0001", sizeof(inq_ptr->revision)); 10235 } else { 10236 memset(inq_ptr->revision, ' ', sizeof(inq_ptr->revision)); 10237 strncpy(inq_ptr->revision, val, 10238 min(sizeof(inq_ptr->revision), strlen(val))); 10239 } 10240 10241 /* 10242 * For parallel SCSI, we support double transition and single 10243 * transition clocking. We also support QAS (Quick Arbitration 10244 * and Selection) and Information Unit transfers on both the 10245 * control and array devices. 10246 */ 10247 if (port_type == CTL_PORT_SCSI) 10248 inq_ptr->spi3data = SID_SPI_CLOCK_DT_ST | SID_SPI_QAS | 10249 SID_SPI_IUS; 10250 10251 /* SAM-5 (no version claimed) */ 10252 scsi_ulto2b(0x00A0, inq_ptr->version1); 10253 /* SPC-4 (no version claimed) */ 10254 scsi_ulto2b(0x0460, inq_ptr->version2); 10255 if (port_type == CTL_PORT_FC) { 10256 /* FCP-2 ANSI INCITS.350:2003 */ 10257 scsi_ulto2b(0x0917, inq_ptr->version3); 10258 } else if (port_type == CTL_PORT_SCSI) { 10259 /* SPI-4 ANSI INCITS.362:200x */ 10260 scsi_ulto2b(0x0B56, inq_ptr->version3); 10261 } else if (port_type == CTL_PORT_ISCSI) { 10262 /* iSCSI (no version claimed) */ 10263 scsi_ulto2b(0x0960, inq_ptr->version3); 10264 } else if (port_type == CTL_PORT_SAS) { 10265 /* SAS (no version claimed) */ 10266 scsi_ulto2b(0x0BE0, inq_ptr->version3); 10267 } 10268 10269 if (lun == NULL) { 10270 /* SBC-4 (no version claimed) */ 10271 scsi_ulto2b(0x0600, inq_ptr->version4); 10272 } else { 10273 switch (lun->be_lun->lun_type) { 10274 case T_DIRECT: 10275 /* SBC-4 (no version claimed) */ 10276 scsi_ulto2b(0x0600, inq_ptr->version4); 10277 break; 10278 case T_PROCESSOR: 10279 break; 10280 case T_CDROM: 10281 /* MMC-6 (no version claimed) */ 10282 scsi_ulto2b(0x04E0, inq_ptr->version4); 10283 break; 10284 default: 10285 break; 10286 } 10287 } 10288 10289 ctl_set_success(ctsio); 10290 ctsio->io_hdr.flags |= CTL_FLAG_ALLOCATED; 10291 ctsio->be_move_done = ctl_config_move_done; 10292 ctl_datamove((union ctl_io *)ctsio); 10293 return (CTL_RETVAL_COMPLETE); 10294 } 10295 10296 int 10297 ctl_inquiry(struct ctl_scsiio *ctsio) 10298 { 10299 struct scsi_inquiry *cdb; 10300 int retval; 10301 10302 CTL_DEBUG_PRINT(("ctl_inquiry\n")); 10303 10304 cdb = (struct scsi_inquiry *)ctsio->cdb; 10305 if (cdb->byte2 & SI_EVPD) 10306 retval = ctl_inquiry_evpd(ctsio); 10307 else if (cdb->page_code == 0) 10308 retval = ctl_inquiry_std(ctsio); 10309 else { 10310 ctl_set_invalid_field(ctsio, 10311 /*sks_valid*/ 1, 10312 /*command*/ 1, 10313 /*field*/ 2, 10314 /*bit_valid*/ 0, 10315 /*bit*/ 0); 10316 ctl_done((union ctl_io *)ctsio); 10317 return (CTL_RETVAL_COMPLETE); 10318 } 10319 10320 return (retval); 10321 } 10322 10323 int 10324 ctl_get_config(struct ctl_scsiio *ctsio) 10325 { 10326 struct scsi_get_config_header *hdr; 10327 struct scsi_get_config_feature *feature; 10328 struct scsi_get_config *cdb; 10329 struct ctl_lun *lun; 10330 uint32_t alloc_len, data_len; 10331 int rt, starting; 10332 10333 lun = ctsio->io_hdr.ctl_private[CTL_PRIV_LUN].ptr; 10334 cdb = (struct scsi_get_config *)ctsio->cdb; 10335 rt = (cdb->rt & SGC_RT_MASK); 10336 starting = scsi_2btoul(cdb->starting_feature); 10337 alloc_len = scsi_2btoul(cdb->length); 10338 10339 data_len = sizeof(struct scsi_get_config_header) + 10340 sizeof(struct scsi_get_config_feature) + 8 + 10341 sizeof(struct scsi_get_config_feature) + 8 + 10342 sizeof(struct scsi_get_config_feature) + 4 + 10343 sizeof(struct scsi_get_config_feature) + 4 + 10344 sizeof(struct scsi_get_config_feature) + 8 + 10345 sizeof(struct scsi_get_config_feature) + 10346 sizeof(struct scsi_get_config_feature) + 4 + 10347 sizeof(struct scsi_get_config_feature) + 4 + 10348 sizeof(struct scsi_get_config_feature) + 4 + 10349 sizeof(struct scsi_get_config_feature) + 4 + 10350 sizeof(struct scsi_get_config_feature) + 4 + 10351 sizeof(struct scsi_get_config_feature) + 4; 10352 ctsio->kern_data_ptr = malloc(data_len, M_CTL, M_WAITOK | M_ZERO); 10353 ctsio->kern_sg_entries = 0; 10354 ctsio->kern_data_resid = 0; 10355 ctsio->kern_rel_offset = 0; 10356 10357 hdr = (struct scsi_get_config_header *)ctsio->kern_data_ptr; 10358 if (lun->flags & CTL_LUN_NO_MEDIA) 10359 scsi_ulto2b(0x0000, hdr->current_profile); 10360 else 10361 scsi_ulto2b(0x0010, hdr->current_profile); 10362 feature = (struct scsi_get_config_feature *)(hdr + 1); 10363 10364 if (starting > 0x003b) 10365 goto done; 10366 if (starting > 0x003a) 10367 goto f3b; 10368 if (starting > 0x002b) 10369 goto f3a; 10370 if (starting > 0x002a) 10371 goto f2b; 10372 if (starting > 0x001f) 10373 goto f2a; 10374 if (starting > 0x001e) 10375 goto f1f; 10376 if (starting > 0x001d) 10377 goto f1e; 10378 if (starting > 0x0010) 10379 goto f1d; 10380 if (starting > 0x0003) 10381 goto f10; 10382 if (starting > 0x0002) 10383 goto f3; 10384 if (starting > 0x0001) 10385 goto f2; 10386 if (starting > 0x0000) 10387 goto f1; 10388 10389 /* Profile List */ 10390 scsi_ulto2b(0x0000, feature->feature_code); 10391 feature->flags = SGC_F_PERSISTENT | SGC_F_CURRENT; 10392 feature->add_length = 8; 10393 scsi_ulto2b(0x0008, &feature->feature_data[0]); /* CD-ROM */ 10394 feature->feature_data[2] = 0x00; 10395 scsi_ulto2b(0x0010, &feature->feature_data[4]); /* DVD-ROM */ 10396 feature->feature_data[6] = 0x01; 10397 feature = (struct scsi_get_config_feature *) 10398 &feature->feature_data[feature->add_length]; 10399 10400 f1: /* Core */ 10401 scsi_ulto2b(0x0001, feature->feature_code); 10402 feature->flags = 0x08 | SGC_F_PERSISTENT | SGC_F_CURRENT; 10403 feature->add_length = 8; 10404 scsi_ulto4b(0x00000000, &feature->feature_data[0]); 10405 feature->feature_data[4] = 0x03; 10406 feature = (struct scsi_get_config_feature *) 10407 &feature->feature_data[feature->add_length]; 10408 10409 f2: /* Morphing */ 10410 scsi_ulto2b(0x0002, feature->feature_code); 10411 feature->flags = 0x04 | SGC_F_PERSISTENT | SGC_F_CURRENT; 10412 feature->add_length = 4; 10413 feature->feature_data[0] = 0x02; 10414 feature = (struct scsi_get_config_feature *) 10415 &feature->feature_data[feature->add_length]; 10416 10417 f3: /* Removable Medium */ 10418 scsi_ulto2b(0x0003, feature->feature_code); 10419 feature->flags = 0x04 | SGC_F_PERSISTENT | SGC_F_CURRENT; 10420 feature->add_length = 4; 10421 feature->feature_data[0] = 0x39; 10422 feature = (struct scsi_get_config_feature *) 10423 &feature->feature_data[feature->add_length]; 10424 10425 if (rt == SGC_RT_CURRENT && (lun->flags & CTL_LUN_NO_MEDIA)) 10426 goto done; 10427 10428 f10: /* Random Read */ 10429 scsi_ulto2b(0x0010, feature->feature_code); 10430 feature->flags = 0x00; 10431 if ((lun->flags & CTL_LUN_NO_MEDIA) == 0) 10432 feature->flags |= SGC_F_CURRENT; 10433 feature->add_length = 8; 10434 scsi_ulto4b(lun->be_lun->blocksize, &feature->feature_data[0]); 10435 scsi_ulto2b(1, &feature->feature_data[4]); 10436 feature->feature_data[6] = 0x00; 10437 feature = (struct scsi_get_config_feature *) 10438 &feature->feature_data[feature->add_length]; 10439 10440 f1d: /* Multi-Read */ 10441 scsi_ulto2b(0x001D, feature->feature_code); 10442 feature->flags = 0x00; 10443 if ((lun->flags & CTL_LUN_NO_MEDIA) == 0) 10444 feature->flags |= SGC_F_CURRENT; 10445 feature->add_length = 0; 10446 feature = (struct scsi_get_config_feature *) 10447 &feature->feature_data[feature->add_length]; 10448 10449 f1e: /* CD Read */ 10450 scsi_ulto2b(0x001E, feature->feature_code); 10451 feature->flags = 0x00; 10452 if ((lun->flags & CTL_LUN_NO_MEDIA) == 0) 10453 feature->flags |= SGC_F_CURRENT; 10454 feature->add_length = 4; 10455 feature->feature_data[0] = 0x00; 10456 feature = (struct scsi_get_config_feature *) 10457 &feature->feature_data[feature->add_length]; 10458 10459 f1f: /* DVD Read */ 10460 scsi_ulto2b(0x001F, feature->feature_code); 10461 feature->flags = 0x08; 10462 if ((lun->flags & CTL_LUN_NO_MEDIA) == 0) 10463 feature->flags |= SGC_F_CURRENT; 10464 feature->add_length = 4; 10465 feature->feature_data[0] = 0x01; 10466 feature->feature_data[2] = 0x03; 10467 feature = (struct scsi_get_config_feature *) 10468 &feature->feature_data[feature->add_length]; 10469 10470 f2a: /* DVD+RW */ 10471 scsi_ulto2b(0x002A, feature->feature_code); 10472 feature->flags = 0x04; 10473 if ((lun->flags & CTL_LUN_NO_MEDIA) == 0) 10474 feature->flags |= SGC_F_CURRENT; 10475 feature->add_length = 4; 10476 feature->feature_data[0] = 0x00; 10477 feature->feature_data[1] = 0x00; 10478 feature = (struct scsi_get_config_feature *) 10479 &feature->feature_data[feature->add_length]; 10480 10481 f2b: /* DVD+R */ 10482 scsi_ulto2b(0x002B, feature->feature_code); 10483 feature->flags = 0x00; 10484 if ((lun->flags & CTL_LUN_NO_MEDIA) == 0) 10485 feature->flags |= SGC_F_CURRENT; 10486 feature->add_length = 4; 10487 feature->feature_data[0] = 0x00; 10488 feature = (struct scsi_get_config_feature *) 10489 &feature->feature_data[feature->add_length]; 10490 10491 f3a: /* DVD+RW Dual Layer */ 10492 scsi_ulto2b(0x003A, feature->feature_code); 10493 feature->flags = 0x00; 10494 if ((lun->flags & CTL_LUN_NO_MEDIA) == 0) 10495 feature->flags |= SGC_F_CURRENT; 10496 feature->add_length = 4; 10497 feature->feature_data[0] = 0x00; 10498 feature->feature_data[1] = 0x00; 10499 feature = (struct scsi_get_config_feature *) 10500 &feature->feature_data[feature->add_length]; 10501 10502 f3b: /* DVD+R Dual Layer */ 10503 scsi_ulto2b(0x003B, feature->feature_code); 10504 feature->flags = 0x00; 10505 if ((lun->flags & CTL_LUN_NO_MEDIA) == 0) 10506 feature->flags |= SGC_F_CURRENT; 10507 feature->add_length = 4; 10508 feature->feature_data[0] = 0x00; 10509 feature = (struct scsi_get_config_feature *) 10510 &feature->feature_data[feature->add_length]; 10511 10512 done: 10513 data_len = (uint8_t *)feature - (uint8_t *)hdr; 10514 if (rt == SGC_RT_SPECIFIC && data_len > 4) { 10515 feature = (struct scsi_get_config_feature *)(hdr + 1); 10516 if (scsi_2btoul(feature->feature_code) == starting) 10517 feature = (struct scsi_get_config_feature *) 10518 &feature->feature_data[feature->add_length]; 10519 data_len = (uint8_t *)feature - (uint8_t *)hdr; 10520 } 10521 scsi_ulto4b(data_len - 4, hdr->data_length); 10522 if (data_len < alloc_len) { 10523 ctsio->residual = alloc_len - data_len; 10524 ctsio->kern_data_len = data_len; 10525 ctsio->kern_total_len = data_len; 10526 } else { 10527 ctsio->residual = 0; 10528 ctsio->kern_data_len = alloc_len; 10529 ctsio->kern_total_len = alloc_len; 10530 } 10531 10532 ctl_set_success(ctsio); 10533 ctsio->io_hdr.flags |= CTL_FLAG_ALLOCATED; 10534 ctsio->be_move_done = ctl_config_move_done; 10535 ctl_datamove((union ctl_io *)ctsio); 10536 return (CTL_RETVAL_COMPLETE); 10537 } 10538 10539 int 10540 ctl_get_event_status(struct ctl_scsiio *ctsio) 10541 { 10542 struct scsi_get_event_status_header *hdr; 10543 struct scsi_get_event_status *cdb; 10544 struct ctl_lun *lun; 10545 uint32_t alloc_len, data_len; 10546 int notif_class; 10547 10548 lun = ctsio->io_hdr.ctl_private[CTL_PRIV_LUN].ptr; 10549 cdb = (struct scsi_get_event_status *)ctsio->cdb; 10550 if ((cdb->byte2 & SGESN_POLLED) == 0) { 10551 ctl_set_invalid_field(ctsio, /*sks_valid*/ 1, /*command*/ 1, 10552 /*field*/ 1, /*bit_valid*/ 1, /*bit*/ 0); 10553 ctl_done((union ctl_io *)ctsio); 10554 return (CTL_RETVAL_COMPLETE); 10555 } 10556 notif_class = cdb->notif_class; 10557 alloc_len = scsi_2btoul(cdb->length); 10558 10559 data_len = sizeof(struct scsi_get_event_status_header); 10560 ctsio->kern_data_ptr = malloc(data_len, M_CTL, M_WAITOK | M_ZERO); 10561 ctsio->kern_sg_entries = 0; 10562 ctsio->kern_data_resid = 0; 10563 ctsio->kern_rel_offset = 0; 10564 10565 if (data_len < alloc_len) { 10566 ctsio->residual = alloc_len - data_len; 10567 ctsio->kern_data_len = data_len; 10568 ctsio->kern_total_len = data_len; 10569 } else { 10570 ctsio->residual = 0; 10571 ctsio->kern_data_len = alloc_len; 10572 ctsio->kern_total_len = alloc_len; 10573 } 10574 10575 hdr = (struct scsi_get_event_status_header *)ctsio->kern_data_ptr; 10576 scsi_ulto2b(0, hdr->descr_length); 10577 hdr->nea_class = SGESN_NEA; 10578 hdr->supported_class = 0; 10579 10580 ctl_set_success(ctsio); 10581 ctsio->io_hdr.flags |= CTL_FLAG_ALLOCATED; 10582 ctsio->be_move_done = ctl_config_move_done; 10583 ctl_datamove((union ctl_io *)ctsio); 10584 return (CTL_RETVAL_COMPLETE); 10585 } 10586 10587 int 10588 ctl_mechanism_status(struct ctl_scsiio *ctsio) 10589 { 10590 struct scsi_mechanism_status_header *hdr; 10591 struct scsi_mechanism_status *cdb; 10592 struct ctl_lun *lun; 10593 uint32_t alloc_len, data_len; 10594 10595 lun = ctsio->io_hdr.ctl_private[CTL_PRIV_LUN].ptr; 10596 cdb = (struct scsi_mechanism_status *)ctsio->cdb; 10597 alloc_len = scsi_2btoul(cdb->length); 10598 10599 data_len = sizeof(struct scsi_mechanism_status_header); 10600 ctsio->kern_data_ptr = malloc(data_len, M_CTL, M_WAITOK | M_ZERO); 10601 ctsio->kern_sg_entries = 0; 10602 ctsio->kern_data_resid = 0; 10603 ctsio->kern_rel_offset = 0; 10604 10605 if (data_len < alloc_len) { 10606 ctsio->residual = alloc_len - data_len; 10607 ctsio->kern_data_len = data_len; 10608 ctsio->kern_total_len = data_len; 10609 } else { 10610 ctsio->residual = 0; 10611 ctsio->kern_data_len = alloc_len; 10612 ctsio->kern_total_len = alloc_len; 10613 } 10614 10615 hdr = (struct scsi_mechanism_status_header *)ctsio->kern_data_ptr; 10616 hdr->state1 = 0x00; 10617 hdr->state2 = 0xe0; 10618 scsi_ulto3b(0, hdr->lba); 10619 hdr->slots_num = 0; 10620 scsi_ulto2b(0, hdr->slots_length); 10621 10622 ctl_set_success(ctsio); 10623 ctsio->io_hdr.flags |= CTL_FLAG_ALLOCATED; 10624 ctsio->be_move_done = ctl_config_move_done; 10625 ctl_datamove((union ctl_io *)ctsio); 10626 return (CTL_RETVAL_COMPLETE); 10627 } 10628 10629 static void 10630 ctl_ultomsf(uint32_t lba, uint8_t *buf) 10631 { 10632 10633 lba += 150; 10634 buf[0] = 0; 10635 buf[1] = bin2bcd((lba / 75) / 60); 10636 buf[2] = bin2bcd((lba / 75) % 