1098ca2bdSWarner Losh /*- 20b80d21bSMatt Jacob * Generic routines for LSI Fusion adapters. 39b631363SMatt Jacob * FreeBSD Version. 49b631363SMatt Jacob * 59b631363SMatt Jacob * Copyright (c) 2000, 2001 by Greg Ansley 69b631363SMatt Jacob * 79b631363SMatt Jacob * Redistribution and use in source and binary forms, with or without 89b631363SMatt Jacob * modification, are permitted provided that the following conditions 99b631363SMatt Jacob * are met: 109b631363SMatt Jacob * 1. Redistributions of source code must retain the above copyright 119b631363SMatt Jacob * notice immediately at the beginning of the file, without modification, 129b631363SMatt Jacob * this list of conditions, and the following disclaimer. 139b631363SMatt Jacob * 2. The name of the author may not be used to endorse or promote products 149b631363SMatt Jacob * derived from this software without specific prior written permission. 159b631363SMatt Jacob * 169b631363SMatt Jacob * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND 179b631363SMatt Jacob * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 189b631363SMatt Jacob * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE 199b631363SMatt Jacob * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE FOR 209b631363SMatt Jacob * ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL 219b631363SMatt Jacob * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS 229b631363SMatt Jacob * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) 239b631363SMatt Jacob * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT 249b631363SMatt Jacob * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY 259b631363SMatt Jacob * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF 269b631363SMatt Jacob * SUCH DAMAGE. 279b631363SMatt Jacob */ 280b80d21bSMatt Jacob /*- 290b80d21bSMatt Jacob * Copyright (c) 2002, 2006 by Matthew Jacob 300b80d21bSMatt Jacob * All rights reserved. 310b80d21bSMatt Jacob * 320b80d21bSMatt Jacob * Redistribution and use in source and binary forms, with or without 330b80d21bSMatt Jacob * modification, are permitted provided that the following conditions are 340b80d21bSMatt Jacob * met: 350b80d21bSMatt Jacob * 1. Redistributions of source code must retain the above copyright 360b80d21bSMatt Jacob * notice, this list of conditions and the following disclaimer. 370b80d21bSMatt Jacob * 2. Redistributions in binary form must reproduce at minimum a disclaimer 380b80d21bSMatt Jacob * substantially similar to the "NO WARRANTY" disclaimer below 390b80d21bSMatt Jacob * ("Disclaimer") and any redistribution must be conditioned upon including 400b80d21bSMatt Jacob * a substantially similar Disclaimer requirement for further binary 410b80d21bSMatt Jacob * redistribution. 420b80d21bSMatt Jacob * 3. Neither the names of the above listed copyright holders nor the names 430b80d21bSMatt Jacob * of any contributors may be used to endorse or promote products derived 440b80d21bSMatt Jacob * from this software without specific prior written permission. 450b80d21bSMatt Jacob * 460b80d21bSMatt Jacob * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" 470b80d21bSMatt Jacob * AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 480b80d21bSMatt Jacob * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE 490b80d21bSMatt Jacob * ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE 500b80d21bSMatt Jacob * LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR 510b80d21bSMatt Jacob * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF 520b80d21bSMatt Jacob * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS 530b80d21bSMatt Jacob * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN 540b80d21bSMatt Jacob * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) 550b80d21bSMatt Jacob * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF THE COPYRIGHT 560b80d21bSMatt Jacob * OWNER OR CONTRIBUTOR IS ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. 570b80d21bSMatt Jacob * 580b80d21bSMatt Jacob * Support from Chris Ellsworth in order to make SAS adapters work 590b80d21bSMatt Jacob * is gratefully acknowledged. 60ec5fe39dSMatt Jacob * 61ec5fe39dSMatt Jacob * 62ec5fe39dSMatt Jacob * Support from LSI-Logic has also gone a great deal toward making this a 63ec5fe39dSMatt Jacob * workable subsystem and is gratefully acknowledged. 640b80d21bSMatt Jacob */ 650b80d21bSMatt Jacob /*- 66b0a2fdeeSScott Long * Copyright (c) 2004, Avid Technology, Inc. and its contributors. 67b0a2fdeeSScott Long * Copyright (c) 2005, WHEEL Sp. z o.o. 68b0a2fdeeSScott Long * Copyright (c) 2004, 2005 Justin T. Gibbs 69b0a2fdeeSScott Long * All rights reserved. 70b0a2fdeeSScott Long * 71b0a2fdeeSScott Long * Redistribution and use in source and binary forms, with or without 72b0a2fdeeSScott Long * modification, are permitted provided that the following conditions are 73b0a2fdeeSScott Long * met: 74b0a2fdeeSScott Long * 1. Redistributions of source code must retain the above copyright 75b0a2fdeeSScott Long * notice, this list of conditions and the following disclaimer. 76b0a2fdeeSScott Long * 2. Redistributions in binary form must reproduce at minimum a disclaimer 77b0a2fdeeSScott Long * substantially similar to the "NO WARRANTY" disclaimer below 78b0a2fdeeSScott Long * ("Disclaimer") and any redistribution must be conditioned upon including 79b0a2fdeeSScott Long * a substantially similar Disclaimer requirement for further binary 80b0a2fdeeSScott Long * redistribution. 81286e947fSJustin T. Gibbs * 3. Neither the names of the above listed copyright holders nor the names 82286e947fSJustin T. Gibbs * of any contributors may be used to endorse or promote products derived 83286e947fSJustin T. Gibbs * from this software without specific prior written permission. 84b0a2fdeeSScott Long * 85b0a2fdeeSScott Long * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" 86b0a2fdeeSScott Long * AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 87b0a2fdeeSScott Long * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE 88b0a2fdeeSScott Long * ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE 89b0a2fdeeSScott Long * LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR 90b0a2fdeeSScott Long * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF 91b0a2fdeeSScott Long * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS 92b0a2fdeeSScott Long * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN 93b0a2fdeeSScott Long * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) 94b0a2fdeeSScott Long * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF THE COPYRIGHT 95b0a2fdeeSScott Long * OWNER OR CONTRIBUTOR IS ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. 969b631363SMatt Jacob */ 979b631363SMatt Jacob 989295c6c5SDavid E. O'Brien #include <sys/cdefs.h> 999295c6c5SDavid E. O'Brien __FBSDID("$FreeBSD$"); 1009295c6c5SDavid E. O'Brien 101b0a2fdeeSScott Long #include <dev/mpt/mpt.h> 102b0a2fdeeSScott Long #include <dev/mpt/mpt_cam.h> /* XXX For static handler registration */ 103b0a2fdeeSScott Long #include <dev/mpt/mpt_raid.h> /* XXX For static handler registration */ 104b0a2fdeeSScott Long 105b0a2fdeeSScott Long #include <dev/mpt/mpilib/mpi.h> 106b0a2fdeeSScott Long #include <dev/mpt/mpilib/mpi_ioc.h> 107c87e3f83SMatt Jacob #include <dev/mpt/mpilib/mpi_fc.h> 108c87e3f83SMatt Jacob #include <dev/mpt/mpilib/mpi_targ.h> 109b0a2fdeeSScott Long 110b0a2fdeeSScott Long #include <sys/sysctl.h> 1117104aeefSMatt Jacob 1129b631363SMatt Jacob #define MPT_MAX_TRYS 3 1139b631363SMatt Jacob #define MPT_MAX_WAIT 300000 1149b631363SMatt Jacob 1159b631363SMatt Jacob static int maxwait_ack = 0; 1169b631363SMatt Jacob static int maxwait_int = 0; 1179b631363SMatt Jacob static int maxwait_state = 0; 1189b631363SMatt Jacob 119a7303be1SMatt Jacob static TAILQ_HEAD(, mpt_softc) mpt_tailq = TAILQ_HEAD_INITIALIZER(mpt_tailq); 120b0a2fdeeSScott Long mpt_reply_handler_t *mpt_reply_handlers[MPT_NUM_REPLY_HANDLERS]; 1219b631363SMatt Jacob 122b0a2fdeeSScott Long static mpt_reply_handler_t mpt_default_reply_handler; 123b0a2fdeeSScott Long static mpt_reply_handler_t mpt_config_reply_handler; 124b0a2fdeeSScott Long static mpt_reply_handler_t mpt_handshake_reply_handler; 125b0a2fdeeSScott Long static mpt_reply_handler_t mpt_event_reply_handler; 126b0a2fdeeSScott Long static void mpt_send_event_ack(struct mpt_softc *mpt, request_t *ack_req, 127b0a2fdeeSScott Long MSG_EVENT_NOTIFY_REPLY *msg, uint32_t context); 128444dd2b6SMatt Jacob static int mpt_send_event_request(struct mpt_softc *mpt, int onoff); 129b0a2fdeeSScott Long static int mpt_soft_reset(struct mpt_softc *mpt); 130b0a2fdeeSScott Long static void mpt_hard_reset(struct mpt_softc *mpt); 131b0a2fdeeSScott Long static int mpt_configure_ioc(struct mpt_softc *mpt); 132c87e3f83SMatt Jacob static int mpt_enable_ioc(struct mpt_softc *mpt, int); 133b0a2fdeeSScott Long 134b0a2fdeeSScott Long /************************* Personality Module Support *************************/ 135b0a2fdeeSScott Long /* 136b0a2fdeeSScott Long * We include one extra entry that is guaranteed to be NULL 137b0a2fdeeSScott Long * to simplify our itterator. 138b0a2fdeeSScott Long */ 139b0a2fdeeSScott Long static struct mpt_personality *mpt_personalities[MPT_MAX_PERSONALITIES + 1]; 140b0a2fdeeSScott Long static __inline struct mpt_personality* 141b0a2fdeeSScott Long mpt_pers_find(struct mpt_softc *, u_int); 142b0a2fdeeSScott Long static __inline struct mpt_personality* 143b0a2fdeeSScott Long mpt_pers_find_reverse(struct mpt_softc *, u_int); 144b0a2fdeeSScott Long 145b0a2fdeeSScott Long static __inline struct mpt_personality * 146b0a2fdeeSScott Long mpt_pers_find(struct mpt_softc *mpt, u_int start_at) 147b0a2fdeeSScott Long { 148b0a2fdeeSScott Long KASSERT(start_at <= MPT_MAX_PERSONALITIES, 149b0a2fdeeSScott Long ("mpt_pers_find: starting position out of range\n")); 150b0a2fdeeSScott Long 151b0a2fdeeSScott Long while (start_at < MPT_MAX_PERSONALITIES 152b0a2fdeeSScott Long && (mpt->mpt_pers_mask & (0x1 << start_at)) == 0) { 153b0a2fdeeSScott Long start_at++; 154b0a2fdeeSScott Long } 155b0a2fdeeSScott Long return (mpt_personalities[start_at]); 156b0a2fdeeSScott Long } 157b0a2fdeeSScott Long 158b0a2fdeeSScott Long /* 159c87e3f83SMatt Jacob * Used infrequently, so no need to optimize like a forward 160b0a2fdeeSScott Long * traversal where we use the MAX+1 is guaranteed to be NULL 161b0a2fdeeSScott Long * trick. 162b0a2fdeeSScott Long */ 163b0a2fdeeSScott Long static __inline struct mpt_personality * 164b0a2fdeeSScott Long mpt_pers_find_reverse(struct mpt_softc *mpt, u_int start_at) 165b0a2fdeeSScott Long { 166b0a2fdeeSScott Long while (start_at < MPT_MAX_PERSONALITIES 167b0a2fdeeSScott Long && (mpt->mpt_pers_mask & (0x1 << start_at)) == 0) { 168b0a2fdeeSScott Long start_at--; 169b0a2fdeeSScott Long } 170b0a2fdeeSScott Long if (start_at < MPT_MAX_PERSONALITIES) 171b0a2fdeeSScott Long return (mpt_personalities[start_at]); 172b0a2fdeeSScott Long return (NULL); 173b0a2fdeeSScott Long } 174b0a2fdeeSScott Long 175b0a2fdeeSScott Long #define MPT_PERS_FOREACH(mpt, pers) \ 176b0a2fdeeSScott Long for (pers = mpt_pers_find(mpt, /*start_at*/0); \ 177b0a2fdeeSScott Long pers != NULL; \ 178b0a2fdeeSScott Long pers = mpt_pers_find(mpt, /*start_at*/pers->id+1)) 179b0a2fdeeSScott Long 180b0a2fdeeSScott Long #define MPT_PERS_FOREACH_REVERSE(mpt, pers) \ 181b0a2fdeeSScott Long for (pers = mpt_pers_find_reverse(mpt, MPT_MAX_PERSONALITIES-1);\ 182b0a2fdeeSScott Long pers != NULL; \ 183b0a2fdeeSScott Long pers = mpt_pers_find_reverse(mpt, /*start_at*/pers->id-1)) 184b0a2fdeeSScott Long 185b0a2fdeeSScott Long static mpt_load_handler_t mpt_stdload; 186b0a2fdeeSScott Long static mpt_probe_handler_t mpt_stdprobe; 187b0a2fdeeSScott Long static mpt_attach_handler_t mpt_stdattach; 188c87e3f83SMatt Jacob static mpt_enable_handler_t mpt_stdenable; 189a7303be1SMatt Jacob static mpt_ready_handler_t mpt_stdready; 190b0a2fdeeSScott Long static mpt_event_handler_t mpt_stdevent; 191b0a2fdeeSScott Long static mpt_reset_handler_t mpt_stdreset; 192b0a2fdeeSScott Long static mpt_shutdown_handler_t mpt_stdshutdown; 193b0a2fdeeSScott Long static mpt_detach_handler_t mpt_stddetach; 194b0a2fdeeSScott Long static mpt_unload_handler_t mpt_stdunload; 195b0a2fdeeSScott Long static struct mpt_personality mpt_default_personality = 196b0a2fdeeSScott Long { 197b0a2fdeeSScott Long .load = mpt_stdload, 198b0a2fdeeSScott Long .probe = mpt_stdprobe, 199b0a2fdeeSScott Long .attach = mpt_stdattach, 200c87e3f83SMatt Jacob .enable = mpt_stdenable, 201a7303be1SMatt Jacob .ready = mpt_stdready, 202b0a2fdeeSScott Long .event = mpt_stdevent, 203b0a2fdeeSScott Long .reset = mpt_stdreset, 204b0a2fdeeSScott Long .shutdown = mpt_stdshutdown, 205b0a2fdeeSScott Long .detach = mpt_stddetach, 206b0a2fdeeSScott Long .unload = mpt_stdunload 207b0a2fdeeSScott Long }; 208b0a2fdeeSScott Long 209b0a2fdeeSScott Long static mpt_load_handler_t mpt_core_load; 210b0a2fdeeSScott Long static mpt_attach_handler_t mpt_core_attach; 211c87e3f83SMatt Jacob static mpt_enable_handler_t mpt_core_enable; 212b0a2fdeeSScott Long static mpt_reset_handler_t mpt_core_ioc_reset; 213b0a2fdeeSScott Long static mpt_event_handler_t mpt_core_event; 214b0a2fdeeSScott Long static mpt_shutdown_handler_t mpt_core_shutdown; 215b0a2fdeeSScott Long static mpt_shutdown_handler_t mpt_core_detach; 216b0a2fdeeSScott Long static mpt_unload_handler_t mpt_core_unload; 217b0a2fdeeSScott Long static struct mpt_personality mpt_core_personality = 218b0a2fdeeSScott Long { 219b0a2fdeeSScott Long .name = "mpt_core", 220b0a2fdeeSScott Long .load = mpt_core_load, 221b0a2fdeeSScott Long .attach = mpt_core_attach, 222c87e3f83SMatt Jacob .enable = mpt_core_enable, 223b0a2fdeeSScott Long .event = mpt_core_event, 224b0a2fdeeSScott Long .reset = mpt_core_ioc_reset, 225b0a2fdeeSScott Long .shutdown = mpt_core_shutdown, 226b0a2fdeeSScott Long .detach = mpt_core_detach, 227b0a2fdeeSScott Long .unload = mpt_core_unload, 228b0a2fdeeSScott Long }; 229b0a2fdeeSScott Long 230b0a2fdeeSScott Long /* 231b0a2fdeeSScott Long * Manual declaration so that DECLARE_MPT_PERSONALITY doesn't need 232b0a2fdeeSScott Long * ordering information. We want the core to always register FIRST. 233b0a2fdeeSScott Long * other modules are set to SI_ORDER_SECOND. 