1 1.193 nat /* $NetBSD: scsipi_base.c,v 1.193 2024/10/29 15:50:07 nat Exp $ */ 2 1.2 bouyer 3 1.8 mycroft /*- 4 1.113 mycroft * Copyright (c) 1998, 1999, 2000, 2002, 2003, 2004 The NetBSD Foundation, Inc. 5 1.8 mycroft * All rights reserved. 6 1.8 mycroft * 7 1.8 mycroft * This code is derived from software contributed to The NetBSD Foundation 8 1.39 bouyer * by Charles M. Hannum; by Jason R. Thorpe of the Numerical Aerospace 9 1.39 bouyer * Simulation Facility, NASA Ames Research Center. 10 1.2 bouyer * 11 1.2 bouyer * Redistribution and use in source and binary forms, with or without 12 1.2 bouyer * modification, are permitted provided that the following conditions 13 1.2 bouyer * are met: 14 1.2 bouyer * 1. Redistributions of source code must retain the above copyright 15 1.2 bouyer * notice, this list of conditions and the following disclaimer. 16 1.2 bouyer * 2. Redistributions in binary form must reproduce the above copyright 17 1.2 bouyer * notice, this list of conditions and the following disclaimer in the 18 1.2 bouyer * documentation and/or other materials provided with the distribution. 19 1.2 bouyer * 20 1.8 mycroft * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS 21 1.8 mycroft * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED 22 1.8 mycroft * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR 23 1.8 mycroft * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS 24 1.8 mycroft * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR 25 1.8 mycroft * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF 26 1.8 mycroft * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS 27 1.8 mycroft * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN 28 1.8 mycroft * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) 29 1.8 mycroft * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE 30 1.8 mycroft * POSSIBILITY OF SUCH DAMAGE. 31 1.2 bouyer */ 32 1.62 lukem 33 1.62 lukem #include <sys/cdefs.h> 34 1.193 nat __KERNEL_RCSID(0, "$NetBSD: scsipi_base.c,v 1.193 2024/10/29 15:50:07 nat Exp $"); 35 1.2 bouyer 36 1.165 pooka #ifdef _KERNEL_OPT 37 1.13 bouyer #include "opt_scsi.h" 38 1.165 pooka #endif 39 1.13 bouyer 40 1.2 bouyer #include <sys/param.h> 41 1.2 bouyer #include <sys/systm.h> 42 1.2 bouyer #include <sys/kernel.h> 43 1.2 bouyer #include <sys/buf.h> 44 1.2 bouyer #include <sys/uio.h> 45 1.2 bouyer #include <sys/malloc.h> 46 1.6 thorpej #include <sys/pool.h> 47 1.2 bouyer #include <sys/errno.h> 48 1.2 bouyer #include <sys/device.h> 49 1.2 bouyer #include <sys/proc.h> 50 1.39 bouyer #include <sys/kthread.h> 51 1.74 thorpej #include <sys/hash.h> 52 1.167 mlelstv #include <sys/atomic.h> 53 1.111 chs 54 1.185 riastrad #include <dev/scsipi/scsi_sdt.h> 55 1.127 thorpej #include <dev/scsipi/scsi_spc.h> 56 1.2 bouyer #include <dev/scsipi/scsipi_all.h> 57 1.2 bouyer #include <dev/scsipi/scsipi_disk.h> 58 1.2 bouyer #include <dev/scsipi/scsipiconf.h> 59 1.2 bouyer #include <dev/scsipi/scsipi_base.h> 60 1.2 bouyer 61 1.39 bouyer #include <dev/scsipi/scsi_all.h> 62 1.39 bouyer #include <dev/scsipi/scsi_message.h> 63 1.39 bouyer 64 1.151 pooka #include <machine/param.h> 65 1.151 pooka 66 1.185 riastrad SDT_PROVIDER_DEFINE(scsi); 67 1.185 riastrad 68 1.185 riastrad SDT_PROBE_DEFINE3(scsi, base, tag, get, 69 1.185 riastrad "struct scsipi_xfer *"/*xs*/, "uint8_t"/*tag*/, "uint8_t"/*type*/); 70 1.185 riastrad SDT_PROBE_DEFINE3(scsi, base, tag, put, 71 1.185 riastrad "struct scsipi_xfer *"/*xs*/, "uint8_t"/*tag*/, "uint8_t"/*type*/); 72 1.185 riastrad 73 1.185 riastrad SDT_PROBE_DEFINE3(scsi, base, adapter, request__start, 74 1.185 riastrad "struct scsipi_channel *"/*chan*/, 75 1.185 riastrad "scsipi_adapter_req_t"/*req*/, 76 1.185 riastrad "void *"/*arg*/); 77 1.185 riastrad SDT_PROBE_DEFINE3(scsi, base, adapter, request__done, 78 1.185 riastrad "struct scsipi_channel *"/*chan*/, 79 1.185 riastrad "scsipi_adapter_req_t"/*req*/, 80 1.185 riastrad "void *"/*arg*/); 81 1.185 riastrad 82 1.185 riastrad SDT_PROBE_DEFINE1(scsi, base, queue, batch__start, 83 1.185 riastrad "struct scsipi_channel *"/*chan*/); 84 1.185 riastrad SDT_PROBE_DEFINE2(scsi, base, queue, run, 85 1.185 riastrad "struct scsipi_channel *"/*chan*/, 86 1.185 riastrad "struct scsipi_xfer *"/*xs*/); 87 1.185 riastrad SDT_PROBE_DEFINE1(scsi, base, queue, batch__done, 88 1.185 riastrad "struct scsipi_channel *"/*chan*/); 89 1.185 riastrad 90 1.185 riastrad SDT_PROBE_DEFINE1(scsi, base, xfer, execute, "struct scsipi_xfer *"/*xs*/); 91 1.185 riastrad SDT_PROBE_DEFINE1(scsi, base, xfer, enqueue, "struct scsipi_xfer *"/*xs*/); 92 1.185 riastrad SDT_PROBE_DEFINE1(scsi, base, xfer, done, "struct scsipi_xfer *"/*xs*/); 93 1.185 riastrad SDT_PROBE_DEFINE1(scsi, base, xfer, redone, "struct scsipi_xfer *"/*xs*/); 94 1.185 riastrad SDT_PROBE_DEFINE1(scsi, base, xfer, complete, "struct scsipi_xfer *"/*xs*/); 95 1.185 riastrad SDT_PROBE_DEFINE1(scsi, base, xfer, restart, "struct scsipi_xfer *"/*xs*/); 96 1.185 riastrad SDT_PROBE_DEFINE1(scsi, base, xfer, free, "struct scsipi_xfer *"/*xs*/); 97 1.185 riastrad 98 1.108 thorpej static int scsipi_complete(struct scsipi_xfer *); 99 1.108 thorpej static void scsipi_request_sense(struct scsipi_xfer *); 100 1.108 thorpej static int scsipi_enqueue(struct scsipi_xfer *); 101 1.108 thorpej static void scsipi_run_queue(struct scsipi_channel *chan); 102 1.108 thorpej 103 1.108 thorpej static void scsipi_completion_thread(void *); 104 1.108 thorpej 105 1.108 thorpej static void scsipi_get_tag(struct scsipi_xfer *); 106 1.108 thorpej static void scsipi_put_tag(struct scsipi_xfer *); 107 1.108 thorpej 108 1.108 thorpej static int scsipi_get_resource(struct scsipi_channel *); 109 1.108 thorpej static void scsipi_put_resource(struct scsipi_channel *); 110 1.108 thorpej 111 1.108 thorpej static void scsipi_async_event_max_openings(struct scsipi_channel *, 112 1.108 thorpej struct scsipi_max_openings *); 113 1.108 thorpej static void scsipi_async_event_channel_reset(struct scsipi_channel *); 114 1.39 bouyer 115 1.167 mlelstv static void scsipi_channel_freeze_locked(struct scsipi_channel *, int); 116 1.167 mlelstv 117 1.167 mlelstv static void scsipi_adapter_lock(struct scsipi_adapter *adapt); 118 1.167 mlelstv static void scsipi_adapter_unlock(struct scsipi_adapter *adapt); 119 1.167 mlelstv 120 1.182 kardel static void scsipi_update_timeouts(struct scsipi_xfer *xs); 121 1.182 kardel 122 1.108 thorpej static struct pool scsipi_xfer_pool; 123 1.6 thorpej 124 1.167 mlelstv int scsipi_xs_count = 0; 125 1.167 mlelstv 126 1.2 bouyer /* 127 1.39 bouyer * scsipi_init: 128 1.39 bouyer * 129 1.39 bouyer * Called when a scsibus or atapibus is attached to the system 130 1.39 bouyer * to initialize shared data structures. 