60); 10637 buf[3] = bin2bcd(lba % 75); 10638 } 10639 10640 int 10641 ctl_read_toc(struct ctl_scsiio *ctsio) 10642 { 10643 struct scsi_read_toc_hdr *hdr; 10644 struct scsi_read_toc_type01_descr *descr; 10645 struct scsi_read_toc *cdb; 10646 struct ctl_lun *lun; 10647 uint32_t alloc_len, data_len; 10648 int format, msf; 10649 10650 lun = ctsio->io_hdr.ctl_private[CTL_PRIV_LUN].ptr; 10651 cdb = (struct scsi_read_toc *)ctsio->cdb; 10652 msf = (cdb->byte2 & CD_MSF) != 0; 10653 format = cdb->format; 10654 alloc_len = scsi_2btoul(cdb->data_len); 10655 10656 data_len = sizeof(struct scsi_read_toc_hdr); 10657 if (format == 0) 10658 data_len += 2 * sizeof(struct scsi_read_toc_type01_descr); 10659 else 10660 data_len += sizeof(struct scsi_read_toc_type01_descr); 10661 ctsio->kern_data_ptr = malloc(data_len, M_CTL, M_WAITOK | M_ZERO); 10662 ctsio->kern_sg_entries = 0; 10663 ctsio->kern_data_resid = 0; 10664 ctsio->kern_rel_offset = 0; 10665 10666 if (data_len < alloc_len) { 10667 ctsio->residual = alloc_len - data_len; 10668 ctsio->kern_data_len = data_len; 10669 ctsio->kern_total_len = data_len; 10670 } else { 10671 ctsio->residual = 0; 10672 ctsio->kern_data_len = alloc_len; 10673 ctsio->kern_total_len = alloc_len; 10674 } 10675 10676 hdr = (struct scsi_read_toc_hdr *)ctsio->kern_data_ptr; 10677 if (format == 0) { 10678 scsi_ulto2b(0x12, hdr->data_length); 10679 hdr->first = 1; 10680 hdr->last = 1; 10681 descr = (struct scsi_read_toc_type01_descr *)(hdr + 1); 10682 descr->addr_ctl = 0x14; 10683 descr->track_number = 1; 10684 if (msf) 10685 ctl_ultomsf(0, descr->track_start); 10686 else 10687 scsi_ulto4b(0, descr->track_start); 10688 descr++; 10689 descr->addr_ctl = 0x14; 10690 descr->track_number = 0xaa; 10691 if (msf) 10692 ctl_ultomsf(lun->be_lun->maxlba+1, descr->track_start); 10693 else 10694 scsi_ulto4b(lun->be_lun->maxlba+1, descr->track_start); 10695 } else { 10696 scsi_ulto2b(0x0a, hdr->data_length); 10697 hdr->first = 1; 10698 hdr->last = 1; 10699 descr = (struct scsi_read_toc_type01_descr *)(hdr + 1); 10700 descr->addr_ctl = 0x14; 10701 descr->track_number = 1; 10702 if (msf) 10703 ctl_ultomsf(0, descr->track_start); 10704 else 10705 scsi_ulto4b(0, descr->track_start); 10706 } 10707 10708 ctl_set_success(ctsio); 10709 ctsio->io_hdr.flags |= CTL_FLAG_ALLOCATED; 10710 ctsio->be_move_done = ctl_config_move_done; 10711 ctl_datamove((union ctl_io *)ctsio); 10712 return (CTL_RETVAL_COMPLETE); 10713 } 10714 10715 /* 10716 * For known CDB types, parse the LBA and length. 10717 */ 10718 static int 10719 ctl_get_lba_len(union ctl_io *io, uint64_t *lba, uint64_t *len) 10720 { 10721 if (io->io_hdr.io_type != CTL_IO_SCSI) 10722 return (1); 10723 10724 switch (io->scsiio.cdb[0]) { 10725 case COMPARE_AND_WRITE: { 10726 struct scsi_compare_and_write *cdb; 10727 10728 cdb = (struct scsi_compare_and_write *)io->scsiio.cdb; 10729 10730 *lba = scsi_8btou64(cdb->addr); 10731 *len = cdb->length; 10732 break; 10733 } 10734 case READ_6: 10735 case WRITE_6: { 10736 struct scsi_rw_6 *cdb; 10737 10738 cdb = (struct scsi_rw_6 *)io->scsiio.cdb; 10739 10740 *lba = scsi_3btoul(cdb->addr); 10741 /* only 5 bits are valid in the most significant address byte */ 10742 *lba &= 0x1fffff; 10743 *len = cdb->length; 10744 break; 10745 } 10746 case READ_10: 10747 case WRITE_10: { 10748 struct scsi_rw_10 *cdb; 10749 10750 cdb = (struct scsi_rw_10 *)io->scsiio.cdb; 10751 10752 *lba = scsi_4btoul(cdb->addr); 10753 *len = scsi_2btoul(cdb->length); 10754 break; 10755 } 10756 case WRITE_VERIFY_10: { 10757 struct scsi_write_verify_10 *cdb; 10758 10759 cdb = (struct scsi_write_verify_10 *)io->scsiio.cdb; 10760 10761 *lba = scsi_4btoul(cdb->addr); 10762 *len = scsi_2btoul(cdb->length); 10763 break; 10764 } 10765 case READ_12: 10766 case WRITE_12: { 10767 struct scsi_rw_12 *cdb; 10768 10769 cdb = (struct scsi_rw_12 *)io->scsiio.cdb; 10770 10771 *lba = scsi_4btoul(cdb->addr); 10772 *len = scsi_4btoul(cdb->length); 10773 break; 10774 } 10775 case WRITE_VERIFY_12: { 10776 struct scsi_write_verify_12 *cdb; 10777 10778 cdb = (struct scsi_write_verify_12 *)io->scsiio.cdb; 10779 10780 *lba = scsi_4btoul(cdb->addr); 10781 *len = scsi_4btoul(cdb->length); 10782 break; 10783 } 10784 case READ_16: 10785 case WRITE_16: { 10786 struct scsi_rw_16 *cdb; 10787 10788 cdb = (struct scsi_rw_16 *)io->scsiio.cdb; 10789 10790 *lba = scsi_8btou64(cdb->addr); 10791 *len = scsi_4btoul(cdb->length); 10792 break; 10793 } 10794 case WRITE_ATOMIC_16: { 10795 struct scsi_write_atomic_16 *cdb; 10796 10797 cdb = (struct scsi_write_atomic_16 *)io->scsiio.cdb; 10798 10799 *lba = scsi_8btou64(cdb->addr); 10800 *len = scsi_2btoul(cdb->length); 10801 break; 10802 } 10803 case WRITE_VERIFY_16: { 10804 struct scsi_write_verify_16 *cdb; 10805 10806 cdb = (struct scsi_write_verify_16 *)io->scsiio.cdb; 10807 10808 *lba = scsi_8btou64(cdb->addr); 10809 *len = scsi_4btoul(cdb->length); 10810 break; 10811 } 10812 case WRITE_SAME_10: { 10813 struct scsi_write_same_10 *cdb; 10814 10815 cdb = (struct scsi_write_same_10 *)io->scsiio.cdb; 10816 10817 *lba = scsi_4btoul(cdb->addr); 10818 *len = scsi_2btoul(cdb->length); 10819 break; 10820 } 10821 case WRITE_SAME_16: { 10822 struct scsi_write_same_16 *cdb; 10823 10824 cdb = (struct scsi_write_same_16 *)io->scsiio.cdb; 10825 10826 *lba = scsi_8btou64(cdb->addr); 10827 *len = scsi_4btoul(cdb->length); 10828 break; 10829 } 10830 case VERIFY_10: { 10831 struct scsi_verify_10 *cdb; 10832 10833 cdb = (struct scsi_verify_10 *)io->scsiio.cdb; 10834 10835 *lba = scsi_4btoul(cdb->addr); 10836 *len = scsi_2btoul(cdb->length); 10837 break; 10838 } 10839 case VERIFY_12: { 10840 struct scsi_verify_12 *cdb; 10841 10842 cdb = (struct scsi_verify_12 *)io->scsiio.cdb; 10843 10844 *lba = scsi_4btoul(cdb->addr); 10845 *len = scsi_4btoul(cdb->length); 10846 break; 10847 } 10848 case VERIFY_16: { 10849 struct scsi_verify_16 *cdb; 10850 10851 cdb = (struct scsi_verify_16 *)io->scsiio.cdb; 10852 10853 *lba = scsi_8btou64(cdb->addr); 10854 *len = scsi_4btoul(cdb->length); 10855 break; 10856 } 10857 case UNMAP: { 10858 *lba = 0; 10859 *len = UINT64_MAX; 10860 break; 10861 } 10862 case SERVICE_ACTION_IN: { /* GET LBA STATUS */ 10863 struct scsi_get_lba_status *cdb; 10864 10865 cdb = (struct scsi_get_lba_status *)io->scsiio.cdb; 10866 *lba = scsi_8btou64(cdb->addr); 10867 *len = UINT32_MAX; 10868 break; 10869 } 10870 default: 10871 return (1); 10872 break; /* NOTREACHED */ 10873 } 10874 10875 return (0); 10876 } 10877 10878 static ctl_action 10879 ctl_extent_check_lba(uint64_t lba1, uint64_t len1, uint64_t lba2, uint64_t len2, 10880 bool seq) 10881 { 10882 uint64_t endlba1, endlba2; 10883 10884 endlba1 = lba1 + len1 - (seq ? 0 : 1); 10885 endlba2 = lba2 + len2 - 1; 10886 10887 if ((endlba1 < lba2) || (endlba2 < lba1)) 10888 return (CTL_ACTION_PASS); 10889 else 10890 return (CTL_ACTION_BLOCK); 10891 } 10892 10893 static int 10894 ctl_extent_check_unmap(union ctl_io *io, uint64_t lba2, uint64_t len2) 10895 { 10896 struct ctl_ptr_len_flags *ptrlen; 10897 struct scsi_unmap_desc *buf, *end, *range; 10898 uint64_t lba; 10899 uint32_t len; 10900 10901 /* If not UNMAP -- go other way. */ 10902 if (io->io_hdr.io_type != CTL_IO_SCSI || 10903 io->scsiio.cdb[0] != UNMAP) 10904 return (CTL_ACTION_ERROR); 10905 10906 /* If UNMAP without data -- block and wait for data. */ 10907 ptrlen = (struct ctl_ptr_len_flags *) 10908 &io->io_hdr.ctl_private[CTL_PRIV_LBA_LEN]; 10909 if ((io->io_hdr.flags & CTL_FLAG_ALLOCATED) == 0 || 10910 ptrlen->ptr == NULL) 10911 return (CTL_ACTION_BLOCK); 10912 10913 /* UNMAP with data -- check for collision. */ 10914 buf = (struct scsi_unmap_desc *)ptrlen->ptr; 10915 end = buf + ptrlen->len / sizeof(*buf); 10916 for (range = buf; range < end; range++) { 10917 lba = scsi_8btou64(range->lba); 10918 len = scsi_4btoul(range->length); 10919 if ((lba < lba2 + len2) && (lba + len > lba2)) 10920 return (CTL_ACTION_BLOCK); 10921 } 10922 return (CTL_ACTION_PASS); 10923 } 10924 10925 static ctl_action 10926 ctl_extent_check(union ctl_io *io1, union ctl_io *io2, bool seq) 10927 { 10928 uint64_t lba1, lba2; 10929 uint64_t len1, len2; 10930 int retval; 10931 10932 if (ctl_get_lba_len(io2, &lba2, &len2) != 0) 10933 return (CTL_ACTION_ERROR); 10934 10935 retval = ctl_extent_check_unmap(io1, lba2, len2); 10936 if (retval != CTL_ACTION_ERROR) 10937 return (retval); 10938 10939 if (ctl_get_lba_len(io1, &lba1, &len1) != 0) 10940 return (CTL_ACTION_ERROR); 10941 10942 if (io1->io_hdr.flags & CTL_FLAG_SERSEQ_DONE) 10943 seq = FALSE; 10944 return (ctl_extent_check_lba(lba1, len1, lba2, len2, seq)); 10945 } 10946 10947 static ctl_action 10948 ctl_extent_check_seq(union ctl_io *io1, union ctl_io *io2) 10949 { 10950 uint64_t lba1, lba2; 10951 uint64_t len1, len2; 10952 10953 if (io1->io_hdr.flags & CTL_FLAG_SERSEQ_DONE) 10954 return (CTL_ACTION_PASS); 10955 if (ctl_get_lba_len(io1, &lba1, &len1) != 0) 10956 return (CTL_ACTION_ERROR); 10957 if (ctl_get_lba_len(io2, &lba2, &len2) != 0) 10958 return (CTL_ACTION_ERROR); 10959 10960 if (lba1 + len1 == lba2) 10961 return (CTL_ACTION_BLOCK); 10962 return (CTL_ACTION_PASS); 10963 } 10964 10965 static ctl_action 10966 ctl_check_for_blockage(struct ctl_lun *lun, union ctl_io *pending_io, 10967 union ctl_io *ooa_io) 10968 { 10969 const struct ctl_cmd_entry *pending_entry, *ooa_entry; 10970 const ctl_serialize_action *serialize_row; 10971 10972 /* 10973 * The initiator attempted multiple untagged commands at the same 10974 * time. Can't do that. 10975 */ 10976 if ((pending_io->scsiio.tag_type == CTL_TAG_UNTAGGED) 10977 && (ooa_io->scsiio.tag_type == CTL_TAG_UNTAGGED) 10978 && ((pending_io->io_hdr.nexus.targ_port == 10979 ooa_io->io_hdr.nexus.targ_port) 10980 && (pending_io->io_hdr.nexus.initid == 10981 ooa_io->io_hdr.nexus.initid)) 10982 && ((ooa_io->io_hdr.flags & (CTL_FLAG_ABORT | 10983 CTL_FLAG_STATUS_SENT)) == 0)) 10984 return (CTL_ACTION_OVERLAP); 10985 10986 /* 10987 * The initiator attempted to send multiple tagged commands with 10988 * the same ID. (It's fine if different initiators have the same 10989 * tag ID.) 10990 * 10991 * Even if all of those conditions are true, we don't kill the I/O 10992 * if the command ahead of us has been aborted. We won't end up 10993 * sending it to the FETD, and it's perfectly legal to resend a 10994 * command with the same tag number as long as the previous 10995 * instance of this tag number has been aborted somehow. 10996 */ 10997 if ((pending_io->scsiio.tag_type != CTL_TAG_UNTAGGED) 10998 && (ooa_io->scsiio.tag_type != CTL_TAG_UNTAGGED) 10999 && (pending_io->scsiio.tag_num == ooa_io->scsiio.tag_num) 11000 && ((pending_io->io_hdr.nexus.targ_port == 11001 ooa_io->io_hdr.nexus.targ_port) 11002 && (pending_io->io_hdr.nexus.initid == 11003 ooa_io->io_hdr.nexus.initid)) 11004 && ((ooa_io->io_hdr.flags & (CTL_FLAG_ABORT | 11005 CTL_FLAG_STATUS_SENT)) == 0)) 11006 return (CTL_ACTION_OVERLAP_TAG); 11007 11008 /* 11009 * If we get a head of queue tag, SAM-3 says that we should 11010 * immediately execute it. 11011 * 11012 * What happens if this command would normally block for some other 11013 * reason? e.g. a request sense with a head of queue tag 11014 * immediately after a write. Normally that would block, but this 11015 * will result in its getting executed immediately... 11016 * 11017 * We currently return "pass" instead of "skip", so we'll end up 11018 * going through the rest of the queue to check for overlapped tags. 11019 * 11020 * XXX KDM check for other types of blockage first?? 11021 */ 11022 if (pending_io->scsiio.tag_type == CTL_TAG_HEAD_OF_QUEUE) 11023 return (CTL_ACTION_PASS); 11024 11025 /* 11026 * Ordered tags have to block until all items ahead of them 11027 * have completed. If we get called with an ordered tag, we always 11028 * block, if something else is ahead of us in the queue. 11029 */ 11030 if (pending_io->scsiio.tag_type == CTL_TAG_ORDERED) 11031 return (CTL_ACTION_BLOCK); 11032 11033 /* 11034 * Simple tags get blocked until all head of queue and ordered tags 11035 * ahead of them have completed. I'm lumping untagged commands in 11036 * with simple tags here. XXX KDM is that the right thing to do? 11037 */ 11038 if (((pending_io->scsiio.tag_type == CTL_TAG_UNTAGGED) 11039 || (pending_io->scsiio.tag_type == CTL_TAG_SIMPLE)) 11040 && ((ooa_io->scsiio.tag_type == CTL_TAG_HEAD_OF_QUEUE) 11041 || (ooa_io->scsiio.tag_type == CTL_TAG_ORDERED))) 11042 return (CTL_ACTION_BLOCK); 11043 11044 pending_entry = ctl_get_cmd_entry(&pending_io->scsiio, NULL); 11045 ooa_entry = ctl_get_cmd_entry(&ooa_io->scsiio, NULL); 11046 11047 serialize_row = ctl_serialize_table[ooa_entry->seridx]; 11048 11049 switch (serialize_row[pending_entry->seridx]) { 11050 case CTL_SER_BLOCK: 11051 return (CTL_ACTION_BLOCK); 11052 case CTL_SER_EXTENT: 11053 return (ctl_extent_check(ooa_io, pending_io, 11054 (lun->be_lun && lun->be_lun->serseq == CTL_LUN_SERSEQ_ON))); 11055 case CTL_SER_EXTENTOPT: 11056 if ((lun->mode_pages.control_page[CTL_PAGE_CURRENT].queue_flags 11057 & SCP_QUEUE_ALG_MASK) != SCP_QUEUE_ALG_UNRESTRICTED) 11058 return (ctl_extent_check(ooa_io, pending_io, 11059 (lun->be_lun && 11060 lun->be_lun->serseq == CTL_LUN_SERSEQ_ON))); 11061 return (CTL_ACTION_PASS); 11062 case CTL_SER_EXTENTSEQ: 11063 if (lun->be_lun && lun->be_lun->serseq != CTL_LUN_SERSEQ_OFF) 11064 return (ctl_extent_check_seq(ooa_io, pending_io)); 11065 return (CTL_ACTION_PASS); 11066 case CTL_SER_PASS: 11067 return (CTL_ACTION_PASS); 11068 case CTL_SER_BLOCKOPT: 11069 if ((lun->mode_pages.control_page[CTL_PAGE_CURRENT].queue_flags 11070 & SCP_QUEUE_ALG_MASK) != SCP_QUEUE_ALG_UNRESTRICTED) 11071 return (CTL_ACTION_BLOCK); 11072 return (CTL_ACTION_PASS); 11073 case CTL_SER_SKIP: 11074 return (CTL_ACTION_SKIP); 11075 default: 11076 panic("%s: Invalid serialization value %d for %d => %d", 11077 __func__, serialize_row[pending_entry->seridx], 11078 pending_entry->seridx, ooa_entry->seridx); 11079 } 11080 11081 return (CTL_ACTION_ERROR); 11082 } 11083 11084 /* 11085 * Check for blockage or overlaps against the OOA (Order Of Arrival) queue. 