11ae08745Sheppo /* 21ae08745Sheppo * CDDL HEADER START 31ae08745Sheppo * 41ae08745Sheppo * The contents of this file are subject to the terms of the 51ae08745Sheppo * Common Development and Distribution License (the "License"). 61ae08745Sheppo * You may not use this file except in compliance with the License. 71ae08745Sheppo * 81ae08745Sheppo * You can obtain a copy of the license at usr/src/OPENSOLARIS.LICENSE 91ae08745Sheppo * or http://www.opensolaris.org/os/licensing. 101ae08745Sheppo * See the License for the specific language governing permissions 111ae08745Sheppo * and limitations under the License. 121ae08745Sheppo * 131ae08745Sheppo * When distributing Covered Code, include this CDDL HEADER in each 141ae08745Sheppo * file and include the License file at usr/src/OPENSOLARIS.LICENSE. 151ae08745Sheppo * If applicable, add the following below this CDDL HEADER, with the 161ae08745Sheppo * fields enclosed by brackets "[]" replaced with your own identifying 171ae08745Sheppo * information: Portions Copyright [yyyy] [name of copyright owner] 181ae08745Sheppo * 191ae08745Sheppo * CDDL HEADER END 201ae08745Sheppo */ 211ae08745Sheppo 221ae08745Sheppo /* 23edcc0754Sachartre * Copyright 2008 Sun Microsystems, Inc. All rights reserved. 241ae08745Sheppo * Use is subject to license terms. 251ae08745Sheppo */ 261ae08745Sheppo 271ae08745Sheppo #pragma ident "%Z%%M% %I% %E% SMI" 281ae08745Sheppo 291ae08745Sheppo /* 301ae08745Sheppo * LDoms virtual disk client (vdc) device driver 311ae08745Sheppo * 321ae08745Sheppo * This driver runs on a guest logical domain and communicates with the virtual 331ae08745Sheppo * disk server (vds) driver running on the service domain which is exporting 341ae08745Sheppo * virtualized "disks" to the guest logical domain. 351ae08745Sheppo * 361ae08745Sheppo * The driver can be divided into four sections: 371ae08745Sheppo * 381ae08745Sheppo * 1) generic device driver housekeeping 391ae08745Sheppo * _init, _fini, attach, detach, ops structures, etc. 401ae08745Sheppo * 411ae08745Sheppo * 2) communication channel setup 421ae08745Sheppo * Setup the communications link over the LDC channel that vdc uses to 431ae08745Sheppo * talk to the vDisk server. Initialise the descriptor ring which 441ae08745Sheppo * allows the LDC clients to transfer data via memory mappings. 451ae08745Sheppo * 461ae08745Sheppo * 3) Support exported to upper layers (filesystems, etc) 471ae08745Sheppo * The upper layers call into vdc via strategy(9E) and DKIO(7I) 481ae08745Sheppo * ioctl calls. vdc will copy the data to be written to the descriptor 491ae08745Sheppo * ring or maps the buffer to store the data read by the vDisk 501ae08745Sheppo * server into the descriptor ring. It then sends a message to the 511ae08745Sheppo * vDisk server requesting it to complete the operation. 521ae08745Sheppo * 531ae08745Sheppo * 4) Handling responses from vDisk server. 541ae08745Sheppo * The vDisk server will ACK some or all of the messages vdc sends to it 551ae08745Sheppo * (this is configured during the handshake). Upon receipt of an ACK 561ae08745Sheppo * vdc will check the descriptor ring and signal to the upper layer 571ae08745Sheppo * code waiting on the IO. 581ae08745Sheppo */ 591ae08745Sheppo 60e1ebb9ecSlm66018 #include <sys/atomic.h> 611ae08745Sheppo #include <sys/conf.h> 621ae08745Sheppo #include <sys/disp.h> 631ae08745Sheppo #include <sys/ddi.h> 641ae08745Sheppo #include <sys/dkio.h> 651ae08745Sheppo #include <sys/efi_partition.h> 661ae08745Sheppo #include <sys/fcntl.h> 671ae08745Sheppo #include <sys/file.h> 68366a92acSlm66018 #include <sys/kstat.h> 691ae08745Sheppo #include <sys/mach_descrip.h> 701ae08745Sheppo #include <sys/modctl.h> 711ae08745Sheppo #include <sys/mdeg.h> 721ae08745Sheppo #include <sys/note.h> 731ae08745Sheppo #include <sys/open.h> 74d10e4ef2Snarayan #include <sys/sdt.h> 751ae08745Sheppo #include <sys/stat.h> 761ae08745Sheppo #include <sys/sunddi.h> 771ae08745Sheppo #include <sys/types.h> 781ae08745Sheppo #include <sys/promif.h> 792f5224aeSachartre #include <sys/var.h> 801ae08745Sheppo #include <sys/vtoc.h> 811ae08745Sheppo #include <sys/archsystm.h> 821ae08745Sheppo #include <sys/sysmacros.h> 831ae08745Sheppo 841ae08745Sheppo #include <sys/cdio.h> 851ae08745Sheppo #include <sys/dktp/fdisk.h> 8687a7269eSachartre #include <sys/dktp/dadkio.h> 872f5224aeSachartre #include <sys/mhd.h> 881ae08745Sheppo #include <sys/scsi/generic/sense.h> 892f5224aeSachartre #include <sys/scsi/impl/uscsi.h> 902f5224aeSachartre #include <sys/scsi/impl/services.h> 912f5224aeSachartre #include <sys/scsi/targets/sddef.h> 921ae08745Sheppo 931ae08745Sheppo #include <sys/ldoms.h> 941ae08745Sheppo #include <sys/ldc.h> 951ae08745Sheppo #include <sys/vio_common.h> 961ae08745Sheppo #include <sys/vio_mailbox.h> 9717cadca8Slm66018 #include <sys/vio_util.h> 981ae08745Sheppo #include <sys/vdsk_common.h> 991ae08745Sheppo #include <sys/vdsk_mailbox.h> 1001ae08745Sheppo #include <sys/vdc.h> 1011ae08745Sheppo 1021ae08745Sheppo /* 1031ae08745Sheppo * function prototypes 1041ae08745Sheppo */ 1051ae08745Sheppo 1061ae08745Sheppo /* standard driver functions */ 1071ae08745Sheppo static int vdc_open(dev_t *dev, int flag, int otyp, cred_t *cred); 1081ae08745Sheppo static int vdc_close(dev_t dev, int flag, int otyp, cred_t *cred); 1091ae08745Sheppo static int vdc_strategy(struct buf *buf); 1101ae08745Sheppo static int vdc_print(dev_t dev, char *str); 1111ae08745Sheppo static int vdc_dump(dev_t dev, caddr_t addr, daddr_t blkno, int nblk); 1121ae08745Sheppo static int vdc_read(dev_t dev, struct uio *uio, cred_t *cred); 1131ae08745Sheppo static int vdc_write(dev_t dev, struct uio *uio, cred_t *cred); 1141ae08745Sheppo static int vdc_ioctl(dev_t dev, int cmd, intptr_t arg, int mode, 1151ae08745Sheppo cred_t *credp, int *rvalp); 1161ae08745Sheppo static int vdc_aread(dev_t dev, struct aio_req *aio, cred_t *cred); 1171ae08745Sheppo static int vdc_awrite(dev_t dev, struct aio_req *aio, cred_t *cred); 1181ae08745Sheppo 1191ae08745Sheppo static int vdc_getinfo(dev_info_t *dip, ddi_info_cmd_t cmd, 1201ae08745Sheppo void *arg, void **resultp); 1211ae08745Sheppo static int vdc_attach(dev_info_t *dip, ddi_attach_cmd_t cmd); 1221ae08745Sheppo static int vdc_detach(dev_info_t *dip, ddi_detach_cmd_t cmd); 1235b98b509Sachartre static int vdc_prop_op(dev_t dev, dev_info_t *dip, ddi_prop_op_t prop_op, 1245b98b509Sachartre int mod_flags, char *name, caddr_t valuep, int *lengthp); 1251ae08745Sheppo 1261ae08745Sheppo /* setup */ 1270d0c8d4bSnarayan static void vdc_min(struct buf *bufp); 1280a55fbb7Slm66018 static int vdc_send(vdc_t *vdc, caddr_t pkt, size_t *msglen); 1298cd10891Snarayan static int vdc_do_ldc_init(vdc_t *vdc, vdc_server_t *srvr); 1301ae08745Sheppo static int vdc_start_ldc_connection(vdc_t *vdc); 1311ae08745Sheppo static int vdc_create_device_nodes(vdc_t *vdc); 1324bac2208Snarayan static int vdc_create_device_nodes_efi(vdc_t *vdc); 1334bac2208Snarayan static int vdc_create_device_nodes_vtoc(vdc_t *vdc); 134366a92acSlm66018 static void vdc_create_io_kstats(vdc_t *vdc); 135366a92acSlm66018 static void vdc_create_err_kstats(vdc_t *vdc); 136366a92acSlm66018 static void vdc_set_err_kstats(vdc_t *vdc); 137655fd6a9Sachartre static int vdc_get_md_node(dev_info_t *dip, md_t **mdpp, 1388cd10891Snarayan mde_cookie_t *vd_nodep); 1398cd10891Snarayan static int vdc_init_ports(vdc_t *vdc, md_t *mdp, mde_cookie_t vd_nodep); 1408cd10891Snarayan static void vdc_fini_ports(vdc_t *vdc); 1418cd10891Snarayan static void vdc_switch_server(vdc_t *vdcp); 1420a55fbb7Slm66018 static int vdc_do_ldc_up(vdc_t *vdc); 1438cd10891Snarayan static void vdc_terminate_ldc(vdc_t *vdc, vdc_server_t *srvr); 1441ae08745Sheppo static int vdc_init_descriptor_ring(vdc_t *vdc); 1451ae08745Sheppo static void vdc_destroy_descriptor_ring(vdc_t *vdc); 1464bac2208Snarayan static int vdc_setup_devid(vdc_t *vdc); 147edcc0754Sachartre static void vdc_store_label_efi(vdc_t *, efi_gpt_t *, efi_gpe_t *); 14878fcd0a1Sachartre static void vdc_store_label_vtoc(vdc_t *, struct dk_geom *, struct vtoc *); 14978fcd0a1Sachartre static void vdc_store_label_unk(vdc_t *vdc); 15078fcd0a1Sachartre static boolean_t vdc_is_opened(vdc_t *vdc); 1511ae08745Sheppo 1521ae08745Sheppo /* handshake with vds */ 1530a55fbb7Slm66018 static int vdc_init_ver_negotiation(vdc_t *vdc, vio_ver_t ver); 1543af08d82Slm66018 static int vdc_ver_negotiation(vdc_t *vdcp); 1551ae08745Sheppo static int vdc_init_attr_negotiation(vdc_t *vdc); 1563af08d82Slm66018 static int vdc_attr_negotiation(vdc_t *vdcp); 1571ae08745Sheppo static int vdc_init_dring_negotiate(vdc_t *vdc); 1583af08d82Slm66018 static int vdc_dring_negotiation(vdc_t *vdcp); 1593af08d82Slm66018 static int vdc_send_rdx(vdc_t *vdcp); 1603af08d82Slm66018 static int vdc_rdx_exchange(vdc_t *vdcp); 1610a55fbb7Slm66018 static boolean_t vdc_is_supported_version(vio_ver_msg_t *ver_msg); 1621ae08745Sheppo 1630a55fbb7Slm66018 /* processing incoming messages from vDisk server */ 1641ae08745Sheppo static void vdc_process_msg_thread(vdc_t *vdc); 1653af08d82Slm66018 static int vdc_recv(vdc_t *vdc, vio_msg_t *msgp, size_t *nbytesp); 1663af08d82Slm66018 1670a55fbb7Slm66018 static uint_t vdc_handle_cb(uint64_t event, caddr_t arg); 1683af08d82Slm66018 static int vdc_process_data_msg(vdc_t *vdc, vio_msg_t *msg); 1690a55fbb7Slm66018 static int vdc_handle_ver_msg(vdc_t *vdc, vio_ver_msg_t *ver_msg); 1700a55fbb7Slm66018 static int vdc_handle_attr_msg(vdc_t *vdc, vd_attr_msg_t *attr_msg); 1710a55fbb7Slm66018 static int vdc_handle_dring_reg_msg(vdc_t *vdc, vio_dring_reg_msg_t *msg); 1723af08d82Slm66018 static int vdc_send_request(vdc_t *vdcp, int operation, 1733af08d82Slm66018 caddr_t addr, size_t nbytes, int slice, diskaddr_t offset, 1743af08d82Slm66018 int cb_type, void *cb_arg, vio_desc_direction_t dir); 1753af08d82Slm66018 static int vdc_map_to_shared_dring(vdc_t *vdcp, int idx); 1763af08d82Slm66018 static int vdc_populate_descriptor(vdc_t *vdcp, int operation, 1773af08d82Slm66018 caddr_t addr, size_t nbytes, int slice, diskaddr_t offset, 1783af08d82Slm66018 int cb_type, void *cb_arg, vio_desc_direction_t dir); 1792f5224aeSachartre static int vdc_do_sync_op(vdc_t *vdcp, int operation, caddr_t addr, 1802f5224aeSachartre size_t nbytes, int slice, diskaddr_t offset, int cb_type, 1812f5224aeSachartre void *cb_arg, vio_desc_direction_t dir, boolean_t); 1823af08d82Slm66018 1833af08d82Slm66018 static int vdc_wait_for_response(vdc_t *vdcp, vio_msg_t *msgp); 1843c2ebf09Sachartre static int vdc_drain_response(vdc_t *vdcp, struct buf *buf); 1851ae08745Sheppo static int vdc_depopulate_descriptor(vdc_t *vdc, uint_t idx); 1863af08d82Slm66018 static int vdc_populate_mem_hdl(vdc_t *vdcp, vdc_local_desc_t *ldep); 187e1ebb9ecSlm66018 static int vdc_verify_seq_num(vdc_t *vdc, vio_dring_msg_t *dring_msg); 1881ae08745Sheppo 1891ae08745Sheppo /* dkio */ 1902f5224aeSachartre static int vd_process_ioctl(dev_t dev, int cmd, caddr_t arg, int mode, 1912f5224aeSachartre int *rvalp); 192edcc0754Sachartre static int vd_process_efi_ioctl(void *vdisk, int cmd, uintptr_t arg); 19378fcd0a1Sachartre static void vdc_create_fake_geometry(vdc_t *vdc); 19478fcd0a1Sachartre static int vdc_validate_geometry(vdc_t *vdc); 19578fcd0a1Sachartre static void vdc_validate(vdc_t *vdc); 19678fcd0a1Sachartre static void vdc_validate_task(void *arg); 197d10e4ef2Snarayan static int vdc_null_copy_func(vdc_t *vdc, void *from, void *to, 198d10e4ef2Snarayan int mode, int dir); 1994bac2208Snarayan static int vdc_get_wce_convert(vdc_t *vdc, void *from, void *to, 2004bac2208Snarayan int mode, int dir); 2014bac2208Snarayan static int vdc_set_wce_convert(vdc_t *vdc, void *from, void *to, 2024bac2208Snarayan int mode, int dir); 203d10e4ef2Snarayan static int vdc_get_vtoc_convert(vdc_t *vdc, void *from, void *to, 204d10e4ef2Snarayan int mode, int dir); 205d10e4ef2Snarayan static int vdc_set_vtoc_convert(vdc_t *vdc, void *from, void *to, 206d10e4ef2Snarayan int mode, int dir); 207d10e4ef2Snarayan static int vdc_get_geom_convert(vdc_t *vdc, void *from, void *to, 208d10e4ef2Snarayan int mode, int dir); 209d10e4ef2Snarayan static int vdc_set_geom_convert(vdc_t *vdc, void *from, void *to, 210d10e4ef2Snarayan int mode, int dir); 2114bac2208Snarayan static int vdc_get_efi_convert(vdc_t *vdc, void *from, void *to, 2124bac2208Snarayan int mode, int dir); 2134bac2208Snarayan static int vdc_set_efi_convert(vdc_t *vdc, void *from, void *to, 2144bac2208Snarayan int mode, int dir); 2151ae08745Sheppo 2162f5224aeSachartre static void vdc_ownership_update(vdc_t *vdc, int ownership_flags); 2172f5224aeSachartre static int vdc_access_set(vdc_t *vdc, uint64_t flags, int mode); 2182f5224aeSachartre static vdc_io_t *vdc_failfast_io_queue(vdc_t *vdc, struct buf *buf); 2192f5224aeSachartre static int vdc_failfast_check_resv(vdc_t *vdc); 2202f5224aeSachartre 2211ae08745Sheppo /* 2221ae08745Sheppo * Module variables 2231ae08745Sheppo */ 224e1ebb9ecSlm66018 225e1ebb9ecSlm66018 /* 226e1ebb9ecSlm66018 * Tunable variables to control how long vdc waits before timing out on 227e1ebb9ecSlm66018 * various operations 228e1ebb9ecSlm66018 */ 2293c96341aSnarayan static int vdc_hshake_retries = 3; 230e1ebb9ecSlm66018 231655fd6a9Sachartre static int vdc_timeout = 0; /* units: seconds */ 2328cd10891Snarayan static int vdc_ldcup_timeout = 1; /* units: seconds */ 233655fd6a9Sachartre 2343af08d82Slm66018 static uint64_t vdc_hz_min_ldc_delay; 2353af08d82Slm66018 static uint64_t vdc_min_timeout_ldc = 1 * MILLISEC; 2363af08d82Slm66018 static uint64_t vdc_hz_max_ldc_delay; 2373af08d82Slm66018 static uint64_t vdc_max_timeout_ldc = 100 * MILLISEC; 2383af08d82Slm66018 2393af08d82Slm66018 static uint64_t vdc_ldc_read_init_delay = 1 * MILLISEC; 2403af08d82Slm66018 static uint64_t vdc_ldc_read_max_delay = 100 * MILLISEC; 241e1ebb9ecSlm66018 242e1ebb9ecSlm66018 /* values for dumping - need to run in a tighter loop */ 243e1ebb9ecSlm66018 static uint64_t vdc_usec_timeout_dump = 100 * MILLISEC; /* 0.1s units: ns */ 244e1ebb9ecSlm66018 static int vdc_dump_retries = 100; 245e1ebb9ecSlm66018 2462f5224aeSachartre static uint16_t vdc_scsi_timeout = 60; /* 60s units: seconds */ 2472f5224aeSachartre 2482f5224aeSachartre static uint64_t vdc_ownership_delay = 6 * MICROSEC; /* 6s units: usec */ 2492f5224aeSachartre 250e1ebb9ecSlm66018 /* Count of the number of vdc instances attached */ 251e1ebb9ecSlm66018 static volatile uint32_t vdc_instance_count = 0; 2521ae08745Sheppo 2532f5224aeSachartre /* Tunable to log all SCSI errors */ 2542f5224aeSachartre static boolean_t vdc_scsi_log_error = B_FALSE; 2552f5224aeSachartre 2561ae08745Sheppo /* Soft state pointer */ 2571ae08745Sheppo static void *vdc_state; 2581ae08745Sheppo 2593af08d82Slm66018 /* 2603af08d82Slm66018 * Controlling the verbosity of the error/debug messages 2613af08d82Slm66018 * 2623af08d82Slm66018 * vdc_msglevel - controls level of messages 2633af08d82Slm66018 * vdc_matchinst - 64-bit variable where each bit corresponds 2643af08d82Slm66018 * to the vdc instance the vdc_msglevel applies. 2653af08d82Slm66018 */ 2663af08d82Slm66018 int vdc_msglevel = 0x0; 2673af08d82Slm66018 uint64_t vdc_matchinst = 0ull; 2681ae08745Sheppo 2690a55fbb7Slm66018 /* 2700a55fbb7Slm66018 * Supported vDisk protocol version pairs. 2710a55fbb7Slm66018 * 2720a55fbb7Slm66018 * The first array entry is the latest and preferred version. 2730a55fbb7Slm66018 */ 27417cadca8Slm66018 static const vio_ver_t vdc_version[] = {{1, 1}}; 2751ae08745Sheppo 2761ae08745Sheppo static struct cb_ops vdc_cb_ops = { 2771ae08745Sheppo vdc_open, /* cb_open */ 2781ae08745Sheppo vdc_close, /* cb_close */ 2791ae08745Sheppo vdc_strategy, /* cb_strategy */ 2801ae08745Sheppo vdc_print, /* cb_print */ 2811ae08745Sheppo vdc_dump, /* cb_dump */ 2821ae08745Sheppo vdc_read, /* cb_read */ 2831ae08745Sheppo vdc_write, /* cb_write */ 2841ae08745Sheppo vdc_ioctl, /* cb_ioctl */ 2851ae08745Sheppo nodev, /* cb_devmap */ 2861ae08745Sheppo nodev, /* cb_mmap */ 2871ae08745Sheppo nodev, /* cb_segmap */ 2881ae08745Sheppo nochpoll, /* cb_chpoll */ 2895b98b509Sachartre vdc_prop_op, /* cb_prop_op */ 2901ae08745Sheppo NULL, /* cb_str */ 2911ae08745Sheppo D_MP | D_64BIT, /* cb_flag */ 2921ae08745Sheppo CB_REV, /* cb_rev */ 2931ae08745Sheppo vdc_aread, /* cb_aread */ 2941ae08745Sheppo vdc_awrite /* cb_awrite */ 2951ae08745Sheppo }; 2961ae08745Sheppo 2971ae08745Sheppo static struct dev_ops vdc_ops = { 2981ae08745Sheppo DEVO_REV, /* devo_rev */ 2991ae08745Sheppo 0, /* devo_refcnt */ 3001ae08745Sheppo vdc_getinfo, /* devo_getinfo */ 3011ae08745Sheppo nulldev, /* devo_identify */ 3021ae08745Sheppo nulldev, /* devo_probe */ 3031ae08745Sheppo vdc_attach, /* devo_attach */ 3041ae08745Sheppo vdc_detach, /* devo_detach */ 3051ae08745Sheppo nodev, /* devo_reset */ 3061ae08745Sheppo &vdc_cb_ops, /* devo_cb_ops */ 3071ae08745Sheppo NULL, /* devo_bus_ops */ 3081ae08745Sheppo nulldev /* devo_power */ 3091ae08745Sheppo }; 3101ae08745Sheppo 3111ae08745Sheppo static struct modldrv modldrv = { 3121ae08745Sheppo &mod_driverops, 313205eeb1aSlm66018 "virtual disk client", 3141ae08745Sheppo &vdc_ops, 3151ae08745Sheppo }; 3161ae08745Sheppo 3171ae08745Sheppo static struct modlinkage modlinkage = { 3181ae08745Sheppo MODREV_1, 3191ae08745Sheppo &modldrv, 3201ae08745Sheppo NULL 3211ae08745Sheppo }; 3221ae08745Sheppo 3231ae08745Sheppo /* -------------------------------------------------------------------------- */ 3241ae08745Sheppo 3251ae08745Sheppo /* 3261ae08745Sheppo * Device Driver housekeeping and setup 3271ae08745Sheppo */ 3281ae08745Sheppo 3291ae08745Sheppo int 3301ae08745Sheppo _init(void) 3311ae08745Sheppo { 3321ae08745Sheppo int status; 3331ae08745Sheppo 3341ae08745Sheppo if ((status = ddi_soft_state_init(&vdc_state, sizeof (vdc_t), 1)) != 0) 3351ae08745Sheppo return (status); 3361ae08745Sheppo if ((status = mod_install(&modlinkage)) != 0) 3371ae08745Sheppo ddi_soft_state_fini(&vdc_state); 3381ae08745Sheppo return (status); 3391ae08745Sheppo } 3401ae08745Sheppo 3411ae08745Sheppo int 3421ae08745Sheppo _info(struct modinfo *modinfop) 3431ae08745Sheppo { 3441ae08745Sheppo return (mod_info(&modlinkage, modinfop)); 3451ae08745Sheppo } 3461ae08745Sheppo 3471ae08745Sheppo int 3481ae08745Sheppo _fini(void) 3491ae08745Sheppo { 3501ae08745Sheppo int status; 3511ae08745Sheppo 3521ae08745Sheppo if ((status = mod_remove(&modlinkage)) != 0) 3531ae08745Sheppo return (status); 3541ae08745Sheppo ddi_soft_state_fini(&vdc_state); 3551ae08745Sheppo return (0); 3561ae08745Sheppo } 3571ae08745Sheppo 3581ae08745Sheppo static int 3591ae08745Sheppo vdc_getinfo(dev_info_t *dip, ddi_info_cmd_t cmd, void *arg, void **resultp) 3601ae08745Sheppo { 3611ae08745Sheppo _NOTE(ARGUNUSED(dip)) 3621ae08745Sheppo 3630d0c8d4bSnarayan int instance = VDCUNIT((dev_t)arg); 3641ae08745Sheppo vdc_t *vdc = NULL; 3651ae08745Sheppo 3661ae08745Sheppo switch (cmd) { 3671ae08745Sheppo case DDI_INFO_DEVT2DEVINFO: 3681ae08745Sheppo if ((vdc = ddi_get_soft_state(vdc_state, instance)) == NULL) { 3691ae08745Sheppo *resultp = NULL; 3701ae08745Sheppo return (DDI_FAILURE); 3711ae08745Sheppo } 3721ae08745Sheppo *resultp = vdc->dip; 3731ae08745Sheppo return (DDI_SUCCESS); 3741ae08745Sheppo case DDI_INFO_DEVT2INSTANCE: 3751ae08745Sheppo *resultp = (void *)(uintptr_t)instance; 3761ae08745Sheppo return (DDI_SUCCESS); 3771ae08745Sheppo default: 3781ae08745Sheppo *resultp = NULL; 3791ae08745Sheppo return (DDI_FAILURE); 3801ae08745Sheppo } 3811ae08745Sheppo } 3821ae08745Sheppo 3831ae08745Sheppo static int 3841ae08745Sheppo vdc_detach(dev_info_t *dip, ddi_detach_cmd_t cmd) 3851ae08745Sheppo { 3862f5224aeSachartre kt_did_t failfast_tid, ownership_tid; 3871ae08745Sheppo int instance; 3881ae08745Sheppo int rv; 389d7400d00Sachartre vdc_server_t *srvr; 3901ae08745Sheppo vdc_t *vdc = NULL; 3911ae08745Sheppo 3921ae08745Sheppo switch (cmd) { 3931ae08745Sheppo case DDI_DETACH: 3941ae08745Sheppo /* the real work happens below */ 3951ae08745Sheppo break; 3961ae08745Sheppo case DDI_SUSPEND: 3971ae08745Sheppo /* nothing to do for this non-device */ 3981ae08745Sheppo return (DDI_SUCCESS); 3991ae08745Sheppo default: 4001ae08745Sheppo return (DDI_FAILURE); 4011ae08745Sheppo } 4021ae08745Sheppo 4031ae08745Sheppo ASSERT(cmd == DDI_DETACH); 4041ae08745Sheppo instance = ddi_get_instance(dip); 4053af08d82Slm66018 DMSGX(1, "[%d] Entered\n", instance); 4061ae08745Sheppo 4071ae08745Sheppo if ((vdc = ddi_get_soft_state(vdc_state, instance)) == NULL) { 408e1ebb9ecSlm66018 cmn_err(CE_NOTE, "[%d] Couldn't get state structure", instance); 4091ae08745Sheppo return (DDI_FAILURE); 4101ae08745Sheppo } 4111ae08745Sheppo 4122f5224aeSachartre /* 4132f5224aeSachartre * This function is called when vdc is detached or if it has failed to 4142f5224aeSachartre * attach. In that case, the attach may have fail before the vdisk type 4152f5224aeSachartre * has been set so we can't call vdc_is_opened(). However as the attach 4162f5224aeSachartre * has failed, we know that the vdisk is not opened and we can safely 4172f5224aeSachartre * detach. 4182f5224aeSachartre */ 4192f5224aeSachartre if (vdc->vdisk_type != VD_DISK_TYPE_UNK && vdc_is_opened(vdc)) { 4203af08d82Slm66018 DMSG(vdc, 0, "[%d] Cannot detach: device is open", instance); 4211ae08745Sheppo return (DDI_FAILURE); 4221ae08745Sheppo } 4231ae08745Sheppo 42478fcd0a1Sachartre if (vdc->dkio_flush_pending) { 42578fcd0a1Sachartre DMSG(vdc, 0, 42678fcd0a1Sachartre "[%d] Cannot detach: %d outstanding DKIO flushes\n", 42778fcd0a1Sachartre instance, vdc->dkio_flush_pending); 42878fcd0a1Sachartre return (DDI_FAILURE); 42978fcd0a1Sachartre } 43078fcd0a1Sachartre 43178fcd0a1Sachartre if (vdc->validate_pending) { 43278fcd0a1Sachartre DMSG(vdc, 0, 43378fcd0a1Sachartre "[%d] Cannot detach: %d outstanding validate request\n", 43478fcd0a1Sachartre instance, vdc->validate_pending); 43578fcd0a1Sachartre return (DDI_FAILURE); 43678fcd0a1Sachartre } 43778fcd0a1Sachartre 4383af08d82Slm66018 DMSG(vdc, 0, "[%d] proceeding...\n", instance); 4393af08d82Slm66018 4402f5224aeSachartre /* If we took ownership, release ownership */ 4412f5224aeSachartre mutex_enter(&vdc->ownership_lock); 4422f5224aeSachartre if (vdc->ownership & VDC_OWNERSHIP_GRANTED) { 4432f5224aeSachartre rv = vdc_access_set(vdc, VD_ACCESS_SET_CLEAR, FKIOCTL); 4442f5224aeSachartre if (rv == 0) { 4452f5224aeSachartre vdc_ownership_update(vdc, VDC_OWNERSHIP_NONE); 4462f5224aeSachartre } 4472f5224aeSachartre } 4482f5224aeSachartre mutex_exit(&vdc->ownership_lock); 4492f5224aeSachartre 4503af08d82Slm66018 /* mark instance as detaching */ 4513af08d82Slm66018 vdc->lifecycle = VDC_LC_DETACHING; 4521ae08745Sheppo 4531ae08745Sheppo /* 454d7400d00Sachartre * Try and disable callbacks to prevent another handshake. We have to 455d7400d00Sachartre * disable callbacks for all servers. 4561ae08745Sheppo */ 457d7400d00Sachartre for (srvr = vdc->server_list; srvr != NULL; srvr = srvr->next) { 458d7400d00Sachartre rv = ldc_set_cb_mode(srvr->ldc_handle, LDC_CB_DISABLE); 459d7400d00Sachartre DMSG(vdc, 0, "callback disabled (ldc=%lu, rv=%d)\n", 460d7400d00Sachartre srvr->ldc_id, rv); 4618cd10891Snarayan } 4621ae08745Sheppo 4631ae08745Sheppo if (vdc->initialized & VDC_THREAD) { 4643af08d82Slm66018 mutex_enter(&vdc->read_lock); 4653af08d82Slm66018 if ((vdc->read_state == VDC_READ_WAITING) || 4663af08d82Slm66018 (vdc->read_state == VDC_READ_RESET)) { 4673af08d82Slm66018 vdc->read_state = VDC_READ_RESET; 4683af08d82Slm66018 cv_signal(&vdc->read_cv); 4691ae08745Sheppo } 4703af08d82Slm66018 4713af08d82Slm66018 mutex_exit(&vdc->read_lock); 4723af08d82Slm66018 4733af08d82Slm66018 /* wake up any thread waiting for connection to come online */ 4743af08d82Slm66018 mutex_enter(&vdc->lock); 4753af08d82Slm66018 if (vdc->state == VDC_STATE_INIT_WAITING) { 4763af08d82Slm66018 DMSG(vdc, 0, 4773af08d82Slm66018 "[%d] write reset - move to resetting state...\n", 4783af08d82Slm66018 instance); 4793af08d82Slm66018 vdc->state = VDC_STATE_RESETTING; 4803af08d82Slm66018 cv_signal(&vdc->initwait_cv); 4813af08d82Slm66018 } 4823af08d82Slm66018 mutex_exit(&vdc->lock); 4833af08d82Slm66018 4843af08d82Slm66018 /* now wait until state transitions to VDC_STATE_DETACH */ 4853af08d82Slm66018 thread_join(vdc->msg_proc_thr->t_did); 4863af08d82Slm66018 ASSERT(vdc->state == VDC_STATE_DETACH); 4873af08d82Slm66018 DMSG(vdc, 0, "[%d] Reset thread exit and join ..\n", 4883af08d82Slm66018 vdc->instance); 4891ae08745Sheppo } 4901ae08745Sheppo 4911ae08745Sheppo mutex_enter(&vdc->lock); 4921ae08745Sheppo 4931ae08745Sheppo if (vdc->initialized & VDC_DRING) 4941ae08745Sheppo vdc_destroy_descriptor_ring(vdc); 4951ae08745Sheppo 4968cd10891Snarayan vdc_fini_ports(vdc); 4971ae08745Sheppo 4982f5224aeSachartre if (vdc->failfast_thread) { 4992f5224aeSachartre failfast_tid = vdc->failfast_thread->t_did; 5002f5224aeSachartre vdc->failfast_interval = 0; 5012f5224aeSachartre cv_signal(&vdc->failfast_cv); 5022f5224aeSachartre } else { 5032f5224aeSachartre failfast_tid = 0; 5042f5224aeSachartre } 5052f5224aeSachartre 5062f5224aeSachartre if (vdc->ownership & VDC_OWNERSHIP_WANTED) { 5072f5224aeSachartre ownership_tid = vdc->ownership_thread->t_did; 5082f5224aeSachartre vdc->ownership = VDC_OWNERSHIP_NONE; 5092f5224aeSachartre cv_signal(&vdc->ownership_cv); 5102f5224aeSachartre } else { 5112f5224aeSachartre ownership_tid = 0; 5122f5224aeSachartre } 5132f5224aeSachartre 5141ae08745Sheppo mutex_exit(&vdc->lock); 5151ae08745Sheppo 5162f5224aeSachartre if (failfast_tid != 0) 5172f5224aeSachartre thread_join(failfast_tid); 5182f5224aeSachartre 5192f5224aeSachartre if (ownership_tid != 0) 5202f5224aeSachartre thread_join(ownership_tid); 5212f5224aeSachartre 5225b98b509Sachartre if (vdc->initialized & VDC_MINOR) 5231ae08745Sheppo ddi_remove_minor_node(dip, NULL); 5241ae08745Sheppo 525366a92acSlm66018 if (vdc->io_stats) { 526366a92acSlm66018 kstat_delete(vdc->io_stats); 527366a92acSlm66018 vdc->io_stats = NULL; 528366a92acSlm66018 } 529366a92acSlm66018 530366a92acSlm66018 if (vdc->err_stats) { 531366a92acSlm66018 kstat_delete(vdc->err_stats); 532366a92acSlm66018 vdc->err_stats = NULL; 533366a92acSlm66018 } 534366a92acSlm66018 5351ae08745Sheppo if (vdc->initialized & VDC_LOCKS) { 5361ae08745Sheppo mutex_destroy(&vdc->lock); 5373af08d82Slm66018 mutex_destroy(&vdc->read_lock); 5382f5224aeSachartre mutex_destroy(&vdc->ownership_lock); 5393af08d82Slm66018 cv_destroy(&vdc->initwait_cv); 5403af08d82Slm66018 cv_destroy(&vdc->dring_free_cv); 5413af08d82Slm66018 cv_destroy(&vdc->membind_cv); 5423af08d82Slm66018 cv_destroy(&vdc->sync_pending_cv); 5433af08d82Slm66018 cv_destroy(&vdc->sync_blocked_cv); 5443af08d82Slm66018 cv_destroy(&vdc->read_cv); 5453af08d82Slm66018 cv_destroy(&vdc->running_cv); 5462f5224aeSachartre cv_destroy(&vdc->ownership_cv); 5472f5224aeSachartre cv_destroy(&vdc->failfast_cv); 5482f5224aeSachartre cv_destroy(&vdc->failfast_io_cv); 5491ae08745Sheppo } 5501ae08745Sheppo 5511ae08745Sheppo if (vdc->minfo) 5521ae08745Sheppo kmem_free(vdc->minfo, sizeof (struct dk_minfo)); 5531ae08745Sheppo 5541ae08745Sheppo if (vdc->cinfo) 5551ae08745Sheppo kmem_free(vdc->cinfo, sizeof (struct dk_cinfo)); 5561ae08745Sheppo 5571ae08745Sheppo if (vdc->vtoc) 5581ae08745Sheppo kmem_free(vdc->vtoc, sizeof (struct vtoc)); 5591ae08745Sheppo 56078fcd0a1Sachartre if (vdc->geom) 56178fcd0a1Sachartre kmem_free(vdc->geom, sizeof (struct dk_geom)); 5620a55fbb7Slm66018 5634bac2208Snarayan if (vdc->devid) { 5644bac2208Snarayan ddi_devid_unregister(dip); 5654bac2208Snarayan ddi_devid_free(vdc->devid); 5664bac2208Snarayan } 5674bac2208Snarayan 5681ae08745Sheppo if (vdc->initialized & VDC_SOFT_STATE) 5691ae08745Sheppo ddi_soft_state_free(vdc_state, instance); 5701ae08745Sheppo 5713af08d82Slm66018 DMSG(vdc, 0, "[%d] End %p\n", instance, (void *)vdc); 5721ae08745Sheppo 5731ae08745Sheppo return (DDI_SUCCESS); 5741ae08745Sheppo } 5751ae08745Sheppo 5761ae08745Sheppo 5771ae08745Sheppo static int 5781ae08745Sheppo vdc_do_attach(dev_info_t *dip) 5791ae08745Sheppo { 5801ae08745Sheppo int instance; 5811ae08745Sheppo vdc_t *vdc = NULL; 5821ae08745Sheppo int status; 583655fd6a9Sachartre md_t *mdp; 5848cd10891Snarayan mde_cookie_t vd_node; 5851ae08745Sheppo 5861ae08745Sheppo ASSERT(dip != NULL); 5871ae08745Sheppo 5881ae08745Sheppo instance = ddi_get_instance(dip); 5891ae08745Sheppo if (ddi_soft_state_zalloc(vdc_state, instance) != DDI_SUCCESS) { 590e1ebb9ecSlm66018 cmn_err(CE_NOTE, "[%d] Couldn't alloc state structure", 591e1ebb9ecSlm66018 instance); 5921ae08745Sheppo return (DDI_FAILURE); 5931ae08745Sheppo } 5941ae08745Sheppo 5951ae08745Sheppo if ((vdc = ddi_get_soft_state(vdc_state, instance)) == NULL) { 596e1ebb9ecSlm66018 cmn_err(CE_NOTE, "[%d] Couldn't get state structure", instance); 5971ae08745Sheppo return (DDI_FAILURE); 5981ae08745Sheppo } 5991ae08745Sheppo 6001ae08745Sheppo /* 6011ae08745Sheppo * We assign the value to initialized in this case to zero out the 6021ae08745Sheppo * variable and then set bits in it to indicate what has been done 6031ae08745Sheppo */ 6041ae08745Sheppo vdc->initialized = VDC_SOFT_STATE; 6051ae08745Sheppo 6063af08d82Slm66018 vdc_hz_min_ldc_delay = drv_usectohz(vdc_min_timeout_ldc); 6073af08d82Slm66018 vdc_hz_max_ldc_delay = drv_usectohz(vdc_max_timeout_ldc); 6081ae08745Sheppo 6091ae08745Sheppo vdc->dip = dip; 6101ae08745Sheppo vdc->instance = instance; 6111ae08745Sheppo vdc->vdisk_type = VD_DISK_TYPE_UNK; 6124bac2208Snarayan vdc->vdisk_label = VD_DISK_LABEL_UNK; 6133af08d82Slm66018 vdc->state = VDC_STATE_INIT; 6143af08d82Slm66018 vdc->lifecycle = VDC_LC_ATTACHING; 6151ae08745Sheppo vdc->session_id = 0; 6161ae08745Sheppo vdc->block_size = DEV_BSIZE; 6178e6a2a04Slm66018 vdc->max_xfer_sz = maxphys / DEV_BSIZE; 6181ae08745Sheppo 61917cadca8Slm66018 /* 62017cadca8Slm66018 * We assume, for now, that the vDisk server will export 'read' 62117cadca8Slm66018 * operations to us at a minimum (this is needed because of checks 62217cadca8Slm66018 * in vdc for supported operations early in the handshake process). 62317cadca8Slm66018 * The vDisk server will return ENOTSUP if this is not the case. 62417cadca8Slm66018 * The value will be overwritten during the attribute exchange with 62517cadca8Slm66018 * the bitmask of operations exported by server. 62617cadca8Slm66018 */ 62717cadca8Slm66018 vdc->operations = VD_OP_MASK_READ; 62817cadca8Slm66018 6291ae08745Sheppo vdc->vtoc = NULL; 63078fcd0a1Sachartre vdc->geom = NULL; 6311ae08745Sheppo vdc->cinfo = NULL; 6321ae08745Sheppo vdc->minfo = NULL; 6331ae08745Sheppo 6341ae08745Sheppo mutex_init(&vdc->lock, NULL, MUTEX_DRIVER, NULL); 6353af08d82Slm66018 cv_init(&vdc->initwait_cv, NULL, CV_DRIVER, NULL); 6363af08d82Slm66018 cv_init(&vdc->dring_free_cv, NULL, CV_DRIVER, NULL); 6373af08d82Slm66018 cv_init(&vdc->membind_cv, NULL, CV_DRIVER, NULL); 6383af08d82Slm66018 cv_init(&vdc->running_cv, NULL, CV_DRIVER, NULL); 6393af08d82Slm66018 6403af08d82Slm66018 vdc->threads_pending = 0; 6413af08d82Slm66018 vdc->sync_op_pending = B_FALSE; 6423af08d82Slm66018 vdc->sync_op_blocked = B_FALSE; 6433af08d82Slm66018 cv_init(&vdc->sync_pending_cv, NULL, CV_DRIVER, NULL); 6443af08d82Slm66018 cv_init(&vdc->sync_blocked_cv, NULL, CV_DRIVER, NULL); 6453af08d82Slm66018 6462f5224aeSachartre mutex_init(&vdc->ownership_lock, NULL, MUTEX_DRIVER, NULL); 6472f5224aeSachartre cv_init(&vdc->ownership_cv, NULL, CV_DRIVER, NULL); 6482f5224aeSachartre cv_init(&vdc->failfast_cv, NULL, CV_DRIVER, NULL); 6492f5224aeSachartre cv_init(&vdc->failfast_io_cv, NULL, CV_DRIVER, NULL); 6502f5224aeSachartre 6513af08d82Slm66018 /* init blocking msg read functionality */ 6523af08d82Slm66018 mutex_init(&vdc->read_lock, NULL, MUTEX_DRIVER, NULL); 6533af08d82Slm66018 cv_init(&vdc->read_cv, NULL, CV_DRIVER, NULL); 6543af08d82Slm66018 vdc->read_state = VDC_READ_IDLE; 6553af08d82Slm66018 6561ae08745Sheppo vdc->initialized |= VDC_LOCKS; 6571ae08745Sheppo 658655fd6a9Sachartre /* get device and port MD node for this disk instance */ 6598cd10891Snarayan if (vdc_get_md_node(dip, &mdp, &vd_node) != 0) { 660655fd6a9Sachartre cmn_err(CE_NOTE, "[%d] Could not get machine description node", 661655fd6a9Sachartre instance); 662655fd6a9Sachartre return (DDI_FAILURE); 663655fd6a9Sachartre } 664655fd6a9Sachartre 6658cd10891Snarayan if (vdc_init_ports(vdc, mdp, vd_node) != 0) { 6668cd10891Snarayan cmn_err(CE_NOTE, "[%d] Error initialising ports", instance); 6678cd10891Snarayan return (DDI_FAILURE); 668655fd6a9Sachartre } 669655fd6a9Sachartre 670655fd6a9Sachartre (void) md_fini_handle(mdp); 671655fd6a9Sachartre 6723af08d82Slm66018 /* initialize the thread responsible for managing state with server */ 6733af08d82Slm66018 vdc->msg_proc_thr = thread_create(NULL, 0, vdc_process_msg_thread, 6741ae08745Sheppo vdc, 0, &p0, TS_RUN, minclsyspri); 6753af08d82Slm66018 if (vdc->msg_proc_thr == NULL) { 6761ae08745Sheppo cmn_err(CE_NOTE, "[%d] Failed to create msg processing thread", 6771ae08745Sheppo instance); 6781ae08745Sheppo return (DDI_FAILURE); 6791ae08745Sheppo } 6803af08d82Slm66018 6811ae08745Sheppo vdc->initialized |= VDC_THREAD; 6821ae08745Sheppo 683366a92acSlm66018 /* Create the kstats for saving the I/O statistics used by iostat(1M) */ 684366a92acSlm66018 vdc_create_io_kstats(vdc); 685366a92acSlm66018 vdc_create_err_kstats(vdc); 686366a92acSlm66018 687e1ebb9ecSlm66018 atomic_inc_32(&vdc_instance_count); 6881ae08745Sheppo 6890a55fbb7Slm66018 /* 69078fcd0a1Sachartre * Check the disk label. This will send requests and do the handshake. 69178fcd0a1Sachartre * We don't really care about the disk label now. What we really need is 69278fcd0a1Sachartre * the handshake do be done so that we know the type of the disk (slice 69378fcd0a1Sachartre * or full disk) and the appropriate device nodes can be created. 6940a55fbb7Slm66018 */ 69578fcd0a1Sachartre vdc->vdisk_label = VD_DISK_LABEL_UNK; 69678fcd0a1Sachartre vdc->vtoc = kmem_zalloc(sizeof (struct vtoc), KM_SLEEP); 69778fcd0a1Sachartre vdc->geom = kmem_zalloc(sizeof (struct dk_geom), KM_SLEEP); 69817cadca8Slm66018 vdc->minfo = kmem_zalloc(sizeof (struct dk_minfo), KM_SLEEP); 69978fcd0a1Sachartre 70078fcd0a1Sachartre mutex_enter(&vdc->lock); 70178fcd0a1Sachartre (void) vdc_validate_geometry(vdc); 70278fcd0a1Sachartre mutex_exit(&vdc->lock); 7031ae08745Sheppo 7041ae08745Sheppo /* 7055b98b509Sachartre * Now that we have the device info we can create the device nodes 7061ae08745Sheppo */ 7071ae08745Sheppo status = vdc_create_device_nodes(vdc); 7081ae08745Sheppo if (status) { 7093af08d82Slm66018 DMSG(vdc, 0, "[%d] Failed to create device nodes", 7101ae08745Sheppo instance); 7113af08d82Slm66018 goto return_status; 7121ae08745Sheppo } 7131ae08745Sheppo 7144bac2208Snarayan /* 7154bac2208Snarayan * Setup devid 7164bac2208Snarayan */ 7174bac2208Snarayan if (vdc_setup_devid(vdc)) { 7183af08d82Slm66018 DMSG(vdc, 0, "[%d] No device id available\n", instance); 7194bac2208Snarayan } 7204bac2208Snarayan 721366a92acSlm66018 /* 722366a92acSlm66018 * Fill in the fields of the error statistics kstat that were not 723366a92acSlm66018 * available when creating the kstat 724366a92acSlm66018 */ 725366a92acSlm66018 vdc_set_err_kstats(vdc); 726366a92acSlm66018 7271ae08745Sheppo ddi_report_dev(dip); 7283af08d82Slm66018 vdc->lifecycle = VDC_LC_ONLINE; 7293af08d82Slm66018 DMSG(vdc, 0, "[%d] Attach tasks successful\n", instance); 7301ae08745Sheppo 7313af08d82Slm66018 return_status: 7323af08d82Slm66018 DMSG(vdc, 0, "[%d] Attach completed\n", instance); 7331ae08745Sheppo return (status); 7341ae08745Sheppo } 7351ae08745Sheppo 7361ae08745Sheppo static int 7371ae08745Sheppo vdc_attach(dev_info_t *dip, ddi_attach_cmd_t cmd) 7381ae08745Sheppo { 7391ae08745Sheppo int status; 7401ae08745Sheppo 7411ae08745Sheppo switch (cmd) { 7421ae08745Sheppo case DDI_ATTACH: 7431ae08745Sheppo if ((status = vdc_do_attach(dip)) != 0) 7441ae08745Sheppo (void) vdc_detach(dip, DDI_DETACH); 7451ae08745Sheppo return (status); 7461ae08745Sheppo case DDI_RESUME: 7471ae08745Sheppo /* nothing to do for this non-device */ 7481ae08745Sheppo return (DDI_SUCCESS); 7491ae08745Sheppo default: 7501ae08745Sheppo return (DDI_FAILURE); 7511ae08745Sheppo } 7521ae08745Sheppo } 7531ae08745Sheppo 7541ae08745Sheppo static int 7558cd10891Snarayan vdc_do_ldc_init(vdc_t *vdc, vdc_server_t *srvr) 7561ae08745Sheppo { 7571ae08745Sheppo int status = 0; 7581ae08745Sheppo ldc_status_t ldc_state; 7591ae08745Sheppo ldc_attr_t ldc_attr; 7601ae08745Sheppo 7611ae08745Sheppo ASSERT(vdc != NULL); 7628cd10891Snarayan ASSERT(srvr != NULL); 7631ae08745Sheppo 7641ae08745Sheppo ldc_attr.devclass = LDC_DEV_BLK; 7651ae08745Sheppo ldc_attr.instance = vdc->instance; 7661ae08745Sheppo ldc_attr.mode = LDC_MODE_UNRELIABLE; /* unreliable transport */ 767e1ebb9ecSlm66018 ldc_attr.mtu = VD_LDC_MTU; 7681ae08745Sheppo 7698cd10891Snarayan if ((srvr->state & VDC_LDC_INIT) == 0) { 7708cd10891Snarayan status = ldc_init(srvr->ldc_id, &ldc_attr, 7718cd10891Snarayan &srvr->ldc_handle); 7721ae08745Sheppo if (status != 0) { 7733af08d82Slm66018 DMSG(vdc, 0, "[%d] ldc_init(chan %ld) returned %d", 7748cd10891Snarayan vdc->instance, srvr->ldc_id, status); 7751ae08745Sheppo return (status); 7761ae08745Sheppo } 7778cd10891Snarayan srvr->state |= VDC_LDC_INIT; 7781ae08745Sheppo } 7798cd10891Snarayan status = ldc_status(srvr->ldc_handle, &ldc_state); 7801ae08745Sheppo if (status != 0) { 7813af08d82Slm66018 DMSG(vdc, 0, "[%d] Cannot discover LDC status [err=%d]", 782e1ebb9ecSlm66018 vdc->instance, status); 7838cd10891Snarayan goto init_exit; 7841ae08745Sheppo } 7858cd10891Snarayan srvr->ldc_state = ldc_state; 7861ae08745Sheppo 7878cd10891Snarayan if ((srvr->state & VDC_LDC_CB) == 0) { 7888cd10891Snarayan status = ldc_reg_callback(srvr->ldc_handle, vdc_handle_cb, 7898cd10891Snarayan (caddr_t)srvr); 7901ae08745Sheppo if (status != 0) { 7913af08d82Slm66018 DMSG(vdc, 0, "[%d] LDC callback reg. failed (%d)", 792e1ebb9ecSlm66018 vdc->instance, status); 7938cd10891Snarayan goto init_exit; 7941ae08745Sheppo } 7958cd10891Snarayan srvr->state |= VDC_LDC_CB; 7961ae08745Sheppo } 7971ae08745Sheppo 7981ae08745Sheppo /* 7991ae08745Sheppo * At this stage we have initialised LDC, we will now try and open 8001ae08745Sheppo * the connection. 8011ae08745Sheppo */ 8028cd10891Snarayan if (srvr->ldc_state == LDC_INIT) { 8038cd10891Snarayan status = ldc_open(srvr->ldc_handle); 8041ae08745Sheppo if (status != 0) { 8053af08d82Slm66018 DMSG(vdc, 0, "[%d] ldc_open(chan %ld) returned %d", 8068cd10891Snarayan vdc->instance, srvr->ldc_id, status); 8078cd10891Snarayan goto init_exit; 8081ae08745Sheppo } 8098cd10891Snarayan srvr->state |= VDC_LDC_OPEN; 8108cd10891Snarayan } 8118cd10891Snarayan 8128cd10891Snarayan init_exit: 8138cd10891Snarayan if (status) { 8148cd10891Snarayan vdc_terminate_ldc(vdc, srvr); 8151ae08745Sheppo } 8161ae08745Sheppo 8171ae08745Sheppo return (status); 8181ae08745Sheppo } 8191ae08745Sheppo 8201ae08745Sheppo static int 8211ae08745Sheppo vdc_start_ldc_connection(vdc_t *vdc) 8221ae08745Sheppo { 8231ae08745Sheppo int status = 0; 8241ae08745Sheppo 8251ae08745Sheppo ASSERT(vdc != NULL); 8261ae08745Sheppo 8273af08d82Slm66018 ASSERT(MUTEX_HELD(&vdc->lock)); 8281ae08745Sheppo 8290a55fbb7Slm66018 status = vdc_do_ldc_up(vdc); 8301ae08745Sheppo 8313af08d82Slm66018 DMSG(vdc, 0, "[%d] Finished bringing up LDC\n", vdc->instance); 8321ae08745Sheppo 8333af08d82Slm66018 return (status); 8343af08d82Slm66018 } 8353af08d82Slm66018 8363af08d82Slm66018 static int 8373af08d82Slm66018 vdc_stop_ldc_connection(vdc_t *vdcp) 8383af08d82Slm66018 { 8393af08d82Slm66018 int status; 8403af08d82Slm66018 8418cd10891Snarayan ASSERT(vdcp != NULL); 8428cd10891Snarayan 8438cd10891Snarayan ASSERT(MUTEX_HELD(&vdcp->lock)); 8448cd10891Snarayan 8453af08d82Slm66018 DMSG(vdcp, 0, ": Resetting connection to vDisk server : state %d\n", 8463af08d82Slm66018 vdcp->state); 8473af08d82Slm66018 8488cd10891Snarayan status = ldc_down(vdcp->curr_server->ldc_handle); 8493af08d82Slm66018 DMSG(vdcp, 0, "ldc_down() = %d\n", status); 8503af08d82Slm66018 8513af08d82Slm66018 vdcp->initialized &= ~VDC_HANDSHAKE; 8523af08d82Slm66018 DMSG(vdcp, 0, "initialized=%x\n", vdcp->initialized); 8531ae08745Sheppo 8541ae08745Sheppo return (status); 8551ae08745Sheppo } 8561ae08745Sheppo 857366a92acSlm66018 static void 858366a92acSlm66018 vdc_create_io_kstats(vdc_t *vdc) 859366a92acSlm66018 { 860366a92acSlm66018 if (vdc->io_stats != NULL) { 861366a92acSlm66018 DMSG(vdc, 0, "[%d] I/O kstat already exists\n", vdc->instance); 862366a92acSlm66018 return; 863366a92acSlm66018 } 864366a92acSlm66018 865366a92acSlm66018 vdc->io_stats = kstat_create(VDC_DRIVER_NAME, vdc->instance, NULL, 866366a92acSlm66018 "disk", KSTAT_TYPE_IO, 1, KSTAT_FLAG_PERSISTENT); 867366a92acSlm66018 if (vdc->io_stats != NULL) { 868366a92acSlm66018 vdc->io_stats->ks_lock = &vdc->lock; 869366a92acSlm66018 kstat_install(vdc->io_stats); 870366a92acSlm66018 } else { 871366a92acSlm66018 cmn_err(CE_NOTE, "[%d] Failed to create kstat: I/O statistics" 872366a92acSlm66018 " will not be gathered", vdc->instance); 873366a92acSlm66018 } 874366a92acSlm66018 } 875366a92acSlm66018 876366a92acSlm66018 static void 877366a92acSlm66018 vdc_create_err_kstats(vdc_t *vdc) 878366a92acSlm66018 { 879366a92acSlm66018 vd_err_stats_t *stp; 880366a92acSlm66018 char kstatmodule_err[KSTAT_STRLEN]; 881366a92acSlm66018 char kstatname[KSTAT_STRLEN]; 882366a92acSlm66018 int ndata = (sizeof (vd_err_stats_t) / sizeof (kstat_named_t)); 883366a92acSlm66018 int instance = vdc->instance; 884366a92acSlm66018 885366a92acSlm66018 if (vdc->err_stats != NULL) { 886366a92acSlm66018 DMSG(vdc, 0, "[%d] ERR kstat already exists\n", vdc->instance); 887366a92acSlm66018 return; 888366a92acSlm66018 } 889366a92acSlm66018 890366a92acSlm66018 (void) snprintf(kstatmodule_err, sizeof (kstatmodule_err), 891366a92acSlm66018 "%serr", VDC_DRIVER_NAME); 892366a92acSlm66018 (void) snprintf(kstatname, sizeof (kstatname), 893366a92acSlm66018 "%s%d,err", VDC_DRIVER_NAME, instance); 894366a92acSlm66018 895366a92acSlm66018 vdc->err_stats = kstat_create(kstatmodule_err, instance, kstatname, 896366a92acSlm66018 "device_error", KSTAT_TYPE_NAMED, ndata, KSTAT_FLAG_PERSISTENT); 897366a92acSlm66018 898366a92acSlm66018 if (vdc->err_stats == NULL) { 899366a92acSlm66018 cmn_err(CE_NOTE, "[%d] Failed to create kstat: Error statistics" 900366a92acSlm66018 " will not be gathered", instance); 901366a92acSlm66018 return; 902366a92acSlm66018 } 903366a92acSlm66018 904366a92acSlm66018 stp = (vd_err_stats_t *)vdc->err_stats->ks_data; 905366a92acSlm66018 kstat_named_init(&stp->vd_softerrs, "Soft Errors", 906366a92acSlm66018 KSTAT_DATA_UINT32); 907366a92acSlm66018 kstat_named_init(&stp->vd_transerrs, "Transport Errors", 908366a92acSlm66018 KSTAT_DATA_UINT32); 909366a92acSlm66018 kstat_named_init(&stp->vd_protoerrs, "Protocol Errors", 910366a92acSlm66018 KSTAT_DATA_UINT32); 911366a92acSlm66018 kstat_named_init(&stp->vd_vid, "Vendor", 912366a92acSlm66018 KSTAT_DATA_CHAR); 913366a92acSlm66018 kstat_named_init(&stp->vd_pid, "Product", 914366a92acSlm66018 KSTAT_DATA_CHAR); 915366a92acSlm66018 kstat_named_init(&stp->vd_capacity, "Size", 916366a92acSlm66018 KSTAT_DATA_ULONGLONG); 917366a92acSlm66018 918366a92acSlm66018 vdc->err_stats->ks_update = nulldev; 919366a92acSlm66018 920366a92acSlm66018 kstat_install(vdc->err_stats); 921366a92acSlm66018 } 922366a92acSlm66018 923366a92acSlm66018 static void 924366a92acSlm66018 vdc_set_err_kstats(vdc_t *vdc) 925366a92acSlm66018 { 926366a92acSlm66018 vd_err_stats_t *stp; 927366a92acSlm66018 928366a92acSlm66018 if (vdc->err_stats == NULL) 929366a92acSlm66018 return; 930366a92acSlm66018 931366a92acSlm66018 mutex_enter(&vdc->lock); 932366a92acSlm66018 933366a92acSlm66018 stp = (vd_err_stats_t *)vdc->err_stats->ks_data; 934366a92acSlm66018 ASSERT(stp != NULL); 935366a92acSlm66018 936366a92acSlm66018 stp->vd_capacity.value.ui64 = vdc->vdisk_size * vdc->block_size; 937366a92acSlm66018 (void) strcpy(stp->vd_vid.value.c, "SUN"); 938366a92acSlm66018 (void) strcpy(stp->vd_pid.value.c, "VDSK"); 939366a92acSlm66018 940366a92acSlm66018 mutex_exit(&vdc->lock); 941366a92acSlm66018 } 942366a92acSlm66018 9434bac2208Snarayan static int 9444bac2208Snarayan vdc_create_device_nodes_efi(vdc_t *vdc) 9454bac2208Snarayan { 9464bac2208Snarayan ddi_remove_minor_node(vdc->dip, "h"); 9474bac2208Snarayan ddi_remove_minor_node(vdc->dip, "h,raw"); 9484bac2208Snarayan 9494bac2208Snarayan if (ddi_create_minor_node(vdc->dip, "wd", S_IFBLK, 9504bac2208Snarayan VD_MAKE_DEV(vdc->instance, VD_EFI_WD_SLICE), 9514bac2208Snarayan DDI_NT_BLOCK, 0) != DDI_SUCCESS) { 9524bac2208Snarayan cmn_err(CE_NOTE, "[%d] Couldn't add block node 'wd'", 9534bac2208Snarayan vdc->instance); 9544bac2208Snarayan return (EIO); 9554bac2208Snarayan } 9564bac2208Snarayan 9574bac2208Snarayan /* if any device node is created we set this flag */ 9584bac2208Snarayan vdc->initialized |= VDC_MINOR; 9594bac2208Snarayan 9604bac2208Snarayan if (ddi_create_minor_node(vdc->dip, "wd,raw", S_IFCHR, 9614bac2208Snarayan VD_MAKE_DEV(vdc->instance, VD_EFI_WD_SLICE), 9624bac2208Snarayan DDI_NT_BLOCK, 0) != DDI_SUCCESS) { 9634bac2208Snarayan cmn_err(CE_NOTE, "[%d] Couldn't add block node 'wd,raw'", 9644bac2208Snarayan vdc->instance); 9654bac2208Snarayan return (EIO); 9664bac2208Snarayan } 9674bac2208Snarayan 9684bac2208Snarayan return (0); 9694bac2208Snarayan } 9704bac2208Snarayan 9714bac2208Snarayan static int 9724bac2208Snarayan vdc_create_device_nodes_vtoc(vdc_t *vdc) 9734bac2208Snarayan { 9744bac2208Snarayan ddi_remove_minor_node(vdc->dip, "wd"); 9754bac2208Snarayan ddi_remove_minor_node(vdc->dip, "wd,raw"); 9764bac2208Snarayan 9774bac2208Snarayan if (ddi_create_minor_node(vdc->dip, "h", S_IFBLK, 9784bac2208Snarayan VD_MAKE_DEV(vdc->instance, VD_EFI_WD_SLICE), 9794bac2208Snarayan DDI_NT_BLOCK, 0) != DDI_SUCCESS) { 9804bac2208Snarayan cmn_err(CE_NOTE, "[%d] Couldn't add block node 'h'", 9814bac2208Snarayan vdc->instance); 9824bac2208Snarayan return (EIO); 9834bac2208Snarayan } 9844bac2208Snarayan 9854bac2208Snarayan /* if any device node is created we set this flag */ 9864bac2208Snarayan vdc->initialized |= VDC_MINOR; 9874bac2208Snarayan 9884bac2208Snarayan if (ddi_create_minor_node(vdc->dip, "h,raw", S_IFCHR, 9894bac2208Snarayan VD_MAKE_DEV(vdc->instance, VD_EFI_WD_SLICE), 9904bac2208Snarayan DDI_NT_BLOCK, 0) != DDI_SUCCESS) { 9914bac2208Snarayan cmn_err(CE_NOTE, "[%d] Couldn't add block node 'h,raw'", 9924bac2208Snarayan vdc->instance); 9934bac2208Snarayan return (EIO); 9944bac2208Snarayan } 9954bac2208Snarayan 9964bac2208Snarayan return (0); 9974bac2208Snarayan } 9981ae08745Sheppo 9991ae08745Sheppo /* 10001ae08745Sheppo * Function: 10011ae08745Sheppo * vdc_create_device_nodes 10021ae08745Sheppo * 10031ae08745Sheppo * Description: 10041ae08745Sheppo * This function creates the block and character device nodes under 10055b98b509Sachartre * /devices. It is called as part of the attach(9E) of the instance 10065b98b509Sachartre * during the handshake with vds after vds has sent the attributes 10075b98b509Sachartre * to vdc. 10081ae08745Sheppo * 10091ae08745Sheppo * If the device is of type VD_DISK_TYPE_SLICE then the minor node 10101ae08745Sheppo * of 2 is used in keeping with the Solaris convention that slice 2 10111ae08745Sheppo * refers to a whole disk. Slices start at 'a' 10121ae08745Sheppo * 10131ae08745Sheppo * Parameters: 10141ae08745Sheppo * vdc - soft state pointer 10151ae08745Sheppo * 10161ae08745Sheppo * Return Values 10171ae08745Sheppo * 0 - Success 10181ae08745Sheppo * EIO - Failed to create node 10191ae08745Sheppo * EINVAL - Unknown type of disk exported 10201ae08745Sheppo */ 10211ae08745Sheppo static int 10221ae08745Sheppo vdc_create_device_nodes(vdc_t *vdc) 10231ae08745Sheppo { 10244bac2208Snarayan char name[sizeof ("s,raw")]; 10251ae08745Sheppo dev_info_t *dip = NULL; 10264bac2208Snarayan int instance, status; 10271ae08745Sheppo int num_slices = 1; 10281ae08745Sheppo int i; 10291ae08745Sheppo 10301ae08745Sheppo ASSERT(vdc != NULL); 10311ae08745Sheppo 10321ae08745Sheppo instance = vdc->instance; 10331ae08745Sheppo dip = vdc->dip; 10341ae08745Sheppo 10351ae08745Sheppo switch (vdc->vdisk_type) { 10361ae08745Sheppo case VD_DISK_TYPE_DISK: 10371ae08745Sheppo num_slices = V_NUMPAR; 10381ae08745Sheppo break; 10391ae08745Sheppo case VD_DISK_TYPE_SLICE: 10401ae08745Sheppo num_slices = 1; 10411ae08745Sheppo break; 10421ae08745Sheppo case VD_DISK_TYPE_UNK: 10431ae08745Sheppo default: 10441ae08745Sheppo return (EINVAL); 10451ae08745Sheppo } 10461ae08745Sheppo 10474bac2208Snarayan /* 10484bac2208Snarayan * Minor nodes are different for EFI disks: EFI disks do not have 10494bac2208Snarayan * a minor node 'g' for the minor number corresponding to slice 10504bac2208Snarayan * VD_EFI_WD_SLICE (slice 7) instead they have a minor node 'wd' 10514bac2208Snarayan * representing the whole disk. 10524bac2208Snarayan */ 10531ae08745Sheppo for (i = 0; i < num_slices; i++) { 10544bac2208Snarayan 10554bac2208Snarayan if (i == VD_EFI_WD_SLICE) { 10564bac2208Snarayan if (vdc->vdisk_label == VD_DISK_LABEL_EFI) 10574bac2208Snarayan status = vdc_create_device_nodes_efi(vdc); 10584bac2208Snarayan else 10594bac2208Snarayan status = vdc_create_device_nodes_vtoc(vdc); 10604bac2208Snarayan if (status != 0) 10614bac2208Snarayan return (status); 10624bac2208Snarayan continue; 10634bac2208Snarayan } 10644bac2208Snarayan 10651ae08745Sheppo (void) snprintf(name, sizeof (name), "%c", 'a' + i); 10661ae08745Sheppo if (ddi_create_minor_node(dip, name, S_IFBLK, 10671ae08745Sheppo VD_MAKE_DEV(instance, i), DDI_NT_BLOCK, 0) != DDI_SUCCESS) { 1068e1ebb9ecSlm66018 cmn_err(CE_NOTE, "[%d] Couldn't add block node '%s'", 1069e1ebb9ecSlm66018 instance, name); 10701ae08745Sheppo return (EIO); 10711ae08745Sheppo } 10721ae08745Sheppo 10731ae08745Sheppo /* if any device node is created we set this flag */ 10741ae08745Sheppo vdc->initialized |= VDC_MINOR; 10751ae08745Sheppo 107687a7269eSachartre (void) snprintf(name, sizeof (name), "%c%s", 'a' + i, ",raw"); 107787a7269eSachartre 10781ae08745Sheppo if (ddi_create_minor_node(dip, name, S_IFCHR, 10791ae08745Sheppo VD_MAKE_DEV(instance, i), DDI_NT_BLOCK, 0) != DDI_SUCCESS) { 1080e1ebb9ecSlm66018 cmn_err(CE_NOTE, "[%d] Couldn't add raw node '%s'", 1081e1ebb9ecSlm66018 instance, name); 10821ae08745Sheppo return (EIO); 10831ae08745Sheppo } 10841ae08745Sheppo } 10851ae08745Sheppo 10861ae08745Sheppo return (0); 10871ae08745Sheppo } 10881ae08745Sheppo 10891ae08745Sheppo /* 10905b98b509Sachartre * Driver prop_op(9e) entry point function. Return the number of blocks for 10915b98b509Sachartre * the partition in question or forward the request to the property facilities. 