131 1.6 thorpej */ 132 1.6 thorpej void 133 1.108 thorpej scsipi_init(void) 134 1.6 thorpej { 135 1.6 thorpej static int scsipi_init_done; 136 1.6 thorpej 137 1.6 thorpej if (scsipi_init_done) 138 1.6 thorpej return; 139 1.6 thorpej scsipi_init_done = 1; 140 1.6 thorpej 141 1.6 thorpej /* Initialize the scsipi_xfer pool. */ 142 1.6 thorpej pool_init(&scsipi_xfer_pool, sizeof(struct scsipi_xfer), 0, 143 1.144 ad 0, 0, "scxspl", NULL, IPL_BIO); 144 1.186 chs pool_prime(&scsipi_xfer_pool, 1); 145 1.167 mlelstv 146 1.167 mlelstv scsipi_ioctl_init(); 147 1.6 thorpej } 148 1.6 thorpej 149 1.6 thorpej /* 150 1.39 bouyer * scsipi_channel_init: 151 1.39 bouyer * 152 1.39 bouyer * Initialize a scsipi_channel when it is attached. 153 1.39 bouyer */ 154 1.39 bouyer int 155 1.108 thorpej scsipi_channel_init(struct scsipi_channel *chan) 156 1.39 bouyer { 157 1.145 ad struct scsipi_adapter *adapt = chan->chan_adapter; 158 1.39 bouyer int i; 159 1.39 bouyer 160 1.39 bouyer /* Initialize shared data. */ 161 1.39 bouyer scsipi_init(); 162 1.39 bouyer 163 1.39 bouyer /* Initialize the queues. */ 164 1.39 bouyer TAILQ_INIT(&chan->chan_queue); 165 1.39 bouyer TAILQ_INIT(&chan->chan_complete); 166 1.39 bouyer 167 1.74 thorpej for (i = 0; i < SCSIPI_CHAN_PERIPH_BUCKETS; i++) 168 1.74 thorpej LIST_INIT(&chan->chan_periphtab[i]); 169 1.39 bouyer 170 1.39 bouyer /* 171 1.39 bouyer * Create the asynchronous completion thread. 172 1.39 bouyer */ 173 1.145 ad if (kthread_create(PRI_NONE, 0, NULL, scsipi_completion_thread, chan, 174 1.145 ad &chan->chan_thread, "%s", chan->chan_name)) { 175 1.146 cegger aprint_error_dev(adapt->adapt_dev, "unable to create completion thread for " 176 1.146 cegger "channel %d\n", chan->chan_channel); 177 1.145 ad panic("scsipi_channel_init"); 178 1.145 ad } 179 1.145 ad 180 1.174 skrll return 0; 181 1.39 bouyer } 182 1.39 bouyer 183 1.39 bouyer /* 184 1.39 bouyer * scsipi_channel_shutdown: 185 1.39 bouyer * 186 1.39 bouyer * Shutdown a scsipi_channel. 187 1.39 bouyer */ 188 1.39 bouyer void 189 1.108 thorpej scsipi_channel_shutdown(struct scsipi_channel *chan) 190 1.39 bouyer { 191 1.39 bouyer 192 1.167 mlelstv mutex_enter(chan_mtx(chan)); 193 1.39 bouyer /* 194 1.39 bouyer * Shut down the completion thread. 195 1.39 bouyer */ 196 1.59 bouyer chan->chan_tflags |= SCSIPI_CHANT_SHUTDOWN; 197 1.167 mlelstv cv_broadcast(chan_cv_complete(chan)); 198 1.39 bouyer 199 1.39 bouyer /* 200 1.39 bouyer * Now wait for the thread to exit. 201 1.39 bouyer */ 202 1.39 bouyer while (chan->chan_thread != NULL) 203 1.167 mlelstv cv_wait(chan_cv_thread(chan), chan_mtx(chan)); 204 1.167 mlelstv mutex_exit(chan_mtx(chan)); 205 1.39 bouyer } 206 1.39 bouyer 207 1.74 thorpej static uint32_t 208 1.74 thorpej scsipi_chan_periph_hash(uint64_t t, uint64_t l) 209 1.74 thorpej { 210 1.74 thorpej uint32_t hash; 211 1.74 thorpej 212 1.74 thorpej hash = hash32_buf(&t, sizeof(t), HASH32_BUF_INIT); 213 1.74 thorpej hash = hash32_buf(&l, sizeof(l), hash); 214 1.74 thorpej 215 1.174 skrll return hash & SCSIPI_CHAN_PERIPH_HASHMASK; 216 1.74 thorpej } 217 1.74 thorpej 218 1.39 bouyer /* 219 1.39 bouyer * scsipi_insert_periph: 220 1.39 bouyer * 221 1.39 bouyer * Insert a periph into the channel. 222 1.39 bouyer */ 223 1.39 bouyer void 224 1.108 thorpej scsipi_insert_periph(struct scsipi_channel *chan, struct scsipi_periph *periph) 225 1.39 bouyer { 226 1.74 thorpej uint32_t hash; 227 1.39 bouyer 228 1.74 thorpej hash = scsipi_chan_periph_hash(periph->periph_target, 229 1.74 thorpej periph->periph_lun); 230 1.74 thorpej 231 1.167 mlelstv mutex_enter(chan_mtx(chan)); 232 1.74 thorpej LIST_INSERT_HEAD(&chan->chan_periphtab[hash], periph, periph_hash); 233 1.167 mlelstv mutex_exit(chan_mtx(chan)); 234 1.39 bouyer } 235 1.39 bouyer 236 1.39 bouyer /* 237 1.39 bouyer * scsipi_remove_periph: 238 1.39 bouyer * 239 1.39 bouyer * Remove a periph from the channel. 240 1.39 bouyer */ 241 1.39 bouyer void 242 1.141 christos scsipi_remove_periph(struct scsipi_channel *chan, 243 1.139 christos struct scsipi_periph *periph) 244 1.39 bouyer { 245 1.39 bouyer 246 1.74 thorpej LIST_REMOVE(periph, periph_hash); 247 1.39 bouyer } 248 1.39 bouyer 249 1.39 bouyer /* 250 1.39 bouyer * scsipi_lookup_periph: 251 1.39 bouyer * 252 1.39 bouyer * Lookup a periph on the specified channel. 253 1.39 bouyer */ 254 1.167 mlelstv static struct scsipi_periph * 255 1.167 mlelstv scsipi_lookup_periph_internal(struct scsipi_channel *chan, int target, int lun, bool lock) 256 1.39 bouyer { 257 1.39 bouyer struct scsipi_periph *periph; 258 1.74 thorpej uint32_t hash; 259 1.156 mrg 260 1.39 bouyer if (target >= chan->chan_ntargets || 261 1.39 bouyer lun >= chan->chan_nluns) 262 1.174 skrll return NULL; 263 1.39 bouyer 264 1.74 thorpej hash = scsipi_chan_periph_hash(target, lun); 265 1.74 thorpej 266 1.167 mlelstv if (lock) 267 1.167 mlelstv mutex_enter(chan_mtx(chan)); 268 1.74 thorpej LIST_FOREACH(periph, &chan->chan_periphtab[hash], periph_hash) { 269 1.74 thorpej if (periph->periph_target == target && 270 1.74 thorpej periph->periph_lun == lun) 271 1.74 thorpej break; 272 1.74 thorpej } 273 1.167 mlelstv if (lock) 274 1.167 mlelstv mutex_exit(chan_mtx(chan)); 275 1.39 bouyer 276 1.174 skrll return periph; 277 1.39 bouyer } 278 1.39 bouyer 279 1.167 mlelstv struct scsipi_periph * 280 1.167 mlelstv scsipi_lookup_periph_locked(struct scsipi_channel *chan, int target, int lun) 281 1.167 mlelstv { 282 1.167 mlelstv return scsipi_lookup_periph_internal(chan, target, lun, false); 283 1.167 mlelstv } 284 1.167 mlelstv 285 1.167 mlelstv struct scsipi_periph * 286 1.167 mlelstv scsipi_lookup_periph(struct scsipi_channel *chan, int target, int lun) 287 1.167 mlelstv { 288 1.167 mlelstv return scsipi_lookup_periph_internal(chan, target, lun, true); 289 1.167 mlelstv } 290 1.167 mlelstv 291 1.39 bouyer /* 292 1.39 bouyer * scsipi_get_resource: 293 1.39 bouyer * 294 1.39 bouyer * Allocate a single xfer `resource' from the channel. 