11086 * Assumptions: 11087 * - pending_io is generally either incoming, or on the blocked queue 11088 * - starting I/O is the I/O we want to start the check with. 11089 */ 11090 static ctl_action 11091 ctl_check_ooa(struct ctl_lun *lun, union ctl_io *pending_io, 11092 union ctl_io *starting_io) 11093 { 11094 union ctl_io *ooa_io; 11095 ctl_action action; 11096 11097 mtx_assert(&lun->lun_lock, MA_OWNED); 11098 11099 /* 11100 * Run back along the OOA queue, starting with the current 11101 * blocked I/O and going through every I/O before it on the 11102 * queue. If starting_io is NULL, we'll just end up returning 11103 * CTL_ACTION_PASS. 11104 */ 11105 for (ooa_io = starting_io; ooa_io != NULL; 11106 ooa_io = (union ctl_io *)TAILQ_PREV(&ooa_io->io_hdr, ctl_ooaq, 11107 ooa_links)){ 11108 11109 /* 11110 * This routine just checks to see whether 11111 * cur_blocked is blocked by ooa_io, which is ahead 11112 * of it in the queue. It doesn't queue/dequeue 11113 * cur_blocked. 11114 */ 11115 action = ctl_check_for_blockage(lun, pending_io, ooa_io); 11116 switch (action) { 11117 case CTL_ACTION_BLOCK: 11118 case CTL_ACTION_OVERLAP: 11119 case CTL_ACTION_OVERLAP_TAG: 11120 case CTL_ACTION_SKIP: 11121 case CTL_ACTION_ERROR: 11122 return (action); 11123 break; /* NOTREACHED */ 11124 case CTL_ACTION_PASS: 11125 break; 11126 default: 11127 panic("%s: Invalid action %d\n", __func__, action); 11128 } 11129 } 11130 11131 return (CTL_ACTION_PASS); 11132 } 11133 11134 /* 11135 * Assumptions: 11136 * - An I/O has just completed, and has been removed from the per-LUN OOA 11137 * queue, so some items on the blocked queue may now be unblocked. 11138 */ 11139 static int 11140 ctl_check_blocked(struct ctl_lun *lun) 11141 { 11142 struct ctl_softc *softc = lun->ctl_softc; 11143 union ctl_io *cur_blocked, *next_blocked; 11144 11145 mtx_assert(&lun->lun_lock, MA_OWNED); 11146 11147 /* 11148 * Run forward from the head of the blocked queue, checking each 11149 * entry against the I/Os prior to it on the OOA queue to see if 11150 * there is still any blockage. 11151 * 11152 * We cannot use the TAILQ_FOREACH() macro, because it can't deal 11153 * with our removing a variable on it while it is traversing the 11154 * list. 11155 */ 11156 for (cur_blocked = (union ctl_io *)TAILQ_FIRST(&lun->blocked_queue); 11157 cur_blocked != NULL; cur_blocked = next_blocked) { 11158 union ctl_io *prev_ooa; 11159 ctl_action action; 11160 11161 next_blocked = (union ctl_io *)TAILQ_NEXT(&cur_blocked->io_hdr, 11162 blocked_links); 11163 11164 prev_ooa = (union ctl_io *)TAILQ_PREV(&cur_blocked->io_hdr, 11165 ctl_ooaq, ooa_links); 11166 11167 /* 11168 * If cur_blocked happens to be the first item in the OOA 11169 * queue now, prev_ooa will be NULL, and the action 11170 * returned will just be CTL_ACTION_PASS. 11171 */ 11172 action = ctl_check_ooa(lun, cur_blocked, prev_ooa); 11173 11174 switch (action) { 11175 case CTL_ACTION_BLOCK: 11176 /* Nothing to do here, still blocked */ 11177 break; 11178 case CTL_ACTION_OVERLAP: 11179 case CTL_ACTION_OVERLAP_TAG: 11180 /* 11181 * This shouldn't happen! In theory we've already 11182 * checked this command for overlap... 11183 */ 11184 break; 11185 case CTL_ACTION_PASS: 11186 case CTL_ACTION_SKIP: { 11187 const struct ctl_cmd_entry *entry; 11188 11189 /* 11190 * The skip case shouldn't happen, this transaction 11191 * should have never made it onto the blocked queue. 11192 */ 11193 /* 11194 * This I/O is no longer blocked, we can remove it 11195 * from the blocked queue. Since this is a TAILQ 11196 * (doubly linked list), we can do O(1) removals 11197 * from any place on the list. 11198 */ 11199 TAILQ_REMOVE(&lun->blocked_queue, &cur_blocked->io_hdr, 11200 blocked_links); 11201 cur_blocked->io_hdr.flags &= ~CTL_FLAG_BLOCKED; 11202 11203 if ((softc->ha_mode != CTL_HA_MODE_XFER) && 11204 (cur_blocked->io_hdr.flags & CTL_FLAG_FROM_OTHER_SC)){ 11205 /* 11206 * Need to send IO back to original side to 11207 * run 11208 */ 11209 union ctl_ha_msg msg_info; 11210 11211 cur_blocked->io_hdr.flags &= ~CTL_FLAG_IO_ACTIVE; 11212 msg_info.hdr.original_sc = 11213 cur_blocked->io_hdr.original_sc; 11214 msg_info.hdr.serializing_sc = cur_blocked; 11215 msg_info.hdr.msg_type = CTL_MSG_R2R; 11216 ctl_ha_msg_send(CTL_HA_CHAN_CTL, &msg_info, 11217 sizeof(msg_info.hdr), M_NOWAIT); 11218 break; 11219 } 11220 entry = ctl_get_cmd_entry(&cur_blocked->scsiio, NULL); 11221 11222 /* 11223 * Check this I/O for LUN state changes that may 11224 * have happened while this command was blocked. 11225 * The LUN state may have been changed by a command 11226 * ahead of us in the queue, so we need to re-check 11227 * for any states that can be caused by SCSI 11228 * commands. 11229 */ 11230 if (ctl_scsiio_lun_check(lun, entry, 11231 &cur_blocked->scsiio) == 0) { 11232 cur_blocked->io_hdr.flags |= 11233 CTL_FLAG_IS_WAS_ON_RTR; 11234 ctl_enqueue_rtr(cur_blocked); 11235 } else 11236 ctl_done(cur_blocked); 11237 break; 11238 } 11239 default: 11240 /* 11241 * This probably shouldn't happen -- we shouldn't 11242 * get CTL_ACTION_ERROR, or anything else. 11243 */ 11244 break; 11245 } 11246 } 11247 11248 return (CTL_RETVAL_COMPLETE); 11249 } 11250 11251 /* 11252 * This routine (with one exception) checks LUN flags that can be set by 11253 * commands ahead of us in the OOA queue. These flags have to be checked 11254 * when a command initially comes in, and when we pull a command off the 11255 * blocked queue and are preparing to execute it. The reason we have to 11256 * check these flags for commands on the blocked queue is that the LUN 11257 * state may have been changed by a command ahead of us while we're on the 11258 * blocked queue. 11259 * 11260 * Ordering is somewhat important with these checks, so please pay 11261 * careful attention to the placement of any new checks. 11262 */ 11263 static int 11264 ctl_scsiio_lun_check(struct ctl_lun *lun, 11265 const struct ctl_cmd_entry *entry, struct ctl_scsiio *ctsio) 11266 { 11267 struct ctl_softc *softc = lun->ctl_softc; 11268 int retval; 11269 uint32_t residx; 11270 11271 retval = 0; 11272 11273 mtx_assert(&lun->lun_lock, MA_OWNED); 11274 11275 /* 11276 * If this shelf is a secondary shelf controller, we may have to 11277 * reject some commands disallowed by HA mode and link state. 11278 */ 11279 if ((lun->flags & CTL_LUN_PRIMARY_SC) == 0) { 11280 if (softc->ha_link == CTL_HA_LINK_OFFLINE && 11281 (entry->flags & CTL_CMD_FLAG_OK_ON_UNAVAIL) == 0) { 11282 ctl_set_lun_unavail(ctsio); 11283 retval = 1; 11284 goto bailout; 11285 } 11286 if ((lun->flags & CTL_LUN_PEER_SC_PRIMARY) == 0 && 11287 (entry->flags & CTL_CMD_FLAG_OK_ON_UNAVAIL) == 0) { 11288 ctl_set_lun_transit(ctsio); 11289 retval = 1; 11290 goto bailout; 11291 } 11292 if (softc->ha_mode == CTL_HA_MODE_ACT_STBY && 11293 (entry->flags & CTL_CMD_FLAG_OK_ON_STANDBY) == 0) { 11294 ctl_set_lun_standby(ctsio); 11295 retval = 1; 11296 goto bailout; 11297 } 11298 11299 /* The rest of checks are only done on executing side */ 11300 if (softc->ha_mode == CTL_HA_MODE_XFER) 11301 goto bailout; 11302 } 11303 11304 if (entry->pattern & CTL_LUN_PAT_WRITE) { 11305 if (lun->be_lun && 11306 lun->be_lun->flags & CTL_LUN_FLAG_READONLY) { 11307 ctl_set_hw_write_protected(ctsio); 11308 retval = 1; 11309 goto bailout; 11310 } 11311 if ((lun->mode_pages.control_page[CTL_PAGE_CURRENT] 11312 .eca_and_aen & SCP_SWP) != 0) { 11313 ctl_set_sense(ctsio, /*current_error*/ 1, 11314 /*sense_key*/ SSD_KEY_DATA_PROTECT, 11315 /*asc*/ 0x27, /*ascq*/ 0x02, SSD_ELEM_NONE); 11316 retval = 1; 11317 goto bailout; 11318 } 11319 } 11320 11321 /* 11322 * Check for a reservation conflict. If this command isn't allowed 11323 * even on reserved LUNs, and if this initiator isn't the one who 11324 * reserved us, reject the command with a reservation conflict. 11325 */ 11326 residx = ctl_get_initindex(&ctsio->io_hdr.nexus); 11327 if ((lun->flags & CTL_LUN_RESERVED) 11328 && ((entry->flags & CTL_CMD_FLAG_ALLOW_ON_RESV) == 0)) { 11329 if (lun->res_idx != residx) { 11330 ctl_set_reservation_conflict(ctsio); 11331 retval = 1; 11332 goto bailout; 11333 } 11334 } 11335 11336 if ((lun->flags & CTL_LUN_PR_RESERVED) == 0 || 11337 (entry->flags & CTL_CMD_FLAG_ALLOW_ON_PR_RESV)) { 11338 /* No reservation or command is allowed. */; 11339 } else if ((entry->flags & CTL_CMD_FLAG_ALLOW_ON_PR_WRESV) && 11340 (lun->pr_res_type == SPR_TYPE_WR_EX || 11341 lun->pr_res_type == SPR_TYPE_WR_EX_RO || 11342 lun->pr_res_type == SPR_TYPE_WR_EX_AR)) { 11343 /* The command is allowed for Write Exclusive resv. */; 11344 } else { 11345 /* 11346 * if we aren't registered or it's a res holder type 11347 * reservation and this isn't the res holder then set a 11348 * conflict. 11349 */ 11350 if (ctl_get_prkey(lun, residx) == 0 || 11351 (residx != lun->pr_res_idx && lun->pr_res_type < 4)) { 11352 ctl_set_reservation_conflict(ctsio); 11353 retval = 1; 11354 goto bailout; 11355 } 11356 } 11357 11358 if ((entry->flags & CTL_CMD_FLAG_OK_ON_NO_MEDIA) == 0) { 11359 if (lun->flags & CTL_LUN_EJECTED) 11360 ctl_set_lun_ejected(ctsio); 11361 else if (lun->flags & CTL_LUN_NO_MEDIA) { 11362 if (lun->flags & CTL_LUN_REMOVABLE) 11363 ctl_set_lun_no_media(ctsio); 11364 else 11365 ctl_set_lun_int_reqd(ctsio); 11366 } else if (lun->flags & CTL_LUN_STOPPED) 11367 ctl_set_lun_stopped(ctsio); 11368 else 11369 goto bailout; 11370 retval = 1; 11371 goto bailout; 11372 } 11373 11374 bailout: 11375 return (retval); 11376 } 11377 11378 static void 11379 ctl_failover_io(union ctl_io *io, int have_lock) 11380 { 11381 ctl_set_busy(&io->scsiio); 11382 ctl_done(io); 11383 } 11384 11385 static void 11386 ctl_failover_lun(union ctl_io *rio) 11387 { 11388 struct ctl_softc *softc = control_softc; 11389 struct ctl_lun *lun; 11390 struct ctl_io_hdr *io, *next_io; 11391 uint32_t targ_lun; 11392 11393 targ_lun = rio->io_hdr.nexus.targ_mapped_lun; 11394 CTL_DEBUG_PRINT(("FAILOVER for lun %ju\n", targ_lun)); 11395 11396 /* Find and lock the LUN. */ 11397 mtx_lock(&softc->ctl_lock); 11398 if ((targ_lun < CTL_MAX_LUNS) && 11399 ((lun = softc->ctl_luns[targ_lun]) != NULL)) { 11400 mtx_lock(&lun->lun_lock); 11401 mtx_unlock(&softc->ctl_lock); 11402 if (lun->flags & CTL_LUN_DISABLED) { 11403 mtx_unlock(&lun->lun_lock); 11404 return; 11405 } 11406 } else { 11407 mtx_unlock(&softc->ctl_lock); 11408 return; 11409 } 11410 11411 if (softc->ha_mode == CTL_HA_MODE_XFER) { 11412 TAILQ_FOREACH_SAFE(io, &lun->ooa_queue, ooa_links, next_io) { 11413 /* We are master */ 11414 if (io->flags & CTL_FLAG_FROM_OTHER_SC) { 11415 if (io->flags & CTL_FLAG_IO_ACTIVE) { 11416 io->flags |= CTL_FLAG_ABORT; 11417 io->flags |= CTL_FLAG_FAILOVER; 11418 } else { /* This can be only due to DATAMOVE */ 11419 io->msg_type = CTL_MSG_DATAMOVE_DONE; 11420 io->flags &= ~CTL_FLAG_DMA_INPROG; 11421 io->flags |= CTL_FLAG_IO_ACTIVE; 11422 io->port_status = 31340; 11423 ctl_enqueue_isc((union ctl_io *)io); 11424 } 11425 } 11426 /* We are slave */ 11427 if (io->flags & CTL_FLAG_SENT_2OTHER_SC) { 11428 io->flags &= ~CTL_FLAG_SENT_2OTHER_SC; 11429 if (io->flags & CTL_FLAG_IO_ACTIVE) { 11430 io->flags |= CTL_FLAG_FAILOVER; 11431 } else { 11432 ctl_set_busy(&((union ctl_io *)io)-> 11433 scsiio); 11434 ctl_done((union ctl_io *)io); 11435 } 11436 } 11437 } 11438 } else { /* SERIALIZE modes */ 11439 TAILQ_FOREACH_SAFE(io, &lun->blocked_queue, blocked_links, 11440 next_io) { 11441 /* We are master */ 11442 if (io->flags & CTL_FLAG_FROM_OTHER_SC) { 11443 TAILQ_REMOVE(&lun->blocked_queue, io, 11444 blocked_links); 11445 io->flags &= ~CTL_FLAG_BLOCKED; 11446 TAILQ_REMOVE(&lun->ooa_queue, io, ooa_links); 11447 ctl_free_io((union ctl_io *)io); 11448 } 11449 } 11450 TAILQ_FOREACH_SAFE(io, &lun->ooa_queue, ooa_links, next_io) { 11451 /* We are master */ 11452 if (io->flags & CTL_FLAG_FROM_OTHER_SC) { 11453 TAILQ_REMOVE(&lun->ooa_queue, io, ooa_links); 11454 ctl_free_io((union ctl_io *)io); 11455 } 11456 /* We are slave */ 11457 if (io->flags & CTL_FLAG_SENT_2OTHER_SC) { 11458 io->flags &= ~CTL_FLAG_SENT_2OTHER_SC; 11459 if (!(io->flags & CTL_FLAG_IO_ACTIVE)) { 11460 ctl_set_busy(&((union ctl_io *)io)-> 11461 scsiio); 11462 ctl_done((union ctl_io *)io); 11463 } 11464 } 11465 } 11466 ctl_check_blocked(lun); 11467 } 11468 mtx_unlock(&lun->lun_lock); 11469 } 11470 11471 static int 11472 ctl_scsiio_precheck(struct ctl_softc *softc, struct ctl_scsiio *ctsio) 11473 { 11474 struct ctl_lun *lun; 11475 const struct ctl_cmd_entry *entry; 11476 uint32_t initidx, targ_lun; 11477 int retval; 11478 11479 retval = 0; 11480 11481 lun = NULL; 11482 11483 targ_lun = ctsio->io_hdr.nexus.targ_mapped_lun; 11484 if ((targ_lun < CTL_MAX_LUNS) 11485 && ((lun = softc->ctl_luns[targ_lun]) != NULL)) { 11486 /* 11487 * If the LUN is invalid, pretend that it doesn't exist. 11488 * It will go away as soon as all pending I/O has been 11489 * completed. 11490 */ 11491 mtx_lock(&lun->lun_lock); 11492 if (lun->flags & CTL_LUN_DISABLED) { 11493 mtx_unlock(&lun->lun_lock); 11494 lun = NULL; 11495 ctsio->io_hdr.ctl_private[CTL_PRIV_LUN].ptr = NULL; 11496 ctsio->io_hdr.ctl_private[CTL_PRIV_BACKEND_LUN].ptr = NULL; 11497 } else { 11498 ctsio->io_hdr.ctl_private[CTL_PRIV_LUN].ptr = lun; 11499 ctsio->io_hdr.ctl_private[CTL_PRIV_BACKEND_LUN].ptr = 11500 lun->be_lun; 11501 11502 /* 11503 * Every I/O goes into the OOA queue for a 11504 * particular LUN, and stays there until completion. 