234b0a2fdeeSScott Long */ 235b0a2fdeeSScott Long static moduledata_t mpt_core_mod = { 236b0a2fdeeSScott Long "mpt_core", mpt_modevent, &mpt_core_personality 237b0a2fdeeSScott Long }; 238b0a2fdeeSScott Long DECLARE_MODULE(mpt_core, mpt_core_mod, SI_SUB_DRIVERS, SI_ORDER_FIRST); 239b0a2fdeeSScott Long MODULE_VERSION(mpt_core, 1); 240b0a2fdeeSScott Long 241c87e3f83SMatt Jacob #define MPT_PERS_ATTACHED(pers, mpt) ((mpt)->mpt_pers_mask & (0x1 << pers->id)) 242b0a2fdeeSScott Long 243b0a2fdeeSScott Long int 244b0a2fdeeSScott Long mpt_modevent(module_t mod, int type, void *data) 245b0a2fdeeSScott Long { 246b0a2fdeeSScott Long struct mpt_personality *pers; 247b0a2fdeeSScott Long int error; 248b0a2fdeeSScott Long 249b0a2fdeeSScott Long pers = (struct mpt_personality *)data; 250b0a2fdeeSScott Long 251b0a2fdeeSScott Long error = 0; 252b0a2fdeeSScott Long switch (type) { 253b0a2fdeeSScott Long case MOD_LOAD: 254b0a2fdeeSScott Long { 255b0a2fdeeSScott Long mpt_load_handler_t **def_handler; 256b0a2fdeeSScott Long mpt_load_handler_t **pers_handler; 257b0a2fdeeSScott Long int i; 258b0a2fdeeSScott Long 259b0a2fdeeSScott Long for (i = 0; i < MPT_MAX_PERSONALITIES; i++) { 260b0a2fdeeSScott Long if (mpt_personalities[i] == NULL) 261b0a2fdeeSScott Long break; 262b0a2fdeeSScott Long } 263b0a2fdeeSScott Long if (i >= MPT_MAX_PERSONALITIES) { 264b0a2fdeeSScott Long error = ENOMEM; 265b0a2fdeeSScott Long break; 266b0a2fdeeSScott Long } 267b0a2fdeeSScott Long pers->id = i; 268b0a2fdeeSScott Long mpt_personalities[i] = pers; 269b0a2fdeeSScott Long 270b0a2fdeeSScott Long /* Install standard/noop handlers for any NULL entries. */ 271b0a2fdeeSScott Long def_handler = MPT_PERS_FIRST_HANDLER(&mpt_default_personality); 272b0a2fdeeSScott Long pers_handler = MPT_PERS_FIRST_HANDLER(pers); 273b0a2fdeeSScott Long while (pers_handler <= MPT_PERS_LAST_HANDLER(pers)) { 274b0a2fdeeSScott Long if (*pers_handler == NULL) 275b0a2fdeeSScott Long *pers_handler = *def_handler; 276b0a2fdeeSScott Long pers_handler++; 277b0a2fdeeSScott Long def_handler++; 278b0a2fdeeSScott Long } 279b0a2fdeeSScott Long 280b0a2fdeeSScott Long error = (pers->load(pers)); 281b0a2fdeeSScott Long if (error != 0) 282b0a2fdeeSScott Long mpt_personalities[i] = NULL; 283b0a2fdeeSScott Long break; 284b0a2fdeeSScott Long } 285b0a2fdeeSScott Long case MOD_SHUTDOWN: 286b0a2fdeeSScott Long break; 287c87e3f83SMatt Jacob #if __FreeBSD_version >= 500000 288b0a2fdeeSScott Long case MOD_QUIESCE: 289b0a2fdeeSScott Long break; 290c87e3f83SMatt Jacob #endif 291b0a2fdeeSScott Long case MOD_UNLOAD: 292b0a2fdeeSScott Long error = pers->unload(pers); 293b0a2fdeeSScott Long mpt_personalities[pers->id] = NULL; 294b0a2fdeeSScott Long break; 295b0a2fdeeSScott Long default: 296b0a2fdeeSScott Long error = EINVAL; 297b0a2fdeeSScott Long break; 298b0a2fdeeSScott Long } 299b0a2fdeeSScott Long return (error); 300b0a2fdeeSScott Long } 301b0a2fdeeSScott Long 302b0a2fdeeSScott Long int 303b0a2fdeeSScott Long mpt_stdload(struct mpt_personality *pers) 304b0a2fdeeSScott Long { 305b0a2fdeeSScott Long /* Load is always successfull. */ 306b0a2fdeeSScott Long return (0); 307b0a2fdeeSScott Long } 308b0a2fdeeSScott Long 309b0a2fdeeSScott Long int 310b0a2fdeeSScott Long mpt_stdprobe(struct mpt_softc *mpt) 311b0a2fdeeSScott Long { 312b0a2fdeeSScott Long /* Probe is always successfull. */ 313b0a2fdeeSScott Long return (0); 314b0a2fdeeSScott Long } 315b0a2fdeeSScott Long 316b0a2fdeeSScott Long int 317b0a2fdeeSScott Long mpt_stdattach(struct mpt_softc *mpt) 318b0a2fdeeSScott Long { 319b0a2fdeeSScott Long /* Attach is always successfull. */ 320b0a2fdeeSScott Long return (0); 321b0a2fdeeSScott Long } 322b0a2fdeeSScott Long 323b0a2fdeeSScott Long int 324c87e3f83SMatt Jacob mpt_stdenable(struct mpt_softc *mpt) 325c87e3f83SMatt Jacob { 326c87e3f83SMatt Jacob /* Enable is always successfull. */ 327c87e3f83SMatt Jacob return (0); 328c87e3f83SMatt Jacob } 329c87e3f83SMatt Jacob 330a7303be1SMatt Jacob void 331a7303be1SMatt Jacob mpt_stdready(struct mpt_softc *mpt) 332a7303be1SMatt Jacob { 333a7303be1SMatt Jacob } 334a7303be1SMatt Jacob 335a7303be1SMatt Jacob 336c87e3f83SMatt Jacob int 337444dd2b6SMatt Jacob mpt_stdevent(struct mpt_softc *mpt, request_t *req, MSG_EVENT_NOTIFY_REPLY *msg) 338b0a2fdeeSScott Long { 339444dd2b6SMatt Jacob mpt_lprt(mpt, MPT_PRT_DEBUG, "mpt_stdevent: 0x%x\n", msg->Event & 0xFF); 340b0a2fdeeSScott Long /* Event was not for us. */ 341b0a2fdeeSScott Long return (0); 342b0a2fdeeSScott Long } 343b0a2fdeeSScott Long 344b0a2fdeeSScott Long void 345b0a2fdeeSScott Long mpt_stdreset(struct mpt_softc *mpt, int type) 346b0a2fdeeSScott Long { 347b0a2fdeeSScott Long } 348b0a2fdeeSScott Long 349b0a2fdeeSScott Long void 350b0a2fdeeSScott Long mpt_stdshutdown(struct mpt_softc *mpt) 351b0a2fdeeSScott Long { 352b0a2fdeeSScott Long } 353b0a2fdeeSScott Long 354b0a2fdeeSScott Long void 355b0a2fdeeSScott Long mpt_stddetach(struct mpt_softc *mpt) 356b0a2fdeeSScott Long { 357b0a2fdeeSScott Long } 358b0a2fdeeSScott Long 359b0a2fdeeSScott Long int 360b0a2fdeeSScott Long mpt_stdunload(struct mpt_personality *pers) 361b0a2fdeeSScott Long { 362b0a2fdeeSScott Long /* Unload is always successfull. */ 363b0a2fdeeSScott Long return (0); 364b0a2fdeeSScott Long } 365b0a2fdeeSScott Long 366a7303be1SMatt Jacob /* 367a7303be1SMatt Jacob * Post driver attachment, we may want to perform some global actions. 368a7303be1SMatt Jacob * Here is the hook to do so. 369a7303be1SMatt Jacob */ 370a7303be1SMatt Jacob 371a7303be1SMatt Jacob static void 372a7303be1SMatt Jacob mpt_postattach(void *unused) 373a7303be1SMatt Jacob { 374a7303be1SMatt Jacob struct mpt_softc *mpt; 375a7303be1SMatt Jacob struct mpt_personality *pers; 376a7303be1SMatt Jacob 377a7303be1SMatt Jacob TAILQ_FOREACH(mpt, &mpt_tailq, links) { 378a7303be1SMatt Jacob MPT_PERS_FOREACH(mpt, pers) 379a7303be1SMatt Jacob pers->ready(mpt); 380a7303be1SMatt Jacob } 381a7303be1SMatt Jacob } 382a7303be1SMatt Jacob SYSINIT(mptdev, SI_SUB_CONFIGURE, SI_ORDER_MIDDLE, mpt_postattach, NULL); 383a7303be1SMatt Jacob 384a7303be1SMatt Jacob 385b0a2fdeeSScott Long /******************************* Bus DMA Support ******************************/ 386b0a2fdeeSScott Long void 387b0a2fdeeSScott Long mpt_map_rquest(void *arg, bus_dma_segment_t *segs, int nseg, int error) 388b0a2fdeeSScott Long { 389b0a2fdeeSScott Long struct mpt_map_info *map_info; 390b0a2fdeeSScott Long 391b0a2fdeeSScott Long map_info = (struct mpt_map_info *)arg; 392b0a2fdeeSScott Long map_info->error = error; 393b0a2fdeeSScott Long map_info->phys = segs->ds_addr; 394b0a2fdeeSScott Long } 395b0a2fdeeSScott Long 396b0a2fdeeSScott Long /**************************** Reply/Event Handling ****************************/ 397b0a2fdeeSScott Long int 398b0a2fdeeSScott Long mpt_register_handler(struct mpt_softc *mpt, mpt_handler_type type, 399b0a2fdeeSScott Long mpt_handler_t handler, uint32_t *phandler_id) 400b0a2fdeeSScott Long { 401b0a2fdeeSScott Long 402b0a2fdeeSScott Long switch (type) { 403b0a2fdeeSScott Long case MPT_HANDLER_REPLY: 404b0a2fdeeSScott Long { 405b0a2fdeeSScott Long u_int cbi; 406b0a2fdeeSScott Long u_int free_cbi; 407b0a2fdeeSScott Long 408b0a2fdeeSScott Long if (phandler_id == NULL) 409b0a2fdeeSScott Long return (EINVAL); 410b0a2fdeeSScott Long 411b0a2fdeeSScott Long free_cbi = MPT_HANDLER_ID_NONE; 412b0a2fdeeSScott Long for (cbi = 0; cbi < MPT_NUM_REPLY_HANDLERS; cbi++) { 413b0a2fdeeSScott Long /* 414b0a2fdeeSScott Long * If the same handler is registered multiple 415b0a2fdeeSScott Long * times, don't error out. Just return the 416b0a2fdeeSScott Long * index of the original registration. 417b0a2fdeeSScott Long */ 418b0a2fdeeSScott Long if (mpt_reply_handlers[cbi] == handler.reply_handler) { 419b0a2fdeeSScott Long *phandler_id = MPT_CBI_TO_HID(cbi); 420b0a2fdeeSScott Long return (0); 421b0a2fdeeSScott Long } 422b0a2fdeeSScott Long 423b0a2fdeeSScott Long /* 424b0a2fdeeSScott Long * Fill from the front in the hope that 425b0a2fdeeSScott Long * all registered handlers consume only a 426b0a2fdeeSScott Long * single cache line. 427b0a2fdeeSScott Long * 428b0a2fdeeSScott Long * We don't break on the first empty slot so 429b0a2fdeeSScott Long * that the full table is checked to see if 430b0a2fdeeSScott Long * this handler was previously registered. 431b0a2fdeeSScott Long */ 432c87e3f83SMatt Jacob if (free_cbi == MPT_HANDLER_ID_NONE && 433c87e3f83SMatt Jacob (mpt_reply_handlers[cbi] 434b0a2fdeeSScott Long == mpt_default_reply_handler)) 435b0a2fdeeSScott Long free_cbi = cbi; 436b0a2fdeeSScott Long } 437c87e3f83SMatt Jacob if (free_cbi == MPT_HANDLER_ID_NONE) { 438b0a2fdeeSScott Long return (ENOMEM); 439c87e3f83SMatt Jacob } 440b0a2fdeeSScott Long mpt_reply_handlers[free_cbi] = handler.reply_handler; 441b0a2fdeeSScott Long *phandler_id = MPT_CBI_TO_HID(free_cbi); 442b0a2fdeeSScott Long break; 443b0a2fdeeSScott Long } 444b0a2fdeeSScott Long default: 445b0a2fdeeSScott Long mpt_prt(mpt, "mpt_register_handler unknown type %d\n", type); 446b0a2fdeeSScott Long return (EINVAL); 447b0a2fdeeSScott Long } 448b0a2fdeeSScott Long return (0); 449b0a2fdeeSScott Long } 450b0a2fdeeSScott Long 451b0a2fdeeSScott Long int 452b0a2fdeeSScott Long mpt_deregister_handler(struct mpt_softc *mpt, mpt_handler_type type, 453b0a2fdeeSScott Long mpt_handler_t handler, uint32_t handler_id) 454b0a2fdeeSScott Long { 455b0a2fdeeSScott Long 456b0a2fdeeSScott Long switch (type) { 457b0a2fdeeSScott Long case MPT_HANDLER_REPLY: 458b0a2fdeeSScott Long { 459b0a2fdeeSScott Long u_int cbi; 460b0a2fdeeSScott Long 461b0a2fdeeSScott Long cbi = MPT_CBI(handler_id); 462b0a2fdeeSScott Long if (cbi >= MPT_NUM_REPLY_HANDLERS 463b0a2fdeeSScott Long || mpt_reply_handlers[cbi] != handler.reply_handler) 464b0a2fdeeSScott Long return (ENOENT); 465b0a2fdeeSScott Long mpt_reply_handlers[cbi] = mpt_default_reply_handler; 466b0a2fdeeSScott Long break; 467b0a2fdeeSScott Long } 468b0a2fdeeSScott Long default: 469b0a2fdeeSScott Long mpt_prt(mpt, "mpt_deregister_handler unknown type %d\n", type); 470b0a2fdeeSScott Long return (EINVAL); 471b0a2fdeeSScott Long } 472b0a2fdeeSScott Long return (0); 473b0a2fdeeSScott Long } 474b0a2fdeeSScott Long 475b0a2fdeeSScott Long static int 476b0a2fdeeSScott Long mpt_default_reply_handler(struct mpt_softc *mpt, request_t *req, 477c87e3f83SMatt Jacob uint32_t reply_desc, MSG_DEFAULT_REPLY *reply_frame) 478b0a2fdeeSScott Long { 479c87e3f83SMatt Jacob mpt_prt(mpt, 480c87e3f83SMatt Jacob "Default Handler Called: req=%p:%u reply_descriptor=%x frame=%p\n", 481c87e3f83SMatt Jacob req, req->serno, reply_desc, reply_frame); 482b0a2fdeeSScott Long 483b0a2fdeeSScott Long if (reply_frame != NULL) 484b0a2fdeeSScott Long mpt_dump_reply_frame(mpt, reply_frame); 485b0a2fdeeSScott Long 486c87e3f83SMatt Jacob mpt_prt(mpt, "Reply Frame Ignored\n"); 487b0a2fdeeSScott Long 488b0a2fdeeSScott Long return (/*free_reply*/TRUE); 489b0a2fdeeSScott Long } 490b0a2fdeeSScott Long 491b0a2fdeeSScott Long static int 492b0a2fdeeSScott Long mpt_config_reply_handler(struct mpt_softc *mpt, request_t *req, 493c87e3f83SMatt Jacob uint32_t reply_desc, MSG_DEFAULT_REPLY *reply_frame) 494b0a2fdeeSScott Long { 495b0a2fdeeSScott Long if (req != NULL) { 496b0a2fdeeSScott Long 497b0a2fdeeSScott Long if (reply_frame != NULL) { 498b0a2fdeeSScott Long MSG_CONFIG *cfgp; 499b0a2fdeeSScott Long MSG_CONFIG_REPLY *reply; 500b0a2fdeeSScott Long 501b0a2fdeeSScott Long cfgp = (MSG_CONFIG *)req->req_vbuf; 502b0a2fdeeSScott Long reply = (MSG_CONFIG_REPLY *)reply_frame; 503b0a2fdeeSScott Long req->IOCStatus = le16toh(reply_frame->IOCStatus); 504b0a2fdeeSScott Long bcopy(&reply->Header, &cfgp->Header, 505b0a2fdeeSScott Long sizeof(cfgp->Header)); 506b0a2fdeeSScott Long } 507b0a2fdeeSScott Long req->state &= ~REQ_STATE_QUEUED; 508b0a2fdeeSScott Long req->state |= REQ_STATE_DONE; 509b0a2fdeeSScott Long TAILQ_REMOVE(&mpt->request_pending_list, req, links); 5105e073106SMatt Jacob if ((req->state & REQ_STATE_NEED_WAKEUP) != 0) { 511b0a2fdeeSScott Long wakeup(req); 5126621d786SMatt Jacob } else if ((req->state & REQ_STATE_TIMEDOUT) != 0) { 5136621d786SMatt Jacob /* 5146621d786SMatt Jacob * Whew- we can free this request (late completion) 5156621d786SMatt Jacob */ 5166621d786SMatt Jacob mpt_free_request(mpt, req); 517b0a2fdeeSScott Long } 5185e073106SMatt Jacob } 519b0a2fdeeSScott Long 5205e073106SMatt Jacob return (TRUE); 521b0a2fdeeSScott Long } 522b0a2fdeeSScott Long 523b0a2fdeeSScott Long static int 524b0a2fdeeSScott Long mpt_handshake_reply_handler(struct mpt_softc *mpt, request_t *req, 525c87e3f83SMatt Jacob uint32_t reply_desc, MSG_DEFAULT_REPLY *reply_frame) 526b0a2fdeeSScott Long { 527b0a2fdeeSScott Long /* Nothing to be done. */ 5285e073106SMatt Jacob return (TRUE); 529b0a2fdeeSScott Long } 530b0a2fdeeSScott Long 531b0a2fdeeSScott Long static int 532b0a2fdeeSScott Long mpt_event_reply_handler(struct mpt_softc *mpt, request_t *req, 533c87e3f83SMatt Jacob uint32_t reply_desc, MSG_DEFAULT_REPLY *reply_frame) 534b0a2fdeeSScott Long { 535b0a2fdeeSScott Long int free_reply; 536b0a2fdeeSScott Long 5375e073106SMatt Jacob KASSERT(reply_frame != NULL, ("null reply in mpt_event_reply_handler")); 5385e073106SMatt Jacob KASSERT(req != NULL, ("null request in mpt_event_reply_handler")); 539b0a2fdeeSScott Long 540b0a2fdeeSScott Long free_reply = TRUE; 541b0a2fdeeSScott Long switch (reply_frame->Function) { 542b0a2fdeeSScott Long case MPI_FUNCTION_EVENT_NOTIFICATION: 543b0a2fdeeSScott Long { 544b0a2fdeeSScott Long MSG_EVENT_NOTIFY_REPLY *msg; 545b0a2fdeeSScott Long struct mpt_personality *pers; 546b0a2fdeeSScott Long u_int handled; 547b0a2fdeeSScott Long 548b0a2fdeeSScott Long handled = 0; 549b0a2fdeeSScott Long msg = (MSG_EVENT_NOTIFY_REPLY *)reply_frame; 5503f970273SJohn Birrell msg->EventDataLength = le16toh(msg->EventDataLength); 5513f970273SJohn Birrell msg->IOCStatus = le16toh(msg->IOCStatus); 5523f970273SJohn Birrell msg->IOCLogInfo = le32toh(msg->IOCLogInfo); 5533f970273SJohn Birrell msg->Event = le32toh(msg->Event); 554b0a2fdeeSScott Long MPT_PERS_FOREACH(mpt, pers) 555b0a2fdeeSScott Long handled += pers->event(mpt, req, msg); 556b0a2fdeeSScott Long 557444dd2b6SMatt Jacob if (handled == 0 && mpt->mpt_pers_mask == 0) { 5581977cbd6SMatt Jacob mpt_lprt(mpt, MPT_PRT_INFO, 559444dd2b6SMatt Jacob "No Handlers For Any Event Notify Frames. " 560444dd2b6SMatt Jacob "Event %#x (ACK %sequired).\n", 561444dd2b6SMatt Jacob msg->Event, msg->AckRequired? "r" : "not r"); 562444dd2b6SMatt Jacob } else if (handled == 0) { 5631977cbd6SMatt Jacob mpt_lprt(mpt, MPT_PRT_WARN, 564444dd2b6SMatt Jacob "Unhandled Event Notify Frame. Event %#x " 565444dd2b6SMatt Jacob "(ACK %sequired).\n", 566444dd2b6SMatt Jacob msg->Event, msg->AckRequired? "r" : "not r"); 567444dd2b6SMatt Jacob } 568b0a2fdeeSScott Long 569b0a2fdeeSScott Long if (msg->AckRequired) { 570b0a2fdeeSScott Long request_t *ack_req; 571b0a2fdeeSScott Long uint32_t context; 572b0a2fdeeSScott Long 5733f970273SJohn Birrell context = req->index | MPT_REPLY_HANDLER_EVENTS; 5745e073106SMatt Jacob ack_req = mpt_get_request(mpt, FALSE); 575b0a2fdeeSScott Long if (ack_req == NULL) { 576b0a2fdeeSScott Long struct mpt_evtf_record *evtf; 577b0a2fdeeSScott Long 578b0a2fdeeSScott Long evtf = (struct mpt_evtf_record *)reply_frame; 579b0a2fdeeSScott Long evtf->context = context; 580b0a2fdeeSScott Long LIST_INSERT_HEAD(&mpt->ack_frames, evtf, links); 581b0a2fdeeSScott Long free_reply = FALSE; 582b0a2fdeeSScott Long break; 583b0a2fdeeSScott Long } 584b0a2fdeeSScott Long mpt_send_event_ack(mpt, ack_req, msg, context); 5855e073106SMatt Jacob /* 5865e073106SMatt Jacob * Don't check for CONTINUATION_REPLY here 5875e073106SMatt Jacob */ 5885e073106SMatt Jacob return (free_reply); 589b0a2fdeeSScott Long } 590b0a2fdeeSScott Long break; 591b0a2fdeeSScott Long } 592b0a2fdeeSScott Long case MPI_FUNCTION_PORT_ENABLE: 593b0a2fdeeSScott Long mpt_lprt(mpt, MPT_PRT_DEBUG , "enable port reply\n"); 594b0a2fdeeSScott Long break; 595b0a2fdeeSScott Long case MPI_FUNCTION_EVENT_ACK: 596b0a2fdeeSScott Long break; 597b0a2fdeeSScott Long default: 5985e073106SMatt Jacob mpt_prt(mpt, "unknown event function: %x\n", 599b0a2fdeeSScott Long reply_frame->Function); 600b0a2fdeeSScott Long break; 601b0a2fdeeSScott Long } 602b0a2fdeeSScott Long 6035e073106SMatt Jacob /* 6045e073106SMatt Jacob * I'm not sure that this continuation stuff works as it should. 6055e073106SMatt Jacob * 6065e073106SMatt Jacob * I've had FC async events occur that free the frame up because 6075e073106SMatt Jacob * the continuation bit isn't set, and then additional async events 6085e073106SMatt Jacob * then occur using the same context. As you might imagine, this 6095e073106SMatt Jacob * leads to Very Bad Thing. 