295 1.39 bouyer * 296 1.167 mlelstv * NOTE: Must be called with channel lock held 297 1.39 bouyer */ 298 1.108 thorpej static int 299 1.108 thorpej scsipi_get_resource(struct scsipi_channel *chan) 300 1.39 bouyer { 301 1.39 bouyer struct scsipi_adapter *adapt = chan->chan_adapter; 302 1.39 bouyer 303 1.39 bouyer if (chan->chan_flags & SCSIPI_CHAN_OPENINGS) { 304 1.39 bouyer if (chan->chan_openings > 0) { 305 1.39 bouyer chan->chan_openings--; 306 1.174 skrll return 1; 307 1.39 bouyer } 308 1.174 skrll return 0; 309 1.39 bouyer } 310 1.39 bouyer 311 1.39 bouyer if (adapt->adapt_openings > 0) { 312 1.39 bouyer adapt->adapt_openings--; 313 1.174 skrll return 1; 314 1.39 bouyer } 315 1.174 skrll return 0; 316 1.39 bouyer } 317 1.39 bouyer 318 1.39 bouyer /* 319 1.39 bouyer * scsipi_grow_resources: 320 1.39 bouyer * 321 1.39 bouyer * Attempt to grow resources for a channel. If this succeeds, 322 1.39 bouyer * we allocate one for our caller. 323 1.39 bouyer * 324 1.167 mlelstv * NOTE: Must be called with channel lock held 325 1.39 bouyer */ 326 1.133 perry static inline int 327 1.108 thorpej scsipi_grow_resources(struct scsipi_channel *chan) 328 1.39 bouyer { 329 1.39 bouyer 330 1.39 bouyer if (chan->chan_flags & SCSIPI_CHAN_CANGROW) { 331 1.60 bouyer if ((chan->chan_flags & SCSIPI_CHAN_TACTIVE) == 0) { 332 1.167 mlelstv mutex_exit(chan_mtx(chan)); 333 1.60 bouyer scsipi_adapter_request(chan, 334 1.60 bouyer ADAPTER_REQ_GROW_RESOURCES, NULL); 335 1.167 mlelstv mutex_enter(chan_mtx(chan)); 336 1.174 skrll return scsipi_get_resource(chan); 337 1.60 bouyer } 338 1.60 bouyer /* 339 1.60 bouyer * ask the channel thread to do it. It'll have to thaw the 340 1.60 bouyer * queue 341 1.60 bouyer */ 342 1.167 mlelstv scsipi_channel_freeze_locked(chan, 1); 343 1.60 bouyer chan->chan_tflags |= SCSIPI_CHANT_GROWRES; 344 1.167 mlelstv cv_broadcast(chan_cv_complete(chan)); 345 1.174 skrll return 0; 346 1.39 bouyer } 347 1.39 bouyer 348 1.174 skrll return 0; 349 1.39 bouyer } 350 1.39 bouyer 351 1.39 bouyer /* 352 1.39 bouyer * scsipi_put_resource: 353 1.39 bouyer * 354 1.39 bouyer * Free a single xfer `resource' to the channel. 355 1.39 bouyer * 356 1.167 mlelstv * NOTE: Must be called with channel lock held 357 1.39 bouyer */ 358 1.108 thorpej static void 359 1.108 thorpej scsipi_put_resource(struct scsipi_channel *chan) 360 1.39 bouyer { 361 1.39 bouyer struct scsipi_adapter *adapt = chan->chan_adapter; 362 1.39 bouyer 363 1.39 bouyer if (chan->chan_flags & SCSIPI_CHAN_OPENINGS) 364 1.39 bouyer chan->chan_openings++; 365 1.39 bouyer else 366 1.39 bouyer adapt->adapt_openings++; 367 1.39 bouyer } 368 1.39 bouyer 369 1.39 bouyer /* 370 1.39 bouyer * scsipi_get_tag: 371 1.39 bouyer * 372 1.39 bouyer * Get a tag ID for the specified xfer. 373 1.39 bouyer * 374 1.167 mlelstv * NOTE: Must be called with channel lock held 375 1.39 bouyer */ 376 1.108 thorpej static void 377 1.108 thorpej scsipi_get_tag(struct scsipi_xfer *xs) 378 1.39 bouyer { 379 1.39 bouyer struct scsipi_periph *periph = xs->xs_periph; 380 1.81 thorpej int bit, tag; 381 1.126 reinoud u_int word; 382 1.39 bouyer 383 1.180 bouyer KASSERT(mutex_owned(chan_mtx(periph->periph_channel))); 384 1.180 bouyer 385 1.99 simonb bit = 0; /* XXX gcc */ 386 1.39 bouyer for (word = 0; word < PERIPH_NTAGWORDS; word++) { 387 1.39 bouyer bit = ffs(periph->periph_freetags[word]); 388 1.39 bouyer if (bit != 0) 389 1.39 bouyer break; 390 1.39 bouyer } 391 1.39 bouyer #ifdef DIAGNOSTIC 392 1.39 bouyer if (word == PERIPH_NTAGWORDS) { 393 1.39 bouyer scsipi_printaddr(periph); 394 1.39 bouyer printf("no free tags\n"); 395 1.39 bouyer panic("scsipi_get_tag"); 396 1.39 bouyer } 397 1.39 bouyer #endif 398 1.39 bouyer 399 1.39 bouyer bit -= 1; 400 1.183 msaitoh periph->periph_freetags[word] &= ~(1U << bit); 401 1.39 bouyer tag = (word << 5) | bit; 402 1.39 bouyer 403 1.39 bouyer /* XXX Should eventually disallow this completely. */ 404 1.39 bouyer if (tag >= periph->periph_openings) { 405 1.39 bouyer scsipi_printaddr(periph); 406 1.39 bouyer printf("WARNING: tag %d greater than available openings %d\n", 407 1.39 bouyer tag, periph->periph_openings); 408 1.39 bouyer } 409 1.39 bouyer 410 1.39 bouyer xs->xs_tag_id = tag; 411 1.185 riastrad SDT_PROBE3(scsi, base, tag, get, 412 1.185 riastrad xs, xs->xs_tag_id, xs->xs_tag_type); 413 1.39 bouyer } 414 1.39 bouyer 415 1.39 bouyer /* 416 1.39 bouyer * scsipi_put_tag: 417 1.39 bouyer * 418 1.39 bouyer * Put the tag ID for the specified xfer back into the pool. 419 1.39 bouyer * 420 1.167 mlelstv * NOTE: Must be called with channel lock held 421 1.2 bouyer */ 422 1.108 thorpej static void 423 1.108 thorpej scsipi_put_tag(struct scsipi_xfer *xs) 424 1.39 bouyer { 425 1.39 bouyer struct scsipi_periph *periph = xs->xs_periph; 426 1.39 bouyer int word, bit; 427 1.39 bouyer 428 1.180 bouyer KASSERT(mutex_owned(chan_mtx(periph->periph_channel))); 429 1.180 bouyer 430 1.185 riastrad SDT_PROBE3(scsi, base, tag, put, 431 1.185 riastrad xs, xs->xs_tag_id, xs->xs_tag_type); 432 1.185 riastrad 433 1.39 bouyer word = xs->xs_tag_id >> 5; 434 1.39 bouyer bit = xs->xs_tag_id & 0x1f; 435 1.39 bouyer 436 1.183 msaitoh periph->periph_freetags[word] |= (1U << bit); 437 1.39 bouyer } 438 1.2 bouyer 439 1.39 bouyer /* 440 1.39 bouyer * scsipi_get_xs: 441 1.39 bouyer * 442 1.39 bouyer * Allocate an xfer descriptor and associate it with the 443 1.160 dholland * specified peripheral. If the peripheral has no more 444 1.39 bouyer * available command openings, we either block waiting for 445 1.39 bouyer * one to become available, or fail. 446 1.167 mlelstv * 447 1.167 mlelstv * When this routine is called with the channel lock held 448 1.167 mlelstv * the flags must include XS_CTL_NOSLEEP. 449 1.39 bouyer */ 450 1.2 bouyer struct scsipi_xfer * 451 1.108 thorpej scsipi_get_xs(struct scsipi_periph *periph, int flags) 452 1.2 bouyer { 453 1.2 bouyer struct scsipi_xfer *xs; 454 1.170 mlelstv bool lock = (flags & XS_CTL_NOSLEEP) == 0; 455 1.2 bouyer 456 1.39 bouyer SC_DEBUG(periph, SCSIPI_DB3, ("scsipi_get_xs\n")); 457 1.6 thorpej 458 1.119 mycroft KASSERT(!cold); 459 1.24 thorpej 460 1.39 bouyer #ifdef DIAGNOSTIC 461 1.39 bouyer /* 462 1.39 bouyer * URGENT commands can never be ASYNC. 