11505 */ 11506 #ifdef CTL_TIME_IO 11507 if (TAILQ_EMPTY(&lun->ooa_queue)) { 11508 lun->idle_time += getsbinuptime() - 11509 lun->last_busy; 11510 } 11511 #endif 11512 TAILQ_INSERT_TAIL(&lun->ooa_queue, &ctsio->io_hdr, 11513 ooa_links); 11514 } 11515 } else { 11516 ctsio->io_hdr.ctl_private[CTL_PRIV_LUN].ptr = NULL; 11517 ctsio->io_hdr.ctl_private[CTL_PRIV_BACKEND_LUN].ptr = NULL; 11518 } 11519 11520 /* Get command entry and return error if it is unsuppotyed. */ 11521 entry = ctl_validate_command(ctsio); 11522 if (entry == NULL) { 11523 if (lun) 11524 mtx_unlock(&lun->lun_lock); 11525 return (retval); 11526 } 11527 11528 ctsio->io_hdr.flags &= ~CTL_FLAG_DATA_MASK; 11529 ctsio->io_hdr.flags |= entry->flags & CTL_FLAG_DATA_MASK; 11530 11531 /* 11532 * Check to see whether we can send this command to LUNs that don't 11533 * exist. This should pretty much only be the case for inquiry 11534 * and request sense. Further checks, below, really require having 11535 * a LUN, so we can't really check the command anymore. Just put 11536 * it on the rtr queue. 11537 */ 11538 if (lun == NULL) { 11539 if (entry->flags & CTL_CMD_FLAG_OK_ON_NO_LUN) { 11540 ctsio->io_hdr.flags |= CTL_FLAG_IS_WAS_ON_RTR; 11541 ctl_enqueue_rtr((union ctl_io *)ctsio); 11542 return (retval); 11543 } 11544 11545 ctl_set_unsupported_lun(ctsio); 11546 ctl_done((union ctl_io *)ctsio); 11547 CTL_DEBUG_PRINT(("ctl_scsiio_precheck: bailing out due to invalid LUN\n")); 11548 return (retval); 11549 } else { 11550 /* 11551 * Make sure we support this particular command on this LUN. 11552 * e.g., we don't support writes to the control LUN. 11553 */ 11554 if (!ctl_cmd_applicable(lun->be_lun->lun_type, entry)) { 11555 mtx_unlock(&lun->lun_lock); 11556 ctl_set_invalid_opcode(ctsio); 11557 ctl_done((union ctl_io *)ctsio); 11558 return (retval); 11559 } 11560 } 11561 11562 initidx = ctl_get_initindex(&ctsio->io_hdr.nexus); 11563 11564 #ifdef CTL_WITH_CA 11565 /* 11566 * If we've got a request sense, it'll clear the contingent 11567 * allegiance condition. Otherwise, if we have a CA condition for 11568 * this initiator, clear it, because it sent down a command other 11569 * than request sense. 11570 */ 11571 if ((ctsio->cdb[0] != REQUEST_SENSE) 11572 && (ctl_is_set(lun->have_ca, initidx))) 11573 ctl_clear_mask(lun->have_ca, initidx); 11574 #endif 11575 11576 /* 11577 * If the command has this flag set, it handles its own unit 11578 * attention reporting, we shouldn't do anything. Otherwise we 11579 * check for any pending unit attentions, and send them back to the 11580 * initiator. We only do this when a command initially comes in, 11581 * not when we pull it off the blocked queue. 11582 * 11583 * According to SAM-3, section 5.3.2, the order that things get 11584 * presented back to the host is basically unit attentions caused 11585 * by some sort of reset event, busy status, reservation conflicts 11586 * or task set full, and finally any other status. 11587 * 11588 * One issue here is that some of the unit attentions we report 11589 * don't fall into the "reset" category (e.g. "reported luns data 11590 * has changed"). So reporting it here, before the reservation 11591 * check, may be technically wrong. I guess the only thing to do 11592 * would be to check for and report the reset events here, and then 11593 * check for the other unit attention types after we check for a 11594 * reservation conflict. 11595 * 11596 * XXX KDM need to fix this 11597 */ 11598 if ((entry->flags & CTL_CMD_FLAG_NO_SENSE) == 0) { 11599 ctl_ua_type ua_type; 11600 11601 ua_type = ctl_build_ua(lun, initidx, &ctsio->sense_data, 11602 SSD_TYPE_NONE); 11603 if (ua_type != CTL_UA_NONE) { 11604 mtx_unlock(&lun->lun_lock); 11605 ctsio->scsi_status = SCSI_STATUS_CHECK_COND; 11606 ctsio->io_hdr.status = CTL_SCSI_ERROR | CTL_AUTOSENSE; 11607 ctsio->sense_len = SSD_FULL_SIZE; 11608 ctl_done((union ctl_io *)ctsio); 11609 return (retval); 11610 } 11611 } 11612 11613 11614 if (ctl_scsiio_lun_check(lun, entry, ctsio) != 0) { 11615 mtx_unlock(&lun->lun_lock); 11616 ctl_done((union ctl_io *)ctsio); 11617 return (retval); 11618 } 11619 11620 /* 11621 * XXX CHD this is where we want to send IO to other side if 11622 * this LUN is secondary on this SC. We will need to make a copy 11623 * of the IO and flag the IO on this side as SENT_2OTHER and the flag 11624 * the copy we send as FROM_OTHER. 11625 * We also need to stuff the address of the original IO so we can 11626 * find it easily. Something similar will need be done on the other 11627 * side so when we are done we can find the copy. 11628 */ 11629 if ((lun->flags & CTL_LUN_PRIMARY_SC) == 0 && 11630 (lun->flags & CTL_LUN_PEER_SC_PRIMARY) != 0 && 11631 (entry->flags & CTL_CMD_FLAG_RUN_HERE) == 0) { 11632 union ctl_ha_msg msg_info; 11633 int isc_retval; 11634 11635 ctsio->io_hdr.flags |= CTL_FLAG_SENT_2OTHER_SC; 11636 ctsio->io_hdr.flags &= ~CTL_FLAG_IO_ACTIVE; 11637 mtx_unlock(&lun->lun_lock); 11638 11639 msg_info.hdr.msg_type = CTL_MSG_SERIALIZE; 11640 msg_info.hdr.original_sc = (union ctl_io *)ctsio; 11641 msg_info.hdr.serializing_sc = NULL; 11642 msg_info.hdr.nexus = ctsio->io_hdr.nexus; 11643 msg_info.scsi.tag_num = ctsio->tag_num; 11644 msg_info.scsi.tag_type = ctsio->tag_type; 11645 msg_info.scsi.cdb_len = ctsio->cdb_len; 11646 memcpy(msg_info.scsi.cdb, ctsio->cdb, CTL_MAX_CDBLEN); 11647 11648 if ((isc_retval = ctl_ha_msg_send(CTL_HA_CHAN_CTL, &msg_info, 11649 sizeof(msg_info.scsi) - sizeof(msg_info.scsi.sense_data), 11650 M_WAITOK)) > CTL_HA_STATUS_SUCCESS) { 11651 ctl_set_busy(ctsio); 11652 ctl_done((union ctl_io *)ctsio); 11653 return (retval); 11654 } 11655 return (retval); 11656 } 11657 11658 switch (ctl_check_ooa(lun, (union ctl_io *)ctsio, 11659 (union ctl_io *)TAILQ_PREV(&ctsio->io_hdr, 11660 ctl_ooaq, ooa_links))) { 11661 case CTL_ACTION_BLOCK: 11662 ctsio->io_hdr.flags |= CTL_FLAG_BLOCKED; 11663 TAILQ_INSERT_TAIL(&lun->blocked_queue, &ctsio->io_hdr, 11664 blocked_links); 11665 mtx_unlock(&lun->lun_lock); 11666 return (retval); 11667 case CTL_ACTION_PASS: 11668 case CTL_ACTION_SKIP: 11669 ctsio->io_hdr.flags |= CTL_FLAG_IS_WAS_ON_RTR; 11670 mtx_unlock(&lun->lun_lock); 11671 ctl_enqueue_rtr((union ctl_io *)ctsio); 11672 break; 11673 case CTL_ACTION_OVERLAP: 11674 mtx_unlock(&lun->lun_lock); 11675 ctl_set_overlapped_cmd(ctsio); 11676 ctl_done((union ctl_io *)ctsio); 11677 break; 11678 case CTL_ACTION_OVERLAP_TAG: 11679 mtx_unlock(&lun->lun_lock); 11680 ctl_set_overlapped_tag(ctsio, ctsio->tag_num & 0xff); 11681 ctl_done((union ctl_io *)ctsio); 11682 break; 11683 case CTL_ACTION_ERROR: 11684 default: 11685 mtx_unlock(&lun->lun_lock); 11686 ctl_set_internal_failure(ctsio, 11687 /*sks_valid*/ 0, 11688 /*retry_count*/ 0); 11689 ctl_done((union ctl_io *)ctsio); 11690 break; 11691 } 11692 return (retval); 11693 } 11694 11695 const struct ctl_cmd_entry * 11696 ctl_get_cmd_entry(struct ctl_scsiio *ctsio, int *sa) 11697 { 11698 const struct ctl_cmd_entry *entry; 11699 int service_action; 11700 11701 entry = &ctl_cmd_table[ctsio->cdb[0]]; 11702 if (sa) 11703 *sa = ((entry->flags & CTL_CMD_FLAG_SA5) != 0); 11704 if (entry->flags & CTL_CMD_FLAG_SA5) { 11705 service_action = ctsio->cdb[1] & SERVICE_ACTION_MASK; 11706 entry = &((const struct ctl_cmd_entry *) 11707 entry->execute)[service_action]; 11708 } 11709 return (entry); 11710 } 11711 11712 const struct ctl_cmd_entry * 11713 ctl_validate_command(struct ctl_scsiio *ctsio) 11714 { 11715 const struct ctl_cmd_entry *entry; 11716 int i, sa; 11717 uint8_t diff; 11718 11719 entry = ctl_get_cmd_entry(ctsio, &sa); 11720 if (entry->execute == NULL) { 11721 if (sa) 11722 ctl_set_invalid_field(ctsio, 11723 /*sks_valid*/ 1, 11724 /*command*/ 1, 11725 /*field*/ 1, 11726 /*bit_valid*/ 1, 11727 /*bit*/ 4); 11728 else 11729 ctl_set_invalid_opcode(ctsio); 11730 ctl_done((union ctl_io *)ctsio); 11731 return (NULL); 11732 } 11733 KASSERT(entry->length > 0, 11734 ("Not defined length for command 0x%02x/0x%02x", 11735 ctsio->cdb[0], ctsio->cdb[1])); 11736 for (i = 1; i < entry->length; i++) { 11737 diff = ctsio->cdb[i] & ~entry->usage[i - 1]; 11738 if (diff == 0) 11739 continue; 11740 ctl_set_invalid_field(ctsio, 11741 /*sks_valid*/ 1, 11742 /*command*/ 1, 11743 /*field*/ i, 11744 /*bit_valid*/ 1, 11745 /*bit*/ fls(diff) - 1); 11746 ctl_done((union ctl_io *)ctsio); 11747 return (NULL); 11748 } 11749 return (entry); 11750 } 11751 11752 static int 11753 ctl_cmd_applicable(uint8_t lun_type, const struct ctl_cmd_entry *entry) 11754 { 11755 11756 switch (lun_type) { 11757 case T_DIRECT: 11758 if ((entry->flags & CTL_CMD_FLAG_OK_ON_DIRECT) == 0) 11759 return (0); 11760 break; 11761 case T_PROCESSOR: 11762 if ((entry->flags & CTL_CMD_FLAG_OK_ON_PROC) == 0) 11763 return (0); 11764 break; 11765 case T_CDROM: 11766 if ((entry->flags & CTL_CMD_FLAG_OK_ON_CDROM) == 0) 11767 return (0); 11768 break; 11769 default: 11770 return (0); 11771 } 11772 return (1); 11773 } 11774 11775 static int 11776 ctl_scsiio(struct ctl_scsiio *ctsio) 11777 { 11778 int retval; 11779 const struct ctl_cmd_entry *entry; 11780 11781 retval = CTL_RETVAL_COMPLETE; 11782 11783 CTL_DEBUG_PRINT(("ctl_scsiio cdb[0]=%02X\n", ctsio->cdb[0])); 11784 11785 entry = ctl_get_cmd_entry(ctsio, NULL); 11786 11787 /* 11788 * If this I/O has been aborted, just send it straight to 11789 * ctl_done() without executing it. 11790 */ 11791 if (ctsio->io_hdr.flags & CTL_FLAG_ABORT) { 11792 ctl_done((union ctl_io *)ctsio); 11793 goto bailout; 11794 } 11795 11796 /* 11797 * All the checks should have been handled by ctl_scsiio_precheck(). 11798 * We should be clear now to just execute the I/O. 11799 */ 11800 retval = entry->execute(ctsio); 11801 11802 bailout: 11803 return (retval); 11804 } 11805 11806 /* 11807 * Since we only implement one target right now, a bus reset simply resets 11808 * our single target. 11809 */ 11810 static int 11811 ctl_bus_reset(struct ctl_softc *softc, union ctl_io *io) 11812 { 11813 return(ctl_target_reset(softc, io, CTL_UA_BUS_RESET)); 11814 } 11815 11816 static int 11817 ctl_target_reset(struct ctl_softc *softc, union ctl_io *io, 11818 ctl_ua_type ua_type) 11819 { 11820 struct ctl_port *port; 11821 struct ctl_lun *lun; 11822 int retval; 11823 11824 if (!(io->io_hdr.flags & CTL_FLAG_FROM_OTHER_SC)) { 11825 union ctl_ha_msg msg_info; 11826 11827 msg_info.hdr.nexus = io->io_hdr.nexus; 11828 if (ua_type==CTL_UA_TARG_RESET) 11829 msg_info.task.task_action = CTL_TASK_TARGET_RESET; 11830 else 11831 msg_info.task.task_action = CTL_TASK_BUS_RESET; 11832 msg_info.hdr.msg_type = CTL_MSG_MANAGE_TASKS; 11833 msg_info.hdr.original_sc = NULL; 11834 msg_info.hdr.serializing_sc = NULL; 11835 ctl_ha_msg_send(CTL_HA_CHAN_CTL, &msg_info, 11836 sizeof(msg_info.task), M_WAITOK); 11837 } 11838 retval = 0; 11839 11840 mtx_lock(&softc->ctl_lock); 11841 port = ctl_io_port(&io->io_hdr); 11842 STAILQ_FOREACH(lun, &softc->lun_list, links) { 11843 if (port != NULL && 11844 ctl_lun_map_to_port(port, lun->lun) >= CTL_MAX_LUNS) 11845 continue; 11846 retval += ctl_do_lun_reset(lun, io, ua_type); 11847 } 11848 mtx_unlock(&softc->ctl_lock); 11849 io->taskio.task_status = CTL_TASK_FUNCTION_COMPLETE; 11850 return (retval); 11851 } 11852 11853 /* 11854 * The LUN should always be set. The I/O is optional, and is used to 11855 * distinguish between I/Os sent by this initiator, and by other 11856 * initiators. We set unit attention for initiators other than this one. 11857 * SAM-3 is vague on this point. It does say that a unit attention should 11858 * be established for other initiators when a LUN is reset (see section 11859 * 5.7.3), but it doesn't specifically say that the unit attention should 11860 * be established for this particular initiator when a LUN is reset. Here 11861 * is the relevant text, from SAM-3 rev 8: 11862 * 11863 * 5.7.2 When a SCSI initiator port aborts its own tasks 11864 * 11865 * When a SCSI initiator port causes its own task(s) to be aborted, no 11866 * notification that the task(s) have been aborted shall be returned to 11867 * the SCSI initiator port other than the completion response for the 11868 * command or task management function action that caused the task(s) to 11869 * be aborted and notification(s) associated with related effects of the 11870 * action (e.g., a reset unit attention condition). 11871 * 11872 * XXX KDM for now, we're setting unit attention for all initiators. 11873 */ 11874 static int 11875 ctl_do_lun_reset(struct ctl_lun *lun, union ctl_io *io, ctl_ua_type ua_type) 11876 { 11877 union ctl_io *xio; 11878 #if 0 11879 uint32_t initidx; 11880 #endif 11881 int i; 11882 11883 mtx_lock(&lun->lun_lock); 11884 /* 11885 * Run through the OOA queue and abort each I/O. 11886 */ 11887 for (xio = (union ctl_io *)TAILQ_FIRST(&lun->ooa_queue); xio != NULL; 11888 xio = (union ctl_io *)TAILQ_NEXT(&xio->io_hdr, ooa_links)) { 11889 xio->io_hdr.flags |= CTL_FLAG_ABORT | CTL_FLAG_ABORT_STATUS; 11890 } 11891 11892 /* 11893 * This version sets unit attention for every 11894 */ 11895 #if 0 11896 initidx = ctl_get_initindex(&io->io_hdr.nexus); 11897 ctl_est_ua_all(lun, initidx, ua_type); 11898 #else 11899 ctl_est_ua_all(lun, -1, ua_type); 11900 #endif 11901 11902 /* 11903 * A reset (any kind, really) clears reservations established with 11904 * RESERVE/RELEASE. It does not clear reservations established 11905 * with PERSISTENT RESERVE OUT, but we don't support that at the 11906 * moment anyway. See SPC-2, section 5.6. SPC-3 doesn't address 11907 * reservations made with the RESERVE/RELEASE commands, because 11908 * those commands are obsolete in SPC-3. 