6105e073106SMatt Jacob * 6115e073106SMatt Jacob * Let's just be safe for now and not free them up until we figure 6125e073106SMatt Jacob * out what's actually happening here. 6135e073106SMatt Jacob */ 6145e073106SMatt Jacob #if 0 6155e073106SMatt Jacob if ((reply_frame->MsgFlags & MPI_MSGFLAGS_CONTINUATION_REPLY) == 0) { 616b0a2fdeeSScott Long TAILQ_REMOVE(&mpt->request_pending_list, req, links); 617b0a2fdeeSScott Long mpt_free_request(mpt, req); 6185e073106SMatt Jacob mpt_prt(mpt, "event_reply %x for req %p:%u NOT a continuation", 6195e073106SMatt Jacob reply_frame->Function, req, req->serno); 6205e073106SMatt Jacob if (reply_frame->Function == MPI_FUNCTION_EVENT_NOTIFICATION) { 6215e073106SMatt Jacob MSG_EVENT_NOTIFY_REPLY *msg = 6225e073106SMatt Jacob (MSG_EVENT_NOTIFY_REPLY *)reply_frame; 6235e073106SMatt Jacob mpt_prtc(mpt, " Event=0x%x AckReq=%d", 6245e073106SMatt Jacob msg->Event, msg->AckRequired); 625b0a2fdeeSScott Long } 6265e073106SMatt Jacob } else { 6275e073106SMatt Jacob mpt_prt(mpt, "event_reply %x for %p:%u IS a continuation", 6285e073106SMatt Jacob reply_frame->Function, req, req->serno); 6295e073106SMatt Jacob if (reply_frame->Function == MPI_FUNCTION_EVENT_NOTIFICATION) { 6305e073106SMatt Jacob MSG_EVENT_NOTIFY_REPLY *msg = 6315e073106SMatt Jacob (MSG_EVENT_NOTIFY_REPLY *)reply_frame; 6325e073106SMatt Jacob mpt_prtc(mpt, " Event=0x%x AckReq=%d", 6335e073106SMatt Jacob msg->Event, msg->AckRequired); 6345e073106SMatt Jacob } 6355e073106SMatt Jacob mpt_prtc(mpt, "\n"); 6365e073106SMatt Jacob } 6375e073106SMatt Jacob #endif 638b0a2fdeeSScott Long return (free_reply); 639b0a2fdeeSScott Long } 640b0a2fdeeSScott Long 641b0a2fdeeSScott Long /* 642b0a2fdeeSScott Long * Process an asynchronous event from the IOC. 643b0a2fdeeSScott Long */ 644b0a2fdeeSScott Long static int 645b0a2fdeeSScott Long mpt_core_event(struct mpt_softc *mpt, request_t *req, 646b0a2fdeeSScott Long MSG_EVENT_NOTIFY_REPLY *msg) 647b0a2fdeeSScott Long { 648444dd2b6SMatt Jacob mpt_lprt(mpt, MPT_PRT_DEBUG, "mpt_core_event: 0x%x\n", 649444dd2b6SMatt Jacob msg->Event & 0xFF); 650b0a2fdeeSScott Long switch(msg->Event & 0xFF) { 651b0a2fdeeSScott Long case MPI_EVENT_NONE: 652b0a2fdeeSScott Long break; 653b0a2fdeeSScott Long case MPI_EVENT_LOG_DATA: 654b0a2fdeeSScott Long { 655b0a2fdeeSScott Long int i; 656b0a2fdeeSScott Long 657b0a2fdeeSScott Long /* Some error occured that LSI wants logged */ 658b0a2fdeeSScott Long mpt_prt(mpt, "EvtLogData: IOCLogInfo: 0x%08x\n", 659b0a2fdeeSScott Long msg->IOCLogInfo); 660b0a2fdeeSScott Long mpt_prt(mpt, "\tEvtLogData: Event Data:"); 661b0a2fdeeSScott Long for (i = 0; i < msg->EventDataLength; i++) 662b0a2fdeeSScott Long mpt_prtc(mpt, " %08x", msg->Data[i]); 663b0a2fdeeSScott Long mpt_prtc(mpt, "\n"); 664b0a2fdeeSScott Long break; 665b0a2fdeeSScott Long } 666b0a2fdeeSScott Long case MPI_EVENT_EVENT_CHANGE: 667b0a2fdeeSScott Long /* 668b0a2fdeeSScott Long * This is just an acknowledgement 669b0a2fdeeSScott Long * of our mpt_send_event_request. 670b0a2fdeeSScott Long */ 671b0a2fdeeSScott Long break; 672444dd2b6SMatt Jacob case MPI_EVENT_SAS_DEVICE_STATUS_CHANGE: 673444dd2b6SMatt Jacob break; 674b0a2fdeeSScott Long default: 6755e073106SMatt Jacob return (0); 676b0a2fdeeSScott Long break; 677b0a2fdeeSScott Long } 6785e073106SMatt Jacob return (1); 679b0a2fdeeSScott Long } 680b0a2fdeeSScott Long 681b0a2fdeeSScott Long static void 682b0a2fdeeSScott Long mpt_send_event_ack(struct mpt_softc *mpt, request_t *ack_req, 683b0a2fdeeSScott Long MSG_EVENT_NOTIFY_REPLY *msg, uint32_t context) 684b0a2fdeeSScott Long { 685b0a2fdeeSScott Long MSG_EVENT_ACK *ackp; 686b0a2fdeeSScott Long 687b0a2fdeeSScott Long ackp = (MSG_EVENT_ACK *)ack_req->req_vbuf; 6885e073106SMatt Jacob memset(ackp, 0, sizeof (*ackp)); 689b0a2fdeeSScott Long ackp->Function = MPI_FUNCTION_EVENT_ACK; 6903f970273SJohn Birrell ackp->Event = htole32(msg->Event); 6913f970273SJohn Birrell ackp->EventContext = htole32(msg->EventContext); 6923f970273SJohn Birrell ackp->MsgContext = htole32(context); 693b0a2fdeeSScott Long mpt_check_doorbell(mpt); 694b0a2fdeeSScott Long mpt_send_cmd(mpt, ack_req); 695b0a2fdeeSScott Long } 696b0a2fdeeSScott Long 697b0a2fdeeSScott Long /***************************** Interrupt Handling *****************************/ 698b0a2fdeeSScott Long void 699b0a2fdeeSScott Long mpt_intr(void *arg) 700b0a2fdeeSScott Long { 701b0a2fdeeSScott Long struct mpt_softc *mpt; 702b0a2fdeeSScott Long uint32_t reply_desc; 703c87e3f83SMatt Jacob int ntrips = 0; 704b0a2fdeeSScott Long 705b0a2fdeeSScott Long mpt = (struct mpt_softc *)arg; 7065089bd63SMatt Jacob mpt_lprt(mpt, MPT_PRT_DEBUG2, "enter mpt_intr\n"); 707b0a2fdeeSScott Long while ((reply_desc = mpt_pop_reply_queue(mpt)) != MPT_REPLY_EMPTY) { 708b0a2fdeeSScott Long request_t *req; 709b0a2fdeeSScott Long MSG_DEFAULT_REPLY *reply_frame; 710b0a2fdeeSScott Long uint32_t reply_baddr; 711c87e3f83SMatt Jacob uint32_t ctxt_idx; 712b0a2fdeeSScott Long u_int cb_index; 713b0a2fdeeSScott Long u_int req_index; 714b0a2fdeeSScott Long int free_rf; 715b0a2fdeeSScott Long 716b0a2fdeeSScott Long req = NULL; 717b0a2fdeeSScott Long reply_frame = NULL; 718b0a2fdeeSScott Long reply_baddr = 0; 719b0a2fdeeSScott Long if ((reply_desc & MPI_ADDRESS_REPLY_A_BIT) != 0) { 720b0a2fdeeSScott Long u_int offset; 721b0a2fdeeSScott Long /* 722b0a2fdeeSScott Long * Insure that the reply frame is coherent. 723b0a2fdeeSScott Long */ 7245e073106SMatt Jacob reply_baddr = MPT_REPLY_BADDR(reply_desc); 725b0a2fdeeSScott Long offset = reply_baddr - (mpt->reply_phys & 0xFFFFFFFF); 726c87e3f83SMatt Jacob bus_dmamap_sync_range(mpt->reply_dmat, 727c87e3f83SMatt Jacob mpt->reply_dmap, offset, MPT_REPLY_SIZE, 728b0a2fdeeSScott Long BUS_DMASYNC_POSTREAD); 729b0a2fdeeSScott Long reply_frame = MPT_REPLY_OTOV(mpt, offset); 730c87e3f83SMatt Jacob ctxt_idx = le32toh(reply_frame->MsgContext); 731c87e3f83SMatt Jacob } else { 732c87e3f83SMatt Jacob uint32_t type; 733b0a2fdeeSScott Long 734c87e3f83SMatt Jacob type = MPI_GET_CONTEXT_REPLY_TYPE(reply_desc); 735c87e3f83SMatt Jacob ctxt_idx = reply_desc; 736c87e3f83SMatt Jacob mpt_lprt(mpt, MPT_PRT_DEBUG1, "Context Reply: 0x%08x\n", 737c87e3f83SMatt Jacob reply_desc); 738c87e3f83SMatt Jacob 739c87e3f83SMatt Jacob switch (type) { 740c87e3f83SMatt Jacob case MPI_CONTEXT_REPLY_TYPE_SCSI_INIT: 741c87e3f83SMatt Jacob ctxt_idx &= MPI_CONTEXT_REPLY_CONTEXT_MASK; 742c87e3f83SMatt Jacob break; 743c87e3f83SMatt Jacob case MPI_CONTEXT_REPLY_TYPE_SCSI_TARGET: 744c87e3f83SMatt Jacob ctxt_idx = GET_IO_INDEX(reply_desc); 745c87e3f83SMatt Jacob if (mpt->tgt_cmd_ptrs == NULL) { 746c87e3f83SMatt Jacob mpt_prt(mpt, 747c87e3f83SMatt Jacob "mpt_intr: no target cmd ptrs\n"); 748c87e3f83SMatt Jacob reply_desc = MPT_REPLY_EMPTY; 749c87e3f83SMatt Jacob break; 750c87e3f83SMatt Jacob } 751c87e3f83SMatt Jacob if (ctxt_idx >= mpt->tgt_cmds_allocated) { 752c87e3f83SMatt Jacob mpt_prt(mpt, 753c87e3f83SMatt Jacob "mpt_intr: bad tgt cmd ctxt %u\n", 754c87e3f83SMatt Jacob ctxt_idx); 755c87e3f83SMatt Jacob reply_desc = MPT_REPLY_EMPTY; 756c87e3f83SMatt Jacob ntrips = 1000; 757c87e3f83SMatt Jacob break; 758c87e3f83SMatt Jacob } 759c87e3f83SMatt Jacob req = mpt->tgt_cmd_ptrs[ctxt_idx]; 760c87e3f83SMatt Jacob if (req == NULL) { 761c87e3f83SMatt Jacob mpt_prt(mpt, "no request backpointer " 762c87e3f83SMatt Jacob "at index %u", ctxt_idx); 763c87e3f83SMatt Jacob reply_desc = MPT_REPLY_EMPTY; 764c87e3f83SMatt Jacob ntrips = 1000; 765c87e3f83SMatt Jacob break; 766c87e3f83SMatt Jacob } 767c87e3f83SMatt Jacob /* 768c87e3f83SMatt Jacob * Reformulate ctxt_idx to be just as if 769c87e3f83SMatt Jacob * it were another type of context reply 770c87e3f83SMatt Jacob * so the code below will find the request 771c87e3f83SMatt Jacob * via indexing into the pool. 772c87e3f83SMatt Jacob */ 773c87e3f83SMatt Jacob ctxt_idx = 774c87e3f83SMatt Jacob req->index | mpt->scsi_tgt_handler_id; 775c87e3f83SMatt Jacob req = NULL; 776c87e3f83SMatt Jacob break; 777c87e3f83SMatt Jacob case MPI_CONTEXT_REPLY_TYPE_LAN: 778c87e3f83SMatt Jacob mpt_prt(mpt, "LAN CONTEXT REPLY: 0x%08x\n", 779c87e3f83SMatt Jacob reply_desc); 780c87e3f83SMatt Jacob reply_desc = MPT_REPLY_EMPTY; 781c87e3f83SMatt Jacob break; 782c87e3f83SMatt Jacob default: 783c87e3f83SMatt Jacob mpt_prt(mpt, "Context Reply 0x%08x?\n", type); 784c87e3f83SMatt Jacob reply_desc = MPT_REPLY_EMPTY; 785c87e3f83SMatt Jacob break; 786c87e3f83SMatt Jacob } 787c87e3f83SMatt Jacob if (reply_desc == MPT_REPLY_EMPTY) { 788c87e3f83SMatt Jacob if (ntrips++ > 1000) { 789c87e3f83SMatt Jacob break; 790c87e3f83SMatt Jacob } 791c87e3f83SMatt Jacob continue; 792c87e3f83SMatt Jacob } 793c87e3f83SMatt Jacob } 794c87e3f83SMatt Jacob 795c87e3f83SMatt Jacob cb_index = MPT_CONTEXT_TO_CBI(ctxt_idx); 796c87e3f83SMatt Jacob req_index = MPT_CONTEXT_TO_REQI(ctxt_idx); 797c87e3f83SMatt Jacob if (req_index < MPT_MAX_REQUESTS(mpt)) { 798c87e3f83SMatt Jacob req = &mpt->request_pool[req_index]; 7995e073106SMatt Jacob } else { 8005e073106SMatt Jacob mpt_prt(mpt, "WARN: mpt_intr index == %d (reply_desc ==" 8015e073106SMatt Jacob " 0x%x)\n", req_index, reply_desc); 802c87e3f83SMatt Jacob } 803c87e3f83SMatt Jacob 804c87e3f83SMatt Jacob free_rf = mpt_reply_handlers[cb_index](mpt, req, 805c87e3f83SMatt Jacob reply_desc, reply_frame); 806b0a2fdeeSScott Long 8075e073106SMatt Jacob if (reply_frame != NULL && free_rf) { 808b0a2fdeeSScott Long mpt_free_reply(mpt, reply_baddr); 8095e073106SMatt Jacob } 810c87e3f83SMatt Jacob 811c87e3f83SMatt Jacob /* 812c87e3f83SMatt Jacob * If we got ourselves disabled, don't get stuck in a loop 813c87e3f83SMatt Jacob */ 814c87e3f83SMatt Jacob if (mpt->disabled) { 815c87e3f83SMatt Jacob mpt_disable_ints(mpt); 816c87e3f83SMatt Jacob break; 817c87e3f83SMatt Jacob } 818c87e3f83SMatt Jacob if (ntrips++ > 1000) { 819c87e3f83SMatt Jacob break; 820c87e3f83SMatt Jacob } 821b0a2fdeeSScott Long } 8225089bd63SMatt Jacob mpt_lprt(mpt, MPT_PRT_DEBUG2, "exit mpt_intr\n"); 823b0a2fdeeSScott Long } 824b0a2fdeeSScott Long 825b0a2fdeeSScott Long /******************************* Error Recovery *******************************/ 826b0a2fdeeSScott Long void 827b0a2fdeeSScott Long mpt_complete_request_chain(struct mpt_softc *mpt, struct req_queue *chain, 828b0a2fdeeSScott Long u_int iocstatus) 829b0a2fdeeSScott Long { 830b0a2fdeeSScott Long MSG_DEFAULT_REPLY ioc_status_frame; 831b0a2fdeeSScott Long request_t *req; 832b0a2fdeeSScott Long 8335e073106SMatt Jacob memset(&ioc_status_frame, 0, sizeof(ioc_status_frame)); 834b0a2fdeeSScott Long ioc_status_frame.MsgLength = roundup2(sizeof(ioc_status_frame), 4); 835b0a2fdeeSScott Long ioc_status_frame.IOCStatus = iocstatus; 836b0a2fdeeSScott Long while((req = TAILQ_FIRST(chain)) != NULL) { 837b0a2fdeeSScott Long MSG_REQUEST_HEADER *msg_hdr; 838b0a2fdeeSScott Long u_int cb_index; 8395e073106SMatt Jacob 8409b7de735SMatt Jacob TAILQ_REMOVE(chain, req, links); 841b0a2fdeeSScott Long msg_hdr = (MSG_REQUEST_HEADER *)req->req_vbuf; 842b0a2fdeeSScott Long ioc_status_frame.Function = msg_hdr->Function; 843b0a2fdeeSScott Long ioc_status_frame.MsgContext = msg_hdr->MsgContext; 844b0a2fdeeSScott Long cb_index = MPT_CONTEXT_TO_CBI(le32toh(msg_hdr->MsgContext)); 845c87e3f83SMatt Jacob mpt_reply_handlers[cb_index](mpt, req, msg_hdr->MsgContext, 846c87e3f83SMatt Jacob &ioc_status_frame); 847b0a2fdeeSScott Long } 848b0a2fdeeSScott Long } 849b0a2fdeeSScott Long 850b0a2fdeeSScott Long /********************************* Diagnostics ********************************/ 851b0a2fdeeSScott Long /* 852b0a2fdeeSScott Long * Perform a diagnostic dump of a reply frame. 853b0a2fdeeSScott Long */ 854b0a2fdeeSScott Long void 855b0a2fdeeSScott Long mpt_dump_reply_frame(struct mpt_softc *mpt, MSG_DEFAULT_REPLY *reply_frame) 856b0a2fdeeSScott Long { 857b0a2fdeeSScott Long mpt_prt(mpt, "Address Reply:\n"); 858b0a2fdeeSScott Long mpt_print_reply(reply_frame); 859b0a2fdeeSScott Long } 860b0a2fdeeSScott Long 861b0a2fdeeSScott Long /******************************* Doorbell Access ******************************/ 862b0a2fdeeSScott Long static __inline uint32_t mpt_rd_db(struct mpt_softc *mpt); 863b0a2fdeeSScott Long static __inline uint32_t mpt_rd_intr(struct mpt_softc *mpt); 864b0a2fdeeSScott Long 865b0a2fdeeSScott Long static __inline uint32_t 866b0a2fdeeSScott Long mpt_rd_db(struct mpt_softc *mpt) 8679b631363SMatt Jacob { 8689b631363SMatt Jacob return mpt_read(mpt, MPT_OFFSET_DOORBELL); 8699b631363SMatt Jacob } 8709b631363SMatt Jacob 871b0a2fdeeSScott Long static __inline uint32_t 872b0a2fdeeSScott Long mpt_rd_intr(struct mpt_softc *mpt) 8739b631363SMatt Jacob { 8749b631363SMatt Jacob return mpt_read(mpt, MPT_OFFSET_INTR_STATUS); 8759b631363SMatt Jacob } 8769b631363SMatt Jacob 8779b631363SMatt Jacob /* Busy wait for a door bell to be read by IOC */ 8789b631363SMatt Jacob static int 879b0a2fdeeSScott Long mpt_wait_db_ack(struct mpt_softc *mpt) 8809b631363SMatt Jacob { 8819b631363SMatt Jacob int i; 8829b631363SMatt Jacob for (i=0; i < MPT_MAX_WAIT; i++) { 8839b631363SMatt Jacob if (!MPT_DB_IS_BUSY(mpt_rd_intr(mpt))) { 8849b631363SMatt Jacob maxwait_ack = i > maxwait_ack ? i : maxwait_ack; 885c87e3f83SMatt Jacob return (MPT_OK); 8869b631363SMatt Jacob } 887c87e3f83SMatt Jacob DELAY(200); 8889b631363SMatt Jacob } 889c87e3f83SMatt Jacob return (MPT_FAIL); 8909b631363SMatt Jacob } 8919b631363SMatt Jacob 8929b631363SMatt Jacob /* Busy wait for a door bell interrupt */ 8939b631363SMatt Jacob static int 894b0a2fdeeSScott Long mpt_wait_db_int(struct mpt_softc *mpt) 8959b631363SMatt Jacob { 8969b631363SMatt Jacob int i; 8979b631363SMatt Jacob for (i = 0; i < MPT_MAX_WAIT; i++) { 8989b631363SMatt Jacob if (MPT_DB_INTR(mpt_rd_intr(mpt))) { 8999b631363SMatt Jacob maxwait_int = i > maxwait_int ? i : maxwait_int; 9009b631363SMatt Jacob return MPT_OK; 9019b631363SMatt Jacob } 9029b631363SMatt Jacob DELAY(100); 9039b631363SMatt Jacob } 904c87e3f83SMatt Jacob return (MPT_FAIL); 9059b631363SMatt Jacob } 9069b631363SMatt Jacob 9079b631363SMatt Jacob /* Wait for IOC to transition to a give state */ 9089b631363SMatt Jacob void 909b0a2fdeeSScott Long mpt_check_doorbell(struct mpt_softc *mpt) 9109b631363SMatt Jacob { 911b0a2fdeeSScott Long uint32_t db = mpt_rd_db(mpt); 9129b631363SMatt Jacob if (MPT_STATE(db) != MPT_DB_STATE_RUNNING) { 913b0a2fdeeSScott Long mpt_prt(mpt, "Device not running\n"); 9149b631363SMatt Jacob mpt_print_db(db); 9159b631363SMatt Jacob } 9169b631363SMatt Jacob } 9179b631363SMatt Jacob 9189b631363SMatt Jacob /* Wait for IOC to transition to a give state */ 9199b631363SMatt Jacob static int 920b0a2fdeeSScott Long mpt_wait_state(struct mpt_softc *mpt, enum DB_STATE_BITS state) 9219b631363SMatt Jacob { 9229b631363SMatt Jacob int i; 9239b631363SMatt Jacob 9249b631363SMatt Jacob for (i = 0; i < MPT_MAX_WAIT; i++) { 925b0a2fdeeSScott Long uint32_t db = mpt_rd_db(mpt); 9269b631363SMatt Jacob if (MPT_STATE(db) == state) { 9279b631363SMatt Jacob maxwait_state = i > maxwait_state ? i : maxwait_state; 9289b631363SMatt Jacob return (MPT_OK); 9299b631363SMatt Jacob } 9309b631363SMatt Jacob DELAY(100); 9319b631363SMatt Jacob } 9329b631363SMatt Jacob return (MPT_FAIL); 9339b631363SMatt Jacob } 9349b631363SMatt Jacob 9359b631363SMatt Jacob 936b0a2fdeeSScott Long /************************* Intialization/Configuration ************************/ 937b0a2fdeeSScott Long static int mpt_download_fw(struct mpt_softc *mpt); 938b0a2fdeeSScott Long 9399b631363SMatt Jacob /* Issue the reset COMMAND to the IOC */ 940b0a2fdeeSScott Long static int 941b0a2fdeeSScott Long mpt_soft_reset(struct mpt_softc *mpt) 9429b631363SMatt Jacob { 943b0a2fdeeSScott Long mpt_lprt(mpt, MPT_PRT_DEBUG, "soft reset\n"); 9449b631363SMatt Jacob 9459b631363SMatt Jacob /* Have to use hard reset if we are not in Running state */ 9469b631363SMatt Jacob if (MPT_STATE(mpt_rd_db(mpt)) != MPT_DB_STATE_RUNNING) { 947b0a2fdeeSScott Long mpt_prt(mpt, "soft reset failed: device not running\n"); 948c87e3f83SMatt Jacob return (MPT_FAIL); 9499b631363SMatt Jacob } 9509b631363SMatt Jacob 9519b631363SMatt Jacob /* If door bell is in use we don't have a chance of getting 9529b631363SMatt Jacob * a word in since the IOC probably crashed in message 9539b631363SMatt Jacob * processing. So don't waste our time. 9549b631363SMatt Jacob */ 9559b631363SMatt Jacob if (MPT_DB_IS_IN_USE(mpt_rd_db(mpt))) { 956b0a2fdeeSScott Long mpt_prt(mpt, "soft reset failed: doorbell wedged\n"); 957c87e3f83SMatt Jacob return (MPT_FAIL); 9589b631363SMatt Jacob } 9599b631363SMatt Jacob 9609b631363SMatt Jacob /* Send the reset request to the IOC */ 9619b631363SMatt Jacob mpt_write(mpt, MPT_OFFSET_DOORBELL, 9629b631363SMatt Jacob MPI_FUNCTION_IOC_MESSAGE_UNIT_RESET << MPI_DOORBELL_FUNCTION_SHIFT); 9639b631363SMatt Jacob if (mpt_wait_db_ack(mpt) != MPT_OK) { 964b0a2fdeeSScott Long mpt_prt(mpt, "soft reset failed: ack timeout\n"); 965c87e3f83SMatt Jacob return (MPT_FAIL); 9669b631363SMatt Jacob } 9679b631363SMatt Jacob 9689b631363SMatt Jacob /* Wait for the IOC to reload and come out of reset state */ 9699b631363SMatt Jacob if (mpt_wait_state(mpt, MPT_DB_STATE_READY) != MPT_OK) { 970b0a2fdeeSScott Long mpt_prt(mpt, "soft reset failed: device did not restart\n"); 971c87e3f83SMatt Jacob return (MPT_FAIL); 9729b631363SMatt Jacob } 9739b631363SMatt Jacob 9749b631363SMatt Jacob return MPT_OK; 9759b631363SMatt Jacob } 9769b631363SMatt Jacob 977b0a2fdeeSScott Long static int 978b0a2fdeeSScott Long mpt_enable_diag_mode(struct mpt_softc *mpt) 979b0a2fdeeSScott Long { 980b0a2fdeeSScott Long int try; 981b0a2fdeeSScott Long 982b0a2fdeeSScott Long try = 20; 983b0a2fdeeSScott Long while (--try) { 984b0a2fdeeSScott Long 985b0a2fdeeSScott Long if ((mpt_read(mpt, MPT_OFFSET_DIAGNOSTIC) & MPI_DIAG_DRWE) != 0) 986b0a2fdeeSScott Long break; 987b0a2fdeeSScott Long 988b0a2fdeeSScott Long /* Enable diagnostic registers */ 989b0a2fdeeSScott Long mpt_write(mpt, MPT_OFFSET_SEQUENCE, 0xFF); 990b0a2fdeeSScott Long mpt_write(mpt, MPT_OFFSET_SEQUENCE, MPI_WRSEQ_1ST_KEY_VALUE); 991b0a2fdeeSScott Long mpt_write(mpt, MPT_OFFSET_SEQUENCE, MPI_WRSEQ_2ND_KEY_VALUE); 992b0a2fdeeSScott Long mpt_write(mpt, MPT_OFFSET_SEQUENCE, MPI_WRSEQ_3RD_KEY_VALUE); 993b0a2fdeeSScott Long mpt_write(mpt, MPT_OFFSET_SEQUENCE, MPI_WRSEQ_4TH_KEY_VALUE); 994b0a2fdeeSScott Long mpt_write(mpt, MPT_OFFSET_SEQUENCE, MPI_WRSEQ_5TH_KEY_VALUE); 995b0a2fdeeSScott Long 996b0a2fdeeSScott Long DELAY(100000); 997b0a2fdeeSScott Long } 998b0a2fdeeSScott Long if (try == 0) 999b0a2fdeeSScott Long return (EIO); 1000b0a2fdeeSScott Long return (0); 1001b0a2fdeeSScott Long } 1002b0a2fdeeSScott Long 1003b0a2fdeeSScott Long static void 1004b0a2fdeeSScott Long mpt_disable_diag_mode(struct mpt_softc *mpt) 1005b0a2fdeeSScott Long { 1006b0a2fdeeSScott Long mpt_write(mpt, MPT_OFFSET_SEQUENCE, 0xFFFFFFFF); 1007b0a2fdeeSScott Long } 1008b0a2fdeeSScott Long 10099b631363SMatt Jacob /* This is a magic diagnostic reset that resets all the ARM 10109b631363SMatt Jacob * processors in the chip. 10119b631363SMatt Jacob */ 1012b0a2fdeeSScott Long static void 1013b0a2fdeeSScott Long mpt_hard_reset(struct mpt_softc *mpt) 10149b631363SMatt Jacob { 1015b0a2fdeeSScott Long int error; 1016b0a2fdeeSScott Long int wait; 1017b0a2fdeeSScott Long uint32_t diagreg; 10189b631363SMatt Jacob 1019b0a2fdeeSScott Long mpt_lprt(mpt, MPT_PRT_DEBUG, "hard reset\n"); 1020b0a2fdeeSScott Long 1021b0a2fdeeSScott Long error = mpt_enable_diag_mode(mpt); 1022b0a2fdeeSScott Long if (error) { 1023b0a2fdeeSScott Long mpt_prt(mpt, "WARNING - Could not enter diagnostic mode !