463 1.39 bouyer */ 464 1.39 bouyer if ((flags & (XS_CTL_URGENT|XS_CTL_ASYNC)) == 465 1.39 bouyer (XS_CTL_URGENT|XS_CTL_ASYNC)) { 466 1.39 bouyer scsipi_printaddr(periph); 467 1.39 bouyer printf("URGENT and ASYNC\n"); 468 1.39 bouyer panic("scsipi_get_xs"); 469 1.39 bouyer } 470 1.39 bouyer #endif 471 1.39 bouyer 472 1.39 bouyer /* 473 1.39 bouyer * Wait for a command opening to become available. Rules: 474 1.39 bouyer * 475 1.39 bouyer * - All xfers must wait for an available opening. 476 1.39 bouyer * Exception: URGENT xfers can proceed when 477 1.39 bouyer * active == openings, because we use the opening 478 1.39 bouyer * of the command we're recovering for. 479 1.39 bouyer * - if the periph has sense pending, only URGENT & REQSENSE 480 1.39 bouyer * xfers may proceed. 481 1.39 bouyer * 482 1.39 bouyer * - If the periph is recovering, only URGENT xfers may 483 1.39 bouyer * proceed. 484 1.39 bouyer * 485 1.39 bouyer * - If the periph is currently executing a recovery 486 1.39 bouyer * command, URGENT commands must block, because only 487 1.39 bouyer * one recovery command can execute at a time. 488 1.39 bouyer */ 489 1.170 mlelstv if (lock) 490 1.170 mlelstv mutex_enter(chan_mtx(periph->periph_channel)); 491 1.39 bouyer for (;;) { 492 1.39 bouyer if (flags & XS_CTL_URGENT) { 493 1.39 bouyer if (periph->periph_active > periph->periph_openings) 494 1.39 bouyer goto wait_for_opening; 495 1.39 bouyer if (periph->periph_flags & PERIPH_SENSE) { 496 1.39 bouyer if ((flags & XS_CTL_REQSENSE) == 0) 497 1.39 bouyer goto wait_for_opening; 498 1.39 bouyer } else { 499 1.39 bouyer if ((periph->periph_flags & 500 1.39 bouyer PERIPH_RECOVERY_ACTIVE) != 0) 501 1.39 bouyer goto wait_for_opening; 502 1.39 bouyer periph->periph_flags |= PERIPH_RECOVERY_ACTIVE; 503 1.39 bouyer } 504 1.39 bouyer break; 505 1.39 bouyer } 506 1.39 bouyer if (periph->periph_active >= periph->periph_openings || 507 1.39 bouyer (periph->periph_flags & PERIPH_RECOVERING) != 0) 508 1.39 bouyer goto wait_for_opening; 509 1.39 bouyer periph->periph_active++; 510 1.180 bouyer KASSERT(mutex_owned(chan_mtx(periph->periph_channel))); 511 1.39 bouyer break; 512 1.39 bouyer 513 1.39 bouyer wait_for_opening: 514 1.39 bouyer if (flags & XS_CTL_NOSLEEP) { 515 1.170 mlelstv KASSERT(!lock); 516 1.174 skrll return NULL; 517 1.2 bouyer } 518 1.170 mlelstv KASSERT(lock); 519 1.39 bouyer SC_DEBUG(periph, SCSIPI_DB3, ("sleeping\n")); 520 1.39 bouyer periph->periph_flags |= PERIPH_WAITING; 521 1.167 mlelstv cv_wait(periph_cv_periph(periph), 522 1.167 mlelstv chan_mtx(periph->periph_channel)); 523 1.170 mlelstv } 524 1.170 mlelstv if (lock) 525 1.167 mlelstv mutex_exit(chan_mtx(periph->periph_channel)); 526 1.167 mlelstv 527 1.39 bouyer SC_DEBUG(periph, SCSIPI_DB3, ("calling pool_get\n")); 528 1.6 thorpej xs = pool_get(&scsipi_xfer_pool, 529 1.24 thorpej ((flags & XS_CTL_NOSLEEP) != 0 ? PR_NOWAIT : PR_WAITOK)); 530 1.39 bouyer if (xs == NULL) { 531 1.170 mlelstv if (lock) 532 1.170 mlelstv mutex_enter(chan_mtx(periph->periph_channel)); 533 1.39 bouyer if (flags & XS_CTL_URGENT) { 534 1.39 bouyer if ((flags & XS_CTL_REQSENSE) == 0) 535 1.39 bouyer periph->periph_flags &= ~PERIPH_RECOVERY_ACTIVE; 536 1.39 bouyer } else 537 1.39 bouyer periph->periph_active--; 538 1.170 mlelstv if (lock) 539 1.170 mlelstv mutex_exit(chan_mtx(periph->periph_channel)); 540 1.39 bouyer scsipi_printaddr(periph); 541 1.39 bouyer printf("unable to allocate %sscsipi_xfer\n", 542 1.39 bouyer (flags & XS_CTL_URGENT) ? "URGENT " : ""); 543 1.2 bouyer } 544 1.2 bouyer 545 1.39 bouyer SC_DEBUG(periph, SCSIPI_DB3, ("returning\n")); 546 1.6 thorpej 547 1.7 scottr if (xs != NULL) { 548 1.101 thorpej memset(xs, 0, sizeof(*xs)); 549 1.145 ad callout_init(&xs->xs_callout, 0); 550 1.39 bouyer xs->xs_periph = periph; 551 1.24 thorpej xs->xs_control = flags; 552 1.37 fvdl xs->xs_status = 0; 553 1.167 mlelstv if ((flags & XS_CTL_NOSLEEP) == 0) 554 1.167 mlelstv mutex_enter(chan_mtx(periph->periph_channel)); 555 1.39 bouyer TAILQ_INSERT_TAIL(&periph->periph_xferq, xs, device_q); 556 1.180 bouyer KASSERT(mutex_owned(chan_mtx(periph->periph_channel))); 557 1.167 mlelstv if ((flags & XS_CTL_NOSLEEP) == 0) 558 1.167 mlelstv mutex_exit(chan_mtx(periph->periph_channel)); 559 1.7 scottr } 560 1.174 skrll return xs; 561 1.2 bouyer } 562 1.2 bouyer 563 1.2 bouyer /* 564 1.39 bouyer * scsipi_put_xs: 565 1.39 bouyer * 566 1.39 bouyer * Release an xfer descriptor, decreasing the outstanding command 567 1.160 dholland * count for the peripheral. If there is a thread waiting for 568 1.39 bouyer * an opening, wake it up. If not, kick any queued I/O the 569 1.160 dholland * peripheral may have. 570 1.6 thorpej * 571 1.167 mlelstv * NOTE: Must be called with channel lock held 572 1.2 bouyer */ 573 1.3 enami void 574 1.108 thorpej scsipi_put_xs(struct scsipi_xfer *xs) 575 1.2 bouyer { 576 1.39 bouyer struct scsipi_periph *periph = xs->xs_periph; 577 1.39 bouyer int flags = xs->xs_control; 578 1.39 bouyer 579 1.185 riastrad SDT_PROBE1(scsi, base, xfer, free, xs); 580 1.39 bouyer SC_DEBUG(periph, SCSIPI_DB3, ("scsipi_free_xs\n")); 581 1.180 bouyer KASSERT(mutex_owned(chan_mtx(periph->periph_channel))); 582 1.2 bouyer 583 1.39 bouyer TAILQ_REMOVE(&periph->periph_xferq, xs, device_q); 584 1.149 dyoung callout_destroy(&xs->xs_callout); 585 1.39 bouyer pool_put(&scsipi_xfer_pool, xs); 586 1.39 bouyer 587 1.39 bouyer #ifdef DIAGNOSTIC 588 1.39 bouyer if ((periph->periph_flags & PERIPH_RECOVERY_ACTIVE) != 0 && 589 1.39 bouyer periph->periph_active == 0) { 590 1.39 bouyer scsipi_printaddr(periph); 591 1.39 bouyer printf("recovery without a command to recovery for\n"); 592 1.39 bouyer panic("scsipi_put_xs"); 593 1.39 bouyer } 594 1.39 bouyer #endif 595 1.39 bouyer 596 1.39 bouyer if (flags & XS_CTL_URGENT) { 597 1.39 bouyer if ((flags & XS_CTL_REQSENSE) == 0) 598 1.39 bouyer periph->periph_flags &= ~PERIPH_RECOVERY_ACTIVE; 599 1.39 bouyer } else 600 1.39 bouyer periph->periph_active--; 601 1.39 bouyer if (periph->periph_active == 0 && 602 1.39 bouyer (periph->periph_flags & PERIPH_WAITDRAIN) != 0) { 603 1.39 bouyer periph->periph_flags &= ~PERIPH_WAITDRAIN; 604 1.167 mlelstv cv_broadcast(periph_cv_active(periph)); 605 1.16 thorpej } 606 1.2 bouyer 607 1.39 bouyer if (periph->periph_flags & PERIPH_WAITING) { 608 1.39 bouyer periph->periph_flags &= ~PERIPH_WAITING; 609 1.167 mlelstv cv_broadcast(periph_cv_periph(periph)); 610 1.2 bouyer } else { 611 1.106 bouyer if (periph->periph_switch->psw_start != NULL && 612 1.134 thorpej device_is_active(periph->periph_dev)) { 613 1.39 bouyer SC_DEBUG(periph, SCSIPI_DB2, 614 1.3 enami ("calling private start()\n")); 615 1.39 bouyer (*periph->periph_switch->psw_start)(periph); 616 1.2 bouyer } 617 1.2 bouyer } 618 1.15 thorpej } 619 1.15 thorpej 620 1.15 thorpej /* 621 1.39 bouyer * scsipi_channel_freeze: 622 1.39 bouyer * 623 1.39 bouyer * Freeze a channel's xfer queue. 