11909 */ 11910 lun->flags &= ~CTL_LUN_RESERVED; 11911 11912 #ifdef CTL_WITH_CA 11913 for (i = 0; i < CTL_MAX_INITIATORS; i++) 11914 ctl_clear_mask(lun->have_ca, i); 11915 #endif 11916 lun->prevent_count = 0; 11917 for (i = 0; i < CTL_MAX_INITIATORS; i++) 11918 ctl_clear_mask(lun->prevent, i); 11919 mtx_unlock(&lun->lun_lock); 11920 11921 return (0); 11922 } 11923 11924 static int 11925 ctl_lun_reset(struct ctl_softc *softc, union ctl_io *io) 11926 { 11927 struct ctl_lun *lun; 11928 uint32_t targ_lun; 11929 int retval; 11930 11931 targ_lun = io->io_hdr.nexus.targ_mapped_lun; 11932 mtx_lock(&softc->ctl_lock); 11933 if ((targ_lun >= CTL_MAX_LUNS) || 11934 (lun = softc->ctl_luns[targ_lun]) == NULL) { 11935 mtx_unlock(&softc->ctl_lock); 11936 io->taskio.task_status = CTL_TASK_LUN_DOES_NOT_EXIST; 11937 return (1); 11938 } 11939 retval = ctl_do_lun_reset(lun, io, CTL_UA_LUN_RESET); 11940 mtx_unlock(&softc->ctl_lock); 11941 io->taskio.task_status = CTL_TASK_FUNCTION_COMPLETE; 11942 11943 if ((io->io_hdr.flags & CTL_FLAG_FROM_OTHER_SC) == 0) { 11944 union ctl_ha_msg msg_info; 11945 11946 msg_info.hdr.msg_type = CTL_MSG_MANAGE_TASKS; 11947 msg_info.hdr.nexus = io->io_hdr.nexus; 11948 msg_info.task.task_action = CTL_TASK_LUN_RESET; 11949 msg_info.hdr.original_sc = NULL; 11950 msg_info.hdr.serializing_sc = NULL; 11951 ctl_ha_msg_send(CTL_HA_CHAN_CTL, &msg_info, 11952 sizeof(msg_info.task), M_WAITOK); 11953 } 11954 return (retval); 11955 } 11956 11957 static void 11958 ctl_abort_tasks_lun(struct ctl_lun *lun, uint32_t targ_port, uint32_t init_id, 11959 int other_sc) 11960 { 11961 union ctl_io *xio; 11962 11963 mtx_assert(&lun->lun_lock, MA_OWNED); 11964 11965 /* 11966 * Run through the OOA queue and attempt to find the given I/O. 11967 * The target port, initiator ID, tag type and tag number have to 11968 * match the values that we got from the initiator. If we have an 11969 * untagged command to abort, simply abort the first untagged command 11970 * we come to. We only allow one untagged command at a time of course. 11971 */ 11972 for (xio = (union ctl_io *)TAILQ_FIRST(&lun->ooa_queue); xio != NULL; 11973 xio = (union ctl_io *)TAILQ_NEXT(&xio->io_hdr, ooa_links)) { 11974 11975 if ((targ_port == UINT32_MAX || 11976 targ_port == xio->io_hdr.nexus.targ_port) && 11977 (init_id == UINT32_MAX || 11978 init_id == xio->io_hdr.nexus.initid)) { 11979 if (targ_port != xio->io_hdr.nexus.targ_port || 11980 init_id != xio->io_hdr.nexus.initid) 11981 xio->io_hdr.flags |= CTL_FLAG_ABORT_STATUS; 11982 xio->io_hdr.flags |= CTL_FLAG_ABORT; 11983 if (!other_sc && !(lun->flags & CTL_LUN_PRIMARY_SC)) { 11984 union ctl_ha_msg msg_info; 11985 11986 msg_info.hdr.nexus = xio->io_hdr.nexus; 11987 msg_info.task.task_action = CTL_TASK_ABORT_TASK; 11988 msg_info.task.tag_num = xio->scsiio.tag_num; 11989 msg_info.task.tag_type = xio->scsiio.tag_type; 11990 msg_info.hdr.msg_type = CTL_MSG_MANAGE_TASKS; 11991 msg_info.hdr.original_sc = NULL; 11992 msg_info.hdr.serializing_sc = NULL; 11993 ctl_ha_msg_send(CTL_HA_CHAN_CTL, &msg_info, 11994 sizeof(msg_info.task), M_NOWAIT); 11995 } 11996 } 11997 } 11998 } 11999 12000 static int 12001 ctl_abort_task_set(union ctl_io *io) 12002 { 12003 struct ctl_softc *softc = control_softc; 12004 struct ctl_lun *lun; 12005 uint32_t targ_lun; 12006 12007 /* 12008 * Look up the LUN. 12009 */ 12010 targ_lun = io->io_hdr.nexus.targ_mapped_lun; 12011 mtx_lock(&softc->ctl_lock); 12012 if ((targ_lun >= CTL_MAX_LUNS) || 12013 (lun = softc->ctl_luns[targ_lun]) == NULL) { 12014 mtx_unlock(&softc->ctl_lock); 12015 io->taskio.task_status = CTL_TASK_LUN_DOES_NOT_EXIST; 12016 return (1); 12017 } 12018 12019 mtx_lock(&lun->lun_lock); 12020 mtx_unlock(&softc->ctl_lock); 12021 if (io->taskio.task_action == CTL_TASK_ABORT_TASK_SET) { 12022 ctl_abort_tasks_lun(lun, io->io_hdr.nexus.targ_port, 12023 io->io_hdr.nexus.initid, 12024 (io->io_hdr.flags & CTL_FLAG_FROM_OTHER_SC) != 0); 12025 } else { /* CTL_TASK_CLEAR_TASK_SET */ 12026 ctl_abort_tasks_lun(lun, UINT32_MAX, UINT32_MAX, 12027 (io->io_hdr.flags & CTL_FLAG_FROM_OTHER_SC) != 0); 12028 } 12029 mtx_unlock(&lun->lun_lock); 12030 io->taskio.task_status = CTL_TASK_FUNCTION_COMPLETE; 12031 return (0); 12032 } 12033 12034 static int 12035 ctl_i_t_nexus_reset(union ctl_io *io) 12036 { 12037 struct ctl_softc *softc = control_softc; 12038 struct ctl_lun *lun; 12039 uint32_t initidx; 12040 12041 if (!(io->io_hdr.flags & CTL_FLAG_FROM_OTHER_SC)) { 12042 union ctl_ha_msg msg_info; 12043 12044 msg_info.hdr.nexus = io->io_hdr.nexus; 12045 msg_info.task.task_action = CTL_TASK_I_T_NEXUS_RESET; 12046 msg_info.hdr.msg_type = CTL_MSG_MANAGE_TASKS; 12047 msg_info.hdr.original_sc = NULL; 12048 msg_info.hdr.serializing_sc = NULL; 12049 ctl_ha_msg_send(CTL_HA_CHAN_CTL, &msg_info, 12050 sizeof(msg_info.task), M_WAITOK); 12051 } 12052 12053 initidx = ctl_get_initindex(&io->io_hdr.nexus); 12054 mtx_lock(&softc->ctl_lock); 12055 STAILQ_FOREACH(lun, &softc->lun_list, links) { 12056 mtx_lock(&lun->lun_lock); 12057 ctl_abort_tasks_lun(lun, io->io_hdr.nexus.targ_port, 12058 io->io_hdr.nexus.initid, 1); 12059 #ifdef CTL_WITH_CA 12060 ctl_clear_mask(lun->have_ca, initidx); 12061 #endif 12062 if ((lun->flags & CTL_LUN_RESERVED) && (lun->res_idx == initidx)) 12063 lun->flags &= ~CTL_LUN_RESERVED; 12064 if (ctl_is_set(lun->prevent, initidx)) { 12065 ctl_clear_mask(lun->prevent, initidx); 12066 lun->prevent_count--; 12067 } 12068 ctl_est_ua(lun, initidx, CTL_UA_I_T_NEXUS_LOSS); 12069 mtx_unlock(&lun->lun_lock); 12070 } 12071 mtx_unlock(&softc->ctl_lock); 12072 io->taskio.task_status = CTL_TASK_FUNCTION_COMPLETE; 12073 return (0); 12074 } 12075 12076 static int 12077 ctl_abort_task(union ctl_io *io) 12078 { 12079 union ctl_io *xio; 12080 struct ctl_lun *lun; 12081 struct ctl_softc *softc; 12082 #if 0 12083 struct sbuf sb; 12084 char printbuf[128]; 12085 #endif 12086 int found; 12087 uint32_t targ_lun; 12088 12089 softc = control_softc; 12090 found = 0; 12091 12092 /* 12093 * Look up the LUN. 12094 */ 12095 targ_lun = io->io_hdr.nexus.targ_mapped_lun; 12096 mtx_lock(&softc->ctl_lock); 12097 if ((targ_lun >= CTL_MAX_LUNS) || 12098 (lun = softc->ctl_luns[targ_lun]) == NULL) { 12099 mtx_unlock(&softc->ctl_lock); 12100 io->taskio.task_status = CTL_TASK_LUN_DOES_NOT_EXIST; 12101 return (1); 12102 } 12103 12104 #if 0 12105 printf("ctl_abort_task: called for lun %lld, tag %d type %d\n", 12106 lun->lun, io->taskio.tag_num, io->taskio.tag_type); 12107 #endif 12108 12109 mtx_lock(&lun->lun_lock); 12110 mtx_unlock(&softc->ctl_lock); 12111 /* 12112 * Run through the OOA queue and attempt to find the given I/O. 12113 * The target port, initiator ID, tag type and tag number have to 12114 * match the values that we got from the initiator. If we have an 12115 * untagged command to abort, simply abort the first untagged command 12116 * we come to. We only allow one untagged command at a time of course. 12117 */ 12118 for (xio = (union ctl_io *)TAILQ_FIRST(&lun->ooa_queue); xio != NULL; 12119 xio = (union ctl_io *)TAILQ_NEXT(&xio->io_hdr, ooa_links)) { 12120 #if 0 12121 sbuf_new(&sb, printbuf, sizeof(printbuf), SBUF_FIXEDLEN); 12122 12123 sbuf_printf(&sb, "LUN %lld tag %d type %d%s%s%s%s: ", 12124 lun->lun, xio->scsiio.tag_num, 12125 xio->scsiio.tag_type, 12126 (xio->io_hdr.blocked_links.tqe_prev 12127 == NULL) ? "" : " BLOCKED", 12128 (xio->io_hdr.flags & 12129 CTL_FLAG_DMA_INPROG) ? " DMA" : "", 12130 (xio->io_hdr.flags & 12131 CTL_FLAG_ABORT) ? " ABORT" : "", 12132 (xio->io_hdr.flags & 12133 CTL_FLAG_IS_WAS_ON_RTR ? " RTR" : "")); 12134 ctl_scsi_command_string(&xio->scsiio, NULL, &sb); 12135 sbuf_finish(&sb); 12136 printf("%s\n", sbuf_data(&sb)); 12137 #endif 12138 12139 if ((xio->io_hdr.nexus.targ_port != io->io_hdr.nexus.targ_port) 12140 || (xio->io_hdr.nexus.initid != io->io_hdr.nexus.initid) 12141 || (xio->io_hdr.flags & CTL_FLAG_ABORT)) 12142 continue; 12143 12144 /* 12145 * If the abort says that the task is untagged, the 12146 * task in the queue must be untagged. Otherwise, 12147 * we just check to see whether the tag numbers 12148 * match. This is because the QLogic firmware 12149 * doesn't pass back the tag type in an abort 12150 * request. 12151 */ 12152 #if 0 12153 if (((xio->scsiio.tag_type == CTL_TAG_UNTAGGED) 12154 && (io->taskio.tag_type == CTL_TAG_UNTAGGED)) 12155 || (xio->scsiio.tag_num == io->taskio.tag_num)) 12156 #endif 12157 /* 12158 * XXX KDM we've got problems with FC, because it 12159 * doesn't send down a tag type with aborts. So we 12160 * can only really go by the tag number... 12161 * This may cause problems with parallel SCSI. 12162 * Need to figure that out!! 12163 */ 12164 if (xio->scsiio.tag_num == io->taskio.tag_num) { 12165 xio->io_hdr.flags |= CTL_FLAG_ABORT; 12166 found = 1; 12167 if ((io->io_hdr.flags & CTL_FLAG_FROM_OTHER_SC) == 0 && 12168 !(lun->flags & CTL_LUN_PRIMARY_SC)) { 12169 union ctl_ha_msg msg_info; 12170 12171 msg_info.hdr.nexus = io->io_hdr.nexus; 12172 msg_info.task.task_action = CTL_TASK_ABORT_TASK; 12173 msg_info.task.tag_num = io->taskio.tag_num; 12174 msg_info.task.tag_type = io->taskio.tag_type; 12175 msg_info.hdr.msg_type = CTL_MSG_MANAGE_TASKS; 12176 msg_info.hdr.original_sc = NULL; 12177 msg_info.hdr.serializing_sc = NULL; 12178 #if 0 12179 printf("Sent Abort to other side\n"); 12180 #endif 12181 ctl_ha_msg_send(CTL_HA_CHAN_CTL, &msg_info, 12182 sizeof(msg_info.task), M_NOWAIT); 12183 } 12184 #if 0 12185 printf("ctl_abort_task: found I/O to abort\n"); 12186 #endif 12187 } 12188 } 12189 mtx_unlock(&lun->lun_lock); 12190 12191 if (found == 0) { 12192 /* 12193 * This isn't really an error. It's entirely possible for 12194 * the abort and command completion to cross on the wire. 12195 * This is more of an informative/diagnostic error. 12196 */ 12197 #if 0 12198 printf("ctl_abort_task: ABORT sent for nonexistent I/O: " 12199 "%u:%u:%u tag %d type %d\n", 12200 io->io_hdr.nexus.initid, 12201 io->io_hdr.nexus.targ_port, 12202 io->io_hdr.nexus.targ_lun, io->taskio.tag_num, 12203 io->taskio.tag_type); 12204 #endif 12205 } 12206 io->taskio.task_status = CTL_TASK_FUNCTION_COMPLETE; 12207 return (0); 12208 } 12209 12210 static int 12211 ctl_query_task(union ctl_io *io, int task_set) 12212 { 12213 union ctl_io *xio; 12214 struct ctl_lun *lun; 12215 struct ctl_softc *softc; 12216 int found = 0; 12217 uint32_t targ_lun; 12218 12219 softc = control_softc; 12220 targ_lun = io->io_hdr.nexus.targ_mapped_lun; 12221 mtx_lock(&softc->ctl_lock); 12222 if ((targ_lun >= CTL_MAX_LUNS) || 12223 (lun = softc->ctl_luns[targ_lun]) == NULL) { 12224 mtx_unlock(&softc->ctl_lock); 12225 io->taskio.task_status = CTL_TASK_LUN_DOES_NOT_EXIST; 12226 return (1); 12227 } 12228 mtx_lock(&lun->lun_lock); 12229 mtx_unlock(&softc->ctl_lock); 12230 for (xio = (union ctl_io *)TAILQ_FIRST(&lun->ooa_queue); xio != NULL; 12231 xio = (union ctl_io *)TAILQ_NEXT(&xio->io_hdr, ooa_links)) { 12232 12233 if ((xio->io_hdr.nexus.targ_port != io->io_hdr.nexus.targ_port) 12234 || (xio->io_hdr.nexus.initid != io->io_hdr.nexus.initid) 12235 || (xio->io_hdr.flags & CTL_FLAG_ABORT)) 12236 continue; 12237 12238 if (task_set || xio->scsiio.tag_num == io->taskio.tag_num) { 12239 found = 1; 12240 break; 12241 } 12242 } 12243 mtx_unlock(&lun->lun_lock); 12244 if (found) 12245 io->taskio.task_status = CTL_TASK_FUNCTION_SUCCEEDED; 12246 else 12247 io->taskio.task_status = CTL_TASK_FUNCTION_COMPLETE; 12248 return (0); 12249 } 12250 12251 static int 12252 ctl_query_async_event(union ctl_io *io) 12253 { 12254 struct ctl_lun *lun; 12255 struct ctl_softc *softc; 12256 ctl_ua_type ua; 12257 uint32_t targ_lun, initidx; 12258 12259 softc = control_softc; 12260 targ_lun = io->io_hdr.nexus.targ_mapped_lun; 12261 mtx_lock(&softc->ctl_lock); 12262 if ((targ_lun >= CTL_MAX_LUNS) || 12263 (lun = softc->ctl_luns[targ_lun]) == NULL) { 12264 mtx_unlock(&softc->ctl_lock); 12265 io->taskio.task_status = CTL_TASK_LUN_DOES_NOT_EXIST; 12266 return (1); 12267 } 12268 mtx_lock(&lun->lun_lock); 12269 mtx_unlock(&softc->ctl_lock); 12270 initidx = ctl_get_initindex(&io->io_hdr.nexus); 12271 ua = ctl_build_qae(lun, initidx, io->taskio.task_resp); 12272 mtx_unlock(&lun->lun_lock); 12273 if (ua != CTL_UA_NONE) 12274 io->taskio.task_status = CTL_TASK_FUNCTION_SUCCEEDED; 12275 else 12276 io->taskio.task_status = CTL_TASK_FUNCTION_COMPLETE; 12277 return (0); 12278 } 12279 12280 static void 12281 ctl_run_task(union ctl_io *io) 12282 { 12283 struct ctl_softc *softc = control_softc; 12284 int retval = 1; 12285 12286 CTL_DEBUG_PRINT(("ctl_run_task\n")); 12287 KASSERT(io->io_hdr.io_type == CTL_IO_TASK, 12288 ("ctl_run_task: Unextected io_type %d\n", io->io_hdr.io_type)); 12289 io->taskio.task_status = CTL_TASK_FUNCTION_NOT_SUPPORTED; 12290 bzero(io->taskio.task_resp, sizeof(io->taskio.task_resp)); 12291 switch (io->taskio.task_action) { 12292 case CTL_TASK_ABORT_TASK: 12293 retval = ctl_abort_task(io); 12294 break; 12295 case CTL_TASK_ABORT_TASK_SET: 12296 case CTL_TASK_CLEAR_TASK_SET: 12297 retval = ctl_abort_task_set(io); 12298 break; 12299 case CTL_TASK_CLEAR_ACA: 12300 break; 12301 case CTL_TASK_I_T_NEXUS_RESET: 12302 retval = ctl_i_t_nexus_reset(io); 12303 break; 12304 case CTL_TASK_LUN_RESET: 12305 retval = ctl_lun_reset(softc, io); 12306 break; 12307 case CTL_TASK_TARGET_RESET: 12308 retval = ctl_target_reset(softc, io, CTL_UA_TARG_RESET); 12309 break; 12310 case CTL_TASK_BUS_RESET: 12311 retval = ctl_bus_reset(softc, io); 12312 break; 12313 case CTL_TASK_PORT_LOGIN: 12314 break; 12315 case CTL_TASK_PORT_LOGOUT: 12316 break; 12317 case CTL_TASK_QUERY_TASK: 12318 retval = ctl_query_task(io, 0); 12319 break; 12320 case CTL_TASK_QUERY_TASK_SET: 12321 retval = ctl_query_task(io, 1); 12322 break; 12323 case CTL_TASK_QUERY_ASYNC_EVENT: 12324 retval = ctl_query_async_event(io); 12325 break; 12326 default: 12327 printf("%s: got unknown task management event %d\n", 12328 __func__, io->taskio.task_action); 12329 break; 12330 } 12331 if (retval == 0) 12332 io->io_hdr.status = CTL_SUCCESS; 12333 else 12334 io->io_hdr.status = CTL_ERROR; 12335 ctl_done(io); 12336 } 12337 12338 /* 12339 * For HA operation. Handle commands that come in from the other 12340 * controller. 