\n"); 1024b0a2fdeeSScott Long mpt_prt(mpt, "Trying to reset anyway.\n"); 1025b0a2fdeeSScott Long } 1026b0a2fdeeSScott Long 1027b0a2fdeeSScott Long diagreg = mpt_read(mpt, MPT_OFFSET_DIAGNOSTIC); 1028b0a2fdeeSScott Long 1029b0a2fdeeSScott Long /* 1030b0a2fdeeSScott Long * This appears to be a workaround required for some 1031b0a2fdeeSScott Long * firmware or hardware revs. 1032b0a2fdeeSScott Long */ 1033b0a2fdeeSScott Long mpt_write(mpt, MPT_OFFSET_DIAGNOSTIC, diagreg | MPI_DIAG_DISABLE_ARM); 1034b0a2fdeeSScott Long DELAY(1000); 10359b631363SMatt Jacob 10369b631363SMatt Jacob /* Diag. port is now active so we can now hit the reset bit */ 1037b0a2fdeeSScott Long mpt_write(mpt, MPT_OFFSET_DIAGNOSTIC, diagreg | MPI_DIAG_RESET_ADAPTER); 10389b631363SMatt Jacob 1039b0a2fdeeSScott Long /* 1040b0a2fdeeSScott Long * Ensure that the reset has finished. We delay 1ms 1041b0a2fdeeSScott Long * prior to reading the register to make sure the chip 1042b0a2fdeeSScott Long * has sufficiently completed its reset to handle register 1043b0a2fdeeSScott Long * accesses. 1044b0a2fdeeSScott Long */ 1045b0a2fdeeSScott Long wait = 5000; 1046b0a2fdeeSScott Long do { 1047b0a2fdeeSScott Long DELAY(1000); 1048b0a2fdeeSScott Long diagreg = mpt_read(mpt, MPT_OFFSET_DIAGNOSTIC); 1049b0a2fdeeSScott Long } while (--wait && (diagreg & MPI_DIAG_RESET_ADAPTER) == 0); 10509b631363SMatt Jacob 1051b0a2fdeeSScott Long if (wait == 0) { 1052b0a2fdeeSScott Long mpt_prt(mpt, "WARNING - Failed hard reset! " 1053b0a2fdeeSScott Long "Trying to initialize anyway.\n"); 10549b631363SMatt Jacob } 10559b631363SMatt Jacob 1056b0a2fdeeSScott Long /* 1057b0a2fdeeSScott Long * If we have firmware to download, it must be loaded before 1058b0a2fdeeSScott Long * the controller will become operational. Do so now. 1059b0a2fdeeSScott Long */ 1060b0a2fdeeSScott Long if (mpt->fw_image != NULL) { 1061b0a2fdeeSScott Long 1062b0a2fdeeSScott Long error = mpt_download_fw(mpt); 1063b0a2fdeeSScott Long 1064b0a2fdeeSScott Long if (error) { 1065b0a2fdeeSScott Long mpt_prt(mpt, "WARNING - Firmware Download Failed!\n"); 1066b0a2fdeeSScott Long mpt_prt(mpt, "Trying to initialize anyway.\n"); 10679b631363SMatt Jacob } 1068b0a2fdeeSScott Long } 1069b0a2fdeeSScott Long 1070b0a2fdeeSScott Long /* 1071b0a2fdeeSScott Long * Reseting the controller should have disabled write 1072b0a2fdeeSScott Long * access to the diagnostic registers, but disable 1073b0a2fdeeSScott Long * manually to be sure. 1074b0a2fdeeSScott Long */ 1075b0a2fdeeSScott Long mpt_disable_diag_mode(mpt); 1076b0a2fdeeSScott Long } 1077b0a2fdeeSScott Long 1078b0a2fdeeSScott Long static void 1079b0a2fdeeSScott Long mpt_core_ioc_reset(struct mpt_softc *mpt, int type) 1080b0a2fdeeSScott Long { 1081b0a2fdeeSScott Long /* 1082b0a2fdeeSScott Long * Complete all pending requests with a status 1083b0a2fdeeSScott Long * appropriate for an IOC reset. 1084b0a2fdeeSScott Long */ 1085b0a2fdeeSScott Long mpt_complete_request_chain(mpt, &mpt->request_pending_list, 1086b0a2fdeeSScott Long MPI_IOCSTATUS_INVALID_STATE); 1087b0a2fdeeSScott Long } 1088b0a2fdeeSScott Long 10899b631363SMatt Jacob 10909b631363SMatt Jacob /* 10919b631363SMatt Jacob * Reset the IOC when needed. Try software command first then if needed 10929b631363SMatt Jacob * poke at the magic diagnostic reset. Note that a hard reset resets 10939b631363SMatt Jacob * *both* IOCs on dual function chips (FC929 && LSI1030) as well as 10949b631363SMatt Jacob * fouls up the PCI configuration registers. 10959b631363SMatt Jacob */ 10969b631363SMatt Jacob int 1097b0a2fdeeSScott Long mpt_reset(struct mpt_softc *mpt, int reinit) 10989b631363SMatt Jacob { 1099b0a2fdeeSScott Long struct mpt_personality *pers; 11009b631363SMatt Jacob int ret; 110129ae59edSMatt Jacob int retry_cnt = 0; 11029b631363SMatt Jacob 110329ae59edSMatt Jacob /* 110429ae59edSMatt Jacob * Try a soft reset. If that fails, get out the big hammer. 110529ae59edSMatt Jacob */ 110629ae59edSMatt Jacob again: 11079b631363SMatt Jacob if ((ret = mpt_soft_reset(mpt)) != MPT_OK) { 110829ae59edSMatt Jacob int cnt; 110929ae59edSMatt Jacob for (cnt = 0; cnt < 5; cnt++) { 11109b631363SMatt Jacob /* Failed; do a hard reset */ 11119b631363SMatt Jacob mpt_hard_reset(mpt); 11129b631363SMatt Jacob 111329ae59edSMatt Jacob /* 111429ae59edSMatt Jacob * Wait for the IOC to reload 111529ae59edSMatt Jacob * and come out of reset state 111629ae59edSMatt Jacob */ 11179b631363SMatt Jacob ret = mpt_wait_state(mpt, MPT_DB_STATE_READY); 111829ae59edSMatt Jacob if (ret == MPT_OK) { 111929ae59edSMatt Jacob break; 112029ae59edSMatt Jacob } 112129ae59edSMatt Jacob /* 112229ae59edSMatt Jacob * Okay- try to check again... 112329ae59edSMatt Jacob */ 112429ae59edSMatt Jacob ret = mpt_wait_state(mpt, MPT_DB_STATE_READY); 112529ae59edSMatt Jacob if (ret == MPT_OK) { 112629ae59edSMatt Jacob break; 112729ae59edSMatt Jacob } 112829ae59edSMatt Jacob mpt_prt(mpt, "mpt_reset: failed hard reset (%d:%d)\n", 112929ae59edSMatt Jacob retry_cnt, cnt); 113029ae59edSMatt Jacob } 11319b631363SMatt Jacob } 1132b0a2fdeeSScott Long 113329ae59edSMatt Jacob if (retry_cnt == 0) { 1134b0a2fdeeSScott Long /* 1135b0a2fdeeSScott Long * Invoke reset handlers. We bump the reset count so 1136b0a2fdeeSScott Long * that mpt_wait_req() understands that regardless of 1137b0a2fdeeSScott Long * the specified wait condition, it should stop its wait. 1138b0a2fdeeSScott Long */ 1139b0a2fdeeSScott Long mpt->reset_cnt++; 1140b0a2fdeeSScott Long MPT_PERS_FOREACH(mpt, pers) 1141b0a2fdeeSScott Long pers->reset(mpt, ret); 114229ae59edSMatt Jacob } 1143b0a2fdeeSScott Long 11445e073106SMatt Jacob if (reinit) { 1145c87e3f83SMatt Jacob ret = mpt_enable_ioc(mpt, 1); 114629ae59edSMatt Jacob if (ret == MPT_OK) { 114729ae59edSMatt Jacob mpt_enable_ints(mpt); 114829ae59edSMatt Jacob } 114929ae59edSMatt Jacob } 115029ae59edSMatt Jacob if (ret != MPT_OK && retry_cnt++ < 2) { 115129ae59edSMatt Jacob goto again; 115229ae59edSMatt Jacob } 11539b631363SMatt Jacob return ret; 11549b631363SMatt Jacob } 11559b631363SMatt Jacob 11569b631363SMatt Jacob /* Return a command buffer to the free queue */ 11579b631363SMatt Jacob void 1158b0a2fdeeSScott Long mpt_free_request(struct mpt_softc *mpt, request_t *req) 11599b631363SMatt Jacob { 1160444dd2b6SMatt Jacob request_t *nxt; 1161b0a2fdeeSScott Long struct mpt_evtf_record *record; 1162b0a2fdeeSScott Long uint32_t reply_baddr; 1163b0a2fdeeSScott Long 11647dec90bcSMatt Jacob if (req == NULL || req != &mpt->request_pool[req->index]) { 11659b631363SMatt Jacob panic("mpt_free_request bad req ptr\n"); 11669b631363SMatt Jacob return; 11679b631363SMatt Jacob } 1168444dd2b6SMatt Jacob if ((nxt = req->chain) != NULL) { 1169444dd2b6SMatt Jacob req->chain = NULL; 1170444dd2b6SMatt Jacob mpt_free_request(mpt, nxt); /* NB: recursion */ 1171444dd2b6SMatt Jacob } 11725e073106SMatt Jacob KASSERT(req->state != REQ_STATE_FREE, ("freeing free request")); 11735e073106SMatt Jacob KASSERT(!(req->state & REQ_STATE_LOCKED), ("freeing locked request")); 11745089bd63SMatt Jacob KASSERT(MPT_OWNED(mpt), ("mpt_free_request: mpt not locked\n")); 11755089bd63SMatt Jacob KASSERT(mpt_req_on_free_list(mpt, req) == 0, 11765089bd63SMatt Jacob ("mpt_free_request: req %p:%u func %x already on freelist", 11775089bd63SMatt Jacob req, req->serno, ((MSG_REQUEST_HEADER *)req->req_vbuf)->Function)); 11785089bd63SMatt Jacob KASSERT(mpt_req_on_pending_list(mpt, req) == 0, 11795089bd63SMatt Jacob ("mpt_free_request: req %p:%u func %x on pending list", 11805089bd63SMatt Jacob req, req->serno, ((MSG_REQUEST_HEADER *)req->req_vbuf)->Function)); 11815089bd63SMatt Jacob #ifdef INVARIANTS 11825089bd63SMatt Jacob mpt_req_not_spcl(mpt, req, "mpt_free_request", __LINE__); 11835089bd63SMatt Jacob #endif 11845e073106SMatt Jacob 11859b631363SMatt Jacob req->ccb = NULL; 1186b0a2fdeeSScott Long if (LIST_EMPTY(&mpt->ack_frames)) { 1187c87e3f83SMatt Jacob /* 1188c87e3f83SMatt Jacob * Insert free ones at the tail 1189c87e3f83SMatt Jacob */ 11905e073106SMatt Jacob req->serno = 0; 11915e073106SMatt Jacob req->state = REQ_STATE_FREE; 11925089bd63SMatt Jacob #ifdef INVARIANTS 11935089bd63SMatt Jacob memset(req->req_vbuf, 0xff, sizeof (MSG_REQUEST_HEADER)); 11945089bd63SMatt Jacob #endif 1195c87e3f83SMatt Jacob TAILQ_INSERT_TAIL(&mpt->request_free_list, req, links); 1196b0a2fdeeSScott Long if (mpt->getreqwaiter != 0) { 1197b0a2fdeeSScott Long mpt->getreqwaiter = 0; 1198b0a2fdeeSScott Long wakeup(&mpt->request_free_list); 1199b0a2fdeeSScott Long } 1200b0a2fdeeSScott Long return; 1201b0a2fdeeSScott Long } 1202b0a2fdeeSScott Long 1203b0a2fdeeSScott Long /* 1204b0a2fdeeSScott Long * Process an ack frame deferred due to resource shortage. 1205b0a2fdeeSScott Long */ 1206b0a2fdeeSScott Long record = LIST_FIRST(&mpt->ack_frames); 1207b0a2fdeeSScott Long LIST_REMOVE(record, links); 12085e073106SMatt Jacob req->state = REQ_STATE_ALLOCATED; 12095089bd63SMatt Jacob mpt_assign_serno(mpt, req); 1210b0a2fdeeSScott Long mpt_send_event_ack(mpt, req, &record->reply, record->context); 1211b0a2fdeeSScott Long reply_baddr = (uint32_t)((uint8_t *)record - mpt->reply) 1212b0a2fdeeSScott Long + (mpt->reply_phys & 0xFFFFFFFF); 1213b0a2fdeeSScott Long mpt_free_reply(mpt, reply_baddr); 12149b631363SMatt Jacob } 12159b631363SMatt Jacob 12169b631363SMatt Jacob /* Get a command buffer from the free queue */ 12179b631363SMatt Jacob request_t * 1218b0a2fdeeSScott Long mpt_get_request(struct mpt_softc *mpt, int sleep_ok) 12199b631363SMatt Jacob { 12209b631363SMatt Jacob request_t *req; 1221b0a2fdeeSScott Long 1222b0a2fdeeSScott Long retry: 12235089bd63SMatt Jacob KASSERT(MPT_OWNED(mpt), ("mpt_get_request: mpt not locked\n")); 1224b0a2fdeeSScott Long req = TAILQ_FIRST(&mpt->request_free_list); 12259b631363SMatt Jacob if (req != NULL) { 1226b0a2fdeeSScott Long KASSERT(req == &mpt->request_pool[req->index], 1227b0a2fdeeSScott Long ("mpt_get_request: corrupted request free list\n")); 12285e073106SMatt Jacob KASSERT(req->state == REQ_STATE_FREE, 12295089bd63SMatt Jacob ("req %p:%u not free on free list %x index %d function %x", 12305089bd63SMatt Jacob req, req->serno, req->state, req->index, 12315089bd63SMatt Jacob ((MSG_REQUEST_HEADER *)req->req_vbuf)->Function)); 1232b0a2fdeeSScott Long TAILQ_REMOVE(&mpt->request_free_list, req, links); 1233b0a2fdeeSScott Long req->state = REQ_STATE_ALLOCATED; 1234444dd2b6SMatt Jacob req->chain = NULL; 12355089bd63SMatt Jacob mpt_assign_serno(mpt, req); 1236b0a2fdeeSScott Long } else if (sleep_ok != 0) { 1237b0a2fdeeSScott Long mpt->getreqwaiter = 1; 1238b0a2fdeeSScott Long mpt_sleep(mpt, &mpt->request_free_list, PUSER, "mptgreq", 0); 1239b0a2fdeeSScott Long goto retry; 12409b631363SMatt Jacob } 12415e073106SMatt Jacob return (req); 12429b631363SMatt Jacob } 12439b631363SMatt Jacob 12449b631363SMatt Jacob /* Pass the command to the IOC */ 12459b631363SMatt Jacob void 1246b0a2fdeeSScott Long mpt_send_cmd(struct mpt_softc *mpt, request_t *req) 12479b631363SMatt Jacob { 12481d79ca0eSMatt Jacob if (mpt->verbose > MPT_PRT_DEBUG2) { 12491043516dSMatt Jacob mpt_dump_request(mpt, req); 1250444dd2b6SMatt Jacob } 12519b631363SMatt Jacob bus_dmamap_sync(mpt->request_dmat, mpt->request_dmap, 12529b631363SMatt Jacob BUS_DMASYNC_PREWRITE); 1253b0a2fdeeSScott Long req->state |= REQ_STATE_QUEUED; 12545089bd63SMatt Jacob KASSERT(mpt_req_on_free_list(mpt, req) == 0, 12555089bd63SMatt Jacob ("req %p:%u func %x on freelist list in mpt_send_cmd", 12565089bd63SMatt Jacob req, req->serno, ((MSG_REQUEST_HEADER *)req->req_vbuf)->Function)); 12575089bd63SMatt Jacob KASSERT(mpt_req_on_pending_list(mpt, req) == 0, 12585089bd63SMatt Jacob ("req %p:%u func %x already on pending list in mpt_send_cmd", 12595089bd63SMatt Jacob req, req->serno, ((MSG_REQUEST_HEADER *)req->req_vbuf)->Function)); 1260b0a2fdeeSScott Long TAILQ_INSERT_HEAD(&mpt->request_pending_list, req, links); 1261b0a2fdeeSScott Long mpt_write(mpt, MPT_OFFSET_REQUEST_Q, (uint32_t) req->req_pbuf); 12629b631363SMatt Jacob } 12639b631363SMatt Jacob 12649b631363SMatt Jacob /* 1265b0a2fdeeSScott Long * Wait for a request to complete. 1266b0a2fdeeSScott Long * 1267b0a2fdeeSScott Long * Inputs: 1268b0a2fdeeSScott Long * mpt softc of controller executing request 1269b0a2fdeeSScott Long * req request to wait for 1270b0a2fdeeSScott Long * sleep_ok nonzero implies may sleep in this context 1271b0a2fdeeSScott Long * time_ms timeout in ms. 0 implies no timeout. 1272b0a2fdeeSScott Long * 1273b0a2fdeeSScott Long * Return Values: 1274b0a2fdeeSScott Long * 0 Request completed 1275b0a2fdeeSScott Long * non-0 Timeout fired before request completion. 