10921ae08745Sheppo */ 10931ae08745Sheppo static int 10945b98b509Sachartre vdc_prop_op(dev_t dev, dev_info_t *dip, ddi_prop_op_t prop_op, int mod_flags, 10955b98b509Sachartre char *name, caddr_t valuep, int *lengthp) 10961ae08745Sheppo { 10975b98b509Sachartre int instance = ddi_get_instance(dip); 10985b98b509Sachartre vdc_t *vdc; 10995b98b509Sachartre uint64_t nblocks; 11005b98b509Sachartre uint_t blksize; 11011ae08745Sheppo 11025b98b509Sachartre vdc = ddi_get_soft_state(vdc_state, instance); 11031ae08745Sheppo 11045b98b509Sachartre if (dev == DDI_DEV_T_ANY || vdc == NULL) { 11055b98b509Sachartre return (ddi_prop_op(dev, dip, prop_op, mod_flags, 11065b98b509Sachartre name, valuep, lengthp)); 11071ae08745Sheppo } 11081ae08745Sheppo 11095b98b509Sachartre mutex_enter(&vdc->lock); 11105b98b509Sachartre (void) vdc_validate_geometry(vdc); 111178fcd0a1Sachartre if (vdc->vdisk_label == VD_DISK_LABEL_UNK) { 11125b98b509Sachartre mutex_exit(&vdc->lock); 11135b98b509Sachartre return (ddi_prop_op(dev, dip, prop_op, mod_flags, 11145b98b509Sachartre name, valuep, lengthp)); 111578fcd0a1Sachartre } 11165b98b509Sachartre nblocks = vdc->slice[VDCPART(dev)].nblocks; 11175b98b509Sachartre blksize = vdc->block_size; 11185b98b509Sachartre mutex_exit(&vdc->lock); 111978fcd0a1Sachartre 11205b98b509Sachartre return (ddi_prop_op_nblocks_blksize(dev, dip, prop_op, mod_flags, 11215b98b509Sachartre name, valuep, lengthp, nblocks, blksize)); 11221ae08745Sheppo } 11231ae08745Sheppo 112478fcd0a1Sachartre /* 112578fcd0a1Sachartre * Function: 112678fcd0a1Sachartre * vdc_is_opened 112778fcd0a1Sachartre * 112878fcd0a1Sachartre * Description: 112978fcd0a1Sachartre * This function checks if any slice of a given virtual disk is 113078fcd0a1Sachartre * currently opened. 113178fcd0a1Sachartre * 113278fcd0a1Sachartre * Parameters: 113378fcd0a1Sachartre * vdc - soft state pointer 113478fcd0a1Sachartre * 113578fcd0a1Sachartre * Return Values 113678fcd0a1Sachartre * B_TRUE - at least one slice is opened. 113778fcd0a1Sachartre * B_FALSE - no slice is opened. 113878fcd0a1Sachartre */ 113978fcd0a1Sachartre static boolean_t 114078fcd0a1Sachartre vdc_is_opened(vdc_t *vdc) 114178fcd0a1Sachartre { 114278fcd0a1Sachartre int i, nslices; 114378fcd0a1Sachartre 114478fcd0a1Sachartre switch (vdc->vdisk_type) { 114578fcd0a1Sachartre case VD_DISK_TYPE_DISK: 114678fcd0a1Sachartre nslices = V_NUMPAR; 114778fcd0a1Sachartre break; 114878fcd0a1Sachartre case VD_DISK_TYPE_SLICE: 114978fcd0a1Sachartre nslices = 1; 115078fcd0a1Sachartre break; 115178fcd0a1Sachartre case VD_DISK_TYPE_UNK: 115278fcd0a1Sachartre default: 115378fcd0a1Sachartre ASSERT(0); 115478fcd0a1Sachartre } 115578fcd0a1Sachartre 115678fcd0a1Sachartre /* check if there's any layered open */ 115778fcd0a1Sachartre for (i = 0; i < nslices; i++) { 115878fcd0a1Sachartre if (vdc->open_lyr[i] > 0) 115978fcd0a1Sachartre return (B_TRUE); 116078fcd0a1Sachartre } 116178fcd0a1Sachartre 116278fcd0a1Sachartre /* check if there is any other kind of open */ 116378fcd0a1Sachartre for (i = 0; i < OTYPCNT; i++) { 116478fcd0a1Sachartre if (vdc->open[i] != 0) 116578fcd0a1Sachartre return (B_TRUE); 116678fcd0a1Sachartre } 116778fcd0a1Sachartre 116878fcd0a1Sachartre return (B_FALSE); 116978fcd0a1Sachartre } 117078fcd0a1Sachartre 117178fcd0a1Sachartre static int 117278fcd0a1Sachartre vdc_mark_opened(vdc_t *vdc, int slice, int flag, int otyp) 117378fcd0a1Sachartre { 117478fcd0a1Sachartre uint8_t slicemask; 117578fcd0a1Sachartre int i; 117678fcd0a1Sachartre 117778fcd0a1Sachartre ASSERT(otyp < OTYPCNT); 117878fcd0a1Sachartre ASSERT(slice < V_NUMPAR); 117978fcd0a1Sachartre ASSERT(MUTEX_HELD(&vdc->lock)); 118078fcd0a1Sachartre 118178fcd0a1Sachartre slicemask = 1 << slice; 118278fcd0a1Sachartre 118378fcd0a1Sachartre /* check if slice is already exclusively opened */ 118478fcd0a1Sachartre if (vdc->open_excl & slicemask) 118578fcd0a1Sachartre return (EBUSY); 118678fcd0a1Sachartre 118778fcd0a1Sachartre /* if open exclusive, check if slice is already opened */ 118878fcd0a1Sachartre if (flag & FEXCL) { 118978fcd0a1Sachartre if (vdc->open_lyr[slice] > 0) 119078fcd0a1Sachartre return (EBUSY); 119178fcd0a1Sachartre for (i = 0; i < OTYPCNT; i++) { 119278fcd0a1Sachartre if (vdc->open[i] & slicemask) 119378fcd0a1Sachartre return (EBUSY); 119478fcd0a1Sachartre } 119578fcd0a1Sachartre vdc->open_excl |= slicemask; 119678fcd0a1Sachartre } 119778fcd0a1Sachartre 119878fcd0a1Sachartre /* mark slice as opened */ 119978fcd0a1Sachartre if (otyp == OTYP_LYR) { 120078fcd0a1Sachartre vdc->open_lyr[slice]++; 120178fcd0a1Sachartre } else { 120278fcd0a1Sachartre vdc->open[otyp] |= slicemask; 120378fcd0a1Sachartre } 120478fcd0a1Sachartre 120578fcd0a1Sachartre return (0); 120678fcd0a1Sachartre } 120778fcd0a1Sachartre 120878fcd0a1Sachartre static void 120978fcd0a1Sachartre vdc_mark_closed(vdc_t *vdc, int slice, int flag, int otyp) 121078fcd0a1Sachartre { 121178fcd0a1Sachartre uint8_t slicemask; 121278fcd0a1Sachartre 121378fcd0a1Sachartre ASSERT(otyp < OTYPCNT); 121478fcd0a1Sachartre ASSERT(slice < V_NUMPAR); 121578fcd0a1Sachartre ASSERT(MUTEX_HELD(&vdc->lock)); 121678fcd0a1Sachartre 121778fcd0a1Sachartre slicemask = 1 << slice; 121878fcd0a1Sachartre 121978fcd0a1Sachartre if (otyp == OTYP_LYR) { 122078fcd0a1Sachartre ASSERT(vdc->open_lyr[slice] > 0); 122178fcd0a1Sachartre vdc->open_lyr[slice]--; 122278fcd0a1Sachartre } else { 122378fcd0a1Sachartre vdc->open[otyp] &= ~slicemask; 122478fcd0a1Sachartre } 122578fcd0a1Sachartre 122678fcd0a1Sachartre if (flag & FEXCL) 122778fcd0a1Sachartre vdc->open_excl &= ~slicemask; 122878fcd0a1Sachartre } 122978fcd0a1Sachartre 12301ae08745Sheppo static int 12311ae08745Sheppo vdc_open(dev_t *dev, int flag, int otyp, cred_t *cred) 12321ae08745Sheppo { 12331ae08745Sheppo _NOTE(ARGUNUSED(cred)) 12341ae08745Sheppo 1235179e09c2Sachartre int instance, nodelay; 123678fcd0a1Sachartre int slice, status = 0; 12371ae08745Sheppo vdc_t *vdc; 12381ae08745Sheppo 12391ae08745Sheppo ASSERT(dev != NULL); 12400d0c8d4bSnarayan instance = VDCUNIT(*dev); 12411ae08745Sheppo 124278fcd0a1Sachartre if (otyp >= OTYPCNT) 12431ae08745Sheppo return (EINVAL); 12441ae08745Sheppo 12451ae08745Sheppo if ((vdc = ddi_get_soft_state(vdc_state, instance)) == NULL) { 1246e1ebb9ecSlm66018 cmn_err(CE_NOTE, "[%d] Couldn't get state structure", instance); 12471ae08745Sheppo return (ENXIO); 12481ae08745Sheppo } 12491ae08745Sheppo 12503af08d82Slm66018 DMSG(vdc, 0, "minor = %d flag = %x, otyp = %x\n", 12513af08d82Slm66018 getminor(*dev), flag, otyp); 12521ae08745Sheppo 125378fcd0a1Sachartre slice = VDCPART(*dev); 125478fcd0a1Sachartre 1255179e09c2Sachartre nodelay = flag & (FNDELAY | FNONBLOCK); 1256179e09c2Sachartre 1257179e09c2Sachartre if ((flag & FWRITE) && (!nodelay) && 1258179e09c2Sachartre !(VD_OP_SUPPORTED(vdc->operations, VD_OP_BWRITE))) { 1259179e09c2Sachartre return (EROFS); 1260179e09c2Sachartre } 1261179e09c2Sachartre 12621ae08745Sheppo mutex_enter(&vdc->lock); 126378fcd0a1Sachartre 126478fcd0a1Sachartre status = vdc_mark_opened(vdc, slice, flag, otyp); 126578fcd0a1Sachartre 126678fcd0a1Sachartre if (status != 0) { 126778fcd0a1Sachartre mutex_exit(&vdc->lock); 126878fcd0a1Sachartre return (status); 126978fcd0a1Sachartre } 127078fcd0a1Sachartre 1271179e09c2Sachartre if (nodelay) { 127278fcd0a1Sachartre 127378fcd0a1Sachartre /* don't resubmit a validate request if there's already one */ 127478fcd0a1Sachartre if (vdc->validate_pending > 0) { 127578fcd0a1Sachartre mutex_exit(&vdc->lock); 127678fcd0a1Sachartre return (0); 127778fcd0a1Sachartre } 127878fcd0a1Sachartre 127978fcd0a1Sachartre /* call vdc_validate() asynchronously to avoid blocking */ 128078fcd0a1Sachartre if (taskq_dispatch(system_taskq, vdc_validate_task, 128178fcd0a1Sachartre (void *)vdc, TQ_NOSLEEP) == NULL) { 128278fcd0a1Sachartre vdc_mark_closed(vdc, slice, flag, otyp); 128378fcd0a1Sachartre mutex_exit(&vdc->lock); 128478fcd0a1Sachartre return (ENXIO); 128578fcd0a1Sachartre } 128678fcd0a1Sachartre 128778fcd0a1Sachartre vdc->validate_pending++; 128878fcd0a1Sachartre mutex_exit(&vdc->lock); 128978fcd0a1Sachartre return (0); 129078fcd0a1Sachartre } 129178fcd0a1Sachartre 12921ae08745Sheppo mutex_exit(&vdc->lock); 12931ae08745Sheppo 129478fcd0a1Sachartre vdc_validate(vdc); 129578fcd0a1Sachartre 129678fcd0a1Sachartre mutex_enter(&vdc->lock); 129778fcd0a1Sachartre 129878fcd0a1Sachartre if (vdc->vdisk_label == VD_DISK_LABEL_UNK || 1299edcc0754Sachartre vdc->slice[slice].nblocks == 0) { 130078fcd0a1Sachartre vdc_mark_closed(vdc, slice, flag, otyp); 130178fcd0a1Sachartre status = EIO; 130278fcd0a1Sachartre } 130378fcd0a1Sachartre 130478fcd0a1Sachartre mutex_exit(&vdc->lock); 130578fcd0a1Sachartre 130678fcd0a1Sachartre return (status); 13071ae08745Sheppo } 13081ae08745Sheppo 13091ae08745Sheppo static int 13101ae08745Sheppo vdc_close(dev_t dev, int flag, int otyp, cred_t *cred) 13111ae08745Sheppo { 13121ae08745Sheppo _NOTE(ARGUNUSED(cred)) 13131ae08745Sheppo 13141ae08745Sheppo int instance; 131578fcd0a1Sachartre int slice; 13162f5224aeSachartre int rv, rval; 13171ae08745Sheppo vdc_t *vdc; 13181ae08745Sheppo 13190d0c8d4bSnarayan instance = VDCUNIT(dev); 13201ae08745Sheppo 132178fcd0a1Sachartre if (otyp >= OTYPCNT) 13221ae08745Sheppo return (EINVAL); 13231ae08745Sheppo 13241ae08745Sheppo if ((vdc = ddi_get_soft_state(vdc_state, instance)) == NULL) { 1325e1ebb9ecSlm66018 cmn_err(CE_NOTE, "[%d] Couldn't get state structure", instance); 13261ae08745Sheppo return (ENXIO); 13271ae08745Sheppo } 13281ae08745Sheppo 13293af08d82Slm66018 DMSG(vdc, 0, "[%d] flag = %x, otyp = %x\n", instance, flag, otyp); 13301ae08745Sheppo 133178fcd0a1Sachartre slice = VDCPART(dev); 133278fcd0a1Sachartre 13338259acd8Szk194757 /* 13348259acd8Szk194757 * Attempt to flush the W$ on a close operation. If this is 13358259acd8Szk194757 * not a supported IOCTL command or the backing device is read-only 13368259acd8Szk194757 * do not fail the close operation. 13378259acd8Szk194757 */ 13382f5224aeSachartre rv = vd_process_ioctl(dev, DKIOCFLUSHWRITECACHE, NULL, FKIOCTL, &rval); 13398259acd8Szk194757 13408259acd8Szk194757 if (rv != 0 && rv != ENOTSUP && rv != ENOTTY && rv != EROFS) { 13418259acd8Szk194757 DMSG(vdc, 0, "[%d] flush failed with error %d on close\n", 13428259acd8Szk194757 instance, rv); 13438259acd8Szk194757 return (EIO); 13448259acd8Szk194757 } 13458259acd8Szk194757 13461ae08745Sheppo mutex_enter(&vdc->lock); 134778fcd0a1Sachartre vdc_mark_closed(vdc, slice, flag, otyp); 13481ae08745Sheppo mutex_exit(&vdc->lock); 13491ae08745Sheppo 13501ae08745Sheppo return (0); 13511ae08745Sheppo } 13521ae08745Sheppo 13531ae08745Sheppo static int 13541ae08745Sheppo vdc_ioctl(dev_t dev, int cmd, intptr_t arg, int mode, cred_t *credp, int *rvalp) 13551ae08745Sheppo { 13561ae08745Sheppo _NOTE(ARGUNUSED(credp)) 13571ae08745Sheppo 13582f5224aeSachartre return (vd_process_ioctl(dev, cmd, (caddr_t)arg, mode, rvalp)); 13591ae08745Sheppo } 13601ae08745Sheppo 13611ae08745Sheppo static int 13621ae08745Sheppo vdc_print(dev_t dev, char *str) 13631ae08745Sheppo { 13640d0c8d4bSnarayan cmn_err(CE_NOTE, "vdc%d: %s", VDCUNIT(dev), str); 13651ae08745Sheppo return (0); 13661ae08745Sheppo } 13671ae08745Sheppo 13681ae08745Sheppo static int 13691ae08745Sheppo vdc_dump(dev_t dev, caddr_t addr, daddr_t blkno, int nblk) 13701ae08745Sheppo { 1371d10e4ef2Snarayan int rv; 1372d10e4ef2Snarayan size_t nbytes = nblk * DEV_BSIZE; 13730d0c8d4bSnarayan int instance = VDCUNIT(dev); 1374d10e4ef2Snarayan vdc_t *vdc = NULL; 13751ae08745Sheppo 13761ae08745Sheppo if ((vdc = ddi_get_soft_state(vdc_state, instance)) == NULL) { 1377e1ebb9ecSlm66018 cmn_err(CE_NOTE, "[%d] Couldn't get state structure", instance); 13781ae08745Sheppo return (ENXIO); 13791ae08745Sheppo } 13801ae08745Sheppo 13813af08d82Slm66018 DMSG(vdc, 2, "[%d] dump %ld bytes at block 0x%lx : addr=0x%p\n", 13823af08d82Slm66018 instance, nbytes, blkno, (void *)addr); 13833af08d82Slm66018 rv = vdc_send_request(vdc, VD_OP_BWRITE, addr, nbytes, 13840d0c8d4bSnarayan VDCPART(dev), blkno, CB_STRATEGY, 0, VIO_write_dir); 13853af08d82Slm66018 if (rv) { 13863af08d82Slm66018 DMSG(vdc, 0, "Failed to do a disk dump (err=%d)\n", rv); 13871ae08745Sheppo return (rv); 13881ae08745Sheppo } 13891ae08745Sheppo 13903af08d82Slm66018 if (ddi_in_panic()) 13913c2ebf09Sachartre (void) vdc_drain_response(vdc, NULL); 13923af08d82Slm66018 13933af08d82Slm66018 DMSG(vdc, 0, "[%d] End\n", instance); 13943af08d82Slm66018 13953af08d82Slm66018 return (0); 13963af08d82Slm66018 } 13973af08d82Slm66018 13981ae08745Sheppo /* -------------------------------------------------------------------------- */ 13991ae08745Sheppo 14001ae08745Sheppo /* 14011ae08745Sheppo * Disk access routines 14021ae08745Sheppo * 14031ae08745Sheppo */ 14041ae08745Sheppo 14051ae08745Sheppo /* 14061ae08745Sheppo * vdc_strategy() 14071ae08745Sheppo * 14081ae08745Sheppo * Return Value: 14091ae08745Sheppo * 0: As per strategy(9E), the strategy() function must return 0 14101ae08745Sheppo * [ bioerror(9f) sets b_flags to the proper error code ] 14111ae08745Sheppo */ 14121ae08745Sheppo static int 14131ae08745Sheppo vdc_strategy(struct buf *buf) 14141ae08745Sheppo { 14151ae08745Sheppo int rv = -1; 14161ae08745Sheppo vdc_t *vdc = NULL; 14170d0c8d4bSnarayan int instance = VDCUNIT(buf->b_edev); 14181ae08745Sheppo int op = (buf->b_flags & B_READ) ? VD_OP_BREAD : VD_OP_BWRITE; 141987a7269eSachartre int slice; 14201ae08745Sheppo 14211ae08745Sheppo if ((vdc = ddi_get_soft_state(vdc_state, instance)) == NULL) { 1422e1ebb9ecSlm66018 cmn_err(CE_NOTE, "[%d] Couldn't get state structure", instance); 14231ae08745Sheppo bioerror(buf, ENXIO); 14241ae08745Sheppo biodone(buf); 14251ae08745Sheppo return (0); 14261ae08745Sheppo } 14271ae08745Sheppo 14283af08d82Slm66018 DMSG(vdc, 2, "[%d] %s %ld bytes at block %llx : b_addr=0x%p\n", 14293af08d82Slm66018 instance, (buf->b_flags & B_READ) ? "Read" : "Write", 14303af08d82Slm66018 buf->b_bcount, buf->b_lblkno, (void *)buf->b_un.b_addr); 1431d10e4ef2Snarayan 14321ae08745Sheppo bp_mapin(buf); 14331ae08745Sheppo 143487a7269eSachartre if ((long)buf->b_private == VD_SLICE_NONE) { 143587a7269eSachartre /* I/O using an absolute disk offset */ 143687a7269eSachartre slice = VD_SLICE_NONE; 143787a7269eSachartre } else { 143887a7269eSachartre slice = VDCPART(buf->b_edev); 143987a7269eSachartre } 144087a7269eSachartre 14413af08d82Slm66018 rv = vdc_send_request(vdc, op, (caddr_t)buf->b_un.b_addr, 144287a7269eSachartre buf->b_bcount, slice, buf->b_lblkno, 14433af08d82Slm66018 CB_STRATEGY, buf, (op == VD_OP_BREAD) ? VIO_read_dir : 14443af08d82Slm66018 VIO_write_dir); 14453af08d82Slm66018 1446d10e4ef2Snarayan /* 1447d10e4ef2Snarayan * If the request was successfully sent, the strategy call returns and 1448d10e4ef2Snarayan * the ACK handler calls the bioxxx functions when the vDisk server is 1449366a92acSlm66018 * done otherwise we handle the error here. 1450d10e4ef2Snarayan */ 1451d10e4ef2Snarayan if (rv) { 14523af08d82Slm66018 DMSG(vdc, 0, "Failed to read/write (err=%d)\n", rv); 14531ae08745Sheppo bioerror(buf, rv); 14541ae08745Sheppo biodone(buf); 14553c2ebf09Sachartre } else if (ddi_in_panic()) { 14563c2ebf09Sachartre (void) vdc_drain_response(vdc, buf); 1457d10e4ef2Snarayan } 1458d10e4ef2Snarayan 14591ae08745Sheppo return (0); 14601ae08745Sheppo } 14611ae08745Sheppo 14620d0c8d4bSnarayan /* 14630d0c8d4bSnarayan * Function: 14640d0c8d4bSnarayan * vdc_min 14650d0c8d4bSnarayan * 14660d0c8d4bSnarayan * Description: 14670d0c8d4bSnarayan * Routine to limit the size of a data transfer. Used in 14680d0c8d4bSnarayan * conjunction with physio(9F). 14690d0c8d4bSnarayan * 14700d0c8d4bSnarayan * Arguments: 14710d0c8d4bSnarayan * bp - pointer to the indicated buf(9S) struct. 14720d0c8d4bSnarayan * 14730d0c8d4bSnarayan */ 14740d0c8d4bSnarayan static void 14750d0c8d4bSnarayan vdc_min(struct buf *bufp) 14760d0c8d4bSnarayan { 14770d0c8d4bSnarayan vdc_t *vdc = NULL; 14780d0c8d4bSnarayan int instance = VDCUNIT(bufp->b_edev); 14790d0c8d4bSnarayan 14800d0c8d4bSnarayan vdc = ddi_get_soft_state(vdc_state, instance); 14810d0c8d4bSnarayan VERIFY(vdc != NULL); 14820d0c8d4bSnarayan 14830d0c8d4bSnarayan if (bufp->b_bcount > (vdc->max_xfer_sz * vdc->block_size)) { 14840d0c8d4bSnarayan bufp->b_bcount = vdc->max_xfer_sz * vdc->block_size; 14850d0c8d4bSnarayan } 14860d0c8d4bSnarayan } 14871ae08745Sheppo 14881ae08745Sheppo static int 14891ae08745Sheppo vdc_read(dev_t dev, struct uio *uio, cred_t *cred) 14901ae08745Sheppo { 14911ae08745Sheppo _NOTE(ARGUNUSED(cred)) 14921ae08745Sheppo 14930d0c8d4bSnarayan DMSGX(1, "[%d] Entered", VDCUNIT(dev)); 14940d0c8d4bSnarayan return (physio(vdc_strategy, NULL, dev, B_READ, vdc_min, uio)); 14951ae08745Sheppo } 14961ae08745Sheppo 14971ae08745Sheppo static int 14981ae08745Sheppo vdc_write(dev_t dev, struct uio *uio, cred_t *cred) 14991ae08745Sheppo { 15001ae08745Sheppo _NOTE(ARGUNUSED(cred)) 15011ae08745Sheppo 15020d0c8d4bSnarayan DMSGX(1, "[%d] Entered", VDCUNIT(dev)); 15030d0c8d4bSnarayan return (physio(vdc_strategy, NULL, dev, B_WRITE, vdc_min, uio)); 15041ae08745Sheppo } 15051ae08745Sheppo 15061ae08745Sheppo static int 15071ae08745Sheppo vdc_aread(dev_t dev, struct aio_req *aio, cred_t *cred) 15081ae08745Sheppo { 15091ae08745Sheppo _NOTE(ARGUNUSED(cred)) 15101ae08745Sheppo 15110d0c8d4bSnarayan DMSGX(1, "[%d] Entered", VDCUNIT(dev)); 15120d0c8d4bSnarayan return (aphysio(vdc_strategy, anocancel, dev, B_READ, vdc_min, aio)); 15131ae08745Sheppo } 15141ae08745Sheppo 15151ae08745Sheppo static int 15161ae08745Sheppo vdc_awrite(dev_t dev, struct aio_req *aio, cred_t *cred) 15171ae08745Sheppo { 15181ae08745Sheppo _NOTE(ARGUNUSED(cred)) 15191ae08745Sheppo 15200d0c8d4bSnarayan DMSGX(1, "[%d] Entered", VDCUNIT(dev)); 15210d0c8d4bSnarayan return (aphysio(vdc_strategy, anocancel, dev, B_WRITE, vdc_min, aio)); 15221ae08745Sheppo } 15231ae08745Sheppo 15241ae08745Sheppo 15251ae08745Sheppo /* -------------------------------------------------------------------------- */ 15261ae08745Sheppo 15271ae08745Sheppo /* 15281ae08745Sheppo * Handshake support 15291ae08745Sheppo */ 15301ae08745Sheppo 15311ae08745Sheppo 15320a55fbb7Slm66018 /* 15330a55fbb7Slm66018 * Function: 15340a55fbb7Slm66018 * vdc_init_ver_negotiation() 15350a55fbb7Slm66018 * 15360a55fbb7Slm66018 * Description: 15370a55fbb7Slm66018 * 15380a55fbb7Slm66018 * Arguments: 15390a55fbb7Slm66018 * vdc - soft state pointer for this instance of the device driver. 15400a55fbb7Slm66018 * 15410a55fbb7Slm66018 * Return Code: 15420a55fbb7Slm66018 * 0 - Success 15430a55fbb7Slm66018 */ 15441ae08745Sheppo static int 15450a55fbb7Slm66018 vdc_init_ver_negotiation(vdc_t *vdc, vio_ver_t ver) 15461ae08745Sheppo { 15471ae08745Sheppo vio_ver_msg_t pkt; 15481ae08745Sheppo size_t msglen = sizeof (pkt); 15491ae08745Sheppo int status = -1; 15501ae08745Sheppo 15511ae08745Sheppo ASSERT(vdc != NULL); 15521ae08745Sheppo ASSERT(mutex_owned(&vdc->lock)); 15531ae08745Sheppo 15543af08d82Slm66018 DMSG(vdc, 0, "[%d] Entered.\n", vdc->instance); 1555e1ebb9ecSlm66018 15561ae08745Sheppo /* 15571ae08745Sheppo * set the Session ID to a unique value 15581ae08745Sheppo * (the lower 32 bits of the clock tick) 15591ae08745Sheppo */ 15601ae08745Sheppo vdc->session_id = ((uint32_t)gettick() & 0xffffffff); 15613af08d82Slm66018 DMSG(vdc, 0, "[%d] Set SID to 0x%lx\n", vdc->instance, vdc->session_id); 15621ae08745Sheppo 15631ae08745Sheppo pkt.tag.vio_msgtype = VIO_TYPE_CTRL; 15641ae08745Sheppo pkt.tag.vio_subtype = VIO_SUBTYPE_INFO; 15651ae08745Sheppo pkt.tag.vio_subtype_env = VIO_VER_INFO; 15661ae08745Sheppo pkt.tag.vio_sid = vdc->session_id; 15671ae08745Sheppo pkt.dev_class = VDEV_DISK; 15680a55fbb7Slm66018 pkt.ver_major = ver.major; 15690a55fbb7Slm66018 pkt.ver_minor = ver.minor; 15701ae08745Sheppo 15710a55fbb7Slm66018 status = vdc_send(vdc, (caddr_t)&pkt, &msglen); 15723af08d82Slm66018 DMSG(vdc, 0, "[%d] Ver info sent (status = %d)\n", 15733af08d82Slm66018 vdc->instance, status); 15741ae08745Sheppo if ((status != 0) || (msglen != sizeof (vio_ver_msg_t))) { 15753af08d82Slm66018 DMSG(vdc, 0, "[%d] Failed to send Ver negotiation info: " 15768cd10891Snarayan "id(%lx) rv(%d) size(%ld)", vdc->instance, 15778cd10891Snarayan vdc->curr_server->ldc_handle, status, msglen); 15781ae08745Sheppo if (msglen != sizeof (vio_ver_msg_t)) 15791ae08745Sheppo status = ENOMSG; 15801ae08745Sheppo } 15811ae08745Sheppo 15821ae08745Sheppo return (status); 15831ae08745Sheppo } 15841ae08745Sheppo 15850a55fbb7Slm66018 /* 15860a55fbb7Slm66018 * Function: 15873af08d82Slm66018 * vdc_ver_negotiation() 15883af08d82Slm66018 * 15893af08d82Slm66018 * Description: 15903af08d82Slm66018 * 15913af08d82Slm66018 * Arguments: 15923af08d82Slm66018 * vdcp - soft state pointer for this instance of the device driver. 15933af08d82Slm66018 * 15943af08d82Slm66018 * Return Code: 15953af08d82Slm66018 * 0 - Success 15963af08d82Slm66018 */ 15973af08d82Slm66018 static int 15983af08d82Slm66018 vdc_ver_negotiation(vdc_t *vdcp) 15993af08d82Slm66018 { 16003af08d82Slm66018 vio_msg_t vio_msg; 16013af08d82Slm66018 int status; 16023af08d82Slm66018 16033af08d82Slm66018 if (status = vdc_init_ver_negotiation(vdcp, vdc_version[0])) 16043af08d82Slm66018 return (status); 16053af08d82Slm66018 16063af08d82Slm66018 /* release lock and wait for response */ 16073af08d82Slm66018 mutex_exit(&vdcp->lock); 16083af08d82Slm66018 status = vdc_wait_for_response(vdcp, &vio_msg); 16093af08d82Slm66018 mutex_enter(&vdcp->lock); 16103af08d82Slm66018 if (status) { 16113af08d82Slm66018 DMSG(vdcp, 0, 16123af08d82Slm66018 "[%d] Failed waiting for Ver negotiation response, rv(%d)", 16133af08d82Slm66018 vdcp->instance, status); 16143af08d82Slm66018 return (status); 16153af08d82Slm66018 } 16163af08d82Slm66018 16173af08d82Slm66018 /* check type and sub_type ... */ 16183af08d82Slm66018 if (vio_msg.tag.vio_msgtype != VIO_TYPE_CTRL || 16193af08d82Slm66018 vio_msg.tag.vio_subtype == VIO_SUBTYPE_INFO) { 16203af08d82Slm66018 DMSG(vdcp, 0, "[%d] Invalid ver negotiation response\n", 16213af08d82Slm66018 vdcp->instance); 16223af08d82Slm66018 return (EPROTO); 16233af08d82Slm66018 } 16243af08d82Slm66018 16253af08d82Slm66018 return (vdc_handle_ver_msg(vdcp, (vio_ver_msg_t *)&vio_msg)); 16263af08d82Slm66018 } 16273af08d82Slm66018 16283af08d82Slm66018 /* 16293af08d82Slm66018 * Function: 16300a55fbb7Slm66018 * vdc_init_attr_negotiation() 16310a55fbb7Slm66018 * 16320a55fbb7Slm66018 * Description: 16330a55fbb7Slm66018 * 16340a55fbb7Slm66018 * Arguments: 16350a55fbb7Slm66018 * vdc - soft state pointer for this instance of the device driver. 16360a55fbb7Slm66018 * 16370a55fbb7Slm66018 * Return Code: 16380a55fbb7Slm66018 * 0 - Success 16390a55fbb7Slm66018 */ 16401ae08745Sheppo static int 16411ae08745Sheppo vdc_init_attr_negotiation(vdc_t *vdc) 16421ae08745Sheppo { 16431ae08745Sheppo vd_attr_msg_t pkt; 16441ae08745Sheppo size_t msglen = sizeof (pkt); 16451ae08745Sheppo int status; 16461ae08745Sheppo 16471ae08745Sheppo ASSERT(vdc != NULL); 16481ae08745Sheppo ASSERT(mutex_owned(&vdc->lock)); 16491ae08745Sheppo 16503af08d82Slm66018 DMSG(vdc, 0, "[%d] entered\n", vdc->instance); 16511ae08745Sheppo 16521ae08745Sheppo /* fill in tag */ 16531ae08745Sheppo pkt.tag.vio_msgtype = VIO_TYPE_CTRL; 16541ae08745Sheppo pkt.tag.vio_subtype = VIO_SUBTYPE_INFO; 16551ae08745Sheppo pkt.tag.vio_subtype_env = VIO_ATTR_INFO; 16561ae08745Sheppo pkt.tag.vio_sid = vdc->session_id; 16571ae08745Sheppo /* fill in payload */ 16581ae08745Sheppo pkt.max_xfer_sz = vdc->max_xfer_sz; 16591ae08745Sheppo pkt.vdisk_block_size = vdc->block_size; 1660f0ca1d9aSsb155480 pkt.xfer_mode = VIO_DRING_MODE_V1_0; 16611ae08745Sheppo pkt.operations = 0; /* server will set bits of valid operations */ 16621ae08745Sheppo pkt.vdisk_type = 0; /* server will set to valid device type */ 166317cadca8Slm66018 pkt.vdisk_media = 0; /* server will set to valid media type */ 16641ae08745Sheppo pkt.vdisk_size = 0; /* server will set to valid size */ 16651ae08745Sheppo 16660a55fbb7Slm66018 status = vdc_send(vdc, (caddr_t)&pkt, &msglen); 16673af08d82Slm66018 DMSG(vdc, 0, "Attr info sent (status = %d)\n", status); 16681ae08745Sheppo 1669*f3241e46Sanbui if ((status != 0) || (msglen != sizeof (vd_attr_msg_t))) { 16703af08d82Slm66018 DMSG(vdc, 0, "[%d] Failed to send Attr negotiation info: " 16718cd10891Snarayan "id(%lx) rv(%d) size(%ld)", vdc->instance, 16728cd10891Snarayan vdc->curr_server->ldc_handle, status, msglen); 1673*f3241e46Sanbui if (msglen != sizeof (vd_attr_msg_t)) 16741ae08745Sheppo status = ENOMSG; 16751ae08745Sheppo } 16761ae08745Sheppo 16771ae08745Sheppo return (status); 16781ae08745Sheppo } 16791ae08745Sheppo 16800a55fbb7Slm66018 /* 16810a55fbb7Slm66018 * Function: 16823af08d82Slm66018 * vdc_attr_negotiation() 16833af08d82Slm66018 * 16843af08d82Slm66018 * Description: 16853af08d82Slm66018 * 16863af08d82Slm66018 * Arguments: 16873af08d82Slm66018 * vdc - soft state pointer for this instance of the device driver. 16883af08d82Slm66018 * 16893af08d82Slm66018 * Return Code: 16903af08d82Slm66018 * 0 - Success 16913af08d82Slm66018 */ 16923af08d82Slm66018 static int 16933af08d82Slm66018 vdc_attr_negotiation(vdc_t *vdcp) 16943af08d82Slm66018 { 16953af08d82Slm66018 int status; 16963af08d82Slm66018 vio_msg_t vio_msg; 16973af08d82Slm66018 16983af08d82Slm66018 if (status = vdc_init_attr_negotiation(vdcp)) 16993af08d82Slm66018 return (status); 17003af08d82Slm66018 17013af08d82Slm66018 /* release lock and wait for response */ 17023af08d82Slm66018 mutex_exit(&vdcp->lock); 17033af08d82Slm66018 status = vdc_wait_for_response(vdcp, &vio_msg); 17043af08d82Slm66018 mutex_enter(&vdcp->lock); 17053af08d82Slm66018 if (status) { 17063af08d82Slm66018 DMSG(vdcp, 0, 17073af08d82Slm66018 "[%d] Failed waiting for Attr negotiation response, rv(%d)", 17083af08d82Slm66018 vdcp->instance, status); 17093af08d82Slm66018 return (status); 17103af08d82Slm66018 } 17113af08d82Slm66018 17123af08d82Slm66018 /* check type and sub_type ... */ 17133af08d82Slm66018 if (vio_msg.tag.vio_msgtype != VIO_TYPE_CTRL || 17143af08d82Slm66018 vio_msg.tag.vio_subtype == VIO_SUBTYPE_INFO) { 17153af08d82Slm66018 DMSG(vdcp, 0, "[%d] Invalid attr negotiation response\n", 17163af08d82Slm66018 vdcp->instance); 17173af08d82Slm66018 return (EPROTO); 17183af08d82Slm66018 } 17193af08d82Slm66018 17203af08d82Slm66018 return (vdc_handle_attr_msg(vdcp, (vd_attr_msg_t *)&vio_msg)); 17213af08d82Slm66018 } 17223af08d82Slm66018 17233af08d82Slm66018 17243af08d82Slm66018 /* 17253af08d82Slm66018 * Function: 17260a55fbb7Slm66018 * vdc_init_dring_negotiate() 17270a55fbb7Slm66018 * 17280a55fbb7Slm66018 * Description: 17290a55fbb7Slm66018 * 17300a55fbb7Slm66018 * Arguments: 17310a55fbb7Slm66018 * vdc - soft state pointer for this instance of the device driver. 17320a55fbb7Slm66018 * 17330a55fbb7Slm66018 * Return Code: 17340a55fbb7Slm66018 * 0 - Success 17350a55fbb7Slm66018 */ 17361ae08745Sheppo static int 17371ae08745Sheppo vdc_init_dring_negotiate(vdc_t *vdc) 17381ae08745Sheppo { 17391ae08745Sheppo vio_dring_reg_msg_t pkt; 17401ae08745Sheppo size_t msglen = sizeof (pkt); 17411ae08745Sheppo int status = -1; 17423af08d82Slm66018 int retry; 17433af08d82Slm66018 int nretries = 10; 17441ae08745Sheppo 17451ae08745Sheppo ASSERT(vdc != NULL); 17461ae08745Sheppo ASSERT(mutex_owned(&vdc->lock)); 17471ae08745Sheppo 17483af08d82Slm66018 for (retry = 0; retry < nretries; retry++) { 17491ae08745Sheppo status = vdc_init_descriptor_ring(vdc); 17503af08d82Slm66018 if (status != EAGAIN) 17513af08d82Slm66018 break; 17523af08d82Slm66018 drv_usecwait(vdc_min_timeout_ldc); 17533af08d82Slm66018 } 17543af08d82Slm66018 17551ae08745Sheppo if (status != 0) { 17563af08d82Slm66018 DMSG(vdc, 0, "[%d] Failed to init DRing (status = %d)\n", 17571ae08745Sheppo vdc->instance, status); 17581ae08745Sheppo return (status); 17591ae08745Sheppo } 17603af08d82Slm66018 17613af08d82Slm66018 DMSG(vdc, 0, "[%d] Init of descriptor ring completed (status = %d)\n", 1762e1ebb9ecSlm66018 vdc->instance, status); 17631ae08745Sheppo 17641ae08745Sheppo /* fill in tag */ 17651ae08745Sheppo pkt.tag.vio_msgtype = VIO_TYPE_CTRL; 17661ae08745Sheppo pkt.tag.vio_subtype = VIO_SUBTYPE_INFO; 17671ae08745Sheppo pkt.tag.vio_subtype_env = VIO_DRING_REG; 17681ae08745Sheppo pkt.tag.vio_sid = vdc->session_id; 17691ae08745Sheppo /* fill in payload */ 17701ae08745Sheppo pkt.dring_ident = 0; 1771e1ebb9ecSlm66018 pkt.num_descriptors = vdc->dring_len; 1772e1ebb9ecSlm66018 pkt.descriptor_size = vdc->dring_entry_size; 17731ae08745Sheppo pkt.options = (VIO_TX_DRING | VIO_RX_DRING); 17741ae08745Sheppo pkt.ncookies = vdc->dring_cookie_count; 17751ae08745Sheppo pkt.cookie[0] = vdc->dring_cookie[0]; /* for now just one cookie */ 17761ae08745Sheppo 17770a55fbb7Slm66018 status = vdc_send(vdc, (caddr_t)&pkt, &msglen); 17781ae08745Sheppo if (status != 0) { 17793af08d82Slm66018 DMSG(vdc, 0, "[%d] Failed to register DRing (err = %d)", 1780e1ebb9ecSlm66018 vdc->instance, status); 17811ae08745Sheppo } 17821ae08745Sheppo 17831ae08745Sheppo return (status); 17841ae08745Sheppo } 17851ae08745Sheppo 17861ae08745Sheppo 17873af08d82Slm66018 /* 17883af08d82Slm66018 * Function: 17893af08d82Slm66018 * vdc_dring_negotiation() 17903af08d82Slm66018 * 17913af08d82Slm66018 * Description: 17923af08d82Slm66018 * 17933af08d82Slm66018 * Arguments: 17943af08d82Slm66018 * vdc - soft state pointer for this instance of the device driver. 17953af08d82Slm66018 * 17963af08d82Slm66018 * Return Code: 17973af08d82Slm66018 * 0 - Success 17983af08d82Slm66018 */ 17993af08d82Slm66018 static int 18003af08d82Slm66018 vdc_dring_negotiation(vdc_t *vdcp) 18013af08d82Slm66018 { 18023af08d82Slm66018 int status; 18033af08d82Slm66018 vio_msg_t vio_msg; 18043af08d82Slm66018 18053af08d82Slm66018 if (status = vdc_init_dring_negotiate(vdcp)) 18063af08d82Slm66018 return (status); 18073af08d82Slm66018 18083af08d82Slm66018 /* release lock and wait for response */ 18093af08d82Slm66018 mutex_exit(&vdcp->lock); 18103af08d82Slm66018 status = vdc_wait_for_response(vdcp, &vio_msg); 18113af08d82Slm66018 mutex_enter(&vdcp->lock); 18123af08d82Slm66018 if (status) { 18133af08d82Slm66018 DMSG(vdcp, 0, 18143af08d82Slm66018 "[%d] Failed waiting for Dring negotiation response," 18153af08d82Slm66018 " rv(%d)", vdcp->instance, status); 18163af08d82Slm66018 return (status); 18173af08d82Slm66018 } 18183af08d82Slm66018 18193af08d82Slm66018 /* check type and sub_type ... */ 18203af08d82Slm66018 if (vio_msg.tag.vio_msgtype != VIO_TYPE_CTRL || 18213af08d82Slm66018 vio_msg.tag.vio_subtype == VIO_SUBTYPE_INFO) { 18223af08d82Slm66018 DMSG(vdcp, 0, "[%d] Invalid Dring negotiation response\n", 18233af08d82Slm66018 vdcp->instance); 18243af08d82Slm66018 return (EPROTO); 18253af08d82Slm66018 } 18263af08d82Slm66018 18273af08d82Slm66018 return (vdc_handle_dring_reg_msg(vdcp, 18283af08d82Slm66018 (vio_dring_reg_msg_t *)&vio_msg)); 18293af08d82Slm66018 } 18303af08d82Slm66018 18313af08d82Slm66018 18323af08d82Slm66018 /* 18333af08d82Slm66018 * Function: 18343af08d82Slm66018 * vdc_send_rdx() 18353af08d82Slm66018 * 18363af08d82Slm66018 * Description: 18373af08d82Slm66018 * 18383af08d82Slm66018 * Arguments: 18393af08d82Slm66018 * vdc - soft state pointer for this instance of the device driver. 18403af08d82Slm66018 * 18413af08d82Slm66018 * Return Code: 18423af08d82Slm66018 * 0 - Success 18433af08d82Slm66018 */ 18443af08d82Slm66018 static int 18453af08d82Slm66018 vdc_send_rdx(vdc_t *vdcp) 18463af08d82Slm66018 { 18473af08d82Slm66018 vio_msg_t msg; 18483af08d82Slm66018 size_t msglen = sizeof (vio_msg_t); 18493af08d82Slm66018 int status; 18503af08d82Slm66018 18513af08d82Slm66018 /* 18523af08d82Slm66018 * Send an RDX message to vds to indicate we are ready 18533af08d82Slm66018 * to send data 18543af08d82Slm66018 */ 18553af08d82Slm66018 msg.tag.vio_msgtype = VIO_TYPE_CTRL; 18563af08d82Slm66018 msg.tag.vio_subtype = VIO_SUBTYPE_INFO; 18573af08d82Slm66018 msg.tag.vio_subtype_env = VIO_RDX; 18583af08d82Slm66018 msg.tag.vio_sid = vdcp->session_id; 18593af08d82Slm66018 status = vdc_send(vdcp, (caddr_t)&msg, &msglen); 18603af08d82Slm66018 if (status != 0) { 18613af08d82Slm66018 DMSG(vdcp, 0, "[%d] Failed to send RDX message (%d)", 18623af08d82Slm66018 vdcp->instance, status); 18633af08d82Slm66018 } 18643af08d82Slm66018 18653af08d82Slm66018 return (status); 18663af08d82Slm66018 } 18673af08d82Slm66018 18683af08d82Slm66018 /* 18693af08d82Slm66018 * Function: 18703af08d82Slm66018 * vdc_handle_rdx() 18713af08d82Slm66018 * 18723af08d82Slm66018 * Description: 18733af08d82Slm66018 * 18743af08d82Slm66018 * Arguments: 18753af08d82Slm66018 * vdc - soft state pointer for this instance of the device driver. 18763af08d82Slm66018 * msgp - received msg 18773af08d82Slm66018 * 18783af08d82Slm66018 * Return Code: 18793af08d82Slm66018 * 0 - Success 18803af08d82Slm66018 */ 18813af08d82Slm66018 static int 18823af08d82Slm66018 vdc_handle_rdx(vdc_t *vdcp, vio_rdx_msg_t *msgp) 18833af08d82Slm66018 { 18843af08d82Slm66018 _NOTE(ARGUNUSED(vdcp)) 18853af08d82Slm66018 _NOTE(ARGUNUSED(msgp)) 18863af08d82Slm66018 18873af08d82Slm66018 ASSERT(msgp->tag.vio_msgtype == VIO_TYPE_CTRL); 18883af08d82Slm66018 ASSERT(msgp->tag.vio_subtype == VIO_SUBTYPE_ACK); 18893af08d82Slm66018 ASSERT(msgp->tag.vio_subtype_env == VIO_RDX); 18903af08d82Slm66018 18913af08d82Slm66018 DMSG(vdcp, 1, "[%d] Got an RDX msg", vdcp->instance); 18923af08d82Slm66018 18933af08d82Slm66018 return (0); 18943af08d82Slm66018 } 18953af08d82Slm66018 18963af08d82Slm66018 /* 18973af08d82Slm66018 * Function: 18983af08d82Slm66018 * vdc_rdx_exchange() 18993af08d82Slm66018 * 19003af08d82Slm66018 * Description: 19013af08d82Slm66018 * 19023af08d82Slm66018 * Arguments: 19033af08d82Slm66018 * vdc - soft state pointer for this instance of the device driver. 19043af08d82Slm66018 * 19053af08d82Slm66018 * Return Code: 19063af08d82Slm66018 * 0 - Success 19073af08d82Slm66018 */ 19083af08d82Slm66018 static int 19093af08d82Slm66018 vdc_rdx_exchange(vdc_t *vdcp) 19103af08d82Slm66018 { 19113af08d82Slm66018 int status; 19123af08d82Slm66018 vio_msg_t vio_msg; 19133af08d82Slm66018 19143af08d82Slm66018 if (status = vdc_send_rdx(vdcp)) 19153af08d82Slm66018 return (status); 19163af08d82Slm66018 19173af08d82Slm66018 /* release lock and wait for response */ 19183af08d82Slm66018 mutex_exit(&vdcp->lock); 19193af08d82Slm66018 status = vdc_wait_for_response(vdcp, &vio_msg); 19203af08d82Slm66018 mutex_enter(&vdcp->lock); 19213af08d82Slm66018 if (status) { 192287a7269eSachartre DMSG(vdcp, 0, "[%d] Failed waiting for RDX response, rv(%d)", 192387a7269eSachartre vdcp->instance, status); 19243af08d82Slm66018 return (status); 19253af08d82Slm66018 } 19263af08d82Slm66018 19273af08d82Slm66018 /* check type and sub_type ... */ 19283af08d82Slm66018 if (vio_msg.tag.vio_msgtype != VIO_TYPE_CTRL || 19293af08d82Slm66018 vio_msg.tag.vio_subtype != VIO_SUBTYPE_ACK) { 193087a7269eSachartre DMSG(vdcp, 0, "[%d] Invalid RDX response\n", vdcp->instance); 19313af08d82Slm66018 return (EPROTO); 19323af08d82Slm66018 } 19333af08d82Slm66018 19343af08d82Slm66018 return (vdc_handle_rdx(vdcp, (vio_rdx_msg_t *)&vio_msg)); 19353af08d82Slm66018 } 19363af08d82Slm66018 19373af08d82Slm66018 19381ae08745Sheppo /* -------------------------------------------------------------------------- */ 19391ae08745Sheppo 19401ae08745Sheppo /* 19411ae08745Sheppo * LDC helper routines 19421ae08745Sheppo */ 19431ae08745Sheppo 19443af08d82Slm66018 static int 19453af08d82Slm66018 vdc_recv(vdc_t *vdc, vio_msg_t *msgp, size_t *nbytesp) 19463af08d82Slm66018 { 19473af08d82Slm66018 int status; 19483af08d82Slm66018 boolean_t q_has_pkts = B_FALSE; 194917cadca8Slm66018 uint64_t delay_time; 19503af08d82Slm66018 size_t len; 19513af08d82Slm66018 19523af08d82Slm66018 mutex_enter(&vdc->read_lock); 19533af08d82Slm66018 19543af08d82Slm66018 if (vdc->read_state == VDC_READ_IDLE) 19553af08d82Slm66018 vdc->read_state = VDC_READ_WAITING; 19563af08d82Slm66018 19573af08d82Slm66018 while (vdc->read_state != VDC_READ_PENDING) { 19583af08d82Slm66018 19593af08d82Slm66018 /* detect if the connection has been reset */ 19603af08d82Slm66018 if (vdc->read_state == VDC_READ_RESET) { 19613af08d82Slm66018 status = ECONNRESET; 19623af08d82Slm66018 goto done; 19633af08d82Slm66018 } 19643af08d82Slm66018 19653af08d82Slm66018 cv_wait(&vdc->read_cv, &vdc->read_lock); 19663af08d82Slm66018 } 19673af08d82Slm66018 19683af08d82Slm66018 /* 19693af08d82Slm66018 * Until we get a blocking ldc read we have to retry 19703af08d82Slm66018 * until the entire LDC message has arrived before 19713af08d82Slm66018 * ldc_read() will succeed. Note we also bail out if 1972eff7243fSlm66018 * the channel is reset or goes away. 19733af08d82Slm66018 */ 19743af08d82Slm66018 delay_time = vdc_ldc_read_init_delay; 19753af08d82Slm66018 loop: 19763af08d82Slm66018 len = *nbytesp; 19778cd10891Snarayan status = ldc_read(vdc->curr_server->ldc_handle, (caddr_t)msgp, &len); 19783af08d82Slm66018 switch (status) { 19793af08d82Slm66018 case EAGAIN: 19803af08d82Slm66018 delay_time *= 2; 19813af08d82Slm66018 if (delay_time >= vdc_ldc_read_max_delay) 19823af08d82Slm66018 delay_time = vdc_ldc_read_max_delay; 19833af08d82Slm66018 delay(delay_time); 19843af08d82Slm66018 goto loop; 19853af08d82Slm66018 19863af08d82Slm66018 case 0: 19873af08d82Slm66018 if (len == 0) { 198817cadca8Slm66018 DMSG(vdc, 1, "[%d] ldc_read returned 0 bytes with " 19893af08d82Slm66018 "no error!