12341 */ 12342 static void 12343 ctl_handle_isc(union ctl_io *io) 12344 { 12345 int free_io; 12346 struct ctl_lun *lun; 12347 struct ctl_softc *softc = control_softc; 12348 uint32_t targ_lun; 12349 12350 targ_lun = io->io_hdr.nexus.targ_mapped_lun; 12351 lun = softc->ctl_luns[targ_lun]; 12352 12353 switch (io->io_hdr.msg_type) { 12354 case CTL_MSG_SERIALIZE: 12355 free_io = ctl_serialize_other_sc_cmd(&io->scsiio); 12356 break; 12357 case CTL_MSG_R2R: { 12358 const struct ctl_cmd_entry *entry; 12359 12360 /* 12361 * This is only used in SER_ONLY mode. 12362 */ 12363 free_io = 0; 12364 entry = ctl_get_cmd_entry(&io->scsiio, NULL); 12365 mtx_lock(&lun->lun_lock); 12366 if (ctl_scsiio_lun_check(lun, 12367 entry, (struct ctl_scsiio *)io) != 0) { 12368 mtx_unlock(&lun->lun_lock); 12369 ctl_done(io); 12370 break; 12371 } 12372 io->io_hdr.flags |= CTL_FLAG_IS_WAS_ON_RTR; 12373 mtx_unlock(&lun->lun_lock); 12374 ctl_enqueue_rtr(io); 12375 break; 12376 } 12377 case CTL_MSG_FINISH_IO: 12378 if (softc->ha_mode == CTL_HA_MODE_XFER) { 12379 free_io = 0; 12380 ctl_done(io); 12381 } else { 12382 free_io = 1; 12383 mtx_lock(&lun->lun_lock); 12384 TAILQ_REMOVE(&lun->ooa_queue, &io->io_hdr, 12385 ooa_links); 12386 ctl_check_blocked(lun); 12387 mtx_unlock(&lun->lun_lock); 12388 } 12389 break; 12390 case CTL_MSG_PERS_ACTION: 12391 ctl_hndl_per_res_out_on_other_sc( 12392 (union ctl_ha_msg *)&io->presio.pr_msg); 12393 free_io = 1; 12394 break; 12395 case CTL_MSG_BAD_JUJU: 12396 free_io = 0; 12397 ctl_done(io); 12398 break; 12399 case CTL_MSG_DATAMOVE: 12400 /* Only used in XFER mode */ 12401 free_io = 0; 12402 ctl_datamove_remote(io); 12403 break; 12404 case CTL_MSG_DATAMOVE_DONE: 12405 /* Only used in XFER mode */ 12406 free_io = 0; 12407 io->scsiio.be_move_done(io); 12408 break; 12409 case CTL_MSG_FAILOVER: 12410 ctl_failover_lun(io); 12411 free_io = 1; 12412 break; 12413 default: 12414 free_io = 1; 12415 printf("%s: Invalid message type %d\n", 12416 __func__, io->io_hdr.msg_type); 12417 break; 12418 } 12419 if (free_io) 12420 ctl_free_io(io); 12421 12422 } 12423 12424 12425 /* 12426 * Returns the match type in the case of a match, or CTL_LUN_PAT_NONE if 12427 * there is no match. 12428 */ 12429 static ctl_lun_error_pattern 12430 ctl_cmd_pattern_match(struct ctl_scsiio *ctsio, struct ctl_error_desc *desc) 12431 { 12432 const struct ctl_cmd_entry *entry; 12433 ctl_lun_error_pattern filtered_pattern, pattern; 12434 12435 pattern = desc->error_pattern; 12436 12437 /* 12438 * XXX KDM we need more data passed into this function to match a 12439 * custom pattern, and we actually need to implement custom pattern 12440 * matching. 12441 */ 12442 if (pattern & CTL_LUN_PAT_CMD) 12443 return (CTL_LUN_PAT_CMD); 12444 12445 if ((pattern & CTL_LUN_PAT_MASK) == CTL_LUN_PAT_ANY) 12446 return (CTL_LUN_PAT_ANY); 12447 12448 entry = ctl_get_cmd_entry(ctsio, NULL); 12449 12450 filtered_pattern = entry->pattern & pattern; 12451 12452 /* 12453 * If the user requested specific flags in the pattern (e.g. 12454 * CTL_LUN_PAT_RANGE), make sure the command supports all of those 12455 * flags. 12456 * 12457 * If the user did not specify any flags, it doesn't matter whether 12458 * or not the command supports the flags. 12459 */ 12460 if ((filtered_pattern & ~CTL_LUN_PAT_MASK) != 12461 (pattern & ~CTL_LUN_PAT_MASK)) 12462 return (CTL_LUN_PAT_NONE); 12463 12464 /* 12465 * If the user asked for a range check, see if the requested LBA 12466 * range overlaps with this command's LBA range. 12467 */ 12468 if (filtered_pattern & CTL_LUN_PAT_RANGE) { 12469 uint64_t lba1; 12470 uint64_t len1; 12471 ctl_action action; 12472 int retval; 12473 12474 retval = ctl_get_lba_len((union ctl_io *)ctsio, &lba1, &len1); 12475 if (retval != 0) 12476 return (CTL_LUN_PAT_NONE); 12477 12478 action = ctl_extent_check_lba(lba1, len1, desc->lba_range.lba, 12479 desc->lba_range.len, FALSE); 12480 /* 12481 * A "pass" means that the LBA ranges don't overlap, so 12482 * this doesn't match the user's range criteria. 12483 */ 12484 if (action == CTL_ACTION_PASS) 12485 return (CTL_LUN_PAT_NONE); 12486 } 12487 12488 return (filtered_pattern); 12489 } 12490 12491 static void 12492 ctl_inject_error(struct ctl_lun *lun, union ctl_io *io) 12493 { 12494 struct ctl_error_desc *desc, *desc2; 12495 12496 mtx_assert(&lun->lun_lock, MA_OWNED); 12497 12498 STAILQ_FOREACH_SAFE(desc, &lun->error_list, links, desc2) { 12499 ctl_lun_error_pattern pattern; 12500 /* 12501 * Check to see whether this particular command matches 12502 * the pattern in the descriptor. 12503 */ 12504 pattern = ctl_cmd_pattern_match(&io->scsiio, desc); 12505 if ((pattern & CTL_LUN_PAT_MASK) == CTL_LUN_PAT_NONE) 12506 continue; 12507 12508 switch (desc->lun_error & CTL_LUN_INJ_TYPE) { 12509 case CTL_LUN_INJ_ABORTED: 12510 ctl_set_aborted(&io->scsiio); 12511 break; 12512 case CTL_LUN_INJ_MEDIUM_ERR: 12513 ctl_set_medium_error(&io->scsiio, 12514 (io->io_hdr.flags & CTL_FLAG_DATA_MASK) != 12515 CTL_FLAG_DATA_OUT); 12516 break; 12517 case CTL_LUN_INJ_UA: 12518 /* 29h/00h POWER ON, RESET, OR BUS DEVICE RESET 12519 * OCCURRED */ 12520 ctl_set_ua(&io->scsiio, 0x29, 0x00); 12521 break; 12522 case CTL_LUN_INJ_CUSTOM: 12523 /* 12524 * We're assuming the user knows what he is doing. 12525 * Just copy the sense information without doing 12526 * checks. 12527 */ 12528 bcopy(&desc->custom_sense, &io->scsiio.sense_data, 12529 MIN(sizeof(desc->custom_sense), 12530 sizeof(io->scsiio.sense_data))); 12531 io->scsiio.scsi_status = SCSI_STATUS_CHECK_COND; 12532 io->scsiio.sense_len = SSD_FULL_SIZE; 12533 io->io_hdr.status = CTL_SCSI_ERROR | CTL_AUTOSENSE; 12534 break; 12535 case CTL_LUN_INJ_NONE: 12536 default: 12537 /* 12538 * If this is an error injection type we don't know 12539 * about, clear the continuous flag (if it is set) 12540 * so it will get deleted below. 12541 */ 12542 desc->lun_error &= ~CTL_LUN_INJ_CONTINUOUS; 12543 break; 12544 } 12545 /* 12546 * By default, each error injection action is a one-shot 12547 */ 12548 if (desc->lun_error & CTL_LUN_INJ_CONTINUOUS) 12549 continue; 12550 12551 STAILQ_REMOVE(&lun->error_list, desc, ctl_error_desc, links); 12552 12553 free(desc, M_CTL); 12554 } 12555 } 12556 12557 #ifdef CTL_IO_DELAY 12558 static void 12559 ctl_datamove_timer_wakeup(void *arg) 12560 { 12561 union ctl_io *io; 12562 12563 io = (union ctl_io *)arg; 12564 12565 ctl_datamove(io); 12566 } 12567 #endif /* CTL_IO_DELAY */ 12568 12569 void 12570 ctl_datamove(union ctl_io *io) 12571 { 12572 struct ctl_lun *lun; 12573 void (*fe_datamove)(union ctl_io *io); 12574 12575 mtx_assert(&control_softc->ctl_lock, MA_NOTOWNED); 12576 12577 CTL_DEBUG_PRINT(("ctl_datamove\n")); 12578 12579 lun = (struct ctl_lun *)io->io_hdr.ctl_private[CTL_PRIV_LUN].ptr; 12580 #ifdef CTL_TIME_IO 12581 if ((time_uptime - io->io_hdr.start_time) > ctl_time_io_secs) { 12582 char str[256]; 12583 char path_str[64]; 12584 struct sbuf sb; 12585 12586 ctl_scsi_path_string(io, path_str, sizeof(path_str)); 12587 sbuf_new(&sb, str, sizeof(str), SBUF_FIXEDLEN); 12588 12589 sbuf_cat(&sb, path_str); 12590 switch (io->io_hdr.io_type) { 12591 case CTL_IO_SCSI: 12592 ctl_scsi_command_string(&io->scsiio, NULL, &sb); 12593 sbuf_printf(&sb, "\n"); 12594 sbuf_cat(&sb, path_str); 12595 sbuf_printf(&sb, "Tag: 0x%04x, type %d\n", 12596 io->scsiio.tag_num, io->scsiio.tag_type); 12597 break; 12598 case CTL_IO_TASK: 12599 sbuf_printf(&sb, "Task I/O type: %d, Tag: 0x%04x, " 12600 "Tag Type: %d\n", io->taskio.task_action, 12601 io->taskio.tag_num, io->taskio.tag_type); 12602 break; 12603 default: 12604 panic("%s: Invalid CTL I/O type %d\n", 12605 __func__, io->io_hdr.io_type); 12606 } 12607 sbuf_cat(&sb, path_str); 12608 sbuf_printf(&sb, "ctl_datamove: %jd seconds\n", 12609 (intmax_t)time_uptime - io->io_hdr.start_time); 12610 sbuf_finish(&sb); 12611 printf("%s", sbuf_data(&sb)); 12612 } 12613 #endif /* CTL_TIME_IO */ 12614 12615 #ifdef CTL_IO_DELAY 12616 if (io->io_hdr.flags & CTL_FLAG_DELAY_DONE) { 12617 io->io_hdr.flags &= ~CTL_FLAG_DELAY_DONE; 12618 } else { 12619 if ((lun != NULL) 12620 && (lun->delay_info.datamove_delay > 0)) { 12621 12622 callout_init(&io->io_hdr.delay_callout, /*mpsafe*/ 1); 12623 io->io_hdr.flags |= CTL_FLAG_DELAY_DONE; 12624 callout_reset(&io->io_hdr.delay_callout, 12625 lun->delay_info.datamove_delay * hz, 12626 ctl_datamove_timer_wakeup, io); 12627 if (lun->delay_info.datamove_type == 12628 CTL_DELAY_TYPE_ONESHOT) 12629 lun->delay_info.datamove_delay = 0; 12630 return; 12631 } 12632 } 12633 #endif 12634 12635 /* 12636 * This command has been aborted. Set the port status, so we fail 12637 * the data move. 12638 */ 12639 if (io->io_hdr.flags & CTL_FLAG_ABORT) { 12640 printf("ctl_datamove: tag 0x%04x on (%u:%u:%u) aborted\n", 12641 io->scsiio.tag_num, io->io_hdr.nexus.initid, 12642 io->io_hdr.nexus.targ_port, 12643 io->io_hdr.nexus.targ_lun); 12644 io->io_hdr.port_status = 31337; 12645 /* 12646 * Note that the backend, in this case, will get the 12647 * callback in its context. In other cases it may get 12648 * called in the frontend's interrupt thread context. 12649 */ 12650 io->scsiio.be_move_done(io); 12651 return; 12652 } 12653 12654 /* Don't confuse frontend with zero length data move. */ 12655 if (io->scsiio.kern_data_len == 0) { 12656 io->scsiio.be_move_done(io); 12657 return; 12658 } 12659 12660 fe_datamove = ctl_io_port(&io->io_hdr)->fe_datamove; 12661 fe_datamove(io); 12662 } 12663 12664 static void 12665 ctl_send_datamove_done(union ctl_io *io, int have_lock) 12666 { 12667 union ctl_ha_msg msg; 12668 #ifdef CTL_TIME_IO 12669 struct bintime cur_bt; 12670 #endif 12671 12672 memset(&msg, 0, sizeof(msg)); 12673 msg.hdr.msg_type = CTL_MSG_DATAMOVE_DONE; 12674 msg.hdr.original_sc = io; 12675 msg.hdr.serializing_sc = io->io_hdr.serializing_sc; 12676 msg.hdr.nexus = io->io_hdr.nexus; 12677 msg.hdr.status = io->io_hdr.status; 12678 msg.scsi.tag_num = io->scsiio.tag_num; 12679 msg.scsi.tag_type = io->scsiio.tag_type; 12680 msg.scsi.scsi_status = io->scsiio.scsi_status; 12681 memcpy(&msg.scsi.sense_data, &io->scsiio.sense_data, 12682 io->scsiio.sense_len); 12683 msg.scsi.sense_len = io->scsiio.sense_len; 12684 msg.scsi.sense_residual = io->scsiio.sense_residual; 12685 msg.scsi.fetd_status = io->io_hdr.port_status; 12686 msg.scsi.residual = io->scsiio.residual; 12687 io->io_hdr.flags &= ~CTL_FLAG_IO_ACTIVE; 12688 if (io->io_hdr.flags & CTL_FLAG_FAILOVER) { 12689 ctl_failover_io(io, /*have_lock*/ have_lock); 12690 return; 12691 } 12692 ctl_ha_msg_send(CTL_HA_CHAN_CTL, &msg, 12693 sizeof(msg.scsi) - sizeof(msg.scsi.sense_data) + 12694 msg.scsi.sense_len, M_WAITOK); 12695 12696 #ifdef CTL_TIME_IO 12697 getbinuptime(&cur_bt); 12698 bintime_sub(&cur_bt, &io->io_hdr.dma_start_bt); 12699 bintime_add(&io->io_hdr.dma_bt, &cur_bt); 12700 #endif 12701 io->io_hdr.num_dmas++; 12702 } 12703 12704 /* 12705 * The DMA to the remote side is done, now we need to tell the other side 12706 * we're done so it can continue with its data movement. 12707 */ 12708 static void 12709 ctl_datamove_remote_write_cb(struct ctl_ha_dt_req *rq) 12710 { 12711 union ctl_io *io; 12712 int i; 12713 12714 io = rq->context; 12715 12716 if (rq->ret != CTL_HA_STATUS_SUCCESS) { 12717 printf("%s: ISC DMA write failed with error %d", __func__, 12718 rq->ret); 12719 ctl_set_internal_failure(&io->scsiio, 12720 /*sks_valid*/ 1, 12721 /*retry_count*/ rq->ret); 12722 } 12723 12724 ctl_dt_req_free(rq); 12725 12726 for (i = 0; i < io->scsiio.kern_sg_entries; i++) 12727 free(io->io_hdr.local_sglist[i].addr, M_CTL); 12728 free(io->io_hdr.remote_sglist, M_CTL); 12729 io->io_hdr.remote_sglist = NULL; 12730 io->io_hdr.local_sglist = NULL; 12731 12732 /* 12733 * The data is in local and remote memory, so now we need to send 12734 * status (good or back) back to the other side. 12735 */ 12736 ctl_send_datamove_done(io, /*have_lock*/ 0); 12737 } 12738 12739 /* 12740 * We've moved the data from the host/controller into local memory. Now we 12741 * need to push it over to the remote controller's memory. 12742 */ 12743 static int 12744 ctl_datamove_remote_dm_write_cb(union ctl_io *io) 12745 { 12746 int retval; 12747 12748 retval = ctl_datamove_remote_xfer(io, CTL_HA_DT_CMD_WRITE, 12749 ctl_datamove_remote_write_cb); 12750 return (retval); 12751 } 12752 12753 static void 12754 ctl_datamove_remote_write(union ctl_io *io) 12755 { 12756 int retval; 12757 void (*fe_datamove)(union ctl_io *io); 12758 12759 /* 12760 * - Get the data from the host/HBA into local memory. 12761 * - DMA memory from the local controller to the remote controller. 12762 * - Send status back to the remote controller. 