12769b631363SMatt Jacob */ 1277b0a2fdeeSScott Long int 1278b0a2fdeeSScott Long mpt_wait_req(struct mpt_softc *mpt, request_t *req, 1279b0a2fdeeSScott Long mpt_req_state_t state, mpt_req_state_t mask, 1280b0a2fdeeSScott Long int sleep_ok, int time_ms) 12819b631363SMatt Jacob { 1282b0a2fdeeSScott Long int error; 1283b0a2fdeeSScott Long int timeout; 1284b0a2fdeeSScott Long u_int saved_cnt; 12859b631363SMatt Jacob 1286b0a2fdeeSScott Long /* 1287b0a2fdeeSScott Long * timeout is in ms. 0 indicates infinite wait. 1288b0a2fdeeSScott Long * Convert to ticks or 500us units depending on 1289b0a2fdeeSScott Long * our sleep mode. 1290b0a2fdeeSScott Long */ 1291c87e3f83SMatt Jacob if (sleep_ok != 0) { 1292b0a2fdeeSScott Long timeout = (time_ms * hz) / 1000; 1293c87e3f83SMatt Jacob } else { 1294b0a2fdeeSScott Long timeout = time_ms * 2; 1295c87e3f83SMatt Jacob } 1296b0a2fdeeSScott Long req->state |= REQ_STATE_NEED_WAKEUP; 1297b0a2fdeeSScott Long mask &= ~REQ_STATE_NEED_WAKEUP; 1298444dd2b6SMatt Jacob saved_cnt = mpt->reset_cnt; 1299c87e3f83SMatt Jacob while ((req->state & mask) != state && mpt->reset_cnt == saved_cnt) { 1300b0a2fdeeSScott Long if (sleep_ok != 0) { 1301b0a2fdeeSScott Long error = mpt_sleep(mpt, req, PUSER, "mptreq", timeout); 1302b0a2fdeeSScott Long if (error == EWOULDBLOCK) { 1303b0a2fdeeSScott Long timeout = 0; 1304b0a2fdeeSScott Long break; 1305b0a2fdeeSScott Long } 1306b0a2fdeeSScott Long } else { 1307b0a2fdeeSScott Long if (time_ms != 0 && --timeout == 0) { 1308b0a2fdeeSScott Long break; 1309b0a2fdeeSScott Long } 1310b0a2fdeeSScott Long DELAY(500); 1311b0a2fdeeSScott Long mpt_intr(mpt); 1312b0a2fdeeSScott Long } 1313b0a2fdeeSScott Long } 1314b0a2fdeeSScott Long req->state &= ~REQ_STATE_NEED_WAKEUP; 1315c87e3f83SMatt Jacob if (mpt->reset_cnt != saved_cnt) { 1316b0a2fdeeSScott Long return (EIO); 1317c87e3f83SMatt Jacob } 1318c87e3f83SMatt Jacob if (time_ms && timeout <= 0) { 1319c87e3f83SMatt Jacob MSG_REQUEST_HEADER *msg_hdr = req->req_vbuf; 13206621d786SMatt Jacob req->state |= REQ_STATE_TIMEDOUT; 1321c87e3f83SMatt Jacob mpt_prt(mpt, "mpt_wait_req(%x) timed out\n", msg_hdr->Function); 1322b0a2fdeeSScott Long return (ETIMEDOUT); 1323c87e3f83SMatt Jacob } 1324b0a2fdeeSScott Long return (0); 13259b631363SMatt Jacob } 13269b631363SMatt Jacob 13279b631363SMatt Jacob /* 13289b631363SMatt Jacob * Send a command to the IOC via the handshake register. 13299b631363SMatt Jacob * 13309b631363SMatt Jacob * Only done at initialization time and for certain unusual 13319b631363SMatt Jacob * commands such as device/bus reset as specified by LSI. 13329b631363SMatt Jacob */ 13339b631363SMatt Jacob int 1334b0a2fdeeSScott Long mpt_send_handshake_cmd(struct mpt_softc *mpt, size_t len, void *cmd) 13359b631363SMatt Jacob { 13369b631363SMatt Jacob int i; 1337b0a2fdeeSScott Long uint32_t data, *data32; 13389b631363SMatt Jacob 13399b631363SMatt Jacob /* Check condition of the IOC */ 13409b631363SMatt Jacob data = mpt_rd_db(mpt); 1341b0a2fdeeSScott Long if ((MPT_STATE(data) != MPT_DB_STATE_READY 1342b0a2fdeeSScott Long && MPT_STATE(data) != MPT_DB_STATE_RUNNING 1343b0a2fdeeSScott Long && MPT_STATE(data) != MPT_DB_STATE_FAULT) 1344b0a2fdeeSScott Long || MPT_DB_IS_IN_USE(data)) { 1345b0a2fdeeSScott Long mpt_prt(mpt, "handshake aborted - invalid doorbell state\n"); 13469b631363SMatt Jacob mpt_print_db(data); 13479b631363SMatt Jacob return (EBUSY); 13489b631363SMatt Jacob } 13499b631363SMatt Jacob 13509b631363SMatt Jacob /* We move things in 32 bit chunks */ 13519b631363SMatt Jacob len = (len + 3) >> 2; 13529b631363SMatt Jacob data32 = cmd; 13539b631363SMatt Jacob 13549b631363SMatt Jacob /* Clear any left over pending doorbell interupts */ 13559b631363SMatt Jacob if (MPT_DB_INTR(mpt_rd_intr(mpt))) 13569b631363SMatt Jacob mpt_write(mpt, MPT_OFFSET_INTR_STATUS, 0); 13579b631363SMatt Jacob 13589b631363SMatt Jacob /* 13599b631363SMatt Jacob * Tell the handshake reg. we are going to send a command 13609b631363SMatt Jacob * and how long it is going to be. 13619b631363SMatt Jacob */ 13629b631363SMatt Jacob data = (MPI_FUNCTION_HANDSHAKE << MPI_DOORBELL_FUNCTION_SHIFT) | 13639b631363SMatt Jacob (len << MPI_DOORBELL_ADD_DWORDS_SHIFT); 13649b631363SMatt Jacob mpt_write(mpt, MPT_OFFSET_DOORBELL, data); 13659b631363SMatt Jacob 13669b631363SMatt Jacob /* Wait for the chip to notice */ 13679b631363SMatt Jacob if (mpt_wait_db_int(mpt) != MPT_OK) { 1368a54067ccSMatt Jacob mpt_prt(mpt, "mpt_send_handshake_cmd: db ignored\n"); 1369b0a2fdeeSScott Long return (ETIMEDOUT); 13709b631363SMatt Jacob } 13719b631363SMatt Jacob 13729b631363SMatt Jacob /* Clear the interrupt */ 13739b631363SMatt Jacob mpt_write(mpt, MPT_OFFSET_INTR_STATUS, 0); 13749b631363SMatt Jacob 13759b631363SMatt Jacob if (mpt_wait_db_ack(mpt) != MPT_OK) { 1376a54067ccSMatt Jacob mpt_prt(mpt, "mpt_send_handshake_cmd: db ack timed out\n"); 1377b0a2fdeeSScott Long return (ETIMEDOUT); 13789b631363SMatt Jacob } 13799b631363SMatt Jacob 13809b631363SMatt Jacob /* Send the command */ 13819b631363SMatt Jacob for (i = 0; i < len; i++) { 13823f970273SJohn Birrell mpt_write(mpt, MPT_OFFSET_DOORBELL, htole32(*data32++)); 13839b631363SMatt Jacob if (mpt_wait_db_ack(mpt) != MPT_OK) { 1384301472c2SMatt Jacob mpt_prt(mpt, 1385a54067ccSMatt Jacob "mpt_send_handshake_cmd: timeout @ index %d\n", i); 1386b0a2fdeeSScott Long return (ETIMEDOUT); 13879b631363SMatt Jacob } 13889b631363SMatt Jacob } 13899b631363SMatt Jacob return MPT_OK; 13909b631363SMatt Jacob } 13919b631363SMatt Jacob 13929b631363SMatt Jacob /* Get the response from the handshake register */ 13939b631363SMatt Jacob int 1394b0a2fdeeSScott Long mpt_recv_handshake_reply(struct mpt_softc *mpt, size_t reply_len, void *reply) 13959b631363SMatt Jacob { 13969b631363SMatt Jacob int left, reply_left; 13979b631363SMatt Jacob u_int16_t *data16; 13983f970273SJohn Birrell uint32_t data; 13999b631363SMatt Jacob MSG_DEFAULT_REPLY *hdr; 14009b631363SMatt Jacob 14019b631363SMatt Jacob /* We move things out in 16 bit chunks */ 14029b631363SMatt Jacob reply_len >>= 1; 14039b631363SMatt Jacob data16 = (u_int16_t *)reply; 14049b631363SMatt Jacob 14059b631363SMatt Jacob hdr = (MSG_DEFAULT_REPLY *)reply; 14069b631363SMatt Jacob 14079b631363SMatt Jacob /* Get first word */ 14089b631363SMatt Jacob if (mpt_wait_db_int(mpt) != MPT_OK) { 1409b0a2fdeeSScott Long mpt_prt(mpt, "mpt_recv_handshake_cmd timeout1\n"); 14109b631363SMatt Jacob return ETIMEDOUT; 14119b631363SMatt Jacob } 14123f970273SJohn Birrell data = mpt_read(mpt, MPT_OFFSET_DOORBELL); 14133f970273SJohn Birrell *data16++ = le16toh(data & MPT_DB_DATA_MASK); 14149b631363SMatt Jacob mpt_write(mpt, MPT_OFFSET_INTR_STATUS, 0); 14159b631363SMatt Jacob 14169b631363SMatt Jacob /* Get Second Word */ 14179b631363SMatt Jacob if (mpt_wait_db_int(mpt) != MPT_OK) { 1418b0a2fdeeSScott Long mpt_prt(mpt, "mpt_recv_handshake_cmd timeout2\n"); 14199b631363SMatt Jacob return ETIMEDOUT; 14209b631363SMatt Jacob } 14213f970273SJohn Birrell data = mpt_read(mpt, MPT_OFFSET_DOORBELL); 14223f970273SJohn Birrell *data16++ = le16toh(data & MPT_DB_DATA_MASK); 14239b631363SMatt Jacob mpt_write(mpt, MPT_OFFSET_INTR_STATUS, 0); 14249b631363SMatt Jacob 14255e073106SMatt Jacob /* 14265e073106SMatt Jacob * With the second word, we can now look at the length. 14275e073106SMatt Jacob * Warn about a reply that's too short (except for IOC FACTS REPLY) 14285e073106SMatt Jacob */ 14295e073106SMatt Jacob if ((reply_len >> 1) != hdr->MsgLength && 14305e073106SMatt Jacob (hdr->Function != MPI_FUNCTION_IOC_FACTS)){ 14315e073106SMatt Jacob #if __FreeBSD_version >= 500000 1432301472c2SMatt Jacob mpt_prt(mpt, "reply length does not match message length: " 143333f31846SMatt Jacob "got %x; expected %zx for function %x\n", 14345e073106SMatt Jacob hdr->MsgLength << 2, reply_len << 1, hdr->Function); 14355e073106SMatt Jacob #else 14365e073106SMatt Jacob mpt_prt(mpt, "reply length does not match message length: " 143733f31846SMatt Jacob "got %x; expected %x for function %x\n", 14385e073106SMatt Jacob hdr->MsgLength << 2, reply_len << 1, hdr->Function); 14395e073106SMatt Jacob #endif 14409b631363SMatt Jacob } 14419b631363SMatt Jacob 14429b631363SMatt Jacob /* Get rest of the reply; but don't overflow the provided buffer */ 14439b631363SMatt Jacob left = (hdr->MsgLength << 1) - 2; 14449b631363SMatt Jacob reply_left = reply_len - 2; 14459b631363SMatt Jacob while (left--) { 14469b631363SMatt Jacob u_int16_t datum; 14479b631363SMatt Jacob 14489b631363SMatt Jacob if (mpt_wait_db_int(mpt) != MPT_OK) { 1449b0a2fdeeSScott Long mpt_prt(mpt, "mpt_recv_handshake_cmd timeout3\n"); 14509b631363SMatt Jacob return ETIMEDOUT; 14519b631363SMatt Jacob } 14523f970273SJohn Birrell data = mpt_read(mpt, MPT_OFFSET_DOORBELL); 14533f970273SJohn Birrell datum = le16toh(data & MPT_DB_DATA_MASK); 14549b631363SMatt Jacob 14559b631363SMatt Jacob if (reply_left-- > 0) 14563f970273SJohn Birrell *data16++ = datum; 14579b631363SMatt Jacob 14589b631363SMatt Jacob mpt_write(mpt, MPT_OFFSET_INTR_STATUS, 0); 14599b631363SMatt Jacob } 14609b631363SMatt Jacob 14619b631363SMatt Jacob /* One more wait & clear at the end */ 14629b631363SMatt Jacob if (mpt_wait_db_int(mpt) != MPT_OK) { 1463b0a2fdeeSScott Long mpt_prt(mpt, "mpt_recv_handshake_cmd timeout4\n"); 14649b631363SMatt Jacob return ETIMEDOUT; 14659b631363SMatt Jacob } 14669b631363SMatt Jacob mpt_write(mpt, MPT_OFFSET_INTR_STATUS, 0); 14679b631363SMatt Jacob 14689b631363SMatt Jacob if ((hdr->IOCStatus & MPI_IOCSTATUS_MASK) != MPI_IOCSTATUS_SUCCESS) { 1469b0a2fdeeSScott Long if (mpt->verbose >= MPT_PRT_TRACE) 14709b631363SMatt Jacob mpt_print_reply(hdr); 14719b631363SMatt Jacob return (MPT_FAIL | hdr->IOCStatus); 14729b631363SMatt Jacob } 14739b631363SMatt Jacob 14749b631363SMatt Jacob return (0); 14759b631363SMatt Jacob } 14769b631363SMatt Jacob 14779b631363SMatt Jacob static int 1478b0a2fdeeSScott Long mpt_get_iocfacts(struct mpt_softc *mpt, MSG_IOC_FACTS_REPLY *freplp) 14799b631363SMatt Jacob { 14809b631363SMatt Jacob MSG_IOC_FACTS f_req; 14819b631363SMatt Jacob int error; 14829b631363SMatt Jacob 14835e073106SMatt Jacob memset(&f_req, 0, sizeof f_req); 14849b631363SMatt Jacob f_req.Function = MPI_FUNCTION_IOC_FACTS; 1485b0a2fdeeSScott Long f_req.MsgContext = htole32(MPT_REPLY_HANDLER_HANDSHAKE); 14869b631363SMatt Jacob error = mpt_send_handshake_cmd(mpt, sizeof f_req, &f_req); 14879b631363SMatt Jacob if (error) 14889b631363SMatt Jacob return(error); 14899b631363SMatt Jacob error = mpt_recv_handshake_reply(mpt, sizeof (*freplp), freplp); 14909b631363SMatt Jacob return (error); 14919b631363SMatt Jacob } 14929b631363SMatt Jacob 14937104aeefSMatt Jacob static int 1494b0a2fdeeSScott Long mpt_get_portfacts(struct mpt_softc *mpt, MSG_PORT_FACTS_REPLY *freplp) 14957104aeefSMatt Jacob { 14967104aeefSMatt Jacob MSG_PORT_FACTS f_req; 14977104aeefSMatt Jacob int error; 14987104aeefSMatt Jacob 14997104aeefSMatt Jacob /* XXX: Only getting PORT FACTS for Port 0 */ 1500b0a2fdeeSScott Long memset(&f_req, 0, sizeof f_req); 15017104aeefSMatt Jacob f_req.Function = MPI_FUNCTION_PORT_FACTS; 1502b0a2fdeeSScott Long f_req.MsgContext = htole32(MPT_REPLY_HANDLER_HANDSHAKE); 15037104aeefSMatt Jacob error = mpt_send_handshake_cmd(mpt, sizeof f_req, &f_req); 15047104aeefSMatt Jacob if (error) 15057104aeefSMatt Jacob return(error); 15067104aeefSMatt Jacob error = mpt_recv_handshake_reply(mpt, sizeof (*freplp), freplp); 15077104aeefSMatt Jacob return (error); 15087104aeefSMatt Jacob } 15097104aeefSMatt Jacob 15109b631363SMatt Jacob /* 15119b631363SMatt Jacob * Send the initialization request. This is where we specify how many 15129b631363SMatt Jacob * SCSI busses and how many devices per bus we wish to emulate. 15139b631363SMatt Jacob * This is also the command that specifies the max size of the reply 15149b631363SMatt Jacob * frames from the IOC that we will be allocating. 15159b631363SMatt Jacob */ 15169b631363SMatt Jacob static int 1517b0a2fdeeSScott Long mpt_send_ioc_init(struct mpt_softc *mpt, uint32_t who) 15189b631363SMatt Jacob { 15199b631363SMatt Jacob int error = 0; 15209b631363SMatt Jacob MSG_IOC_INIT init; 15219b631363SMatt Jacob MSG_IOC_INIT_REPLY reply; 15229b631363SMatt Jacob 15235e073106SMatt Jacob memset(&init, 0, sizeof init); 15249b631363SMatt Jacob init.WhoInit = who; 15259b631363SMatt Jacob init.Function = MPI_FUNCTION_IOC_INIT; 1526444dd2b6SMatt Jacob init.MaxDevices = mpt->mpt_max_devices; 15279b631363SMatt Jacob init.MaxBuses = 1; 1528444dd2b6SMatt Jacob 1529444dd2b6SMatt Jacob init.MsgVersion = htole16(MPI_VERSION); 1530444dd2b6SMatt Jacob init.HeaderVersion = htole16(MPI_HEADER_VERSION); 1531444dd2b6SMatt Jacob init.ReplyFrameSize = htole16(MPT_REPLY_SIZE); 1532b0a2fdeeSScott Long init.MsgContext = htole32(MPT_REPLY_HANDLER_HANDSHAKE); 15339b631363SMatt Jacob 15349b631363SMatt Jacob if ((error = mpt_send_handshake_cmd(mpt, sizeof init, &init)) != 0) { 15359b631363SMatt Jacob return(error); 15369b631363SMatt Jacob } 15379b631363SMatt Jacob 15389b631363SMatt Jacob error = mpt_recv_handshake_reply(mpt, sizeof reply, &reply); 15399b631363SMatt Jacob return (error); 15409b631363SMatt Jacob } 15419b631363SMatt Jacob 15427104aeefSMatt Jacob 15437104aeefSMatt Jacob /* 15447104aeefSMatt Jacob * Utiltity routine to read configuration headers and pages 15457104aeefSMatt Jacob */ 1546b0a2fdeeSScott Long int 1547b0a2fdeeSScott Long mpt_issue_cfg_req(struct mpt_softc *mpt, request_t *req, u_int Action, 1548b0a2fdeeSScott Long u_int PageVersion, u_int PageLength, u_int PageNumber, 1549b0a2fdeeSScott Long u_int PageType, uint32_t PageAddress, bus_addr_t addr, 1550b0a2fdeeSScott Long bus_size_t len, int sleep_ok, int timeout_ms) 15517104aeefSMatt Jacob { 15527104aeefSMatt Jacob MSG_CONFIG *cfgp; 1553b0a2fdeeSScott Long SGE_SIMPLE32 *se; 15547104aeefSMatt Jacob 15557104aeefSMatt Jacob cfgp = req->req_vbuf; 1556b0a2fdeeSScott Long memset(cfgp, 0, sizeof *cfgp); 1557b0a2fdeeSScott Long cfgp->Action = Action; 15587104aeefSMatt Jacob cfgp->Function = MPI_FUNCTION_CONFIG; 1559b0a2fdeeSScott Long cfgp->Header.PageVersion = PageVersion; 1560b0a2fdeeSScott Long cfgp->Header.PageLength = PageLength; 1561b0a2fdeeSScott Long cfgp->Header.PageNumber = PageNumber; 1562b0a2fdeeSScott Long cfgp->Header.PageType = PageType; 15633f970273SJohn Birrell cfgp->PageAddress = htole32(PageAddress); 1564b0a2fdeeSScott Long se = (SGE_SIMPLE32 *)&cfgp->PageBufferSGE; 15653f970273SJohn Birrell se->Address = htole32(addr); 1566b0a2fdeeSScott Long MPI_pSGE_SET_LENGTH(se, len); 1567b0a2fdeeSScott Long MPI_pSGE_SET_FLAGS(se, (MPI_SGE_FLAGS_SIMPLE_ELEMENT | 1568b0a2fdeeSScott Long MPI_SGE_FLAGS_LAST_ELEMENT | MPI_SGE_FLAGS_END_OF_BUFFER | 1569b0a2fdeeSScott Long MPI_SGE_FLAGS_END_OF_LIST | 1570b0a2fdeeSScott Long ((Action == MPI_CONFIG_ACTION_PAGE_WRITE_CURRENT 1571b0a2fdeeSScott Long || Action == MPI_CONFIG_ACTION_PAGE_WRITE_NVRAM) 1572b0a2fdeeSScott Long ? MPI_SGE_FLAGS_HOST_TO_IOC : MPI_SGE_FLAGS_IOC_TO_HOST))); 15733f970273SJohn Birrell se->FlagsLength = htole32(se->FlagsLength); 1574b0a2fdeeSScott Long cfgp->MsgContext = htole32(req->index | MPT_REPLY_HANDLER_CONFIG); 15757104aeefSMatt Jacob 15767104aeefSMatt Jacob mpt_check_doorbell(mpt); 15777104aeefSMatt Jacob mpt_send_cmd(mpt, req); 1578b0a2fdeeSScott Long return (mpt_wait_req(mpt, req, REQ_STATE_DONE, REQ_STATE_DONE, 1579b0a2fdeeSScott Long sleep_ok, timeout_ms)); 15807104aeefSMatt Jacob } 15817104aeefSMatt Jacob 1582b0a2fdeeSScott Long 1583b0a2fdeeSScott Long int 1584b0a2fdeeSScott Long mpt_read_cfg_header(struct mpt_softc *mpt, int PageType, int PageNumber, 1585b0a2fdeeSScott Long uint32_t PageAddress, CONFIG_PAGE_HEADER *rslt, 1586b0a2fdeeSScott Long int sleep_ok, int timeout_ms) 1587b0a2fdeeSScott Long { 1588b0a2fdeeSScott Long request_t *req; 158929ae59edSMatt Jacob MSG_CONFIG *cfgp; 1590b0a2fdeeSScott Long int error; 1591b0a2fdeeSScott Long 1592b0a2fdeeSScott Long req = mpt_get_request(mpt, sleep_ok); 1593b0a2fdeeSScott Long if (req == NULL) { 1594b0a2fdeeSScott Long mpt_prt(mpt, "mpt_read_cfg_header: Get request failed!\n"); 159529ae59edSMatt Jacob return (ENOMEM); 15967104aeefSMatt Jacob } 1597b0a2fdeeSScott Long 1598b0a2fdeeSScott Long error = mpt_issue_cfg_req(mpt, req, MPI_CONFIG_ACTION_PAGE_HEADER, 1599b0a2fdeeSScott Long /*PageVersion*/0, /*PageLength*/0, PageNumber, 1600b0a2fdeeSScott Long PageType, PageAddress, /*addr*/0, /*len*/0, 1601b0a2fdeeSScott Long sleep_ok, timeout_ms); 1602b0a2fdeeSScott Long if (error != 0) { 16036621d786SMatt Jacob /* 16046621d786SMatt Jacob * Leave the request. Without resetting the chip, it's 16056621d786SMatt Jacob * still owned by it and we'll just get into trouble 16066621d786SMatt Jacob * freeing it now. Mark it as abandoned so that if it 16076621d786SMatt Jacob * shows up later it can be freed. 