\n", vdc->instance); 19903af08d82Slm66018 goto loop; 19913af08d82Slm66018 } 19923af08d82Slm66018 19933af08d82Slm66018 *nbytesp = len; 19943af08d82Slm66018 19953af08d82Slm66018 /* 19963af08d82Slm66018 * If there are pending messages, leave the 19973af08d82Slm66018 * read state as pending. Otherwise, set the state 19983af08d82Slm66018 * back to idle. 19993af08d82Slm66018 */ 20008cd10891Snarayan status = ldc_chkq(vdc->curr_server->ldc_handle, &q_has_pkts); 20013af08d82Slm66018 if (status == 0 && !q_has_pkts) 20023af08d82Slm66018 vdc->read_state = VDC_READ_IDLE; 20033af08d82Slm66018 20043af08d82Slm66018 break; 20053af08d82Slm66018 default: 20063af08d82Slm66018 DMSG(vdc, 0, "ldc_read returned %d\n", status); 20073af08d82Slm66018 break; 20083af08d82Slm66018 } 20093af08d82Slm66018 20103af08d82Slm66018 done: 20113af08d82Slm66018 mutex_exit(&vdc->read_lock); 20123af08d82Slm66018 20133af08d82Slm66018 return (status); 20143af08d82Slm66018 } 20153af08d82Slm66018 20163af08d82Slm66018 20173af08d82Slm66018 20183af08d82Slm66018 #ifdef DEBUG 20193af08d82Slm66018 void 20203af08d82Slm66018 vdc_decode_tag(vdc_t *vdcp, vio_msg_t *msg) 20213af08d82Slm66018 { 20223af08d82Slm66018 char *ms, *ss, *ses; 20233af08d82Slm66018 switch (msg->tag.vio_msgtype) { 20243af08d82Slm66018 #define Q(_s) case _s : ms = #_s; break; 20253af08d82Slm66018 Q(VIO_TYPE_CTRL) 20263af08d82Slm66018 Q(VIO_TYPE_DATA) 20273af08d82Slm66018 Q(VIO_TYPE_ERR) 20283af08d82Slm66018 #undef Q 20293af08d82Slm66018 default: ms = "unknown"; break; 20303af08d82Slm66018 } 20313af08d82Slm66018 20323af08d82Slm66018 switch (msg->tag.vio_subtype) { 20333af08d82Slm66018 #define Q(_s) case _s : ss = #_s; break; 20343af08d82Slm66018 Q(VIO_SUBTYPE_INFO) 20353af08d82Slm66018 Q(VIO_SUBTYPE_ACK) 20363af08d82Slm66018 Q(VIO_SUBTYPE_NACK) 20373af08d82Slm66018 #undef Q 20383af08d82Slm66018 default: ss = "unknown"; break; 20393af08d82Slm66018 } 20403af08d82Slm66018 20413af08d82Slm66018 switch (msg->tag.vio_subtype_env) { 20423af08d82Slm66018 #define Q(_s) case _s : ses = #_s; break; 20433af08d82Slm66018 Q(VIO_VER_INFO) 20443af08d82Slm66018 Q(VIO_ATTR_INFO) 20453af08d82Slm66018 Q(VIO_DRING_REG) 20463af08d82Slm66018 Q(VIO_DRING_UNREG) 20473af08d82Slm66018 Q(VIO_RDX) 20483af08d82Slm66018 Q(VIO_PKT_DATA) 20493af08d82Slm66018 Q(VIO_DESC_DATA) 20503af08d82Slm66018 Q(VIO_DRING_DATA) 20513af08d82Slm66018 #undef Q 20523af08d82Slm66018 default: ses = "unknown"; break; 20533af08d82Slm66018 } 20543af08d82Slm66018 20553af08d82Slm66018 DMSG(vdcp, 3, "(%x/%x/%x) message : (%s/%s/%s)\n", 20563af08d82Slm66018 msg->tag.vio_msgtype, msg->tag.vio_subtype, 20573af08d82Slm66018 msg->tag.vio_subtype_env, ms, ss, ses); 20583af08d82Slm66018 } 20593af08d82Slm66018 #endif 20603af08d82Slm66018 20611ae08745Sheppo /* 20621ae08745Sheppo * Function: 20631ae08745Sheppo * vdc_send() 20641ae08745Sheppo * 20651ae08745Sheppo * Description: 20661ae08745Sheppo * The function encapsulates the call to write a message using LDC. 20671ae08745Sheppo * If LDC indicates that the call failed due to the queue being full, 206817cadca8Slm66018 * we retry the ldc_write(), otherwise we return the error returned by LDC. 20691ae08745Sheppo * 20701ae08745Sheppo * Arguments: 20711ae08745Sheppo * ldc_handle - LDC handle for the channel this instance of vdc uses 20721ae08745Sheppo * pkt - address of LDC message to be sent 20731ae08745Sheppo * msglen - the size of the message being sent. When the function 20741ae08745Sheppo * returns, this contains the number of bytes written. 20751ae08745Sheppo * 20761ae08745Sheppo * Return Code: 20771ae08745Sheppo * 0 - Success. 20781ae08745Sheppo * EINVAL - pkt or msglen were NULL 20791ae08745Sheppo * ECONNRESET - The connection was not up. 20801ae08745Sheppo * EWOULDBLOCK - LDC queue is full 20811ae08745Sheppo * xxx - other error codes returned by ldc_write 20821ae08745Sheppo */ 20831ae08745Sheppo static int 20840a55fbb7Slm66018 vdc_send(vdc_t *vdc, caddr_t pkt, size_t *msglen) 20851ae08745Sheppo { 20861ae08745Sheppo size_t size = 0; 20871ae08745Sheppo int status = 0; 20883af08d82Slm66018 clock_t delay_ticks; 20891ae08745Sheppo 20900a55fbb7Slm66018 ASSERT(vdc != NULL); 20910a55fbb7Slm66018 ASSERT(mutex_owned(&vdc->lock)); 20921ae08745Sheppo ASSERT(msglen != NULL); 20931ae08745Sheppo ASSERT(*msglen != 0); 20941ae08745Sheppo 20953af08d82Slm66018 #ifdef DEBUG 209617cadca8Slm66018 vdc_decode_tag(vdc, (vio_msg_t *)(uintptr_t)pkt); 20973af08d82Slm66018 #endif 20983af08d82Slm66018 /* 20993af08d82Slm66018 * Wait indefinitely to send if channel 21003af08d82Slm66018 * is busy, but bail out if we succeed or 21013af08d82Slm66018 * if the channel closes or is reset. 21023af08d82Slm66018 */ 21033af08d82Slm66018 delay_ticks = vdc_hz_min_ldc_delay; 21041ae08745Sheppo do { 21051ae08745Sheppo size = *msglen; 21068cd10891Snarayan status = ldc_write(vdc->curr_server->ldc_handle, pkt, &size); 21073af08d82Slm66018 if (status == EWOULDBLOCK) { 21083af08d82Slm66018 delay(delay_ticks); 21093af08d82Slm66018 /* geometric backoff */ 21103af08d82Slm66018 delay_ticks *= 2; 21113af08d82Slm66018 if (delay_ticks > vdc_hz_max_ldc_delay) 21123af08d82Slm66018 delay_ticks = vdc_hz_max_ldc_delay; 21133af08d82Slm66018 } 21143af08d82Slm66018 } while (status == EWOULDBLOCK); 21151ae08745Sheppo 21160a55fbb7Slm66018 /* if LDC had serious issues --- reset vdc state */ 21170a55fbb7Slm66018 if (status == EIO || status == ECONNRESET) { 21183af08d82Slm66018 /* LDC had serious issues --- reset vdc state */ 21193af08d82Slm66018 mutex_enter(&vdc->read_lock); 21203af08d82Slm66018 if ((vdc->read_state == VDC_READ_WAITING) || 21213af08d82Slm66018 (vdc->read_state == VDC_READ_RESET)) 21223af08d82Slm66018 cv_signal(&vdc->read_cv); 21233af08d82Slm66018 vdc->read_state = VDC_READ_RESET; 21243af08d82Slm66018 mutex_exit(&vdc->read_lock); 21253af08d82Slm66018 21263af08d82Slm66018 /* wake up any waiters in the reset thread */ 21273af08d82Slm66018 if (vdc->state == VDC_STATE_INIT_WAITING) { 21283af08d82Slm66018 DMSG(vdc, 0, "[%d] write reset - " 21293af08d82Slm66018 "vdc is resetting ..\n", vdc->instance); 21303af08d82Slm66018 vdc->state = VDC_STATE_RESETTING; 21313af08d82Slm66018 cv_signal(&vdc->initwait_cv); 21323af08d82Slm66018 } 21333af08d82Slm66018 21343af08d82Slm66018 return (ECONNRESET); 21350a55fbb7Slm66018 } 21360a55fbb7Slm66018 21371ae08745Sheppo /* return the last size written */ 21381ae08745Sheppo *msglen = size; 21391ae08745Sheppo 21401ae08745Sheppo return (status); 21411ae08745Sheppo } 21421ae08745Sheppo 21431ae08745Sheppo /* 21441ae08745Sheppo * Function: 2145655fd6a9Sachartre * vdc_get_md_node 21461ae08745Sheppo * 21471ae08745Sheppo * Description: 21488cd10891Snarayan * Get the MD, the device node for the given disk instance. The 21498cd10891Snarayan * caller is responsible for cleaning up the reference to the 21508cd10891Snarayan * returned MD (mdpp) by calling md_fini_handle(). 21511ae08745Sheppo * 21521ae08745Sheppo * Arguments: 21531ae08745Sheppo * dip - dev info pointer for this instance of the device driver. 2154655fd6a9Sachartre * mdpp - the returned MD. 2155655fd6a9Sachartre * vd_nodep - the returned device node. 21561ae08745Sheppo * 21571ae08745Sheppo * Return Code: 21581ae08745Sheppo * 0 - Success. 21591ae08745Sheppo * ENOENT - Expected node or property did not exist. 21601ae08745Sheppo * ENXIO - Unexpected error communicating with MD framework 21611ae08745Sheppo */ 21621ae08745Sheppo static int 21638cd10891Snarayan vdc_get_md_node(dev_info_t *dip, md_t **mdpp, mde_cookie_t *vd_nodep) 21641ae08745Sheppo { 21651ae08745Sheppo int status = ENOENT; 21661ae08745Sheppo char *node_name = NULL; 21671ae08745Sheppo md_t *mdp = NULL; 21681ae08745Sheppo int num_nodes; 21691ae08745Sheppo int num_vdevs; 21701ae08745Sheppo mde_cookie_t rootnode; 21711ae08745Sheppo mde_cookie_t *listp = NULL; 21721ae08745Sheppo boolean_t found_inst = B_FALSE; 21731ae08745Sheppo int listsz; 21741ae08745Sheppo int idx; 21751ae08745Sheppo uint64_t md_inst; 21761ae08745Sheppo int obp_inst; 21771ae08745Sheppo int instance = ddi_get_instance(dip); 21781ae08745Sheppo 21791ae08745Sheppo /* 21801ae08745Sheppo * Get the OBP instance number for comparison with the MD instance 21811ae08745Sheppo * 21821ae08745Sheppo * The "cfg-handle" property of a vdc node in an MD contains the MD's 21831ae08745Sheppo * notion of "instance", or unique identifier, for that node; OBP 21841ae08745Sheppo * stores the value of the "cfg-handle" MD property as the value of 21851ae08745Sheppo * the "reg" property on the node in the device tree it builds from 21861ae08745Sheppo * the MD and passes to Solaris. Thus, we look up the devinfo node's 21871ae08745Sheppo * "reg" property value to uniquely identify this device instance. 21881ae08745Sheppo * If the "reg" property cannot be found, the device tree state is 21891ae08745Sheppo * presumably so broken that there is no point in continuing. 21901ae08745Sheppo */ 21911ae08745Sheppo if (!ddi_prop_exists(DDI_DEV_T_ANY, dip, DDI_PROP_DONTPASS, OBP_REG)) { 21921ae08745Sheppo cmn_err(CE_WARN, "'%s' property does not exist", OBP_REG); 21931ae08745Sheppo return (ENOENT); 21941ae08745Sheppo } 21951ae08745Sheppo obp_inst = ddi_prop_get_int(DDI_DEV_T_ANY, dip, DDI_PROP_DONTPASS, 21961ae08745Sheppo OBP_REG, -1); 21973af08d82Slm66018 DMSGX(1, "[%d] OBP inst=%d\n", instance, obp_inst); 21981ae08745Sheppo 21991ae08745Sheppo /* 2200655fd6a9Sachartre * We now walk the MD nodes to find the node for this vdisk. 22011ae08745Sheppo */ 22021ae08745Sheppo if ((mdp = md_get_handle()) == NULL) { 22031ae08745Sheppo cmn_err(CE_WARN, "unable to init machine description"); 22041ae08745Sheppo return (ENXIO); 22051ae08745Sheppo } 22061ae08745Sheppo 22071ae08745Sheppo num_nodes = md_node_count(mdp); 22081ae08745Sheppo ASSERT(num_nodes > 0); 22091ae08745Sheppo 22101ae08745Sheppo listsz = num_nodes * sizeof (mde_cookie_t); 22111ae08745Sheppo 22121ae08745Sheppo /* allocate memory for nodes */ 22131ae08745Sheppo listp = kmem_zalloc(listsz, KM_SLEEP); 22141ae08745Sheppo 22151ae08745Sheppo rootnode = md_root_node(mdp); 22161ae08745Sheppo ASSERT(rootnode != MDE_INVAL_ELEM_COOKIE); 22171ae08745Sheppo 22181ae08745Sheppo /* 22191ae08745Sheppo * Search for all the virtual devices, we will then check to see which 22201ae08745Sheppo * ones are disk nodes. 22211ae08745Sheppo */ 22221ae08745Sheppo num_vdevs = md_scan_dag(mdp, rootnode, 22231ae08745Sheppo md_find_name(mdp, VDC_MD_VDEV_NAME), 22241ae08745Sheppo md_find_name(mdp, "fwd"), listp); 22251ae08745Sheppo 22261ae08745Sheppo if (num_vdevs <= 0) { 22271ae08745Sheppo cmn_err(CE_NOTE, "No '%s' node found", VDC_MD_VDEV_NAME); 22281ae08745Sheppo status = ENOENT; 22291ae08745Sheppo goto done; 22301ae08745Sheppo } 22311ae08745Sheppo 22323af08d82Slm66018 DMSGX(1, "[%d] num_vdevs=%d\n", instance, num_vdevs); 22331ae08745Sheppo for (idx = 0; idx < num_vdevs; idx++) { 22341ae08745Sheppo status = md_get_prop_str(mdp, listp[idx], "name", &node_name); 22351ae08745Sheppo if ((status != 0) || (node_name == NULL)) { 22361ae08745Sheppo cmn_err(CE_NOTE, "Unable to get name of node type '%s'" 22371ae08745Sheppo ": err %d", VDC_MD_VDEV_NAME, status); 22381ae08745Sheppo continue; 22391ae08745Sheppo } 22401ae08745Sheppo 22413af08d82Slm66018 DMSGX(1, "[%d] Found node '%s'\n", instance, node_name); 22421ae08745Sheppo if (strcmp(VDC_MD_DISK_NAME, node_name) == 0) { 22431ae08745Sheppo status = md_get_prop_val(mdp, listp[idx], 22441ae08745Sheppo VDC_MD_CFG_HDL, &md_inst); 22453af08d82Slm66018 DMSGX(1, "[%d] vdc inst in MD=%lx\n", 22463af08d82Slm66018 instance, md_inst); 22471ae08745Sheppo if ((status == 0) && (md_inst == obp_inst)) { 22481ae08745Sheppo found_inst = B_TRUE; 22491ae08745Sheppo break; 22501ae08745Sheppo } 22511ae08745Sheppo } 22521ae08745Sheppo } 22531ae08745Sheppo 22540a55fbb7Slm66018 if (!found_inst) { 22553af08d82Slm66018 DMSGX(0, "Unable to find correct '%s' node", VDC_MD_DISK_NAME); 22561ae08745Sheppo status = ENOENT; 22571ae08745Sheppo goto done; 22581ae08745Sheppo } 22593af08d82Slm66018 DMSGX(0, "[%d] MD inst=%lx\n", instance, md_inst); 22601ae08745Sheppo 2261655fd6a9Sachartre *vd_nodep = listp[idx]; 2262655fd6a9Sachartre *mdpp = mdp; 2263655fd6a9Sachartre done: 2264655fd6a9Sachartre kmem_free(listp, listsz); 2265655fd6a9Sachartre return (status); 2266655fd6a9Sachartre } 2267655fd6a9Sachartre 2268655fd6a9Sachartre /* 2269655fd6a9Sachartre * Function: 22708cd10891Snarayan * vdc_init_ports 2271655fd6a9Sachartre * 2272655fd6a9Sachartre * Description: 22738cd10891Snarayan * Initialize all the ports for this vdisk instance. 2274655fd6a9Sachartre * 2275655fd6a9Sachartre * Arguments: 22768cd10891Snarayan * vdc - soft state pointer for this instance of the device driver. 22778cd10891Snarayan * mdp - md pointer 22788cd10891Snarayan * vd_nodep - device md node. 2279655fd6a9Sachartre * 2280655fd6a9Sachartre * Return Code: 2281655fd6a9Sachartre * 0 - Success. 2282655fd6a9Sachartre * ENOENT - Expected node or property did not exist. 2283655fd6a9Sachartre */ 2284655fd6a9Sachartre static int 22858cd10891Snarayan vdc_init_ports(vdc_t *vdc, md_t *mdp, mde_cookie_t vd_nodep) 2286655fd6a9Sachartre { 2287655fd6a9Sachartre int status = 0; 22888cd10891Snarayan int idx; 22898cd10891Snarayan int num_nodes; 22908cd10891Snarayan int num_vports; 22918cd10891Snarayan int num_chans; 22928cd10891Snarayan int listsz; 22938cd10891Snarayan mde_cookie_t vd_port; 22948cd10891Snarayan mde_cookie_t *chanp = NULL; 22958cd10891Snarayan mde_cookie_t *portp = NULL; 22968cd10891Snarayan vdc_server_t *srvr; 22978cd10891Snarayan vdc_server_t *prev_srvr = NULL; 2298655fd6a9Sachartre 22998cd10891Snarayan /* 23008cd10891Snarayan * We now walk the MD nodes to find the port nodes for this vdisk. 23018cd10891Snarayan */ 2302655fd6a9Sachartre num_nodes = md_node_count(mdp); 2303655fd6a9Sachartre ASSERT(num_nodes > 0); 2304655fd6a9Sachartre 2305655fd6a9Sachartre listsz = num_nodes * sizeof (mde_cookie_t); 2306655fd6a9Sachartre 2307655fd6a9Sachartre /* allocate memory for nodes */ 23088cd10891Snarayan portp = kmem_zalloc(listsz, KM_SLEEP); 2309655fd6a9Sachartre chanp = kmem_zalloc(listsz, KM_SLEEP); 2310655fd6a9Sachartre 23118cd10891Snarayan num_vports = md_scan_dag(mdp, vd_nodep, 23128cd10891Snarayan md_find_name(mdp, VDC_MD_PORT_NAME), 23138cd10891Snarayan md_find_name(mdp, "fwd"), portp); 23148cd10891Snarayan if (num_vports == 0) { 23158cd10891Snarayan DMSGX(0, "Found no '%s' node for '%s' port\n", 23168cd10891Snarayan VDC_MD_PORT_NAME, VDC_MD_VDEV_NAME); 23178cd10891Snarayan status = ENOENT; 23188cd10891Snarayan goto done; 23198cd10891Snarayan } 23208cd10891Snarayan 23218cd10891Snarayan DMSGX(1, "Found %d '%s' node(s) for '%s' port\n", 23228cd10891Snarayan num_vports, VDC_MD_PORT_NAME, VDC_MD_VDEV_NAME); 23238cd10891Snarayan 23248cd10891Snarayan vdc->num_servers = 0; 23258cd10891Snarayan for (idx = 0; idx < num_vports; idx++) { 23268cd10891Snarayan 23278cd10891Snarayan /* initialize this port */ 23288cd10891Snarayan vd_port = portp[idx]; 23298cd10891Snarayan srvr = kmem_zalloc(sizeof (vdc_server_t), KM_SLEEP); 23308cd10891Snarayan srvr->vdcp = vdc; 23318cd10891Snarayan 23328cd10891Snarayan /* get port id */ 23338cd10891Snarayan if (md_get_prop_val(mdp, vd_port, VDC_MD_ID, &srvr->id) != 0) { 23348cd10891Snarayan cmn_err(CE_NOTE, "vDisk port '%s' property not found", 23358cd10891Snarayan VDC_MD_ID); 23368cd10891Snarayan kmem_free(srvr, sizeof (vdc_server_t)); 23378cd10891Snarayan continue; 23388cd10891Snarayan } 23398cd10891Snarayan 23408cd10891Snarayan /* set the connection timeout */ 23418cd10891Snarayan if (md_get_prop_val(mdp, vd_port, VDC_MD_TIMEOUT, 23428cd10891Snarayan &srvr->ctimeout) != 0) { 23438cd10891Snarayan srvr->ctimeout = 0; 23448cd10891Snarayan } 23458cd10891Snarayan 23468cd10891Snarayan /* get the ldc id */ 23478cd10891Snarayan num_chans = md_scan_dag(mdp, vd_port, 23481ae08745Sheppo md_find_name(mdp, VDC_MD_CHAN_NAME), 23491ae08745Sheppo md_find_name(mdp, "fwd"), chanp); 23501ae08745Sheppo 23511ae08745Sheppo /* expecting at least one channel */ 23521ae08745Sheppo if (num_chans <= 0) { 23531ae08745Sheppo cmn_err(CE_NOTE, "No '%s' node for '%s' port", 23541ae08745Sheppo VDC_MD_CHAN_NAME, VDC_MD_VDEV_NAME); 23558cd10891Snarayan kmem_free(srvr, sizeof (vdc_server_t)); 23568cd10891Snarayan continue; 23571ae08745Sheppo } else if (num_chans != 1) { 23588cd10891Snarayan DMSGX(0, "Expected 1 '%s' node for '%s' port, " 23598cd10891Snarayan "found %d\n", VDC_MD_CHAN_NAME, VDC_MD_VDEV_NAME, 23608cd10891Snarayan num_chans); 23611ae08745Sheppo } 23621ae08745Sheppo 23631ae08745Sheppo /* 23641ae08745Sheppo * We use the first channel found (index 0), irrespective of how 23651ae08745Sheppo * many are there in total. 23661ae08745Sheppo */ 23678cd10891Snarayan if (md_get_prop_val(mdp, chanp[0], VDC_MD_ID, 23688cd10891Snarayan &srvr->ldc_id) != 0) { 23698cd10891Snarayan cmn_err(CE_NOTE, "Channel '%s' property not found", 23708cd10891Snarayan VDC_MD_ID); 23718cd10891Snarayan kmem_free(srvr, sizeof (vdc_server_t)); 23728cd10891Snarayan continue; 23738cd10891Snarayan } 23748cd10891Snarayan 23758cd10891Snarayan /* 23768cd10891Snarayan * now initialise LDC channel which will be used to 23778cd10891Snarayan * communicate with this server 23788cd10891Snarayan */ 23798cd10891Snarayan if (vdc_do_ldc_init(vdc, srvr) != 0) { 23808cd10891Snarayan kmem_free(srvr, sizeof (vdc_server_t)); 23818cd10891Snarayan continue; 23828cd10891Snarayan } 23838cd10891Snarayan 23848cd10891Snarayan /* add server to list */ 2385d7400d00Sachartre if (prev_srvr) 23868cd10891Snarayan prev_srvr->next = srvr; 2387d7400d00Sachartre else 23888cd10891Snarayan vdc->server_list = srvr; 2389d7400d00Sachartre 23908cd10891Snarayan prev_srvr = srvr; 23918cd10891Snarayan 23928cd10891Snarayan /* inc numbers of servers */ 23938cd10891Snarayan vdc->num_servers++; 23948cd10891Snarayan } 23958cd10891Snarayan 23968cd10891Snarayan /* 23978cd10891Snarayan * Adjust the max number of handshake retries to match 23988cd10891Snarayan * the number of vdisk servers. 23998cd10891Snarayan */ 24008cd10891Snarayan if (vdc_hshake_retries < vdc->num_servers) 24018cd10891Snarayan vdc_hshake_retries = vdc->num_servers; 24028cd10891Snarayan 24038cd10891Snarayan /* pick first server as current server */ 24048cd10891Snarayan if (vdc->server_list != NULL) { 24058cd10891Snarayan vdc->curr_server = vdc->server_list; 24068cd10891Snarayan status = 0; 24078cd10891Snarayan } else { 24081ae08745Sheppo status = ENOENT; 24091ae08745Sheppo } 24101ae08745Sheppo 24111ae08745Sheppo done: 24121ae08745Sheppo kmem_free(chanp, listsz); 24138cd10891Snarayan kmem_free(portp, listsz); 24141ae08745Sheppo return (status); 24151ae08745Sheppo } 24161ae08745Sheppo 24178cd10891Snarayan 24188cd10891Snarayan /* 24198cd10891Snarayan * Function: 24208cd10891Snarayan * vdc_do_ldc_up 24218cd10891Snarayan * 24228cd10891Snarayan * Description: 24238cd10891Snarayan * Bring the channel for the current server up. 24248cd10891Snarayan * 24258cd10891Snarayan * Arguments: 24268cd10891Snarayan * vdc - soft state pointer for this instance of the device driver. 24278cd10891Snarayan * 24288cd10891Snarayan * Return Code: 24298cd10891Snarayan * 0 - Success. 24308cd10891Snarayan * EINVAL - Driver is detaching / LDC error 24318cd10891Snarayan * ECONNREFUSED - Other end is not listening 24328cd10891Snarayan */ 24330a55fbb7Slm66018 static int 24340a55fbb7Slm66018 vdc_do_ldc_up(vdc_t *vdc) 24350a55fbb7Slm66018 { 24360a55fbb7Slm66018 int status; 24373af08d82Slm66018 ldc_status_t ldc_state; 24380a55fbb7Slm66018 24398cd10891Snarayan ASSERT(MUTEX_HELD(&vdc->lock)); 24408cd10891Snarayan 24413af08d82Slm66018 DMSG(vdc, 0, "[%d] Bringing up channel %lx\n", 24428cd10891Snarayan vdc->instance, vdc->curr_server->ldc_id); 24433af08d82Slm66018 24443af08d82Slm66018 if (vdc->lifecycle == VDC_LC_DETACHING) 24453af08d82Slm66018 return (EINVAL); 24460a55fbb7Slm66018 24478cd10891Snarayan if ((status = ldc_up(vdc->curr_server->ldc_handle)) != 0) { 24480a55fbb7Slm66018 switch (status) { 24490a55fbb7Slm66018 case ECONNREFUSED: /* listener not ready at other end */ 24503af08d82Slm66018 DMSG(vdc, 0, "[%d] ldc_up(%lx,...) return %d\n", 24518cd10891Snarayan vdc->instance, vdc->curr_server->ldc_id, status); 24520a55fbb7Slm66018 status = 0; 24530a55fbb7Slm66018 break; 24540a55fbb7Slm66018 default: 24553af08d82Slm66018 DMSG(vdc, 0, "[%d] Failed to bring up LDC: " 24568cd10891Snarayan "channel=%ld, err=%d", vdc->instance, 24578cd10891Snarayan vdc->curr_server->ldc_id, status); 24583af08d82Slm66018 break; 24593af08d82Slm66018 } 24603af08d82Slm66018 } 24613af08d82Slm66018 24628cd10891Snarayan if (ldc_status(vdc->curr_server->ldc_handle, &ldc_state) == 0) { 24638cd10891Snarayan vdc->curr_server->ldc_state = ldc_state; 24643af08d82Slm66018 if (ldc_state == LDC_UP) { 24653af08d82Slm66018 DMSG(vdc, 0, "[%d] LDC channel already up\n", 24663af08d82Slm66018 vdc->instance); 24673af08d82Slm66018 vdc->seq_num = 1; 24683af08d82Slm66018 vdc->seq_num_reply = 0; 24690a55fbb7Slm66018 } 24700a55fbb7Slm66018 } 24710a55fbb7Slm66018 24720a55fbb7Slm66018 return (status); 24730a55fbb7Slm66018 } 24740a55fbb7Slm66018 24750a55fbb7Slm66018 /* 24760a55fbb7Slm66018 * Function: 24770a55fbb7Slm66018 * vdc_terminate_ldc() 24780a55fbb7Slm66018 * 24790a55fbb7Slm66018 * Description: 24800a55fbb7Slm66018 * 24810a55fbb7Slm66018 * Arguments: 24820a55fbb7Slm66018 * vdc - soft state pointer for this instance of the device driver. 24838cd10891Snarayan * srvr - vdc per-server info structure 24840a55fbb7Slm66018 * 24850a55fbb7Slm66018 * Return Code: 24860a55fbb7Slm66018 * None 24870a55fbb7Slm66018 */ 24881ae08745Sheppo static void 24898cd10891Snarayan vdc_terminate_ldc(vdc_t *vdc, vdc_server_t *srvr) 24901ae08745Sheppo { 24911ae08745Sheppo int instance = ddi_get_instance(vdc->dip); 24921ae08745Sheppo 24938cd10891Snarayan if (srvr->state & VDC_LDC_OPEN) { 24948cd10891Snarayan DMSG(vdc, 0, "[%d] ldc_close()\n", instance); 24958cd10891Snarayan (void) ldc_close(srvr->ldc_handle); 24968cd10891Snarayan } 24978cd10891Snarayan if (srvr->state & VDC_LDC_CB) { 24988cd10891Snarayan DMSG(vdc, 0, "[%d] ldc_unreg_callback()\n", instance); 24998cd10891Snarayan (void) ldc_unreg_callback(srvr->ldc_handle); 25008cd10891Snarayan } 25018cd10891Snarayan if (srvr->state & VDC_LDC_INIT) { 25028cd10891Snarayan DMSG(vdc, 0, "[%d] ldc_fini()\n", instance); 25038cd10891Snarayan (void) ldc_fini(srvr->ldc_handle); 25048cd10891Snarayan srvr->ldc_handle = NULL; 25058cd10891Snarayan } 25068cd10891Snarayan 25078cd10891Snarayan srvr->state &= ~(VDC_LDC_INIT | VDC_LDC_CB | VDC_LDC_OPEN); 25088cd10891Snarayan } 25098cd10891Snarayan 25108cd10891Snarayan /* 25118cd10891Snarayan * Function: 25128cd10891Snarayan * vdc_fini_ports() 25138cd10891Snarayan * 25148cd10891Snarayan * Description: 25158cd10891Snarayan * Finalize all ports by closing the channel associated with each 25168cd10891Snarayan * port and also freeing the server structure. 25178cd10891Snarayan * 25188cd10891Snarayan * Arguments: 25198cd10891Snarayan * vdc - soft state pointer for this instance of the device driver. 25208cd10891Snarayan * 25218cd10891Snarayan * Return Code: 25228cd10891Snarayan * None 25238cd10891Snarayan */ 25248cd10891Snarayan static void 25258cd10891Snarayan vdc_fini_ports(vdc_t *vdc) 25268cd10891Snarayan { 25278cd10891Snarayan int instance = ddi_get_instance(vdc->dip); 25288cd10891Snarayan vdc_server_t *srvr, *prev_srvr; 25298cd10891Snarayan 25301ae08745Sheppo ASSERT(vdc != NULL); 25311ae08745Sheppo ASSERT(mutex_owned(&vdc->lock)); 25321ae08745Sheppo 25333af08d82Slm66018 DMSG(vdc, 0, "[%d] initialized=%x\n", instance, vdc->initialized); 25341ae08745Sheppo 25358cd10891Snarayan srvr = vdc->server_list; 25368cd10891Snarayan 25378cd10891Snarayan while (srvr) { 25388cd10891Snarayan 25398cd10891Snarayan vdc_terminate_ldc(vdc, srvr); 25408cd10891Snarayan 25418cd10891Snarayan /* next server */ 25428cd10891Snarayan prev_srvr = srvr; 25438cd10891Snarayan srvr = srvr->next; 25448cd10891Snarayan 25458cd10891Snarayan /* free server */ 25468cd10891Snarayan kmem_free(prev_srvr, sizeof (vdc_server_t)); 25471ae08745Sheppo } 25481ae08745Sheppo 25498cd10891Snarayan vdc->server_list = NULL; 25501ae08745Sheppo } 25511ae08745Sheppo 25521ae08745Sheppo /* -------------------------------------------------------------------------- */ 25531ae08745Sheppo 25541ae08745Sheppo /* 25551ae08745Sheppo * Descriptor Ring helper routines 25561ae08745Sheppo */ 25571ae08745Sheppo 25580a55fbb7Slm66018 /* 25590a55fbb7Slm66018 * Function: 25600a55fbb7Slm66018 * vdc_init_descriptor_ring() 25610a55fbb7Slm66018 * 25620a55fbb7Slm66018 * Description: 25630a55fbb7Slm66018 * 25640a55fbb7Slm66018 * Arguments: 25650a55fbb7Slm66018 * vdc - soft state pointer for this instance of the device driver. 25660a55fbb7Slm66018 * 25670a55fbb7Slm66018 * Return Code: 25680a55fbb7Slm66018 * 0 - Success 25690a55fbb7Slm66018 */ 25701ae08745Sheppo static int 25711ae08745Sheppo vdc_init_descriptor_ring(vdc_t *vdc) 25721ae08745Sheppo { 25731ae08745Sheppo vd_dring_entry_t *dep = NULL; /* DRing Entry pointer */ 25740a55fbb7Slm66018 int status = 0; 25751ae08745Sheppo int i; 25761ae08745Sheppo 25773af08d82Slm66018 DMSG(vdc, 0, "[%d] initialized=%x\n", vdc->instance, vdc->initialized); 25781ae08745Sheppo 25791ae08745Sheppo ASSERT(vdc != NULL); 25801ae08745Sheppo ASSERT(mutex_owned(&vdc->lock)); 25811ae08745Sheppo 2582e1ebb9ecSlm66018 /* ensure we have enough room to store max sized block */ 2583e1ebb9ecSlm66018 ASSERT(maxphys <= VD_MAX_BLOCK_SIZE); 2584e1ebb9ecSlm66018 25850a55fbb7Slm66018 if ((vdc->initialized & VDC_DRING_INIT) == 0) { 25863af08d82Slm66018 DMSG(vdc, 0, "[%d] ldc_mem_dring_create\n", vdc->instance); 2587e1ebb9ecSlm66018 /* 2588e1ebb9ecSlm66018 * Calculate the maximum block size we can transmit using one 2589e1ebb9ecSlm66018 * Descriptor Ring entry from the attributes returned by the 2590e1ebb9ecSlm66018 * vDisk server. This is subject to a minimum of 'maxphys' 2591e1ebb9ecSlm66018 * as we do not have the capability to split requests over 2592e1ebb9ecSlm66018 * multiple DRing entries. 2593e1ebb9ecSlm66018 */ 2594e1ebb9ecSlm66018 if ((vdc->max_xfer_sz * vdc->block_size) < maxphys) { 25953af08d82Slm66018 DMSG(vdc, 0, "[%d] using minimum DRing size\n", 2596e1ebb9ecSlm66018 vdc->instance); 2597e1ebb9ecSlm66018 vdc->dring_max_cookies = maxphys / PAGESIZE; 2598e1ebb9ecSlm66018 } else { 2599e1ebb9ecSlm66018 vdc->dring_max_cookies = 2600e1ebb9ecSlm66018 (vdc->max_xfer_sz * vdc->block_size) / PAGESIZE; 2601e1ebb9ecSlm66018 } 2602e1ebb9ecSlm66018 vdc->dring_entry_size = (sizeof (vd_dring_entry_t) + 2603e1ebb9ecSlm66018 (sizeof (ldc_mem_cookie_t) * 2604e1ebb9ecSlm66018 (vdc->dring_max_cookies - 1))); 2605e1ebb9ecSlm66018 vdc->dring_len = VD_DRING_LEN; 2606e1ebb9ecSlm66018 2607e1ebb9ecSlm66018 status = ldc_mem_dring_create(vdc->dring_len, 26088cd10891Snarayan vdc->dring_entry_size, &vdc->dring_hdl); 26098cd10891Snarayan if ((vdc->dring_hdl == NULL) || (status != 0)) { 26103af08d82Slm66018 DMSG(vdc, 0, "[%d] Descriptor ring creation failed", 2611e1ebb9ecSlm66018 vdc->instance); 26121ae08745Sheppo return (status); 26131ae08745Sheppo } 26140a55fbb7Slm66018 vdc->initialized |= VDC_DRING_INIT; 26150a55fbb7Slm66018 } 26161ae08745Sheppo 26170a55fbb7Slm66018 if ((vdc->initialized & VDC_DRING_BOUND) == 0) { 26183af08d82Slm66018 DMSG(vdc, 0, "[%d] ldc_mem_dring_bind\n", vdc->instance); 26190a55fbb7Slm66018 vdc->dring_cookie = 26200a55fbb7Slm66018 kmem_zalloc(sizeof (ldc_mem_cookie_t), KM_SLEEP); 26211ae08745Sheppo 26228cd10891Snarayan status = ldc_mem_dring_bind(vdc->curr_server->ldc_handle, 26238cd10891Snarayan vdc->dring_hdl, 26244bac2208Snarayan LDC_SHADOW_MAP|LDC_DIRECT_MAP, LDC_MEM_RW, 26250a55fbb7Slm66018 &vdc->dring_cookie[0], 26261ae08745Sheppo &vdc->dring_cookie_count); 26271ae08745Sheppo if (status != 0) { 26283af08d82Slm66018 DMSG(vdc, 0, "[%d] Failed to bind descriptor ring " 26293af08d82Slm66018 "(%lx) to channel (%lx) status=%d\n", 26308cd10891Snarayan vdc->instance, vdc->dring_hdl, 26318cd10891Snarayan vdc->curr_server->ldc_handle, status); 26321ae08745Sheppo return (status); 26331ae08745Sheppo } 26341ae08745Sheppo ASSERT(vdc->dring_cookie_count == 1); 26351ae08745Sheppo vdc->initialized |= VDC_DRING_BOUND; 26360a55fbb7Slm66018 } 26371ae08745Sheppo 26388cd10891Snarayan status = ldc_mem_dring_info(vdc->dring_hdl, &vdc->dring_mem_info); 26391ae08745Sheppo if (status != 0) { 26403af08d82Slm66018 DMSG(vdc, 0, 26413af08d82Slm66018 "[%d] Failed to get info for descriptor ring (%lx)\n", 26428cd10891Snarayan vdc->instance, vdc->dring_hdl); 26431ae08745Sheppo return (status); 26441ae08745Sheppo } 26451ae08745Sheppo 26460a55fbb7Slm66018 if ((vdc->initialized & VDC_DRING_LOCAL) == 0) { 26473af08d82Slm66018 DMSG(vdc, 0, "[%d] local dring\n", vdc->instance); 26480a55fbb7Slm66018 26491ae08745Sheppo /* Allocate the local copy of this dring */ 26500a55fbb7Slm66018 vdc->local_dring = 2651e1ebb9ecSlm66018 kmem_zalloc(vdc->dring_len * sizeof (vdc_local_desc_t), 26521ae08745Sheppo KM_SLEEP); 26531ae08745Sheppo vdc->initialized |= VDC_DRING_LOCAL; 26540a55fbb7Slm66018 } 26551ae08745Sheppo 26561ae08745Sheppo /* 26570a55fbb7Slm66018 * Mark all DRing entries as free and initialize the private 26580a55fbb7Slm66018 * descriptor's memory handles. If any entry is initialized, 26590a55fbb7Slm66018 * we need to free it later so we set the bit in 'initialized' 26600a55fbb7Slm66018 * at the start. 26611ae08745Sheppo */ 26621ae08745Sheppo vdc->initialized |= VDC_DRING_ENTRY; 2663e1ebb9ecSlm66018 for (i = 0; i < vdc->dring_len; i++) { 26641ae08745Sheppo dep = VDC_GET_DRING_ENTRY_PTR(vdc, i); 26651ae08745Sheppo dep->hdr.dstate = VIO_DESC_FREE; 26661ae08745Sheppo 26678cd10891Snarayan status = ldc_mem_alloc_handle(vdc->curr_server->ldc_handle, 26681ae08745Sheppo &vdc->local_dring[i].desc_mhdl); 26691ae08745Sheppo if (status != 0) { 26703af08d82Slm66018 DMSG(vdc, 0, "![%d] Failed to alloc mem handle for" 26711ae08745Sheppo " descriptor %d", vdc->instance, i); 26721ae08745Sheppo return (status); 26731ae08745Sheppo } 26743af08d82Slm66018 vdc->local_dring[i].is_free = B_TRUE; 26751ae08745Sheppo vdc->local_dring[i].dep = dep; 26761ae08745Sheppo } 26771ae08745Sheppo 26783af08d82Slm66018 /* Initialize the starting index */ 26793af08d82Slm66018 vdc->dring_curr_idx = 0; 26801ae08745Sheppo 26811ae08745Sheppo return (status); 26821ae08745Sheppo } 26831ae08745Sheppo 26840a55fbb7Slm66018 /* 26850a55fbb7Slm66018 * Function: 26860a55fbb7Slm66018 * vdc_destroy_descriptor_ring() 26870a55fbb7Slm66018 * 26880a55fbb7Slm66018 * Description: 26890a55fbb7Slm66018 * 26900a55fbb7Slm66018 * Arguments: 26910a55fbb7Slm66018 * vdc - soft state pointer for this instance of the device driver. 26920a55fbb7Slm66018 * 26930a55fbb7Slm66018 * Return Code: 26940a55fbb7Slm66018 * None 26950a55fbb7Slm66018 */ 26961ae08745Sheppo static void 26971ae08745Sheppo vdc_destroy_descriptor_ring(vdc_t *vdc) 26981ae08745Sheppo { 26990a55fbb7Slm66018 vdc_local_desc_t *ldep = NULL; /* Local Dring Entry Pointer */ 27001ae08745Sheppo ldc_mem_handle_t mhdl = NULL; 27013af08d82Slm66018 ldc_mem_info_t minfo; 27021ae08745Sheppo int status = -1; 27031ae08745Sheppo int i; /* loop */ 27041ae08745Sheppo 27051ae08745Sheppo ASSERT(vdc != NULL); 27061ae08745Sheppo ASSERT(mutex_owned(&vdc->lock)); 27071ae08745Sheppo 27083af08d82Slm66018 DMSG(vdc, 0, "[%d] Entered\n", vdc->instance); 27091ae08745Sheppo 27101ae08745Sheppo if (vdc->initialized & VDC_DRING_ENTRY) { 27113af08d82Slm66018 DMSG(vdc, 0, 27123af08d82Slm66018 "[%d] Removing Local DRing entries\n", vdc->instance); 2713e1ebb9ecSlm66018 for (i = 0; i < vdc->dring_len; i++) { 27140a55fbb7Slm66018 ldep = &vdc->local_dring[i]; 27150a55fbb7Slm66018 mhdl = ldep->desc_mhdl; 27161ae08745Sheppo 27170a55fbb7Slm66018 if (mhdl == NULL) 27180a55fbb7Slm66018 continue; 27190a55fbb7Slm66018 27203af08d82Slm66018 if ((status = ldc_mem_info(mhdl, &minfo)) != 0) { 27213af08d82Slm66018 DMSG(vdc, 0, 27223af08d82Slm66018 "ldc_mem_info returned an error: %d\n", 27233af08d82Slm66018 status); 27243af08d82Slm66018 27253af08d82Slm66018 /* 27263af08d82Slm66018 * This must mean that the mem handle 27273af08d82Slm66018 * is not valid. Clear it out so that 27283af08d82Slm66018 * no one tries to use it. 27293af08d82Slm66018 */ 27303af08d82Slm66018 ldep->desc_mhdl = NULL; 27313af08d82Slm66018 continue; 27323af08d82Slm66018 } 27333af08d82Slm66018 27343af08d82Slm66018 if (minfo.status == LDC_BOUND) { 27353af08d82Slm66018 (void) ldc_mem_unbind_handle(mhdl); 27363af08d82Slm66018 } 27373af08d82Slm66018 27381ae08745Sheppo (void) ldc_mem_free_handle(mhdl); 27393af08d82Slm66018 27403af08d82Slm66018 ldep->desc_mhdl = NULL; 27411ae08745Sheppo } 27421ae08745Sheppo vdc->initialized &= ~VDC_DRING_ENTRY; 27431ae08745Sheppo } 27441ae08745Sheppo 27451ae08745Sheppo if (vdc->initialized & VDC_DRING_LOCAL) { 27463af08d82Slm66018 DMSG(vdc, 0, "[%d] Freeing Local DRing\n", vdc->instance); 27471ae08745Sheppo kmem_free(vdc->local_dring, 2748e1ebb9ecSlm66018 vdc->dring_len * sizeof (vdc_local_desc_t)); 27491ae08745Sheppo vdc->initialized &= ~VDC_DRING_LOCAL; 27501ae08745Sheppo } 27511ae08745Sheppo 27521ae08745Sheppo if (vdc->initialized & VDC_DRING_BOUND) { 27533af08d82Slm66018 DMSG(vdc, 0, "[%d] Unbinding DRing\n", vdc->instance); 27548cd10891Snarayan status = ldc_mem_dring_unbind(vdc->dring_hdl); 27551ae08745Sheppo if (status == 0) { 27561ae08745Sheppo vdc->initialized &= ~VDC_DRING_BOUND; 27571ae08745Sheppo } else { 27583af08d82Slm66018 DMSG(vdc, 0, "[%d] Error %d unbinding DRing %lx", 27598cd10891Snarayan vdc->instance, status, vdc->dring_hdl); 27601ae08745Sheppo } 27613af08d82Slm66018 kmem_free(vdc->dring_cookie, sizeof (ldc_mem_cookie_t)); 27621ae08745Sheppo } 27631ae08745Sheppo 27641ae08745Sheppo if (vdc->initialized & VDC_DRING_INIT) { 27653af08d82Slm66018 DMSG(vdc, 0, "[%d] Destroying DRing\n", vdc->instance); 27668cd10891Snarayan status = ldc_mem_dring_destroy(vdc->dring_hdl); 27671ae08745Sheppo if (status == 0) { 27688cd10891Snarayan vdc->dring_hdl = NULL; 27691ae08745Sheppo bzero(&vdc->dring_mem_info, sizeof (ldc_mem_info_t)); 27701ae08745Sheppo vdc->initialized &= ~VDC_DRING_INIT; 27711ae08745Sheppo } else { 27723af08d82Slm66018 DMSG(vdc, 0, "[%d] Error %d destroying DRing (%lx)", 27738cd10891Snarayan vdc->instance, status, vdc->dring_hdl); 27741ae08745Sheppo } 27751ae08745Sheppo } 27761ae08745Sheppo } 27771ae08745Sheppo 27781ae08745Sheppo /* 27793af08d82Slm66018 * Function: 278090e2f9dcSlm66018 * vdc_map_to_shared_dring() 27811ae08745Sheppo * 27821ae08745Sheppo * Description: 27833af08d82Slm66018 * Copy contents of the local descriptor to the shared 27843af08d82Slm66018 * memory descriptor. 27851ae08745Sheppo * 27863af08d82Slm66018 * Arguments: 27873af08d82Slm66018 * vdcp - soft state pointer for this instance of the device driver. 27883af08d82Slm66018 * idx - descriptor ring index 27893af08d82Slm66018 * 27903af08d82Slm66018 * Return Code: 27913af08d82Slm66018 * None 27921ae08745Sheppo */ 27931ae08745Sheppo static int 27943af08d82Slm66018 vdc_map_to_shared_dring(vdc_t *vdcp, int idx) 27951ae08745Sheppo { 27963af08d82Slm66018 vdc_local_desc_t *ldep; 27973af08d82Slm66018 vd_dring_entry_t *dep; 27983af08d82Slm66018 int rv; 27991ae08745Sheppo 28003af08d82Slm66018 ldep = &(vdcp->local_dring[idx]); 28011ae08745Sheppo 28023af08d82Slm66018 /* for now leave in the old pop_mem_hdl stuff */ 28033af08d82Slm66018 if (ldep->nbytes > 0) { 28043af08d82Slm66018 rv = vdc_populate_mem_hdl(vdcp, ldep); 28053af08d82Slm66018 if (rv) { 28063af08d82Slm66018 DMSG(vdcp, 0, "[%d] Cannot populate mem handle\n", 28073af08d82Slm66018 vdcp->instance); 28083af08d82Slm66018 return (rv); 28093af08d82Slm66018 } 28103af08d82Slm66018 } 28111ae08745Sheppo 28123af08d82Slm66018 /* 28133af08d82Slm66018 * fill in the data details into the DRing 28143af08d82Slm66018 */ 2815d10e4ef2Snarayan dep = ldep->dep; 28161ae08745Sheppo ASSERT(dep != NULL); 28171ae08745Sheppo 28183af08d82Slm66018 dep->payload.req_id = VDC_GET_NEXT_REQ_ID(vdcp); 28193af08d82Slm66018 dep->payload.operation = ldep->operation; 28203af08d82Slm66018 dep->payload.addr = ldep->offset; 28213af08d82Slm66018 dep->payload.nbytes = ldep->nbytes; 2822055d7c80Scarlsonj dep->payload.status = (uint32_t)-1; /* vds will set valid value */ 28233af08d82Slm66018 dep->payload.slice = ldep->slice; 28243af08d82Slm66018 dep->hdr.dstate = VIO_DESC_READY; 28253af08d82Slm66018 dep->hdr.ack = 1; /* request an ACK for every message */ 28261ae08745Sheppo 28273af08d82Slm66018 return (0); 28281ae08745Sheppo } 28291ae08745Sheppo 28301ae08745Sheppo /* 28311ae08745Sheppo * Function: 28323af08d82Slm66018 * vdc_send_request 28333af08d82Slm66018 * 28343af08d82Slm66018 * Description: 28353af08d82Slm66018 * This routine writes the data to be transmitted to vds into the 28363af08d82Slm66018 * descriptor, notifies vds that the ring has been updated and 28373af08d82Slm66018 * then waits for the request to be processed. 28383af08d82Slm66018 * 28393af08d82Slm66018 * Arguments: 28403af08d82Slm66018 * vdcp - the soft state pointer 28413af08d82Slm66018 * operation - operation we want vds to perform (VD_OP_XXX) 28423af08d82Slm66018 * addr - address of data buf to be read/written. 28433af08d82Slm66018 * nbytes - number of bytes to read/write 28443af08d82Slm66018 * slice - the disk slice this request is for 28453af08d82Slm66018 * offset - relative disk offset 28463af08d82Slm66018 * cb_type - type of call - STRATEGY or SYNC 28473af08d82Slm66018 * cb_arg - parameter to be sent to server (depends on VD_OP_XXX type) 28483af08d82Slm66018 * . mode for ioctl(9e) 28493af08d82Slm66018 * . LP64 diskaddr_t (block I/O) 28503af08d82Slm66018 * dir - direction of operation (READ/WRITE/BOTH) 28513af08d82Slm66018 * 28523af08d82Slm66018 * Return Codes: 28533af08d82Slm66018 * 0 28543af08d82Slm66018 * ENXIO 28553af08d82Slm66018 */ 28563af08d82Slm66018 static int 28573af08d82Slm66018 vdc_send_request(vdc_t *vdcp, int operation, caddr_t addr, 28583af08d82Slm66018 size_t nbytes, int slice, diskaddr_t offset, int cb_type, 28593af08d82Slm66018 void *cb_arg, vio_desc_direction_t dir) 28603af08d82Slm66018 { 2861366a92acSlm66018 int rv = 0; 2862366a92acSlm66018 28633af08d82Slm66018 ASSERT(vdcp != NULL); 286487a7269eSachartre ASSERT(slice == VD_SLICE_NONE || slice < V_NUMPAR); 28653af08d82Slm66018 28663af08d82Slm66018 mutex_enter(&vdcp->lock); 28673af08d82Slm66018 2868366a92acSlm66018 /* 2869366a92acSlm66018 * If this is a block read/write operation we update the I/O statistics 2870366a92acSlm66018 * to indicate that the request is being put on the waitq to be 2871366a92acSlm66018 * serviced. 2872366a92acSlm66018 * 2873366a92acSlm66018 * We do it here (a common routine for both synchronous and strategy 2874366a92acSlm66018 * calls) for performance reasons - we are already holding vdc->lock 2875366a92acSlm66018 * so there is no extra locking overhead. We would have to explicitly 2876366a92acSlm66018 * grab the 'lock' mutex to update the stats if we were to do this 2877366a92acSlm66018 * higher up the stack in vdc_strategy() et. al. 2878366a92acSlm66018 */ 2879366a92acSlm66018 if ((operation == VD_OP_BREAD) || (operation == VD_OP_BWRITE)) { 2880366a92acSlm66018 DTRACE_IO1(start, buf_t *, cb_arg); 288190e2f9dcSlm66018 VD_KSTAT_WAITQ_ENTER(vdcp); 2882366a92acSlm66018 } 2883366a92acSlm66018 28843af08d82Slm66018 do { 28853c96341aSnarayan while (vdcp->state != VDC_STATE_RUNNING) { 28863af08d82Slm66018 28873c96341aSnarayan /* return error if detaching */ 28883c96341aSnarayan if (vdcp->state == VDC_STATE_DETACH) { 2889366a92acSlm66018 rv = ENXIO; 2890366a92acSlm66018 goto done; 28913c96341aSnarayan } 2892655fd6a9Sachartre 2893655fd6a9Sachartre /* fail request if connection timeout is reached */ 2894655fd6a9Sachartre if (vdcp->ctimeout_reached) { 2895366a92acSlm66018 rv = EIO; 2896366a92acSlm66018 goto done; 2897655fd6a9Sachartre } 2898655fd6a9Sachartre 28992f5224aeSachartre /* 29002f5224aeSachartre * If we are panicking and the disk is not ready then 29012f5224aeSachartre * we can't send any request because we can't complete 29022f5224aeSachartre * the handshake now. 29032f5224aeSachartre */ 29042f5224aeSachartre if (ddi_in_panic()) { 2905366a92acSlm66018 rv = EIO; 2906366a92acSlm66018 goto done; 29072f5224aeSachartre } 29082f5224aeSachartre 2909655fd6a9Sachartre cv_wait(&vdcp->running_cv, &vdcp->lock); 29103c96341aSnarayan } 29113c96341aSnarayan 29123af08d82Slm66018 } while (vdc_populate_descriptor(vdcp, operation, addr, 29133af08d82Slm66018 nbytes, slice, offset, cb_type, cb_arg, dir)); 29143af08d82Slm66018 2915366a92acSlm66018 done: 2916366a92acSlm66018 /* 2917366a92acSlm66018 * If this is a block read/write we update the I/O statistics kstat 2918366a92acSlm66018 * to indicate that this request has been placed on the queue for 2919366a92acSlm66018 * processing (i.e sent to the vDisk server) - iostat(1M) will 2920366a92acSlm66018 * report the time waiting for the vDisk server under the %b column 2921366a92acSlm66018 * In the case of an error we simply take it off the wait queue. 2922366a92acSlm66018 */ 2923366a92acSlm66018 if ((operation == VD_OP_BREAD) || (operation == VD_OP_BWRITE)) { 2924366a92acSlm66018 if (rv == 0) { 292590e2f9dcSlm66018 VD_KSTAT_WAITQ_TO_RUNQ(vdcp); 2926366a92acSlm66018 DTRACE_PROBE1(send, buf_t *, cb_arg); 2927366a92acSlm66018 } else { 2928366a92acSlm66018 VD_UPDATE_ERR_STATS(vdcp, vd_transerrs); 292990e2f9dcSlm66018 VD_KSTAT_WAITQ_EXIT(vdcp); 2930366a92acSlm66018 DTRACE_IO1(done, buf_t *, cb_arg); 2931366a92acSlm66018 } 2932366a92acSlm66018 } 2933366a92acSlm66018 29343af08d82Slm66018 mutex_exit(&vdcp->lock); 2935366a92acSlm66018 2936366a92acSlm66018 return (rv); 29373af08d82Slm66018 } 29383af08d82Slm66018 29393af08d82Slm66018 29403af08d82Slm66018 /* 29413af08d82Slm66018 * Function: 29421ae08745Sheppo * vdc_populate_descriptor 29431ae08745Sheppo * 29441ae08745Sheppo * Description: 29451ae08745Sheppo * This routine writes the data to be transmitted to vds into the 29461ae08745Sheppo * descriptor, notifies vds that the ring has been updated and 29471ae08745Sheppo * then waits for the request to be processed. 29481ae08745Sheppo * 29491ae08745Sheppo * Arguments: 29503af08d82Slm66018 * vdcp - the soft state pointer 29511ae08745Sheppo * operation - operation we want vds to perform (VD_OP_XXX) 29523af08d82Slm66018 * addr - address of data buf to be read/written. 29533af08d82Slm66018 * nbytes - number of bytes to read/write 29543af08d82Slm66018 * slice - the disk slice this request is for 29553af08d82Slm66018 * offset - relative disk offset 29563af08d82Slm66018 * cb_type - type of call - STRATEGY or SYNC 29573af08d82Slm66018 * cb_arg - parameter to be sent to server (depends on VD_OP_XXX type) 29581ae08745Sheppo * . mode for ioctl(9e) 29591ae08745Sheppo * . LP64 diskaddr_t (block I/O) 29603af08d82Slm66018 * dir - direction of operation (READ/WRITE/BOTH) 29611ae08745Sheppo * 29621ae08745Sheppo * Return Codes: 29631ae08745Sheppo * 0 29641ae08745Sheppo * EAGAIN 296517cadca8Slm66018 * ECONNRESET 29661ae08745Sheppo * ENXIO 29671ae08745Sheppo */ 29681ae08745Sheppo static int 29693af08d82Slm66018 vdc_populate_descriptor(vdc_t *vdcp, int operation, caddr_t addr, 29703af08d82Slm66018 size_t nbytes, int slice, diskaddr_t offset, int cb_type, 29713af08d82Slm66018 void *cb_arg, vio_desc_direction_t dir) 29721ae08745Sheppo { 29733af08d82Slm66018 vdc_local_desc_t *local_dep = NULL; /* Local Dring Pointer */ 29743af08d82Slm66018 int idx; /* Index of DRing entry used */ 29753af08d82Slm66018 int next_idx; 29761ae08745Sheppo vio_dring_msg_t dmsg; 29773af08d82Slm66018 size_t msglen; 29788e6a2a04Slm66018 int rv; 29791ae08745Sheppo 29803af08d82Slm66018 ASSERT(MUTEX_HELD(&vdcp->lock)); 29813af08d82Slm66018 vdcp->threads_pending++; 29823af08d82Slm66018 loop: 29833af08d82Slm66018 DMSG(vdcp, 2, ": dring_curr_idx = %d\n", vdcp->dring_curr_idx); 29841ae08745Sheppo 29853af08d82Slm66018 /* Get next available D-Ring entry */ 29863af08d82Slm66018 idx = vdcp->dring_curr_idx; 29873af08d82Slm66018 local_dep = &(vdcp->local_dring[idx]); 29881ae08745Sheppo 29893af08d82Slm66018 if (!local_dep->is_free) { 29903af08d82Slm66018 DMSG(vdcp, 2, "[%d]: dring full - waiting for space\n", 29913af08d82Slm66018 vdcp->instance); 29923af08d82Slm66018 cv_wait(&vdcp->dring_free_cv, &vdcp->lock); 29933af08d82Slm66018 if (vdcp->state == VDC_STATE_RUNNING || 29943af08d82Slm66018 vdcp->state == VDC_STATE_HANDLE_PENDING) { 29953af08d82Slm66018 goto loop; 29963af08d82Slm66018 } 29973af08d82Slm66018 vdcp->threads_pending--; 29983af08d82Slm66018 return (ECONNRESET); 29991ae08745Sheppo } 30001ae08745Sheppo 30013af08d82Slm66018 next_idx = idx + 1; 30023af08d82Slm66018 if (next_idx >= vdcp->dring_len) 30033af08d82Slm66018 next_idx = 0; 30043af08d82Slm66018 vdcp->dring_curr_idx = next_idx; 30051ae08745Sheppo 30063af08d82Slm66018 ASSERT(local_dep->is_free); 30071ae08745Sheppo 30083af08d82Slm66018 local_dep->operation = operation; 3009d10e4ef2Snarayan local_dep->addr = addr; 30103af08d82Slm66018 local_dep->nbytes = nbytes; 30113af08d82Slm66018 local_dep->slice = slice; 30123af08d82Slm66018 local_dep->offset = offset; 30133af08d82Slm66018 local_dep->cb_type = cb_type; 30143af08d82Slm66018 local_dep->cb_arg = cb_arg; 30153af08d82Slm66018 local_dep->dir = dir; 30163af08d82Slm66018 30173af08d82Slm66018 local_dep->is_free = B_FALSE; 30183af08d82Slm66018 30193af08d82Slm66018 rv = vdc_map_to_shared_dring(vdcp, idx); 30203af08d82Slm66018 if (rv) { 30213af08d82Slm66018 DMSG(vdcp, 0, "[%d]: cannot bind memory - waiting ..