624 1.39 bouyer */ 625 1.39 bouyer void 626 1.108 thorpej scsipi_channel_freeze(struct scsipi_channel *chan, int count) 627 1.39 bouyer { 628 1.169 mlelstv bool lock = chan_running(chan) > 0; 629 1.167 mlelstv 630 1.167 mlelstv if (lock) 631 1.167 mlelstv mutex_enter(chan_mtx(chan)); 632 1.167 mlelstv chan->chan_qfreeze += count; 633 1.167 mlelstv if (lock) 634 1.167 mlelstv mutex_exit(chan_mtx(chan)); 635 1.167 mlelstv } 636 1.167 mlelstv 637 1.167 mlelstv static void 638 1.167 mlelstv scsipi_channel_freeze_locked(struct scsipi_channel *chan, int count) 639 1.167 mlelstv { 640 1.39 bouyer 641 1.39 bouyer chan->chan_qfreeze += count; 642 1.39 bouyer } 643 1.39 bouyer 644 1.39 bouyer /* 645 1.39 bouyer * scsipi_channel_thaw: 646 1.39 bouyer * 647 1.39 bouyer * Thaw a channel's xfer queue. 648 1.39 bouyer */ 649 1.39 bouyer void 650 1.108 thorpej scsipi_channel_thaw(struct scsipi_channel *chan, int count) 651 1.39 bouyer { 652 1.169 mlelstv bool lock = chan_running(chan) > 0; 653 1.39 bouyer 654 1.167 mlelstv if (lock) 655 1.167 mlelstv mutex_enter(chan_mtx(chan)); 656 1.39 bouyer chan->chan_qfreeze -= count; 657 1.39 bouyer /* 658 1.39 bouyer * Don't let the freeze count go negative. 659 1.39 bouyer * 660 1.39 bouyer * Presumably the adapter driver could keep track of this, 661 1.39 bouyer * but it might just be easier to do this here so as to allow 662 1.39 bouyer * multiple callers, including those outside the adapter driver. 663 1.39 bouyer */ 664 1.39 bouyer if (chan->chan_qfreeze < 0) { 665 1.39 bouyer chan->chan_qfreeze = 0; 666 1.39 bouyer } 667 1.167 mlelstv if (lock) 668 1.167 mlelstv mutex_exit(chan_mtx(chan)); 669 1.167 mlelstv 670 1.167 mlelstv /* 671 1.167 mlelstv * until the channel is running 672 1.167 mlelstv */ 673 1.167 mlelstv if (!lock) 674 1.167 mlelstv return; 675 1.167 mlelstv 676 1.44 bouyer /* 677 1.44 bouyer * Kick the channel's queue here. Note, we may be running in 678 1.44 bouyer * interrupt context (softclock or HBA's interrupt), so the adapter 679 1.44 bouyer * driver had better not sleep. 680 1.44 bouyer */ 681 1.44 bouyer if (chan->chan_qfreeze == 0) 682 1.44 bouyer scsipi_run_queue(chan); 683 1.39 bouyer } 684 1.39 bouyer 685 1.39 bouyer /* 686 1.39 bouyer * scsipi_channel_timed_thaw: 687 1.39 bouyer * 688 1.44 bouyer * Thaw a channel after some time has expired. This will also 689 1.44 bouyer * run the channel's queue if the freeze count has reached 0. 690 1.39 bouyer */ 691 1.39 bouyer void 692 1.108 thorpej scsipi_channel_timed_thaw(void *arg) 693 1.39 bouyer { 694 1.39 bouyer struct scsipi_channel *chan = arg; 695 1.39 bouyer 696 1.39 bouyer scsipi_channel_thaw(chan, 1); 697 1.39 bouyer } 698 1.39 bouyer 699 1.39 bouyer /* 700 1.39 bouyer * scsipi_periph_freeze: 701 1.39 bouyer * 702 1.39 bouyer * Freeze a device's xfer queue. 703 1.39 bouyer */ 704 1.39 bouyer void 705 1.167 mlelstv scsipi_periph_freeze_locked(struct scsipi_periph *periph, int count) 706 1.39 bouyer { 707 1.39 bouyer 708 1.39 bouyer periph->periph_qfreeze += count; 709 1.39 bouyer } 710 1.39 bouyer 711 1.39 bouyer /* 712 1.39 bouyer * scsipi_periph_thaw: 713 1.39 bouyer * 714 1.39 bouyer * Thaw a device's xfer queue. 715 1.39 bouyer */ 716 1.39 bouyer void 717 1.167 mlelstv scsipi_periph_thaw_locked(struct scsipi_periph *periph, int count) 718 1.39 bouyer { 719 1.39 bouyer 720 1.39 bouyer periph->periph_qfreeze -= count; 721 1.58 mjacob #ifdef DIAGNOSTIC 722 1.58 mjacob if (periph->periph_qfreeze < 0) { 723 1.58 mjacob static const char pc[] = "periph freeze count < 0"; 724 1.58 mjacob scsipi_printaddr(periph); 725 1.58 mjacob printf("%s\n", pc); 726 1.58 mjacob panic(pc); 727 1.58 mjacob } 728 1.58 mjacob #endif 729 1.39 bouyer if (periph->periph_qfreeze == 0 && 730 1.39 bouyer (periph->periph_flags & PERIPH_WAITING) != 0) 731 1.167 mlelstv cv_broadcast(periph_cv_periph(periph)); 732 1.167 mlelstv } 733 1.167 mlelstv 734 1.167 mlelstv void 735 1.167 mlelstv scsipi_periph_freeze(struct scsipi_periph *periph, int count) 736 1.167 mlelstv { 737 1.167 mlelstv 738 1.167 mlelstv mutex_enter(chan_mtx(periph->periph_channel)); 739 1.167 mlelstv scsipi_periph_freeze_locked(periph, count); 740 1.167 mlelstv mutex_exit(chan_mtx(periph->periph_channel)); 741 1.167 mlelstv } 742 1.167 mlelstv 743 1.167 mlelstv void 744 1.167 mlelstv scsipi_periph_thaw(struct scsipi_periph *periph, int count) 745 1.167 mlelstv { 746 1.167 mlelstv 747 1.167 mlelstv mutex_enter(chan_mtx(periph->periph_channel)); 748 1.167 mlelstv scsipi_periph_thaw_locked(periph, count); 749 1.167 mlelstv mutex_exit(chan_mtx(periph->periph_channel)); 750 1.39 bouyer } 751 1.39 bouyer 752 1.39 bouyer /* 753 1.39 bouyer * scsipi_periph_timed_thaw: 754 1.39 bouyer * 755 1.39 bouyer * Thaw a device after some time has expired. 756 1.39 bouyer */ 757 1.39 bouyer void 758 1.108 thorpej scsipi_periph_timed_thaw(void *arg) 759 1.39 bouyer { 760 1.39 bouyer struct scsipi_periph *periph = arg; 761 1.167 mlelstv struct scsipi_channel *chan = periph->periph_channel; 762 1.39 bouyer 763 1.39 bouyer callout_stop(&periph->periph_callout); 764 1.58 mjacob 765 1.167 mlelstv mutex_enter(chan_mtx(chan)); 766 1.167 mlelstv scsipi_periph_thaw_locked(periph, 1); 767 1.58 mjacob if ((periph->periph_channel->chan_flags & SCSIPI_CHAN_TACTIVE) == 0) { 768 1.58 mjacob /* 769 1.58 mjacob * Kick the channel's queue here. Note, we're running in 770 1.58 mjacob * interrupt context (softclock), so the adapter driver 771 1.58 mjacob * had better not sleep. 