12763 */ 12764 12765 retval = ctl_datamove_remote_sgl_setup(io); 12766 if (retval != 0) 12767 return; 12768 12769 /* Switch the pointer over so the FETD knows what to do */ 12770 io->scsiio.kern_data_ptr = (uint8_t *)io->io_hdr.local_sglist; 12771 12772 /* 12773 * Use a custom move done callback, since we need to send completion 12774 * back to the other controller, not to the backend on this side. 12775 */ 12776 io->scsiio.be_move_done = ctl_datamove_remote_dm_write_cb; 12777 12778 fe_datamove = ctl_io_port(&io->io_hdr)->fe_datamove; 12779 fe_datamove(io); 12780 } 12781 12782 static int 12783 ctl_datamove_remote_dm_read_cb(union ctl_io *io) 12784 { 12785 #if 0 12786 char str[256]; 12787 char path_str[64]; 12788 struct sbuf sb; 12789 #endif 12790 int i; 12791 12792 for (i = 0; i < io->scsiio.kern_sg_entries; i++) 12793 free(io->io_hdr.local_sglist[i].addr, M_CTL); 12794 free(io->io_hdr.remote_sglist, M_CTL); 12795 io->io_hdr.remote_sglist = NULL; 12796 io->io_hdr.local_sglist = NULL; 12797 12798 #if 0 12799 scsi_path_string(io, path_str, sizeof(path_str)); 12800 sbuf_new(&sb, str, sizeof(str), SBUF_FIXEDLEN); 12801 sbuf_cat(&sb, path_str); 12802 scsi_command_string(&io->scsiio, NULL, &sb); 12803 sbuf_printf(&sb, "\n"); 12804 sbuf_cat(&sb, path_str); 12805 sbuf_printf(&sb, "Tag: 0x%04x, type %d\n", 12806 io->scsiio.tag_num, io->scsiio.tag_type); 12807 sbuf_cat(&sb, path_str); 12808 sbuf_printf(&sb, "%s: flags %#x, status %#x\n", __func__, 12809 io->io_hdr.flags, io->io_hdr.status); 12810 sbuf_finish(&sb); 12811 printk("%s", sbuf_data(&sb)); 12812 #endif 12813 12814 12815 /* 12816 * The read is done, now we need to send status (good or bad) back 12817 * to the other side. 12818 */ 12819 ctl_send_datamove_done(io, /*have_lock*/ 0); 12820 12821 return (0); 12822 } 12823 12824 static void 12825 ctl_datamove_remote_read_cb(struct ctl_ha_dt_req *rq) 12826 { 12827 union ctl_io *io; 12828 void (*fe_datamove)(union ctl_io *io); 12829 12830 io = rq->context; 12831 12832 if (rq->ret != CTL_HA_STATUS_SUCCESS) { 12833 printf("%s: ISC DMA read failed with error %d\n", __func__, 12834 rq->ret); 12835 ctl_set_internal_failure(&io->scsiio, 12836 /*sks_valid*/ 1, 12837 /*retry_count*/ rq->ret); 12838 } 12839 12840 ctl_dt_req_free(rq); 12841 12842 /* Switch the pointer over so the FETD knows what to do */ 12843 io->scsiio.kern_data_ptr = (uint8_t *)io->io_hdr.local_sglist; 12844 12845 /* 12846 * Use a custom move done callback, since we need to send completion 12847 * back to the other controller, not to the backend on this side. 12848 */ 12849 io->scsiio.be_move_done = ctl_datamove_remote_dm_read_cb; 12850 12851 /* XXX KDM add checks like the ones in ctl_datamove? */ 12852 12853 fe_datamove = ctl_io_port(&io->io_hdr)->fe_datamove; 12854 fe_datamove(io); 12855 } 12856 12857 static int 12858 ctl_datamove_remote_sgl_setup(union ctl_io *io) 12859 { 12860 struct ctl_sg_entry *local_sglist; 12861 uint32_t len_to_go; 12862 int retval; 12863 int i; 12864 12865 retval = 0; 12866 local_sglist = io->io_hdr.local_sglist; 12867 len_to_go = io->scsiio.kern_data_len; 12868 12869 /* 12870 * The difficult thing here is that the size of the various 12871 * S/G segments may be different than the size from the 12872 * remote controller. That'll make it harder when DMAing 12873 * the data back to the other side. 12874 */ 12875 for (i = 0; len_to_go > 0; i++) { 12876 local_sglist[i].len = MIN(len_to_go, CTL_HA_DATAMOVE_SEGMENT); 12877 local_sglist[i].addr = 12878 malloc(local_sglist[i].len, M_CTL, M_WAITOK); 12879 12880 len_to_go -= local_sglist[i].len; 12881 } 12882 /* 12883 * Reset the number of S/G entries accordingly. The original 12884 * number of S/G entries is available in rem_sg_entries. 12885 */ 12886 io->scsiio.kern_sg_entries = i; 12887 12888 #if 0 12889 printf("%s: kern_sg_entries = %d\n", __func__, 12890 io->scsiio.kern_sg_entries); 12891 for (i = 0; i < io->scsiio.kern_sg_entries; i++) 12892 printf("%s: sg[%d] = %p, %lu\n", __func__, i, 12893 local_sglist[i].addr, local_sglist[i].len); 12894 #endif 12895 12896 return (retval); 12897 } 12898 12899 static int 12900 ctl_datamove_remote_xfer(union ctl_io *io, unsigned command, 12901 ctl_ha_dt_cb callback) 12902 { 12903 struct ctl_ha_dt_req *rq; 12904 struct ctl_sg_entry *remote_sglist, *local_sglist; 12905 uint32_t local_used, remote_used, total_used; 12906 int i, j, isc_ret; 12907 12908 rq = ctl_dt_req_alloc(); 12909 12910 /* 12911 * If we failed to allocate the request, and if the DMA didn't fail 12912 * anyway, set busy status. This is just a resource allocation 12913 * failure. 12914 */ 12915 if ((rq == NULL) 12916 && ((io->io_hdr.status & CTL_STATUS_MASK) != CTL_STATUS_NONE && 12917 (io->io_hdr.status & CTL_STATUS_MASK) != CTL_SUCCESS)) 12918 ctl_set_busy(&io->scsiio); 12919 12920 if ((io->io_hdr.status & CTL_STATUS_MASK) != CTL_STATUS_NONE && 12921 (io->io_hdr.status & CTL_STATUS_MASK) != CTL_SUCCESS) { 12922 12923 if (rq != NULL) 12924 ctl_dt_req_free(rq); 12925 12926 /* 12927 * The data move failed. We need to return status back 12928 * to the other controller. No point in trying to DMA 12929 * data to the remote controller. 12930 */ 12931 12932 ctl_send_datamove_done(io, /*have_lock*/ 0); 12933 12934 return (1); 12935 } 12936 12937 local_sglist = io->io_hdr.local_sglist; 12938 remote_sglist = io->io_hdr.remote_sglist; 12939 local_used = 0; 12940 remote_used = 0; 12941 total_used = 0; 12942 12943 /* 12944 * Pull/push the data over the wire from/to the other controller. 12945 * This takes into account the possibility that the local and 12946 * remote sglists may not be identical in terms of the size of 12947 * the elements and the number of elements. 12948 * 12949 * One fundamental assumption here is that the length allocated for 12950 * both the local and remote sglists is identical. Otherwise, we've 12951 * essentially got a coding error of some sort. 12952 */ 12953 isc_ret = CTL_HA_STATUS_SUCCESS; 12954 for (i = 0, j = 0; total_used < io->scsiio.kern_data_len; ) { 12955 uint32_t cur_len; 12956 uint8_t *tmp_ptr; 12957 12958 rq->command = command; 12959 rq->context = io; 12960 12961 /* 12962 * Both pointers should be aligned. But it is possible 12963 * that the allocation length is not. They should both 12964 * also have enough slack left over at the end, though, 12965 * to round up to the next 8 byte boundary. 12966 */ 12967 cur_len = MIN(local_sglist[i].len - local_used, 12968 remote_sglist[j].len - remote_used); 12969 rq->size = cur_len; 12970 12971 tmp_ptr = (uint8_t *)local_sglist[i].addr; 12972 tmp_ptr += local_used; 12973 12974 #if 0 12975 /* Use physical addresses when talking to ISC hardware */ 12976 if ((io->io_hdr.flags & CTL_FLAG_BUS_ADDR) == 0) { 12977 /* XXX KDM use busdma */ 12978 rq->local = vtophys(tmp_ptr); 12979 } else 12980 rq->local = tmp_ptr; 12981 #else 12982 KASSERT((io->io_hdr.flags & CTL_FLAG_BUS_ADDR) == 0, 12983 ("HA does not support BUS_ADDR")); 12984 rq->local = tmp_ptr; 12985 #endif 12986 12987 tmp_ptr = (uint8_t *)remote_sglist[j].addr; 12988 tmp_ptr += remote_used; 12989 rq->remote = tmp_ptr; 12990 12991 rq->callback = NULL; 12992 12993 local_used += cur_len; 12994 if (local_used >= local_sglist[i].len) { 12995 i++; 12996 local_used = 0; 12997 } 12998 12999 remote_used += cur_len; 13000 if (remote_used >= remote_sglist[j].len) { 13001 j++; 13002 remote_used = 0; 13003 } 13004 total_used += cur_len; 13005 13006 if (total_used >= io->scsiio.kern_data_len) 13007 rq->callback = callback; 13008 13009 #if 0 13010 printf("%s: %s: local %p remote %p size %d\n", __func__, 13011 (command == CTL_HA_DT_CMD_WRITE) ? "WRITE" : "READ", 13012 rq->local, rq->remote, rq->size); 13013 #endif 13014 13015 isc_ret = ctl_dt_single(rq); 13016 if (isc_ret > CTL_HA_STATUS_SUCCESS) 13017 break; 13018 } 13019 if (isc_ret != CTL_HA_STATUS_WAIT) { 13020 rq->ret = isc_ret; 13021 callback(rq); 13022 } 13023 13024 return (0); 13025 } 13026 13027 static void 13028 ctl_datamove_remote_read(union ctl_io *io) 13029 { 13030 int retval; 13031 int i; 13032 13033 /* 13034 * This will send an error to the other controller in the case of a 13035 * failure. 13036 */ 13037 retval = ctl_datamove_remote_sgl_setup(io); 13038 if (retval != 0) 13039 return; 13040 13041 retval = ctl_datamove_remote_xfer(io, CTL_HA_DT_CMD_READ, 13042 ctl_datamove_remote_read_cb); 13043 if (retval != 0) { 13044 /* 13045 * Make sure we free memory if there was an error.. The 13046 * ctl_datamove_remote_xfer() function will send the 13047 * datamove done message, or call the callback with an 13048 * error if there is a problem. 13049 */ 13050 for (i = 0; i < io->scsiio.kern_sg_entries; i++) 13051 free(io->io_hdr.local_sglist[i].addr, M_CTL); 13052 free(io->io_hdr.remote_sglist, M_CTL); 13053 io->io_hdr.remote_sglist = NULL; 13054 io->io_hdr.local_sglist = NULL; 13055 } 13056 } 13057 13058 /* 13059 * Process a datamove request from the other controller. This is used for 13060 * XFER mode only, not SER_ONLY mode. For writes, we DMA into local memory 13061 * first. Once that is complete, the data gets DMAed into the remote 13062 * controller's memory. For reads, we DMA from the remote controller's 13063 * memory into our memory first, and then move it out to the FETD. 13064 */ 13065 static void 13066 ctl_datamove_remote(union ctl_io *io) 13067 { 13068 13069 mtx_assert(&control_softc->ctl_lock, MA_NOTOWNED); 13070 13071 if (io->io_hdr.flags & CTL_FLAG_FAILOVER) { 13072 ctl_failover_io(io, /*have_lock*/ 0); 13073 return; 13074 } 13075 13076 /* 13077 * Note that we look for an aborted I/O here, but don't do some of 13078 * the other checks that ctl_datamove() normally does. 13079 * We don't need to run the datamove delay code, since that should 13080 * have been done if need be on the other controller. 13081 */ 13082 if (io->io_hdr.flags & CTL_FLAG_ABORT) { 13083 printf("%s: tag 0x%04x on (%u:%u:%u) aborted\n", __func__, 13084 io->scsiio.tag_num, io->io_hdr.nexus.initid, 13085 io->io_hdr.nexus.targ_port, 13086 io->io_hdr.nexus.targ_lun); 13087 io->io_hdr.port_status = 31338; 13088 ctl_send_datamove_done(io, /*have_lock*/ 0); 13089 return; 13090 } 13091 13092 if ((io->io_hdr.flags & CTL_FLAG_DATA_MASK) == CTL_FLAG_DATA_OUT) 13093 ctl_datamove_remote_write(io); 13094 else if ((io->io_hdr.flags & CTL_FLAG_DATA_MASK) == CTL_FLAG_DATA_IN) 13095 ctl_datamove_remote_read(io); 13096 else { 13097 io->io_hdr.port_status = 31339; 13098 ctl_send_datamove_done(io, /*have_lock*/ 0); 13099 } 13100 } 13101 13102 static void 13103 ctl_process_done(union ctl_io *io) 13104 { 13105 struct ctl_lun *lun; 13106 struct ctl_softc *softc = control_softc; 13107 void (*fe_done)(union ctl_io *io); 13108 union ctl_ha_msg msg; 13109 uint32_t targ_port = io->io_hdr.nexus.targ_port; 13110 13111 CTL_DEBUG_PRINT(("ctl_process_done\n")); 13112 fe_done = softc->ctl_ports[targ_port]->fe_done; 13113 13114 #ifdef CTL_TIME_IO 13115 if ((time_uptime - io->io_hdr.start_time) > ctl_time_io_secs) { 13116 char str[256]; 13117 char path_str[64]; 13118 struct sbuf sb; 13119 13120 ctl_scsi_path_string(io, path_str, sizeof(path_str)); 13121 sbuf_new(&sb, str, sizeof(str), SBUF_FIXEDLEN); 13122 13123 sbuf_cat(&sb, path_str); 13124 switch (io->io_hdr.io_type) { 13125 case CTL_IO_SCSI: 13126 ctl_scsi_command_string(&io->scsiio, NULL, &sb); 13127 sbuf_printf(&sb, "\n"); 13128 sbuf_cat(&sb, path_str); 13129 sbuf_printf(&sb, "Tag: 0x%04x, type %d\n", 13130 io->scsiio.tag_num, io->scsiio.tag_type); 13131 break; 13132 case CTL_IO_TASK: 13133 sbuf_printf(&sb, "Task I/O type: %d, Tag: 0x%04x, " 13134 "Tag Type: %d\n", io->taskio.task_action, 13135 io->taskio.tag_num, io->taskio.tag_type); 13136 break; 13137 default: 13138 panic("%s: Invalid CTL I/O type %d\n", 13139 __func__, io->io_hdr.io_type); 13140 } 13141 sbuf_cat(&sb, path_str); 13142 sbuf_printf(&sb, "ctl_process_done: %jd seconds\n", 13143 (intmax_t)time_uptime - io->io_hdr.start_time); 13144 sbuf_finish(&sb); 13145 printf("%s", sbuf_data(&sb)); 13146 } 13147 #endif /* CTL_TIME_IO */ 13148 13149 switch (io->io_hdr.io_type) { 13150 case CTL_IO_SCSI: 13151 break; 13152 case CTL_IO_TASK: 13153 if (ctl_debug & CTL_DEBUG_INFO) 13154 ctl_io_error_print(io, NULL); 13155 fe_done(io); 13156 return; 13157 default: 13158 panic("%s: Invalid CTL I/O type %d\n", 13159 __func__, io->io_hdr.io_type); 13160 } 13161 13162 lun = (struct ctl_lun *)io->io_hdr.ctl_private[CTL_PRIV_LUN].ptr; 13163 if (lun == NULL) { 13164 CTL_DEBUG_PRINT(("NULL LUN for lun %d\n", 13165 io->io_hdr.nexus.targ_mapped_lun)); 13166 goto bailout; 13167 } 13168 13169 mtx_lock(&lun->lun_lock); 13170 13171 /* 13172 * Check to see if we have any errors to inject here. We only 13173 * inject errors for commands that don't already have errors set. 13174 */ 13175 if (!STAILQ_EMPTY(&lun->error_list) && 13176 ((io->io_hdr.status & CTL_STATUS_MASK) == CTL_SUCCESS) && 13177 ((io->io_hdr.flags & CTL_FLAG_STATUS_SENT) == 0)) 13178 ctl_inject_error(lun, io); 13179 13180 /* 13181 * XXX KDM how do we treat commands that aren't completed 13182 * successfully? 13183 * 13184 * XXX KDM should we also track I/O latency? 13185 */ 13186 if ((io->io_hdr.status & CTL_STATUS_MASK) == CTL_SUCCESS && 13187 io->io_hdr.io_type == CTL_IO_SCSI) { 13188 #ifdef CTL_TIME_IO 13189 struct bintime cur_bt; 13190 #endif 13191 int type; 13192 13193 if ((io->io_hdr.flags & CTL_FLAG_DATA_MASK) == 13194 CTL_FLAG_DATA_IN) 13195 type = CTL_STATS_READ; 13196 else if ((io->io_hdr.flags & CTL_FLAG_DATA_MASK) == 13197 CTL_FLAG_DATA_OUT) 13198 type = CTL_STATS_WRITE; 13199 else 13200 type = CTL_STATS_NO_IO; 13201 13202 lun->stats.ports[targ_port].bytes[type] += 13203 io->scsiio.kern_total_len; 13204 lun->stats.ports[targ_port].operations[type]++; 13205 #ifdef CTL_TIME_IO 13206 bintime_add(&lun->stats.ports[targ_port].dma_time[type], 13207 &io->io_hdr.dma_bt); 13208 getbinuptime(&cur_bt); 13209 bintime_sub(&cur_bt, &io->io_hdr.start_bt); 13210 bintime_add(&lun->stats.ports[targ_port].time[type], &cur_bt); 13211 #endif 13212 lun->stats.ports[targ_port].num_dmas[type] += 13213 io->io_hdr.num_dmas; 13214 } 13215 13216 /* 13217 * Remove this from the OOA queue. 13218 */ 13219 TAILQ_REMOVE(&lun->ooa_queue, &io->io_hdr, ooa_links); 13220 #ifdef CTL_TIME_IO 13221 if (TAILQ_EMPTY(&lun->ooa_queue)) 13222 lun->last_busy = getsbinuptime(); 13223 #endif 13224 13225 /* 13226 * Run through the blocked queue on this LUN and see if anything 13227 * has become unblocked, now that this transaction is done. 13228 */ 13229 ctl_check_blocked(lun); 13230 13231 /* 13232 * If the LUN has been invalidated, free it if there is nothing 13233 * left on its OOA queue. 13234 */ 13235 if ((lun->flags & CTL_LUN_INVALID) 13236 && TAILQ_EMPTY(&lun->ooa_queue)) { 13237 mtx_unlock(&lun->lun_lock); 13238 mtx_lock(&softc->ctl_lock); 13239 ctl_free_lun(lun); 13240 mtx_unlock(&softc->ctl_lock); 13241 } else 13242 mtx_unlock(&lun->lun_lock); 13243 13244 bailout: 13245 13246 /* 13247 * If this command has been aborted, make sure we set the status 13248 * properly. The FETD is responsible for freeing the I/O and doing 13249 * whatever it needs to do to clean up its state. 