\n", 30223af08d82Slm66018 vdcp->instance); 30233af08d82Slm66018 /* free the descriptor */ 30243af08d82Slm66018 local_dep->is_free = B_TRUE; 30253af08d82Slm66018 vdcp->dring_curr_idx = idx; 30263af08d82Slm66018 cv_wait(&vdcp->membind_cv, &vdcp->lock); 30273af08d82Slm66018 if (vdcp->state == VDC_STATE_RUNNING || 30283af08d82Slm66018 vdcp->state == VDC_STATE_HANDLE_PENDING) { 30293af08d82Slm66018 goto loop; 30301ae08745Sheppo } 30313af08d82Slm66018 vdcp->threads_pending--; 30323af08d82Slm66018 return (ECONNRESET); 30331ae08745Sheppo } 30341ae08745Sheppo 30351ae08745Sheppo /* 30361ae08745Sheppo * Send a msg with the DRing details to vds 30371ae08745Sheppo */ 30381ae08745Sheppo VIO_INIT_DRING_DATA_TAG(dmsg); 30393af08d82Slm66018 VDC_INIT_DRING_DATA_MSG_IDS(dmsg, vdcp); 30403af08d82Slm66018 dmsg.dring_ident = vdcp->dring_ident; 30411ae08745Sheppo dmsg.start_idx = idx; 30421ae08745Sheppo dmsg.end_idx = idx; 30433af08d82Slm66018 vdcp->seq_num++; 30441ae08745Sheppo 3045366a92acSlm66018 DTRACE_PROBE2(populate, int, vdcp->instance, 3046366a92acSlm66018 vdc_local_desc_t *, local_dep); 30473af08d82Slm66018 DMSG(vdcp, 2, "ident=0x%lx, st=%u, end=%u, seq=%ld\n", 30483af08d82Slm66018 vdcp->dring_ident, dmsg.start_idx, dmsg.end_idx, dmsg.seq_num); 30491ae08745Sheppo 30503af08d82Slm66018 /* 30513af08d82Slm66018 * note we're still holding the lock here to 30523af08d82Slm66018 * make sure the message goes out in order !!!... 30533af08d82Slm66018 */ 30543af08d82Slm66018 msglen = sizeof (dmsg); 30553af08d82Slm66018 rv = vdc_send(vdcp, (caddr_t)&dmsg, &msglen); 30563af08d82Slm66018 switch (rv) { 30573af08d82Slm66018 case ECONNRESET: 30583af08d82Slm66018 /* 30593af08d82Slm66018 * vdc_send initiates the reset on failure. 30603af08d82Slm66018 * Since the transaction has already been put 30613af08d82Slm66018 * on the local dring, it will automatically get 30623af08d82Slm66018 * retried when the channel is reset. Given that, 30633af08d82Slm66018 * it is ok to just return success even though the 30643af08d82Slm66018 * send failed. 30653af08d82Slm66018 */ 30663af08d82Slm66018 rv = 0; 30673af08d82Slm66018 break; 3068d10e4ef2Snarayan 30693af08d82Slm66018 case 0: /* EOK */ 30703af08d82Slm66018 DMSG(vdcp, 1, "sent via LDC: rv=%d\n", rv); 30713af08d82Slm66018 break; 3072d10e4ef2Snarayan 30733af08d82Slm66018 default: 30743af08d82Slm66018 goto cleanup_and_exit; 30753af08d82Slm66018 } 3076e1ebb9ecSlm66018 30773af08d82Slm66018 vdcp->threads_pending--; 30783af08d82Slm66018 return (rv); 30793af08d82Slm66018 30803af08d82Slm66018 cleanup_and_exit: 30813af08d82Slm66018 DMSG(vdcp, 0, "unexpected error, rv=%d\n", rv); 30823af08d82Slm66018 return (ENXIO); 30831ae08745Sheppo } 30841ae08745Sheppo 30851ae08745Sheppo /* 30863af08d82Slm66018 * Function: 30873af08d82Slm66018 * vdc_do_sync_op 30883af08d82Slm66018 * 30893af08d82Slm66018 * Description: 30903af08d82Slm66018 * Wrapper around vdc_populate_descriptor that blocks until the 30913af08d82Slm66018 * response to the message is available. 30923af08d82Slm66018 * 30933af08d82Slm66018 * Arguments: 30943af08d82Slm66018 * vdcp - the soft state pointer 30953af08d82Slm66018 * operation - operation we want vds to perform (VD_OP_XXX) 30963af08d82Slm66018 * addr - address of data buf to be read/written. 30973af08d82Slm66018 * nbytes - number of bytes to read/write 30983af08d82Slm66018 * slice - the disk slice this request is for 30993af08d82Slm66018 * offset - relative disk offset 31003af08d82Slm66018 * cb_type - type of call - STRATEGY or SYNC 31013af08d82Slm66018 * cb_arg - parameter to be sent to server (depends on VD_OP_XXX type) 31023af08d82Slm66018 * . mode for ioctl(9e) 31033af08d82Slm66018 * . LP64 diskaddr_t (block I/O) 31043af08d82Slm66018 * dir - direction of operation (READ/WRITE/BOTH) 31052f5224aeSachartre * rconflict - check for reservation conflict in case of failure 31062f5224aeSachartre * 31072f5224aeSachartre * rconflict should be set to B_TRUE by most callers. Callers invoking the 31082f5224aeSachartre * VD_OP_SCSICMD operation can set rconflict to B_FALSE if they check the 31092f5224aeSachartre * result of a successful operation with vd_scsi_status(). 31103af08d82Slm66018 * 31113af08d82Slm66018 * Return Codes: 31123af08d82Slm66018 * 0 31133af08d82Slm66018 * EAGAIN 31143af08d82Slm66018 * EFAULT 31153af08d82Slm66018 * ENXIO 31163af08d82Slm66018 * EIO 31170a55fbb7Slm66018 */ 31183af08d82Slm66018 static int 31193af08d82Slm66018 vdc_do_sync_op(vdc_t *vdcp, int operation, caddr_t addr, size_t nbytes, 31203af08d82Slm66018 int slice, diskaddr_t offset, int cb_type, void *cb_arg, 31212f5224aeSachartre vio_desc_direction_t dir, boolean_t rconflict) 31223af08d82Slm66018 { 31233af08d82Slm66018 int status; 31242f5224aeSachartre vdc_io_t *vio; 31252f5224aeSachartre boolean_t check_resv_conflict = B_FALSE; 31263af08d82Slm66018 31273af08d82Slm66018 ASSERT(cb_type == CB_SYNC); 31281ae08745Sheppo 31291ae08745Sheppo /* 31303af08d82Slm66018 * Grab the lock, if blocked wait until the server 31313af08d82Slm66018 * response causes us to wake up again. 31323af08d82Slm66018 */ 31333af08d82Slm66018 mutex_enter(&vdcp->lock); 31343af08d82Slm66018 vdcp->sync_op_cnt++; 31353af08d82Slm66018 while (vdcp->sync_op_blocked && vdcp->state != VDC_STATE_DETACH) 31363af08d82Slm66018 cv_wait(&vdcp->sync_blocked_cv, &vdcp->lock); 31373af08d82Slm66018 31383af08d82Slm66018 if (vdcp->state == VDC_STATE_DETACH) { 31393af08d82Slm66018 cv_broadcast(&vdcp->sync_blocked_cv); 31403af08d82Slm66018 vdcp->sync_op_cnt--; 31413af08d82Slm66018 mutex_exit(&vdcp->lock); 31423af08d82Slm66018 return (ENXIO); 31433af08d82Slm66018 } 31443af08d82Slm66018 31453af08d82Slm66018 /* now block anyone other thread entering after us */ 31463af08d82Slm66018 vdcp->sync_op_blocked = B_TRUE; 31473af08d82Slm66018 vdcp->sync_op_pending = B_TRUE; 31483af08d82Slm66018 mutex_exit(&vdcp->lock); 31493af08d82Slm66018 3150655fd6a9Sachartre status = vdc_send_request(vdcp, operation, addr, 31513af08d82Slm66018 nbytes, slice, offset, cb_type, cb_arg, dir); 31523af08d82Slm66018 3153655fd6a9Sachartre mutex_enter(&vdcp->lock); 3154655fd6a9Sachartre 3155655fd6a9Sachartre if (status != 0) { 3156655fd6a9Sachartre vdcp->sync_op_pending = B_FALSE; 3157655fd6a9Sachartre } else { 31583af08d82Slm66018 /* 31593af08d82Slm66018 * block until our transaction completes. 31603af08d82Slm66018 * Also anyone else waiting also gets to go next. 31613af08d82Slm66018 */ 31623af08d82Slm66018 while (vdcp->sync_op_pending && vdcp->state != VDC_STATE_DETACH) 31633af08d82Slm66018 cv_wait(&vdcp->sync_pending_cv, &vdcp->lock); 31643af08d82Slm66018 3165655fd6a9Sachartre DMSG(vdcp, 2, ": operation returned %d\n", 3166655fd6a9Sachartre vdcp->sync_op_status); 31673c96341aSnarayan if (vdcp->state == VDC_STATE_DETACH) { 31683c96341aSnarayan vdcp->sync_op_pending = B_FALSE; 31693af08d82Slm66018 status = ENXIO; 31703c96341aSnarayan } else { 31713af08d82Slm66018 status = vdcp->sync_op_status; 31722f5224aeSachartre if (status != 0 && vdcp->failfast_interval != 0) { 31732f5224aeSachartre /* 31742f5224aeSachartre * Operation has failed and failfast is enabled. 31752f5224aeSachartre * We need to check if the failure is due to a 31762f5224aeSachartre * reservation conflict if this was requested. 31772f5224aeSachartre */ 31782f5224aeSachartre check_resv_conflict = rconflict; 31792f5224aeSachartre } 31802f5224aeSachartre 31813c96341aSnarayan } 3182655fd6a9Sachartre } 31833c96341aSnarayan 31843af08d82Slm66018 vdcp->sync_op_status = 0; 31853af08d82Slm66018 vdcp->sync_op_blocked = B_FALSE; 31863af08d82Slm66018 vdcp->sync_op_cnt--; 31873af08d82Slm66018 31883af08d82Slm66018 /* signal the next waiting thread */ 31893af08d82Slm66018 cv_signal(&vdcp->sync_blocked_cv); 31902f5224aeSachartre 31912f5224aeSachartre /* 31922f5224aeSachartre * We have to check for reservation conflict after unblocking sync 31932f5224aeSachartre * operations because some sync operations will be used to do this 31942f5224aeSachartre * check. 31952f5224aeSachartre */ 31962f5224aeSachartre if (check_resv_conflict) { 31972f5224aeSachartre vio = vdc_failfast_io_queue(vdcp, NULL); 31982f5224aeSachartre while (vio->vio_qtime != 0) 31992f5224aeSachartre cv_wait(&vdcp->failfast_io_cv, &vdcp->lock); 32002f5224aeSachartre kmem_free(vio, sizeof (vdc_io_t)); 32012f5224aeSachartre } 32022f5224aeSachartre 32033af08d82Slm66018 mutex_exit(&vdcp->lock); 32043af08d82Slm66018 32053af08d82Slm66018 return (status); 32063af08d82Slm66018 } 32073af08d82Slm66018 32083af08d82Slm66018 32093af08d82Slm66018 /* 32103af08d82Slm66018 * Function: 32113af08d82Slm66018 * vdc_drain_response() 32123af08d82Slm66018 * 32133af08d82Slm66018 * Description: 32141ae08745Sheppo * When a guest is panicking, the completion of requests needs to be 32151ae08745Sheppo * handled differently because interrupts are disabled and vdc 32161ae08745Sheppo * will not get messages. We have to poll for the messages instead. 32173af08d82Slm66018 * 32183c2ebf09Sachartre * Note: since we are panicking we don't implement the io:::done 32193c2ebf09Sachartre * DTrace probe or update the I/O statistics kstats. 3220366a92acSlm66018 * 32213af08d82Slm66018 * Arguments: 32223af08d82Slm66018 * vdc - soft state pointer for this instance of the device driver. 32233c2ebf09Sachartre * buf - if buf is NULL then we drain all responses, otherwise we 32243c2ebf09Sachartre * poll until we receive a ACK/NACK for the specific I/O 32253c2ebf09Sachartre * described by buf. 32263af08d82Slm66018 * 32273af08d82Slm66018 * Return Code: 32283af08d82Slm66018 * 0 - Success 32291ae08745Sheppo */ 32303af08d82Slm66018 static int 32313c2ebf09Sachartre vdc_drain_response(vdc_t *vdc, struct buf *buf) 32323af08d82Slm66018 { 32333af08d82Slm66018 int rv, idx, retries; 32343af08d82Slm66018 size_t msglen; 32353af08d82Slm66018 vdc_local_desc_t *ldep = NULL; /* Local Dring Entry Pointer */ 32363af08d82Slm66018 vio_dring_msg_t dmsg; 32373c2ebf09Sachartre struct buf *mbuf; 32383af08d82Slm66018 32393af08d82Slm66018 mutex_enter(&vdc->lock); 32403af08d82Slm66018 32411ae08745Sheppo retries = 0; 32421ae08745Sheppo for (;;) { 32431ae08745Sheppo msglen = sizeof (dmsg); 32448cd10891Snarayan rv = ldc_read(vdc->curr_server->ldc_handle, (caddr_t)&dmsg, 32458cd10891Snarayan &msglen); 32468e6a2a04Slm66018 if (rv) { 32478e6a2a04Slm66018 rv = EINVAL; 32481ae08745Sheppo break; 32491ae08745Sheppo } 32501ae08745Sheppo 32511ae08745Sheppo /* 32521ae08745Sheppo * if there are no packets wait and check again 32531ae08745Sheppo */ 32548e6a2a04Slm66018 if ((rv == 0) && (msglen == 0)) { 32551ae08745Sheppo if (retries++ > vdc_dump_retries) { 32568e6a2a04Slm66018 rv = EAGAIN; 32571ae08745Sheppo break; 32581ae08745Sheppo } 32591ae08745Sheppo 3260d10e4ef2Snarayan drv_usecwait(vdc_usec_timeout_dump); 32611ae08745Sheppo continue; 32621ae08745Sheppo } 32631ae08745Sheppo 32641ae08745Sheppo /* 32651ae08745Sheppo * Ignore all messages that are not ACKs/NACKs to 32661ae08745Sheppo * DRing requests. 32671ae08745Sheppo */ 32681ae08745Sheppo if ((dmsg.tag.vio_msgtype != VIO_TYPE_DATA) || 32691ae08745Sheppo (dmsg.tag.vio_subtype_env != VIO_DRING_DATA)) { 32703af08d82Slm66018 DMSG(vdc, 0, "discard pkt: type=%d sub=%d env=%d\n", 32711ae08745Sheppo dmsg.tag.vio_msgtype, 32721ae08745Sheppo dmsg.tag.vio_subtype, 32731ae08745Sheppo dmsg.tag.vio_subtype_env); 32741ae08745Sheppo continue; 32751ae08745Sheppo } 32761ae08745Sheppo 32771ae08745Sheppo /* 32783af08d82Slm66018 * set the appropriate return value for the current request. 32791ae08745Sheppo */ 32801ae08745Sheppo switch (dmsg.tag.vio_subtype) { 32811ae08745Sheppo case VIO_SUBTYPE_ACK: 32828e6a2a04Slm66018 rv = 0; 32831ae08745Sheppo break; 32841ae08745Sheppo case VIO_SUBTYPE_NACK: 32858e6a2a04Slm66018 rv = EAGAIN; 32861ae08745Sheppo break; 32871ae08745Sheppo default: 32881ae08745Sheppo continue; 32891ae08745Sheppo } 32901ae08745Sheppo 32913af08d82Slm66018 idx = dmsg.start_idx; 32923af08d82Slm66018 if (idx >= vdc->dring_len) { 32933af08d82Slm66018 DMSG(vdc, 0, "[%d] Bogus ack data : start %d\n", 3294e1ebb9ecSlm66018 vdc->instance, idx); 32953af08d82Slm66018 continue; 32961ae08745Sheppo } 32973af08d82Slm66018 ldep = &vdc->local_dring[idx]; 32983af08d82Slm66018 if (ldep->dep->hdr.dstate != VIO_DESC_DONE) { 32993af08d82Slm66018 DMSG(vdc, 0, "[%d] Entry @ %d - state !DONE %d\n", 33003af08d82Slm66018 vdc->instance, idx, ldep->dep->hdr.dstate); 33011ae08745Sheppo continue; 33021ae08745Sheppo } 33031ae08745Sheppo 33043c2ebf09Sachartre if (buf != NULL && ldep->cb_type == CB_STRATEGY) { 33053c2ebf09Sachartre mbuf = ldep->cb_arg; 33063c2ebf09Sachartre mbuf->b_resid = mbuf->b_bcount - 33073c2ebf09Sachartre ldep->dep->payload.nbytes; 33083c2ebf09Sachartre bioerror(mbuf, (rv == EAGAIN)? EIO: 33093c2ebf09Sachartre ldep->dep->payload.status); 33103c2ebf09Sachartre biodone(mbuf); 33113c2ebf09Sachartre } else { 33123c2ebf09Sachartre mbuf = NULL; 33133c2ebf09Sachartre } 33143c2ebf09Sachartre 33153af08d82Slm66018 DMSG(vdc, 1, "[%d] Depopulating idx=%d state=%d\n", 33163af08d82Slm66018 vdc->instance, idx, ldep->dep->hdr.dstate); 3317366a92acSlm66018 33183af08d82Slm66018 rv = vdc_depopulate_descriptor(vdc, idx); 33193af08d82Slm66018 if (rv) { 33203af08d82Slm66018 DMSG(vdc, 0, 33213af08d82Slm66018 "[%d] Entry @ %d - depopulate failed ..\n", 33223af08d82Slm66018 vdc->instance, idx); 33231ae08745Sheppo } 33241ae08745Sheppo 33253c2ebf09Sachartre /* we have received an ACK/NACK for the specified buffer */ 33263c2ebf09Sachartre if (buf != NULL && buf == mbuf) { 33273c2ebf09Sachartre rv = 0; 33283af08d82Slm66018 break; 33293af08d82Slm66018 } 33303af08d82Slm66018 33313c2ebf09Sachartre /* if this is the last descriptor - break out of loop */ 33323c2ebf09Sachartre if ((idx + 1) % vdc->dring_len == vdc->dring_curr_idx) { 33333c2ebf09Sachartre if (buf != NULL) { 33343c2ebf09Sachartre /* 33353c2ebf09Sachartre * We never got a response for the specified 33363c2ebf09Sachartre * buffer so we fail the I/O. 33373c2ebf09Sachartre */ 33383c2ebf09Sachartre bioerror(buf, EIO); 33393c2ebf09Sachartre biodone(buf); 33403c2ebf09Sachartre } 33413c2ebf09Sachartre break; 33423c2ebf09Sachartre } 33433c2ebf09Sachartre } 33443c2ebf09Sachartre 33453af08d82Slm66018 mutex_exit(&vdc->lock); 33463af08d82Slm66018 DMSG(vdc, 0, "End idx=%d\n", idx); 33473af08d82Slm66018 33483af08d82Slm66018 return (rv); 33491ae08745Sheppo } 33501ae08745Sheppo 33511ae08745Sheppo 33520a55fbb7Slm66018 /* 33530a55fbb7Slm66018 * Function: 33540a55fbb7Slm66018 * vdc_depopulate_descriptor() 33550a55fbb7Slm66018 * 33560a55fbb7Slm66018 * Description: 33570a55fbb7Slm66018 * 33580a55fbb7Slm66018 * Arguments: 33590a55fbb7Slm66018 * vdc - soft state pointer for this instance of the device driver. 33600a55fbb7Slm66018 * idx - Index of the Descriptor Ring entry being modified 33610a55fbb7Slm66018 * 33620a55fbb7Slm66018 * Return Code: 33630a55fbb7Slm66018 * 0 - Success 33640a55fbb7Slm66018 */ 33651ae08745Sheppo static int 33661ae08745Sheppo vdc_depopulate_descriptor(vdc_t *vdc, uint_t idx) 33671ae08745Sheppo { 33681ae08745Sheppo vd_dring_entry_t *dep = NULL; /* Dring Entry Pointer */ 33691ae08745Sheppo vdc_local_desc_t *ldep = NULL; /* Local Dring Entry Pointer */ 33701ae08745Sheppo int status = ENXIO; 33718e6a2a04Slm66018 int rv = 0; 33721ae08745Sheppo 33731ae08745Sheppo ASSERT(vdc != NULL); 3374e1ebb9ecSlm66018 ASSERT(idx < vdc->dring_len); 33751ae08745Sheppo ldep = &vdc->local_dring[idx]; 33761ae08745Sheppo ASSERT(ldep != NULL); 33773af08d82Slm66018 ASSERT(MUTEX_HELD(&vdc->lock)); 33783af08d82Slm66018 3379366a92acSlm66018 DTRACE_PROBE2(depopulate, int, vdc->instance, vdc_local_desc_t *, ldep); 33803af08d82Slm66018 DMSG(vdc, 2, ": idx = %d\n", idx); 3381366a92acSlm66018 33821ae08745Sheppo dep = ldep->dep; 33831ae08745Sheppo ASSERT(dep != NULL); 3384e1ebb9ecSlm66018 ASSERT((dep->hdr.dstate == VIO_DESC_DONE) || 3385e1ebb9ecSlm66018 (dep->payload.status == ECANCELED)); 33861ae08745Sheppo 3387e1ebb9ecSlm66018 VDC_MARK_DRING_ENTRY_FREE(vdc, idx); 33883af08d82Slm66018 33893af08d82Slm66018 ldep->is_free = B_TRUE; 33901ae08745Sheppo status = dep->payload.status; 3391205eeb1aSlm66018 DMSG(vdc, 2, ": is_free = %d : status = %d\n", ldep->is_free, status); 33921ae08745Sheppo 3393eff7243fSlm66018 /* 3394eff7243fSlm66018 * If no buffers were used to transfer information to the server when 3395eff7243fSlm66018 * populating the descriptor then no memory handles need to be unbound 3396eff7243fSlm66018 * and we can return now. 3397eff7243fSlm66018 */ 3398eff7243fSlm66018 if (ldep->nbytes == 0) { 3399eff7243fSlm66018 cv_signal(&vdc->dring_free_cv); 34008e6a2a04Slm66018 return (status); 3401eff7243fSlm66018 } 34028e6a2a04Slm66018 34031ae08745Sheppo /* 34041ae08745Sheppo * If the upper layer passed in a misaligned address we copied the 34051ae08745Sheppo * data into an aligned buffer before sending it to LDC - we now 34061ae08745Sheppo * copy it back to the original buffer. 34071ae08745Sheppo */ 34081ae08745Sheppo if (ldep->align_addr) { 34091ae08745Sheppo ASSERT(ldep->addr != NULL); 34101ae08745Sheppo 34113c96341aSnarayan if (dep->payload.nbytes > 0) 34123c96341aSnarayan bcopy(ldep->align_addr, ldep->addr, 34133c96341aSnarayan dep->payload.nbytes); 34141ae08745Sheppo kmem_free(ldep->align_addr, 34153c96341aSnarayan sizeof (caddr_t) * P2ROUNDUP(ldep->nbytes, 8)); 34161ae08745Sheppo ldep->align_addr = NULL; 34171ae08745Sheppo } 34181ae08745Sheppo 34198e6a2a04Slm66018 rv = ldc_mem_unbind_handle(ldep->desc_mhdl); 34208e6a2a04Slm66018 if (rv != 0) { 34213af08d82Slm66018 DMSG(vdc, 0, "?[%d] unbind mhdl 0x%lx @ idx %d failed (%d)", 34228e6a2a04Slm66018 vdc->instance, ldep->desc_mhdl, idx, rv); 34238e6a2a04Slm66018 /* 34248e6a2a04Slm66018 * The error returned by the vDisk server is more informative 34258e6a2a04Slm66018 * and thus has a higher priority but if it isn't set we ensure 34268e6a2a04Slm66018 * that this function returns an error. 34278e6a2a04Slm66018 */ 34288e6a2a04Slm66018 if (status == 0) 34298e6a2a04Slm66018 status = EINVAL; 34301ae08745Sheppo } 34311ae08745Sheppo 34323af08d82Slm66018 cv_signal(&vdc->membind_cv); 34333af08d82Slm66018 cv_signal(&vdc->dring_free_cv); 34343af08d82Slm66018 34351ae08745Sheppo return (status); 34361ae08745Sheppo } 34371ae08745Sheppo 34380a55fbb7Slm66018 /* 34390a55fbb7Slm66018 * Function: 34400a55fbb7Slm66018 * vdc_populate_mem_hdl() 34410a55fbb7Slm66018 * 34420a55fbb7Slm66018 * Description: 34430a55fbb7Slm66018 * 34440a55fbb7Slm66018 * Arguments: 34450a55fbb7Slm66018 * vdc - soft state pointer for this instance of the device driver. 34460a55fbb7Slm66018 * idx - Index of the Descriptor Ring entry being modified 34470a55fbb7Slm66018 * addr - virtual address being mapped in 34480a55fbb7Slm66018 * nybtes - number of bytes in 'addr' 34490a55fbb7Slm66018 * operation - the vDisk operation being performed (VD_OP_xxx) 34500a55fbb7Slm66018 * 34510a55fbb7Slm66018 * Return Code: 34520a55fbb7Slm66018 * 0 - Success 34530a55fbb7Slm66018 */ 34541ae08745Sheppo static int 34553af08d82Slm66018 vdc_populate_mem_hdl(vdc_t *vdcp, vdc_local_desc_t *ldep) 34561ae08745Sheppo { 34571ae08745Sheppo vd_dring_entry_t *dep = NULL; 34581ae08745Sheppo ldc_mem_handle_t mhdl; 34591ae08745Sheppo caddr_t vaddr; 34603af08d82Slm66018 size_t nbytes; 34614bac2208Snarayan uint8_t perm = LDC_MEM_RW; 34624bac2208Snarayan uint8_t maptype; 34631ae08745Sheppo int rv = 0; 34641ae08745Sheppo int i; 34651ae08745Sheppo 34663af08d82Slm66018 ASSERT(vdcp != NULL); 34671ae08745Sheppo 34683af08d82Slm66018 dep = ldep->dep; 34691ae08745Sheppo mhdl = ldep->desc_mhdl; 34701ae08745Sheppo 34713af08d82Slm66018 switch (ldep->dir) { 34723af08d82Slm66018 case VIO_read_dir: 34731ae08745Sheppo perm = LDC_MEM_W; 34741ae08745Sheppo break; 34751ae08745Sheppo 34763af08d82Slm66018 case VIO_write_dir: 34771ae08745Sheppo perm = LDC_MEM_R; 34781ae08745Sheppo break; 34791ae08745Sheppo 34803af08d82Slm66018 case VIO_both_dir: 34811ae08745Sheppo perm = LDC_MEM_RW; 34821ae08745Sheppo break; 34831ae08745Sheppo 34841ae08745Sheppo default: 34851ae08745Sheppo ASSERT(0); /* catch bad programming in vdc */ 34861ae08745Sheppo } 34871ae08745Sheppo 34881ae08745Sheppo /* 34891ae08745Sheppo * LDC expects any addresses passed in to be 8-byte aligned. We need 34901ae08745Sheppo * to copy the contents of any misaligned buffers to a newly allocated 34911ae08745Sheppo * buffer and bind it instead (and copy the the contents back to the 34921ae08745Sheppo * original buffer passed in when depopulating the descriptor) 34931ae08745Sheppo */ 34943af08d82Slm66018 vaddr = ldep->addr; 34953af08d82Slm66018 nbytes = ldep->nbytes; 34963af08d82Slm66018 if (((uint64_t)vaddr & 0x7) != 0) { 3497d10e4ef2Snarayan ASSERT(ldep->align_addr == NULL); 34981ae08745Sheppo ldep->align_addr = 34993af08d82Slm66018 kmem_alloc(sizeof (caddr_t) * 35003af08d82Slm66018 P2ROUNDUP(nbytes, 8), KM_SLEEP); 35013af08d82Slm66018 DMSG(vdcp, 0, "[%d] Misaligned address %p reallocating " 35023af08d82Slm66018 "(buf=%p nb=%ld op=%d)\n", 35033af08d82Slm66018 vdcp->instance, (void *)vaddr, (void *)ldep->align_addr, 35043af08d82Slm66018 nbytes, ldep->operation); 35053af08d82Slm66018 if (perm != LDC_MEM_W) 35063af08d82Slm66018 bcopy(vaddr, ldep->align_addr, nbytes); 35071ae08745Sheppo vaddr = ldep->align_addr; 35081ae08745Sheppo } 35091ae08745Sheppo 35104bac2208Snarayan maptype = LDC_IO_MAP|LDC_SHADOW_MAP|LDC_DIRECT_MAP; 35111ae08745Sheppo rv = ldc_mem_bind_handle(mhdl, vaddr, P2ROUNDUP(nbytes, 8), 351287a7269eSachartre maptype, perm, &dep->payload.cookie[0], &dep->payload.ncookies); 35133af08d82Slm66018 DMSG(vdcp, 2, "[%d] bound mem handle; ncookies=%d\n", 35143af08d82Slm66018 vdcp->instance, dep->payload.ncookies); 35151ae08745Sheppo if (rv != 0) { 35163af08d82Slm66018 DMSG(vdcp, 0, "[%d] Failed to bind LDC memory handle " 35173af08d82Slm66018 "(mhdl=%p, buf=%p, err=%d)\n", 35183af08d82Slm66018 vdcp->instance, (void *)mhdl, (void *)vaddr, rv); 35191ae08745Sheppo if (ldep->align_addr) { 35201ae08745Sheppo kmem_free(ldep->align_addr, 3521d10e4ef2Snarayan sizeof (caddr_t) * P2ROUNDUP(nbytes, 8)); 35221ae08745Sheppo ldep->align_addr = NULL; 35231ae08745Sheppo } 35241ae08745Sheppo return (EAGAIN); 35251ae08745Sheppo } 35261ae08745Sheppo 35271ae08745Sheppo /* 35281ae08745Sheppo * Get the other cookies (if any). 35291ae08745Sheppo */ 35301ae08745Sheppo for (i = 1; i < dep->payload.ncookies; i++) { 35311ae08745Sheppo rv = ldc_mem_nextcookie(mhdl, &dep->payload.cookie[i]); 35321ae08745Sheppo if (rv != 0) { 35331ae08745Sheppo (void) ldc_mem_unbind_handle(mhdl); 35343af08d82Slm66018 DMSG(vdcp, 0, "?[%d] Failed to get next cookie " 3535e1ebb9ecSlm66018 "(mhdl=%lx cnum=%d), err=%d", 35363af08d82Slm66018 vdcp->instance, mhdl, i, rv); 35371ae08745Sheppo if (ldep->align_addr) { 35381ae08745Sheppo kmem_free(ldep->align_addr, 35393c96341aSnarayan sizeof (caddr_t) * ldep->nbytes); 35401ae08745Sheppo ldep->align_addr = NULL; 35411ae08745Sheppo } 35421ae08745Sheppo return (EAGAIN); 35431ae08745Sheppo } 35441ae08745Sheppo } 35451ae08745Sheppo 35461ae08745Sheppo return (rv); 35471ae08745Sheppo } 35481ae08745Sheppo 35491ae08745Sheppo /* 35501ae08745Sheppo * Interrupt handlers for messages from LDC 35511ae08745Sheppo */ 35521ae08745Sheppo 35530a55fbb7Slm66018 /* 35540a55fbb7Slm66018 * Function: 35550a55fbb7Slm66018 * vdc_handle_cb() 35560a55fbb7Slm66018 * 35570a55fbb7Slm66018 * Description: 35580a55fbb7Slm66018 * 35590a55fbb7Slm66018 * Arguments: 35600a55fbb7Slm66018 * event - Type of event (LDC_EVT_xxx) that triggered the callback 35610a55fbb7Slm66018 * arg - soft state pointer for this instance of the device driver. 35620a55fbb7Slm66018 * 35630a55fbb7Slm66018 * Return Code: 35640a55fbb7Slm66018 * 0 - Success 35650a55fbb7Slm66018 */ 35661ae08745Sheppo static uint_t 35671ae08745Sheppo vdc_handle_cb(uint64_t event, caddr_t arg) 35681ae08745Sheppo { 35691ae08745Sheppo ldc_status_t ldc_state; 35701ae08745Sheppo int rv = 0; 35718cd10891Snarayan vdc_server_t *srvr = (vdc_server_t *)(void *)arg; 35728cd10891Snarayan vdc_t *vdc = srvr->vdcp; 35731ae08745Sheppo 35741ae08745Sheppo ASSERT(vdc != NULL); 35751ae08745Sheppo 35763af08d82Slm66018 DMSG(vdc, 1, "evt=%lx seqID=%ld\n", event, vdc->seq_num); 35771ae08745Sheppo 35788cd10891Snarayan /* If callback is not for the current server, ignore it */ 35798cd10891Snarayan mutex_enter(&vdc->lock); 35808cd10891Snarayan 35818cd10891Snarayan if (vdc->curr_server != srvr) { 35828cd10891Snarayan DMSG(vdc, 0, "[%d] Ignoring event 0x%lx for port@%ld\n", 35838cd10891Snarayan vdc->instance, event, srvr->id); 35848cd10891Snarayan mutex_exit(&vdc->lock); 35858cd10891Snarayan return (LDC_SUCCESS); 35868cd10891Snarayan } 35878cd10891Snarayan 35881ae08745Sheppo /* 35891ae08745Sheppo * Depending on the type of event that triggered this callback, 35903af08d82Slm66018 * we modify the handshake state or read the data. 35911ae08745Sheppo * 35921ae08745Sheppo * NOTE: not done as a switch() as event could be triggered by 35931ae08745Sheppo * a state change and a read request. Also the ordering of the 35941ae08745Sheppo * check for the event types is deliberate. 35951ae08745Sheppo */ 35961ae08745Sheppo if (event & LDC_EVT_UP) { 35973af08d82Slm66018 DMSG(vdc, 0, "[%d] Received LDC_EVT_UP\n", vdc->instance); 35983af08d82Slm66018 35991ae08745Sheppo /* get LDC state */ 36008cd10891Snarayan rv = ldc_status(srvr->ldc_handle, &ldc_state); 36011ae08745Sheppo if (rv != 0) { 36023af08d82Slm66018 DMSG(vdc, 0, "[%d] Couldn't get LDC status %d", 36031ae08745Sheppo vdc->instance, rv); 36048cd10891Snarayan mutex_exit(&vdc->lock); 36051ae08745Sheppo return (LDC_SUCCESS); 36061ae08745Sheppo } 36078cd10891Snarayan if (srvr->ldc_state != LDC_UP && 36088cd10891Snarayan ldc_state == LDC_UP) { 36091ae08745Sheppo /* 36103af08d82Slm66018 * Reset the transaction sequence numbers when 36113af08d82Slm66018 * LDC comes up. We then kick off the handshake 36123af08d82Slm66018 * negotiation with the vDisk server. 36131ae08745Sheppo */ 36140a55fbb7Slm66018 vdc->seq_num = 1; 36151ae08745Sheppo vdc->seq_num_reply = 0; 36168cd10891Snarayan srvr->ldc_state = ldc_state; 36173af08d82Slm66018 cv_signal(&vdc->initwait_cv); 36183af08d82Slm66018 } 36191ae08745Sheppo } 36201ae08745Sheppo 36211ae08745Sheppo if (event & LDC_EVT_READ) { 362217cadca8Slm66018 DMSG(vdc, 1, "[%d] Received LDC_EVT_READ\n", vdc->instance); 36233af08d82Slm66018 mutex_enter(&vdc->read_lock); 36243af08d82Slm66018 cv_signal(&vdc->read_cv); 36253af08d82Slm66018 vdc->read_state = VDC_READ_PENDING; 36263af08d82Slm66018 mutex_exit(&vdc->read_lock); 36278cd10891Snarayan mutex_exit(&vdc->lock); 36281ae08745Sheppo 36291ae08745Sheppo /* that's all we have to do - no need to handle DOWN/RESET */ 36301ae08745Sheppo return (LDC_SUCCESS); 36311ae08745Sheppo } 36321ae08745Sheppo 36333af08d82Slm66018 if (event & (LDC_EVT_RESET|LDC_EVT_DOWN)) { 36340a55fbb7Slm66018 36353af08d82Slm66018 DMSG(vdc, 0, "[%d] Received LDC RESET event\n", vdc->instance); 36363af08d82Slm66018 36373af08d82Slm66018 /* 36383af08d82Slm66018 * Need to wake up any readers so they will 36393af08d82Slm66018 * detect that a reset has occurred. 36403af08d82Slm66018 */ 36413af08d82Slm66018 mutex_enter(&vdc->read_lock); 36423af08d82Slm66018 if ((vdc->read_state == VDC_READ_WAITING) || 36433af08d82Slm66018 (vdc->read_state == VDC_READ_RESET)) 36443af08d82Slm66018 cv_signal(&vdc->read_cv); 36453af08d82Slm66018 vdc->read_state = VDC_READ_RESET; 36463af08d82Slm66018 mutex_exit(&vdc->read_lock); 36470a55fbb7Slm66018 36483af08d82Slm66018 /* wake up any threads waiting for connection to come up */ 36493af08d82Slm66018 if (vdc->state == VDC_STATE_INIT_WAITING) { 36503af08d82Slm66018 vdc->state = VDC_STATE_RESETTING; 36513af08d82Slm66018 cv_signal(&vdc->initwait_cv); 36521ae08745Sheppo } 36531ae08745Sheppo 36541ae08745Sheppo } 36551ae08745Sheppo 36568cd10891Snarayan mutex_exit(&vdc->lock); 36578cd10891Snarayan 36581ae08745Sheppo if (event & ~(LDC_EVT_UP | LDC_EVT_RESET | LDC_EVT_DOWN | LDC_EVT_READ)) 36593af08d82Slm66018 DMSG(vdc, 0, "![%d] Unexpected LDC event (%lx) received", 36601ae08745Sheppo vdc->instance, event); 36611ae08745Sheppo 36621ae08745Sheppo return (LDC_SUCCESS); 36631ae08745Sheppo } 36641ae08745Sheppo 36653af08d82Slm66018 /* 36663af08d82Slm66018 * Function: 36673af08d82Slm66018 * vdc_wait_for_response() 36683af08d82Slm66018 * 36693af08d82Slm66018 * Description: 36703af08d82Slm66018 * Block waiting for a response from the server. If there is 36713af08d82Slm66018 * no data the thread block on the read_cv that is signalled 36723af08d82Slm66018 * by the callback when an EVT_READ occurs. 36733af08d82Slm66018 * 36743af08d82Slm66018 * Arguments: 36753af08d82Slm66018 * vdcp - soft state pointer for this instance of the device driver. 36763af08d82Slm66018 * 36773af08d82Slm66018 * Return Code: 36783af08d82Slm66018 * 0 - Success 36793af08d82Slm66018 */ 36803af08d82Slm66018 static int 36813af08d82Slm66018 vdc_wait_for_response(vdc_t *vdcp, vio_msg_t *msgp) 36823af08d82Slm66018 { 36833af08d82Slm66018 size_t nbytes = sizeof (*msgp); 36843af08d82Slm66018 int status; 36853af08d82Slm66018 36863af08d82Slm66018 ASSERT(vdcp != NULL); 36873af08d82Slm66018 36883af08d82Slm66018 DMSG(vdcp, 1, "[%d] Entered\n", vdcp->instance); 36893af08d82Slm66018 36903af08d82Slm66018 status = vdc_recv(vdcp, msgp, &nbytes); 36913af08d82Slm66018 DMSG(vdcp, 3, "vdc_read() done.. status=0x%x size=0x%x\n", 36923af08d82Slm66018 status, (int)nbytes); 36933af08d82Slm66018 if (status) { 36943af08d82Slm66018 DMSG(vdcp, 0, "?[%d] Error %d reading LDC msg\n", 36953af08d82Slm66018 vdcp->instance, status); 36963af08d82Slm66018 return (status); 36973af08d82Slm66018 } 36983af08d82Slm66018 36993af08d82Slm66018 if (nbytes < sizeof (vio_msg_tag_t)) { 37003af08d82Slm66018 DMSG(vdcp, 0, "?[%d] Expect %lu bytes; recv'd %lu\n", 37013af08d82Slm66018 vdcp->instance, sizeof (vio_msg_tag_t), nbytes); 37023af08d82Slm66018 return (ENOMSG); 37033af08d82Slm66018 } 37043af08d82Slm66018 37053af08d82Slm66018 DMSG(vdcp, 2, "[%d] (%x/%x/%x)\n", vdcp->instance, 37063af08d82Slm66018 msgp->tag.vio_msgtype, 37073af08d82Slm66018 msgp->tag.vio_subtype, 37083af08d82Slm66018 msgp->tag.vio_subtype_env); 37093af08d82Slm66018 37103af08d82Slm66018 /* 37113af08d82Slm66018 * Verify the Session ID of the message 37123af08d82Slm66018 * 37133af08d82Slm66018 * Every message after the Version has been negotiated should 37143af08d82Slm66018 * have the correct session ID set. 37153af08d82Slm66018 */ 37163af08d82Slm66018 if ((msgp->tag.vio_sid != vdcp->session_id) && 37173af08d82Slm66018 (msgp->tag.vio_subtype_env != VIO_VER_INFO)) { 37183af08d82Slm66018 DMSG(vdcp, 0, "[%d] Invalid SID: received 0x%x, " 37193af08d82Slm66018 "expected 0x%lx [seq num %lx @ %d]", 37203af08d82Slm66018 vdcp->instance, msgp->tag.vio_sid, 37213af08d82Slm66018 vdcp->session_id, 37223af08d82Slm66018 ((vio_dring_msg_t *)msgp)->seq_num, 37233af08d82Slm66018 ((vio_dring_msg_t *)msgp)->start_idx); 37243af08d82Slm66018 return (ENOMSG); 37253af08d82Slm66018 } 37263af08d82Slm66018 return (0); 37273af08d82Slm66018 } 37283af08d82Slm66018 37293af08d82Slm66018 37303af08d82Slm66018 /* 37313af08d82Slm66018 * Function: 37323af08d82Slm66018 * vdc_resubmit_backup_dring() 37333af08d82Slm66018 * 37343af08d82Slm66018 * Description: 37353af08d82Slm66018 * Resubmit each descriptor in the backed up dring to 37363af08d82Slm66018 * vDisk server. The Dring was backed up during connection 37373af08d82Slm66018 * reset. 37383af08d82Slm66018 * 37393af08d82Slm66018 * Arguments: 37403af08d82Slm66018 * vdcp - soft state pointer for this instance of the device driver. 37413af08d82Slm66018 * 37423af08d82Slm66018 * Return Code: 37433af08d82Slm66018 * 0 - Success 37443af08d82Slm66018 */ 37453af08d82Slm66018 static int 37463af08d82Slm66018 vdc_resubmit_backup_dring(vdc_t *vdcp) 37473af08d82Slm66018 { 374890e2f9dcSlm66018 int processed = 0; 37493af08d82Slm66018 int count; 37503af08d82Slm66018 int b_idx; 375190e2f9dcSlm66018 int rv = 0; 37523af08d82Slm66018 int dring_size; 375390e2f9dcSlm66018 int op; 37543af08d82Slm66018 vio_msg_t vio_msg; 37553af08d82Slm66018 vdc_local_desc_t *curr_ldep; 37563af08d82Slm66018 37573af08d82Slm66018 ASSERT(MUTEX_NOT_HELD(&vdcp->lock)); 37583af08d82Slm66018 ASSERT(vdcp->state == VDC_STATE_HANDLE_PENDING); 37593af08d82Slm66018 3760655fd6a9Sachartre if (vdcp->local_dring_backup == NULL) { 3761655fd6a9Sachartre /* the pending requests have already been processed */ 3762655fd6a9Sachartre return (0); 3763655fd6a9Sachartre } 3764655fd6a9Sachartre 37653af08d82Slm66018 DMSG(vdcp, 1, "restoring pending dring entries (len=%d, tail=%d)\n", 37663af08d82Slm66018 vdcp->local_dring_backup_len, vdcp->local_dring_backup_tail); 37673af08d82Slm66018 37683af08d82Slm66018 /* 37693af08d82Slm66018 * Walk the backup copy of the local descriptor ring and 37703af08d82Slm66018 * resubmit all the outstanding transactions. 37713af08d82Slm66018 */ 37723af08d82Slm66018 b_idx = vdcp->local_dring_backup_tail; 37733af08d82Slm66018 for (count = 0; count < vdcp->local_dring_backup_len; count++) { 37743af08d82Slm66018 37753af08d82Slm66018 curr_ldep = &(vdcp->local_dring_backup[b_idx]); 37763af08d82Slm66018 3777eff7243fSlm66018 /* only resubmit outstanding transactions */ 37783af08d82Slm66018 if (!curr_ldep->is_free) { 377990e2f9dcSlm66018 /* 378090e2f9dcSlm66018 * If we are retrying a block read/write operation we 378190e2f9dcSlm66018 * need to update the I/O statistics to indicate that 378290e2f9dcSlm66018 * the request is being put back on the waitq to be 378390e2f9dcSlm66018 * serviced (it will have been taken off after the 378490e2f9dcSlm66018 * error was reported). 378590e2f9dcSlm66018 */ 378690e2f9dcSlm66018 mutex_enter(&vdcp->lock); 378790e2f9dcSlm66018 op = curr_ldep->operation; 378890e2f9dcSlm66018 if ((op == VD_OP_BREAD) || (op == VD_OP_BWRITE)) { 378990e2f9dcSlm66018 DTRACE_IO1(start, buf_t *, curr_ldep->cb_arg); 379090e2f9dcSlm66018 VD_KSTAT_WAITQ_ENTER(vdcp); 379190e2f9dcSlm66018 } 37923af08d82Slm66018 37933af08d82Slm66018 DMSG(vdcp, 1, "resubmitting entry idx=%x\n", b_idx); 379490e2f9dcSlm66018 rv = vdc_populate_descriptor(vdcp, op, 37953af08d82Slm66018 curr_ldep->addr, curr_ldep->nbytes, 37963af08d82Slm66018 curr_ldep->slice, curr_ldep->offset, 37973af08d82Slm66018 curr_ldep->cb_type, curr_ldep->cb_arg, 37983af08d82Slm66018 curr_ldep->dir); 379990e2f9dcSlm66018 38003af08d82Slm66018 if (rv) { 380190e2f9dcSlm66018 if (op == VD_OP_BREAD || op == VD_OP_BWRITE) { 380290e2f9dcSlm66018 VD_UPDATE_ERR_STATS(vdcp, vd_transerrs); 380390e2f9dcSlm66018 VD_KSTAT_WAITQ_EXIT(vdcp); 380490e2f9dcSlm66018 DTRACE_IO1(done, buf_t *, 380590e2f9dcSlm66018 curr_ldep->cb_arg); 380690e2f9dcSlm66018 } 38073af08d82Slm66018 DMSG(vdcp, 1, "[%d] cannot resubmit entry %d\n", 38083af08d82Slm66018 vdcp->instance, b_idx); 380990e2f9dcSlm66018 mutex_exit(&vdcp->lock); 381090e2f9dcSlm66018 goto done; 38113af08d82Slm66018 } 38123af08d82Slm66018 381390e2f9dcSlm66018 /* 381490e2f9dcSlm66018 * If this is a block read/write we update the I/O 381590e2f9dcSlm66018 * statistics kstat to indicate that the request 381690e2f9dcSlm66018 * has been sent back to the vDisk server and should 381790e2f9dcSlm66018 * now be put on the run queue. 381890e2f9dcSlm66018 */ 381990e2f9dcSlm66018 if ((op == VD_OP_BREAD) || (op == VD_OP_BWRITE)) { 382090e2f9dcSlm66018 DTRACE_PROBE1(send, buf_t *, curr_ldep->cb_arg); 382190e2f9dcSlm66018 VD_KSTAT_WAITQ_TO_RUNQ(vdcp); 382290e2f9dcSlm66018 } 382390e2f9dcSlm66018 mutex_exit(&vdcp->lock); 382490e2f9dcSlm66018 38253af08d82Slm66018 /* Wait for the response message. */ 38263af08d82Slm66018 DMSG(vdcp, 1, "waiting for response to idx=%x\n", 38273af08d82Slm66018 b_idx); 382890e2f9dcSlm66018 rv = vdc_wait_for_response(vdcp, &vio_msg); 382990e2f9dcSlm66018 if (rv) { 383090e2f9dcSlm66018 /* 383190e2f9dcSlm66018 * If this is a block read/write we update 383290e2f9dcSlm66018 * the I/O statistics kstat to take it 383390e2f9dcSlm66018 * off the run queue. 383490e2f9dcSlm66018 */ 383590e2f9dcSlm66018 mutex_enter(&vdcp->lock); 383690e2f9dcSlm66018 if (op == VD_OP_BREAD || op == VD_OP_BWRITE) { 383790e2f9dcSlm66018 VD_UPDATE_ERR_STATS(vdcp, vd_transerrs); 383890e2f9dcSlm66018 VD_KSTAT_RUNQ_EXIT(vdcp); 383990e2f9dcSlm66018 DTRACE_IO1(done, buf_t *, 384090e2f9dcSlm66018 curr_ldep->cb_arg); 384190e2f9dcSlm66018 } 38423af08d82Slm66018 DMSG(vdcp, 1, "[%d] wait_for_response " 38433af08d82Slm66018 "returned err=%d\n", vdcp->instance, 384490e2f9dcSlm66018 rv); 384590e2f9dcSlm66018 mutex_exit(&vdcp->lock); 384690e2f9dcSlm66018 goto done; 38473af08d82Slm66018 } 38483af08d82Slm66018 38493af08d82Slm66018 DMSG(vdcp, 1, "processing msg for idx=%x\n", b_idx); 385090e2f9dcSlm66018 rv = vdc_process_data_msg(vdcp, &vio_msg); 385190e2f9dcSlm66018 if (rv) { 38523af08d82Slm66018 DMSG(vdcp, 1, "[%d] process_data_msg " 38533af08d82Slm66018 "returned err=%d\n", vdcp->instance, 385490e2f9dcSlm66018 rv); 385590e2f9dcSlm66018 goto done; 38563af08d82Slm66018 } 3857630f014dSrameshc /* 3858630f014dSrameshc * Mark this entry as free so that we will not resubmit 3859630f014dSrameshc * this "done" request again, if we were to use the same 3860630f014dSrameshc * backup_dring again in future. This could happen when 3861630f014dSrameshc * a reset happens while processing the backup_dring. 3862630f014dSrameshc */ 3863630f014dSrameshc curr_ldep->is_free = B_TRUE; 386490e2f9dcSlm66018 processed++; 38653af08d82Slm66018 } 38663af08d82Slm66018 38673af08d82Slm66018 /* get the next element to submit */ 38683af08d82Slm66018 if (++b_idx >= vdcp->local_dring_backup_len) 38693af08d82Slm66018 b_idx = 0; 38703af08d82Slm66018 } 38713af08d82Slm66018 38723af08d82Slm66018 /* all done - now clear up pending dring copy */ 38733af08d82Slm66018 dring_size = vdcp->local_dring_backup_len * 38743af08d82Slm66018 sizeof (vdcp->local_dring_backup[0]); 38753af08d82Slm66018 38763af08d82Slm66018 (void) kmem_free(vdcp->local_dring_backup, dring_size); 38773af08d82Slm66018 38783af08d82Slm66018 vdcp->local_dring_backup = NULL; 38793af08d82Slm66018 388090e2f9dcSlm66018 done: 388190e2f9dcSlm66018 DTRACE_PROBE2(processed, int, processed, vdc_t *, vdcp); 388290e2f9dcSlm66018 388390e2f9dcSlm66018 return (rv); 38843af08d82Slm66018 } 38853af08d82Slm66018 38863af08d82Slm66018 /* 38873af08d82Slm66018 * Function: 3888655fd6a9Sachartre * vdc_cancel_backup_dring 3889655fd6a9Sachartre * 3890655fd6a9Sachartre * Description: 3891655fd6a9Sachartre * Cancel each descriptor in the backed up dring to vDisk server. 3892655fd6a9Sachartre * The Dring was backed up during connection reset. 3893655fd6a9Sachartre * 3894655fd6a9Sachartre * Arguments: 3895655fd6a9Sachartre * vdcp - soft state pointer for this instance of the device driver. 3896655fd6a9Sachartre * 3897655fd6a9Sachartre * Return Code: 3898655fd6a9Sachartre * None 3899655fd6a9Sachartre */ 3900655fd6a9Sachartre void 390190e2f9dcSlm66018 vdc_cancel_backup_dring(vdc_t *vdcp) 3902655fd6a9Sachartre { 3903655fd6a9Sachartre vdc_local_desc_t *ldep; 3904655fd6a9Sachartre struct buf *bufp; 3905655fd6a9Sachartre int count; 3906655fd6a9Sachartre int b_idx; 3907655fd6a9Sachartre int dring_size; 390890e2f9dcSlm66018 int cancelled = 0; 3909655fd6a9Sachartre 3910655fd6a9Sachartre ASSERT(MUTEX_HELD(&vdcp->lock)); 3911655fd6a9Sachartre ASSERT(vdcp->state == VDC_STATE_INIT || 3912655fd6a9Sachartre vdcp->state == VDC_STATE_INIT_WAITING || 3913655fd6a9Sachartre vdcp->state == VDC_STATE_NEGOTIATE || 3914655fd6a9Sachartre vdcp->state == VDC_STATE_RESETTING); 3915655fd6a9Sachartre 3916655fd6a9Sachartre if (vdcp->local_dring_backup == NULL) { 3917655fd6a9Sachartre /* the pending requests have already been processed */ 3918655fd6a9Sachartre return; 3919655fd6a9Sachartre } 3920655fd6a9Sachartre 3921655fd6a9Sachartre DMSG(vdcp, 1, "cancelling pending dring entries (len=%d, tail=%d)\n", 3922655fd6a9Sachartre vdcp->local_dring_backup_len, vdcp->local_dring_backup_tail); 3923655fd6a9Sachartre 3924655fd6a9Sachartre /* 3925655fd6a9Sachartre * Walk the backup copy of the local descriptor ring and 3926655fd6a9Sachartre * cancel all the outstanding transactions. 3927655fd6a9Sachartre */ 3928655fd6a9Sachartre b_idx = vdcp->local_dring_backup_tail; 3929655fd6a9Sachartre for (count = 0; count < vdcp->local_dring_backup_len; count++) { 3930655fd6a9Sachartre 3931655fd6a9Sachartre ldep = &(vdcp->local_dring_backup[b_idx]); 3932655fd6a9Sachartre 3933655fd6a9Sachartre /* only cancel outstanding transactions */ 3934655fd6a9Sachartre if (!ldep->is_free) { 3935655fd6a9Sachartre 3936655fd6a9Sachartre DMSG(vdcp, 1, "cancelling entry idx=%x\n", b_idx); 393790e2f9dcSlm66018 cancelled++; 3938655fd6a9Sachartre 3939655fd6a9Sachartre /* 3940655fd6a9Sachartre * All requests have already been cleared from the 3941655fd6a9Sachartre * local descriptor ring and the LDC channel has been 3942655fd6a9Sachartre * reset so we will never get any reply for these 3943655fd6a9Sachartre * requests. Now we just have to notify threads waiting 3944655fd6a9Sachartre * for replies that the request has failed. 3945655fd6a9Sachartre */ 3946655fd6a9Sachartre switch (ldep->cb_type) { 3947655fd6a9Sachartre case CB_SYNC: 3948655fd6a9Sachartre ASSERT(vdcp->sync_op_pending); 3949655fd6a9Sachartre vdcp->sync_op_status = EIO; 3950655fd6a9Sachartre vdcp->sync_op_pending = B_FALSE; 3951655fd6a9Sachartre cv_signal(&vdcp->sync_pending_cv); 3952655fd6a9Sachartre break; 3953655fd6a9Sachartre 3954655fd6a9Sachartre case CB_STRATEGY: 3955655fd6a9Sachartre bufp = ldep->cb_arg; 3956655fd6a9Sachartre ASSERT(bufp != NULL); 3957655fd6a9Sachartre bufp->b_resid = bufp->b_bcount; 3958366a92acSlm66018 VD_UPDATE_ERR_STATS(vdcp, vd_softerrs); 395990e2f9dcSlm66018 VD_KSTAT_RUNQ_EXIT(vdcp); 3960366a92acSlm66018 DTRACE_IO1(done, buf_t *, bufp); 3961655fd6a9Sachartre bioerror(bufp, EIO); 3962655fd6a9Sachartre biodone(bufp); 3963655fd6a9Sachartre break; 3964655fd6a9Sachartre 3965655fd6a9Sachartre default: 3966655fd6a9Sachartre ASSERT(0); 3967655fd6a9Sachartre } 3968655fd6a9Sachartre 3969655fd6a9Sachartre } 3970655fd6a9Sachartre 3971655fd6a9Sachartre /* get the next element to cancel */ 3972655fd6a9Sachartre if (++b_idx >= vdcp->local_dring_backup_len) 3973655fd6a9Sachartre b_idx = 0; 3974655fd6a9Sachartre } 3975655fd6a9Sachartre 3976655fd6a9Sachartre /* all done - now clear up pending dring copy */ 3977655fd6a9Sachartre dring_size = vdcp->local_dring_backup_len * 3978655fd6a9Sachartre sizeof (vdcp->local_dring_backup[0]); 3979655fd6a9Sachartre 3980655fd6a9Sachartre (void) kmem_free(vdcp->local_dring_backup, dring_size); 3981655fd6a9Sachartre 3982655fd6a9Sachartre vdcp->local_dring_backup = NULL; 3983655fd6a9Sachartre 398490e2f9dcSlm66018 DTRACE_PROBE2(cancelled, int, cancelled, vdc_t *, vdcp); 3985655fd6a9Sachartre } 3986655fd6a9Sachartre 3987655fd6a9Sachartre /* 3988655fd6a9Sachartre * Function: 3989655fd6a9Sachartre * vdc_connection_timeout 3990655fd6a9Sachartre * 3991655fd6a9Sachartre * Description: 3992655fd6a9Sachartre * This function is invoked if the timeout set to establish the connection 3993655fd6a9Sachartre * with vds expires. This will happen if we spend too much time in the 3994655fd6a9Sachartre * VDC_STATE_INIT_WAITING or VDC_STATE_NEGOTIATE states. Then we will 3995655fd6a9Sachartre * cancel any pending request and mark them as failed. 3996655fd6a9Sachartre * 3997655fd6a9Sachartre * If the timeout does not expire, it will be cancelled when we reach the 3998655fd6a9Sachartre * VDC_STATE_HANDLE_PENDING or VDC_STATE_RESETTING state. This function can 3999655fd6a9Sachartre * be invoked while we are in the VDC_STATE_HANDLE_PENDING or 4000655fd6a9Sachartre * VDC_STATE_RESETTING state in which case we do nothing because the 4001655fd6a9Sachartre * timeout is being cancelled. 4002655fd6a9Sachartre * 4003655fd6a9Sachartre * Arguments: 4004655fd6a9Sachartre * arg - argument of the timeout function actually a soft state 4005655fd6a9Sachartre * pointer for the instance of the device driver. 4006655fd6a9Sachartre * 4007655fd6a9Sachartre * Return Code: 4008655fd6a9Sachartre * None 4009655fd6a9Sachartre */ 4010655fd6a9Sachartre void 4011655fd6a9Sachartre vdc_connection_timeout(void *arg) 4012655fd6a9Sachartre { 4013655fd6a9Sachartre vdc_t *vdcp = (vdc_t *)arg; 4014655fd6a9Sachartre 4015655fd6a9Sachartre mutex_enter(&vdcp->lock); 4016655fd6a9Sachartre 4017655fd6a9Sachartre if (vdcp->state == VDC_STATE_HANDLE_PENDING || 4018655fd6a9Sachartre vdcp->state == VDC_STATE_DETACH) { 4019655fd6a9Sachartre /* 4020655fd6a9Sachartre * The connection has just been re-established or 4021655fd6a9Sachartre * we are detaching. 