772 1.58 mjacob */ 773 1.167 mlelstv mutex_exit(chan_mtx(chan)); 774 1.58 mjacob scsipi_run_queue(periph->periph_channel); 775 1.58 mjacob } else { 776 1.58 mjacob /* 777 1.58 mjacob * Tell the completion thread to kick the channel's queue here. 778 1.58 mjacob */ 779 1.59 bouyer periph->periph_channel->chan_tflags |= SCSIPI_CHANT_KICK; 780 1.167 mlelstv cv_broadcast(chan_cv_complete(chan)); 781 1.167 mlelstv mutex_exit(chan_mtx(chan)); 782 1.58 mjacob } 783 1.39 bouyer } 784 1.39 bouyer 785 1.39 bouyer /* 786 1.39 bouyer * scsipi_wait_drain: 787 1.39 bouyer * 788 1.39 bouyer * Wait for a periph's pending xfers to drain. 789 1.15 thorpej */ 790 1.15 thorpej void 791 1.108 thorpej scsipi_wait_drain(struct scsipi_periph *periph) 792 1.15 thorpej { 793 1.167 mlelstv struct scsipi_channel *chan = periph->periph_channel; 794 1.15 thorpej 795 1.167 mlelstv mutex_enter(chan_mtx(chan)); 796 1.39 bouyer while (periph->periph_active != 0) { 797 1.39 bouyer periph->periph_flags |= PERIPH_WAITDRAIN; 798 1.167 mlelstv cv_wait(periph_cv_active(periph), chan_mtx(chan)); 799 1.15 thorpej } 800 1.167 mlelstv mutex_exit(chan_mtx(chan)); 801 1.23 thorpej } 802 1.23 thorpej 803 1.23 thorpej /* 804 1.39 bouyer * scsipi_kill_pending: 805 1.39 bouyer * 806 1.39 bouyer * Kill off all pending xfers for a periph. 807 1.23 thorpej * 808 1.167 mlelstv * NOTE: Must be called with channel lock held 809 1.23 thorpej */ 810 1.23 thorpej void 811 1.108 thorpej scsipi_kill_pending(struct scsipi_periph *periph) 812 1.23 thorpej { 813 1.167 mlelstv struct scsipi_channel *chan = periph->periph_channel; 814 1.23 thorpej 815 1.167 mlelstv (*chan->chan_bustype->bustype_kill_pending)(periph); 816 1.167 mlelstv while (periph->periph_active != 0) { 817 1.167 mlelstv periph->periph_flags |= PERIPH_WAITDRAIN; 818 1.167 mlelstv cv_wait(periph_cv_active(periph), chan_mtx(chan)); 819 1.167 mlelstv } 820 1.2 bouyer } 821 1.2 bouyer 822 1.2 bouyer /* 823 1.104 bouyer * scsipi_print_cdb: 824 1.104 bouyer * prints a command descriptor block (for debug purpose, error messages, 825 1.152 pgoyette * SCSIVERBOSE, ...) 826 1.103 bouyer */ 827 1.103 bouyer void 828 1.108 thorpej scsipi_print_cdb(struct scsipi_generic *cmd) 829 1.103 bouyer { 830 1.103 bouyer int i, j; 831 1.103 bouyer 832 1.103 bouyer printf("0x%02x", cmd->opcode); 833 1.103 bouyer 834 1.103 bouyer switch (CDB_GROUPID(cmd->opcode)) { 835 1.103 bouyer case CDB_GROUPID_0: 836 1.103 bouyer j = CDB_GROUP0; 837 1.103 bouyer break; 838 1.103 bouyer case CDB_GROUPID_1: 839 1.103 bouyer j = CDB_GROUP1; 840 1.103 bouyer break; 841 1.103 bouyer case CDB_GROUPID_2: 842 1.103 bouyer j = CDB_GROUP2; 843 1.103 bouyer break; 844 1.103 bouyer case CDB_GROUPID_3: 845 1.103 bouyer j = CDB_GROUP3; 846 1.103 bouyer break; 847 1.103 bouyer case CDB_GROUPID_4: 848 1.103 bouyer j = CDB_GROUP4; 849 1.103 bouyer break; 850 1.103 bouyer case CDB_GROUPID_5: 851 1.103 bouyer j = CDB_GROUP5; 852 1.103 bouyer break; 853 1.103 bouyer case CDB_GROUPID_6: 854 1.103 bouyer j = CDB_GROUP6; 855 1.103 bouyer break; 856 1.103 bouyer case CDB_GROUPID_7: 857 1.103 bouyer j = CDB_GROUP7; 858 1.103 bouyer break; 859 1.103 bouyer default: 860 1.103 bouyer j = 0; 861 1.103 bouyer } 862 1.103 bouyer if (j == 0) 863 1.103 bouyer j = sizeof (cmd->bytes); 864 1.103 bouyer for (i = 0; i < j-1; i++) /* already done the opcode */ 865 1.103 bouyer printf(" %02x", cmd->bytes[i]); 866 1.103 bouyer } 867 1.103 bouyer 868 1.103 bouyer /* 869 1.39 bouyer * scsipi_interpret_sense: 870 1.39 bouyer * 871 1.39 bouyer * Look at the returned sense and act on the error, determining 872 1.39 bouyer * the unix error number to pass back. (0 = report no error) 873 1.39 bouyer * 874 1.187 jakllsch * NOTE: If we return ERESTART, we are expected to have 875 1.39 bouyer * thawed the device! 876 1.13 bouyer * 877 1.39 bouyer * THIS IS THE DEFAULT ERROR HANDLER FOR SCSI DEVICES. 878 1.13 bouyer */ 879 1.13 bouyer int 880 1.108 thorpej scsipi_interpret_sense(struct scsipi_xfer *xs) 881 1.13 bouyer { 882 1.127 thorpej struct scsi_sense_data *sense; 883 1.39 bouyer struct scsipi_periph *periph = xs->xs_periph; 884 1.126 reinoud u_int8_t key; 885 1.13 bouyer int error; 886 1.126 reinoud u_int32_t info; 887 1.131 xtraeme static const char *error_mes[] = { 888 1.13 bouyer "soft error (corrected)", 889 1.13 bouyer "not ready", "medium error", 890 1.13 bouyer "non-media hardware failure", "illegal request", 891 1.13 bouyer "unit attention", "readonly device", 892 1.13 bouyer "no data found", "vendor unique", 893 1.13 bouyer "copy aborted", "command aborted", 894 1.13 bouyer "search returned equal", "volume overflow", 895 1.13 bouyer "verify miscompare", "unknown error key" 896 1.13 bouyer }; 897 1.13 bouyer 898 1.13 bouyer sense = &xs->sense.scsi_sense; 899 1.39 bouyer #ifdef SCSIPI_DEBUG 900 1.39 bouyer if (periph->periph_flags & SCSIPI_DB1) { 901 1.182 kardel int count, len; 902 1.39 bouyer scsipi_printaddr(periph); 903 1.39 bouyer printf(" sense debug information:\n"); 904 1.127 thorpej printf("\tcode 0x%x valid %d\n", 905 1.127 thorpej SSD_RCODE(sense->response_code), 906 1.127 thorpej sense->response_code & SSD_RCODE_VALID ? 1 : 0); 907 1.39 bouyer printf("\tseg 0x%x key 0x%x ili 0x%x eom 0x%x fmark 0x%x\n", 908 1.13 bouyer sense->segment, 909 1.127 thorpej SSD_SENSE_KEY(sense->flags), 910 1.13 bouyer sense->flags & SSD_ILI ? 1 : 0, 911 1.13 bouyer sense->flags & SSD_EOM ? 1 : 0, 912 1.13 bouyer sense->flags & SSD_FILEMARK ? 1 : 0); 913 1.39 bouyer printf("\ninfo: 0x%x 0x%x 0x%x 0x%x followed by %d " 914 1.39 bouyer "extra bytes\n", 915 1.13 bouyer sense->info[0], 916 1.13 bouyer sense->info[1], 917 1.13 bouyer sense->info[2], 918 1.13 bouyer sense->info[3], 919 1.13 bouyer sense->extra_len); 920 1.182 kardel len = SSD_ADD_BYTES_LIM(sense); 921 1.182 kardel printf("\textra (up to %d bytes): ", len); 922 1.182 kardel for (count = 0; count < len; count++) 923 1.127 thorpej printf("0x%x ", sense->csi[count]); 924 1.13 bouyer printf("\n"); 925 1.13 bouyer } 926 1.39 bouyer #endif 927 1.39 bouyer 928 1.13 bouyer /* 929 1.162 snj * If the periph has its own error handler, call it first. 930 1.13 bouyer * If it returns a legit error value, return that, otherwise 931 1.13 bouyer * it wants us to continue with normal error processing. 