13250 */ 13251 if (io->io_hdr.flags & CTL_FLAG_ABORT) 13252 ctl_set_task_aborted(&io->scsiio); 13253 13254 /* 13255 * If enabled, print command error status. 13256 */ 13257 if ((io->io_hdr.status & CTL_STATUS_MASK) != CTL_SUCCESS && 13258 (ctl_debug & CTL_DEBUG_INFO) != 0) 13259 ctl_io_error_print(io, NULL); 13260 13261 /* 13262 * Tell the FETD or the other shelf controller we're done with this 13263 * command. Note that only SCSI commands get to this point. Task 13264 * management commands are completed above. 13265 */ 13266 if ((softc->ha_mode != CTL_HA_MODE_XFER) && 13267 (io->io_hdr.flags & CTL_FLAG_SENT_2OTHER_SC)) { 13268 memset(&msg, 0, sizeof(msg)); 13269 msg.hdr.msg_type = CTL_MSG_FINISH_IO; 13270 msg.hdr.serializing_sc = io->io_hdr.serializing_sc; 13271 msg.hdr.nexus = io->io_hdr.nexus; 13272 ctl_ha_msg_send(CTL_HA_CHAN_CTL, &msg, 13273 sizeof(msg.scsi) - sizeof(msg.scsi.sense_data), 13274 M_WAITOK); 13275 } 13276 13277 fe_done(io); 13278 } 13279 13280 #ifdef CTL_WITH_CA 13281 /* 13282 * Front end should call this if it doesn't do autosense. When the request 13283 * sense comes back in from the initiator, we'll dequeue this and send it. 13284 */ 13285 int 13286 ctl_queue_sense(union ctl_io *io) 13287 { 13288 struct ctl_lun *lun; 13289 struct ctl_port *port; 13290 struct ctl_softc *softc; 13291 uint32_t initidx, targ_lun; 13292 13293 softc = control_softc; 13294 13295 CTL_DEBUG_PRINT(("ctl_queue_sense\n")); 13296 13297 /* 13298 * LUN lookup will likely move to the ctl_work_thread() once we 13299 * have our new queueing infrastructure (that doesn't put things on 13300 * a per-LUN queue initially). That is so that we can handle 13301 * things like an INQUIRY to a LUN that we don't have enabled. We 13302 * can't deal with that right now. 13303 */ 13304 mtx_lock(&softc->ctl_lock); 13305 13306 /* 13307 * If we don't have a LUN for this, just toss the sense 13308 * information. 13309 */ 13310 port = ctl_io_port(&ctsio->io_hdr); 13311 targ_lun = ctl_lun_map_from_port(port, io->io_hdr.nexus.targ_lun); 13312 if ((targ_lun < CTL_MAX_LUNS) 13313 && (softc->ctl_luns[targ_lun] != NULL)) 13314 lun = softc->ctl_luns[targ_lun]; 13315 else 13316 goto bailout; 13317 13318 initidx = ctl_get_initindex(&io->io_hdr.nexus); 13319 13320 mtx_lock(&lun->lun_lock); 13321 /* 13322 * Already have CA set for this LUN...toss the sense information. 13323 */ 13324 if (ctl_is_set(lun->have_ca, initidx)) { 13325 mtx_unlock(&lun->lun_lock); 13326 goto bailout; 13327 } 13328 13329 memcpy(&lun->pending_sense[initidx], &io->scsiio.sense_data, 13330 MIN(sizeof(lun->pending_sense[initidx]), 13331 sizeof(io->scsiio.sense_data))); 13332 ctl_set_mask(lun->have_ca, initidx); 13333 mtx_unlock(&lun->lun_lock); 13334 13335 bailout: 13336 mtx_unlock(&softc->ctl_lock); 13337 13338 ctl_free_io(io); 13339 13340 return (CTL_RETVAL_COMPLETE); 13341 } 13342 #endif 13343 13344 /* 13345 * Primary command inlet from frontend ports. All SCSI and task I/O 13346 * requests must go through this function. 13347 */ 13348 int 13349 ctl_queue(union ctl_io *io) 13350 { 13351 struct ctl_port *port; 13352 13353 CTL_DEBUG_PRINT(("ctl_queue cdb[0]=%02X\n", io->scsiio.cdb[0])); 13354 13355 #ifdef CTL_TIME_IO 13356 io->io_hdr.start_time = time_uptime; 13357 getbinuptime(&io->io_hdr.start_bt); 13358 #endif /* CTL_TIME_IO */ 13359 13360 /* Map FE-specific LUN ID into global one. */ 13361 port = ctl_io_port(&io->io_hdr); 13362 io->io_hdr.nexus.targ_mapped_lun = 13363 ctl_lun_map_from_port(port, io->io_hdr.nexus.targ_lun); 13364 13365 switch (io->io_hdr.io_type) { 13366 case CTL_IO_SCSI: 13367 case CTL_IO_TASK: 13368 if (ctl_debug & CTL_DEBUG_CDB) 13369 ctl_io_print(io); 13370 ctl_enqueue_incoming(io); 13371 break; 13372 default: 13373 printf("ctl_queue: unknown I/O type %d\n", io->io_hdr.io_type); 13374 return (EINVAL); 13375 } 13376 13377 return (CTL_RETVAL_COMPLETE); 13378 } 13379 13380 #ifdef CTL_IO_DELAY 13381 static void 13382 ctl_done_timer_wakeup(void *arg) 13383 { 13384 union ctl_io *io; 13385 13386 io = (union ctl_io *)arg; 13387 ctl_done(io); 13388 } 13389 #endif /* CTL_IO_DELAY */ 13390 13391 void 13392 ctl_serseq_done(union ctl_io *io) 13393 { 13394 struct ctl_lun *lun; 13395 13396 lun = (struct ctl_lun *)io->io_hdr.ctl_private[CTL_PRIV_LUN].ptr; 13397 if (lun->be_lun == NULL || 13398 lun->be_lun->serseq == CTL_LUN_SERSEQ_OFF) 13399 return; 13400 mtx_lock(&lun->lun_lock); 13401 io->io_hdr.flags |= CTL_FLAG_SERSEQ_DONE; 13402 ctl_check_blocked(lun); 13403 mtx_unlock(&lun->lun_lock); 13404 } 13405 13406 void 13407 ctl_done(union ctl_io *io) 13408 { 13409 13410 /* 13411 * Enable this to catch duplicate completion issues. 13412 */ 13413 #if 0 13414 if (io->io_hdr.flags & CTL_FLAG_ALREADY_DONE) { 13415 printf("%s: type %d msg %d cdb %x iptl: " 13416 "%u:%u:%u tag 0x%04x " 13417 "flag %#x status %x\n", 13418 __func__, 13419 io->io_hdr.io_type, 13420 io->io_hdr.msg_type, 13421 io->scsiio.cdb[0], 13422 io->io_hdr.nexus.initid, 13423 io->io_hdr.nexus.targ_port, 13424 io->io_hdr.nexus.targ_lun, 13425 (io->io_hdr.io_type == 13426 CTL_IO_TASK) ? 13427 io->taskio.tag_num : 13428 io->scsiio.tag_num, 13429 io->io_hdr.flags, 13430 io->io_hdr.status); 13431 } else 13432 io->io_hdr.flags |= CTL_FLAG_ALREADY_DONE; 13433 #endif 13434 13435 /* 13436 * This is an internal copy of an I/O, and should not go through 13437 * the normal done processing logic. 13438 */ 13439 if (io->io_hdr.flags & CTL_FLAG_INT_COPY) 13440 return; 13441 13442 #ifdef CTL_IO_DELAY 13443 if (io->io_hdr.flags & CTL_FLAG_DELAY_DONE) { 13444 struct ctl_lun *lun; 13445 13446 lun =(struct ctl_lun *)io->io_hdr.ctl_private[CTL_PRIV_LUN].ptr; 13447 13448 io->io_hdr.flags &= ~CTL_FLAG_DELAY_DONE; 13449 } else { 13450 struct ctl_lun *lun; 13451 13452 lun =(struct ctl_lun *)io->io_hdr.ctl_private[CTL_PRIV_LUN].ptr; 13453 13454 if ((lun != NULL) 13455 && (lun->delay_info.done_delay > 0)) { 13456 13457 callout_init(&io->io_hdr.delay_callout, /*mpsafe*/ 1); 13458 io->io_hdr.flags |= CTL_FLAG_DELAY_DONE; 13459 callout_reset(&io->io_hdr.delay_callout, 13460 lun->delay_info.done_delay * hz, 13461 ctl_done_timer_wakeup, io); 13462 if (lun->delay_info.done_type == CTL_DELAY_TYPE_ONESHOT) 13463 lun->delay_info.done_delay = 0; 13464 return; 13465 } 13466 } 13467 #endif /* CTL_IO_DELAY */ 13468 13469 ctl_enqueue_done(io); 13470 } 13471 13472 static void 13473 ctl_work_thread(void *arg) 13474 { 13475 struct ctl_thread *thr = (struct ctl_thread *)arg; 13476 struct ctl_softc *softc = thr->ctl_softc; 13477 union ctl_io *io; 13478 int retval; 13479 13480 CTL_DEBUG_PRINT(("ctl_work_thread starting\n")); 13481 13482 for (;;) { 13483 /* 13484 * We handle the queues in this order: 13485 * - ISC 13486 * - done queue (to free up resources, unblock other commands) 13487 * - RtR queue 13488 * - incoming queue 13489 * 13490 * If those queues are empty, we break out of the loop and 13491 * go to sleep. 13492 */ 13493 mtx_lock(&thr->queue_lock); 13494 io = (union ctl_io *)STAILQ_FIRST(&thr->isc_queue); 13495 if (io != NULL) { 13496 STAILQ_REMOVE_HEAD(&thr->isc_queue, links); 13497 mtx_unlock(&thr->queue_lock); 13498 ctl_handle_isc(io); 13499 continue; 13500 } 13501 io = (union ctl_io *)STAILQ_FIRST(&thr->done_queue); 13502 if (io != NULL) { 13503 STAILQ_REMOVE_HEAD(&thr->done_queue, links); 13504 /* clear any blocked commands, call fe_done */ 13505 mtx_unlock(&thr->queue_lock); 13506 ctl_process_done(io); 13507 continue; 13508 } 13509 io = (union ctl_io *)STAILQ_FIRST(&thr->incoming_queue); 13510 if (io != NULL) { 13511 STAILQ_REMOVE_HEAD(&thr->incoming_queue, links); 13512 mtx_unlock(&thr->queue_lock); 13513 if (io->io_hdr.io_type == CTL_IO_TASK) 13514 ctl_run_task(io); 13515 else 13516 ctl_scsiio_precheck(softc, &io->scsiio); 13517 continue; 13518 } 13519 io = (union ctl_io *)STAILQ_FIRST(&thr->rtr_queue); 13520 if (io != NULL) { 13521 STAILQ_REMOVE_HEAD(&thr->rtr_queue, links); 13522 mtx_unlock(&thr->queue_lock); 13523 retval = ctl_scsiio(&io->scsiio); 13524 if (retval != CTL_RETVAL_COMPLETE) 13525 CTL_DEBUG_PRINT(("ctl_scsiio failed\n")); 13526 continue; 13527 } 13528 13529 /* Sleep until we have something to do. */ 13530 mtx_sleep(thr, &thr->queue_lock, PDROP | PRIBIO, "-", 0); 13531 } 13532 } 13533 13534 static void 13535 ctl_lun_thread(void *arg) 13536 { 13537 struct ctl_softc *softc = (struct ctl_softc *)arg; 13538 struct ctl_be_lun *be_lun; 13539 13540 CTL_DEBUG_PRINT(("ctl_lun_thread starting\n")); 13541 13542 for (;;) { 13543 mtx_lock(&softc->ctl_lock); 13544 be_lun = STAILQ_FIRST(&softc->pending_lun_queue); 13545 if (be_lun != NULL) { 13546 STAILQ_REMOVE_HEAD(&softc->pending_lun_queue, links); 13547 mtx_unlock(&softc->ctl_lock); 13548 ctl_create_lun(be_lun); 13549 continue; 13550 } 13551 13552 /* Sleep until we have something to do. */ 13553 mtx_sleep(&softc->pending_lun_queue, &softc->ctl_lock, 13554 PDROP | PRIBIO, "-", 0); 13555 } 13556 } 13557 13558 static void 13559 ctl_thresh_thread(void *arg) 13560 { 13561 struct ctl_softc *softc = (struct ctl_softc *)arg; 13562 struct ctl_lun *lun; 13563 struct scsi_da_rw_recovery_page *rwpage; 13564 struct ctl_logical_block_provisioning_page *page; 13565 const char *attr; 13566 union ctl_ha_msg msg; 13567 uint64_t thres, val; 13568 int i, e, set; 13569 13570 CTL_DEBUG_PRINT(("ctl_thresh_thread starting\n")); 13571 13572 for (;;) { 13573 mtx_lock(&softc->ctl_lock); 13574 STAILQ_FOREACH(lun, &softc->lun_list, links) { 13575 if ((lun->flags & CTL_LUN_DISABLED) || 13576 (lun->flags & CTL_LUN_NO_MEDIA) || 13577 lun->backend->lun_attr == NULL) 13578 continue; 13579 if ((lun->flags & CTL_LUN_PRIMARY_SC) == 0 && 13580 softc->ha_mode == CTL_HA_MODE_XFER) 13581 continue; 13582 rwpage = &lun->mode_pages.rw_er_page[CTL_PAGE_CURRENT]; 13583 if ((rwpage->byte8 & SMS_RWER_LBPERE) == 0) 13584 continue; 13585 e = 0; 13586 page = &lun->mode_pages.lbp_page[CTL_PAGE_CURRENT]; 13587 for (i = 0; i < CTL_NUM_LBP_THRESH; i++) { 13588 if ((page->descr[i].flags & SLBPPD_ENABLED) == 0) 13589 continue; 13590 thres = scsi_4btoul(page->descr[i].count); 13591 thres <<= CTL_LBP_EXPONENT; 13592 switch (page->descr[i].resource) { 13593 case 0x01: 13594 attr = "blocksavail"; 13595 break; 13596 case 0x02: 13597 attr = "blocksused"; 13598 break; 13599 case 0xf1: 13600 attr = "poolblocksavail"; 13601 break; 13602 case 0xf2: 13603 attr = "poolblocksused"; 13604 break; 13605 default: 13606 continue; 13607 } 13608 mtx_unlock(&softc->ctl_lock); // XXX 13609 val = lun->backend->lun_attr( 13610 lun->be_lun->be_lun, attr); 13611 mtx_lock(&softc->ctl_lock); 13612 if (val == UINT64_MAX) 13613 continue; 13614 if ((page->descr[i].flags & SLBPPD_ARMING_MASK) 13615 == SLBPPD_ARMING_INC) 13616 e = (val >= thres); 13617 else 13618 e = (val <= thres); 13619 if (e) 13620 break; 13621 } 13622 mtx_lock(&lun->lun_lock); 13623 if (e) { 13624 scsi_u64to8b((uint8_t *)&page->descr[i] - 13625 (uint8_t *)page, lun->ua_tpt_info); 13626 if (lun->lasttpt == 0 || 13627 time_uptime - lun->lasttpt >= CTL_LBP_UA_PERIOD) { 13628 lun->lasttpt = time_uptime; 13629 ctl_est_ua_all(lun, -1, CTL_UA_THIN_PROV_THRES); 13630 set = 1; 13631 } else 13632 set = 0; 13633 } else { 13634 lun->lasttpt = 0; 13635 ctl_clr_ua_all(lun, -1, CTL_UA_THIN_PROV_THRES); 13636 set = -1; 13637 } 13638 mtx_unlock(&lun->lun_lock); 13639 if (set != 0 && 13640 lun->ctl_softc->ha_mode == CTL_HA_MODE_XFER) { 13641 /* Send msg to other side. */ 13642 bzero(&msg.ua, sizeof(msg.ua)); 13643 msg.hdr.msg_type = CTL_MSG_UA; 13644 msg.hdr.nexus.initid = -1; 13645 msg.hdr.nexus.targ_port = -1; 13646 msg.hdr.nexus.targ_lun = lun->lun; 13647 msg.hdr.nexus.targ_mapped_lun = lun->lun; 13648 msg.ua.ua_all = 1; 13649 msg.ua.ua_set = (set > 0); 13650 msg.ua.ua_type = CTL_UA_THIN_PROV_THRES; 13651 memcpy(msg.ua.ua_info, lun->ua_tpt_info, 8); 13652 mtx_unlock(&softc->ctl_lock); // XXX 13653 ctl_ha_msg_send(CTL_HA_CHAN_CTL, &msg, 13654 sizeof(msg.ua), M_WAITOK); 13655 mtx_lock(&softc->ctl_lock); 13656 } 13657 } 13658 mtx_unlock(&softc->ctl_lock); 13659 pause("-", CTL_LBP_PERIOD * hz); 13660 } 13661 } 13662 13663 static void 13664 ctl_enqueue_incoming(union ctl_io *io) 13665 { 13666 struct ctl_softc *softc = control_softc; 13667 struct ctl_thread *thr; 13668 u_int idx; 13669 13670 idx = (io->io_hdr.nexus.targ_port * 127 + 13671 io->io_hdr.nexus.initid) % worker_threads; 13672 thr = &softc->threads[idx]; 13673 mtx_lock(&thr->queue_lock); 13674 STAILQ_INSERT_TAIL(&thr->incoming_queue, &io->io_hdr, links); 13675 mtx_unlock(&thr->queue_lock); 13676 wakeup(thr); 13677 } 13678 13679 static void 13680 ctl_enqueue_rtr(union ctl_io *io) 13681 { 13682 struct ctl_softc *softc = control_softc; 13683 struct ctl_thread *thr; 13684 13685 thr = &softc->threads[io->io_hdr.nexus.targ_mapped_lun % worker_threads]; 13686 mtx_lock(&thr->queue_lock); 13687 STAILQ_INSERT_TAIL(&thr->rtr_queue, &io->io_hdr, links); 13688 mtx_unlock(&thr->queue_lock); 13689 wakeup(thr); 13690 } 13691 13692 static void 13693 ctl_enqueue_done(union ctl_io *io) 13694 { 13695 struct ctl_softc *softc = control_softc; 13696 struct ctl_thread *thr; 13697 13698 thr = &softc->threads[io->io_hdr.nexus.targ_mapped_lun % worker_threads]; 13699 mtx_lock(&thr->queue_lock); 13700 STAILQ_INSERT_TAIL(&thr->done_queue, &io->io_hdr, links); 13701 mtx_unlock(&thr->queue_lock); 13702 wakeup(thr); 13703 } 13704 13705 static void 13706 ctl_enqueue_isc(union ctl_io *io) 13707 { 13708 struct ctl_softc *softc = control_softc; 13709 struct ctl_thread *thr; 13710 13711 thr = &softc->threads[io->io_hdr.nexus.targ_mapped_lun % worker_threads]; 13712 mtx_lock(&thr->queue_lock); 13713 STAILQ_INSERT_TAIL(&thr->isc_queue, &io->io_hdr, links); 13714 mtx_unlock(&thr->queue_lock); 13715 wakeup(thr); 13716 } 13717 13718 /* 13719 * vim: ts=8 13720 */ 13721