4022655fd6a9Sachartre */ 4023655fd6a9Sachartre vdcp->ctimeout_reached = B_FALSE; 4024655fd6a9Sachartre mutex_exit(&vdcp->lock); 4025655fd6a9Sachartre return; 4026655fd6a9Sachartre } 4027655fd6a9Sachartre 4028655fd6a9Sachartre vdcp->ctimeout_reached = B_TRUE; 4029655fd6a9Sachartre 4030655fd6a9Sachartre /* notify requests waiting for sending */ 4031655fd6a9Sachartre cv_broadcast(&vdcp->running_cv); 4032655fd6a9Sachartre 4033655fd6a9Sachartre /* cancel requests waiting for a result */ 403490e2f9dcSlm66018 vdc_cancel_backup_dring(vdcp); 4035655fd6a9Sachartre 4036655fd6a9Sachartre mutex_exit(&vdcp->lock); 4037655fd6a9Sachartre 4038655fd6a9Sachartre cmn_err(CE_NOTE, "[%d] connection to service domain timeout", 4039655fd6a9Sachartre vdcp->instance); 4040655fd6a9Sachartre } 4041655fd6a9Sachartre 4042655fd6a9Sachartre /* 4043655fd6a9Sachartre * Function: 40443af08d82Slm66018 * vdc_backup_local_dring() 40453af08d82Slm66018 * 40463af08d82Slm66018 * Description: 40473af08d82Slm66018 * Backup the current dring in the event of a reset. The Dring 40483af08d82Slm66018 * transactions will be resubmitted to the server when the 40493af08d82Slm66018 * connection is restored. 40503af08d82Slm66018 * 40513af08d82Slm66018 * Arguments: 40523af08d82Slm66018 * vdcp - soft state pointer for this instance of the device driver. 40533af08d82Slm66018 * 40543af08d82Slm66018 * Return Code: 40553af08d82Slm66018 * NONE 40563af08d82Slm66018 */ 40573af08d82Slm66018 static void 40583af08d82Slm66018 vdc_backup_local_dring(vdc_t *vdcp) 40593af08d82Slm66018 { 40603af08d82Slm66018 int dring_size; 40613af08d82Slm66018 4062655fd6a9Sachartre ASSERT(MUTEX_HELD(&vdcp->lock)); 40633af08d82Slm66018 ASSERT(vdcp->state == VDC_STATE_RESETTING); 40643af08d82Slm66018 40653af08d82Slm66018 /* 40663af08d82Slm66018 * If the backup dring is stil around, it means 40673af08d82Slm66018 * that the last restore did not complete. However, 40683af08d82Slm66018 * since we never got back into the running state, 40693af08d82Slm66018 * the backup copy we have is still valid. 40703af08d82Slm66018 */ 40713af08d82Slm66018 if (vdcp->local_dring_backup != NULL) { 40723af08d82Slm66018 DMSG(vdcp, 1, "reusing local descriptor ring backup " 40733af08d82Slm66018 "(len=%d, tail=%d)\n", vdcp->local_dring_backup_len, 40743af08d82Slm66018 vdcp->local_dring_backup_tail); 40753af08d82Slm66018 return; 40763af08d82Slm66018 } 40773af08d82Slm66018 4078655fd6a9Sachartre /* 4079655fd6a9Sachartre * The backup dring can be NULL and the local dring may not be 4080655fd6a9Sachartre * initialized. This can happen if we had a reset while establishing 4081655fd6a9Sachartre * a new connection but after the connection has timed out. In that 4082655fd6a9Sachartre * case the backup dring is NULL because the requests have been 4083655fd6a9Sachartre * cancelled and the request occured before the local dring is 4084655fd6a9Sachartre * initialized. 4085655fd6a9Sachartre */ 4086655fd6a9Sachartre if (!(vdcp->initialized & VDC_DRING_LOCAL)) 4087655fd6a9Sachartre return; 4088655fd6a9Sachartre 40893af08d82Slm66018 DMSG(vdcp, 1, "backing up the local descriptor ring (len=%d, " 40903af08d82Slm66018 "tail=%d)\n", vdcp->dring_len, vdcp->dring_curr_idx); 40913af08d82Slm66018 40923af08d82Slm66018 dring_size = vdcp->dring_len * sizeof (vdcp->local_dring[0]); 40933af08d82Slm66018 40943af08d82Slm66018 vdcp->local_dring_backup = kmem_alloc(dring_size, KM_SLEEP); 40953af08d82Slm66018 bcopy(vdcp->local_dring, vdcp->local_dring_backup, dring_size); 40963af08d82Slm66018 40973af08d82Slm66018 vdcp->local_dring_backup_tail = vdcp->dring_curr_idx; 40983af08d82Slm66018 vdcp->local_dring_backup_len = vdcp->dring_len; 40993af08d82Slm66018 } 41003af08d82Slm66018 41018cd10891Snarayan static void 41028cd10891Snarayan vdc_switch_server(vdc_t *vdcp) 41038cd10891Snarayan { 41048cd10891Snarayan int rv; 41058cd10891Snarayan vdc_server_t *curr_server, *new_server; 41068cd10891Snarayan 41078cd10891Snarayan ASSERT(MUTEX_HELD(&vdcp->lock)); 41088cd10891Snarayan 41098cd10891Snarayan /* if there is only one server return back */ 41108cd10891Snarayan if (vdcp->num_servers == 1) { 41118cd10891Snarayan return; 41128cd10891Snarayan } 41138cd10891Snarayan 41148cd10891Snarayan /* Get current and next server */ 41158cd10891Snarayan curr_server = vdcp->curr_server; 41168cd10891Snarayan new_server = 41178cd10891Snarayan (curr_server->next) ? curr_server->next : vdcp->server_list; 41188cd10891Snarayan ASSERT(curr_server != new_server); 41198cd10891Snarayan 41208cd10891Snarayan /* bring current server's channel down */ 41218cd10891Snarayan rv = ldc_down(curr_server->ldc_handle); 41228cd10891Snarayan if (rv) { 41238cd10891Snarayan DMSG(vdcp, 0, "[%d] Cannot bring channel down, port %ld\n", 41248cd10891Snarayan vdcp->instance, curr_server->id); 41258cd10891Snarayan return; 41268cd10891Snarayan } 41278cd10891Snarayan 41288cd10891Snarayan /* switch the server */ 41298cd10891Snarayan vdcp->curr_server = new_server; 41308cd10891Snarayan 41318cd10891Snarayan DMSG(vdcp, 0, "[%d] Switched to next vdisk server, port@%ld, ldc@%ld\n", 41328cd10891Snarayan vdcp->instance, vdcp->curr_server->id, vdcp->curr_server->ldc_id); 41338cd10891Snarayan } 41348cd10891Snarayan 41351ae08745Sheppo /* -------------------------------------------------------------------------- */ 41361ae08745Sheppo 41371ae08745Sheppo /* 41381ae08745Sheppo * The following functions process the incoming messages from vds 41391ae08745Sheppo */ 41401ae08745Sheppo 41410a55fbb7Slm66018 /* 41420a55fbb7Slm66018 * Function: 41430a55fbb7Slm66018 * vdc_process_msg_thread() 41440a55fbb7Slm66018 * 41450a55fbb7Slm66018 * Description: 41460a55fbb7Slm66018 * 41473af08d82Slm66018 * Main VDC message processing thread. Each vDisk instance 41483af08d82Slm66018 * consists of a copy of this thread. This thread triggers 41493af08d82Slm66018 * all the handshakes and data exchange with the server. It 41503af08d82Slm66018 * also handles all channel resets 41513af08d82Slm66018 * 41520a55fbb7Slm66018 * Arguments: 41530a55fbb7Slm66018 * vdc - soft state pointer for this instance of the device driver. 41540a55fbb7Slm66018 * 41550a55fbb7Slm66018 * Return Code: 41560a55fbb7Slm66018 * None 41570a55fbb7Slm66018 */ 41581ae08745Sheppo static void 41593af08d82Slm66018 vdc_process_msg_thread(vdc_t *vdcp) 41601ae08745Sheppo { 41611ae08745Sheppo int status; 4162655fd6a9Sachartre int ctimeout; 4163655fd6a9Sachartre timeout_id_t tmid = 0; 41648cd10891Snarayan clock_t ldcup_timeout = 0; 41651ae08745Sheppo 41663af08d82Slm66018 mutex_enter(&vdcp->lock); 41671ae08745Sheppo 41681ae08745Sheppo for (;;) { 41691ae08745Sheppo 41703af08d82Slm66018 #define Q(_s) (vdcp->state == _s) ? #_s : 41713af08d82Slm66018 DMSG(vdcp, 3, "state = %d (%s)\n", vdcp->state, 41723af08d82Slm66018 Q(VDC_STATE_INIT) 41733af08d82Slm66018 Q(VDC_STATE_INIT_WAITING) 41743af08d82Slm66018 Q(VDC_STATE_NEGOTIATE) 41753af08d82Slm66018 Q(VDC_STATE_HANDLE_PENDING) 41763af08d82Slm66018 Q(VDC_STATE_RUNNING) 41773af08d82Slm66018 Q(VDC_STATE_RESETTING) 41783af08d82Slm66018 Q(VDC_STATE_DETACH) 41793af08d82Slm66018 "UNKNOWN"); 41801ae08745Sheppo 41813af08d82Slm66018 switch (vdcp->state) { 41823af08d82Slm66018 case VDC_STATE_INIT: 41833af08d82Slm66018 4184655fd6a9Sachartre /* 4185655fd6a9Sachartre * If requested, start a timeout to check if the 4186655fd6a9Sachartre * connection with vds is established in the 4187655fd6a9Sachartre * specified delay. If the timeout expires, we 4188655fd6a9Sachartre * will cancel any pending request. 4189655fd6a9Sachartre * 4190655fd6a9Sachartre * If some reset have occurred while establishing 4191655fd6a9Sachartre * the connection, we already have a timeout armed 4192655fd6a9Sachartre * and in that case we don't need to arm a new one. 41938cd10891Snarayan * 41948cd10891Snarayan * The same rule applies when there are multiple vds'. 41958cd10891Snarayan * If either a connection cannot be established or 41968cd10891Snarayan * the handshake times out, the connection thread will 41978cd10891Snarayan * try another server. The 'ctimeout' will report 41988cd10891Snarayan * back an error after it expires irrespective of 41998cd10891Snarayan * whether the vdisk is trying to connect to just 42008cd10891Snarayan * one or multiple servers. 4201655fd6a9Sachartre */ 4202655fd6a9Sachartre ctimeout = (vdc_timeout != 0)? 42038cd10891Snarayan vdc_timeout : vdcp->curr_server->ctimeout; 4204655fd6a9Sachartre 4205655fd6a9Sachartre if (ctimeout != 0 && tmid == 0) { 4206655fd6a9Sachartre tmid = timeout(vdc_connection_timeout, vdcp, 42078cd10891Snarayan ctimeout * drv_usectohz(MICROSEC)); 4208655fd6a9Sachartre } 4209655fd6a9Sachartre 42108cd10891Snarayan /* Check if we are re-initializing repeatedly */ 42118cd10891Snarayan if (vdcp->hshake_cnt > vdc_hshake_retries && 4212655fd6a9Sachartre vdcp->lifecycle != VDC_LC_ONLINE) { 42138cd10891Snarayan 42148cd10891Snarayan DMSG(vdcp, 0, "[%d] too many handshakes,cnt=%d", 42158cd10891Snarayan vdcp->instance, vdcp->hshake_cnt); 42163c96341aSnarayan cmn_err(CE_NOTE, "[%d] disk access failed.\n", 42173c96341aSnarayan vdcp->instance); 42183af08d82Slm66018 vdcp->state = VDC_STATE_DETACH; 42193af08d82Slm66018 break; 42203af08d82Slm66018 } 42213af08d82Slm66018 42228cd10891Snarayan /* Switch to STATE_DETACH if drv is detaching */ 42238cd10891Snarayan if (vdcp->lifecycle == VDC_LC_DETACHING) { 42248cd10891Snarayan vdcp->state = VDC_STATE_DETACH; 42258cd10891Snarayan break; 42268cd10891Snarayan } 42278cd10891Snarayan 42288cd10891Snarayan /* Switch server */ 42298cd10891Snarayan if (vdcp->hshake_cnt > 0) 42308cd10891Snarayan vdc_switch_server(vdcp); 42318cd10891Snarayan vdcp->hshake_cnt++; 42328cd10891Snarayan 42333af08d82Slm66018 /* Bring up connection with vds via LDC */ 42343af08d82Slm66018 status = vdc_start_ldc_connection(vdcp); 42358cd10891Snarayan if (status != EINVAL) { 42363af08d82Slm66018 vdcp->state = VDC_STATE_INIT_WAITING; 42373af08d82Slm66018 } 42383af08d82Slm66018 break; 42393af08d82Slm66018 42403af08d82Slm66018 case VDC_STATE_INIT_WAITING: 42413af08d82Slm66018 42428cd10891Snarayan /* if channel is UP, start negotiation */ 42438cd10891Snarayan if (vdcp->curr_server->ldc_state == LDC_UP) { 42448cd10891Snarayan vdcp->state = VDC_STATE_NEGOTIATE; 42458cd10891Snarayan break; 42468cd10891Snarayan } 42478cd10891Snarayan 42488cd10891Snarayan /* check if only one server exists */ 42498cd10891Snarayan if (vdcp->num_servers == 1) { 42503af08d82Slm66018 cv_wait(&vdcp->initwait_cv, &vdcp->lock); 42518cd10891Snarayan } else { 42528cd10891Snarayan /* 42538cd10891Snarayan * wait for LDC_UP, if it times out, switch 42548cd10891Snarayan * to another server. 42558cd10891Snarayan */ 42568cd10891Snarayan ldcup_timeout = ddi_get_lbolt() + 42578cd10891Snarayan (vdc_ldcup_timeout * 42588cd10891Snarayan drv_usectohz(MICROSEC)); 42598cd10891Snarayan status = cv_timedwait(&vdcp->initwait_cv, 42608cd10891Snarayan &vdcp->lock, ldcup_timeout); 42618cd10891Snarayan if (status == -1 && 42628cd10891Snarayan vdcp->state == VDC_STATE_INIT_WAITING && 42638cd10891Snarayan vdcp->curr_server->ldc_state != LDC_UP) { 42648cd10891Snarayan /* timed out & still waiting */ 42658cd10891Snarayan vdcp->state = VDC_STATE_INIT; 42668cd10891Snarayan break; 42678cd10891Snarayan } 42688cd10891Snarayan } 42698cd10891Snarayan 42703af08d82Slm66018 if (vdcp->state != VDC_STATE_INIT_WAITING) { 42713af08d82Slm66018 DMSG(vdcp, 0, 42723af08d82Slm66018 "state moved to %d out from under us...\n", 42733af08d82Slm66018 vdcp->state); 42743af08d82Slm66018 } 42753af08d82Slm66018 break; 42763af08d82Slm66018 42773af08d82Slm66018 case VDC_STATE_NEGOTIATE: 42783af08d82Slm66018 switch (status = vdc_ver_negotiation(vdcp)) { 42793af08d82Slm66018 case 0: 42803af08d82Slm66018 break; 42813af08d82Slm66018 default: 42823af08d82Slm66018 DMSG(vdcp, 0, "ver negotiate failed (%d)..\n", 42833af08d82Slm66018 status); 42843af08d82Slm66018 goto reset; 42853af08d82Slm66018 } 42863af08d82Slm66018 42873af08d82Slm66018 switch (status = vdc_attr_negotiation(vdcp)) { 42883af08d82Slm66018 case 0: 42893af08d82Slm66018 break; 42903af08d82Slm66018 default: 42913af08d82Slm66018 DMSG(vdcp, 0, "attr negotiate failed (%d)..\n", 42923af08d82Slm66018 status); 42933af08d82Slm66018 goto reset; 42943af08d82Slm66018 } 42953af08d82Slm66018 42963af08d82Slm66018 switch (status = vdc_dring_negotiation(vdcp)) { 42973af08d82Slm66018 case 0: 42983af08d82Slm66018 break; 42993af08d82Slm66018 default: 43003af08d82Slm66018 DMSG(vdcp, 0, "dring negotiate failed (%d)..\n", 43013af08d82Slm66018 status); 43023af08d82Slm66018 goto reset; 43033af08d82Slm66018 } 43043af08d82Slm66018 43053af08d82Slm66018 switch (status = vdc_rdx_exchange(vdcp)) { 43063af08d82Slm66018 case 0: 43073af08d82Slm66018 vdcp->state = VDC_STATE_HANDLE_PENDING; 43083af08d82Slm66018 goto done; 43093af08d82Slm66018 default: 43103af08d82Slm66018 DMSG(vdcp, 0, "RDX xchg failed ..(%d)\n", 43113af08d82Slm66018 status); 43123af08d82Slm66018 goto reset; 43133af08d82Slm66018 } 43143af08d82Slm66018 reset: 43153af08d82Slm66018 DMSG(vdcp, 0, "negotiation failed: resetting (%d)\n", 43163af08d82Slm66018 status); 43173af08d82Slm66018 vdcp->state = VDC_STATE_RESETTING; 4318655fd6a9Sachartre vdcp->self_reset = B_TRUE; 43193af08d82Slm66018 done: 43203af08d82Slm66018 DMSG(vdcp, 0, "negotiation complete (state=0x%x)...\n", 43213af08d82Slm66018 vdcp->state); 43223af08d82Slm66018 break; 43233af08d82Slm66018 43243af08d82Slm66018 case VDC_STATE_HANDLE_PENDING: 43253af08d82Slm66018 4326655fd6a9Sachartre if (vdcp->ctimeout_reached) { 4327655fd6a9Sachartre /* 4328655fd6a9Sachartre * The connection timeout had been reached so 4329655fd6a9Sachartre * pending requests have been cancelled. Now 4330655fd6a9Sachartre * that the connection is back we can reset 4331655fd6a9Sachartre * the timeout. 4332655fd6a9Sachartre */ 4333655fd6a9Sachartre ASSERT(vdcp->local_dring_backup == NULL); 4334655fd6a9Sachartre ASSERT(tmid != 0); 4335655fd6a9Sachartre tmid = 0; 4336655fd6a9Sachartre vdcp->ctimeout_reached = B_FALSE; 4337655fd6a9Sachartre vdcp->state = VDC_STATE_RUNNING; 4338655fd6a9Sachartre DMSG(vdcp, 0, "[%d] connection to service " 4339655fd6a9Sachartre "domain is up", vdcp->instance); 4340655fd6a9Sachartre break; 4341655fd6a9Sachartre } 4342655fd6a9Sachartre 43433af08d82Slm66018 mutex_exit(&vdcp->lock); 4344655fd6a9Sachartre if (tmid != 0) { 4345655fd6a9Sachartre (void) untimeout(tmid); 4346655fd6a9Sachartre tmid = 0; 4347655fd6a9Sachartre } 43483af08d82Slm66018 status = vdc_resubmit_backup_dring(vdcp); 43493af08d82Slm66018 mutex_enter(&vdcp->lock); 43503af08d82Slm66018 43513af08d82Slm66018 if (status) 43523af08d82Slm66018 vdcp->state = VDC_STATE_RESETTING; 43533af08d82Slm66018 else 43543af08d82Slm66018 vdcp->state = VDC_STATE_RUNNING; 43553af08d82Slm66018 43563af08d82Slm66018 break; 43573af08d82Slm66018 43583af08d82Slm66018 /* enter running state */ 43593af08d82Slm66018 case VDC_STATE_RUNNING: 43603af08d82Slm66018 /* 43613af08d82Slm66018 * Signal anyone waiting for the connection 43623af08d82Slm66018 * to come on line. 43633af08d82Slm66018 */ 43643af08d82Slm66018 vdcp->hshake_cnt = 0; 43653af08d82Slm66018 cv_broadcast(&vdcp->running_cv); 43662f5224aeSachartre 43672f5224aeSachartre /* failfast has to been checked after reset */ 43682f5224aeSachartre cv_signal(&vdcp->failfast_cv); 43692f5224aeSachartre 43702f5224aeSachartre /* ownership is lost during reset */ 43712f5224aeSachartre if (vdcp->ownership & VDC_OWNERSHIP_WANTED) 43722f5224aeSachartre vdcp->ownership |= VDC_OWNERSHIP_RESET; 43732f5224aeSachartre cv_signal(&vdcp->ownership_cv); 43742f5224aeSachartre 4375d7400d00Sachartre cmn_err(CE_CONT, "?vdisk@%d is online using " 4376d7400d00Sachartre "ldc@%ld,%ld\n", vdcp->instance, 4377d7400d00Sachartre vdcp->curr_server->ldc_id, vdcp->curr_server->id); 4378d7400d00Sachartre 43793af08d82Slm66018 mutex_exit(&vdcp->lock); 43803af08d82Slm66018 43813af08d82Slm66018 for (;;) { 43823af08d82Slm66018 vio_msg_t msg; 43833af08d82Slm66018 status = vdc_wait_for_response(vdcp, &msg); 43843af08d82Slm66018 if (status) break; 43853af08d82Slm66018 43863af08d82Slm66018 DMSG(vdcp, 1, "[%d] new pkt(s) available\n", 43873af08d82Slm66018 vdcp->instance); 43883af08d82Slm66018 status = vdc_process_data_msg(vdcp, &msg); 43891ae08745Sheppo if (status) { 43903af08d82Slm66018 DMSG(vdcp, 1, "[%d] process_data_msg " 43913af08d82Slm66018 "returned err=%d\n", vdcp->instance, 43923af08d82Slm66018 status); 43931ae08745Sheppo break; 43941ae08745Sheppo } 43951ae08745Sheppo 43963af08d82Slm66018 } 4397e1ebb9ecSlm66018 43983af08d82Slm66018 mutex_enter(&vdcp->lock); 43993af08d82Slm66018 4400d7400d00Sachartre cmn_err(CE_CONT, "?vdisk@%d is offline\n", 4401d7400d00Sachartre vdcp->instance); 4402d7400d00Sachartre 44033af08d82Slm66018 vdcp->state = VDC_STATE_RESETTING; 4404690555a1Sachartre vdcp->self_reset = B_TRUE; 44053af08d82Slm66018 break; 44063af08d82Slm66018 44073af08d82Slm66018 case VDC_STATE_RESETTING: 4408655fd6a9Sachartre /* 4409655fd6a9Sachartre * When we reach this state, we either come from the 4410655fd6a9Sachartre * VDC_STATE_RUNNING state and we can have pending 4411655fd6a9Sachartre * request but no timeout is armed; or we come from 4412655fd6a9Sachartre * the VDC_STATE_INIT_WAITING, VDC_NEGOTIATE or 4413655fd6a9Sachartre * VDC_HANDLE_PENDING state and there is no pending 4414655fd6a9Sachartre * request or pending requests have already been copied 4415655fd6a9Sachartre * into the backup dring. So we can safely keep the 4416655fd6a9Sachartre * connection timeout armed while we are in this state. 4417655fd6a9Sachartre */ 4418655fd6a9Sachartre 44193af08d82Slm66018 DMSG(vdcp, 0, "Initiating channel reset " 44203af08d82Slm66018 "(pending = %d)\n", (int)vdcp->threads_pending); 44213af08d82Slm66018 44223af08d82Slm66018 if (vdcp->self_reset) { 44233af08d82Slm66018 DMSG(vdcp, 0, 44243af08d82Slm66018 "[%d] calling stop_ldc_connection.\n", 44253af08d82Slm66018 vdcp->instance); 44263af08d82Slm66018 status = vdc_stop_ldc_connection(vdcp); 44273af08d82Slm66018 vdcp->self_reset = B_FALSE; 44281ae08745Sheppo } 44291ae08745Sheppo 44301ae08745Sheppo /* 44313af08d82Slm66018 * Wait for all threads currently waiting 44323af08d82Slm66018 * for a free dring entry to use. 44331ae08745Sheppo */ 44343af08d82Slm66018 while (vdcp->threads_pending) { 44353af08d82Slm66018 cv_broadcast(&vdcp->membind_cv); 44363af08d82Slm66018 cv_broadcast(&vdcp->dring_free_cv); 44373af08d82Slm66018 mutex_exit(&vdcp->lock); 4438205eeb1aSlm66018 /* give the waiters enough time to wake up */ 4439205eeb1aSlm66018 delay(vdc_hz_min_ldc_delay); 44403af08d82Slm66018 mutex_enter(&vdcp->lock); 44411ae08745Sheppo } 44421ae08745Sheppo 44433af08d82Slm66018 ASSERT(vdcp->threads_pending == 0); 44441ae08745Sheppo 44453af08d82Slm66018 /* Sanity check that no thread is receiving */ 44463af08d82Slm66018 ASSERT(vdcp->read_state != VDC_READ_WAITING); 44470a55fbb7Slm66018 44483af08d82Slm66018 vdcp->read_state = VDC_READ_IDLE; 44493af08d82Slm66018 44503af08d82Slm66018 vdc_backup_local_dring(vdcp); 44513af08d82Slm66018 44523af08d82Slm66018 /* cleanup the old d-ring */ 44533af08d82Slm66018 vdc_destroy_descriptor_ring(vdcp); 44543af08d82Slm66018 44553af08d82Slm66018 /* go and start again */ 44563af08d82Slm66018 vdcp->state = VDC_STATE_INIT; 44573af08d82Slm66018 44580a55fbb7Slm66018 break; 44590a55fbb7Slm66018 44603af08d82Slm66018 case VDC_STATE_DETACH: 44613af08d82Slm66018 DMSG(vdcp, 0, "[%d] Reset thread exit cleanup ..\n", 44623af08d82Slm66018 vdcp->instance); 44633af08d82Slm66018 4464655fd6a9Sachartre /* cancel any pending timeout */ 4465655fd6a9Sachartre mutex_exit(&vdcp->lock); 4466655fd6a9Sachartre if (tmid != 0) { 4467655fd6a9Sachartre (void) untimeout(tmid); 4468655fd6a9Sachartre tmid = 0; 4469655fd6a9Sachartre } 4470655fd6a9Sachartre mutex_enter(&vdcp->lock); 4471655fd6a9Sachartre 44723c96341aSnarayan /* 44733c96341aSnarayan * Signal anyone waiting for connection 44743c96341aSnarayan * to come online 44753c96341aSnarayan */ 44763c96341aSnarayan cv_broadcast(&vdcp->running_cv); 44773c96341aSnarayan 44783af08d82Slm66018 while (vdcp->sync_op_pending) { 44793af08d82Slm66018 cv_signal(&vdcp->sync_pending_cv); 44803af08d82Slm66018 cv_signal(&vdcp->sync_blocked_cv); 44813af08d82Slm66018 mutex_exit(&vdcp->lock); 4482205eeb1aSlm66018 /* give the waiters enough time to wake up */ 4483205eeb1aSlm66018 delay(vdc_hz_min_ldc_delay); 44843af08d82Slm66018 mutex_enter(&vdcp->lock); 44850a55fbb7Slm66018 } 44861ae08745Sheppo 44873af08d82Slm66018 mutex_exit(&vdcp->lock); 44883af08d82Slm66018 44893af08d82Slm66018 DMSG(vdcp, 0, "[%d] Msg processing thread exiting ..\n", 44903af08d82Slm66018 vdcp->instance); 44913af08d82Slm66018 thread_exit(); 44923af08d82Slm66018 break; 44933af08d82Slm66018 } 44943af08d82Slm66018 } 44950a55fbb7Slm66018 } 44960a55fbb7Slm66018 44970a55fbb7Slm66018 44980a55fbb7Slm66018 /* 44990a55fbb7Slm66018 * Function: 45000a55fbb7Slm66018 * vdc_process_data_msg() 45010a55fbb7Slm66018 * 45020a55fbb7Slm66018 * Description: 45030a55fbb7Slm66018 * This function is called by the message processing thread each time 45040a55fbb7Slm66018 * a message with a msgtype of VIO_TYPE_DATA is received. It will either 45050a55fbb7Slm66018 * be an ACK or NACK from vds[1] which vdc handles as follows. 45060a55fbb7Slm66018 * ACK - wake up the waiting thread 45070a55fbb7Slm66018 * NACK - resend any messages necessary 45080a55fbb7Slm66018 * 45090a55fbb7Slm66018 * [1] Although the message format allows it, vds should not send a 45100a55fbb7Slm66018 * VIO_SUBTYPE_INFO message to vdc asking it to read data; if for 45110a55fbb7Slm66018 * some bizarre reason it does, vdc will reset the connection. 45120a55fbb7Slm66018 * 45130a55fbb7Slm66018 * Arguments: 45140a55fbb7Slm66018 * vdc - soft state pointer for this instance of the device driver. 45150a55fbb7Slm66018 * msg - the LDC message sent by vds 45160a55fbb7Slm66018 * 45170a55fbb7Slm66018 * Return Code: 45180a55fbb7Slm66018 * 0 - Success. 45190a55fbb7Slm66018 * > 0 - error value returned by LDC 45200a55fbb7Slm66018 */ 45210a55fbb7Slm66018 static int 45223af08d82Slm66018 vdc_process_data_msg(vdc_t *vdcp, vio_msg_t *msg) 45230a55fbb7Slm66018 { 45240a55fbb7Slm66018 int status = 0; 45253af08d82Slm66018 vio_dring_msg_t *dring_msg; 4526d10e4ef2Snarayan vdc_local_desc_t *ldep = NULL; 45273af08d82Slm66018 int start, end; 45283af08d82Slm66018 int idx; 452990e2f9dcSlm66018 int op; 45300a55fbb7Slm66018 45313af08d82Slm66018 dring_msg = (vio_dring_msg_t *)msg; 45320a55fbb7Slm66018 45333af08d82Slm66018 ASSERT(msg->tag.vio_msgtype == VIO_TYPE_DATA); 45343af08d82Slm66018 ASSERT(vdcp != NULL); 45353af08d82Slm66018 45363af08d82Slm66018 mutex_enter(&vdcp->lock); 45370a55fbb7Slm66018 45380a55fbb7Slm66018 /* 45390a55fbb7Slm66018 * Check to see if the message has bogus data 45400a55fbb7Slm66018 */ 4541e1ebb9ecSlm66018 idx = start = dring_msg->start_idx; 45420a55fbb7Slm66018 end = dring_msg->end_idx; 45433af08d82Slm66018 if ((start >= vdcp->dring_len) || 45443af08d82Slm66018 (end >= vdcp->dring_len) || (end < -1)) { 454590e2f9dcSlm66018 /* 454690e2f9dcSlm66018 * Update the I/O statistics to indicate that an error ocurred. 454790e2f9dcSlm66018 * No need to update the wait/run queues as no specific read or 454890e2f9dcSlm66018 * write request is being completed in response to this 'msg'. 454990e2f9dcSlm66018 */ 455090e2f9dcSlm66018 VD_UPDATE_ERR_STATS(vdcp, vd_softerrs); 45513af08d82Slm66018 DMSG(vdcp, 0, "[%d] Bogus ACK data : start %d, end %d\n", 45523af08d82Slm66018 vdcp->instance, start, end); 45533af08d82Slm66018 mutex_exit(&vdcp->lock); 4554e1ebb9ecSlm66018 return (EINVAL); 45550a55fbb7Slm66018 } 45560a55fbb7Slm66018 45570a55fbb7Slm66018 /* 45580a55fbb7Slm66018 * Verify that the sequence number is what vdc expects. 45590a55fbb7Slm66018 */ 45603af08d82Slm66018 switch (vdc_verify_seq_num(vdcp, dring_msg)) { 4561e1ebb9ecSlm66018 case VDC_SEQ_NUM_TODO: 4562e1ebb9ecSlm66018 break; /* keep processing this message */ 4563e1ebb9ecSlm66018 case VDC_SEQ_NUM_SKIP: 45643af08d82Slm66018 mutex_exit(&vdcp->lock); 4565e1ebb9ecSlm66018 return (0); 4566e1ebb9ecSlm66018 case VDC_SEQ_NUM_INVALID: 456790e2f9dcSlm66018 /* 456890e2f9dcSlm66018 * Update the I/O statistics to indicate that an error ocurred. 456990e2f9dcSlm66018 * No need to update the wait/run queues as no specific read or 457090e2f9dcSlm66018 * write request is being completed in response to this 'msg'. 457190e2f9dcSlm66018 */ 4572366a92acSlm66018 VD_UPDATE_ERR_STATS(vdcp, vd_softerrs); 457390e2f9dcSlm66018 DMSG(vdcp, 0, "[%d] invalid seqno\n", vdcp->instance); 4574366a92acSlm66018 mutex_exit(&vdcp->lock); 45750a55fbb7Slm66018 return (ENXIO); 45760a55fbb7Slm66018 } 45770a55fbb7Slm66018 45783af08d82Slm66018 if (msg->tag.vio_subtype == VIO_SUBTYPE_NACK) { 457990e2f9dcSlm66018 /* 458090e2f9dcSlm66018 * Update the I/O statistics to indicate that an error ocurred. 458190e2f9dcSlm66018 * 458290e2f9dcSlm66018 * We need to update the run queue if a read or write request 458390e2f9dcSlm66018 * is being NACKed - otherwise there will appear to be an 458490e2f9dcSlm66018 * indefinite outstanding request and statistics reported by 458590e2f9dcSlm66018 * iostat(1M) will be incorrect. The transaction will be 458690e2f9dcSlm66018 * resubmitted from the backup DRing following the reset 458790e2f9dcSlm66018 * and the wait/run queues will be entered again. 458890e2f9dcSlm66018 */ 458990e2f9dcSlm66018 ldep = &vdcp->local_dring[idx]; 459090e2f9dcSlm66018 op = ldep->operation; 459190e2f9dcSlm66018 if ((op == VD_OP_BREAD) || (op == VD_OP_BWRITE)) { 459290e2f9dcSlm66018 DTRACE_IO1(done, buf_t *, ldep->cb_arg); 459390e2f9dcSlm66018 VD_KSTAT_RUNQ_EXIT(vdcp); 459490e2f9dcSlm66018 } 4595366a92acSlm66018 VD_UPDATE_ERR_STATS(vdcp, vd_softerrs); 459690e2f9dcSlm66018 VDC_DUMP_DRING_MSG(dring_msg); 459790e2f9dcSlm66018 DMSG(vdcp, 0, "[%d] DATA NACK\n", vdcp->instance); 45983af08d82Slm66018 mutex_exit(&vdcp->lock); 4599e1ebb9ecSlm66018 return (EIO); 46000a55fbb7Slm66018 46013af08d82Slm66018 } else if (msg->tag.vio_subtype == VIO_SUBTYPE_INFO) { 460290e2f9dcSlm66018 /* 460390e2f9dcSlm66018 * Update the I/O statistics to indicate that an error occurred. 460490e2f9dcSlm66018 * No need to update the wait/run queues as no specific read or 460590e2f9dcSlm66018 * write request is being completed in response to this 'msg'. 460690e2f9dcSlm66018 */ 4607366a92acSlm66018 VD_UPDATE_ERR_STATS(vdcp, vd_protoerrs); 46083af08d82Slm66018 mutex_exit(&vdcp->lock); 4609e1ebb9ecSlm66018 return (EPROTO); 4610e1ebb9ecSlm66018 } 4611e1ebb9ecSlm66018 46123af08d82Slm66018 DMSG(vdcp, 1, ": start %d end %d\n", start, end); 46133af08d82Slm66018 ASSERT(start == end); 46143af08d82Slm66018 46153af08d82Slm66018 ldep = &vdcp->local_dring[idx]; 46163af08d82Slm66018 46173af08d82Slm66018 DMSG(vdcp, 1, ": state 0x%x - cb_type 0x%x\n", 46183af08d82Slm66018 ldep->dep->hdr.dstate, ldep->cb_type); 46193af08d82Slm66018 4620e1ebb9ecSlm66018 if (ldep->dep->hdr.dstate == VIO_DESC_DONE) { 46213af08d82Slm66018 struct buf *bufp; 4622e1ebb9ecSlm66018 46233af08d82Slm66018 switch (ldep->cb_type) { 46243af08d82Slm66018 case CB_SYNC: 46253af08d82Slm66018 ASSERT(vdcp->sync_op_pending); 4626d10e4ef2Snarayan 46273af08d82Slm66018 status = vdc_depopulate_descriptor(vdcp, idx); 46283af08d82Slm66018 vdcp->sync_op_status = status; 46293af08d82Slm66018 vdcp->sync_op_pending = B_FALSE; 46303af08d82Slm66018 cv_signal(&vdcp->sync_pending_cv); 46313af08d82Slm66018 break; 46324bac2208Snarayan 46333af08d82Slm66018 case CB_STRATEGY: 46343af08d82Slm66018 bufp = ldep->cb_arg; 46353af08d82Slm66018 ASSERT(bufp != NULL); 46363c96341aSnarayan bufp->b_resid = 46373c96341aSnarayan bufp->b_bcount - ldep->dep->payload.nbytes; 46383af08d82Slm66018 status = ldep->dep->payload.status; /* Future:ntoh */ 46393af08d82Slm66018 if (status != 0) { 46403af08d82Slm66018 DMSG(vdcp, 1, "strategy status=%d\n", status); 4641366a92acSlm66018 VD_UPDATE_ERR_STATS(vdcp, vd_softerrs); 46423af08d82Slm66018 bioerror(bufp, status); 4643d10e4ef2Snarayan } 46442f5224aeSachartre 46452f5224aeSachartre (void) vdc_depopulate_descriptor(vdcp, idx); 46463c96341aSnarayan 46473c96341aSnarayan DMSG(vdcp, 1, 46483c96341aSnarayan "strategy complete req=%ld bytes resp=%ld bytes\n", 46493c96341aSnarayan bufp->b_bcount, ldep->dep->payload.nbytes); 46502f5224aeSachartre 46512f5224aeSachartre if (status != 0 && vdcp->failfast_interval != 0) { 46522f5224aeSachartre /* 46532f5224aeSachartre * The I/O has failed and failfast is enabled. 46542f5224aeSachartre * We need the failfast thread to check if the 46552f5224aeSachartre * failure is due to a reservation conflict. 46562f5224aeSachartre */ 46572f5224aeSachartre (void) vdc_failfast_io_queue(vdcp, bufp); 46582f5224aeSachartre } else { 4659366a92acSlm66018 if (status == 0) { 466090e2f9dcSlm66018 op = (bufp->b_flags & B_READ) ? 4661366a92acSlm66018 VD_OP_BREAD : VD_OP_BWRITE; 4662366a92acSlm66018 VD_UPDATE_IO_STATS(vdcp, op, 4663366a92acSlm66018 ldep->dep->payload.nbytes); 4664366a92acSlm66018 } 466590e2f9dcSlm66018 VD_KSTAT_RUNQ_EXIT(vdcp); 4666366a92acSlm66018 DTRACE_IO1(done, buf_t *, bufp); 46672f5224aeSachartre biodone(bufp); 46682f5224aeSachartre } 46693af08d82Slm66018 break; 46703af08d82Slm66018 46713af08d82Slm66018 default: 46723af08d82Slm66018 ASSERT(0); 46730a55fbb7Slm66018 } 46743af08d82Slm66018 } 46753af08d82Slm66018 46763af08d82Slm66018 /* let the arrival signal propogate */ 46773af08d82Slm66018 mutex_exit(&vdcp->lock); 46780a55fbb7Slm66018 4679e1ebb9ecSlm66018 /* probe gives the count of how many entries were processed */ 4680366a92acSlm66018 DTRACE_PROBE2(processed, int, 1, vdc_t *, vdcp); 46810a55fbb7Slm66018 46823af08d82Slm66018 return (0); 46830a55fbb7Slm66018 } 46840a55fbb7Slm66018 46850a55fbb7Slm66018 46860a55fbb7Slm66018 /* 46870a55fbb7Slm66018 * Function: 46880a55fbb7Slm66018 * vdc_handle_ver_msg() 46890a55fbb7Slm66018 * 46900a55fbb7Slm66018 * Description: 46910a55fbb7Slm66018 * 46920a55fbb7Slm66018 * Arguments: 46930a55fbb7Slm66018 * vdc - soft state pointer for this instance of the device driver. 46940a55fbb7Slm66018 * ver_msg - LDC message sent by vDisk server 46950a55fbb7Slm66018 * 46960a55fbb7Slm66018 * Return Code: 46970a55fbb7Slm66018 * 0 - Success 46980a55fbb7Slm66018 */ 46990a55fbb7Slm66018 static int 47000a55fbb7Slm66018 vdc_handle_ver_msg(vdc_t *vdc, vio_ver_msg_t *ver_msg) 47010a55fbb7Slm66018 { 47020a55fbb7Slm66018 int status = 0; 47030a55fbb7Slm66018 47040a55fbb7Slm66018 ASSERT(vdc != NULL); 47050a55fbb7Slm66018 ASSERT(mutex_owned(&vdc->lock)); 47060a55fbb7Slm66018 47070a55fbb7Slm66018 if (ver_msg->tag.vio_subtype_env != VIO_VER_INFO) { 47080a55fbb7Slm66018 return (EPROTO); 47090a55fbb7Slm66018 } 47100a55fbb7Slm66018 47110a55fbb7Slm66018 if (ver_msg->dev_class != VDEV_DISK_SERVER) { 47120a55fbb7Slm66018 return (EINVAL); 47130a55fbb7Slm66018 } 47140a55fbb7Slm66018 47150a55fbb7Slm66018 switch (ver_msg->tag.vio_subtype) { 47160a55fbb7Slm66018 case VIO_SUBTYPE_ACK: 47170a55fbb7Slm66018 /* 47180a55fbb7Slm66018 * We check to see if the version returned is indeed supported 47190a55fbb7Slm66018 * (The server may have also adjusted the minor number downwards 47200a55fbb7Slm66018 * and if so 'ver_msg' will contain the actual version agreed) 47210a55fbb7Slm66018 */ 47220a55fbb7Slm66018 if (vdc_is_supported_version(ver_msg)) { 47230a55fbb7Slm66018 vdc->ver.major = ver_msg->ver_major; 47240a55fbb7Slm66018 vdc->ver.minor = ver_msg->ver_minor; 47250a55fbb7Slm66018 ASSERT(vdc->ver.major > 0); 47260a55fbb7Slm66018 } else { 47270a55fbb7Slm66018 status = EPROTO; 47280a55fbb7Slm66018 } 47290a55fbb7Slm66018 break; 47300a55fbb7Slm66018 47310a55fbb7Slm66018 case VIO_SUBTYPE_NACK: 47320a55fbb7Slm66018 /* 47330a55fbb7Slm66018 * call vdc_is_supported_version() which will return the next 47340a55fbb7Slm66018 * supported version (if any) in 'ver_msg' 47350a55fbb7Slm66018 */ 47360a55fbb7Slm66018 (void) vdc_is_supported_version(ver_msg); 47370a55fbb7Slm66018 if (ver_msg->ver_major > 0) { 47380a55fbb7Slm66018 size_t len = sizeof (*ver_msg); 47390a55fbb7Slm66018 47400a55fbb7Slm66018 ASSERT(vdc->ver.major > 0); 47410a55fbb7Slm66018 47420a55fbb7Slm66018 /* reset the necessary fields and resend */ 47430a55fbb7Slm66018 ver_msg->tag.vio_subtype = VIO_SUBTYPE_INFO; 47440a55fbb7Slm66018 ver_msg->dev_class = VDEV_DISK; 47450a55fbb7Slm66018 47460a55fbb7Slm66018 status = vdc_send(vdc, (caddr_t)ver_msg, &len); 47473af08d82Slm66018 DMSG(vdc, 0, "[%d] Resend VER info (LDC status = %d)\n", 47480a55fbb7Slm66018 vdc->instance, status); 47490a55fbb7Slm66018 if (len != sizeof (*ver_msg)) 47500a55fbb7Slm66018 status = EBADMSG; 47510a55fbb7Slm66018 } else { 475287a7269eSachartre DMSG(vdc, 0, "[%d] No common version with vDisk server", 475387a7269eSachartre vdc->instance); 47540a55fbb7Slm66018 status = ENOTSUP; 47550a55fbb7Slm66018 } 47560a55fbb7Slm66018 47570a55fbb7Slm66018 break; 47581ae08745Sheppo case VIO_SUBTYPE_INFO: 47591ae08745Sheppo /* 47601ae08745Sheppo * Handle the case where vds starts handshake 4761eff7243fSlm66018 * (for now only vdc is the instigator) 47621ae08745Sheppo */ 47631ae08745Sheppo status = ENOTSUP; 47641ae08745Sheppo break; 47651ae08745Sheppo 47661ae08745Sheppo default: 47670a55fbb7Slm66018 status = EINVAL; 47681ae08745Sheppo break; 47691ae08745Sheppo } 47701ae08745Sheppo 47710a55fbb7Slm66018 return (status); 47720a55fbb7Slm66018 } 47730a55fbb7Slm66018 47740a55fbb7Slm66018 /* 47750a55fbb7Slm66018 * Function: 47760a55fbb7Slm66018 * vdc_handle_attr_msg() 47770a55fbb7Slm66018 * 47780a55fbb7Slm66018 * Description: 47790a55fbb7Slm66018 * 47800a55fbb7Slm66018 * Arguments: 47810a55fbb7Slm66018 * vdc - soft state pointer for this instance of the device driver. 47820a55fbb7Slm66018 * attr_msg - LDC message sent by vDisk server 47830a55fbb7Slm66018 * 47840a55fbb7Slm66018 * Return Code: 47850a55fbb7Slm66018 * 0 - Success 47860a55fbb7Slm66018 */ 47870a55fbb7Slm66018 static int 47880a55fbb7Slm66018 vdc_handle_attr_msg(vdc_t *vdc, vd_attr_msg_t *attr_msg) 47890a55fbb7Slm66018 { 47900a55fbb7Slm66018 int status = 0; 47910a55fbb7Slm66018 47920a55fbb7Slm66018 ASSERT(vdc != NULL); 47930a55fbb7Slm66018 ASSERT(mutex_owned(&vdc->lock)); 47940a55fbb7Slm66018 47950a55fbb7Slm66018 if (attr_msg->tag.vio_subtype_env != VIO_ATTR_INFO) { 47960a55fbb7Slm66018 return (EPROTO); 47970a55fbb7Slm66018 } 47980a55fbb7Slm66018 47990a55fbb7Slm66018 switch (attr_msg->tag.vio_subtype) { 48001ae08745Sheppo case VIO_SUBTYPE_ACK: 48011ae08745Sheppo /* 48021ae08745Sheppo * We now verify the attributes sent by vds. 48031ae08745Sheppo */ 480478fcd0a1Sachartre if (attr_msg->vdisk_size == 0) { 480578fcd0a1Sachartre DMSG(vdc, 0, "[%d] Invalid disk size from vds", 480678fcd0a1Sachartre vdc->instance); 480778fcd0a1Sachartre status = EINVAL; 480878fcd0a1Sachartre break; 480978fcd0a1Sachartre } 481078fcd0a1Sachartre 481178fcd0a1Sachartre if (attr_msg->max_xfer_sz == 0) { 481278fcd0a1Sachartre DMSG(vdc, 0, "[%d] Invalid transfer size from vds", 481378fcd0a1Sachartre vdc->instance); 481478fcd0a1Sachartre status = EINVAL; 481578fcd0a1Sachartre break; 481678fcd0a1Sachartre } 481778fcd0a1Sachartre 48182f5224aeSachartre if (attr_msg->vdisk_size == VD_SIZE_UNKNOWN) { 48192f5224aeSachartre DMSG(vdc, 0, "[%d] Unknown disk size from vds", 48202f5224aeSachartre vdc->instance); 48212f5224aeSachartre attr_msg->vdisk_size = 0; 48222f5224aeSachartre } 48232f5224aeSachartre 482478fcd0a1Sachartre /* 482578fcd0a1Sachartre * If the disk size is already set check that it hasn't changed. 482678fcd0a1Sachartre */ 48272f5224aeSachartre if ((vdc->vdisk_size != 0) && (attr_msg->vdisk_size != 0) && 482878fcd0a1Sachartre (vdc->vdisk_size != attr_msg->vdisk_size)) { 482978fcd0a1Sachartre DMSG(vdc, 0, "[%d] Different disk size from vds " 483078fcd0a1Sachartre "(old=0x%lx - new=0x%lx", vdc->instance, 483178fcd0a1Sachartre vdc->vdisk_size, attr_msg->vdisk_size) 483278fcd0a1Sachartre status = EINVAL; 483378fcd0a1Sachartre break; 483478fcd0a1Sachartre } 483578fcd0a1Sachartre 48361ae08745Sheppo vdc->vdisk_size = attr_msg->vdisk_size; 48371ae08745Sheppo vdc->vdisk_type = attr_msg->vdisk_type; 483817cadca8Slm66018 vdc->operations = attr_msg->operations; 483917cadca8Slm66018 if (vio_ver_is_supported(vdc->ver, 1, 1)) 484017cadca8Slm66018 vdc->vdisk_media = attr_msg->vdisk_media; 484117cadca8Slm66018 else 484217cadca8Slm66018 vdc->vdisk_media = 0; 48431ae08745Sheppo 48443af08d82Slm66018 DMSG(vdc, 0, "[%d] max_xfer_sz: sent %lx acked %lx\n", 4845e1ebb9ecSlm66018 vdc->instance, vdc->max_xfer_sz, attr_msg->max_xfer_sz); 48463af08d82Slm66018 DMSG(vdc, 0, "[%d] vdisk_block_size: sent %lx acked %x\n", 4847e1ebb9ecSlm66018 vdc->instance, vdc->block_size, 4848e1ebb9ecSlm66018 attr_msg->vdisk_block_size); 4849e1ebb9ecSlm66018 48501ae08745Sheppo /* 4851e1ebb9ecSlm66018 * We don't know at compile time what the vDisk server will 485217cadca8Slm66018 * think are good values but we apply a large (arbitrary) 4853e1ebb9ecSlm66018 * upper bound to prevent memory exhaustion in vdc if it was 4854e1ebb9ecSlm66018 * allocating a DRing based of huge values sent by the server. 4855e1ebb9ecSlm66018 * We probably will never exceed this except if the message 4856e1ebb9ecSlm66018 * was garbage. 48571ae08745Sheppo */ 4858e1ebb9ecSlm66018 if ((attr_msg->max_xfer_sz * attr_msg->vdisk_block_size) <= 4859e1ebb9ecSlm66018 (PAGESIZE * DEV_BSIZE)) { 4860e1ebb9ecSlm66018 vdc->max_xfer_sz = attr_msg->max_xfer_sz; 4861e1ebb9ecSlm66018 vdc->block_size = attr_msg->vdisk_block_size; 4862e1ebb9ecSlm66018 } else { 48633af08d82Slm66018 DMSG(vdc, 0, "[%d] vds block transfer size too big;" 4864e1ebb9ecSlm66018 " using max supported by vdc", vdc->instance); 48651ae08745Sheppo } 48661ae08745Sheppo 4867f0ca1d9aSsb155480 if ((attr_msg->xfer_mode != VIO_DRING_MODE_V1_0) || 48681ae08745Sheppo (attr_msg->vdisk_size > INT64_MAX) || 486917cadca8Slm66018 (attr_msg->operations == 0) || 48701ae08745Sheppo (attr_msg->vdisk_type > VD_DISK_TYPE_DISK)) { 48713af08d82Slm66018 DMSG(vdc, 0, "[%d] Invalid attributes from vds", 4872e1ebb9ecSlm66018 vdc->instance); 48731ae08745Sheppo status = EINVAL; 48741ae08745Sheppo break; 48751ae08745Sheppo } 48761ae08745Sheppo 487778fcd0a1Sachartre /* 487878fcd0a1Sachartre * Now that we have received all attributes we can create a 487978fcd0a1Sachartre * fake geometry for the disk. 488078fcd0a1Sachartre */ 488178fcd0a1Sachartre vdc_create_fake_geometry(vdc); 48821ae08745Sheppo break; 48831ae08745Sheppo 48841ae08745Sheppo case VIO_SUBTYPE_NACK: 48851ae08745Sheppo /* 48861ae08745Sheppo * vds could not handle the attributes we sent so we 48871ae08745Sheppo * stop negotiating. 48881ae08745Sheppo */ 48891ae08745Sheppo status = EPROTO; 48901ae08745Sheppo break; 48911ae08745Sheppo 48921ae08745Sheppo case VIO_SUBTYPE_INFO: 48931ae08745Sheppo /* 48941ae08745Sheppo * Handle the case where vds starts the handshake 48951ae08745Sheppo * (for now; vdc is the only supported instigatior) 48961ae08745Sheppo */ 48971ae08745Sheppo status = ENOTSUP; 48981ae08745Sheppo break; 48991ae08745Sheppo 49001ae08745Sheppo default: 49011ae08745Sheppo status = ENOTSUP; 49021ae08745Sheppo break; 49031ae08745Sheppo } 49041ae08745Sheppo 49050a55fbb7Slm66018 return (status); 49061ae08745Sheppo } 49071ae08745Sheppo 49080a55fbb7Slm66018 /* 49090a55fbb7Slm66018 * Function: 49100a55fbb7Slm66018 * vdc_handle_dring_reg_msg() 49110a55fbb7Slm66018 * 49120a55fbb7Slm66018 * Description: 49130a55fbb7Slm66018 * 49140a55fbb7Slm66018 * Arguments: 49150a55fbb7Slm66018 * vdc - soft state pointer for this instance of the driver. 49160a55fbb7Slm66018 * dring_msg - LDC message sent by vDisk server 49170a55fbb7Slm66018 * 49180a55fbb7Slm66018 * Return Code: 49190a55fbb7Slm66018 * 0 - Success 49200a55fbb7Slm66018 */ 49210a55fbb7Slm66018 static int 49220a55fbb7Slm66018 vdc_handle_dring_reg_msg(vdc_t *vdc, vio_dring_reg_msg_t *dring_msg) 49230a55fbb7Slm66018 { 49240a55fbb7Slm66018 int status = 0; 49251ae08745Sheppo 49260a55fbb7Slm66018 ASSERT(vdc != NULL); 49270a55fbb7Slm66018 ASSERT(mutex_owned(&vdc->lock)); 49280a55fbb7Slm66018 49290a55fbb7Slm66018 if (dring_msg->tag.vio_subtype_env != VIO_DRING_REG) { 49300a55fbb7Slm66018 return (EPROTO); 49310a55fbb7Slm66018 } 49320a55fbb7Slm66018 49330a55fbb7Slm66018 switch (dring_msg->tag.vio_subtype) { 49340a55fbb7Slm66018 case VIO_SUBTYPE_ACK: 49351ae08745Sheppo /* save the received dring_ident */ 49361ae08745Sheppo vdc->dring_ident = dring_msg->dring_ident; 49373af08d82Slm66018 DMSG(vdc, 0, "[%d] Received dring ident=0x%lx\n", 4938e1ebb9ecSlm66018 vdc->instance, vdc->dring_ident); 49391ae08745Sheppo break; 49401ae08745Sheppo 49411ae08745Sheppo case VIO_SUBTYPE_NACK: 49421ae08745Sheppo /* 49431ae08745Sheppo * vds could not handle the DRing info we sent so we 49441ae08745Sheppo * stop negotiating. 49451ae08745Sheppo */ 49463af08d82Slm66018 DMSG(vdc, 0, "[%d] server could not register DRing\n", 49473af08d82Slm66018 vdc->instance); 49481ae08745Sheppo status = EPROTO; 49491ae08745Sheppo break; 49501ae08745Sheppo 49511ae08745Sheppo case VIO_SUBTYPE_INFO: 49521ae08745Sheppo /* 49531ae08745Sheppo * Handle the case where vds starts handshake 49541ae08745Sheppo * (for now only vdc is the instigatior) 49551ae08745Sheppo */ 49561ae08745Sheppo status = ENOTSUP; 49571ae08745Sheppo break; 49581ae08745Sheppo default: 49591ae08745Sheppo status = ENOTSUP; 49601ae08745Sheppo } 49611ae08745Sheppo 49621ae08745Sheppo return (status); 49631ae08745Sheppo } 49641ae08745Sheppo 49651ae08745Sheppo /* 49661ae08745Sheppo * Function: 49671ae08745Sheppo * vdc_verify_seq_num() 49681ae08745Sheppo * 49691ae08745Sheppo * Description: 4970e1ebb9ecSlm66018 * This functions verifies that the sequence number sent back by the vDisk 4971e1ebb9ecSlm66018 * server with the latest message is what is expected (i.e. it is greater 4972e1ebb9ecSlm66018 * than the last seq num sent by the vDisk server and less than or equal 4973e1ebb9ecSlm66018 * to the last seq num generated by vdc). 4974e1ebb9ecSlm66018 * 4975e1ebb9ecSlm66018 * It then checks the request ID to see if any requests need processing 4976e1ebb9ecSlm66018 * in the DRing. 49771ae08745Sheppo * 49781ae08745Sheppo * Arguments: 49791ae08745Sheppo * vdc - soft state pointer for this instance of the driver. 49801ae08745Sheppo * dring_msg - pointer to the LDC message sent by vds 49811ae08745Sheppo * 49821ae08745Sheppo * Return Code: 4983e1ebb9ecSlm66018 * VDC_SEQ_NUM_TODO - Message needs to be processed 4984e1ebb9ecSlm66018 * VDC_SEQ_NUM_SKIP - Message has already been processed 4985e1ebb9ecSlm66018 * VDC_SEQ_NUM_INVALID - The seq numbers are so out of sync, 4986e1ebb9ecSlm66018 * vdc cannot deal with them 49871ae08745Sheppo */ 4988e1ebb9ecSlm66018 static int 4989e1ebb9ecSlm66018 vdc_verify_seq_num(vdc_t *vdc, vio_dring_msg_t *dring_msg) 49901ae08745Sheppo { 49911ae08745Sheppo ASSERT(vdc != NULL); 49921ae08745Sheppo ASSERT(dring_msg != NULL); 4993d10e4ef2Snarayan ASSERT(mutex_owned(&vdc->lock)); 49941ae08745Sheppo 49951ae08745Sheppo /* 49961ae08745Sheppo * Check to see if the messages were responded to in the correct 4997e1ebb9ecSlm66018 * order by vds. 49981ae08745Sheppo */ 4999e1ebb9ecSlm66018 if ((dring_msg->seq_num <= vdc->seq_num_reply) || 5000e1ebb9ecSlm66018 (dring_msg->seq_num > vdc->seq_num)) { 50013af08d82Slm66018 DMSG(vdc, 0, "?