16086621d786SMatt Jacob */ 1609b0a2fdeeSScott Long mpt_prt(mpt, "read_cfg_header timed out\n"); 161029ae59edSMatt Jacob return (ETIMEDOUT); 1611b0a2fdeeSScott Long } 1612b0a2fdeeSScott Long 161329ae59edSMatt Jacob switch (req->IOCStatus & MPI_IOCSTATUS_MASK) { 161429ae59edSMatt Jacob case MPI_IOCSTATUS_SUCCESS: 1615b0a2fdeeSScott Long cfgp = req->req_vbuf; 1616b0a2fdeeSScott Long bcopy(&cfgp->Header, rslt, sizeof(*rslt)); 1617b0a2fdeeSScott Long error = 0; 161829ae59edSMatt Jacob break; 161929ae59edSMatt Jacob case MPI_IOCSTATUS_CONFIG_INVALID_PAGE: 162029ae59edSMatt Jacob mpt_lprt(mpt, MPT_PRT_DEBUG, 162129ae59edSMatt Jacob "Invalid Page Type %d Number %d Addr 0x%0x\n", 162229ae59edSMatt Jacob PageType, PageNumber, PageAddress); 162329ae59edSMatt Jacob error = EINVAL; 162429ae59edSMatt Jacob break; 162529ae59edSMatt Jacob default: 162629ae59edSMatt Jacob mpt_prt(mpt, "mpt_read_cfg_header: Config Info Status %x\n", 162729ae59edSMatt Jacob req->IOCStatus); 162829ae59edSMatt Jacob error = EIO; 162929ae59edSMatt Jacob break; 1630b0a2fdeeSScott Long } 16317104aeefSMatt Jacob mpt_free_request(mpt, req); 1632b0a2fdeeSScott Long return (error); 16337104aeefSMatt Jacob } 16347104aeefSMatt Jacob 1635ce68dae5SMatt Jacob int 1636b0a2fdeeSScott Long mpt_read_cfg_page(struct mpt_softc *mpt, int Action, uint32_t PageAddress, 1637b0a2fdeeSScott Long CONFIG_PAGE_HEADER *hdr, size_t len, int sleep_ok, 1638b0a2fdeeSScott Long int timeout_ms) 16397104aeefSMatt Jacob { 16407104aeefSMatt Jacob request_t *req; 1641b0a2fdeeSScott Long int error; 16427104aeefSMatt Jacob 1643b0a2fdeeSScott Long req = mpt_get_request(mpt, sleep_ok); 1644b0a2fdeeSScott Long if (req == NULL) { 1645b0a2fdeeSScott Long mpt_prt(mpt, "mpt_read_cfg_page: Get request failed!\n"); 16467104aeefSMatt Jacob return (-1); 16477104aeefSMatt Jacob } 16487104aeefSMatt Jacob 1649b0a2fdeeSScott Long error = mpt_issue_cfg_req(mpt, req, Action, hdr->PageVersion, 1650b0a2fdeeSScott Long hdr->PageLength, hdr->PageNumber, 1651b0a2fdeeSScott Long hdr->PageType & MPI_CONFIG_PAGETYPE_MASK, 1652c87e3f83SMatt Jacob PageAddress, req->req_pbuf + MPT_RQSL(mpt), 1653b0a2fdeeSScott Long len, sleep_ok, timeout_ms); 1654b0a2fdeeSScott Long if (error != 0) { 1655b0a2fdeeSScott Long mpt_prt(mpt, "read_cfg_page(%d) timed out\n", Action); 16567104aeefSMatt Jacob return (-1); 16577104aeefSMatt Jacob } 1658b0a2fdeeSScott Long 1659b0a2fdeeSScott Long if ((req->IOCStatus & MPI_IOCSTATUS_MASK) != MPI_IOCSTATUS_SUCCESS) { 1660b0a2fdeeSScott Long mpt_prt(mpt, "mpt_read_cfg_page: Config Info Status %x\n", 1661b0a2fdeeSScott Long req->IOCStatus); 1662b0a2fdeeSScott Long mpt_free_request(mpt, req); 1663b0a2fdeeSScott Long return (-1); 1664b0a2fdeeSScott Long } 16657104aeefSMatt Jacob bus_dmamap_sync(mpt->request_dmat, mpt->request_dmap, 16667104aeefSMatt Jacob BUS_DMASYNC_POSTREAD); 1667c87e3f83SMatt Jacob memcpy(hdr, ((uint8_t *)req->req_vbuf)+MPT_RQSL(mpt), len); 16687104aeefSMatt Jacob mpt_free_request(mpt, req); 16697104aeefSMatt Jacob return (0); 16707104aeefSMatt Jacob } 16717104aeefSMatt Jacob 1672ce68dae5SMatt Jacob int 1673b0a2fdeeSScott Long mpt_write_cfg_page(struct mpt_softc *mpt, int Action, uint32_t PageAddress, 1674b0a2fdeeSScott Long CONFIG_PAGE_HEADER *hdr, size_t len, int sleep_ok, 1675b0a2fdeeSScott Long int timeout_ms) 16767104aeefSMatt Jacob { 16777104aeefSMatt Jacob request_t *req; 1678b0a2fdeeSScott Long u_int hdr_attr; 1679b0a2fdeeSScott Long int error; 16807104aeefSMatt Jacob 16817104aeefSMatt Jacob hdr_attr = hdr->PageType & MPI_CONFIG_PAGEATTR_MASK; 16827104aeefSMatt Jacob if (hdr_attr != MPI_CONFIG_PAGEATTR_CHANGEABLE && 16837104aeefSMatt Jacob hdr_attr != MPI_CONFIG_PAGEATTR_PERSISTENT) { 1684b0a2fdeeSScott Long mpt_prt(mpt, "page type 0x%x not changeable\n", 16857104aeefSMatt Jacob hdr->PageType & MPI_CONFIG_PAGETYPE_MASK); 16867104aeefSMatt Jacob return (-1); 16877104aeefSMatt Jacob } 1688b4c618c0SMatt Jacob 1689b4c618c0SMatt Jacob #if 0 1690b4c618c0SMatt Jacob /* 1691b4c618c0SMatt Jacob * We shouldn't mask off other bits here. 1692b4c618c0SMatt Jacob */ 1693b4c618c0SMatt Jacob hdr->PageType &= MPI_CONFIG_PAGETYPE_MASK; 1694b4c618c0SMatt Jacob #endif 16957104aeefSMatt Jacob 1696b0a2fdeeSScott Long req = mpt_get_request(mpt, sleep_ok); 1697b0a2fdeeSScott Long if (req == NULL) 1698b0a2fdeeSScott Long return (-1); 16997104aeefSMatt Jacob 1700c87e3f83SMatt Jacob memcpy(((caddr_t)req->req_vbuf) + MPT_RQSL(mpt), hdr, len); 1701b4c618c0SMatt Jacob 1702b4c618c0SMatt Jacob /* 1703b4c618c0SMatt Jacob * There isn't any point in restoring stripped out attributes 1704b4c618c0SMatt Jacob * if you then mask them going down to issue the request. 1705b4c618c0SMatt Jacob */ 1706b4c618c0SMatt Jacob 1707b4c618c0SMatt Jacob #if 0 1708301472c2SMatt Jacob /* Restore stripped out attributes */ 1709301472c2SMatt Jacob hdr->PageType |= hdr_attr; 17107104aeefSMatt Jacob 1711b0a2fdeeSScott Long error = mpt_issue_cfg_req(mpt, req, Action, hdr->PageVersion, 1712b0a2fdeeSScott Long hdr->PageLength, hdr->PageNumber, 1713b0a2fdeeSScott Long hdr->PageType & MPI_CONFIG_PAGETYPE_MASK, 1714c87e3f83SMatt Jacob PageAddress, req->req_pbuf + MPT_RQSL(mpt), 1715b0a2fdeeSScott Long len, sleep_ok, timeout_ms); 1716b4c618c0SMatt Jacob #else 1717b4c618c0SMatt Jacob error = mpt_issue_cfg_req(mpt, req, Action, hdr->PageVersion, 1718b4c618c0SMatt Jacob hdr->PageLength, hdr->PageNumber, 1719b4c618c0SMatt Jacob hdr->PageType, PageAddress, 1720b4c618c0SMatt Jacob req->req_pbuf + MPT_RQSL(mpt), 1721b4c618c0SMatt Jacob len, sleep_ok, timeout_ms); 1722b4c618c0SMatt Jacob #endif 1723b0a2fdeeSScott Long if (error != 0) { 1724b0a2fdeeSScott Long mpt_prt(mpt, "mpt_write_cfg_page timed out\n"); 17257104aeefSMatt Jacob return (-1); 17267104aeefSMatt Jacob } 17277104aeefSMatt Jacob 1728b0a2fdeeSScott Long if ((req->IOCStatus & MPI_IOCSTATUS_MASK) != MPI_IOCSTATUS_SUCCESS) { 1729b0a2fdeeSScott Long mpt_prt(mpt, "mpt_write_cfg_page: Config Info Status %x\n", 1730b0a2fdeeSScott Long req->IOCStatus); 17317104aeefSMatt Jacob mpt_free_request(mpt, req); 1732b0a2fdeeSScott Long return (-1); 1733b0a2fdeeSScott Long } 1734b0a2fdeeSScott Long mpt_free_request(mpt, req); 1735b0a2fdeeSScott Long return (0); 1736b0a2fdeeSScott Long } 1737b0a2fdeeSScott Long 1738b0a2fdeeSScott Long /* 1739b0a2fdeeSScott Long * Read IOC configuration information 1740b0a2fdeeSScott Long */ 1741b0a2fdeeSScott Long static int 1742b0a2fdeeSScott Long mpt_read_config_info_ioc(struct mpt_softc *mpt) 1743b0a2fdeeSScott Long { 1744b0a2fdeeSScott Long CONFIG_PAGE_HEADER hdr; 1745b0a2fdeeSScott Long struct mpt_raid_volume *mpt_raid; 1746b0a2fdeeSScott Long int rv; 1747b0a2fdeeSScott Long int i; 1748b0a2fdeeSScott Long size_t len; 1749b0a2fdeeSScott Long 1750b0a2fdeeSScott Long rv = mpt_read_cfg_header(mpt, MPI_CONFIG_PAGETYPE_IOC, 17511d79ca0eSMatt Jacob 2, 0, &hdr, FALSE, 5000); 175229ae59edSMatt Jacob /* 175329ae59edSMatt Jacob * If it's an invalid page, so what? Not a supported function.... 175429ae59edSMatt Jacob */ 17551d79ca0eSMatt Jacob if (rv == EINVAL) { 175629ae59edSMatt Jacob return (0); 17571d79ca0eSMatt Jacob } 17581d79ca0eSMatt Jacob if (rv) { 175929ae59edSMatt Jacob return (rv); 17601d79ca0eSMatt Jacob } 1761b0a2fdeeSScott Long 17625e073106SMatt Jacob #if __FreeBSD_version >= 500000 1763a529c6a2SMatt Jacob mpt_lprt(mpt, MPT_PRT_DEBUG, "IOC Page 2 Header: ver %x, len %zx, " 1764b0a2fdeeSScott Long "num %x, type %x\n", hdr.PageVersion, 1765b0a2fdeeSScott Long hdr.PageLength * sizeof(uint32_t), 1766b0a2fdeeSScott Long hdr.PageNumber, hdr.PageType); 17675e073106SMatt Jacob #else 17685e073106SMatt Jacob mpt_lprt(mpt, MPT_PRT_DEBUG, "IOC Page 2 Header: ver %x, len %z, " 17695e073106SMatt Jacob "num %x, type %x\n", hdr.PageVersion, 17705e073106SMatt Jacob hdr.PageLength * sizeof(uint32_t), 17715e073106SMatt Jacob hdr.PageNumber, hdr.PageType); 17725e073106SMatt Jacob #endif 1773b0a2fdeeSScott Long 1774b0a2fdeeSScott Long len = hdr.PageLength * sizeof(uint32_t); 1775a3699bcaSScott Long mpt->ioc_page2 = malloc(len, M_DEVBUF, M_NOWAIT | M_ZERO); 17761d79ca0eSMatt Jacob if (mpt->ioc_page2 == NULL) { 17771d79ca0eSMatt Jacob mpt_prt(mpt, "unable to allocate memory for IOC page 2\n"); 17781d79ca0eSMatt Jacob mpt_raid_free_mem(mpt); 1779b0a2fdeeSScott Long return (ENOMEM); 17801d79ca0eSMatt Jacob } 1781b0a2fdeeSScott Long memcpy(&mpt->ioc_page2->Header, &hdr, sizeof(hdr)); 17821d79ca0eSMatt Jacob rv = mpt_read_cur_cfg_page(mpt, 0, 17831d79ca0eSMatt Jacob &mpt->ioc_page2->Header, len, FALSE, 5000); 1784b0a2fdeeSScott Long if (rv) { 1785b0a2fdeeSScott Long mpt_prt(mpt, "failed to read IOC Page 2\n"); 17861d79ca0eSMatt Jacob mpt_raid_free_mem(mpt); 17871d79ca0eSMatt Jacob return (EIO); 17881d79ca0eSMatt Jacob } 17891d79ca0eSMatt Jacob 17901d79ca0eSMatt Jacob if (mpt->ioc_page2->CapabilitiesFlags != 0) { 1791b0a2fdeeSScott Long uint32_t mask; 1792b0a2fdeeSScott Long 1793b0a2fdeeSScott Long mpt_prt(mpt, "Capabilities: ("); 1794b0a2fdeeSScott Long for (mask = 1; mask != 0; mask <<= 1) { 17951d79ca0eSMatt Jacob if ((mpt->ioc_page2->CapabilitiesFlags & mask) == 0) { 1796b0a2fdeeSScott Long continue; 17971d79ca0eSMatt Jacob } 1798b0a2fdeeSScott Long switch (mask) { 1799b0a2fdeeSScott Long case MPI_IOCPAGE2_CAP_FLAGS_IS_SUPPORT: 1800b0a2fdeeSScott Long mpt_prtc(mpt, " RAID-0"); 1801b0a2fdeeSScott Long break; 1802b0a2fdeeSScott Long case MPI_IOCPAGE2_CAP_FLAGS_IME_SUPPORT: 1803b0a2fdeeSScott Long mpt_prtc(mpt, " RAID-1E"); 1804b0a2fdeeSScott Long break; 1805b0a2fdeeSScott Long case MPI_IOCPAGE2_CAP_FLAGS_IM_SUPPORT: 1806b0a2fdeeSScott Long mpt_prtc(mpt, " RAID-1"); 1807b0a2fdeeSScott Long break; 1808b0a2fdeeSScott Long case MPI_IOCPAGE2_CAP_FLAGS_SES_SUPPORT: 1809b0a2fdeeSScott Long mpt_prtc(mpt, " SES"); 1810b0a2fdeeSScott Long break; 1811b0a2fdeeSScott Long case MPI_IOCPAGE2_CAP_FLAGS_SAFTE_SUPPORT: 1812b0a2fdeeSScott Long mpt_prtc(mpt, " SAFTE"); 1813b0a2fdeeSScott Long break; 1814b0a2fdeeSScott Long case MPI_IOCPAGE2_CAP_FLAGS_CROSS_CHANNEL_SUPPORT: 1815b0a2fdeeSScott Long mpt_prtc(mpt, " Multi-Channel-Arrays"); 1816b0a2fdeeSScott Long default: 1817b0a2fdeeSScott Long break; 1818b0a2fdeeSScott Long } 1819b0a2fdeeSScott Long } 1820b0a2fdeeSScott Long mpt_prtc(mpt, " )\n"); 1821b0a2fdeeSScott Long if ((mpt->ioc_page2->CapabilitiesFlags 1822b0a2fdeeSScott Long & (MPI_IOCPAGE2_CAP_FLAGS_IS_SUPPORT 1823b0a2fdeeSScott Long | MPI_IOCPAGE2_CAP_FLAGS_IME_SUPPORT 1824b0a2fdeeSScott Long | MPI_IOCPAGE2_CAP_FLAGS_IM_SUPPORT)) != 0) { 1825b0a2fdeeSScott Long mpt_prt(mpt, "%d Active Volume%s(%d Max)\n", 1826b0a2fdeeSScott Long mpt->ioc_page2->NumActiveVolumes, 1827b0a2fdeeSScott Long mpt->ioc_page2->NumActiveVolumes != 1 1828b0a2fdeeSScott Long ? "s " : " ", 1829b0a2fdeeSScott Long mpt->ioc_page2->MaxVolumes); 1830b0a2fdeeSScott Long mpt_prt(mpt, "%d Hidden Drive Member%s(%d Max)\n", 1831b0a2fdeeSScott Long mpt->ioc_page2->NumActivePhysDisks, 1832b0a2fdeeSScott Long mpt->ioc_page2->NumActivePhysDisks != 1 1833b0a2fdeeSScott Long ? "s " : " ", 1834b0a2fdeeSScott Long mpt->ioc_page2->MaxPhysDisks); 1835b0a2fdeeSScott Long } 1836b0a2fdeeSScott Long } 1837b0a2fdeeSScott Long 1838b0a2fdeeSScott Long len = mpt->ioc_page2->MaxVolumes * sizeof(struct mpt_raid_volume); 18391d79ca0eSMatt Jacob mpt->raid_volumes = malloc(len, M_DEVBUF, M_NOWAIT | M_ZERO); 1840b0a2fdeeSScott Long if (mpt->raid_volumes == NULL) { 1841b0a2fdeeSScott Long mpt_prt(mpt, "Could not allocate RAID volume data\n"); 18421d79ca0eSMatt Jacob mpt_raid_free_mem(mpt); 18431d79ca0eSMatt Jacob return (ENOMEM); 1844b0a2fdeeSScott Long } 1845b0a2fdeeSScott Long 1846b0a2fdeeSScott Long /* 1847b0a2fdeeSScott Long * Copy critical data out of ioc_page2 so that we can 1848b0a2fdeeSScott Long * safely refresh the page without windows of unreliable 1849b0a2fdeeSScott Long * data. 1850b0a2fdeeSScott Long */ 1851b0a2fdeeSScott Long mpt->raid_max_volumes = mpt->ioc_page2->MaxVolumes; 1852b0a2fdeeSScott Long 18531d79ca0eSMatt Jacob len = sizeof(*mpt->raid_volumes->config_page) + 18541d79ca0eSMatt Jacob (sizeof (RAID_VOL0_PHYS_DISK) * (mpt->ioc_page2->MaxPhysDisks - 1)); 1855b0a2fdeeSScott Long for (i = 0; i < mpt->ioc_page2->MaxVolumes; i++) { 1856b0a2fdeeSScott Long mpt_raid = &mpt->raid_volumes[i]; 18571d79ca0eSMatt Jacob mpt_raid->config_page = 18581d79ca0eSMatt Jacob malloc(len, M_DEVBUF, M_NOWAIT | M_ZERO); 1859b0a2fdeeSScott Long if (mpt_raid->config_page == NULL) { 1860b0a2fdeeSScott Long mpt_prt(mpt, "Could not allocate RAID page data\n"); 18611d79ca0eSMatt Jacob mpt_raid_free_mem(mpt); 18621d79ca0eSMatt Jacob return (ENOMEM); 1863b0a2fdeeSScott Long } 1864b0a2fdeeSScott Long } 1865b0a2fdeeSScott Long mpt->raid_page0_len = len; 1866b0a2fdeeSScott Long 1867b0a2fdeeSScott Long len = mpt->ioc_page2->MaxPhysDisks * sizeof(struct mpt_raid_disk); 18681d79ca0eSMatt Jacob mpt->raid_disks = malloc(len, M_DEVBUF, M_NOWAIT | M_ZERO); 1869b0a2fdeeSScott Long if (mpt->raid_disks == NULL) { 1870b0a2fdeeSScott Long mpt_prt(mpt, "Could not allocate RAID disk data\n"); 18711d79ca0eSMatt Jacob mpt_raid_free_mem(mpt); 18721d79ca0eSMatt Jacob return (ENOMEM); 1873b0a2fdeeSScott Long } 1874b0a2fdeeSScott Long mpt->raid_max_disks = mpt->ioc_page2->MaxPhysDisks; 1875b0a2fdeeSScott Long 18761d79ca0eSMatt Jacob /* 18771d79ca0eSMatt Jacob * Load page 3. 18781d79ca0eSMatt Jacob */ 1879b0a2fdeeSScott Long rv = mpt_read_cfg_header(mpt, MPI_CONFIG_PAGETYPE_IOC, 18801d79ca0eSMatt Jacob 3, 0, &hdr, FALSE, 5000); 18811d79ca0eSMatt Jacob if (rv) { 18821d79ca0eSMatt Jacob mpt_raid_free_mem(mpt); 1883b0a2fdeeSScott Long return (EIO); 18841d79ca0eSMatt Jacob } 1885b0a2fdeeSScott Long 1886b0a2fdeeSScott Long mpt_lprt(mpt, MPT_PRT_DEBUG, "IOC Page 3 Header: %x %x %x %x\n", 1887b0a2fdeeSScott Long hdr.PageVersion, hdr.PageLength, hdr.PageNumber, hdr.PageType); 1888b0a2fdeeSScott Long 1889b0a2fdeeSScott Long len = hdr.PageLength * sizeof(uint32_t); 1890a3699bcaSScott Long mpt->ioc_page3 = malloc(len, M_DEVBUF, M_NOWAIT | M_ZERO); 18911d79ca0eSMatt Jacob if (mpt->ioc_page3 == NULL) { 18921d79ca0eSMatt Jacob mpt_prt(mpt, "unable to allocate memory for IOC page 3\n"); 18931d79ca0eSMatt Jacob mpt_raid_free_mem(mpt); 18941d79ca0eSMatt Jacob return (ENOMEM); 1895b0a2fdeeSScott Long } 18961d79ca0eSMatt Jacob memcpy(&mpt->ioc_page3->Header, &hdr, sizeof(hdr)); 18971d79ca0eSMatt Jacob rv = mpt_read_cur_cfg_page(mpt, 0, 18981d79ca0eSMatt Jacob &mpt->ioc_page3->Header, len, FALSE, 5000); 18991d79ca0eSMatt Jacob if (rv) { 19001d79ca0eSMatt Jacob mpt_raid_free_mem(mpt); 19011d79ca0eSMatt Jacob return (EIO); 19021d79ca0eSMatt Jacob } 1903b0a2fdeeSScott Long mpt_raid_wakeup(mpt); 19047104aeefSMatt Jacob return (0); 19057104aeefSMatt Jacob } 19067104aeefSMatt Jacob 19077104aeefSMatt Jacob /* 19087104aeefSMatt Jacob * Enable IOC port 19097104aeefSMatt Jacob */ 19107104aeefSMatt Jacob static int 1911b0a2fdeeSScott Long mpt_send_port_enable(struct mpt_softc *mpt, int port) 19129b631363SMatt Jacob { 19139b631363SMatt Jacob request_t *req; 19149b631363SMatt Jacob MSG_PORT_ENABLE *enable_req; 1915b0a2fdeeSScott Long int error; 19169b631363SMatt Jacob 1917b0a2fdeeSScott Long req = mpt_get_request(mpt, /*sleep_ok*/FALSE); 1918b0a2fdeeSScott Long if (req == NULL) 1919b0a2fdeeSScott Long return (-1); 19209b631363SMatt Jacob 19219b631363SMatt Jacob enable_req = req->req_vbuf; 19225e073106SMatt Jacob memset(enable_req, 0, MPT_RQSL(mpt)); 19239b631363SMatt Jacob 19249b631363SMatt Jacob enable_req->Function = MPI_FUNCTION_PORT_ENABLE; 1925b0a2fdeeSScott Long enable_req->MsgContext = htole32(req->index | MPT_REPLY_HANDLER_CONFIG); 19269b631363SMatt Jacob enable_req->PortNumber = port; 19279b631363SMatt Jacob 19289b631363SMatt Jacob mpt_check_doorbell(mpt); 1929b0a2fdeeSScott Long mpt_lprt(mpt, MPT_PRT_DEBUG, "enabling port %d\n", port); 19309b631363SMatt Jacob 1931b0a2fdeeSScott Long mpt_send_cmd(mpt, req); 1932b0a2fdeeSScott Long error = mpt_wait_req(mpt, req, REQ_STATE_DONE, REQ_STATE_DONE, 19335089bd63SMatt Jacob FALSE, (mpt->is_sas || mpt->is_fc)? 30000 : 3000); 1934b0a2fdeeSScott Long if (error != 0) { 1935c87e3f83SMatt Jacob mpt_prt(mpt, "port %d enable timed out\n", port); 19369b631363SMatt Jacob return (-1); 19379b631363SMatt Jacob } 19389b631363SMatt Jacob mpt_free_request(mpt, req); 1939c87e3f83SMatt Jacob mpt_lprt(mpt, MPT_PRT_DEBUG, "enabled port %d\n", port); 19409b631363SMatt Jacob return (0); 19419b631363SMatt Jacob } 19429b631363SMatt Jacob 19439b631363SMatt Jacob /* 19449b631363SMatt Jacob * Enable/Disable asynchronous event reporting. 