932 1.13 bouyer */ 933 1.39 bouyer if (periph->periph_switch->psw_error != NULL) { 934 1.39 bouyer SC_DEBUG(periph, SCSIPI_DB2, 935 1.13 bouyer ("calling private err_handler()\n")); 936 1.39 bouyer error = (*periph->periph_switch->psw_error)(xs); 937 1.39 bouyer if (error != EJUSTRETURN) 938 1.174 skrll return error; 939 1.13 bouyer } 940 1.13 bouyer /* otherwise use the default */ 941 1.127 thorpej switch (SSD_RCODE(sense->response_code)) { 942 1.64 fredette 943 1.64 fredette /* 944 1.64 fredette * Old SCSI-1 and SASI devices respond with 945 1.64 fredette * codes other than 70. 946 1.64 fredette */ 947 1.64 fredette case 0x00: /* no error (command completed OK) */ 948 1.174 skrll return 0; 949 1.64 fredette case 0x04: /* drive not ready after it was selected */ 950 1.64 fredette if ((periph->periph_flags & PERIPH_REMOVABLE) != 0) 951 1.64 fredette periph->periph_flags &= ~PERIPH_MEDIA_LOADED; 952 1.64 fredette if ((xs->xs_control & XS_CTL_IGNORE_NOT_READY) != 0) 953 1.174 skrll return 0; 954 1.64 fredette /* XXX - display some sort of error here? */ 955 1.174 skrll return EIO; 956 1.64 fredette case 0x20: /* invalid command */ 957 1.64 fredette if ((xs->xs_control & 958 1.64 fredette XS_CTL_IGNORE_ILLEGAL_REQUEST) != 0) 959 1.174 skrll return 0; 960 1.174 skrll return EINVAL; 961 1.64 fredette case 0x25: /* invalid LUN (Adaptec ACB-4000) */ 962 1.174 skrll return EACCES; 963 1.64 fredette 964 1.13 bouyer /* 965 1.13 bouyer * If it's code 70, use the extended stuff and 966 1.13 bouyer * interpret the key 967 1.13 bouyer */ 968 1.13 bouyer case 0x71: /* delayed error */ 969 1.39 bouyer scsipi_printaddr(periph); 970 1.127 thorpej key = SSD_SENSE_KEY(sense->flags); 971 1.13 bouyer printf(" DEFERRED ERROR, key = 0x%x\n", key); 972 1.13 bouyer /* FALLTHROUGH */ 973 1.13 bouyer case 0x70: 974 1.127 thorpej if ((sense->response_code & SSD_RCODE_VALID) != 0) 975 1.13 bouyer info = _4btol(sense->info); 976 1.13 bouyer else 977 1.13 bouyer info = 0; 978 1.127 thorpej key = SSD_SENSE_KEY(sense->flags); 979 1.13 bouyer 980 1.13 bouyer switch (key) { 981 1.13 bouyer case SKEY_NO_SENSE: 982 1.13 bouyer case SKEY_RECOVERED_ERROR: 983 1.13 bouyer if (xs->resid == xs->datalen && xs->datalen) { 984 1.13 bouyer /* 985 1.13 bouyer * Why is this here? 986 1.13 bouyer */ 987 1.13 bouyer xs->resid = 0; /* not short read */ 988 1.13 bouyer } 989 1.181 mrg error = 0; 990 1.181 mrg break; 991 1.13 bouyer case SKEY_EQUAL: 992 1.13 bouyer error = 0; 993 1.13 bouyer break; 994 1.13 bouyer case SKEY_NOT_READY: 995 1.39 bouyer if ((periph->periph_flags & PERIPH_REMOVABLE) != 0) 996 1.39 bouyer periph->periph_flags &= ~PERIPH_MEDIA_LOADED; 997 1.24 thorpej if ((xs->xs_control & XS_CTL_IGNORE_NOT_READY) != 0) 998 1.174 skrll return 0; 999 1.127 thorpej if (sense->asc == 0x3A) { 1000 1.19 bouyer error = ENODEV; /* Medium not present */ 1001 1.46 bouyer if (xs->xs_control & XS_CTL_SILENT_NODEV) 1002 1.174 skrll return error; 1003 1.46 bouyer } else 1004 1.19 bouyer error = EIO; 1005 1.24 thorpej if ((xs->xs_control & XS_CTL_SILENT) != 0) 1006 1.174 skrll return error; 1007 1.13 bouyer break; 1008 1.13 bouyer case SKEY_ILLEGAL_REQUEST: 1009 1.24 thorpej if ((xs->xs_control & 1010 1.24 thorpej XS_CTL_IGNORE_ILLEGAL_REQUEST) != 0) 1011 1.174 skrll return 0; 1012 1.24 thorpej /* 1013 1.24 thorpej * Handle the case where a device reports 1014 1.24 thorpej * Logical Unit Not Supported during discovery. 1015 1.24 thorpej */ 1016 1.24 thorpej if ((xs->xs_control & XS_CTL_DISCOVERY) != 0 && 1017 1.127 thorpej sense->asc == 0x25 && 1018 1.127 thorpej sense->ascq == 0x00) 1019 1.174 skrll return EINVAL; 1020 1.24 thorpej if ((xs->xs_control & XS_CTL_SILENT) != 0) 1021 1.174 skrll return EIO; 1022 1.13 bouyer error = EINVAL; 1023 1.13 bouyer break; 1024 1.13 bouyer case SKEY_UNIT_ATTENTION: 1025 1.127 thorpej if (sense->asc == 0x29 && 1026 1.127 thorpej sense->ascq == 0x00) { 1027 1.39 bouyer /* device or bus reset */ 1028 1.174 skrll return ERESTART; 1029 1.39 bouyer } 1030 1.39 bouyer if ((periph->periph_flags & PERIPH_REMOVABLE) != 0) 1031 1.39 bouyer periph->periph_flags &= ~PERIPH_MEDIA_LOADED; 1032 1.24 thorpej if ((xs->xs_control & 1033 1.24 thorpej XS_CTL_IGNORE_MEDIA_CHANGE) != 0 || 1034 1.13 bouyer /* XXX Should reupload any transient state. */ 1035 1.39 bouyer (periph->periph_flags & 1036 1.39 bouyer PERIPH_REMOVABLE) == 0) { 1037 1.174 skrll return ERESTART; 1038 1.39 bouyer } 1039 1.24 thorpej if ((xs->xs_control & XS_CTL_SILENT) != 0) 1040 1.174 skrll return EIO; 1041 1.13 bouyer error = EIO; 1042 1.13 bouyer break; 1043 1.127 thorpej case SKEY_DATA_PROTECT: 1044 1.13 bouyer error = EROFS; 1045 1.13 bouyer break; 1046 1.13 bouyer case SKEY_BLANK_CHECK: 1047 1.13 bouyer error = 0; 1048 1.13 bouyer break; 1049 1.13 bouyer case SKEY_ABORTED_COMMAND: 1050 1.102 bouyer if (xs->xs_retries != 0) { 1051 1.102 bouyer xs->xs_retries--; 1052 1.102 bouyer error = ERESTART; 1053 1.102 bouyer } else 1054 1.102 bouyer error = EIO; 1055 1.13 bouyer break; 1056 1.13 bouyer case SKEY_VOLUME_OVERFLOW: 1057 1.13 bouyer error = ENOSPC; 1058 1.13 bouyer break; 1059 1.192 nat case SKEY_MEDIUM_ERROR: 1060 1.192 nat if (xs->xs_retries != 0) { 1061 1.192 nat xs->xs_retries--; 1062 1.192 nat error = ERESTART; 1063 1.192 nat } else 1064 1.192 nat error = EIO; 1065 1.192 nat break; 1066 1.13 bouyer default: 1067 1.13 bouyer error = EIO; 1068 1.13 bouyer break; 1069 1.13 bouyer } 1070 1.13 bouyer 1071 1.152 pgoyette /* Print verbose decode if appropriate and possible */ 1072 1.152 pgoyette if ((key == 0) || 1073 1.152 pgoyette ((xs->xs_control & XS_CTL_SILENT) != 0) || 1074 1.152 pgoyette (scsipi_print_sense(xs, 0) != 0)) 1075 1.174 skrll return error; 1076 1.152 pgoyette 1077 1.152 pgoyette /* Print brief(er) sense information */ 1078 1.152 pgoyette scsipi_printaddr(periph); 1079 1.152 pgoyette printf("%s", error_mes[key - 1]); 1080 1.152 pgoyette if ((sense->response_code & SSD_RCODE_VALID) != 0) { 1081 1.152 pgoyette switch (key) { 1082 1.152 pgoyette case SKEY_NOT_READY: 1083 1.152 pgoyette case SKEY_ILLEGAL_REQUEST: 1084 1.152 pgoyette case SKEY_UNIT_ATTENTION: 1085 1.152 pgoyette case SKEY_DATA_PROTECT: 1086 1.152 pgoyette break; 1087 1.152 pgoyette case SKEY_BLANK_CHECK: 1088 1.152 pgoyette printf(", requested size: %d (decimal)", 1089 1.152 pgoyette info); 1090 1.152 pgoyette break; 1091 1.152 pgoyette case SKEY_ABORTED_COMMAND: 1092 1.152 pgoyette if (xs->xs_retries) 1093 1.152 pgoyette printf(", retrying"); 1094 1.152 pgoyette printf(", cmd 0x%x, info 0x%x", 1095 1.152 pgoyette xs->cmd->opcode, info); 1096 1.152 pgoyette