[%d] Bogus sequence_number %lu: " 5002e1ebb9ecSlm66018 "%lu > expected <= %lu (last proc req %lu sent %lu)\n", 5003e1ebb9ecSlm66018 vdc->instance, dring_msg->seq_num, 5004e1ebb9ecSlm66018 vdc->seq_num_reply, vdc->seq_num, 5005e1ebb9ecSlm66018 vdc->req_id_proc, vdc->req_id); 5006e1ebb9ecSlm66018 return (VDC_SEQ_NUM_INVALID); 50071ae08745Sheppo } 5008e1ebb9ecSlm66018 vdc->seq_num_reply = dring_msg->seq_num; 50091ae08745Sheppo 5010e1ebb9ecSlm66018 if (vdc->req_id_proc < vdc->req_id) 5011e1ebb9ecSlm66018 return (VDC_SEQ_NUM_TODO); 5012e1ebb9ecSlm66018 else 5013e1ebb9ecSlm66018 return (VDC_SEQ_NUM_SKIP); 50141ae08745Sheppo } 50151ae08745Sheppo 50160a55fbb7Slm66018 50170a55fbb7Slm66018 /* 50180a55fbb7Slm66018 * Function: 50190a55fbb7Slm66018 * vdc_is_supported_version() 50200a55fbb7Slm66018 * 50210a55fbb7Slm66018 * Description: 50220a55fbb7Slm66018 * This routine checks if the major/minor version numbers specified in 50230a55fbb7Slm66018 * 'ver_msg' are supported. If not it finds the next version that is 50240a55fbb7Slm66018 * in the supported version list 'vdc_version[]' and sets the fields in 50250a55fbb7Slm66018 * 'ver_msg' to those values 50260a55fbb7Slm66018 * 50270a55fbb7Slm66018 * Arguments: 50280a55fbb7Slm66018 * ver_msg - LDC message sent by vDisk server 50290a55fbb7Slm66018 * 50300a55fbb7Slm66018 * Return Code: 50310a55fbb7Slm66018 * B_TRUE - Success 50320a55fbb7Slm66018 * B_FALSE - Version not supported 50330a55fbb7Slm66018 */ 50340a55fbb7Slm66018 static boolean_t 50350a55fbb7Slm66018 vdc_is_supported_version(vio_ver_msg_t *ver_msg) 50360a55fbb7Slm66018 { 50370a55fbb7Slm66018 int vdc_num_versions = sizeof (vdc_version) / sizeof (vdc_version[0]); 50380a55fbb7Slm66018 50390a55fbb7Slm66018 for (int i = 0; i < vdc_num_versions; i++) { 50400a55fbb7Slm66018 ASSERT(vdc_version[i].major > 0); 50410a55fbb7Slm66018 ASSERT((i == 0) || 50420a55fbb7Slm66018 (vdc_version[i].major < vdc_version[i-1].major)); 50430a55fbb7Slm66018 50440a55fbb7Slm66018 /* 50450a55fbb7Slm66018 * If the major versions match, adjust the minor version, if 50460a55fbb7Slm66018 * necessary, down to the highest value supported by this 50470a55fbb7Slm66018 * client. The server should support all minor versions lower 50480a55fbb7Slm66018 * than the value it sent 50490a55fbb7Slm66018 */ 50500a55fbb7Slm66018 if (ver_msg->ver_major == vdc_version[i].major) { 50510a55fbb7Slm66018 if (ver_msg->ver_minor > vdc_version[i].minor) { 50523af08d82Slm66018 DMSGX(0, 50533af08d82Slm66018 "Adjusting minor version from %u to %u", 50540a55fbb7Slm66018 ver_msg->ver_minor, vdc_version[i].minor); 50550a55fbb7Slm66018 ver_msg->ver_minor = vdc_version[i].minor; 50560a55fbb7Slm66018 } 50570a55fbb7Slm66018 return (B_TRUE); 50580a55fbb7Slm66018 } 50590a55fbb7Slm66018 50600a55fbb7Slm66018 /* 50610a55fbb7Slm66018 * If the message contains a higher major version number, set 50620a55fbb7Slm66018 * the message's major/minor versions to the current values 50630a55fbb7Slm66018 * and return false, so this message will get resent with 50640a55fbb7Slm66018 * these values, and the server will potentially try again 50650a55fbb7Slm66018 * with the same or a lower version 50660a55fbb7Slm66018 */ 50670a55fbb7Slm66018 if (ver_msg->ver_major > vdc_version[i].major) { 50680a55fbb7Slm66018 ver_msg->ver_major = vdc_version[i].major; 50690a55fbb7Slm66018 ver_msg->ver_minor = vdc_version[i].minor; 50703af08d82Slm66018 DMSGX(0, "Suggesting major/minor (0x%x/0x%x)\n", 50710a55fbb7Slm66018 ver_msg->ver_major, ver_msg->ver_minor); 50720a55fbb7Slm66018 50730a55fbb7Slm66018 return (B_FALSE); 50740a55fbb7Slm66018 } 50750a55fbb7Slm66018 50760a55fbb7Slm66018 /* 50770a55fbb7Slm66018 * Otherwise, the message's major version is less than the 50780a55fbb7Slm66018 * current major version, so continue the loop to the next 50790a55fbb7Slm66018 * (lower) supported version 50800a55fbb7Slm66018 */ 50810a55fbb7Slm66018 } 50820a55fbb7Slm66018 50830a55fbb7Slm66018 /* 50840a55fbb7Slm66018 * No common version was found; "ground" the version pair in the 50850a55fbb7Slm66018 * message to terminate negotiation 50860a55fbb7Slm66018 */ 50870a55fbb7Slm66018 ver_msg->ver_major = 0; 50880a55fbb7Slm66018 ver_msg->ver_minor = 0; 50890a55fbb7Slm66018 50900a55fbb7Slm66018 return (B_FALSE); 50910a55fbb7Slm66018 } 50921ae08745Sheppo /* -------------------------------------------------------------------------- */ 50931ae08745Sheppo 50941ae08745Sheppo /* 50951ae08745Sheppo * DKIO(7) support 50961ae08745Sheppo */ 50971ae08745Sheppo 50981ae08745Sheppo typedef struct vdc_dk_arg { 50991ae08745Sheppo struct dk_callback dkc; 51001ae08745Sheppo int mode; 51011ae08745Sheppo dev_t dev; 51021ae08745Sheppo vdc_t *vdc; 51031ae08745Sheppo } vdc_dk_arg_t; 51041ae08745Sheppo 51051ae08745Sheppo /* 51061ae08745Sheppo * Function: 51071ae08745Sheppo * vdc_dkio_flush_cb() 51081ae08745Sheppo * 51091ae08745Sheppo * Description: 51101ae08745Sheppo * This routine is a callback for DKIOCFLUSHWRITECACHE which can be called 51111ae08745Sheppo * by kernel code. 51121ae08745Sheppo * 51131ae08745Sheppo * Arguments: 51141ae08745Sheppo * arg - a pointer to a vdc_dk_arg_t structure. 51151ae08745Sheppo */ 51161ae08745Sheppo void 51171ae08745Sheppo vdc_dkio_flush_cb(void *arg) 51181ae08745Sheppo { 51191ae08745Sheppo struct vdc_dk_arg *dk_arg = (struct vdc_dk_arg *)arg; 51201ae08745Sheppo struct dk_callback *dkc = NULL; 51211ae08745Sheppo vdc_t *vdc = NULL; 51221ae08745Sheppo int rv; 51231ae08745Sheppo 51241ae08745Sheppo if (dk_arg == NULL) { 51253af08d82Slm66018 cmn_err(CE_NOTE, "?[Unk] DKIOCFLUSHWRITECACHE arg is NULL\n"); 51261ae08745Sheppo return; 51271ae08745Sheppo } 51281ae08745Sheppo dkc = &dk_arg->dkc; 51291ae08745Sheppo vdc = dk_arg->vdc; 51301ae08745Sheppo ASSERT(vdc != NULL); 51311ae08745Sheppo 51323af08d82Slm66018 rv = vdc_do_sync_op(vdc, VD_OP_FLUSH, NULL, 0, 51332f5224aeSachartre VDCPART(dk_arg->dev), 0, CB_SYNC, 0, VIO_both_dir, B_TRUE); 51341ae08745Sheppo if (rv != 0) { 51353af08d82Slm66018 DMSG(vdc, 0, "[%d] DKIOCFLUSHWRITECACHE failed %d : model %x\n", 5136e1ebb9ecSlm66018 vdc->instance, rv, 51371ae08745Sheppo ddi_model_convert_from(dk_arg->mode & FMODELS)); 51381ae08745Sheppo } 51391ae08745Sheppo 51401ae08745Sheppo /* 51411ae08745Sheppo * Trigger the call back to notify the caller the the ioctl call has 51421ae08745Sheppo * been completed. 51431ae08745Sheppo */ 51441ae08745Sheppo if ((dk_arg->mode & FKIOCTL) && 51451ae08745Sheppo (dkc != NULL) && 51461ae08745Sheppo (dkc->dkc_callback != NULL)) { 51471ae08745Sheppo ASSERT(dkc->dkc_cookie != NULL); 51488e6a2a04Slm66018 (*dkc->dkc_callback)(dkc->dkc_cookie, rv); 51491ae08745Sheppo } 51501ae08745Sheppo 51511ae08745Sheppo /* Indicate that one less DKIO write flush is outstanding */ 51521ae08745Sheppo mutex_enter(&vdc->lock); 51531ae08745Sheppo vdc->dkio_flush_pending--; 51541ae08745Sheppo ASSERT(vdc->dkio_flush_pending >= 0); 51551ae08745Sheppo mutex_exit(&vdc->lock); 51568e6a2a04Slm66018 51578e6a2a04Slm66018 /* free the mem that was allocated when the callback was dispatched */ 51588e6a2a04Slm66018 kmem_free(arg, sizeof (vdc_dk_arg_t)); 51591ae08745Sheppo } 51601ae08745Sheppo 51611ae08745Sheppo /* 516287a7269eSachartre * Function: 51639642afceSachartre * vdc_dkio_gapart() 516487a7269eSachartre * 516587a7269eSachartre * Description: 516687a7269eSachartre * This function implements the DKIOCGAPART ioctl. 516787a7269eSachartre * 516887a7269eSachartre * Arguments: 516978fcd0a1Sachartre * vdc - soft state pointer 517087a7269eSachartre * arg - a pointer to a dk_map[NDKMAP] or dk_map32[NDKMAP] structure 517187a7269eSachartre * flag - ioctl flags 517287a7269eSachartre */ 517387a7269eSachartre static int 51749642afceSachartre vdc_dkio_gapart(vdc_t *vdc, caddr_t arg, int flag) 517587a7269eSachartre { 517678fcd0a1Sachartre struct dk_geom *geom; 517778fcd0a1Sachartre struct vtoc *vtoc; 517887a7269eSachartre union { 517987a7269eSachartre struct dk_map map[NDKMAP]; 518087a7269eSachartre struct dk_map32 map32[NDKMAP]; 518187a7269eSachartre } data; 518287a7269eSachartre int i, rv, size; 518387a7269eSachartre 518478fcd0a1Sachartre mutex_enter(&vdc->lock); 518587a7269eSachartre 518678fcd0a1Sachartre if ((rv = vdc_validate_geometry(vdc)) != 0) { 518778fcd0a1Sachartre mutex_exit(&vdc->lock); 518887a7269eSachartre return (rv); 518978fcd0a1Sachartre } 519087a7269eSachartre 519178fcd0a1Sachartre vtoc = vdc->vtoc; 519278fcd0a1Sachartre geom = vdc->geom; 519387a7269eSachartre 519487a7269eSachartre if (ddi_model_convert_from(flag & FMODELS) == DDI_MODEL_ILP32) { 519587a7269eSachartre 519678fcd0a1Sachartre for (i = 0; i < vtoc->v_nparts; i++) { 519778fcd0a1Sachartre data.map32[i].dkl_cylno = vtoc->v_part[i].p_start / 519878fcd0a1Sachartre (geom->dkg_nhead * geom->dkg_nsect); 519978fcd0a1Sachartre data.map32[i].dkl_nblk = vtoc->v_part[i].p_size; 520087a7269eSachartre } 520187a7269eSachartre size = NDKMAP * sizeof (struct dk_map32); 520287a7269eSachartre 520387a7269eSachartre } else { 520487a7269eSachartre 520578fcd0a1Sachartre for (i = 0; i < vtoc->v_nparts; i++) { 520678fcd0a1Sachartre data.map[i].dkl_cylno = vtoc->v_part[i].p_start / 520778fcd0a1Sachartre (geom->dkg_nhead * geom->dkg_nsect); 520878fcd0a1Sachartre data.map[i].dkl_nblk = vtoc->v_part[i].p_size; 520987a7269eSachartre } 521087a7269eSachartre size = NDKMAP * sizeof (struct dk_map); 521187a7269eSachartre 521287a7269eSachartre } 521387a7269eSachartre 521478fcd0a1Sachartre mutex_exit(&vdc->lock); 521578fcd0a1Sachartre 521687a7269eSachartre if (ddi_copyout(&data, arg, size, flag) != 0) 521787a7269eSachartre return (EFAULT); 521887a7269eSachartre 521987a7269eSachartre return (0); 522087a7269eSachartre } 522187a7269eSachartre 522287a7269eSachartre /* 522387a7269eSachartre * Function: 52249642afceSachartre * vdc_dkio_partition() 52259642afceSachartre * 52269642afceSachartre * Description: 52279642afceSachartre * This function implements the DKIOCPARTITION ioctl. 52289642afceSachartre * 52299642afceSachartre * Arguments: 52309642afceSachartre * vdc - soft state pointer 52319642afceSachartre * arg - a pointer to a struct partition64 structure 52329642afceSachartre * flag - ioctl flags 52339642afceSachartre */ 52349642afceSachartre static int 52359642afceSachartre vdc_dkio_partition(vdc_t *vdc, caddr_t arg, int flag) 52369642afceSachartre { 52379642afceSachartre struct partition64 p64; 52389642afceSachartre efi_gpt_t *gpt; 52399642afceSachartre efi_gpe_t *gpe; 52409642afceSachartre vd_efi_dev_t edev; 52419642afceSachartre uint_t partno; 52429642afceSachartre int rv; 52439642afceSachartre 52449642afceSachartre if (ddi_copyin(arg, &p64, sizeof (struct partition64), flag)) { 52459642afceSachartre return (EFAULT); 52469642afceSachartre } 52479642afceSachartre 52489642afceSachartre VD_EFI_DEV_SET(edev, vdc, vd_process_efi_ioctl); 52499642afceSachartre 52509642afceSachartre if ((rv = vd_efi_alloc_and_read(&edev, &gpt, &gpe)) != 0) { 52519642afceSachartre return (rv); 52529642afceSachartre } 52539642afceSachartre 52549642afceSachartre partno = p64.p_partno; 52559642afceSachartre 52569642afceSachartre if (partno >= gpt->efi_gpt_NumberOfPartitionEntries) { 52579642afceSachartre vd_efi_free(&edev, gpt, gpe); 52589642afceSachartre return (ESRCH); 52599642afceSachartre } 52609642afceSachartre 52619642afceSachartre bcopy(&gpe[partno].efi_gpe_PartitionTypeGUID, &p64.p_type, 52629642afceSachartre sizeof (struct uuid)); 52639642afceSachartre p64.p_start = gpe[partno].efi_gpe_StartingLBA; 52649642afceSachartre p64.p_size = gpe[partno].efi_gpe_EndingLBA - p64.p_start + 1; 52659642afceSachartre 52669642afceSachartre if (ddi_copyout(&p64, arg, sizeof (struct partition64), flag)) { 52679642afceSachartre vd_efi_free(&edev, gpt, gpe); 52689642afceSachartre return (EFAULT); 52699642afceSachartre } 52709642afceSachartre 52719642afceSachartre vd_efi_free(&edev, gpt, gpe); 52729642afceSachartre return (0); 52739642afceSachartre } 52749642afceSachartre 52759642afceSachartre /* 52769642afceSachartre * Function: 527787a7269eSachartre * vdc_dioctl_rwcmd() 527887a7269eSachartre * 527987a7269eSachartre * Description: 528087a7269eSachartre * This function implements the DIOCTL_RWCMD ioctl. This ioctl is used 528187a7269eSachartre * for DKC_DIRECT disks to read or write at an absolute disk offset. 528287a7269eSachartre * 528387a7269eSachartre * Arguments: 528487a7269eSachartre * dev - device 528587a7269eSachartre * arg - a pointer to a dadkio_rwcmd or dadkio_rwcmd32 structure 528687a7269eSachartre * flag - ioctl flags 528787a7269eSachartre */ 528887a7269eSachartre static int 528987a7269eSachartre vdc_dioctl_rwcmd(dev_t dev, caddr_t arg, int flag) 529087a7269eSachartre { 529187a7269eSachartre struct dadkio_rwcmd32 rwcmd32; 529287a7269eSachartre struct dadkio_rwcmd rwcmd; 529387a7269eSachartre struct iovec aiov; 529487a7269eSachartre struct uio auio; 529587a7269eSachartre int rw, status; 529687a7269eSachartre struct buf *buf; 529787a7269eSachartre 529887a7269eSachartre if (ddi_model_convert_from(flag & FMODELS) == DDI_MODEL_ILP32) { 529987a7269eSachartre if (ddi_copyin((caddr_t)arg, (caddr_t)&rwcmd32, 530087a7269eSachartre sizeof (struct dadkio_rwcmd32), flag)) { 530187a7269eSachartre return (EFAULT); 530287a7269eSachartre } 530387a7269eSachartre rwcmd.cmd = rwcmd32.cmd; 530487a7269eSachartre rwcmd.flags = rwcmd32.flags; 530587a7269eSachartre rwcmd.blkaddr = (daddr_t)rwcmd32.blkaddr; 530687a7269eSachartre rwcmd.buflen = rwcmd32.buflen; 530787a7269eSachartre rwcmd.bufaddr = (caddr_t)(uintptr_t)rwcmd32.bufaddr; 530887a7269eSachartre } else { 530987a7269eSachartre if (ddi_copyin((caddr_t)arg, (caddr_t)&rwcmd, 531087a7269eSachartre sizeof (struct dadkio_rwcmd), flag)) { 531187a7269eSachartre return (EFAULT); 531287a7269eSachartre } 531387a7269eSachartre } 531487a7269eSachartre 531587a7269eSachartre switch (rwcmd.cmd) { 531687a7269eSachartre case DADKIO_RWCMD_READ: 531787a7269eSachartre rw = B_READ; 531887a7269eSachartre break; 531987a7269eSachartre case DADKIO_RWCMD_WRITE: 532087a7269eSachartre rw = B_WRITE; 532187a7269eSachartre break; 532287a7269eSachartre default: 532387a7269eSachartre return (EINVAL); 532487a7269eSachartre } 532587a7269eSachartre 532687a7269eSachartre bzero((caddr_t)&aiov, sizeof (struct iovec)); 532787a7269eSachartre aiov.iov_base = rwcmd.bufaddr; 532887a7269eSachartre aiov.iov_len = rwcmd.buflen; 532987a7269eSachartre 533087a7269eSachartre bzero((caddr_t)&auio, sizeof (struct uio)); 533187a7269eSachartre auio.uio_iov = &aiov; 533287a7269eSachartre auio.uio_iovcnt = 1; 533387a7269eSachartre auio.uio_loffset = rwcmd.blkaddr * DEV_BSIZE; 533487a7269eSachartre auio.uio_resid = rwcmd.buflen; 533587a7269eSachartre auio.uio_segflg = flag & FKIOCTL ? UIO_SYSSPACE : UIO_USERSPACE; 533687a7269eSachartre 533787a7269eSachartre buf = kmem_alloc(sizeof (buf_t), KM_SLEEP); 533887a7269eSachartre bioinit(buf); 533987a7269eSachartre /* 534087a7269eSachartre * We use the private field of buf to specify that this is an 534187a7269eSachartre * I/O using an absolute offset. 534287a7269eSachartre */ 534387a7269eSachartre buf->b_private = (void *)VD_SLICE_NONE; 534487a7269eSachartre 534587a7269eSachartre status = physio(vdc_strategy, buf, dev, rw, vdc_min, &auio); 534687a7269eSachartre 534787a7269eSachartre biofini(buf); 534887a7269eSachartre kmem_free(buf, sizeof (buf_t)); 534987a7269eSachartre 535087a7269eSachartre return (status); 535187a7269eSachartre } 535287a7269eSachartre 535387a7269eSachartre /* 53542f5224aeSachartre * Allocate a buffer for a VD_OP_SCSICMD operation. The size of the allocated 53552f5224aeSachartre * buffer is returned in alloc_len. 53562f5224aeSachartre */ 53572f5224aeSachartre static vd_scsi_t * 53582f5224aeSachartre vdc_scsi_alloc(int cdb_len, int sense_len, int datain_len, int dataout_len, 53592f5224aeSachartre int *alloc_len) 53602f5224aeSachartre { 53612f5224aeSachartre vd_scsi_t *vd_scsi; 53622f5224aeSachartre int vd_scsi_len = VD_SCSI_SIZE; 53632f5224aeSachartre 53642f5224aeSachartre vd_scsi_len += P2ROUNDUP(cdb_len, sizeof (uint64_t)); 53652f5224aeSachartre vd_scsi_len += P2ROUNDUP(sense_len, sizeof (uint64_t)); 53662f5224aeSachartre vd_scsi_len += P2ROUNDUP(datain_len, sizeof (uint64_t)); 53672f5224aeSachartre vd_scsi_len += P2ROUNDUP(dataout_len, sizeof (uint64_t)); 53682f5224aeSachartre 53692f5224aeSachartre ASSERT(vd_scsi_len % sizeof (uint64_t) == 0); 53702f5224aeSachartre 53712f5224aeSachartre vd_scsi = kmem_zalloc(vd_scsi_len, KM_SLEEP); 53722f5224aeSachartre 53732f5224aeSachartre vd_scsi->cdb_len = cdb_len; 53742f5224aeSachartre vd_scsi->sense_len = sense_len; 53752f5224aeSachartre vd_scsi->datain_len = datain_len; 53762f5224aeSachartre vd_scsi->dataout_len = dataout_len; 53772f5224aeSachartre 53782f5224aeSachartre *alloc_len = vd_scsi_len; 53792f5224aeSachartre 53802f5224aeSachartre return (vd_scsi); 53812f5224aeSachartre } 53822f5224aeSachartre 53832f5224aeSachartre /* 53842f5224aeSachartre * Convert the status of a SCSI command to a Solaris return code. 53852f5224aeSachartre * 53862f5224aeSachartre * Arguments: 53872f5224aeSachartre * vd_scsi - The SCSI operation buffer. 53882f5224aeSachartre * log_error - indicate if an error message should be logged. 53892f5224aeSachartre * 53902f5224aeSachartre * Note that our SCSI error messages are rather primitive for the moment 53912f5224aeSachartre * and could be improved by decoding some data like the SCSI command and 53922f5224aeSachartre * the sense key. 53932f5224aeSachartre * 53942f5224aeSachartre * Return value: 53952f5224aeSachartre * 0 - Status is good. 53962f5224aeSachartre * EACCES - Status reports a reservation conflict. 53972f5224aeSachartre * ENOTSUP - Status reports a check condition and sense key 53982f5224aeSachartre * reports an illegal request. 53992f5224aeSachartre * EIO - Any other status. 54002f5224aeSachartre */ 54012f5224aeSachartre static int 54022f5224aeSachartre vdc_scsi_status(vdc_t *vdc, vd_scsi_t *vd_scsi, boolean_t log_error) 54032f5224aeSachartre { 54042f5224aeSachartre int rv; 54052f5224aeSachartre char path_str[MAXPATHLEN]; 54062f5224aeSachartre char panic_str[VDC_RESV_CONFLICT_FMT_LEN + MAXPATHLEN]; 54072f5224aeSachartre union scsi_cdb *cdb; 54082f5224aeSachartre struct scsi_extended_sense *sense; 54092f5224aeSachartre 54102f5224aeSachartre if (vd_scsi->cmd_status == STATUS_GOOD) 54112f5224aeSachartre /* no error */ 54122f5224aeSachartre return (0); 54132f5224aeSachartre 54142f5224aeSachartre /* when the tunable vdc_scsi_log_error is true we log all errors */ 54152f5224aeSachartre if (vdc_scsi_log_error) 54162f5224aeSachartre log_error = B_TRUE; 54172f5224aeSachartre 54182f5224aeSachartre if (log_error) { 54192f5224aeSachartre cmn_err(CE_WARN, "%s (vdc%d):\tError for Command: 0x%x)\n", 54202f5224aeSachartre ddi_pathname(vdc->dip, path_str), vdc->instance, 54212f5224aeSachartre GETCMD(VD_SCSI_DATA_CDB(vd_scsi))); 54222f5224aeSachartre } 54232f5224aeSachartre 54242f5224aeSachartre /* default returned value */ 54252f5224aeSachartre rv = EIO; 54262f5224aeSachartre 54272f5224aeSachartre switch (vd_scsi->cmd_status) { 54282f5224aeSachartre 54292f5224aeSachartre case STATUS_CHECK: 54302f5224aeSachartre case STATUS_TERMINATED: 54312f5224aeSachartre if (log_error) 54322f5224aeSachartre cmn_err(CE_CONT, "\tCheck Condition Error\n"); 54332f5224aeSachartre 54342f5224aeSachartre /* check sense buffer */ 54352f5224aeSachartre if (vd_scsi->sense_len == 0 || 54362f5224aeSachartre vd_scsi->sense_status != STATUS_GOOD) { 54372f5224aeSachartre if (log_error) 54382f5224aeSachartre cmn_err(CE_CONT, "\tNo Sense Data Available\n"); 54392f5224aeSachartre break; 54402f5224aeSachartre } 54412f5224aeSachartre 54422f5224aeSachartre sense = VD_SCSI_DATA_SENSE(vd_scsi); 54432f5224aeSachartre 54442f5224aeSachartre if (log_error) { 54452f5224aeSachartre cmn_err(CE_CONT, "\tSense Key: 0x%x\n" 54462f5224aeSachartre "\tASC: 0x%x, ASCQ: 0x%x\n", 54472f5224aeSachartre scsi_sense_key((uint8_t *)sense), 54482f5224aeSachartre scsi_sense_asc((uint8_t *)sense), 54492f5224aeSachartre scsi_sense_ascq((uint8_t *)sense)); 54502f5224aeSachartre } 54512f5224aeSachartre 54522f5224aeSachartre if (scsi_sense_key((uint8_t *)sense) == KEY_ILLEGAL_REQUEST) 54532f5224aeSachartre rv = ENOTSUP; 54542f5224aeSachartre break; 54552f5224aeSachartre 54562f5224aeSachartre case STATUS_BUSY: 54572f5224aeSachartre if (log_error) 54582f5224aeSachartre cmn_err(CE_NOTE, "\tDevice Busy\n"); 54592f5224aeSachartre break; 54602f5224aeSachartre 54612f5224aeSachartre case STATUS_RESERVATION_CONFLICT: 54622f5224aeSachartre /* 54632f5224aeSachartre * If the command was PERSISTENT_RESERVATION_[IN|OUT] then 54642f5224aeSachartre * reservation conflict could be due to various reasons like 54652f5224aeSachartre * incorrect keys, not registered or not reserved etc. So, 54662f5224aeSachartre * we should not panic in that case. 54672f5224aeSachartre */ 54682f5224aeSachartre cdb = VD_SCSI_DATA_CDB(vd_scsi); 54692f5224aeSachartre if (vdc->failfast_interval != 0 && 54702f5224aeSachartre cdb->scc_cmd != SCMD_PERSISTENT_RESERVE_IN && 54712f5224aeSachartre cdb->scc_cmd != SCMD_PERSISTENT_RESERVE_OUT) { 54722f5224aeSachartre /* failfast is enabled so we have to panic */ 54732f5224aeSachartre (void) snprintf(panic_str, sizeof (panic_str), 54742f5224aeSachartre VDC_RESV_CONFLICT_FMT_STR "%s", 54752f5224aeSachartre ddi_pathname(vdc->dip, path_str)); 54762f5224aeSachartre panic(panic_str); 54772f5224aeSachartre } 54782f5224aeSachartre if (log_error) 54792f5224aeSachartre cmn_err(CE_NOTE, "\tReservation Conflict\n"); 54802f5224aeSachartre rv = EACCES; 54812f5224aeSachartre break; 54822f5224aeSachartre 54832f5224aeSachartre case STATUS_QFULL: 54842f5224aeSachartre if (log_error) 54852f5224aeSachartre cmn_err(CE_NOTE, "\tQueue Full\n"); 54862f5224aeSachartre break; 54872f5224aeSachartre 54882f5224aeSachartre case STATUS_MET: 54892f5224aeSachartre case STATUS_INTERMEDIATE: 54902f5224aeSachartre case STATUS_SCSI2: 54912f5224aeSachartre case STATUS_INTERMEDIATE_MET: 54922f5224aeSachartre case STATUS_ACA_ACTIVE: 54932f5224aeSachartre if (log_error) 54942f5224aeSachartre cmn_err(CE_CONT, 54952f5224aeSachartre "\tUnexpected SCSI status received: 0x%x\n", 54962f5224aeSachartre vd_scsi->cmd_status); 54972f5224aeSachartre break; 54982f5224aeSachartre 54992f5224aeSachartre default: 55002f5224aeSachartre if (log_error) 55012f5224aeSachartre cmn_err(CE_CONT, 55022f5224aeSachartre "\tInvalid SCSI status received: 0x%x\n", 55032f5224aeSachartre vd_scsi->cmd_status); 55042f5224aeSachartre break; 55052f5224aeSachartre } 55062f5224aeSachartre 55072f5224aeSachartre return (rv); 55082f5224aeSachartre } 55092f5224aeSachartre 55102f5224aeSachartre /* 55112f5224aeSachartre * Implemented the USCSICMD uscsi(7I) ioctl. This ioctl is converted to 55122f5224aeSachartre * a VD_OP_SCSICMD operation which is sent to the vdisk server. If a SCSI 55132f5224aeSachartre * reset is requested (i.e. a flag USCSI_RESET* is set) then the ioctl is 55142f5224aeSachartre * converted to a VD_OP_RESET operation. 55152f5224aeSachartre */ 55162f5224aeSachartre static int 55172f5224aeSachartre vdc_uscsi_cmd(vdc_t *vdc, caddr_t arg, int mode) 55182f5224aeSachartre { 55192f5224aeSachartre struct uscsi_cmd uscsi; 55202f5224aeSachartre struct uscsi_cmd32 uscsi32; 55212f5224aeSachartre vd_scsi_t *vd_scsi; 55222f5224aeSachartre int vd_scsi_len; 55232f5224aeSachartre union scsi_cdb *cdb; 55242f5224aeSachartre struct scsi_extended_sense *sense; 55252f5224aeSachartre char *datain, *dataout; 55262f5224aeSachartre size_t cdb_len, datain_len, dataout_len, sense_len; 55272f5224aeSachartre int rv; 55282f5224aeSachartre 55292f5224aeSachartre if (ddi_model_convert_from(mode & FMODELS) == DDI_MODEL_ILP32) { 55302f5224aeSachartre if (ddi_copyin(arg, &uscsi32, sizeof (struct uscsi_cmd32), 55312f5224aeSachartre mode) != 0) 55322f5224aeSachartre return (EFAULT); 55332f5224aeSachartre uscsi_cmd32touscsi_cmd((&uscsi32), (&uscsi)); 55342f5224aeSachartre } else { 55352f5224aeSachartre if (ddi_copyin(arg, &uscsi, sizeof (struct uscsi_cmd), 55362f5224aeSachartre mode) != 0) 55372f5224aeSachartre return (EFAULT); 55382f5224aeSachartre } 55392f5224aeSachartre 55402f5224aeSachartre /* a uscsi reset is converted to a VD_OP_RESET operation */ 55412f5224aeSachartre if (uscsi.uscsi_flags & (USCSI_RESET | USCSI_RESET_LUN | 55422f5224aeSachartre USCSI_RESET_ALL)) { 55432f5224aeSachartre rv = vdc_do_sync_op(vdc, VD_OP_RESET, NULL, 0, 0, 0, CB_SYNC, 55442f5224aeSachartre (void *)(uint64_t)mode, VIO_both_dir, B_TRUE); 55452f5224aeSachartre return (rv); 55462f5224aeSachartre } 55472f5224aeSachartre 55482f5224aeSachartre /* cdb buffer length */ 55492f5224aeSachartre cdb_len = uscsi.uscsi_cdblen; 55502f5224aeSachartre 55512f5224aeSachartre /* data in and out buffers length */ 55522f5224aeSachartre if (uscsi.uscsi_flags & USCSI_READ) { 55532f5224aeSachartre datain_len = uscsi.uscsi_buflen; 55542f5224aeSachartre dataout_len = 0; 55552f5224aeSachartre } else { 55562f5224aeSachartre datain_len = 0; 55572f5224aeSachartre dataout_len = uscsi.uscsi_buflen; 55582f5224aeSachartre } 55592f5224aeSachartre 55602f5224aeSachartre /* sense buffer length */ 55612f5224aeSachartre if (uscsi.uscsi_flags & USCSI_RQENABLE) 55622f5224aeSachartre sense_len = uscsi.uscsi_rqlen; 55632f5224aeSachartre else 55642f5224aeSachartre sense_len = 0; 55652f5224aeSachartre 55662f5224aeSachartre /* allocate buffer for the VD_SCSICMD_OP operation */ 55672f5224aeSachartre vd_scsi = vdc_scsi_alloc(cdb_len, sense_len, datain_len, dataout_len, 55682f5224aeSachartre &vd_scsi_len); 55692f5224aeSachartre 55702f5224aeSachartre /* 55712f5224aeSachartre * The documentation of USCSI_ISOLATE and USCSI_DIAGNOSE is very vague, 55722f5224aeSachartre * but basically they prevent a SCSI command from being retried in case 55732f5224aeSachartre * of an error. 55742f5224aeSachartre */ 55752f5224aeSachartre if ((uscsi.uscsi_flags & USCSI_ISOLATE) || 55762f5224aeSachartre (uscsi.uscsi_flags & USCSI_DIAGNOSE)) 55772f5224aeSachartre vd_scsi->options |= VD_SCSI_OPT_NORETRY; 55782f5224aeSachartre 55792f5224aeSachartre /* set task attribute */ 55802f5224aeSachartre if (uscsi.uscsi_flags & USCSI_NOTAG) { 55812f5224aeSachartre vd_scsi->task_attribute = 0; 55822f5224aeSachartre } else { 55832f5224aeSachartre if (uscsi.uscsi_flags & USCSI_HEAD) 55842f5224aeSachartre vd_scsi->task_attribute = VD_SCSI_TASK_ACA; 55852f5224aeSachartre else if (uscsi.uscsi_flags & USCSI_HTAG) 55862f5224aeSachartre vd_scsi->task_attribute = VD_SCSI_TASK_HQUEUE; 55872f5224aeSachartre else if (uscsi.uscsi_flags & USCSI_OTAG) 55882f5224aeSachartre vd_scsi->task_attribute = VD_SCSI_TASK_ORDERED; 55892f5224aeSachartre else 55902f5224aeSachartre vd_scsi->task_attribute = 0; 55912f5224aeSachartre } 55922f5224aeSachartre 55932f5224aeSachartre /* set timeout */ 55942f5224aeSachartre vd_scsi->timeout = uscsi.uscsi_timeout; 55952f5224aeSachartre 55962f5224aeSachartre /* copy-in cdb data */ 55972f5224aeSachartre cdb = VD_SCSI_DATA_CDB(vd_scsi); 55982f5224aeSachartre if (ddi_copyin(uscsi.uscsi_cdb, cdb, cdb_len, mode) != 0) { 55992f5224aeSachartre rv = EFAULT; 56002f5224aeSachartre goto done; 56012f5224aeSachartre } 56022f5224aeSachartre 56032f5224aeSachartre /* keep a pointer to the sense buffer */ 56042f5224aeSachartre sense = VD_SCSI_DATA_SENSE(vd_scsi); 56052f5224aeSachartre 56062f5224aeSachartre /* keep a pointer to the data-in buffer */ 56072f5224aeSachartre datain = (char *)VD_SCSI_DATA_IN(vd_scsi); 56082f5224aeSachartre 56092f5224aeSachartre /* copy-in request data to the data-out buffer */ 56102f5224aeSachartre dataout = (char *)VD_SCSI_DATA_OUT(vd_scsi); 56112f5224aeSachartre if (!(uscsi.uscsi_flags & USCSI_READ)) { 56122f5224aeSachartre if (ddi_copyin(uscsi.uscsi_bufaddr, dataout, dataout_len, 56132f5224aeSachartre mode)) { 56142f5224aeSachartre rv = EFAULT; 56152f5224aeSachartre goto done; 56162f5224aeSachartre } 56172f5224aeSachartre } 56182f5224aeSachartre 56192f5224aeSachartre /* submit the request */ 56202f5224aeSachartre rv = vdc_do_sync_op(vdc, VD_OP_SCSICMD, (caddr_t)vd_scsi, vd_scsi_len, 56212f5224aeSachartre 0, 0, CB_SYNC, (void *)(uint64_t)mode, VIO_both_dir, B_FALSE); 56222f5224aeSachartre 56232f5224aeSachartre if (rv != 0) 56242f5224aeSachartre goto done; 56252f5224aeSachartre 56262f5224aeSachartre /* update scsi status */ 56272f5224aeSachartre uscsi.uscsi_status = vd_scsi->cmd_status; 56282f5224aeSachartre 56292f5224aeSachartre /* update sense data */ 56302f5224aeSachartre if ((uscsi.uscsi_flags & USCSI_RQENABLE) && 56312f5224aeSachartre (uscsi.uscsi_status == STATUS_CHECK || 56322f5224aeSachartre uscsi.uscsi_status == STATUS_TERMINATED)) { 56332f5224aeSachartre 56342f5224aeSachartre uscsi.uscsi_rqstatus = vd_scsi->sense_status; 56352f5224aeSachartre 56362f5224aeSachartre if (uscsi.uscsi_rqstatus == STATUS_GOOD) { 56372f5224aeSachartre uscsi.uscsi_rqresid = uscsi.uscsi_rqlen - 56382f5224aeSachartre vd_scsi->sense_len; 56392f5224aeSachartre if (ddi_copyout(sense, uscsi.uscsi_rqbuf, 56402f5224aeSachartre vd_scsi->sense_len, mode) != 0) { 56412f5224aeSachartre rv = EFAULT; 56422f5224aeSachartre goto done; 56432f5224aeSachartre } 56442f5224aeSachartre } 56452f5224aeSachartre } 56462f5224aeSachartre 56472f5224aeSachartre /* update request data */ 56482f5224aeSachartre if (uscsi.uscsi_status == STATUS_GOOD) { 56492f5224aeSachartre if (uscsi.uscsi_flags & USCSI_READ) { 56502f5224aeSachartre uscsi.uscsi_resid = uscsi.uscsi_buflen - 56512f5224aeSachartre vd_scsi->datain_len; 56522f5224aeSachartre if (ddi_copyout(datain, uscsi.uscsi_bufaddr, 56532f5224aeSachartre vd_scsi->datain_len, mode) != 0) { 56542f5224aeSachartre rv = EFAULT; 56552f5224aeSachartre goto done; 56562f5224aeSachartre } 56572f5224aeSachartre } else { 56582f5224aeSachartre uscsi.uscsi_resid = uscsi.uscsi_buflen - 56592f5224aeSachartre vd_scsi->dataout_len; 56602f5224aeSachartre } 56612f5224aeSachartre } 56622f5224aeSachartre 56632f5224aeSachartre /* copy-out result */ 56642f5224aeSachartre if (ddi_model_convert_from(mode & FMODELS) == DDI_MODEL_ILP32) { 56652f5224aeSachartre uscsi_cmdtouscsi_cmd32((&uscsi), (&uscsi32)); 56662f5224aeSachartre if (ddi_copyout(&uscsi32, arg, sizeof (struct uscsi_cmd32), 56672f5224aeSachartre mode) != 0) { 56682f5224aeSachartre rv = EFAULT; 56692f5224aeSachartre goto done; 56702f5224aeSachartre } 56712f5224aeSachartre } else { 56722f5224aeSachartre if (ddi_copyout(&uscsi, arg, sizeof (struct uscsi_cmd), 56732f5224aeSachartre mode) != 0) { 56742f5224aeSachartre rv = EFAULT; 56752f5224aeSachartre goto done; 56762f5224aeSachartre } 56772f5224aeSachartre } 56782f5224aeSachartre 56792f5224aeSachartre /* get the return code from the SCSI command status */ 56802f5224aeSachartre rv = vdc_scsi_status(vdc, vd_scsi, 56812f5224aeSachartre !(uscsi.uscsi_flags & USCSI_SILENT)); 56822f5224aeSachartre 56832f5224aeSachartre done: 56842f5224aeSachartre kmem_free(vd_scsi, vd_scsi_len); 56852f5224aeSachartre return (rv); 56862f5224aeSachartre } 56872f5224aeSachartre 56882f5224aeSachartre /* 56892f5224aeSachartre * Create a VD_OP_SCSICMD buffer for a SCSI PERSISTENT IN command. 56902f5224aeSachartre * 56912f5224aeSachartre * Arguments: 56922f5224aeSachartre * cmd - SCSI PERSISTENT IN command 56932f5224aeSachartre * len - length of the SCSI input buffer 56942f5224aeSachartre * vd_scsi_len - return the length of the allocated buffer 56952f5224aeSachartre * 56962f5224aeSachartre * Returned Value: 56972f5224aeSachartre * a pointer to the allocated VD_OP_SCSICMD buffer. 56982f5224aeSachartre */ 56992f5224aeSachartre static vd_scsi_t * 57002f5224aeSachartre vdc_scsi_alloc_persistent_in(uchar_t cmd, int len, int *vd_scsi_len) 57012f5224aeSachartre { 57022f5224aeSachartre int cdb_len, sense_len, datain_len, dataout_len; 57032f5224aeSachartre vd_scsi_t *vd_scsi; 57042f5224aeSachartre union scsi_cdb *cdb; 57052f5224aeSachartre 57062f5224aeSachartre cdb_len = CDB_GROUP1; 57072f5224aeSachartre sense_len = sizeof (struct scsi_extended_sense); 57082f5224aeSachartre datain_len = len; 57092f5224aeSachartre dataout_len = 0; 57102f5224aeSachartre 57112f5224aeSachartre vd_scsi = vdc_scsi_alloc(cdb_len, sense_len, datain_len, dataout_len, 57122f5224aeSachartre vd_scsi_len); 57132f5224aeSachartre 57142f5224aeSachartre cdb = VD_SCSI_DATA_CDB(vd_scsi); 57152f5224aeSachartre 57162f5224aeSachartre /* set cdb */ 57172f5224aeSachartre cdb->scc_cmd = SCMD_PERSISTENT_RESERVE_IN; 57182f5224aeSachartre cdb->cdb_opaque[1] = cmd; 57192f5224aeSachartre FORMG1COUNT(cdb, datain_len); 57202f5224aeSachartre 57212f5224aeSachartre vd_scsi->timeout = vdc_scsi_timeout; 57222f5224aeSachartre 57232f5224aeSachartre return (vd_scsi); 57242f5224aeSachartre } 57252f5224aeSachartre 57262f5224aeSachartre /* 57272f5224aeSachartre * Create a VD_OP_SCSICMD buffer for a SCSI PERSISTENT OUT command. 57282f5224aeSachartre * 57292f5224aeSachartre * Arguments: 57302f5224aeSachartre * cmd - SCSI PERSISTENT OUT command 57312f5224aeSachartre * len - length of the SCSI output buffer 57322f5224aeSachartre * vd_scsi_len - return the length of the allocated buffer 57332f5224aeSachartre * 57342f5224aeSachartre * Returned Code: 57352f5224aeSachartre * a pointer to the allocated VD_OP_SCSICMD buffer. 57362f5224aeSachartre */ 57372f5224aeSachartre static vd_scsi_t * 57382f5224aeSachartre vdc_scsi_alloc_persistent_out(uchar_t cmd, int len, int *vd_scsi_len) 57392f5224aeSachartre { 57402f5224aeSachartre int cdb_len, sense_len, datain_len, dataout_len; 57412f5224aeSachartre vd_scsi_t *vd_scsi; 57422f5224aeSachartre union scsi_cdb *cdb; 57432f5224aeSachartre 57442f5224aeSachartre cdb_len = CDB_GROUP1; 57452f5224aeSachartre sense_len = sizeof (struct scsi_extended_sense); 57462f5224aeSachartre datain_len = 0; 57472f5224aeSachartre dataout_len = len; 57482f5224aeSachartre 57492f5224aeSachartre vd_scsi = vdc_scsi_alloc(cdb_len, sense_len, datain_len, dataout_len, 57502f5224aeSachartre vd_scsi_len); 57512f5224aeSachartre 57522f5224aeSachartre cdb = VD_SCSI_DATA_CDB(vd_scsi); 57532f5224aeSachartre 57542f5224aeSachartre /* set cdb */ 57552f5224aeSachartre cdb->scc_cmd = SCMD_PERSISTENT_RESERVE_OUT; 57562f5224aeSachartre cdb->cdb_opaque[1] = cmd; 57572f5224aeSachartre FORMG1COUNT(cdb, dataout_len); 57582f5224aeSachartre 57592f5224aeSachartre vd_scsi->timeout = vdc_scsi_timeout; 57602f5224aeSachartre 57612f5224aeSachartre return (vd_scsi); 57622f5224aeSachartre } 57632f5224aeSachartre 57642f5224aeSachartre /* 57652f5224aeSachartre * Implement the MHIOCGRP_INKEYS mhd(7i) ioctl. The ioctl is converted 57662f5224aeSachartre * to a SCSI PERSISTENT IN READ KEYS command which is sent to the vdisk 57672f5224aeSachartre * server with a VD_OP_SCSICMD operation. 57682f5224aeSachartre */ 57692f5224aeSachartre static int 57702f5224aeSachartre vdc_mhd_inkeys(vdc_t *vdc, caddr_t arg, int mode) 57712f5224aeSachartre { 57722f5224aeSachartre vd_scsi_t *vd_scsi; 57732f5224aeSachartre mhioc_inkeys_t inkeys; 57742f5224aeSachartre mhioc_key_list_t klist; 57752f5224aeSachartre struct mhioc_inkeys32 inkeys32; 57762f5224aeSachartre struct mhioc_key_list32 klist32; 57772f5224aeSachartre sd_prin_readkeys_t *scsi_keys; 57782f5224aeSachartre void *user_keys; 57792f5224aeSachartre int vd_scsi_len; 57802f5224aeSachartre int listsize, listlen, rv; 57812f5224aeSachartre 57822f5224aeSachartre /* copyin arguments */ 57832f5224aeSachartre if (ddi_model_convert_from(mode & FMODELS) == DDI_MODEL_ILP32) { 57842f5224aeSachartre rv = ddi_copyin(arg, &inkeys32, sizeof (inkeys32), mode); 57852f5224aeSachartre if (rv != 0) 57862f5224aeSachartre return (EFAULT); 57872f5224aeSachartre 57882f5224aeSachartre rv = ddi_copyin((caddr_t)(uintptr_t)inkeys32.li, &klist32, 57892f5224aeSachartre sizeof (klist32), mode); 57902f5224aeSachartre if (rv != 0) 57912f5224aeSachartre return (EFAULT); 57922f5224aeSachartre 57932f5224aeSachartre listsize = klist32.listsize; 57942f5224aeSachartre } else { 57952f5224aeSachartre rv = ddi_copyin(arg, &inkeys, sizeof (inkeys), mode); 57962f5224aeSachartre if (rv != 0) 57972f5224aeSachartre return (EFAULT); 57982f5224aeSachartre 57992f5224aeSachartre rv = ddi_copyin(inkeys.li, &klist, sizeof (klist), mode); 58002f5224aeSachartre if (rv != 0) 58012f5224aeSachartre return (EFAULT); 58022f5224aeSachartre 58032f5224aeSachartre listsize = klist.listsize; 58042f5224aeSachartre } 58052f5224aeSachartre 58062f5224aeSachartre /* build SCSI VD_OP request */ 58072f5224aeSachartre vd_scsi = vdc_scsi_alloc_persistent_in(SD_READ_KEYS, 58082f5224aeSachartre sizeof (sd_prin_readkeys_t) - sizeof (caddr_t) + 58092f5224aeSachartre (sizeof (mhioc_resv_key_t) * listsize), &vd_scsi_len); 58102f5224aeSachartre 58112f5224aeSachartre scsi_keys = (sd_prin_readkeys_t *)VD_SCSI_DATA_IN(vd_scsi); 58122f5224aeSachartre 58132f5224aeSachartre /* submit the request */ 58142f5224aeSachartre rv = vdc_do_sync_op(vdc, VD_OP_SCSICMD, (caddr_t)vd_scsi, vd_scsi_len, 58152f5224aeSachartre 0, 0, CB_SYNC, (void *)(uint64_t)mode, VIO_both_dir, B_FALSE); 58162f5224aeSachartre 58172f5224aeSachartre if (rv != 0) 58182f5224aeSachartre goto done; 58192f5224aeSachartre 58202f5224aeSachartre listlen = scsi_keys->len / MHIOC_RESV_KEY_SIZE; 58212f5224aeSachartre 58222f5224aeSachartre if (ddi_model_convert_from(mode & FMODELS) == DDI_MODEL_ILP32) { 58232f5224aeSachartre inkeys32.generation = scsi_keys->generation; 58242f5224aeSachartre rv = ddi_copyout(&inkeys32, arg, sizeof (inkeys32), mode); 58252f5224aeSachartre if (rv != 0) { 58262f5224aeSachartre rv = EFAULT; 58272f5224aeSachartre goto done; 58282f5224aeSachartre } 58292f5224aeSachartre 58302f5224aeSachartre klist32.listlen = listlen; 58312f5224aeSachartre rv = ddi_copyout(&klist32, (caddr_t)(uintptr_t)inkeys32.li, 58322f5224aeSachartre sizeof (klist32), mode); 58332f5224aeSachartre if (rv != 0) { 58342f5224aeSachartre rv = EFAULT; 58352f5224aeSachartre goto done; 58362f5224aeSachartre } 58372f5224aeSachartre 58382f5224aeSachartre user_keys = (caddr_t)(uintptr_t)klist32.list; 58392f5224aeSachartre } else { 58402f5224aeSachartre inkeys.generation = scsi_keys->generation; 58412f5224aeSachartre rv = ddi_copyout(&inkeys, arg, sizeof (inkeys), mode); 58422f5224aeSachartre if (rv != 0) { 58432f5224aeSachartre rv = EFAULT; 58442f5224aeSachartre goto done; 58452f5224aeSachartre } 58462f5224aeSachartre 58472f5224aeSachartre klist.listlen = listlen; 58482f5224aeSachartre rv = ddi_copyout(&klist, inkeys.li, sizeof (klist), mode); 58492f5224aeSachartre if (rv != 0) { 58502f5224aeSachartre rv = EFAULT; 58512f5224aeSachartre goto done; 58522f5224aeSachartre } 58532f5224aeSachartre 58542f5224aeSachartre user_keys = klist.list; 58552f5224aeSachartre } 58562f5224aeSachartre 58572f5224aeSachartre /* copy out keys */ 58582f5224aeSachartre if (listlen > 0 && listsize > 0) { 58592f5224aeSachartre if (listsize < listlen) 58602f5224aeSachartre listlen = listsize; 58612f5224aeSachartre rv = ddi_copyout(&scsi_keys->keylist, user_keys, 58622f5224aeSachartre listlen * MHIOC_RESV_KEY_SIZE, mode); 58632f5224aeSachartre if (rv != 0) 58642f5224aeSachartre rv = EFAULT; 58652f5224aeSachartre } 58662f5224aeSachartre 58672f5224aeSachartre if (rv == 0) 58682f5224aeSachartre rv = vdc_scsi_status(vdc, vd_scsi, B_FALSE); 58692f5224aeSachartre 58702f5224aeSachartre done: 58712f5224aeSachartre kmem_free(vd_scsi, vd_scsi_len); 58722f5224aeSachartre 58732f5224aeSachartre return (rv); 58742f5224aeSachartre } 58752f5224aeSachartre 58762f5224aeSachartre /* 58772f5224aeSachartre * Implement the MHIOCGRP_INRESV mhd(7i) ioctl. The ioctl is converted 58782f5224aeSachartre * to a SCSI PERSISTENT IN READ RESERVATION command which is sent to 58792f5224aeSachartre * the vdisk server with a VD_OP_SCSICMD operation. 58802f5224aeSachartre */ 58812f5224aeSachartre static int 58822f5224aeSachartre vdc_mhd_inresv(vdc_t *vdc, caddr_t arg, int mode) 58832f5224aeSachartre { 58842f5224aeSachartre vd_scsi_t *vd_scsi; 58852f5224aeSachartre mhioc_inresvs_t inresv; 58862f5224aeSachartre mhioc_resv_desc_list_t rlist; 58872f5224aeSachartre struct mhioc_inresvs32 inresv32; 58882f5224aeSachartre struct mhioc_resv_desc_list32 rlist32; 58892f5224aeSachartre mhioc_resv_desc_t mhd_resv; 58902f5224aeSachartre sd_prin_readresv_t *scsi_resv; 58912f5224aeSachartre sd_readresv_desc_t *resv; 58922f5224aeSachartre mhioc_resv_desc_t *user_resv; 58932f5224aeSachartre int vd_scsi_len; 58942f5224aeSachartre int listsize, listlen, i, rv; 58952f5224aeSachartre 58962f5224aeSachartre /* copyin arguments */ 58972f5224aeSachartre if (ddi_model_convert_from(mode & FMODELS) == DDI_MODEL_ILP32) { 58982f5224aeSachartre rv = ddi_copyin(arg, &inresv32, sizeof (inresv32), mode); 58992f5224aeSachartre if (rv != 0) 59002f5224aeSachartre return (EFAULT); 59012f5224aeSachartre 59022f5224aeSachartre rv = ddi_copyin((caddr_t)(uintptr_t)inresv32.li, &rlist32, 59032f5224aeSachartre sizeof (rlist32), mode); 59042f5224aeSachartre if (rv != 0) 59052f5224aeSachartre return (EFAULT); 59062f5224aeSachartre 59072f5224aeSachartre listsize = rlist32.listsize; 59082f5224aeSachartre } else { 59092f5224aeSachartre rv = ddi_copyin(arg, &inresv, sizeof (inresv), mode); 59102f5224aeSachartre if (rv != 0) 59112f5224aeSachartre return (EFAULT); 59122f5224aeSachartre 59132f5224aeSachartre rv = ddi_copyin(inresv.li, &rlist, sizeof (rlist), mode); 59142f5224aeSachartre if (rv != 0) 59152f5224aeSachartre return (EFAULT); 59162f5224aeSachartre 59172f5224aeSachartre listsize = rlist.listsize; 59182f5224aeSachartre } 59192f5224aeSachartre 59202f5224aeSachartre /* build SCSI VD_OP request */ 59212f5224aeSachartre vd_scsi = vdc_scsi_alloc_persistent_in(SD_READ_RESV, 59222f5224aeSachartre sizeof (sd_prin_readresv_t) - sizeof (caddr_t) + 59232f5224aeSachartre (SCSI3_RESV_DESC_LEN * listsize), &vd_scsi_len); 59242f5224aeSachartre 59252f5224aeSachartre scsi_resv = (sd_prin_readresv_t *)VD_SCSI_DATA_IN(vd_scsi); 59262f5224aeSachartre 59272f5224aeSachartre /* submit the request */ 59282f5224aeSachartre rv = vdc_do_sync_op(vdc, VD_OP_SCSICMD, (caddr_t)vd_scsi, vd_scsi_len, 59292f5224aeSachartre 0, 0, CB_SYNC, (void *)(uint64_t)mode, VIO_both_dir, B_FALSE); 59302f5224aeSachartre 59312f5224aeSachartre if (rv != 0) 59322f5224aeSachartre goto done; 59332f5224aeSachartre 59342f5224aeSachartre listlen = scsi_resv->len / SCSI3_RESV_DESC_LEN; 59352f5224aeSachartre 59362f5224aeSachartre if (ddi_model_convert_from(mode & FMODELS) == DDI_MODEL_ILP32) { 59372f5224aeSachartre inresv32.generation = scsi_resv->generation; 59382f5224aeSachartre rv = ddi_copyout(&inresv32, arg, sizeof (inresv32), mode); 59392f5224aeSachartre if (rv != 0) { 59402f5224aeSachartre rv = EFAULT; 59412f5224aeSachartre goto done; 59422f5224aeSachartre } 59432f5224aeSachartre 59442f5224aeSachartre rlist32.listlen = listlen; 59452f5224aeSachartre rv = ddi_copyout(&rlist32, (caddr_t)(uintptr_t)inresv32.li, 59462f5224aeSachartre sizeof (rlist32), mode); 59472f5224aeSachartre if (rv != 0) { 59482f5224aeSachartre rv = EFAULT; 59492f5224aeSachartre goto done; 59502f5224aeSachartre } 59512f5224aeSachartre 59522f5224aeSachartre user_resv = (mhioc_resv_desc_t *)(uintptr_t)rlist32.list; 59532f5224aeSachartre } else { 59542f5224aeSachartre inresv.generation = scsi_resv->generation; 59552f5224aeSachartre rv = ddi_copyout(&inresv, arg, sizeof (inresv), mode); 59562f5224aeSachartre if (rv != 0) { 59572f5224aeSachartre rv = EFAULT; 59582f5224aeSachartre goto done; 59592f5224aeSachartre } 59602f5224aeSachartre 59612f5224aeSachartre rlist.listlen = listlen; 59622f5224aeSachartre rv = ddi_copyout(&rlist, inresv.li, sizeof (rlist), mode); 59632f5224aeSachartre if (rv != 0) { 59642f5224aeSachartre rv = EFAULT; 59652f5224aeSachartre goto done; 59662f5224aeSachartre } 59672f5224aeSachartre 59682f5224aeSachartre user_resv = rlist.list; 59692f5224aeSachartre } 59702f5224aeSachartre 59712f5224aeSachartre /* copy out reservations */ 59722f5224aeSachartre if (listsize > 0 && listlen > 0) { 59732f5224aeSachartre if (listsize < listlen) 59742f5224aeSachartre listlen = listsize; 59752f5224aeSachartre resv = (sd_readresv_desc_t *)&scsi_resv->readresv_desc; 59762f5224aeSachartre 59772f5224aeSachartre for (i = 0; i < listlen; i++) { 59782f5224aeSachartre mhd_resv.type = resv->type; 59792f5224aeSachartre mhd_resv.scope = resv->scope; 59802f5224aeSachartre mhd_resv.scope_specific_addr = 59812f5224aeSachartre BE_32(resv->scope_specific_addr); 59822f5224aeSachartre bcopy(&resv->resvkey, &mhd_resv.key, 59832f5224aeSachartre MHIOC_RESV_KEY_SIZE); 59842f5224aeSachartre 59852f5224aeSachartre rv = ddi_copyout(&mhd_resv, user_resv, 59862f5224aeSachartre sizeof (mhd_resv), mode); 59872f5224aeSachartre if (rv != 0) { 59882f5224aeSachartre rv = EFAULT; 59892f5224aeSachartre goto done; 59902f5224aeSachartre } 59912f5224aeSachartre resv++; 59922f5224aeSachartre user_resv++; 59932f5224aeSachartre } 59942f5224aeSachartre } 59952f5224aeSachartre 59962f5224aeSachartre if (rv == 0) 59972f5224aeSachartre rv = vdc_scsi_status(vdc, vd_scsi, B_FALSE); 59982f5224aeSachartre 59992f5224aeSachartre done: 60002f5224aeSachartre kmem_free(vd_scsi, vd_scsi_len); 60012f5224aeSachartre return (rv); 60022f5224aeSachartre } 60032f5224aeSachartre 60042f5224aeSachartre /* 60052f5224aeSachartre * Implement the MHIOCGRP_REGISTER mhd(7i) ioctl. The ioctl is converted 60062f5224aeSachartre * to a SCSI PERSISTENT OUT REGISTER command which is sent to the vdisk 60072f5224aeSachartre * server with a VD_OP_SCSICMD operation. 