19459b631363SMatt Jacob */ 19469b631363SMatt Jacob static int 1947b0a2fdeeSScott Long mpt_send_event_request(struct mpt_softc *mpt, int onoff) 19489b631363SMatt Jacob { 19499b631363SMatt Jacob request_t *req; 19509b631363SMatt Jacob MSG_EVENT_NOTIFY *enable_req; 19519b631363SMatt Jacob 19525e073106SMatt Jacob req = mpt_get_request(mpt, FALSE); 19535e073106SMatt Jacob if (req == NULL) { 19545e073106SMatt Jacob return (ENOMEM); 19555e073106SMatt Jacob } 19569b631363SMatt Jacob enable_req = req->req_vbuf; 19575e073106SMatt Jacob memset(enable_req, 0, sizeof *enable_req); 19589b631363SMatt Jacob 19599b631363SMatt Jacob enable_req->Function = MPI_FUNCTION_EVENT_NOTIFICATION; 1960b0a2fdeeSScott Long enable_req->MsgContext = htole32(req->index | MPT_REPLY_HANDLER_EVENTS); 19619b631363SMatt Jacob enable_req->Switch = onoff; 19629b631363SMatt Jacob 19639b631363SMatt Jacob mpt_check_doorbell(mpt); 19645e073106SMatt Jacob mpt_lprt(mpt, MPT_PRT_DEBUG, "%sabling async events\n", 19655e073106SMatt Jacob onoff ? "en" : "dis"); 19665e073106SMatt Jacob /* 19675e073106SMatt Jacob * Send the command off, but don't wait for it. 19685e073106SMatt Jacob */ 19699b631363SMatt Jacob mpt_send_cmd(mpt, req); 19709b631363SMatt Jacob return (0); 19719b631363SMatt Jacob } 19729b631363SMatt Jacob 19739b631363SMatt Jacob /* 19749b631363SMatt Jacob * Un-mask the interupts on the chip. 19759b631363SMatt Jacob */ 19769b631363SMatt Jacob void 1977b0a2fdeeSScott Long mpt_enable_ints(struct mpt_softc *mpt) 19789b631363SMatt Jacob { 19799b631363SMatt Jacob /* Unmask every thing except door bell int */ 19809b631363SMatt Jacob mpt_write(mpt, MPT_OFFSET_INTR_MASK, MPT_INTR_DB_MASK); 19819b631363SMatt Jacob } 19829b631363SMatt Jacob 19839b631363SMatt Jacob /* 19849b631363SMatt Jacob * Mask the interupts on the chip. 19859b631363SMatt Jacob */ 19869b631363SMatt Jacob void 1987b0a2fdeeSScott Long mpt_disable_ints(struct mpt_softc *mpt) 19889b631363SMatt Jacob { 19899b631363SMatt Jacob /* Mask all interrupts */ 19909b631363SMatt Jacob mpt_write(mpt, MPT_OFFSET_INTR_MASK, 19919b631363SMatt Jacob MPT_INTR_REPLY_MASK | MPT_INTR_DB_MASK); 19929b631363SMatt Jacob } 19939b631363SMatt Jacob 1994b0a2fdeeSScott Long static void 1995b0a2fdeeSScott Long mpt_sysctl_attach(struct mpt_softc *mpt) 19969b631363SMatt Jacob { 1997c87e3f83SMatt Jacob #if __FreeBSD_version >= 500000 1998b0a2fdeeSScott Long struct sysctl_ctx_list *ctx = device_get_sysctl_ctx(mpt->dev); 1999b0a2fdeeSScott Long struct sysctl_oid *tree = device_get_sysctl_tree(mpt->dev); 20009b631363SMatt Jacob 2001b0a2fdeeSScott Long SYSCTL_ADD_INT(ctx, SYSCTL_CHILDREN(tree), OID_AUTO, 2002b0a2fdeeSScott Long "debug", CTLFLAG_RW, &mpt->verbose, 0, 2003b0a2fdeeSScott Long "Debugging/Verbose level"); 2004b4c618c0SMatt Jacob SYSCTL_ADD_INT(ctx, SYSCTL_CHILDREN(tree), OID_AUTO, 2005b4c618c0SMatt Jacob "role", CTLFLAG_RD, &mpt->role, 0, 2006b4c618c0SMatt Jacob "HBA role"); 2007c87e3f83SMatt Jacob #endif 20089b631363SMatt Jacob } 20099b631363SMatt Jacob 2010b0a2fdeeSScott Long int 2011b0a2fdeeSScott Long mpt_attach(struct mpt_softc *mpt) 2012b0a2fdeeSScott Long { 2013b0a2fdeeSScott Long struct mpt_personality *pers; 2014c87e3f83SMatt Jacob int i; 2015b0a2fdeeSScott Long int error; 2016b0a2fdeeSScott Long 2017a7303be1SMatt Jacob TAILQ_INSERT_TAIL(&mpt_tailq, mpt, links); 2018c87e3f83SMatt Jacob for (i = 0; i < MPT_MAX_PERSONALITIES; i++) { 2019b0a2fdeeSScott Long pers = mpt_personalities[i]; 2020c87e3f83SMatt Jacob if (pers == NULL) { 2021b0a2fdeeSScott Long continue; 2022c87e3f83SMatt Jacob } 2023b0a2fdeeSScott Long if (pers->probe(mpt) == 0) { 2024b0a2fdeeSScott Long error = pers->attach(mpt); 2025b0a2fdeeSScott Long if (error != 0) { 2026b0a2fdeeSScott Long mpt_detach(mpt); 2027b0a2fdeeSScott Long return (error); 2028b0a2fdeeSScott Long } 2029b0a2fdeeSScott Long mpt->mpt_pers_mask |= (0x1 << pers->id); 2030b0a2fdeeSScott Long pers->use_count++; 2031b0a2fdeeSScott Long } 2032b0a2fdeeSScott Long } 2033444dd2b6SMatt Jacob 2034c87e3f83SMatt Jacob /* 2035c87e3f83SMatt Jacob * Now that we've attached everything, do the enable function 2036c87e3f83SMatt Jacob * for all of the personalities. This allows the personalities 2037c87e3f83SMatt Jacob * to do setups that are appropriate for them prior to enabling 2038c87e3f83SMatt Jacob * any ports. 2039c87e3f83SMatt Jacob */ 2040c87e3f83SMatt Jacob for (i = 0; i < MPT_MAX_PERSONALITIES; i++) { 2041c87e3f83SMatt Jacob pers = mpt_personalities[i]; 2042c87e3f83SMatt Jacob if (pers != NULL && MPT_PERS_ATTACHED(pers, mpt) != 0) { 2043c87e3f83SMatt Jacob error = pers->enable(mpt); 2044c87e3f83SMatt Jacob if (error != 0) { 2045c87e3f83SMatt Jacob mpt_prt(mpt, "personality %s attached but would" 2046c87e3f83SMatt Jacob " not enable (%d)\n", pers->name, error); 2047c87e3f83SMatt Jacob mpt_detach(mpt); 2048c87e3f83SMatt Jacob return (error); 2049c87e3f83SMatt Jacob } 2050c87e3f83SMatt Jacob } 2051c87e3f83SMatt Jacob } 2052b0a2fdeeSScott Long return (0); 2053b0a2fdeeSScott Long } 2054b0a2fdeeSScott Long 2055b0a2fdeeSScott Long int 2056b0a2fdeeSScott Long mpt_shutdown(struct mpt_softc *mpt) 2057b0a2fdeeSScott Long { 2058b0a2fdeeSScott Long struct mpt_personality *pers; 2059b0a2fdeeSScott Long 2060c87e3f83SMatt Jacob MPT_PERS_FOREACH_REVERSE(mpt, pers) { 2061b0a2fdeeSScott Long pers->shutdown(mpt); 2062c87e3f83SMatt Jacob } 2063b0a2fdeeSScott Long return (0); 2064b0a2fdeeSScott Long } 2065b0a2fdeeSScott Long 2066b0a2fdeeSScott Long int 2067b0a2fdeeSScott Long mpt_detach(struct mpt_softc *mpt) 2068b0a2fdeeSScott Long { 2069b0a2fdeeSScott Long struct mpt_personality *pers; 2070b0a2fdeeSScott Long 2071b0a2fdeeSScott Long MPT_PERS_FOREACH_REVERSE(mpt, pers) { 2072b0a2fdeeSScott Long pers->detach(mpt); 2073b0a2fdeeSScott Long mpt->mpt_pers_mask &= ~(0x1 << pers->id); 2074b0a2fdeeSScott Long pers->use_count--; 2075b0a2fdeeSScott Long } 2076a7303be1SMatt Jacob TAILQ_REMOVE(&mpt_tailq, mpt, links); 2077b0a2fdeeSScott Long return (0); 2078b0a2fdeeSScott Long } 2079b0a2fdeeSScott Long 2080b0a2fdeeSScott Long int 2081b0a2fdeeSScott Long mpt_core_load(struct mpt_personality *pers) 2082b0a2fdeeSScott Long { 2083b0a2fdeeSScott Long int i; 2084b0a2fdeeSScott Long 2085b0a2fdeeSScott Long /* 2086b0a2fdeeSScott Long * Setup core handlers and insert the default handler 2087b0a2fdeeSScott Long * into all "empty slots". 2088b0a2fdeeSScott Long */ 2089c87e3f83SMatt Jacob for (i = 0; i < MPT_NUM_REPLY_HANDLERS; i++) { 2090b0a2fdeeSScott Long mpt_reply_handlers[i] = mpt_default_reply_handler; 2091c87e3f83SMatt Jacob } 2092b0a2fdeeSScott Long 2093b0a2fdeeSScott Long mpt_reply_handlers[MPT_CBI(MPT_REPLY_HANDLER_EVENTS)] = 2094b0a2fdeeSScott Long mpt_event_reply_handler; 2095b0a2fdeeSScott Long mpt_reply_handlers[MPT_CBI(MPT_REPLY_HANDLER_CONFIG)] = 2096b0a2fdeeSScott Long mpt_config_reply_handler; 2097b0a2fdeeSScott Long mpt_reply_handlers[MPT_CBI(MPT_REPLY_HANDLER_HANDSHAKE)] = 2098b0a2fdeeSScott Long mpt_handshake_reply_handler; 2099b0a2fdeeSScott Long return (0); 21009b631363SMatt Jacob } 21019b631363SMatt Jacob 21029b631363SMatt Jacob /* 2103b0a2fdeeSScott Long * Initialize per-instance driver data and perform 2104b0a2fdeeSScott Long * initial controller configuration. 21059b631363SMatt Jacob */ 2106b0a2fdeeSScott Long int 2107b0a2fdeeSScott Long mpt_core_attach(struct mpt_softc *mpt) 2108b0a2fdeeSScott Long { 2109b0a2fdeeSScott Long int val; 2110b0a2fdeeSScott Long int error; 2111b0a2fdeeSScott Long 2112c87e3f83SMatt Jacob 2113b0a2fdeeSScott Long LIST_INIT(&mpt->ack_frames); 2114b0a2fdeeSScott Long 2115b0a2fdeeSScott Long /* Put all request buffers on the free list */ 2116b0a2fdeeSScott Long TAILQ_INIT(&mpt->request_pending_list); 2117b0a2fdeeSScott Long TAILQ_INIT(&mpt->request_free_list); 21185e073106SMatt Jacob TAILQ_INIT(&mpt->request_timeout_list); 2119c87e3f83SMatt Jacob for (val = 0; val < MPT_MAX_REQUESTS(mpt); val++) { 21205e073106SMatt Jacob request_t *req = &mpt->request_pool[val]; 21215e073106SMatt Jacob req->state = REQ_STATE_ALLOCATED; 21225e073106SMatt Jacob mpt_free_request(mpt, req); 2123c87e3f83SMatt Jacob } 2124c87e3f83SMatt Jacob 2125c87e3f83SMatt Jacob for (val = 0; val < MPT_MAX_LUNS; val++) { 2126c87e3f83SMatt Jacob STAILQ_INIT(&mpt->trt[val].atios); 2127c87e3f83SMatt Jacob STAILQ_INIT(&mpt->trt[val].inots); 2128c87e3f83SMatt Jacob } 2129c87e3f83SMatt Jacob STAILQ_INIT(&mpt->trt_wildcard.atios); 2130c87e3f83SMatt Jacob STAILQ_INIT(&mpt->trt_wildcard.inots); 2131c87e3f83SMatt Jacob 2132c87e3f83SMatt Jacob mpt->scsi_tgt_handler_id = MPT_HANDLER_ID_NONE; 2133b0a2fdeeSScott Long 2134b0a2fdeeSScott Long mpt_sysctl_attach(mpt); 2135b0a2fdeeSScott Long 2136b0a2fdeeSScott Long mpt_lprt(mpt, MPT_PRT_DEBUG, "doorbell req = %s\n", 2137b0a2fdeeSScott Long mpt_ioc_diag(mpt_read(mpt, MPT_OFFSET_DOORBELL))); 2138b0a2fdeeSScott Long 2139b0a2fdeeSScott Long error = mpt_configure_ioc(mpt); 2140b0a2fdeeSScott Long 2141b0a2fdeeSScott Long return (error); 21429b631363SMatt Jacob } 21439b631363SMatt Jacob 2144c87e3f83SMatt Jacob int 2145c87e3f83SMatt Jacob mpt_core_enable(struct mpt_softc *mpt) 2146c87e3f83SMatt Jacob { 2147c87e3f83SMatt Jacob /* 2148c87e3f83SMatt Jacob * We enter with the IOC enabled, but async events 2149c87e3f83SMatt Jacob * not enabled, ports not enabled and interrupts 2150c87e3f83SMatt Jacob * not enabled. 2151c87e3f83SMatt Jacob */ 2152c87e3f83SMatt Jacob 2153c87e3f83SMatt Jacob /* 2154c87e3f83SMatt Jacob * Enable asynchronous event reporting- all personalities 2155c87e3f83SMatt Jacob * have attached so that they should be able to now field 2156c87e3f83SMatt Jacob * async events. 2157c87e3f83SMatt Jacob */ 2158c87e3f83SMatt Jacob mpt_send_event_request(mpt, 1); 2159c87e3f83SMatt Jacob 2160c87e3f83SMatt Jacob /* 2161c87e3f83SMatt Jacob * Catch any pending interrupts 2162c87e3f83SMatt Jacob * 2163c87e3f83SMatt Jacob * This seems to be crucial- otherwise 2164c87e3f83SMatt Jacob * the portenable below times out. 2165c87e3f83SMatt Jacob */ 2166c87e3f83SMatt Jacob mpt_intr(mpt); 2167c87e3f83SMatt Jacob 2168c87e3f83SMatt Jacob /* 2169c87e3f83SMatt Jacob * Enable Interrupts 2170c87e3f83SMatt Jacob */ 2171c87e3f83SMatt Jacob mpt_enable_ints(mpt); 2172c87e3f83SMatt Jacob 2173c87e3f83SMatt Jacob /* 2174c87e3f83SMatt Jacob * Catch any pending interrupts 2175c87e3f83SMatt Jacob * 2176c87e3f83SMatt Jacob * This seems to be crucial- otherwise 2177c87e3f83SMatt Jacob * the portenable below times out. 2178c87e3f83SMatt Jacob */ 2179c87e3f83SMatt Jacob mpt_intr(mpt); 2180c87e3f83SMatt Jacob 2181c87e3f83SMatt Jacob /* 21825089bd63SMatt Jacob * Enable the port. 2183c87e3f83SMatt Jacob */ 2184c87e3f83SMatt Jacob if (mpt_send_port_enable(mpt, 0) != MPT_OK) { 2185c87e3f83SMatt Jacob mpt_prt(mpt, "failed to enable port 0\n"); 2186c87e3f83SMatt Jacob return (ENXIO); 2187c87e3f83SMatt Jacob } 2188c87e3f83SMatt Jacob return (0); 2189c87e3f83SMatt Jacob } 2190c87e3f83SMatt Jacob 2191b0a2fdeeSScott Long void 2192b0a2fdeeSScott Long mpt_core_shutdown(struct mpt_softc *mpt) 2193b0a2fdeeSScott Long { 2194c87e3f83SMatt Jacob mpt_disable_ints(mpt); 2195b0a2fdeeSScott Long } 2196b0a2fdeeSScott Long 2197b0a2fdeeSScott Long void 2198b0a2fdeeSScott Long mpt_core_detach(struct mpt_softc *mpt) 2199b0a2fdeeSScott Long { 2200c87e3f83SMatt Jacob mpt_disable_ints(mpt); 2201b0a2fdeeSScott Long } 2202b0a2fdeeSScott Long 2203b0a2fdeeSScott Long int 2204b0a2fdeeSScott Long mpt_core_unload(struct mpt_personality *pers) 2205b0a2fdeeSScott Long { 2206b0a2fdeeSScott Long /* Unload is always successfull. */ 2207b0a2fdeeSScott Long return (0); 2208b0a2fdeeSScott Long } 2209b0a2fdeeSScott Long 2210b0a2fdeeSScott Long #define FW_UPLOAD_REQ_SIZE \ 2211b0a2fdeeSScott Long (sizeof(MSG_FW_UPLOAD) - sizeof(SGE_MPI_UNION) \ 2212b0a2fdeeSScott Long + sizeof(FW_UPLOAD_TCSGE) + sizeof(SGE_SIMPLE32)) 2213b0a2fdeeSScott Long 2214b0a2fdeeSScott Long static int 2215b0a2fdeeSScott Long mpt_upload_fw(struct mpt_softc *mpt) 2216b0a2fdeeSScott Long { 2217b0a2fdeeSScott Long uint8_t fw_req_buf[FW_UPLOAD_REQ_SIZE]; 2218b0a2fdeeSScott Long MSG_FW_UPLOAD_REPLY fw_reply; 2219b0a2fdeeSScott Long MSG_FW_UPLOAD *fw_req; 2220b0a2fdeeSScott Long FW_UPLOAD_TCSGE *tsge; 2221b0a2fdeeSScott Long SGE_SIMPLE32 *sge; 2222b0a2fdeeSScott Long uint32_t flags; 2223b0a2fdeeSScott Long int error; 2224b0a2fdeeSScott Long 2225b0a2fdeeSScott Long memset(&fw_req_buf, 0, sizeof(fw_req_buf)); 2226b0a2fdeeSScott Long fw_req = (MSG_FW_UPLOAD *)fw_req_buf; 2227b0a2fdeeSScott Long fw_req->ImageType = MPI_FW_UPLOAD_ITYPE_FW_IOC_MEM; 2228b0a2fdeeSScott Long fw_req->Function = MPI_FUNCTION_FW_UPLOAD; 2229b0a2fdeeSScott Long fw_req->MsgContext = htole32(MPT_REPLY_HANDLER_HANDSHAKE); 2230b0a2fdeeSScott Long tsge = (FW_UPLOAD_TCSGE *)&fw_req->SGL; 2231b0a2fdeeSScott Long tsge->DetailsLength = 12; 2232b0a2fdeeSScott Long tsge->Flags = MPI_SGE_FLAGS_TRANSACTION_ELEMENT; 2233b0a2fdeeSScott Long tsge->ImageSize = htole32(mpt->fw_image_size); 2234b0a2fdeeSScott Long sge = (SGE_SIMPLE32 *)(tsge + 1); 2235b0a2fdeeSScott Long flags = (MPI_SGE_FLAGS_LAST_ELEMENT | MPI_SGE_FLAGS_END_OF_BUFFER 2236b0a2fdeeSScott Long | MPI_SGE_FLAGS_END_OF_LIST | MPI_SGE_FLAGS_SIMPLE_ELEMENT 2237b0a2fdeeSScott Long | MPI_SGE_FLAGS_32_BIT_ADDRESSING | MPI_SGE_FLAGS_IOC_TO_HOST); 2238b0a2fdeeSScott Long flags <<= MPI_SGE_FLAGS_SHIFT; 2239b0a2fdeeSScott Long sge->FlagsLength = htole32(flags | mpt->fw_image_size); 2240b0a2fdeeSScott Long sge->Address = htole32(mpt->fw_phys); 2241b0a2fdeeSScott Long error = mpt_send_handshake_cmd(mpt, sizeof(fw_req_buf), &fw_req_buf); 2242b0a2fdeeSScott Long if (error) 2243b0a2fdeeSScott Long return(error); 2244b0a2fdeeSScott Long error = mpt_recv_handshake_reply(mpt, sizeof(fw_reply), &fw_reply); 2245b0a2fdeeSScott Long return (error); 2246b0a2fdeeSScott Long } 2247b0a2fdeeSScott Long 2248b0a2fdeeSScott Long static void 2249b0a2fdeeSScott Long mpt_diag_outsl(struct mpt_softc *mpt, uint32_t addr, 2250b0a2fdeeSScott Long uint32_t *data, bus_size_t len) 2251b0a2fdeeSScott Long { 2252b0a2fdeeSScott Long uint32_t *data_end; 2253b0a2fdeeSScott Long 2254b0a2fdeeSScott Long data_end = data + (roundup2(len, sizeof(uint32_t)) / 4); 22559fe6d254SMatt Jacob if (mpt->is_sas) { 2256444dd2b6SMatt Jacob pci_enable_io(mpt->dev, SYS_RES_IOPORT); 22579fe6d254SMatt Jacob } 2258b0a2fdeeSScott Long mpt_pio_write(mpt, MPT_OFFSET_DIAG_ADDR, addr); 2259b0a2fdeeSScott Long while (data != data_end) { 2260b0a2fdeeSScott Long mpt_pio_write(mpt, MPT_OFFSET_DIAG_DATA, *data); 2261b0a2fdeeSScott Long data++; 2262b0a2fdeeSScott Long } 22639fe6d254SMatt Jacob if (mpt->is_sas) { 2264444dd2b6SMatt Jacob pci_disable_io(mpt->dev, SYS_RES_IOPORT); 2265b0a2fdeeSScott Long } 22669fe6d254SMatt Jacob } 2267b0a2fdeeSScott Long 2268b0a2fdeeSScott Long static int 2269b0a2fdeeSScott Long mpt_download_fw(struct mpt_softc *mpt) 2270b0a2fdeeSScott Long { 2271b0a2fdeeSScott Long MpiFwHeader_t *fw_hdr; 2272b0a2fdeeSScott Long int error; 2273b0a2fdeeSScott Long uint32_t ext_offset; 2274b0a2fdeeSScott Long uint32_t data; 2275b0a2fdeeSScott Long 2276b0a2fdeeSScott Long mpt_prt(mpt, "Downloading Firmware - Image Size %d\n", 2277b0a2fdeeSScott Long mpt->fw_image_size); 2278b0a2fdeeSScott Long 2279b0a2fdeeSScott Long error = mpt_enable_diag_mode(mpt); 2280b0a2fdeeSScott Long if (error != 0) { 2281b0a2fdeeSScott Long mpt_prt(mpt, "Could not enter diagnostic mode!