60082f5224aeSachartre */ 60092f5224aeSachartre static int 60102f5224aeSachartre vdc_mhd_register(vdc_t *vdc, caddr_t arg, int mode) 60112f5224aeSachartre { 60122f5224aeSachartre vd_scsi_t *vd_scsi; 60132f5224aeSachartre sd_prout_t *scsi_prout; 60142f5224aeSachartre mhioc_register_t mhd_reg; 60152f5224aeSachartre int vd_scsi_len, rv; 60162f5224aeSachartre 60172f5224aeSachartre /* copyin arguments */ 60182f5224aeSachartre rv = ddi_copyin(arg, &mhd_reg, sizeof (mhd_reg), mode); 60192f5224aeSachartre if (rv != 0) 60202f5224aeSachartre return (EFAULT); 60212f5224aeSachartre 60222f5224aeSachartre /* build SCSI VD_OP request */ 60232f5224aeSachartre vd_scsi = vdc_scsi_alloc_persistent_out(SD_SCSI3_REGISTER, 60242f5224aeSachartre sizeof (sd_prout_t), &vd_scsi_len); 60252f5224aeSachartre 60262f5224aeSachartre /* set parameters */ 60272f5224aeSachartre scsi_prout = (sd_prout_t *)VD_SCSI_DATA_OUT(vd_scsi); 60282f5224aeSachartre bcopy(mhd_reg.oldkey.key, scsi_prout->res_key, MHIOC_RESV_KEY_SIZE); 60292f5224aeSachartre bcopy(mhd_reg.newkey.key, scsi_prout->service_key, MHIOC_RESV_KEY_SIZE); 60302f5224aeSachartre scsi_prout->aptpl = (uchar_t)mhd_reg.aptpl; 60312f5224aeSachartre 60322f5224aeSachartre /* submit the request */ 60332f5224aeSachartre rv = vdc_do_sync_op(vdc, VD_OP_SCSICMD, (caddr_t)vd_scsi, vd_scsi_len, 60342f5224aeSachartre 0, 0, CB_SYNC, (void *)(uint64_t)mode, VIO_both_dir, B_FALSE); 60352f5224aeSachartre 60362f5224aeSachartre if (rv == 0) 60372f5224aeSachartre rv = vdc_scsi_status(vdc, vd_scsi, B_FALSE); 60382f5224aeSachartre 60392f5224aeSachartre kmem_free(vd_scsi, vd_scsi_len); 60402f5224aeSachartre return (rv); 60412f5224aeSachartre } 60422f5224aeSachartre 60432f5224aeSachartre /* 60442f5224aeSachartre * Implement the MHIOCGRP_RESERVE mhd(7i) ioctl. The ioctl is converted 60452f5224aeSachartre * to a SCSI PERSISTENT OUT RESERVE command which is sent to the vdisk 60462f5224aeSachartre * server with a VD_OP_SCSICMD operation. 60472f5224aeSachartre */ 60482f5224aeSachartre static int 60492f5224aeSachartre vdc_mhd_reserve(vdc_t *vdc, caddr_t arg, int mode) 60502f5224aeSachartre { 60512f5224aeSachartre union scsi_cdb *cdb; 60522f5224aeSachartre vd_scsi_t *vd_scsi; 60532f5224aeSachartre sd_prout_t *scsi_prout; 60542f5224aeSachartre mhioc_resv_desc_t mhd_resv; 60552f5224aeSachartre int vd_scsi_len, rv; 60562f5224aeSachartre 60572f5224aeSachartre /* copyin arguments */ 60582f5224aeSachartre rv = ddi_copyin(arg, &mhd_resv, sizeof (mhd_resv), mode); 60592f5224aeSachartre if (rv != 0) 60602f5224aeSachartre return (EFAULT); 60612f5224aeSachartre 60622f5224aeSachartre /* build SCSI VD_OP request */ 60632f5224aeSachartre vd_scsi = vdc_scsi_alloc_persistent_out(SD_SCSI3_RESERVE, 60642f5224aeSachartre sizeof (sd_prout_t), &vd_scsi_len); 60652f5224aeSachartre 60662f5224aeSachartre /* set parameters */ 60672f5224aeSachartre cdb = VD_SCSI_DATA_CDB(vd_scsi); 60682f5224aeSachartre scsi_prout = (sd_prout_t *)VD_SCSI_DATA_OUT(vd_scsi); 60692f5224aeSachartre bcopy(mhd_resv.key.key, scsi_prout->res_key, MHIOC_RESV_KEY_SIZE); 60702f5224aeSachartre scsi_prout->scope_address = mhd_resv.scope_specific_addr; 60712f5224aeSachartre cdb->cdb_opaque[2] = mhd_resv.type; 60722f5224aeSachartre 60732f5224aeSachartre /* submit the request */ 60742f5224aeSachartre rv = vdc_do_sync_op(vdc, VD_OP_SCSICMD, (caddr_t)vd_scsi, vd_scsi_len, 60752f5224aeSachartre 0, 0, CB_SYNC, (void *)(uint64_t)mode, VIO_both_dir, B_FALSE); 60762f5224aeSachartre 60772f5224aeSachartre if (rv == 0) 60782f5224aeSachartre rv = vdc_scsi_status(vdc, vd_scsi, B_FALSE); 60792f5224aeSachartre 60802f5224aeSachartre kmem_free(vd_scsi, vd_scsi_len); 60812f5224aeSachartre return (rv); 60822f5224aeSachartre } 60832f5224aeSachartre 60842f5224aeSachartre /* 60852f5224aeSachartre * Implement the MHIOCGRP_PREEMPTANDABORT mhd(7i) ioctl. The ioctl is 60862f5224aeSachartre * converted to a SCSI PERSISTENT OUT PREEMPT AND ABORT command which 60872f5224aeSachartre * is sent to the vdisk server with a VD_OP_SCSICMD operation. 60882f5224aeSachartre */ 60892f5224aeSachartre static int 60902f5224aeSachartre vdc_mhd_preemptabort(vdc_t *vdc, caddr_t arg, int mode) 60912f5224aeSachartre { 60922f5224aeSachartre union scsi_cdb *cdb; 60932f5224aeSachartre vd_scsi_t *vd_scsi; 60942f5224aeSachartre sd_prout_t *scsi_prout; 60952f5224aeSachartre mhioc_preemptandabort_t mhd_preempt; 60962f5224aeSachartre int vd_scsi_len, rv; 60972f5224aeSachartre 60982f5224aeSachartre /* copyin arguments */ 60992f5224aeSachartre rv = ddi_copyin(arg, &mhd_preempt, sizeof (mhd_preempt), mode); 61002f5224aeSachartre if (rv != 0) 61012f5224aeSachartre return (EFAULT); 61022f5224aeSachartre 61032f5224aeSachartre /* build SCSI VD_OP request */ 61042f5224aeSachartre vd_scsi = vdc_scsi_alloc_persistent_out(SD_SCSI3_PREEMPTANDABORT, 61052f5224aeSachartre sizeof (sd_prout_t), &vd_scsi_len); 61062f5224aeSachartre 61072f5224aeSachartre /* set parameters */ 61082f5224aeSachartre vd_scsi->task_attribute = VD_SCSI_TASK_ACA; 61092f5224aeSachartre cdb = VD_SCSI_DATA_CDB(vd_scsi); 61102f5224aeSachartre scsi_prout = (sd_prout_t *)VD_SCSI_DATA_OUT(vd_scsi); 61112f5224aeSachartre bcopy(mhd_preempt.resvdesc.key.key, scsi_prout->res_key, 61122f5224aeSachartre MHIOC_RESV_KEY_SIZE); 61132f5224aeSachartre bcopy(mhd_preempt.victim_key.key, scsi_prout->service_key, 61142f5224aeSachartre MHIOC_RESV_KEY_SIZE); 61152f5224aeSachartre scsi_prout->scope_address = mhd_preempt.resvdesc.scope_specific_addr; 61162f5224aeSachartre cdb->cdb_opaque[2] = mhd_preempt.resvdesc.type; 61172f5224aeSachartre 61182f5224aeSachartre /* submit the request */ 61192f5224aeSachartre rv = vdc_do_sync_op(vdc, VD_OP_SCSICMD, (caddr_t)vd_scsi, vd_scsi_len, 61202f5224aeSachartre 0, 0, CB_SYNC, (void *)(uint64_t)mode, VIO_both_dir, B_FALSE); 61212f5224aeSachartre 61222f5224aeSachartre if (rv == 0) 61232f5224aeSachartre rv = vdc_scsi_status(vdc, vd_scsi, B_FALSE); 61242f5224aeSachartre 61252f5224aeSachartre kmem_free(vd_scsi, vd_scsi_len); 61262f5224aeSachartre return (rv); 61272f5224aeSachartre } 61282f5224aeSachartre 61292f5224aeSachartre /* 61302f5224aeSachartre * Implement the MHIOCGRP_REGISTERANDIGNOREKEY mhd(7i) ioctl. The ioctl 61312f5224aeSachartre * is converted to a SCSI PERSISTENT OUT REGISTER AND IGNORE EXISTING KEY 61322f5224aeSachartre * command which is sent to the vdisk server with a VD_OP_SCSICMD operation. 61332f5224aeSachartre */ 61342f5224aeSachartre static int 61352f5224aeSachartre vdc_mhd_registerignore(vdc_t *vdc, caddr_t arg, int mode) 61362f5224aeSachartre { 61372f5224aeSachartre vd_scsi_t *vd_scsi; 61382f5224aeSachartre sd_prout_t *scsi_prout; 61392f5224aeSachartre mhioc_registerandignorekey_t mhd_regi; 61402f5224aeSachartre int vd_scsi_len, rv; 61412f5224aeSachartre 61422f5224aeSachartre /* copyin arguments */ 61432f5224aeSachartre rv = ddi_copyin(arg, &mhd_regi, sizeof (mhd_regi), mode); 61442f5224aeSachartre if (rv != 0) 61452f5224aeSachartre return (EFAULT); 61462f5224aeSachartre 61472f5224aeSachartre /* build SCSI VD_OP request */ 61482f5224aeSachartre vd_scsi = vdc_scsi_alloc_persistent_out(SD_SCSI3_REGISTERANDIGNOREKEY, 61492f5224aeSachartre sizeof (sd_prout_t), &vd_scsi_len); 61502f5224aeSachartre 61512f5224aeSachartre /* set parameters */ 61522f5224aeSachartre scsi_prout = (sd_prout_t *)VD_SCSI_DATA_OUT(vd_scsi); 61532f5224aeSachartre bcopy(mhd_regi.newkey.key, scsi_prout->service_key, 61542f5224aeSachartre MHIOC_RESV_KEY_SIZE); 61552f5224aeSachartre scsi_prout->aptpl = (uchar_t)mhd_regi.aptpl; 61562f5224aeSachartre 61572f5224aeSachartre /* submit the request */ 61582f5224aeSachartre rv = vdc_do_sync_op(vdc, VD_OP_SCSICMD, (caddr_t)vd_scsi, vd_scsi_len, 61592f5224aeSachartre 0, 0, CB_SYNC, (void *)(uint64_t)mode, VIO_both_dir, B_FALSE); 61602f5224aeSachartre 61612f5224aeSachartre if (rv == 0) 61622f5224aeSachartre rv = vdc_scsi_status(vdc, vd_scsi, B_FALSE); 61632f5224aeSachartre 61642f5224aeSachartre kmem_free(vd_scsi, vd_scsi_len); 61652f5224aeSachartre return (rv); 61662f5224aeSachartre } 61672f5224aeSachartre 61682f5224aeSachartre /* 61692f5224aeSachartre * This function is used by the failfast mechanism to send a SCSI command 61702f5224aeSachartre * to check for reservation conflict. 61712f5224aeSachartre */ 61722f5224aeSachartre static int 61732f5224aeSachartre vdc_failfast_scsi_cmd(vdc_t *vdc, uchar_t scmd) 61742f5224aeSachartre { 61752f5224aeSachartre int cdb_len, sense_len, vd_scsi_len; 61762f5224aeSachartre vd_scsi_t *vd_scsi; 61772f5224aeSachartre union scsi_cdb *cdb; 61782f5224aeSachartre int rv; 61792f5224aeSachartre 61802f5224aeSachartre ASSERT(scmd == SCMD_TEST_UNIT_READY || scmd == SCMD_WRITE_G1); 61812f5224aeSachartre 61822f5224aeSachartre if (scmd == SCMD_WRITE_G1) 61832f5224aeSachartre cdb_len = CDB_GROUP1; 61842f5224aeSachartre else 61852f5224aeSachartre cdb_len = CDB_GROUP0; 61862f5224aeSachartre 61872f5224aeSachartre sense_len = sizeof (struct scsi_extended_sense); 61882f5224aeSachartre 61892f5224aeSachartre vd_scsi = vdc_scsi_alloc(cdb_len, sense_len, 0, 0, &vd_scsi_len); 61902f5224aeSachartre 61912f5224aeSachartre /* set cdb */ 61922f5224aeSachartre cdb = VD_SCSI_DATA_CDB(vd_scsi); 61932f5224aeSachartre cdb->scc_cmd = scmd; 61942f5224aeSachartre 61952f5224aeSachartre vd_scsi->timeout = vdc_scsi_timeout; 61962f5224aeSachartre 61972f5224aeSachartre /* 61982f5224aeSachartre * Submit the request. The last argument has to be B_FALSE so that 61992f5224aeSachartre * vdc_do_sync_op does not loop checking for reservation conflict if 62002f5224aeSachartre * the operation returns an error. 62012f5224aeSachartre */ 62022f5224aeSachartre rv = vdc_do_sync_op(vdc, VD_OP_SCSICMD, (caddr_t)vd_scsi, vd_scsi_len, 62032f5224aeSachartre 0, 0, CB_SYNC, (void *)(uint64_t)FKIOCTL, VIO_both_dir, B_FALSE); 62042f5224aeSachartre 62052f5224aeSachartre if (rv == 0) 62062f5224aeSachartre (void) vdc_scsi_status(vdc, vd_scsi, B_FALSE); 62072f5224aeSachartre 62082f5224aeSachartre kmem_free(vd_scsi, vd_scsi_len); 62092f5224aeSachartre return (rv); 62102f5224aeSachartre } 62112f5224aeSachartre 62122f5224aeSachartre /* 62132f5224aeSachartre * This function is used by the failfast mechanism to check for reservation 62142f5224aeSachartre * conflict. It sends some SCSI commands which will fail with a reservation 62152f5224aeSachartre * conflict error if the system does not have access to the disk and this 62162f5224aeSachartre * will panic the system. 62172f5224aeSachartre * 62182f5224aeSachartre * Returned Code: 62192f5224aeSachartre * 0 - disk is accessible without reservation conflict error 62202f5224aeSachartre * != 0 - unable to check if disk is accessible 62212f5224aeSachartre */ 62222f5224aeSachartre int 62232f5224aeSachartre vdc_failfast_check_resv(vdc_t *vdc) 62242f5224aeSachartre { 62252f5224aeSachartre int failure = 0; 62262f5224aeSachartre 62272f5224aeSachartre /* 62282f5224aeSachartre * Send a TEST UNIT READY command. The command will panic 62292f5224aeSachartre * the system if it fails with a reservation conflict. 62302f5224aeSachartre */ 62312f5224aeSachartre if (vdc_failfast_scsi_cmd(vdc, SCMD_TEST_UNIT_READY) != 0) 62322f5224aeSachartre failure++; 62332f5224aeSachartre 62342f5224aeSachartre /* 62352f5224aeSachartre * With SPC-3 compliant devices TEST UNIT READY will succeed on 62362f5224aeSachartre * a reserved device, so we also do a WRITE(10) of zero byte in 62372f5224aeSachartre * order to provoke a Reservation Conflict status on those newer 62382f5224aeSachartre * devices. 62392f5224aeSachartre */ 62402f5224aeSachartre if (vdc_failfast_scsi_cmd(vdc, SCMD_WRITE_G1) != 0) 62412f5224aeSachartre failure++; 62422f5224aeSachartre 62432f5224aeSachartre return (failure); 62442f5224aeSachartre } 62452f5224aeSachartre 62462f5224aeSachartre /* 62472f5224aeSachartre * Add a pending I/O to the failfast I/O queue. An I/O is added to this 62482f5224aeSachartre * queue when it has failed and failfast is enabled. Then we have to check 62492f5224aeSachartre * if it has failed because of a reservation conflict in which case we have 62502f5224aeSachartre * to panic the system. 62512f5224aeSachartre * 62522f5224aeSachartre * Async I/O should be queued with their block I/O data transfer structure 62532f5224aeSachartre * (buf). Sync I/O should be queued with buf = NULL. 62542f5224aeSachartre */ 62552f5224aeSachartre static vdc_io_t * 62562f5224aeSachartre vdc_failfast_io_queue(vdc_t *vdc, struct buf *buf) 62572f5224aeSachartre { 62582f5224aeSachartre vdc_io_t *vio; 62592f5224aeSachartre 62602f5224aeSachartre ASSERT(MUTEX_HELD(&vdc->lock)); 62612f5224aeSachartre 62622f5224aeSachartre vio = kmem_alloc(sizeof (vdc_io_t), KM_SLEEP); 62632f5224aeSachartre vio->vio_next = vdc->failfast_io_queue; 62642f5224aeSachartre vio->vio_buf = buf; 62652f5224aeSachartre vio->vio_qtime = ddi_get_lbolt(); 62662f5224aeSachartre 62672f5224aeSachartre vdc->failfast_io_queue = vio; 62682f5224aeSachartre 62692f5224aeSachartre /* notify the failfast thread that a new I/O is queued */ 62702f5224aeSachartre cv_signal(&vdc->failfast_cv); 62712f5224aeSachartre 62722f5224aeSachartre return (vio); 62732f5224aeSachartre } 62742f5224aeSachartre 62752f5224aeSachartre /* 62762f5224aeSachartre * Remove and complete I/O in the failfast I/O queue which have been 62772f5224aeSachartre * added after the indicated deadline. A deadline of 0 means that all 62782f5224aeSachartre * I/O have to be unqueued and marked as completed. 62792f5224aeSachartre */ 62802f5224aeSachartre static void 62812f5224aeSachartre vdc_failfast_io_unqueue(vdc_t *vdc, clock_t deadline) 62822f5224aeSachartre { 62832f5224aeSachartre vdc_io_t *vio, *vio_tmp; 62842f5224aeSachartre 62852f5224aeSachartre ASSERT(MUTEX_HELD(&vdc->lock)); 62862f5224aeSachartre 62872f5224aeSachartre vio_tmp = NULL; 62882f5224aeSachartre vio = vdc->failfast_io_queue; 62892f5224aeSachartre 62902f5224aeSachartre if (deadline != 0) { 62912f5224aeSachartre /* 62922f5224aeSachartre * Skip any io queued after the deadline. The failfast 62932f5224aeSachartre * I/O queue is ordered starting with the last I/O added 62942f5224aeSachartre * to the queue. 62952f5224aeSachartre */ 62962f5224aeSachartre while (vio != NULL && vio->vio_qtime > deadline) { 62972f5224aeSachartre vio_tmp = vio; 62982f5224aeSachartre vio = vio->vio_next; 62992f5224aeSachartre } 63002f5224aeSachartre } 63012f5224aeSachartre 63022f5224aeSachartre if (vio == NULL) 63032f5224aeSachartre /* nothing to unqueue */ 63042f5224aeSachartre return; 63052f5224aeSachartre 63062f5224aeSachartre /* update the queue */ 63072f5224aeSachartre if (vio_tmp == NULL) 63082f5224aeSachartre vdc->failfast_io_queue = NULL; 63092f5224aeSachartre else 63102f5224aeSachartre vio_tmp->vio_next = NULL; 63112f5224aeSachartre 63122f5224aeSachartre /* 63132f5224aeSachartre * Complete unqueued I/O. Async I/O have a block I/O data transfer 63142f5224aeSachartre * structure (buf) and they are completed by calling biodone(). Sync 63152f5224aeSachartre * I/O do not have a buf and they are completed by setting the 63162f5224aeSachartre * vio_qtime to zero and signaling failfast_io_cv. In that case, the 63172f5224aeSachartre * thread waiting for the I/O to complete is responsible for freeing 63182f5224aeSachartre * the vio structure. 63192f5224aeSachartre */ 63202f5224aeSachartre while (vio != NULL) { 63212f5224aeSachartre vio_tmp = vio->vio_next; 63222f5224aeSachartre if (vio->vio_buf != NULL) { 632390e2f9dcSlm66018 VD_KSTAT_RUNQ_EXIT(vdc); 6324366a92acSlm66018 DTRACE_IO1(done, buf_t *, vio->vio_buf); 63252f5224aeSachartre biodone(vio->vio_buf); 63262f5224aeSachartre kmem_free(vio, sizeof (vdc_io_t)); 63272f5224aeSachartre } else { 63282f5224aeSachartre vio->vio_qtime = 0; 63292f5224aeSachartre } 63302f5224aeSachartre vio = vio_tmp; 63312f5224aeSachartre } 63322f5224aeSachartre 63332f5224aeSachartre cv_broadcast(&vdc->failfast_io_cv); 63342f5224aeSachartre } 63352f5224aeSachartre 63362f5224aeSachartre /* 63372f5224aeSachartre * Failfast Thread. 63382f5224aeSachartre * 63392f5224aeSachartre * While failfast is enabled, the failfast thread sends a TEST UNIT READY 63402f5224aeSachartre * and a zero size WRITE(10) SCSI commands on a regular basis to check that 63412f5224aeSachartre * we still have access to the disk. If a command fails with a RESERVATION 63422f5224aeSachartre * CONFLICT error then the system will immediatly panic. 63432f5224aeSachartre * 63442f5224aeSachartre * The failfast thread is also woken up when an I/O has failed. It then check 63452f5224aeSachartre * the access to the disk to ensure that the I/O failure was not due to a 63462f5224aeSachartre * reservation conflict. 63472f5224aeSachartre * 63482f5224aeSachartre * There is one failfast thread for each virtual disk for which failfast is 63492f5224aeSachartre * enabled. We could have only one thread sending requests for all disks but 63502f5224aeSachartre * this would need vdc to send asynchronous requests and to have callbacks to 63512f5224aeSachartre * process replies. 63522f5224aeSachartre */ 63532f5224aeSachartre static void 63542f5224aeSachartre vdc_failfast_thread(void *arg) 63552f5224aeSachartre { 63562f5224aeSachartre int status; 63572f5224aeSachartre vdc_t *vdc = (vdc_t *)arg; 63582f5224aeSachartre clock_t timeout, starttime; 63592f5224aeSachartre 63602f5224aeSachartre mutex_enter(&vdc->lock); 63612f5224aeSachartre 63622f5224aeSachartre while (vdc->failfast_interval != 0) { 63632f5224aeSachartre 63642f5224aeSachartre starttime = ddi_get_lbolt(); 63652f5224aeSachartre 63662f5224aeSachartre mutex_exit(&vdc->lock); 63672f5224aeSachartre 63682f5224aeSachartre /* check for reservation conflict */ 63692f5224aeSachartre status = vdc_failfast_check_resv(vdc); 63702f5224aeSachartre 63712f5224aeSachartre mutex_enter(&vdc->lock); 63722f5224aeSachartre /* 63732f5224aeSachartre * We have dropped the lock to send the SCSI command so we have 63742f5224aeSachartre * to check that failfast is still enabled. 63752f5224aeSachartre */ 63762f5224aeSachartre if (vdc->failfast_interval == 0) 63772f5224aeSachartre break; 63782f5224aeSachartre 63792f5224aeSachartre /* 63802f5224aeSachartre * If we have successfully check the disk access and there was 63812f5224aeSachartre * no reservation conflict then we can complete any I/O queued 63822f5224aeSachartre * before the last check. 63832f5224aeSachartre */ 63842f5224aeSachartre if (status == 0) 63852f5224aeSachartre vdc_failfast_io_unqueue(vdc, starttime); 63862f5224aeSachartre 63872f5224aeSachartre /* proceed again if some I/O are still in the queue */ 63882f5224aeSachartre if (vdc->failfast_io_queue != NULL) 63892f5224aeSachartre continue; 63902f5224aeSachartre 63912f5224aeSachartre timeout = ddi_get_lbolt() + 63922f5224aeSachartre drv_usectohz(vdc->failfast_interval); 63932f5224aeSachartre (void) cv_timedwait(&vdc->failfast_cv, &vdc->lock, timeout); 63942f5224aeSachartre } 63952f5224aeSachartre 63962f5224aeSachartre /* 63972f5224aeSachartre * Failfast is being stop so we can complete any queued I/O. 63982f5224aeSachartre */ 63992f5224aeSachartre vdc_failfast_io_unqueue(vdc, 0); 64002f5224aeSachartre vdc->failfast_thread = NULL; 64012f5224aeSachartre mutex_exit(&vdc->lock); 64022f5224aeSachartre thread_exit(); 64032f5224aeSachartre } 64042f5224aeSachartre 64052f5224aeSachartre /* 64062f5224aeSachartre * Implement the MHIOCENFAILFAST mhd(7i) ioctl. 64072f5224aeSachartre */ 64082f5224aeSachartre static int 64092f5224aeSachartre vdc_failfast(vdc_t *vdc, caddr_t arg, int mode) 64102f5224aeSachartre { 64112f5224aeSachartre unsigned int mh_time; 64122f5224aeSachartre 64132f5224aeSachartre if (ddi_copyin((void *)arg, &mh_time, sizeof (int), mode)) 64142f5224aeSachartre return (EFAULT); 64152f5224aeSachartre 64162f5224aeSachartre mutex_enter(&vdc->lock); 64172f5224aeSachartre if (mh_time != 0 && vdc->failfast_thread == NULL) { 64182f5224aeSachartre vdc->failfast_thread = thread_create(NULL, 0, 64192f5224aeSachartre vdc_failfast_thread, vdc, 0, &p0, TS_RUN, 64202f5224aeSachartre v.v_maxsyspri - 2); 64212f5224aeSachartre } 64222f5224aeSachartre 64232f5224aeSachartre vdc->failfast_interval = mh_time * 1000; 64242f5224aeSachartre cv_signal(&vdc->failfast_cv); 64252f5224aeSachartre mutex_exit(&vdc->lock); 64262f5224aeSachartre 64272f5224aeSachartre return (0); 64282f5224aeSachartre } 64292f5224aeSachartre 64302f5224aeSachartre /* 64312f5224aeSachartre * Implement the MHIOCTKOWN and MHIOCRELEASE mhd(7i) ioctls. These ioctls are 64322f5224aeSachartre * converted to VD_OP_SET_ACCESS operations. 64332f5224aeSachartre */ 64342f5224aeSachartre static int 64352f5224aeSachartre vdc_access_set(vdc_t *vdc, uint64_t flags, int mode) 64362f5224aeSachartre { 64372f5224aeSachartre int rv; 64382f5224aeSachartre 64392f5224aeSachartre /* submit owership command request */ 64402f5224aeSachartre rv = vdc_do_sync_op(vdc, VD_OP_SET_ACCESS, (caddr_t)&flags, 64412f5224aeSachartre sizeof (uint64_t), 0, 0, CB_SYNC, (void *)(uint64_t)mode, 64422f5224aeSachartre VIO_both_dir, B_TRUE); 64432f5224aeSachartre 64442f5224aeSachartre return (rv); 64452f5224aeSachartre } 64462f5224aeSachartre 64472f5224aeSachartre /* 64482f5224aeSachartre * Implement the MHIOCSTATUS mhd(7i) ioctl. This ioctl is converted to a 64492f5224aeSachartre * VD_OP_GET_ACCESS operation. 64502f5224aeSachartre */ 64512f5224aeSachartre static int 64522f5224aeSachartre vdc_access_get(vdc_t *vdc, uint64_t *status, int mode) 64532f5224aeSachartre { 64542f5224aeSachartre int rv; 64552f5224aeSachartre 64562f5224aeSachartre /* submit owership command request */ 64572f5224aeSachartre rv = vdc_do_sync_op(vdc, VD_OP_GET_ACCESS, (caddr_t)status, 64582f5224aeSachartre sizeof (uint64_t), 0, 0, CB_SYNC, (void *)(uint64_t)mode, 64592f5224aeSachartre VIO_both_dir, B_TRUE); 64602f5224aeSachartre 64612f5224aeSachartre return (rv); 64622f5224aeSachartre } 64632f5224aeSachartre 64642f5224aeSachartre /* 64652f5224aeSachartre * Disk Ownership Thread. 64662f5224aeSachartre * 64672f5224aeSachartre * When we have taken the ownership of a disk, this thread waits to be 64682f5224aeSachartre * notified when the LDC channel is reset so that it can recover the 64692f5224aeSachartre * ownership. 64702f5224aeSachartre * 64712f5224aeSachartre * Note that the thread handling the LDC reset (vdc_process_msg_thread()) 64722f5224aeSachartre * can not be used to do the ownership recovery because it has to be 64732f5224aeSachartre * running to handle the reply message to the ownership operation. 64742f5224aeSachartre */ 64752f5224aeSachartre static void 64762f5224aeSachartre vdc_ownership_thread(void *arg) 64772f5224aeSachartre { 64782f5224aeSachartre vdc_t *vdc = (vdc_t *)arg; 64792f5224aeSachartre clock_t timeout; 64802f5224aeSachartre uint64_t status; 64812f5224aeSachartre 64822f5224aeSachartre mutex_enter(&vdc->ownership_lock); 64832f5224aeSachartre mutex_enter(&vdc->lock); 64842f5224aeSachartre 64852f5224aeSachartre while (vdc->ownership & VDC_OWNERSHIP_WANTED) { 64862f5224aeSachartre 64872f5224aeSachartre if ((vdc->ownership & VDC_OWNERSHIP_RESET) || 64882f5224aeSachartre !(vdc->ownership & VDC_OWNERSHIP_GRANTED)) { 64892f5224aeSachartre /* 64902f5224aeSachartre * There was a reset so the ownership has been lost, 64912f5224aeSachartre * try to recover. We do this without using the preempt 64922f5224aeSachartre * option so that we don't steal the ownership from 64932f5224aeSachartre * someone who has preempted us. 64942f5224aeSachartre */ 64952f5224aeSachartre DMSG(vdc, 0, "[%d] Ownership lost, recovering", 64962f5224aeSachartre vdc->instance); 64972f5224aeSachartre 64982f5224aeSachartre vdc->ownership &= ~(VDC_OWNERSHIP_RESET | 64992f5224aeSachartre VDC_OWNERSHIP_GRANTED); 65002f5224aeSachartre 65012f5224aeSachartre mutex_exit(&vdc->lock); 65022f5224aeSachartre 65032f5224aeSachartre status = vdc_access_set(vdc, VD_ACCESS_SET_EXCLUSIVE | 65042f5224aeSachartre VD_ACCESS_SET_PRESERVE, FKIOCTL); 65052f5224aeSachartre 65062f5224aeSachartre mutex_enter(&vdc->lock); 65072f5224aeSachartre 65082f5224aeSachartre if (status == 0) { 65092f5224aeSachartre DMSG(vdc, 0, "[%d] Ownership recovered", 65102f5224aeSachartre vdc->instance); 65112f5224aeSachartre vdc->ownership |= VDC_OWNERSHIP_GRANTED; 65122f5224aeSachartre } else { 65132f5224aeSachartre DMSG(vdc, 0, "[%d] Fail to recover ownership", 65142f5224aeSachartre vdc->instance); 65152f5224aeSachartre } 65162f5224aeSachartre 65172f5224aeSachartre } 65182f5224aeSachartre 65192f5224aeSachartre /* 65202f5224aeSachartre * If we have the ownership then we just wait for an event 65212f5224aeSachartre * to happen (LDC reset), otherwise we will retry to recover 65222f5224aeSachartre * after a delay. 65232f5224aeSachartre */ 65242f5224aeSachartre if (vdc->ownership & VDC_OWNERSHIP_GRANTED) 65252f5224aeSachartre timeout = 0; 65262f5224aeSachartre else 65272f5224aeSachartre timeout = ddi_get_lbolt() + 65282f5224aeSachartre drv_usectohz(vdc_ownership_delay); 65292f5224aeSachartre 65302f5224aeSachartre /* Release the ownership_lock and wait on the vdc lock */ 65312f5224aeSachartre mutex_exit(&vdc->ownership_lock); 65322f5224aeSachartre 65332f5224aeSachartre if (timeout == 0) 65342f5224aeSachartre (void) cv_wait(&vdc->ownership_cv, &vdc->lock); 65352f5224aeSachartre else 65362f5224aeSachartre (void) cv_timedwait(&vdc->ownership_cv, 65372f5224aeSachartre &vdc->lock, timeout); 65382f5224aeSachartre 65392f5224aeSachartre mutex_exit(&vdc->lock); 65402f5224aeSachartre 65412f5224aeSachartre mutex_enter(&vdc->ownership_lock); 65422f5224aeSachartre mutex_enter(&vdc->lock); 65432f5224aeSachartre } 65442f5224aeSachartre 65452f5224aeSachartre vdc->ownership_thread = NULL; 65462f5224aeSachartre mutex_exit(&vdc->lock); 65472f5224aeSachartre mutex_exit(&vdc->ownership_lock); 65482f5224aeSachartre 65492f5224aeSachartre thread_exit(); 65502f5224aeSachartre } 65512f5224aeSachartre 65522f5224aeSachartre static void 65532f5224aeSachartre vdc_ownership_update(vdc_t *vdc, int ownership_flags) 65542f5224aeSachartre { 65552f5224aeSachartre ASSERT(MUTEX_HELD(&vdc->ownership_lock)); 65562f5224aeSachartre 65572f5224aeSachartre mutex_enter(&vdc->lock); 65582f5224aeSachartre vdc->ownership = ownership_flags; 65592f5224aeSachartre if ((vdc->ownership & VDC_OWNERSHIP_WANTED) && 65602f5224aeSachartre vdc->ownership_thread == NULL) { 65612f5224aeSachartre /* start ownership thread */ 65622f5224aeSachartre vdc->ownership_thread = thread_create(NULL, 0, 65632f5224aeSachartre vdc_ownership_thread, vdc, 0, &p0, TS_RUN, 65642f5224aeSachartre v.v_maxsyspri - 2); 65652f5224aeSachartre } else { 65662f5224aeSachartre /* notify the ownership thread */ 65672f5224aeSachartre cv_signal(&vdc->ownership_cv); 65682f5224aeSachartre } 65692f5224aeSachartre mutex_exit(&vdc->lock); 65702f5224aeSachartre } 65712f5224aeSachartre 65722f5224aeSachartre /* 65732f5224aeSachartre * Get the size and the block size of a virtual disk from the vdisk server. 65742f5224aeSachartre * We need to use this operation when the vdisk_size attribute was not 65752f5224aeSachartre * available during the handshake with the vdisk server. 65762f5224aeSachartre */ 65772f5224aeSachartre static int 65782f5224aeSachartre vdc_check_capacity(vdc_t *vdc) 65792f5224aeSachartre { 65802f5224aeSachartre int rv = 0; 65812f5224aeSachartre size_t alloc_len; 65822f5224aeSachartre vd_capacity_t *vd_cap; 65832f5224aeSachartre 65842f5224aeSachartre if (vdc->vdisk_size != 0) 65852f5224aeSachartre return (0); 65862f5224aeSachartre 65872f5224aeSachartre alloc_len = P2ROUNDUP(sizeof (vd_capacity_t), sizeof (uint64_t)); 65882f5224aeSachartre 65892f5224aeSachartre vd_cap = kmem_zalloc(alloc_len, KM_SLEEP); 65902f5224aeSachartre 65912f5224aeSachartre rv = vdc_do_sync_op(vdc, VD_OP_GET_CAPACITY, (caddr_t)vd_cap, alloc_len, 65922f5224aeSachartre 0, 0, CB_SYNC, (void *)(uint64_t)FKIOCTL, VIO_both_dir, B_TRUE); 65932f5224aeSachartre 65942f5224aeSachartre if (rv == 0) { 65952f5224aeSachartre if (vd_cap->vdisk_block_size != vdc->block_size || 65962f5224aeSachartre vd_cap->vdisk_size == VD_SIZE_UNKNOWN || 65972f5224aeSachartre vd_cap->vdisk_size == 0) 65982f5224aeSachartre rv = EINVAL; 65992f5224aeSachartre else 66002f5224aeSachartre vdc->vdisk_size = vd_cap->vdisk_size; 66012f5224aeSachartre } 66022f5224aeSachartre 66032f5224aeSachartre kmem_free(vd_cap, alloc_len); 66042f5224aeSachartre return (rv); 66052f5224aeSachartre } 66062f5224aeSachartre 66072f5224aeSachartre /* 66081ae08745Sheppo * This structure is used in the DKIO(7I) array below. 66091ae08745Sheppo */ 66101ae08745Sheppo typedef struct vdc_dk_ioctl { 66111ae08745Sheppo uint8_t op; /* VD_OP_XXX value */ 66121ae08745Sheppo int cmd; /* Solaris ioctl operation number */ 66131ae08745Sheppo size_t nbytes; /* size of structure to be copied */ 66140a55fbb7Slm66018 66150a55fbb7Slm66018 /* function to convert between vDisk and Solaris structure formats */ 6616d10e4ef2Snarayan int (*convert)(vdc_t *vdc, void *vd_buf, void *ioctl_arg, 6617d10e4ef2Snarayan int mode, int dir); 66181ae08745Sheppo } vdc_dk_ioctl_t; 66191ae08745Sheppo 66201ae08745Sheppo /* 66211ae08745Sheppo * Subset of DKIO(7I) operations currently supported 66221ae08745Sheppo */ 66231ae08745Sheppo static vdc_dk_ioctl_t dk_ioctl[] = { 6624eff7243fSlm66018 {VD_OP_FLUSH, DKIOCFLUSHWRITECACHE, 0, 66250a55fbb7Slm66018 vdc_null_copy_func}, 66260a55fbb7Slm66018 {VD_OP_GET_WCE, DKIOCGETWCE, sizeof (int), 66274bac2208Snarayan vdc_get_wce_convert}, 66280a55fbb7Slm66018 {VD_OP_SET_WCE, DKIOCSETWCE, sizeof (int), 66294bac2208Snarayan vdc_set_wce_convert}, 66300a55fbb7Slm66018 {VD_OP_GET_VTOC, DKIOCGVTOC, sizeof (vd_vtoc_t), 66310a55fbb7Slm66018 vdc_get_vtoc_convert}, 66320a55fbb7Slm66018 {VD_OP_SET_VTOC, DKIOCSVTOC, sizeof (vd_vtoc_t), 66330a55fbb7Slm66018 vdc_set_vtoc_convert}, 66340a55fbb7Slm66018 {VD_OP_GET_DISKGEOM, DKIOCGGEOM, sizeof (vd_geom_t), 66350a55fbb7Slm66018 vdc_get_geom_convert}, 66360a55fbb7Slm66018 {VD_OP_GET_DISKGEOM, DKIOCG_PHYGEOM, sizeof (vd_geom_t), 66370a55fbb7Slm66018 vdc_get_geom_convert}, 66380a55fbb7Slm66018 {VD_OP_GET_DISKGEOM, DKIOCG_VIRTGEOM, sizeof (vd_geom_t), 66390a55fbb7Slm66018 vdc_get_geom_convert}, 66400a55fbb7Slm66018 {VD_OP_SET_DISKGEOM, DKIOCSGEOM, sizeof (vd_geom_t), 66410a55fbb7Slm66018 vdc_set_geom_convert}, 66424bac2208Snarayan {VD_OP_GET_EFI, DKIOCGETEFI, 0, 66434bac2208Snarayan vdc_get_efi_convert}, 66444bac2208Snarayan {VD_OP_SET_EFI, DKIOCSETEFI, 0, 66454bac2208Snarayan vdc_set_efi_convert}, 66460a55fbb7Slm66018 664787a7269eSachartre /* DIOCTL_RWCMD is converted to a read or a write */ 664887a7269eSachartre {0, DIOCTL_RWCMD, sizeof (struct dadkio_rwcmd), NULL}, 664987a7269eSachartre 66502f5224aeSachartre /* mhd(7I) non-shared multihost disks ioctls */ 66512f5224aeSachartre {0, MHIOCTKOWN, 0, vdc_null_copy_func}, 66522f5224aeSachartre {0, MHIOCRELEASE, 0, vdc_null_copy_func}, 66532f5224aeSachartre {0, MHIOCSTATUS, 0, vdc_null_copy_func}, 66542f5224aeSachartre {0, MHIOCQRESERVE, 0, vdc_null_copy_func}, 66552f5224aeSachartre 66562f5224aeSachartre /* mhd(7I) shared multihost disks ioctls */ 66572f5224aeSachartre {0, MHIOCGRP_INKEYS, 0, vdc_null_copy_func}, 66582f5224aeSachartre {0, MHIOCGRP_INRESV, 0, vdc_null_copy_func}, 66592f5224aeSachartre {0, MHIOCGRP_REGISTER, 0, vdc_null_copy_func}, 66602f5224aeSachartre {0, MHIOCGRP_RESERVE, 0, vdc_null_copy_func}, 66612f5224aeSachartre {0, MHIOCGRP_PREEMPTANDABORT, 0, vdc_null_copy_func}, 66622f5224aeSachartre {0, MHIOCGRP_REGISTERANDIGNOREKEY, 0, vdc_null_copy_func}, 66632f5224aeSachartre 66642f5224aeSachartre /* mhd(7I) failfast ioctl */ 66652f5224aeSachartre {0, MHIOCENFAILFAST, 0, vdc_null_copy_func}, 66662f5224aeSachartre 66670a55fbb7Slm66018 /* 66680a55fbb7Slm66018 * These particular ioctls are not sent to the server - vdc fakes up 66690a55fbb7Slm66018 * the necessary info. 66700a55fbb7Slm66018 */ 66710a55fbb7Slm66018 {0, DKIOCINFO, sizeof (struct dk_cinfo), vdc_null_copy_func}, 66720a55fbb7Slm66018 {0, DKIOCGMEDIAINFO, sizeof (struct dk_minfo), vdc_null_copy_func}, 66730a55fbb7Slm66018 {0, USCSICMD, sizeof (struct uscsi_cmd), vdc_null_copy_func}, 66749642afceSachartre {0, DKIOCPARTITION, 0, vdc_null_copy_func }, 667587a7269eSachartre {0, DKIOCGAPART, 0, vdc_null_copy_func }, 66760a55fbb7Slm66018 {0, DKIOCREMOVABLE, 0, vdc_null_copy_func}, 66770a55fbb7Slm66018 {0, CDROMREADOFFSET, 0, vdc_null_copy_func} 66781ae08745Sheppo }; 66791ae08745Sheppo 66801ae08745Sheppo /* 6681edcc0754Sachartre * This function handles ioctl requests from the vd_efi_alloc_and_read() 6682edcc0754Sachartre * function and forward them to the vdisk. 66832f5224aeSachartre */ 66842f5224aeSachartre static int 6685edcc0754Sachartre vd_process_efi_ioctl(void *vdisk, int cmd, uintptr_t arg) 66862f5224aeSachartre { 6687edcc0754Sachartre vdc_t *vdc = (vdc_t *)vdisk; 6688edcc0754Sachartre dev_t dev; 66892f5224aeSachartre int rval; 6690edcc0754Sachartre 6691edcc0754Sachartre dev = makedevice(ddi_driver_major(vdc->dip), 6692edcc0754Sachartre VD_MAKE_DEV(vdc->instance, 0)); 6693edcc0754Sachartre 6694edcc0754Sachartre return (vd_process_ioctl(dev, cmd, (caddr_t)arg, FKIOCTL, &rval)); 66952f5224aeSachartre } 66962f5224aeSachartre 66972f5224aeSachartre /* 66981ae08745Sheppo * Function: 66991ae08745Sheppo * vd_process_ioctl() 67001ae08745Sheppo * 67011ae08745Sheppo * Description: 67020a55fbb7Slm66018 * This routine processes disk specific ioctl calls 67031ae08745Sheppo * 67041ae08745Sheppo * Arguments: 67051ae08745Sheppo * dev - the device number 67061ae08745Sheppo * cmd - the operation [dkio(7I)] to be processed 67071ae08745Sheppo * arg - pointer to user provided structure 67081ae08745Sheppo * (contains data to be set or reference parameter for get) 67091ae08745Sheppo * mode - bit flag, indicating open settings, 32/64 bit type, etc 67102f5224aeSachartre * rvalp - pointer to return value for calling process. 67111ae08745Sheppo * 67121ae08745Sheppo * Return Code: 67131ae08745Sheppo * 0 67141ae08745Sheppo * EFAULT 67151ae08745Sheppo * ENXIO 67161ae08745Sheppo * EIO 67171ae08745Sheppo * ENOTSUP 67181ae08745Sheppo */ 67191ae08745Sheppo static int 67202f5224aeSachartre vd_process_ioctl(dev_t dev, int cmd, caddr_t arg, int mode, int *rvalp) 67211ae08745Sheppo { 67220d0c8d4bSnarayan int instance = VDCUNIT(dev); 67231ae08745Sheppo vdc_t *vdc = NULL; 67241ae08745Sheppo int rv = -1; 67251ae08745Sheppo int idx = 0; /* index into dk_ioctl[] */ 67261ae08745Sheppo size_t len = 0; /* #bytes to send to vds */ 67271ae08745Sheppo size_t alloc_len = 0; /* #bytes to allocate mem for */ 67281ae08745Sheppo caddr_t mem_p = NULL; 67291ae08745Sheppo size_t nioctls = (sizeof (dk_ioctl)) / (sizeof (dk_ioctl[0])); 67303af08d82Slm66018 vdc_dk_ioctl_t *iop; 67311ae08745Sheppo 67321ae08745Sheppo vdc = ddi_get_soft_state(vdc_state, instance); 67331ae08745Sheppo if (vdc == NULL) { 67341ae08745Sheppo cmn_err(CE_NOTE, "![%d] Could not get soft state structure", 67351ae08745Sheppo instance); 67361ae08745Sheppo return (ENXIO); 67371ae08745Sheppo } 67381ae08745Sheppo 67393af08d82Slm66018 DMSG(vdc, 0, "[%d] Processing ioctl(%x) for dev %lx : model %x\n", 67403af08d82Slm66018 instance, cmd, dev, ddi_model_convert_from(mode & FMODELS)); 67411ae08745Sheppo 67422f5224aeSachartre if (rvalp != NULL) { 67432f5224aeSachartre /* the return value of the ioctl is 0 by default */ 67442f5224aeSachartre *rvalp = 0; 67452f5224aeSachartre } 67462f5224aeSachartre 67471ae08745Sheppo /* 67481ae08745Sheppo * Validate the ioctl operation to be performed. 67491ae08745Sheppo * 67501ae08745Sheppo * If we have looped through the array without finding a match then we 67511ae08745Sheppo * don't support this ioctl. 67521ae08745Sheppo */ 67531ae08745Sheppo for (idx = 0; idx < nioctls; idx++) { 67541ae08745Sheppo if (cmd == dk_ioctl[idx].cmd) 67551ae08745Sheppo break; 67561ae08745Sheppo } 67571ae08745Sheppo 67581ae08745Sheppo if (idx >= nioctls) { 67593af08d82Slm66018 DMSG(vdc, 0, "[%d] Unsupported ioctl (0x%x)\n", 6760e1ebb9ecSlm66018 vdc->instance, cmd); 67611ae08745Sheppo return (ENOTSUP); 67621ae08745Sheppo } 67631ae08745Sheppo 67643af08d82Slm66018 iop = &(dk_ioctl[idx]); 67653af08d82Slm66018 67664bac2208Snarayan if (cmd == DKIOCGETEFI || cmd == DKIOCSETEFI) { 67674bac2208Snarayan /* size is not fixed for EFI ioctls, it depends on ioctl arg */ 67684bac2208Snarayan dk_efi_t dk_efi; 67694bac2208Snarayan 67704bac2208Snarayan rv = ddi_copyin(arg, &dk_efi, sizeof (dk_efi_t), mode); 67714bac2208Snarayan if (rv != 0) 67724bac2208Snarayan return (EFAULT); 67734bac2208Snarayan 67744bac2208Snarayan len = sizeof (vd_efi_t) - 1 + dk_efi.dki_length; 67754bac2208Snarayan } else { 67763af08d82Slm66018 len = iop->nbytes; 67774bac2208Snarayan } 67781ae08745Sheppo 67792f5224aeSachartre /* check if the ioctl is applicable */ 67801ae08745Sheppo switch (cmd) { 67811ae08745Sheppo case CDROMREADOFFSET: 67821ae08745Sheppo case DKIOCREMOVABLE: 67831ae08745Sheppo return (ENOTTY); 67841ae08745Sheppo 67852f5224aeSachartre case USCSICMD: 67862f5224aeSachartre case MHIOCTKOWN: 67872f5224aeSachartre case MHIOCSTATUS: 67882f5224aeSachartre case MHIOCQRESERVE: 67892f5224aeSachartre case MHIOCRELEASE: 67902f5224aeSachartre case MHIOCGRP_INKEYS: 67912f5224aeSachartre case MHIOCGRP_INRESV: 67922f5224aeSachartre case MHIOCGRP_REGISTER: 67932f5224aeSachartre case MHIOCGRP_RESERVE: 67942f5224aeSachartre case MHIOCGRP_PREEMPTANDABORT: 67952f5224aeSachartre case MHIOCGRP_REGISTERANDIGNOREKEY: 67962f5224aeSachartre case MHIOCENFAILFAST: 67972f5224aeSachartre if (vdc->cinfo == NULL) 67982f5224aeSachartre return (ENXIO); 67992f5224aeSachartre if (vdc->cinfo->dki_ctype != DKC_SCSI_CCS) 68002f5224aeSachartre return (ENOTTY); 68012f5224aeSachartre break; 68022f5224aeSachartre 68032f5224aeSachartre case DIOCTL_RWCMD: 68042f5224aeSachartre if (vdc->cinfo == NULL) 68052f5224aeSachartre return (ENXIO); 68062f5224aeSachartre if (vdc->cinfo->dki_ctype != DKC_DIRECT) 68072f5224aeSachartre return (ENOTTY); 68082f5224aeSachartre break; 68092f5224aeSachartre 68102f5224aeSachartre case DKIOCINFO: 68112f5224aeSachartre if (vdc->cinfo == NULL) 68122f5224aeSachartre return (ENXIO); 68132f5224aeSachartre break; 68142f5224aeSachartre 68152f5224aeSachartre case DKIOCGMEDIAINFO: 68162f5224aeSachartre if (vdc->minfo == NULL) 68172f5224aeSachartre return (ENXIO); 68182f5224aeSachartre if (vdc_check_capacity(vdc) != 0) 68192f5224aeSachartre /* disk capacity is not available */ 68202f5224aeSachartre return (EIO); 68212f5224aeSachartre break; 68222f5224aeSachartre } 68232f5224aeSachartre 68242f5224aeSachartre /* 68252f5224aeSachartre * Deal with ioctls which require a processing different than 68262f5224aeSachartre * converting ioctl arguments and sending a corresponding 68272f5224aeSachartre * VD operation. 68282f5224aeSachartre */ 68292f5224aeSachartre switch (cmd) { 68302f5224aeSachartre 68312f5224aeSachartre case USCSICMD: 68322f5224aeSachartre { 68332f5224aeSachartre return (vdc_uscsi_cmd(vdc, arg, mode)); 68342f5224aeSachartre } 68352f5224aeSachartre 68362f5224aeSachartre case MHIOCTKOWN: 68372f5224aeSachartre { 68382f5224aeSachartre mutex_enter(&vdc->ownership_lock); 68392f5224aeSachartre /* 68402f5224aeSachartre * We have to set VDC_OWNERSHIP_WANTED now so that the ownership 68412f5224aeSachartre * can be flagged with VDC_OWNERSHIP_RESET if the LDC is reset 68422f5224aeSachartre * while we are processing the ioctl. 68432f5224aeSachartre */ 68442f5224aeSachartre vdc_ownership_update(vdc, VDC_OWNERSHIP_WANTED); 68452f5224aeSachartre 68462f5224aeSachartre rv = vdc_access_set(vdc, VD_ACCESS_SET_EXCLUSIVE | 68472f5224aeSachartre VD_ACCESS_SET_PREEMPT | VD_ACCESS_SET_PRESERVE, mode); 68482f5224aeSachartre if (rv == 0) { 68492f5224aeSachartre vdc_ownership_update(vdc, VDC_OWNERSHIP_WANTED | 68502f5224aeSachartre VDC_OWNERSHIP_GRANTED); 68512f5224aeSachartre } else { 68522f5224aeSachartre vdc_ownership_update(vdc, VDC_OWNERSHIP_NONE); 68532f5224aeSachartre } 68542f5224aeSachartre mutex_exit(&vdc->ownership_lock); 68552f5224aeSachartre return (rv); 68562f5224aeSachartre } 68572f5224aeSachartre 68582f5224aeSachartre case MHIOCRELEASE: 68592f5224aeSachartre { 68602f5224aeSachartre mutex_enter(&vdc->ownership_lock); 68612f5224aeSachartre rv = vdc_access_set(vdc, VD_ACCESS_SET_CLEAR, mode); 68622f5224aeSachartre if (rv == 0) { 68632f5224aeSachartre vdc_ownership_update(vdc, VDC_OWNERSHIP_NONE); 68642f5224aeSachartre } 68652f5224aeSachartre mutex_exit(&vdc->ownership_lock); 68662f5224aeSachartre return (rv); 68672f5224aeSachartre } 68682f5224aeSachartre 68692f5224aeSachartre case MHIOCSTATUS: 68702f5224aeSachartre { 68712f5224aeSachartre uint64_t status; 68722f5224aeSachartre 68732f5224aeSachartre rv = vdc_access_get(vdc, &status, mode); 68742f5224aeSachartre if (rv == 0 && rvalp != NULL) 68752f5224aeSachartre *rvalp = (status & VD_ACCESS_ALLOWED)? 0 : 1; 68762f5224aeSachartre return (rv); 68772f5224aeSachartre } 68782f5224aeSachartre 68792f5224aeSachartre case MHIOCQRESERVE: 68802f5224aeSachartre { 68812f5224aeSachartre rv = vdc_access_set(vdc, VD_ACCESS_SET_EXCLUSIVE, mode); 68822f5224aeSachartre return (rv); 68832f5224aeSachartre } 68842f5224aeSachartre 68852f5224aeSachartre case MHIOCGRP_INKEYS: 68862f5224aeSachartre { 68872f5224aeSachartre return (vdc_mhd_inkeys(vdc, arg, mode)); 68882f5224aeSachartre } 68892f5224aeSachartre 68902f5224aeSachartre case MHIOCGRP_INRESV: 68912f5224aeSachartre { 68922f5224aeSachartre return (vdc_mhd_inresv(vdc, arg, mode)); 68932f5224aeSachartre } 68942f5224aeSachartre 68952f5224aeSachartre case MHIOCGRP_REGISTER: 68962f5224aeSachartre { 68972f5224aeSachartre return (vdc_mhd_register(vdc, arg, mode)); 68982f5224aeSachartre } 68992f5224aeSachartre 69002f5224aeSachartre case MHIOCGRP_RESERVE: 69012f5224aeSachartre { 69022f5224aeSachartre return (vdc_mhd_reserve(vdc, arg, mode)); 69032f5224aeSachartre } 69042f5224aeSachartre 69052f5224aeSachartre case MHIOCGRP_PREEMPTANDABORT: 69062f5224aeSachartre { 69072f5224aeSachartre return (vdc_mhd_preemptabort(vdc, arg, mode)); 69082f5224aeSachartre } 69092f5224aeSachartre 69102f5224aeSachartre case MHIOCGRP_REGISTERANDIGNOREKEY: 69112f5224aeSachartre { 69122f5224aeSachartre return (vdc_mhd_registerignore(vdc, arg, mode)); 69132f5224aeSachartre } 69142f5224aeSachartre 69152f5224aeSachartre case MHIOCENFAILFAST: 69162f5224aeSachartre { 69172f5224aeSachartre rv = vdc_failfast(vdc, arg, mode); 69182f5224aeSachartre return (rv); 69192f5224aeSachartre } 69202f5224aeSachartre 692187a7269eSachartre case DIOCTL_RWCMD: 692287a7269eSachartre { 692387a7269eSachartre return (vdc_dioctl_rwcmd(dev, arg, mode)); 692487a7269eSachartre } 692587a7269eSachartre 692687a7269eSachartre case DKIOCGAPART: 692787a7269eSachartre { 69289642afceSachartre return (vdc_dkio_gapart(vdc, arg, mode)); 69299642afceSachartre } 69309642afceSachartre 69319642afceSachartre case DKIOCPARTITION: 69329642afceSachartre { 69339642afceSachartre return (vdc_dkio_partition(vdc, arg, mode)); 693487a7269eSachartre } 693587a7269eSachartre 69361ae08745Sheppo case DKIOCINFO: 69371ae08745Sheppo { 69381ae08745Sheppo struct dk_cinfo cinfo; 69391ae08745Sheppo 69401ae08745Sheppo bcopy(vdc->cinfo, &cinfo, sizeof (struct dk_cinfo)); 69410d0c8d4bSnarayan cinfo.dki_partition = VDCPART(dev); 69421ae08745Sheppo 69431ae08745Sheppo rv = ddi_copyout(&cinfo, (void *)arg, 69441ae08745Sheppo sizeof (struct dk_cinfo), mode); 69451ae08745Sheppo if (rv != 0) 69461ae08745Sheppo return (EFAULT); 69471ae08745Sheppo 69481ae08745Sheppo return (0); 69491ae08745Sheppo } 69501ae08745Sheppo 69511ae08745Sheppo case DKIOCGMEDIAINFO: 69528e6a2a04Slm66018 { 69532f5224aeSachartre ASSERT(vdc->vdisk_size != 0); 69542f5224aeSachartre if (vdc->minfo->dki_capacity == 0) 69552f5224aeSachartre vdc->minfo->dki_capacity = vdc->vdisk_size; 69561ae08745Sheppo rv = ddi_copyout(vdc->minfo, (void *)arg, 69571ae08745Sheppo sizeof (struct dk_minfo), mode); 69581ae08745Sheppo if (rv != 0) 69591ae08745Sheppo return (EFAULT); 69601ae08745Sheppo 69611ae08745Sheppo return (0); 69621ae08745Sheppo } 69631ae08745Sheppo 69648e6a2a04Slm66018 case DKIOCFLUSHWRITECACHE: 69658e6a2a04Slm66018 { 696617cadca8Slm66018 struct dk_callback *dkc = 696717cadca8Slm66018 (struct dk_callback *)(uintptr_t)arg; 69688e6a2a04Slm66018 vdc_dk_arg_t *dkarg = NULL; 69698e6a2a04Slm66018 69703af08d82Slm66018 DMSG(vdc, 1, "[%d] Flush W$: mode %x\n", 69713af08d82Slm66018 instance, mode); 69728e6a2a04Slm66018 69738e6a2a04Slm66018 /* 69748e6a2a04Slm66018 * If arg is NULL, then there is no callback function 69758e6a2a04Slm66018 * registered and the call operates synchronously; we 69768e6a2a04Slm66018 * break and continue with the rest of the function and 69778e6a2a04Slm66018 * wait for vds to return (i.e. after the request to 69788e6a2a04Slm66018 * vds returns successfully, all writes completed prior 69798e6a2a04Slm66018 * to the ioctl will have been flushed from the disk 69808e6a2a04Slm66018 * write cache to persistent media. 