\n"); 2282b0a2fdeeSScott Long return (EIO); 2283b0a2fdeeSScott Long } 2284b0a2fdeeSScott Long 2285b0a2fdeeSScott Long mpt_write(mpt, MPT_OFFSET_DIAGNOSTIC, 2286b0a2fdeeSScott Long MPI_DIAG_RW_ENABLE|MPI_DIAG_DISABLE_ARM); 2287b0a2fdeeSScott Long 2288b0a2fdeeSScott Long fw_hdr = (MpiFwHeader_t *)mpt->fw_image; 2289b0a2fdeeSScott Long mpt_diag_outsl(mpt, fw_hdr->LoadStartAddress, (uint32_t*)fw_hdr, 2290b0a2fdeeSScott Long fw_hdr->ImageSize); 2291b0a2fdeeSScott Long 2292b0a2fdeeSScott Long ext_offset = fw_hdr->NextImageHeaderOffset; 2293b0a2fdeeSScott Long while (ext_offset != 0) { 2294b0a2fdeeSScott Long MpiExtImageHeader_t *ext; 2295b0a2fdeeSScott Long 2296b0a2fdeeSScott Long ext = (MpiExtImageHeader_t *)((uintptr_t)fw_hdr + ext_offset); 2297b0a2fdeeSScott Long ext_offset = ext->NextImageHeaderOffset; 2298b0a2fdeeSScott Long 2299b0a2fdeeSScott Long mpt_diag_outsl(mpt, ext->LoadStartAddress, (uint32_t*)ext, 2300b0a2fdeeSScott Long ext->ImageSize); 2301b0a2fdeeSScott Long } 2302b0a2fdeeSScott Long 23039fe6d254SMatt Jacob if (mpt->is_sas) { 2304444dd2b6SMatt Jacob pci_enable_io(mpt->dev, SYS_RES_IOPORT); 23059fe6d254SMatt Jacob } 2306b0a2fdeeSScott Long /* Setup the address to jump to on reset. */ 2307b0a2fdeeSScott Long mpt_pio_write(mpt, MPT_OFFSET_DIAG_ADDR, fw_hdr->IopResetRegAddr); 2308b0a2fdeeSScott Long mpt_pio_write(mpt, MPT_OFFSET_DIAG_DATA, fw_hdr->IopResetVectorValue); 2309b0a2fdeeSScott Long 2310b0a2fdeeSScott Long /* 2311b0a2fdeeSScott Long * The controller sets the "flash bad" status after attempting 2312b0a2fdeeSScott Long * to auto-boot from flash. Clear the status so that the controller 2313b0a2fdeeSScott Long * will continue the boot process with our newly installed firmware. 2314b0a2fdeeSScott Long */ 2315b0a2fdeeSScott Long mpt_pio_write(mpt, MPT_OFFSET_DIAG_ADDR, MPT_DIAG_MEM_CFG_BASE); 2316b0a2fdeeSScott Long data = mpt_pio_read(mpt, MPT_OFFSET_DIAG_DATA) | MPT_DIAG_MEM_CFG_BADFL; 2317b0a2fdeeSScott Long mpt_pio_write(mpt, MPT_OFFSET_DIAG_ADDR, MPT_DIAG_MEM_CFG_BASE); 2318b0a2fdeeSScott Long mpt_pio_write(mpt, MPT_OFFSET_DIAG_DATA, data); 2319b0a2fdeeSScott Long 23209fe6d254SMatt Jacob if (mpt->is_sas) { 2321444dd2b6SMatt Jacob pci_disable_io(mpt->dev, SYS_RES_IOPORT); 23229fe6d254SMatt Jacob } 2323444dd2b6SMatt Jacob 2324b0a2fdeeSScott Long /* 2325b0a2fdeeSScott Long * Re-enable the processor and clear the boot halt flag. 2326b0a2fdeeSScott Long */ 2327b0a2fdeeSScott Long data = mpt_read(mpt, MPT_OFFSET_DIAGNOSTIC); 2328b0a2fdeeSScott Long data &= ~(MPI_DIAG_PREVENT_IOC_BOOT|MPI_DIAG_DISABLE_ARM); 2329b0a2fdeeSScott Long mpt_write(mpt, MPT_OFFSET_DIAGNOSTIC, data); 2330b0a2fdeeSScott Long 2331b0a2fdeeSScott Long mpt_disable_diag_mode(mpt); 2332b0a2fdeeSScott Long return (0); 2333b0a2fdeeSScott Long } 2334b0a2fdeeSScott Long 2335b0a2fdeeSScott Long /* 2336b0a2fdeeSScott Long * Allocate/Initialize data structures for the controller. Called 2337b0a2fdeeSScott Long * once at instance startup. 2338b0a2fdeeSScott Long */ 2339b0a2fdeeSScott Long static int 2340b0a2fdeeSScott Long mpt_configure_ioc(struct mpt_softc *mpt) 2341b0a2fdeeSScott Long { 2342b0a2fdeeSScott Long MSG_PORT_FACTS_REPLY pfp; 2343b0a2fdeeSScott Long MSG_IOC_FACTS_REPLY facts; 2344b0a2fdeeSScott Long int try; 2345b0a2fdeeSScott Long int needreset; 2346444dd2b6SMatt Jacob uint32_t max_chain_depth; 2347b0a2fdeeSScott Long 2348b0a2fdeeSScott Long needreset = 0; 23499b631363SMatt Jacob for (try = 0; try < MPT_MAX_TRYS; try++) { 2350b0a2fdeeSScott Long 23519b631363SMatt Jacob /* 23529b631363SMatt Jacob * No need to reset if the IOC is already in the READY state. 23539b631363SMatt Jacob * 23549b631363SMatt Jacob * Force reset if initialization failed previously. 23559b631363SMatt Jacob * Note that a hard_reset of the second channel of a '929 23569b631363SMatt Jacob * will stop operation of the first channel. Hopefully, if the 23579b631363SMatt Jacob * first channel is ok, the second will not require a hard 23589b631363SMatt Jacob * reset. 23599b631363SMatt Jacob */ 2360c87e3f83SMatt Jacob if (needreset || MPT_STATE(mpt_rd_db(mpt)) != 23619b631363SMatt Jacob MPT_DB_STATE_READY) { 2362c87e3f83SMatt Jacob if (mpt_reset(mpt, FALSE) != MPT_OK) { 23639b631363SMatt Jacob continue; 23649b631363SMatt Jacob } 2365c87e3f83SMatt Jacob } 2366b0a2fdeeSScott Long needreset = 0; 23679b631363SMatt Jacob 23689b631363SMatt Jacob if (mpt_get_iocfacts(mpt, &facts) != MPT_OK) { 2369b0a2fdeeSScott Long mpt_prt(mpt, "mpt_get_iocfacts failed\n"); 2370b0a2fdeeSScott Long needreset = 1; 23719b631363SMatt Jacob continue; 23727104aeefSMatt Jacob } 23737104aeefSMatt Jacob 2374b0a2fdeeSScott Long mpt->mpt_global_credits = le16toh(facts.GlobalCredits); 2375b0a2fdeeSScott Long mpt->request_frame_size = le16toh(facts.RequestFrameSize); 2376444dd2b6SMatt Jacob mpt->ioc_facts_flags = facts.Flags; 2377b0a2fdeeSScott Long mpt_prt(mpt, "MPI Version=%d.%d.%d.%d\n", 2378b0a2fdeeSScott Long le16toh(facts.MsgVersion) >> 8, 2379b0a2fdeeSScott Long le16toh(facts.MsgVersion) & 0xFF, 2380b0a2fdeeSScott Long le16toh(facts.HeaderVersion) >> 8, 2381b0a2fdeeSScott Long le16toh(facts.HeaderVersion) & 0xFF); 2382444dd2b6SMatt Jacob 2383444dd2b6SMatt Jacob /* 2384444dd2b6SMatt Jacob * Now that we know request frame size, we can calculate 2385444dd2b6SMatt Jacob * the actual (reasonable) segment limit for read/write I/O. 2386444dd2b6SMatt Jacob * 2387444dd2b6SMatt Jacob * This limit is constrained by: 2388444dd2b6SMatt Jacob * 2389444dd2b6SMatt Jacob * + The size of each area we allocate per command (and how 2390444dd2b6SMatt Jacob * many chain segments we can fit into it). 2391444dd2b6SMatt Jacob * + The total number of areas we've set up. 2392444dd2b6SMatt Jacob * + The actual chain depth the card will allow. 2393444dd2b6SMatt Jacob * 2394444dd2b6SMatt Jacob * The first area's segment count is limited by the I/O request 2395444dd2b6SMatt Jacob * at the head of it. We cannot allocate realistically more 2396444dd2b6SMatt Jacob * than MPT_MAX_REQUESTS areas. Therefore, to account for both 2397444dd2b6SMatt Jacob * conditions, we'll just start out with MPT_MAX_REQUESTS-2. 2398444dd2b6SMatt Jacob * 2399444dd2b6SMatt Jacob */ 2400444dd2b6SMatt Jacob max_chain_depth = facts.MaxChainDepth; 2401444dd2b6SMatt Jacob 2402444dd2b6SMatt Jacob /* total number of request areas we (can) allocate */ 2403444dd2b6SMatt Jacob mpt->max_seg_cnt = MPT_MAX_REQUESTS(mpt) - 2; 2404444dd2b6SMatt Jacob 2405444dd2b6SMatt Jacob /* converted to the number of chain areas possible */ 2406444dd2b6SMatt Jacob mpt->max_seg_cnt *= MPT_NRFM(mpt); 2407444dd2b6SMatt Jacob 2408444dd2b6SMatt Jacob /* limited by the number of chain areas the card will support */ 2409444dd2b6SMatt Jacob if (mpt->max_seg_cnt > max_chain_depth) { 2410444dd2b6SMatt Jacob mpt_lprt(mpt, MPT_PRT_DEBUG, 2411444dd2b6SMatt Jacob "chain depth limited to %u (from %u)\n", 2412444dd2b6SMatt Jacob max_chain_depth, mpt->max_seg_cnt); 2413444dd2b6SMatt Jacob mpt->max_seg_cnt = max_chain_depth; 2414444dd2b6SMatt Jacob } 2415444dd2b6SMatt Jacob 2416444dd2b6SMatt Jacob /* converted to the number of simple sges in chain segments. */ 2417444dd2b6SMatt Jacob mpt->max_seg_cnt *= (MPT_NSGL(mpt) - 1); 2418444dd2b6SMatt Jacob 2419444dd2b6SMatt Jacob mpt_lprt(mpt, MPT_PRT_DEBUG, 2420444dd2b6SMatt Jacob "Maximum Segment Count: %u\n", mpt->max_seg_cnt); 2421b0a2fdeeSScott Long mpt_lprt(mpt, MPT_PRT_DEBUG, 2422b0a2fdeeSScott Long "MsgLength=%u IOCNumber = %d\n", 2423b0a2fdeeSScott Long facts.MsgLength, facts.IOCNumber); 2424b0a2fdeeSScott Long mpt_lprt(mpt, MPT_PRT_DEBUG, 2425444dd2b6SMatt Jacob "IOCFACTS: GlobalCredits=%d BlockSize=%u bytes " 2426444dd2b6SMatt Jacob "Request Frame Size %u bytes Max Chain Depth %u\n", 2427444dd2b6SMatt Jacob mpt->mpt_global_credits, facts.BlockSize, 2428444dd2b6SMatt Jacob mpt->request_frame_size << 2, max_chain_depth); 2429b0a2fdeeSScott Long mpt_lprt(mpt, MPT_PRT_DEBUG, 2430b0a2fdeeSScott Long "IOCFACTS: Num Ports %d, FWImageSize %d, " 2431b0a2fdeeSScott Long "Flags=%#x\n", facts.NumberOfPorts, 2432b0a2fdeeSScott Long le32toh(facts.FWImageSize), facts.Flags); 2433b0a2fdeeSScott Long 2434444dd2b6SMatt Jacob 2435b0a2fdeeSScott Long if ((facts.Flags & MPI_IOCFACTS_FLAGS_FW_DOWNLOAD_BOOT) != 0) { 2436b0a2fdeeSScott Long struct mpt_map_info mi; 2437b0a2fdeeSScott Long int error; 2438b0a2fdeeSScott Long 2439b0a2fdeeSScott Long /* 2440b0a2fdeeSScott Long * In some configurations, the IOC's firmware is 2441b0a2fdeeSScott Long * stored in a shared piece of system NVRAM that 2442b0a2fdeeSScott Long * is only accessable via the BIOS. In this 2443b0a2fdeeSScott Long * case, the firmware keeps a copy of firmware in 2444b0a2fdeeSScott Long * RAM until the OS driver retrieves it. Once 2445b0a2fdeeSScott Long * retrieved, we are responsible for re-downloading 2446b0a2fdeeSScott Long * the firmware after any hard-reset. 2447b0a2fdeeSScott Long */ 2448b0a2fdeeSScott Long mpt->fw_image_size = le32toh(facts.FWImageSize); 2449b0a2fdeeSScott Long error = mpt_dma_tag_create(mpt, mpt->parent_dmat, 2450b0a2fdeeSScott Long /*alignment*/1, /*boundary*/0, 2451b0a2fdeeSScott Long /*lowaddr*/BUS_SPACE_MAXADDR_32BIT, 2452b0a2fdeeSScott Long /*highaddr*/BUS_SPACE_MAXADDR, /*filter*/NULL, 2453b0a2fdeeSScott Long /*filterarg*/NULL, mpt->fw_image_size, 2454b0a2fdeeSScott Long /*nsegments*/1, /*maxsegsz*/mpt->fw_image_size, 2455b0a2fdeeSScott Long /*flags*/0, &mpt->fw_dmat); 2456b0a2fdeeSScott Long if (error != 0) { 2457b0a2fdeeSScott Long mpt_prt(mpt, "cannot create fw dma tag\n"); 2458b0a2fdeeSScott Long return (ENOMEM); 24599b631363SMatt Jacob } 2460b0a2fdeeSScott Long error = bus_dmamem_alloc(mpt->fw_dmat, 2461b0a2fdeeSScott Long (void **)&mpt->fw_image, BUS_DMA_NOWAIT, 2462b0a2fdeeSScott Long &mpt->fw_dmap); 2463b0a2fdeeSScott Long if (error != 0) { 2464b0a2fdeeSScott Long mpt_prt(mpt, "cannot allocate fw mem.\n"); 2465b0a2fdeeSScott Long bus_dma_tag_destroy(mpt->fw_dmat); 2466b0a2fdeeSScott Long return (ENOMEM); 2467b0a2fdeeSScott Long } 2468b0a2fdeeSScott Long mi.mpt = mpt; 2469b0a2fdeeSScott Long mi.error = 0; 2470b0a2fdeeSScott Long bus_dmamap_load(mpt->fw_dmat, mpt->fw_dmap, 2471b0a2fdeeSScott Long mpt->fw_image, mpt->fw_image_size, mpt_map_rquest, 2472b0a2fdeeSScott Long &mi, 0); 2473b0a2fdeeSScott Long mpt->fw_phys = mi.phys; 2474b0a2fdeeSScott Long 2475b0a2fdeeSScott Long error = mpt_upload_fw(mpt); 2476b0a2fdeeSScott Long if (error != 0) { 2477b0a2fdeeSScott Long mpt_prt(mpt, "fw upload failed.\n"); 2478b0a2fdeeSScott Long bus_dmamap_unload(mpt->fw_dmat, mpt->fw_dmap); 2479b0a2fdeeSScott Long bus_dmamem_free(mpt->fw_dmat, mpt->fw_image, 2480b0a2fdeeSScott Long mpt->fw_dmap); 2481b0a2fdeeSScott Long bus_dma_tag_destroy(mpt->fw_dmat); 2482b0a2fdeeSScott Long mpt->fw_image = NULL; 2483b0a2fdeeSScott Long return (EIO); 2484b0a2fdeeSScott Long } 2485b0a2fdeeSScott Long } 24869b631363SMatt Jacob 24877104aeefSMatt Jacob if (mpt_get_portfacts(mpt, &pfp) != MPT_OK) { 2488b0a2fdeeSScott Long mpt_prt(mpt, "mpt_get_portfacts failed\n"); 2489b0a2fdeeSScott Long needreset = 1; 24907104aeefSMatt Jacob continue; 24917104aeefSMatt Jacob } 24927104aeefSMatt Jacob 2493b0a2fdeeSScott Long mpt_lprt(mpt, MPT_PRT_DEBUG, 24947dec90bcSMatt Jacob "PORTFACTS: Type %x PFlags %x IID %d MaxDev %d\n", 24957dec90bcSMatt Jacob pfp.PortType, pfp.ProtocolFlags, pfp.PortSCSIID, 24967dec90bcSMatt Jacob pfp.MaxDevices); 24977104aeefSMatt Jacob 2498b0a2fdeeSScott Long mpt->mpt_port_type = pfp.PortType; 24993f970273SJohn Birrell mpt->mpt_proto_flags = le16toh(pfp.ProtocolFlags); 25007104aeefSMatt Jacob if (pfp.PortType != MPI_PORTFACTS_PORTTYPE_SCSI && 2501444dd2b6SMatt Jacob pfp.PortType != MPI_PORTFACTS_PORTTYPE_SAS && 25027104aeefSMatt Jacob pfp.PortType != MPI_PORTFACTS_PORTTYPE_FC) { 2503b0a2fdeeSScott Long mpt_prt(mpt, "Unsupported Port Type (%x)\n", 25047104aeefSMatt Jacob pfp.PortType); 25057104aeefSMatt Jacob return (ENXIO); 25067104aeefSMatt Jacob } 2507c87e3f83SMatt Jacob mpt->mpt_max_tgtcmds = le16toh(pfp.MaxPostedCmdBuffers); 2508c87e3f83SMatt Jacob 25097104aeefSMatt Jacob if (pfp.PortType == MPI_PORTFACTS_PORTTYPE_FC) { 25107104aeefSMatt Jacob mpt->is_fc = 1; 2511444dd2b6SMatt Jacob mpt->is_sas = 0; 25125580ce96SMatt Jacob mpt->is_spi = 0; 2513444dd2b6SMatt Jacob } else if (pfp.PortType == MPI_PORTFACTS_PORTTYPE_SAS) { 2514444dd2b6SMatt Jacob mpt->is_fc = 0; 2515444dd2b6SMatt Jacob mpt->is_sas = 1; 25165580ce96SMatt Jacob mpt->is_spi = 0; 25177104aeefSMatt Jacob } else { 25187104aeefSMatt Jacob mpt->is_fc = 0; 2519444dd2b6SMatt Jacob mpt->is_sas = 0; 25205580ce96SMatt Jacob mpt->is_spi = 1; 25217104aeefSMatt Jacob } 25227104aeefSMatt Jacob mpt->mpt_ini_id = pfp.PortSCSIID; 2523444dd2b6SMatt Jacob mpt->mpt_max_devices = pfp.MaxDevices; 25247104aeefSMatt Jacob 2525c87e3f83SMatt Jacob /* 2526b4c618c0SMatt Jacob * Set our role with what this port supports. 2527b4c618c0SMatt Jacob * 2528b4c618c0SMatt Jacob * Note this might be changed later in different modules 2529b4c618c0SMatt Jacob * if this is different from what is wanted. 2530c87e3f83SMatt Jacob */ 25315089bd63SMatt Jacob mpt->role = MPT_ROLE_NONE; 25323f970273SJohn Birrell if (mpt->mpt_proto_flags & MPI_PORTFACTS_PROTOCOL_INITIATOR) { 25335089bd63SMatt Jacob mpt->role |= MPT_ROLE_INITIATOR; 2534c87e3f83SMatt Jacob } 25353f970273SJohn Birrell if (mpt->mpt_proto_flags & MPI_PORTFACTS_PROTOCOL_TARGET) { 25365089bd63SMatt Jacob mpt->role |= MPT_ROLE_TARGET; 2537c87e3f83SMatt Jacob } 2538c87e3f83SMatt Jacob if (mpt_enable_ioc(mpt, 0) != MPT_OK) { 2539c87e3f83SMatt Jacob mpt_prt(mpt, "unable to initialize IOC\n"); 2540b0a2fdeeSScott Long return (ENXIO); 25417104aeefSMatt Jacob } 25427104aeefSMatt Jacob 2543b0a2fdeeSScott Long /* 2544c87e3f83SMatt Jacob * Read IOC configuration information. 25451d79ca0eSMatt Jacob * 25461d79ca0eSMatt Jacob * We need this to determine whether or not we have certain 25471d79ca0eSMatt Jacob * settings for Integrated Mirroring (e.g.). 2548b0a2fdeeSScott Long */ 2549b0a2fdeeSScott Long mpt_read_config_info_ioc(mpt); 2550b0a2fdeeSScott Long 2551b0a2fdeeSScott Long /* Everything worked */ 2552b0a2fdeeSScott Long break; 2553b0a2fdeeSScott Long } 2554b0a2fdeeSScott Long 2555b0a2fdeeSScott Long if (try >= MPT_MAX_TRYS) { 2556b0a2fdeeSScott Long mpt_prt(mpt, "failed to initialize IOC"); 2557b0a2fdeeSScott Long return (EIO); 2558b0a2fdeeSScott Long } 2559b0a2fdeeSScott Long 2560b0a2fdeeSScott Long return (0); 2561b0a2fdeeSScott Long } 2562b0a2fdeeSScott Long 2563b0a2fdeeSScott Long static int 2564c87e3f83SMatt Jacob mpt_enable_ioc(struct mpt_softc *mpt, int portenable) 2565b0a2fdeeSScott Long { 2566b0a2fdeeSScott Long uint32_t pptr; 2567b0a2fdeeSScott Long int val; 2568b0a2fdeeSScott Long 2569444dd2b6SMatt Jacob if (mpt_send_ioc_init(mpt, MPI_WHOINIT_HOST_DRIVER) != MPT_OK) { 2570b0a2fdeeSScott Long mpt_prt(mpt, "mpt_send_ioc_init failed\n"); 2571b0a2fdeeSScott Long return (EIO); 2572b0a2fdeeSScott Long } 2573b0a2fdeeSScott Long 2574b0a2fdeeSScott Long mpt_lprt(mpt, MPT_PRT_DEBUG, "mpt_send_ioc_init ok\n"); 25759b631363SMatt Jacob 25769b631363SMatt Jacob if (mpt_wait_state(mpt, MPT_DB_STATE_RUNNING) != MPT_OK) { 2577b0a2fdeeSScott Long mpt_prt(mpt, "IOC failed to go to run state\n"); 2578b0a2fdeeSScott Long return (ENXIO); 25797104aeefSMatt Jacob } 2580444dd2b6SMatt Jacob mpt_lprt(mpt, MPT_PRT_DEBUG, "IOC now at RUNSTATE\n"); 25819b631363SMatt Jacob 25829b631363SMatt Jacob /* 25839b631363SMatt Jacob * Give it reply buffers 25849b631363SMatt Jacob * 2585b0a2fdeeSScott Long * Do *not* exceed global credits. 25869b631363SMatt Jacob */ 25879b631363SMatt Jacob for (val = 0, pptr = mpt->reply_phys; 25889b631363SMatt Jacob (pptr + MPT_REPLY_SIZE) < (mpt->reply_phys + PAGE_SIZE); 25899b631363SMatt Jacob pptr += MPT_REPLY_SIZE) { 25909b631363SMatt Jacob mpt_free_reply(mpt, pptr); 25919b631363SMatt Jacob if (++val == mpt->mpt_global_credits - 1) 25929b631363SMatt Jacob break; 25939b631363SMatt Jacob } 25949b631363SMatt Jacob 2595c87e3f83SMatt Jacob 2596c87e3f83SMatt Jacob /* 25975e073106SMatt Jacob * Enable the port if asked. This is only done if we're resetting 25985e073106SMatt Jacob * the IOC after initial startup. 2599c87e3f83SMatt Jacob */ 2600c87e3f83SMatt Jacob if (portenable) { 26017104aeefSMatt Jacob /* 26027104aeefSMatt Jacob * Enable asynchronous event reporting 26037104aeefSMatt Jacob */ 26049b631363SMatt Jacob mpt_send_event_request(mpt, 1); 26059b631363SMatt Jacob 26069b631363SMatt Jacob if (mpt_send_port_enable(mpt, 0) != MPT_OK) { 2607b0a2fdeeSScott Long mpt_prt(mpt, "failed to enable port 0\n"); 2608b0a2fdeeSScott Long return (ENXIO); 26097104aeefSMatt Jacob } 2610c87e3f83SMatt Jacob } 261129ae59edSMatt Jacob return (MPT_OK); 26129b631363SMatt Jacob } 2613