69818e6a2a04Slm66018 * 69828e6a2a04Slm66018 * If a callback function is registered, we dispatch 69838e6a2a04Slm66018 * the request on a task queue and return immediately. 69848e6a2a04Slm66018 * The callback will deal with informing the calling 69858e6a2a04Slm66018 * thread that the flush request is completed. 69868e6a2a04Slm66018 */ 69878e6a2a04Slm66018 if (dkc == NULL) 69888e6a2a04Slm66018 break; 69898e6a2a04Slm66018 6990eff7243fSlm66018 /* 6991eff7243fSlm66018 * the asynchronous callback is only supported if 6992eff7243fSlm66018 * invoked from within the kernel 6993eff7243fSlm66018 */ 6994eff7243fSlm66018 if ((mode & FKIOCTL) == 0) 6995eff7243fSlm66018 return (ENOTSUP); 6996eff7243fSlm66018 69978e6a2a04Slm66018 dkarg = kmem_zalloc(sizeof (vdc_dk_arg_t), KM_SLEEP); 69988e6a2a04Slm66018 69998e6a2a04Slm66018 dkarg->mode = mode; 70008e6a2a04Slm66018 dkarg->dev = dev; 70018e6a2a04Slm66018 bcopy(dkc, &dkarg->dkc, sizeof (*dkc)); 70028e6a2a04Slm66018 70038e6a2a04Slm66018 mutex_enter(&vdc->lock); 70048e6a2a04Slm66018 vdc->dkio_flush_pending++; 70058e6a2a04Slm66018 dkarg->vdc = vdc; 70068e6a2a04Slm66018 mutex_exit(&vdc->lock); 70078e6a2a04Slm66018 70088e6a2a04Slm66018 /* put the request on a task queue */ 70098e6a2a04Slm66018 rv = taskq_dispatch(system_taskq, vdc_dkio_flush_cb, 70108e6a2a04Slm66018 (void *)dkarg, DDI_SLEEP); 70113af08d82Slm66018 if (rv == NULL) { 70123af08d82Slm66018 /* clean up if dispatch fails */ 70133af08d82Slm66018 mutex_enter(&vdc->lock); 70143af08d82Slm66018 vdc->dkio_flush_pending--; 701578fcd0a1Sachartre mutex_exit(&vdc->lock); 70163af08d82Slm66018 kmem_free(dkarg, sizeof (vdc_dk_arg_t)); 70173af08d82Slm66018 } 70188e6a2a04Slm66018 70198e6a2a04Slm66018 return (rv == NULL ? ENOMEM : 0); 70208e6a2a04Slm66018 } 70218e6a2a04Slm66018 } 70228e6a2a04Slm66018 70231ae08745Sheppo /* catch programming error in vdc - should be a VD_OP_XXX ioctl */ 70243af08d82Slm66018 ASSERT(iop->op != 0); 70251ae08745Sheppo 702617cadca8Slm66018 /* check if the vDisk server handles the operation for this vDisk */ 702717cadca8Slm66018 if (VD_OP_SUPPORTED(vdc->operations, iop->op) == B_FALSE) { 702817cadca8Slm66018 DMSG(vdc, 0, "[%d] Unsupported VD_OP operation (0x%x)\n", 702917cadca8Slm66018 vdc->instance, iop->op); 703017cadca8Slm66018 return (ENOTSUP); 703117cadca8Slm66018 } 703217cadca8Slm66018 70331ae08745Sheppo /* LDC requires that the memory being mapped is 8-byte aligned */ 70341ae08745Sheppo alloc_len = P2ROUNDUP(len, sizeof (uint64_t)); 70353af08d82Slm66018 DMSG(vdc, 1, "[%d] struct size %ld alloc %ld\n", 70363af08d82Slm66018 instance, len, alloc_len); 70371ae08745Sheppo 7038eff7243fSlm66018 if (alloc_len > 0) 70391ae08745Sheppo mem_p = kmem_zalloc(alloc_len, KM_SLEEP); 70401ae08745Sheppo 70410a55fbb7Slm66018 /* 7042eff7243fSlm66018 * Call the conversion function for this ioctl which, if necessary, 70430a55fbb7Slm66018 * converts from the Solaris format to the format ARC'ed 70440a55fbb7Slm66018 * as part of the vDisk protocol (FWARC 2006/195) 70450a55fbb7Slm66018 */ 70463af08d82Slm66018 ASSERT(iop->convert != NULL); 70473af08d82Slm66018 rv = (iop->convert)(vdc, arg, mem_p, mode, VD_COPYIN); 70481ae08745Sheppo if (rv != 0) { 70493af08d82Slm66018 DMSG(vdc, 0, "[%d] convert func returned %d for ioctl 0x%x\n", 7050e1ebb9ecSlm66018 instance, rv, cmd); 70511ae08745Sheppo if (mem_p != NULL) 70521ae08745Sheppo kmem_free(mem_p, alloc_len); 70530a55fbb7Slm66018 return (rv); 70541ae08745Sheppo } 70551ae08745Sheppo 70561ae08745Sheppo /* 70571ae08745Sheppo * send request to vds to service the ioctl. 70581ae08745Sheppo */ 70593af08d82Slm66018 rv = vdc_do_sync_op(vdc, iop->op, mem_p, alloc_len, 70600d0c8d4bSnarayan VDCPART(dev), 0, CB_SYNC, (void *)(uint64_t)mode, 70612f5224aeSachartre VIO_both_dir, B_TRUE); 706278fcd0a1Sachartre 70631ae08745Sheppo if (rv != 0) { 70641ae08745Sheppo /* 70651ae08745Sheppo * This is not necessarily an error. The ioctl could 70661ae08745Sheppo * be returning a value such as ENOTTY to indicate 70671ae08745Sheppo * that the ioctl is not applicable. 70681ae08745Sheppo */ 70693af08d82Slm66018 DMSG(vdc, 0, "[%d] vds returned %d for ioctl 0x%x\n", 7070e1ebb9ecSlm66018 instance, rv, cmd); 70711ae08745Sheppo if (mem_p != NULL) 70721ae08745Sheppo kmem_free(mem_p, alloc_len); 7073d10e4ef2Snarayan 70741ae08745Sheppo return (rv); 70751ae08745Sheppo } 70761ae08745Sheppo 70771ae08745Sheppo /* 70780a55fbb7Slm66018 * Call the conversion function (if it exists) for this ioctl 70790a55fbb7Slm66018 * which converts from the format ARC'ed as part of the vDisk 70800a55fbb7Slm66018 * protocol (FWARC 2006/195) back to a format understood by 70810a55fbb7Slm66018 * the rest of Solaris. 70821ae08745Sheppo */ 70833af08d82Slm66018 rv = (iop->convert)(vdc, mem_p, arg, mode, VD_COPYOUT); 70840a55fbb7Slm66018 if (rv != 0) { 70853af08d82Slm66018 DMSG(vdc, 0, "[%d] convert func returned %d for ioctl 0x%x\n", 7086e1ebb9ecSlm66018 instance, rv, cmd); 70871ae08745Sheppo if (mem_p != NULL) 70881ae08745Sheppo kmem_free(mem_p, alloc_len); 70890a55fbb7Slm66018 return (rv); 70901ae08745Sheppo } 70911ae08745Sheppo 70921ae08745Sheppo if (mem_p != NULL) 70931ae08745Sheppo kmem_free(mem_p, alloc_len); 70941ae08745Sheppo 70951ae08745Sheppo return (rv); 70961ae08745Sheppo } 70971ae08745Sheppo 70981ae08745Sheppo /* 70991ae08745Sheppo * Function: 71000a55fbb7Slm66018 * 71010a55fbb7Slm66018 * Description: 71020a55fbb7Slm66018 * This is an empty conversion function used by ioctl calls which 71030a55fbb7Slm66018 * do not need to convert the data being passed in/out to userland 71040a55fbb7Slm66018 */ 71050a55fbb7Slm66018 static int 7106d10e4ef2Snarayan vdc_null_copy_func(vdc_t *vdc, void *from, void *to, int mode, int dir) 71070a55fbb7Slm66018 { 7108d10e4ef2Snarayan _NOTE(ARGUNUSED(vdc)) 71090a55fbb7Slm66018 _NOTE(ARGUNUSED(from)) 71100a55fbb7Slm66018 _NOTE(ARGUNUSED(to)) 71110a55fbb7Slm66018 _NOTE(ARGUNUSED(mode)) 71120a55fbb7Slm66018 _NOTE(ARGUNUSED(dir)) 71130a55fbb7Slm66018 71140a55fbb7Slm66018 return (0); 71150a55fbb7Slm66018 } 71160a55fbb7Slm66018 71174bac2208Snarayan static int 71184bac2208Snarayan vdc_get_wce_convert(vdc_t *vdc, void *from, void *to, 71194bac2208Snarayan int mode, int dir) 71204bac2208Snarayan { 71214bac2208Snarayan _NOTE(ARGUNUSED(vdc)) 71224bac2208Snarayan 71234bac2208Snarayan if (dir == VD_COPYIN) 71244bac2208Snarayan return (0); /* nothing to do */ 71254bac2208Snarayan 71264bac2208Snarayan if (ddi_copyout(from, to, sizeof (int), mode) != 0) 71274bac2208Snarayan return (EFAULT); 71284bac2208Snarayan 71294bac2208Snarayan return (0); 71304bac2208Snarayan } 71314bac2208Snarayan 71324bac2208Snarayan static int 71334bac2208Snarayan vdc_set_wce_convert(vdc_t *vdc, void *from, void *to, 71344bac2208Snarayan int mode, int dir) 71354bac2208Snarayan { 71364bac2208Snarayan _NOTE(ARGUNUSED(vdc)) 71374bac2208Snarayan 71384bac2208Snarayan if (dir == VD_COPYOUT) 71394bac2208Snarayan return (0); /* nothing to do */ 71404bac2208Snarayan 71414bac2208Snarayan if (ddi_copyin(from, to, sizeof (int), mode) != 0) 71424bac2208Snarayan return (EFAULT); 71434bac2208Snarayan 71444bac2208Snarayan return (0); 71454bac2208Snarayan } 71464bac2208Snarayan 71470a55fbb7Slm66018 /* 71480a55fbb7Slm66018 * Function: 71490a55fbb7Slm66018 * vdc_get_vtoc_convert() 71500a55fbb7Slm66018 * 71510a55fbb7Slm66018 * Description: 7152d10e4ef2Snarayan * This routine performs the necessary convertions from the DKIOCGVTOC 7153d10e4ef2Snarayan * Solaris structure to the format defined in FWARC 2006/195. 7154d10e4ef2Snarayan * 7155d10e4ef2Snarayan * In the struct vtoc definition, the timestamp field is marked as not 7156d10e4ef2Snarayan * supported so it is not part of vDisk protocol (FWARC 2006/195). 7157d10e4ef2Snarayan * However SVM uses that field to check it can write into the VTOC, 7158d10e4ef2Snarayan * so we fake up the info of that field. 71590a55fbb7Slm66018 * 71600a55fbb7Slm66018 * Arguments: 7161d10e4ef2Snarayan * vdc - the vDisk client 71620a55fbb7Slm66018 * from - the buffer containing the data to be copied from 71630a55fbb7Slm66018 * to - the buffer to be copied to 71640a55fbb7Slm66018 * mode - flags passed to ioctl() call 71650a55fbb7Slm66018 * dir - the "direction" of the copy - VD_COPYIN or VD_COPYOUT 71660a55fbb7Slm66018 * 71670a55fbb7Slm66018 * Return Code: 71680a55fbb7Slm66018 * 0 - Success 71690a55fbb7Slm66018 * ENXIO - incorrect buffer passed in. 7170d10e4ef2Snarayan * EFAULT - ddi_copyout routine encountered an error. 71710a55fbb7Slm66018 */ 71720a55fbb7Slm66018 static int 7173d10e4ef2Snarayan vdc_get_vtoc_convert(vdc_t *vdc, void *from, void *to, int mode, int dir) 71740a55fbb7Slm66018 { 7175d10e4ef2Snarayan int i; 71760a55fbb7Slm66018 void *tmp_mem = NULL; 71770a55fbb7Slm66018 void *tmp_memp; 71780a55fbb7Slm66018 struct vtoc vt; 71790a55fbb7Slm66018 struct vtoc32 vt32; 71800a55fbb7Slm66018 int copy_len = 0; 71810a55fbb7Slm66018 int rv = 0; 71820a55fbb7Slm66018 71830a55fbb7Slm66018 if (dir != VD_COPYOUT) 71840a55fbb7Slm66018 return (0); /* nothing to do */ 71850a55fbb7Slm66018 71860a55fbb7Slm66018 if ((from == NULL) || (to == NULL)) 71870a55fbb7Slm66018 return (ENXIO); 71880a55fbb7Slm66018 71890a55fbb7Slm66018 if (ddi_model_convert_from(mode & FMODELS) == DDI_MODEL_ILP32) 71900a55fbb7Slm66018 copy_len = sizeof (struct vtoc32); 71910a55fbb7Slm66018 else 71920a55fbb7Slm66018 copy_len = sizeof (struct vtoc); 71930a55fbb7Slm66018 71940a55fbb7Slm66018 tmp_mem = kmem_alloc(copy_len, KM_SLEEP); 71950a55fbb7Slm66018 71960a55fbb7Slm66018 VD_VTOC2VTOC((vd_vtoc_t *)from, &vt); 7197d10e4ef2Snarayan 7198d10e4ef2Snarayan /* fake the VTOC timestamp field */ 7199d10e4ef2Snarayan for (i = 0; i < V_NUMPAR; i++) { 7200d10e4ef2Snarayan vt.timestamp[i] = vdc->vtoc->timestamp[i]; 7201d10e4ef2Snarayan } 7202d10e4ef2Snarayan 72030a55fbb7Slm66018 if (ddi_model_convert_from(mode & FMODELS) == DDI_MODEL_ILP32) { 720417cadca8Slm66018 /* LINTED E_ASSIGN_NARROW_CONV */ 72050a55fbb7Slm66018 vtoctovtoc32(vt, vt32); 72060a55fbb7Slm66018 tmp_memp = &vt32; 72070a55fbb7Slm66018 } else { 72080a55fbb7Slm66018 tmp_memp = &vt; 72090a55fbb7Slm66018 } 72100a55fbb7Slm66018 rv = ddi_copyout(tmp_memp, to, copy_len, mode); 72110a55fbb7Slm66018 if (rv != 0) 72120a55fbb7Slm66018 rv = EFAULT; 72130a55fbb7Slm66018 72140a55fbb7Slm66018 kmem_free(tmp_mem, copy_len); 72150a55fbb7Slm66018 return (rv); 72160a55fbb7Slm66018 } 72170a55fbb7Slm66018 72180a55fbb7Slm66018 /* 72190a55fbb7Slm66018 * Function: 72200a55fbb7Slm66018 * vdc_set_vtoc_convert() 72210a55fbb7Slm66018 * 72220a55fbb7Slm66018 * Description: 7223d10e4ef2Snarayan * This routine performs the necessary convertions from the DKIOCSVTOC 7224d10e4ef2Snarayan * Solaris structure to the format defined in FWARC 2006/195. 72250a55fbb7Slm66018 * 72260a55fbb7Slm66018 * Arguments: 7227d10e4ef2Snarayan * vdc - the vDisk client 72280a55fbb7Slm66018 * from - Buffer with data 72290a55fbb7Slm66018 * to - Buffer where data is to be copied to 72300a55fbb7Slm66018 * mode - flags passed to ioctl 72310a55fbb7Slm66018 * dir - direction of copy (in or out) 72320a55fbb7Slm66018 * 72330a55fbb7Slm66018 * Return Code: 72340a55fbb7Slm66018 * 0 - Success 72350a55fbb7Slm66018 * ENXIO - Invalid buffer passed in 72360a55fbb7Slm66018 * EFAULT - ddi_copyin of data failed 72370a55fbb7Slm66018 */ 72380a55fbb7Slm66018 static int 7239d10e4ef2Snarayan vdc_set_vtoc_convert(vdc_t *vdc, void *from, void *to, int mode, int dir) 72400a55fbb7Slm66018 { 724178fcd0a1Sachartre _NOTE(ARGUNUSED(vdc)) 724278fcd0a1Sachartre 72432f5224aeSachartre void *tmp_mem = NULL, *uvtoc; 72440a55fbb7Slm66018 struct vtoc vt; 72450a55fbb7Slm66018 struct vtoc *vtp = &vt; 72460a55fbb7Slm66018 vd_vtoc_t vtvd; 72470a55fbb7Slm66018 int copy_len = 0; 72482f5224aeSachartre int i, rv = 0; 72490a55fbb7Slm66018 72500a55fbb7Slm66018 if ((from == NULL) || (to == NULL)) 72510a55fbb7Slm66018 return (ENXIO); 72520a55fbb7Slm66018 72532f5224aeSachartre if (dir == VD_COPYIN) 72542f5224aeSachartre uvtoc = from; 72552f5224aeSachartre else 72562f5224aeSachartre uvtoc = to; 72572f5224aeSachartre 72580a55fbb7Slm66018 if (ddi_model_convert_from(mode & FMODELS) == DDI_MODEL_ILP32) 72590a55fbb7Slm66018 copy_len = sizeof (struct vtoc32); 72600a55fbb7Slm66018 else 72610a55fbb7Slm66018 copy_len = sizeof (struct vtoc); 72620a55fbb7Slm66018 72630a55fbb7Slm66018 tmp_mem = kmem_alloc(copy_len, KM_SLEEP); 72640a55fbb7Slm66018 72652f5224aeSachartre rv = ddi_copyin(uvtoc, tmp_mem, copy_len, mode); 72660a55fbb7Slm66018 if (rv != 0) { 72670a55fbb7Slm66018 kmem_free(tmp_mem, copy_len); 72680a55fbb7Slm66018 return (EFAULT); 72690a55fbb7Slm66018 } 72700a55fbb7Slm66018 72710a55fbb7Slm66018 if (ddi_model_convert_from(mode & FMODELS) == DDI_MODEL_ILP32) { 72720a55fbb7Slm66018 vtoc32tovtoc((*(struct vtoc32 *)tmp_mem), vt); 72730a55fbb7Slm66018 } else { 72740a55fbb7Slm66018 vtp = tmp_mem; 72750a55fbb7Slm66018 } 72760a55fbb7Slm66018 72772f5224aeSachartre if (dir == VD_COPYOUT) { 72782f5224aeSachartre /* 72792f5224aeSachartre * The disk label may have changed. Revalidate the disk 72805b98b509Sachartre * geometry. This will also update the device nodes. 72812f5224aeSachartre */ 72822f5224aeSachartre vdc_validate(vdc); 72832f5224aeSachartre 72842f5224aeSachartre /* 72852f5224aeSachartre * We also need to keep track of the timestamp fields. 72862f5224aeSachartre */ 72872f5224aeSachartre for (i = 0; i < V_NUMPAR; i++) { 72882f5224aeSachartre vdc->vtoc->timestamp[i] = vtp->timestamp[i]; 72892f5224aeSachartre } 72902f5224aeSachartre 72912f5224aeSachartre return (0); 72922f5224aeSachartre } 72932f5224aeSachartre 72940a55fbb7Slm66018 VTOC2VD_VTOC(vtp, &vtvd); 72950a55fbb7Slm66018 bcopy(&vtvd, to, sizeof (vd_vtoc_t)); 72960a55fbb7Slm66018 kmem_free(tmp_mem, copy_len); 72970a55fbb7Slm66018 72980a55fbb7Slm66018 return (0); 72990a55fbb7Slm66018 } 73000a55fbb7Slm66018 73010a55fbb7Slm66018 /* 73020a55fbb7Slm66018 * Function: 73030a55fbb7Slm66018 * vdc_get_geom_convert() 73040a55fbb7Slm66018 * 73050a55fbb7Slm66018 * Description: 7306d10e4ef2Snarayan * This routine performs the necessary convertions from the DKIOCGGEOM, 7307d10e4ef2Snarayan * DKIOCG_PHYSGEOM and DKIOG_VIRTGEOM Solaris structures to the format 7308d10e4ef2Snarayan * defined in FWARC 2006/195 73090a55fbb7Slm66018 * 73100a55fbb7Slm66018 * Arguments: 7311d10e4ef2Snarayan * vdc - the vDisk client 73120a55fbb7Slm66018 * from - Buffer with data 73130a55fbb7Slm66018 * to - Buffer where data is to be copied to 73140a55fbb7Slm66018 * mode - flags passed to ioctl 73150a55fbb7Slm66018 * dir - direction of copy (in or out) 73160a55fbb7Slm66018 * 73170a55fbb7Slm66018 * Return Code: 73180a55fbb7Slm66018 * 0 - Success 73190a55fbb7Slm66018 * ENXIO - Invalid buffer passed in 7320d10e4ef2Snarayan * EFAULT - ddi_copyout of data failed 73210a55fbb7Slm66018 */ 73220a55fbb7Slm66018 static int 7323d10e4ef2Snarayan vdc_get_geom_convert(vdc_t *vdc, void *from, void *to, int mode, int dir) 73240a55fbb7Slm66018 { 7325d10e4ef2Snarayan _NOTE(ARGUNUSED(vdc)) 7326d10e4ef2Snarayan 73270a55fbb7Slm66018 struct dk_geom geom; 73280a55fbb7Slm66018 int copy_len = sizeof (struct dk_geom); 73290a55fbb7Slm66018 int rv = 0; 73300a55fbb7Slm66018 73310a55fbb7Slm66018 if (dir != VD_COPYOUT) 73320a55fbb7Slm66018 return (0); /* nothing to do */ 73330a55fbb7Slm66018 73340a55fbb7Slm66018 if ((from == NULL) || (to == NULL)) 73350a55fbb7Slm66018 return (ENXIO); 73360a55fbb7Slm66018 73370a55fbb7Slm66018 VD_GEOM2DK_GEOM((vd_geom_t *)from, &geom); 73380a55fbb7Slm66018 rv = ddi_copyout(&geom, to, copy_len, mode); 73390a55fbb7Slm66018 if (rv != 0) 73400a55fbb7Slm66018 rv = EFAULT; 73410a55fbb7Slm66018 73420a55fbb7Slm66018 return (rv); 73430a55fbb7Slm66018 } 73440a55fbb7Slm66018 73450a55fbb7Slm66018 /* 73460a55fbb7Slm66018 * Function: 73470a55fbb7Slm66018 * vdc_set_geom_convert() 73480a55fbb7Slm66018 * 73490a55fbb7Slm66018 * Description: 7350d10e4ef2Snarayan * This routine performs the necessary convertions from the DKIOCSGEOM 7351d10e4ef2Snarayan * Solaris structure to the format defined in FWARC 2006/195. 73520a55fbb7Slm66018 * 73530a55fbb7Slm66018 * Arguments: 7354d10e4ef2Snarayan * vdc - the vDisk client 73550a55fbb7Slm66018 * from - Buffer with data 73560a55fbb7Slm66018 * to - Buffer where data is to be copied to 73570a55fbb7Slm66018 * mode - flags passed to ioctl 73580a55fbb7Slm66018 * dir - direction of copy (in or out) 73590a55fbb7Slm66018 * 73600a55fbb7Slm66018 * Return Code: 73610a55fbb7Slm66018 * 0 - Success 73620a55fbb7Slm66018 * ENXIO - Invalid buffer passed in 73630a55fbb7Slm66018 * EFAULT - ddi_copyin of data failed 73640a55fbb7Slm66018 */ 73650a55fbb7Slm66018 static int 7366d10e4ef2Snarayan vdc_set_geom_convert(vdc_t *vdc, void *from, void *to, int mode, int dir) 73670a55fbb7Slm66018 { 7368d10e4ef2Snarayan _NOTE(ARGUNUSED(vdc)) 7369d10e4ef2Snarayan 73700a55fbb7Slm66018 vd_geom_t vdgeom; 73710a55fbb7Slm66018 void *tmp_mem = NULL; 73720a55fbb7Slm66018 int copy_len = sizeof (struct dk_geom); 73730a55fbb7Slm66018 int rv = 0; 73740a55fbb7Slm66018 73750a55fbb7Slm66018 if (dir != VD_COPYIN) 73760a55fbb7Slm66018 return (0); /* nothing to do */ 73770a55fbb7Slm66018 73780a55fbb7Slm66018 if ((from == NULL) || (to == NULL)) 73790a55fbb7Slm66018 return (ENXIO); 73800a55fbb7Slm66018 73810a55fbb7Slm66018 tmp_mem = kmem_alloc(copy_len, KM_SLEEP); 73820a55fbb7Slm66018 73830a55fbb7Slm66018 rv = ddi_copyin(from, tmp_mem, copy_len, mode); 73840a55fbb7Slm66018 if (rv != 0) { 73850a55fbb7Slm66018 kmem_free(tmp_mem, copy_len); 73860a55fbb7Slm66018 return (EFAULT); 73870a55fbb7Slm66018 } 73880a55fbb7Slm66018 DK_GEOM2VD_GEOM((struct dk_geom *)tmp_mem, &vdgeom); 73890a55fbb7Slm66018 bcopy(&vdgeom, to, sizeof (vdgeom)); 73900a55fbb7Slm66018 kmem_free(tmp_mem, copy_len); 73910a55fbb7Slm66018 73920a55fbb7Slm66018 return (0); 73930a55fbb7Slm66018 } 73940a55fbb7Slm66018 73954bac2208Snarayan static int 73964bac2208Snarayan vdc_get_efi_convert(vdc_t *vdc, void *from, void *to, int mode, int dir) 73974bac2208Snarayan { 73984bac2208Snarayan _NOTE(ARGUNUSED(vdc)) 73994bac2208Snarayan 74004bac2208Snarayan vd_efi_t *vd_efi; 74014bac2208Snarayan dk_efi_t dk_efi; 74024bac2208Snarayan int rv = 0; 74034bac2208Snarayan void *uaddr; 74044bac2208Snarayan 74054bac2208Snarayan if ((from == NULL) || (to == NULL)) 74064bac2208Snarayan return (ENXIO); 74074bac2208Snarayan 74084bac2208Snarayan if (dir == VD_COPYIN) { 74094bac2208Snarayan 74104bac2208Snarayan vd_efi = (vd_efi_t *)to; 74114bac2208Snarayan 74124bac2208Snarayan rv = ddi_copyin(from, &dk_efi, sizeof (dk_efi_t), mode); 74134bac2208Snarayan if (rv != 0) 74144bac2208Snarayan return (EFAULT); 74154bac2208Snarayan 74164bac2208Snarayan vd_efi->lba = dk_efi.dki_lba; 74174bac2208Snarayan vd_efi->length = dk_efi.dki_length; 74184bac2208Snarayan bzero(vd_efi->data, vd_efi->length); 74194bac2208Snarayan 74204bac2208Snarayan } else { 74214bac2208Snarayan 74224bac2208Snarayan rv = ddi_copyin(to, &dk_efi, sizeof (dk_efi_t), mode); 74234bac2208Snarayan if (rv != 0) 74244bac2208Snarayan return (EFAULT); 74254bac2208Snarayan 74264bac2208Snarayan uaddr = dk_efi.dki_data; 74274bac2208Snarayan 74284bac2208Snarayan dk_efi.dki_data = kmem_alloc(dk_efi.dki_length, KM_SLEEP); 74294bac2208Snarayan 74304bac2208Snarayan VD_EFI2DK_EFI((vd_efi_t *)from, &dk_efi); 74314bac2208Snarayan 74324bac2208Snarayan rv = ddi_copyout(dk_efi.dki_data, uaddr, dk_efi.dki_length, 74334bac2208Snarayan mode); 74344bac2208Snarayan if (rv != 0) 74354bac2208Snarayan return (EFAULT); 74364bac2208Snarayan 74374bac2208Snarayan kmem_free(dk_efi.dki_data, dk_efi.dki_length); 74384bac2208Snarayan } 74394bac2208Snarayan 74404bac2208Snarayan return (0); 74414bac2208Snarayan } 74424bac2208Snarayan 74434bac2208Snarayan static int 74444bac2208Snarayan vdc_set_efi_convert(vdc_t *vdc, void *from, void *to, int mode, int dir) 74454bac2208Snarayan { 74464bac2208Snarayan _NOTE(ARGUNUSED(vdc)) 74474bac2208Snarayan 74484bac2208Snarayan dk_efi_t dk_efi; 74494bac2208Snarayan void *uaddr; 74504bac2208Snarayan 74512f5224aeSachartre if (dir == VD_COPYOUT) { 74522f5224aeSachartre /* 74532f5224aeSachartre * The disk label may have changed. Revalidate the disk 74545b98b509Sachartre * geometry. This will also update the device nodes. 74552f5224aeSachartre */ 74562f5224aeSachartre vdc_validate(vdc); 74572f5224aeSachartre return (0); 74582f5224aeSachartre } 74594bac2208Snarayan 74604bac2208Snarayan if ((from == NULL) || (to == NULL)) 74614bac2208Snarayan return (ENXIO); 74624bac2208Snarayan 74634bac2208Snarayan if (ddi_copyin(from, &dk_efi, sizeof (dk_efi_t), mode) != 0) 74644bac2208Snarayan return (EFAULT); 74654bac2208Snarayan 74664bac2208Snarayan uaddr = dk_efi.dki_data; 74674bac2208Snarayan 74684bac2208Snarayan dk_efi.dki_data = kmem_alloc(dk_efi.dki_length, KM_SLEEP); 74694bac2208Snarayan 74704bac2208Snarayan if (ddi_copyin(uaddr, dk_efi.dki_data, dk_efi.dki_length, mode) != 0) 74714bac2208Snarayan return (EFAULT); 74724bac2208Snarayan 74734bac2208Snarayan DK_EFI2VD_EFI(&dk_efi, (vd_efi_t *)to); 74744bac2208Snarayan 74754bac2208Snarayan kmem_free(dk_efi.dki_data, dk_efi.dki_length); 74764bac2208Snarayan 74774bac2208Snarayan return (0); 74784bac2208Snarayan } 74794bac2208Snarayan 748017cadca8Slm66018 748117cadca8Slm66018 /* -------------------------------------------------------------------------- */ 748217cadca8Slm66018 74830a55fbb7Slm66018 /* 74840a55fbb7Slm66018 * Function: 74851ae08745Sheppo * vdc_create_fake_geometry() 74861ae08745Sheppo * 74871ae08745Sheppo * Description: 748817cadca8Slm66018 * This routine fakes up the disk info needed for some DKIO ioctls such 748917cadca8Slm66018 * as DKIOCINFO and DKIOCGMEDIAINFO [just like lofi(7D) and ramdisk(7D) do] 74901ae08745Sheppo * 749117cadca8Slm66018 * Note: This function must not be called until the vDisk attributes have 749217cadca8Slm66018 * been exchanged as part of the handshake with the vDisk server. 74931ae08745Sheppo * 74941ae08745Sheppo * Arguments: 74951ae08745Sheppo * vdc - soft state pointer for this instance of the device driver. 74961ae08745Sheppo * 74971ae08745Sheppo * Return Code: 749878fcd0a1Sachartre * none. 74991ae08745Sheppo */ 750078fcd0a1Sachartre static void 75011ae08745Sheppo vdc_create_fake_geometry(vdc_t *vdc) 75021ae08745Sheppo { 75031ae08745Sheppo ASSERT(vdc != NULL); 750478fcd0a1Sachartre ASSERT(vdc->max_xfer_sz != 0); 75050d0c8d4bSnarayan 75060d0c8d4bSnarayan /* 75071ae08745Sheppo * DKIOCINFO support 75081ae08745Sheppo */ 750978fcd0a1Sachartre if (vdc->cinfo == NULL) 75101ae08745Sheppo vdc->cinfo = kmem_zalloc(sizeof (struct dk_cinfo), KM_SLEEP); 75111ae08745Sheppo 75121ae08745Sheppo (void) strcpy(vdc->cinfo->dki_cname, VDC_DRIVER_NAME); 75131ae08745Sheppo (void) strcpy(vdc->cinfo->dki_dname, VDC_DRIVER_NAME); 75148e6a2a04Slm66018 /* max_xfer_sz is #blocks so we don't need to divide by DEV_BSIZE */ 75158e6a2a04Slm66018 vdc->cinfo->dki_maxtransfer = vdc->max_xfer_sz; 75162f5224aeSachartre 751787a7269eSachartre /* 75182f5224aeSachartre * We set the controller type to DKC_SCSI_CCS only if the VD_OP_SCSICMD 75192f5224aeSachartre * operation is supported, otherwise the controller type is DKC_DIRECT. 75202f5224aeSachartre * Version 1.0 does not support the VD_OP_SCSICMD operation, so the 75212f5224aeSachartre * controller type is always DKC_DIRECT in that case. 75222f5224aeSachartre * 752317cadca8Slm66018 * If the virtual disk is backed by a physical CD/DVD device or 752417cadca8Slm66018 * an ISO image, modify the controller type to indicate this 752587a7269eSachartre */ 752617cadca8Slm66018 switch (vdc->vdisk_media) { 752717cadca8Slm66018 case VD_MEDIA_CD: 752817cadca8Slm66018 case VD_MEDIA_DVD: 752917cadca8Slm66018 vdc->cinfo->dki_ctype = DKC_CDROM; 753017cadca8Slm66018 break; 753117cadca8Slm66018 case VD_MEDIA_FIXED: 75322f5224aeSachartre if (VD_OP_SUPPORTED(vdc->operations, VD_OP_SCSICMD)) 75332f5224aeSachartre vdc->cinfo->dki_ctype = DKC_SCSI_CCS; 75342f5224aeSachartre else 753587a7269eSachartre vdc->cinfo->dki_ctype = DKC_DIRECT; 753617cadca8Slm66018 break; 753717cadca8Slm66018 default: 753817cadca8Slm66018 /* in the case of v1.0 we default to a fixed disk */ 753917cadca8Slm66018 vdc->cinfo->dki_ctype = DKC_DIRECT; 754017cadca8Slm66018 break; 754117cadca8Slm66018 } 75421ae08745Sheppo vdc->cinfo->dki_flags = DKI_FMTVOL; 75431ae08745Sheppo vdc->cinfo->dki_cnum = 0; 75441ae08745Sheppo vdc->cinfo->dki_addr = 0; 75451ae08745Sheppo vdc->cinfo->dki_space = 0; 75461ae08745Sheppo vdc->cinfo->dki_prio = 0; 75471ae08745Sheppo vdc->cinfo->dki_vec = 0; 75481ae08745Sheppo vdc->cinfo->dki_unit = vdc->instance; 75491ae08745Sheppo vdc->cinfo->dki_slave = 0; 75501ae08745Sheppo /* 75511ae08745Sheppo * The partition number will be created on the fly depending on the 75521ae08745Sheppo * actual slice (i.e. minor node) that is used to request the data. 75531ae08745Sheppo */ 75541ae08745Sheppo vdc->cinfo->dki_partition = 0; 75551ae08745Sheppo 75561ae08745Sheppo /* 75571ae08745Sheppo * DKIOCGMEDIAINFO support 75581ae08745Sheppo */ 75590a55fbb7Slm66018 if (vdc->minfo == NULL) 75601ae08745Sheppo vdc->minfo = kmem_zalloc(sizeof (struct dk_minfo), KM_SLEEP); 756117cadca8Slm66018 756217cadca8Slm66018 if (vio_ver_is_supported(vdc->ver, 1, 1)) { 756317cadca8Slm66018 vdc->minfo->dki_media_type = 756417cadca8Slm66018 VD_MEDIATYPE2DK_MEDIATYPE(vdc->vdisk_media); 756517cadca8Slm66018 } else { 75661ae08745Sheppo vdc->minfo->dki_media_type = DK_FIXED_DISK; 756717cadca8Slm66018 } 756817cadca8Slm66018 75694bac2208Snarayan vdc->minfo->dki_capacity = vdc->vdisk_size; 757017cadca8Slm66018 vdc->minfo->dki_lbsize = vdc->block_size; 757178fcd0a1Sachartre } 75721ae08745Sheppo 757378fcd0a1Sachartre static ushort_t 757478fcd0a1Sachartre vdc_lbl2cksum(struct dk_label *label) 757578fcd0a1Sachartre { 757678fcd0a1Sachartre int count; 757778fcd0a1Sachartre ushort_t sum, *sp; 757878fcd0a1Sachartre 757978fcd0a1Sachartre count = (sizeof (struct dk_label)) / (sizeof (short)) - 1; 758078fcd0a1Sachartre sp = (ushort_t *)label; 758178fcd0a1Sachartre sum = 0; 758278fcd0a1Sachartre while (count--) { 758378fcd0a1Sachartre sum ^= *sp++; 758478fcd0a1Sachartre } 758578fcd0a1Sachartre 758678fcd0a1Sachartre return (sum); 75870a55fbb7Slm66018 } 75880a55fbb7Slm66018 75890a55fbb7Slm66018 /* 75900a55fbb7Slm66018 * Function: 759178fcd0a1Sachartre * vdc_validate_geometry 75920a55fbb7Slm66018 * 75930a55fbb7Slm66018 * Description: 759478fcd0a1Sachartre * This routine discovers the label and geometry of the disk. It stores 759578fcd0a1Sachartre * the disk label and related information in the vdc structure. If it 759678fcd0a1Sachartre * fails to validate the geometry or to discover the disk label then 759778fcd0a1Sachartre * the label is marked as unknown (VD_DISK_LABEL_UNK). 75980a55fbb7Slm66018 * 75990a55fbb7Slm66018 * Arguments: 76000a55fbb7Slm66018 * vdc - soft state pointer for this instance of the device driver. 76010a55fbb7Slm66018 * 76020a55fbb7Slm66018 * Return Code: 760378fcd0a1Sachartre * 0 - success. 760478fcd0a1Sachartre * EINVAL - unknown disk label. 760578fcd0a1Sachartre * ENOTSUP - geometry not applicable (EFI label). 760678fcd0a1Sachartre * EIO - error accessing the disk. 76070a55fbb7Slm66018 */ 76080a55fbb7Slm66018 static int 760978fcd0a1Sachartre vdc_validate_geometry(vdc_t *vdc) 76100a55fbb7Slm66018 { 7611d10e4ef2Snarayan buf_t *buf; /* BREAD requests need to be in a buf_t structure */ 76120a55fbb7Slm66018 dev_t dev; 76132f5224aeSachartre int rv, rval; 761478fcd0a1Sachartre struct dk_label label; 761578fcd0a1Sachartre struct dk_geom geom; 761678fcd0a1Sachartre struct vtoc vtoc; 7617edcc0754Sachartre efi_gpt_t *gpt; 7618edcc0754Sachartre efi_gpe_t *gpe; 7619edcc0754Sachartre vd_efi_dev_t edev; 76200a55fbb7Slm66018 76210a55fbb7Slm66018 ASSERT(vdc != NULL); 762278fcd0a1Sachartre ASSERT(vdc->vtoc != NULL && vdc->geom != NULL); 762378fcd0a1Sachartre ASSERT(MUTEX_HELD(&vdc->lock)); 76240a55fbb7Slm66018 762578fcd0a1Sachartre mutex_exit(&vdc->lock); 76260a55fbb7Slm66018 76270a55fbb7Slm66018 dev = makedevice(ddi_driver_major(vdc->dip), 76280a55fbb7Slm66018 VD_MAKE_DEV(vdc->instance, 0)); 76294bac2208Snarayan 76302f5224aeSachartre rv = vd_process_ioctl(dev, DKIOCGGEOM, (caddr_t)&geom, FKIOCTL, &rval); 763178fcd0a1Sachartre if (rv == 0) 76322f5224aeSachartre rv = vd_process_ioctl(dev, DKIOCGVTOC, (caddr_t)&vtoc, 76332f5224aeSachartre FKIOCTL, &rval); 76340d0c8d4bSnarayan 76354bac2208Snarayan if (rv == ENOTSUP) { 76364bac2208Snarayan /* 76374bac2208Snarayan * If the device does not support VTOC then we try 76384bac2208Snarayan * to read an EFI label. 7639edcc0754Sachartre * 7640edcc0754Sachartre * We need to know the block size and the disk size to 7641edcc0754Sachartre * be able to read an EFI label. 76424bac2208Snarayan */ 7643edcc0754Sachartre if (vdc->vdisk_size == 0) { 7644edcc0754Sachartre if ((rv = vdc_check_capacity(vdc)) != 0) { 7645edcc0754Sachartre mutex_enter(&vdc->lock); 7646edcc0754Sachartre vdc_store_label_unk(vdc); 7647edcc0754Sachartre return (rv); 7648edcc0754Sachartre } 7649edcc0754Sachartre } 76504bac2208Snarayan 7651edcc0754Sachartre VD_EFI_DEV_SET(edev, vdc, vd_process_efi_ioctl); 7652edcc0754Sachartre 7653edcc0754Sachartre rv = vd_efi_alloc_and_read(&edev, &gpt, &gpe); 76544bac2208Snarayan 76554bac2208Snarayan if (rv) { 76563af08d82Slm66018 DMSG(vdc, 0, "[%d] Failed to get EFI (err=%d)", 76574bac2208Snarayan vdc->instance, rv); 765878fcd0a1Sachartre mutex_enter(&vdc->lock); 765978fcd0a1Sachartre vdc_store_label_unk(vdc); 766078fcd0a1Sachartre return (EIO); 766178fcd0a1Sachartre } 766278fcd0a1Sachartre 766378fcd0a1Sachartre mutex_enter(&vdc->lock); 7664edcc0754Sachartre vdc_store_label_efi(vdc, gpt, gpe); 7665edcc0754Sachartre vd_efi_free(&edev, gpt, gpe); 766678fcd0a1Sachartre return (ENOTSUP); 766778fcd0a1Sachartre } 766878fcd0a1Sachartre 766978fcd0a1Sachartre if (rv != 0) { 767078fcd0a1Sachartre DMSG(vdc, 0, "[%d] Failed to get VTOC (err=%d)", 767178fcd0a1Sachartre vdc->instance, rv); 767278fcd0a1Sachartre mutex_enter(&vdc->lock); 767378fcd0a1Sachartre vdc_store_label_unk(vdc); 767478fcd0a1Sachartre if (rv != EINVAL) 767578fcd0a1Sachartre rv = EIO; 76764bac2208Snarayan return (rv); 76774bac2208Snarayan } 76784bac2208Snarayan 767978fcd0a1Sachartre /* check that geometry and vtoc are valid */ 768078fcd0a1Sachartre if (geom.dkg_nhead == 0 || geom.dkg_nsect == 0 || 768178fcd0a1Sachartre vtoc.v_sanity != VTOC_SANE) { 768278fcd0a1Sachartre mutex_enter(&vdc->lock); 768378fcd0a1Sachartre vdc_store_label_unk(vdc); 768478fcd0a1Sachartre return (EINVAL); 768578fcd0a1Sachartre } 76864bac2208Snarayan 768778fcd0a1Sachartre /* 768878fcd0a1Sachartre * We have a disk and a valid VTOC. However this does not mean 768978fcd0a1Sachartre * that the disk currently have a VTOC label. The returned VTOC may 769078fcd0a1Sachartre * be a default VTOC to be used for configuring the disk (this is 769178fcd0a1Sachartre * what is done for disk image). So we read the label from the 769278fcd0a1Sachartre * beginning of the disk to ensure we really have a VTOC label. 769378fcd0a1Sachartre * 769478fcd0a1Sachartre * FUTURE: This could be the default way for reading the VTOC 769578fcd0a1Sachartre * from the disk as opposed to sending the VD_OP_GET_VTOC 769678fcd0a1Sachartre * to the server. This will be the default if vdc is implemented 769778fcd0a1Sachartre * ontop of cmlb. 769878fcd0a1Sachartre */ 769978fcd0a1Sachartre 770078fcd0a1Sachartre /* 770178fcd0a1Sachartre * Single slice disk does not support read using an absolute disk 770278fcd0a1Sachartre * offset so we just rely on the DKIOCGVTOC ioctl in that case. 770378fcd0a1Sachartre */ 770478fcd0a1Sachartre if (vdc->vdisk_type == VD_DISK_TYPE_SLICE) { 770578fcd0a1Sachartre mutex_enter(&vdc->lock); 770678fcd0a1Sachartre if (vtoc.v_nparts != 1) { 770778fcd0a1Sachartre vdc_store_label_unk(vdc); 770878fcd0a1Sachartre return (EINVAL); 770978fcd0a1Sachartre } 771078fcd0a1Sachartre vdc_store_label_vtoc(vdc, &geom, &vtoc); 77114bac2208Snarayan return (0); 77124bac2208Snarayan } 77134bac2208Snarayan 771478fcd0a1Sachartre if (vtoc.v_nparts != V_NUMPAR) { 771578fcd0a1Sachartre mutex_enter(&vdc->lock); 771678fcd0a1Sachartre vdc_store_label_unk(vdc); 771778fcd0a1Sachartre return (EINVAL); 77180a55fbb7Slm66018 } 7719d10e4ef2Snarayan 7720d10e4ef2Snarayan /* 7721d10e4ef2Snarayan * Read disk label from start of disk 7722d10e4ef2Snarayan */ 7723d10e4ef2Snarayan buf = kmem_alloc(sizeof (buf_t), KM_SLEEP); 7724d10e4ef2Snarayan bioinit(buf); 772578fcd0a1Sachartre buf->b_un.b_addr = (caddr_t)&label; 7726d10e4ef2Snarayan buf->b_bcount = DK_LABEL_SIZE; 7727d10e4ef2Snarayan buf->b_flags = B_BUSY | B_READ; 772817cadca8Slm66018 buf->b_dev = cmpdev(dev); 772978fcd0a1Sachartre rv = vdc_send_request(vdc, VD_OP_BREAD, (caddr_t)&label, 773078fcd0a1Sachartre DK_LABEL_SIZE, VD_SLICE_NONE, 0, CB_STRATEGY, buf, VIO_read_dir); 77313af08d82Slm66018 if (rv) { 77323af08d82Slm66018 DMSG(vdc, 1, "[%d] Failed to read disk block 0\n", 77333af08d82Slm66018 vdc->instance); 773478fcd0a1Sachartre } else { 7735d10e4ef2Snarayan rv = biowait(buf); 7736d10e4ef2Snarayan biofini(buf); 773778fcd0a1Sachartre } 7738d10e4ef2Snarayan kmem_free(buf, sizeof (buf_t)); 77390a55fbb7Slm66018 774078fcd0a1Sachartre if (rv != 0 || label.dkl_magic != DKL_MAGIC || 774178fcd0a1Sachartre label.dkl_cksum != vdc_lbl2cksum(&label)) { 774278fcd0a1Sachartre DMSG(vdc, 1, "[%d] Got VTOC with invalid label\n", 774378fcd0a1Sachartre vdc->instance); 774478fcd0a1Sachartre mutex_enter(&vdc->lock); 774578fcd0a1Sachartre vdc_store_label_unk(vdc); 774678fcd0a1Sachartre return (EINVAL); 774778fcd0a1Sachartre } 774878fcd0a1Sachartre 774978fcd0a1Sachartre mutex_enter(&vdc->lock); 775078fcd0a1Sachartre vdc_store_label_vtoc(vdc, &geom, &vtoc); 775178fcd0a1Sachartre return (0); 775278fcd0a1Sachartre } 775378fcd0a1Sachartre 775478fcd0a1Sachartre /* 775578fcd0a1Sachartre * Function: 775678fcd0a1Sachartre * vdc_validate 775778fcd0a1Sachartre * 775878fcd0a1Sachartre * Description: 775978fcd0a1Sachartre * This routine discovers the label of the disk and create the 776078fcd0a1Sachartre * appropriate device nodes if the label has changed. 776178fcd0a1Sachartre * 776278fcd0a1Sachartre * Arguments: 776378fcd0a1Sachartre * vdc - soft state pointer for this instance of the device driver. 776478fcd0a1Sachartre * 776578fcd0a1Sachartre * Return Code: 776678fcd0a1Sachartre * none. 776778fcd0a1Sachartre */ 776878fcd0a1Sachartre static void 776978fcd0a1Sachartre vdc_validate(vdc_t *vdc) 777078fcd0a1Sachartre { 777178fcd0a1Sachartre vd_disk_label_t old_label; 7772edcc0754Sachartre vd_slice_t old_slice[V_NUMPAR]; 777378fcd0a1Sachartre int rv; 777478fcd0a1Sachartre 777578fcd0a1Sachartre ASSERT(!MUTEX_HELD(&vdc->lock)); 777678fcd0a1Sachartre 777778fcd0a1Sachartre mutex_enter(&vdc->lock); 777878fcd0a1Sachartre 777978fcd0a1Sachartre /* save the current label and vtoc */ 778078fcd0a1Sachartre old_label = vdc->vdisk_label; 7781edcc0754Sachartre bcopy(vdc->slice, &old_slice, sizeof (vd_slice_t) * V_NUMPAR); 778278fcd0a1Sachartre 778378fcd0a1Sachartre /* check the geometry */ 778478fcd0a1Sachartre (void) vdc_validate_geometry(vdc); 778578fcd0a1Sachartre 778678fcd0a1Sachartre /* if the disk label has changed, update device nodes */ 778778fcd0a1Sachartre if (vdc->vdisk_label != old_label) { 778878fcd0a1Sachartre 778978fcd0a1Sachartre if (vdc->vdisk_label == VD_DISK_LABEL_EFI) 779078fcd0a1Sachartre rv = vdc_create_device_nodes_efi(vdc); 779178fcd0a1Sachartre else 779278fcd0a1Sachartre rv = vdc_create_device_nodes_vtoc(vdc); 779378fcd0a1Sachartre 779478fcd0a1Sachartre if (rv != 0) { 779578fcd0a1Sachartre DMSG(vdc, 0, "![%d] Failed to update device nodes", 779678fcd0a1Sachartre vdc->instance); 779778fcd0a1Sachartre } 779878fcd0a1Sachartre } 779978fcd0a1Sachartre 780078fcd0a1Sachartre mutex_exit(&vdc->lock); 780178fcd0a1Sachartre } 780278fcd0a1Sachartre 780378fcd0a1Sachartre static void 780478fcd0a1Sachartre vdc_validate_task(void *arg) 780578fcd0a1Sachartre { 780678fcd0a1Sachartre vdc_t *vdc = (vdc_t *)arg; 780778fcd0a1Sachartre 780878fcd0a1Sachartre vdc_validate(vdc); 780978fcd0a1Sachartre 781078fcd0a1Sachartre mutex_enter(&vdc->lock); 781178fcd0a1Sachartre ASSERT(vdc->validate_pending > 0); 781278fcd0a1Sachartre vdc->validate_pending--; 781378fcd0a1Sachartre mutex_exit(&vdc->lock); 78141ae08745Sheppo } 78154bac2208Snarayan 78164bac2208Snarayan /* 78174bac2208Snarayan * Function: 78184bac2208Snarayan * vdc_setup_devid() 78194bac2208Snarayan * 78204bac2208Snarayan * Description: 78214bac2208Snarayan * This routine discovers the devid of a vDisk. It requests the devid of 78224bac2208Snarayan * the underlying device from the vDisk server, builds an encapsulated 78234bac2208Snarayan * devid based on the retrieved devid and registers that new devid to 78244bac2208Snarayan * the vDisk. 78254bac2208Snarayan * 78264bac2208Snarayan * Arguments: 78274bac2208Snarayan * vdc - soft state pointer for this instance of the device driver. 78284bac2208Snarayan * 78294bac2208Snarayan * Return Code: 78304bac2208Snarayan * 0 - A devid was succesfully registered for the vDisk 78314bac2208Snarayan */ 78324bac2208Snarayan static int 78334bac2208Snarayan vdc_setup_devid(vdc_t *vdc) 78344bac2208Snarayan { 78354bac2208Snarayan int rv; 78364bac2208Snarayan vd_devid_t *vd_devid; 78374bac2208Snarayan size_t bufsize, bufid_len; 78384bac2208Snarayan 78394bac2208Snarayan /* 78404bac2208Snarayan * At first sight, we don't know the size of the devid that the 78414bac2208Snarayan * server will return but this size will be encoded into the 78424bac2208Snarayan * reply. So we do a first request using a default size then we 78434bac2208Snarayan * check if this size was large enough. If not then we do a second 78444bac2208Snarayan * request with the correct size returned by the server. Note that 78454bac2208Snarayan * ldc requires size to be 8-byte aligned. 78464bac2208Snarayan */ 78474bac2208Snarayan bufsize = P2ROUNDUP(VD_DEVID_SIZE(VD_DEVID_DEFAULT_LEN), 78484bac2208Snarayan sizeof (uint64_t)); 78494bac2208Snarayan vd_devid = kmem_zalloc(bufsize, KM_SLEEP); 78504bac2208Snarayan bufid_len = bufsize - sizeof (vd_efi_t) - 1; 78514bac2208Snarayan 78523af08d82Slm66018 rv = vdc_do_sync_op(vdc, VD_OP_GET_DEVID, (caddr_t)vd_devid, 78532f5224aeSachartre bufsize, 0, 0, CB_SYNC, 0, VIO_both_dir, B_TRUE); 78543af08d82Slm66018 78553af08d82Slm66018 DMSG(vdc, 2, "sync_op returned %d\n", rv); 78563af08d82Slm66018 78574bac2208Snarayan if (rv) { 78584bac2208Snarayan kmem_free(vd_devid, bufsize); 78594bac2208Snarayan return (rv); 78604bac2208Snarayan } 78614bac2208Snarayan 78624bac2208Snarayan if (vd_devid->length > bufid_len) { 78634bac2208Snarayan /* 78644bac2208Snarayan * The returned devid is larger than the buffer used. Try again 78654bac2208Snarayan * with a buffer with the right size. 78664bac2208Snarayan */ 78674bac2208Snarayan kmem_free(vd_devid, bufsize); 78684bac2208Snarayan bufsize = P2ROUNDUP(VD_DEVID_SIZE(vd_devid->length), 78694bac2208Snarayan sizeof (uint64_t)); 78704bac2208Snarayan vd_devid = kmem_zalloc(bufsize, KM_SLEEP); 78714bac2208Snarayan bufid_len = bufsize - sizeof (vd_efi_t) - 1; 78724bac2208Snarayan 78733af08d82Slm66018 rv = vdc_do_sync_op(vdc, VD_OP_GET_DEVID, 78743af08d82Slm66018 (caddr_t)vd_devid, bufsize, 0, 0, CB_SYNC, 0, 78752f5224aeSachartre VIO_both_dir, B_TRUE); 78763af08d82Slm66018 78774bac2208Snarayan if (rv) { 78784bac2208Snarayan kmem_free(vd_devid, bufsize); 78794bac2208Snarayan return (rv); 78804bac2208Snarayan } 78814bac2208Snarayan } 78824bac2208Snarayan 78834bac2208Snarayan /* 78844bac2208Snarayan * The virtual disk should have the same device id as the one associated 78854bac2208Snarayan * with the physical disk it is mapped on, otherwise sharing a disk 78864bac2208Snarayan * between a LDom and a non-LDom may not work (for example for a shared 78874bac2208Snarayan * SVM disk set). 78884bac2208Snarayan * 78894bac2208Snarayan * The DDI framework does not allow creating a device id with any 78904bac2208Snarayan * type so we first create a device id of type DEVID_ENCAP and then 78914bac2208Snarayan * we restore the orignal type of the physical device. 78924bac2208Snarayan */ 78934bac2208Snarayan 78943af08d82Slm66018 DMSG(vdc, 2, ": devid length = %d\n", vd_devid->length); 78953af08d82Slm66018 78964bac2208Snarayan /* build an encapsulated devid based on the returned devid */ 78974bac2208Snarayan if (ddi_devid_init(vdc->dip, DEVID_ENCAP, vd_devid->length, 78984bac2208Snarayan vd_devid->id, &vdc->devid) != DDI_SUCCESS) { 78993af08d82Slm66018 DMSG(vdc, 1, "[%d] Fail to created devid\n", vdc->instance); 79004bac2208Snarayan kmem_free(vd_devid, bufsize); 79014bac2208Snarayan return (1); 79024bac2208Snarayan } 79034bac2208Snarayan 79044bac2208Snarayan DEVID_FORMTYPE((impl_devid_t *)vdc->devid, vd_devid->type); 79054bac2208Snarayan 79064bac2208Snarayan ASSERT(ddi_devid_valid(vdc->devid) == DDI_SUCCESS); 79074bac2208Snarayan 79084bac2208Snarayan kmem_free(vd_devid, bufsize); 79094bac2208Snarayan 79104bac2208Snarayan if (ddi_devid_register(vdc->dip, vdc->devid) != DDI_SUCCESS) { 79113af08d82Slm66018 DMSG(vdc, 1, "[%d] Fail to register devid\n", vdc->instance); 79124bac2208Snarayan return (1); 79134bac2208Snarayan } 79144bac2208Snarayan 79154bac2208Snarayan return (0); 79164bac2208Snarayan } 79174bac2208Snarayan 79184bac2208Snarayan static void 7919edcc0754Sachartre vdc_store_label_efi(vdc_t *vdc, efi_gpt_t *gpt, efi_gpe_t *gpe) 79204bac2208Snarayan { 7921edcc0754Sachartre int i, nparts; 79224bac2208Snarayan 792378fcd0a1Sachartre ASSERT(MUTEX_HELD(&vdc->lock)); 792478fcd0a1Sachartre 792578fcd0a1Sachartre vdc->vdisk_label = VD_DISK_LABEL_EFI; 7926edcc0754Sachartre bzero(vdc->vtoc, sizeof (struct vtoc)); 792778fcd0a1Sachartre bzero(vdc->geom, sizeof (struct dk_geom)); 7928edcc0754Sachartre bzero(vdc->slice, sizeof (vd_slice_t) * V_NUMPAR); 7929edcc0754Sachartre 7930edcc0754Sachartre nparts = gpt->efi_gpt_NumberOfPartitionEntries; 7931edcc0754Sachartre 7932edcc0754Sachartre for (i = 0; i < nparts && i < VD_EFI_WD_SLICE; i++) { 7933edcc0754Sachartre 7934edcc0754Sachartre if (gpe[i].efi_gpe_StartingLBA == 0 || 7935edcc0754Sachartre gpe[i].efi_gpe_EndingLBA == 0) { 7936edcc0754Sachartre continue; 79374bac2208Snarayan } 7938edcc0754Sachartre 7939edcc0754Sachartre vdc->slice[i].start = gpe[i].efi_gpe_StartingLBA; 7940edcc0754Sachartre vdc->slice[i].nblocks = gpe[i].efi_gpe_EndingLBA - 7941edcc0754Sachartre gpe[i].efi_gpe_StartingLBA + 1; 7942edcc0754Sachartre } 7943edcc0754Sachartre 7944edcc0754Sachartre ASSERT(vdc->vdisk_size != 0); 7945edcc0754Sachartre vdc->slice[VD_EFI_WD_SLICE].start = 0; 7946edcc0754Sachartre vdc->slice[VD_EFI_WD_SLICE].nblocks = vdc->vdisk_size; 7947edcc0754Sachartre 79484bac2208Snarayan } 794978fcd0a1Sachartre 795078fcd0a1Sachartre static void 795178fcd0a1Sachartre vdc_store_label_vtoc(vdc_t *vdc, struct dk_geom *geom, struct vtoc *vtoc) 795278fcd0a1Sachartre { 7953edcc0754Sachartre int i; 7954edcc0754Sachartre 795578fcd0a1Sachartre ASSERT(MUTEX_HELD(&vdc->lock)); 7956edcc0754Sachartre ASSERT(vdc->block_size == vtoc->v_sectorsz); 795778fcd0a1Sachartre 795878fcd0a1Sachartre vdc->vdisk_label = VD_DISK_LABEL_VTOC; 795978fcd0a1Sachartre bcopy(vtoc, vdc->vtoc, sizeof (struct vtoc)); 796078fcd0a1Sachartre bcopy(geom, vdc->geom, sizeof (struct dk_geom)); 7961edcc0754Sachartre bzero(vdc->slice, sizeof (vd_slice_t) * V_NUMPAR); 7962edcc0754Sachartre 7963edcc0754Sachartre for (i = 0; i < vtoc->v_nparts; i++) { 7964edcc0754Sachartre vdc->slice[i].start = vtoc->v_part[i].p_start; 7965edcc0754Sachartre vdc->slice[i].nblocks = vtoc->v_part[i].p_size; 7966edcc0754Sachartre } 796778fcd0a1Sachartre } 796878fcd0a1Sachartre 796978fcd0a1Sachartre static void 797078fcd0a1Sachartre vdc_store_label_unk(vdc_t *vdc) 797178fcd0a1Sachartre { 797278fcd0a1Sachartre ASSERT(MUTEX_HELD(&vdc->lock)); 797378fcd0a1Sachartre 797478fcd0a1Sachartre vdc->vdisk_label = VD_DISK_LABEL_UNK; 797578fcd0a1Sachartre bzero(vdc->vtoc, sizeof (struct vtoc)); 797678fcd0a1Sachartre bzero(vdc->geom, sizeof (struct dk_geom)); 7977edcc0754Sachartre bzero(vdc->slice, sizeof (vd_slice_t) * V_NUMPAR); 797878fcd0a1Sachartre } 7979