break; 1097 1.152 pgoyette default: 1098 1.152 pgoyette printf(", info = %d (decimal)", info); 1099 1.13 bouyer } 1100 1.13 bouyer } 1101 1.152 pgoyette if (sense->extra_len != 0) { 1102 1.152 pgoyette int n; 1103 1.152 pgoyette printf(", data ="); 1104 1.152 pgoyette for (n = 0; n < sense->extra_len; n++) 1105 1.152 pgoyette printf(" %02x", 1106 1.152 pgoyette sense->csi[n]); 1107 1.152 pgoyette } 1108 1.152 pgoyette printf("\n"); 1109 1.174 skrll return error; 1110 1.13 bouyer 1111 1.13 bouyer /* 1112 1.64 fredette * Some other code, just report it 1113 1.13 bouyer */ 1114 1.13 bouyer default: 1115 1.39 bouyer #if defined(SCSIDEBUG) || defined(DEBUG) 1116 1.28 mjacob { 1117 1.130 christos static const char *uc = "undecodable sense error"; 1118 1.28 mjacob int i; 1119 1.126 reinoud u_int8_t *cptr = (u_int8_t *) sense; 1120 1.39 bouyer scsipi_printaddr(periph); 1121 1.28 mjacob if (xs->cmd == &xs->cmdstore) { 1122 1.28 mjacob printf("%s for opcode 0x%x, data=", 1123 1.28 mjacob uc, xs->cmdstore.opcode); 1124 1.28 mjacob } else { 1125 1.28 mjacob printf("%s, data=", uc); 1126 1.28 mjacob } 1127 1.28 mjacob for (i = 0; i < sizeof (sense); i++) 1128 1.28 mjacob printf(" 0x%02x", *(cptr++) & 0xff); 1129 1.28 mjacob printf("\n"); 1130 1.28 mjacob } 1131 1.28 mjacob #else 1132 1.39 bouyer scsipi_printaddr(periph); 1133 1.17 mjacob printf("Sense Error Code 0x%x", 1134 1.127 thorpej SSD_RCODE(sense->response_code)); 1135 1.127 thorpej if ((sense->response_code & SSD_RCODE_VALID) != 0) { 1136 1.127 thorpej struct scsi_sense_data_unextended *usense = 1137 1.127 thorpej (struct scsi_sense_data_unextended *)sense; 1138 1.13 bouyer printf(" at block no. %d (decimal)", 1139 1.13 bouyer _3btol(usense->block)); 1140 1.13 bouyer } 1141 1.13 bouyer printf("\n"); 1142 1.28 mjacob #endif 1143 1.174 skrll return EIO; 1144 1.13 bouyer } 1145 1.13 bouyer } 1146 1.13 bouyer 1147 1.13 bouyer /* 1148 1.39 bouyer * scsipi_test_unit_ready: 1149 1.39 bouyer * 1150 1.39 bouyer * Issue a `test unit ready' request. 1151 1.2 bouyer */ 1152 1.3 enami int 1153 1.108 thorpej scsipi_test_unit_ready(struct scsipi_periph *periph, int flags) 1154 1.2 bouyer { 1155 1.127 thorpej struct scsi_test_unit_ready cmd; 1156 1.88 fvdl int retries; 1157 1.2 bouyer 1158 1.127 thorpej /* some ATAPI drives don't support TEST UNIT READY. Sigh */ 1159 1.39 bouyer if (periph->periph_quirks & PQUIRK_NOTUR) 1160 1.174 skrll return 0; 1161 1.2 bouyer 1162 1.88 fvdl if (flags & XS_CTL_DISCOVERY) 1163 1.88 fvdl retries = 0; 1164 1.88 fvdl else 1165 1.88 fvdl retries = SCSIPIRETRIES; 1166 1.88 fvdl 1167 1.117 mycroft memset(&cmd, 0, sizeof(cmd)); 1168 1.127 thorpej cmd.opcode = SCSI_TEST_UNIT_READY; 1169 1.117 mycroft 1170 1.174 skrll return scsipi_command(periph, (void *)&cmd, sizeof(cmd), 0, 0, 1171 1.174 skrll retries, 10000, NULL, flags); 1172 1.2 bouyer } 1173 1.2 bouyer 1174 1.163 christos static const struct scsipi_inquiry3_pattern { 1175 1.163 christos const char vendor[8]; 1176 1.163 christos const char product[16]; 1177 1.163 christos const char revision[4]; 1178 1.163 christos } scsipi_inquiry3_quirk[] = { 1179 1.163 christos { "ES-6600 ", "", "" }, 1180 1.163 christos }; 1181 1.163 christos 1182 1.163 christos static int 1183 1.163 christos scsipi_inquiry3_ok(const struct scsipi_inquiry_data *ib) 1184 1.163 christos { 1185 1.163 christos for (size_t i = 0; i < __arraycount(scsipi_inquiry3_quirk); i++) { 1186 1.163 christos const struct scsipi_inquiry3_pattern *q = 1187 1.163 christos &scsipi_inquiry3_quirk[i]; 1188 1.163 christos #define MATCH(field) \ 1189 1.164 joerg (q->field[0] ? memcmp(ib->field, q->field, sizeof(ib->field)) == 0 : 1) 1190 1.163 christos if (MATCH(vendor) && MATCH(product) && MATCH(revision)) 1191 1.163 christos return 0; 1192 1.163 christos } 1193 1.163 christos return 1; 1194 1.163 christos } 1195 1.163 christos 1196 1.2 bouyer /* 1197 1.39 bouyer * scsipi_inquire: 1198 1.39 bouyer * 1199 1.39 bouyer * Ask the device about itself. 1200 1.2 bouyer */ 1201 1.3 enami int 1202 1.108 thorpej scsipi_inquire(struct scsipi_periph *periph, struct scsipi_inquiry_data *inqbuf, 1203 1.108 thorpej int flags) 1204 1.2 bouyer { 1205 1.116 mycroft struct scsipi_inquiry cmd; 1206 1.64 fredette int error; 1207 1.117 mycroft int retries; 1208 1.2 bouyer 1209 1.88 fvdl if (flags & XS_CTL_DISCOVERY) 1210 1.88 fvdl retries = 0; 1211 1.88 fvdl else 1212 1.88 fvdl retries = SCSIPIRETRIES; 1213 1.88 fvdl 1214 1.98 mycroft /* 1215 1.98 mycroft * If we request more data than the device can provide, it SHOULD just 1216 1.161 christos * return a short response. However, some devices error with an 1217 1.98 mycroft * ILLEGAL REQUEST sense code, and yet others have even more special 1218 1.187 jakllsch * failure modes (such as the GL641USB flash adapter, which goes loony 1219 1.98 mycroft * and sends corrupted CRCs). To work around this, and to bring our 1220 1.98 mycroft * behavior more in line with other OSes, we do a shorter inquiry, 1221 1.98 mycroft * covering all the SCSI-2 information, first, and then request more 1222 1.98 mycroft * data iff the "additional length" field indicates there is more. 1223 1.98 mycroft * - mycroft, 2003/10/16 1224 1.98 mycroft */ 1225 1.117 mycroft memset(&cmd, 0, sizeof(cmd)); 1226 1.117 mycroft cmd.opcode = INQUIRY; 1227 1.116 mycroft cmd.length = SCSIPI_INQUIRY_LENGTH_SCSI2; 1228 1.116 mycroft error = scsipi_command(periph, (void *)&cmd, sizeof(cmd), 1229 1.116 mycroft (void *)inqbuf, SCSIPI_INQUIRY_LENGTH_SCSI2, retries, 1230 1.117 mycroft 10000, NULL, flags | XS_CTL_DATA_IN); 1231 1.117 mycroft if (!error && 1232 1.117 mycroft inqbuf->additional_length > SCSIPI_INQUIRY_LENGTH_SCSI2 - 4) { 1233 1.163 christos if (scsipi_inquiry3_ok(inqbuf)) { 1234 1.117 mycroft #if 0 1235 1.117 mycroft printf("inquire: addlen=%d, retrying\n", inqbuf->additional_length); 1236 1.117 mycroft #endif 1237 1.116 mycroft cmd.length = SCSIPI_INQUIRY_LENGTH_SCSI3; 1238 1.116 mycroft error = scsipi_command(periph, (void *)&cmd, sizeof(cmd), 1239 1.116 mycroft (void *)inqbuf, SCSIPI_INQUIRY_LENGTH_SCSI3, retries, 1240 1.117 mycroft 10000, NULL, flags | XS_CTL_DATA_IN); 1241 1.117 mycroft #if 0 1242 1.117 mycroft printf("inquire: error=%d\n", error); 1243 1.117 mycroft #endif 1244 1.161 christos } 1245 1.97 mycroft } 1246 1.128 perry 1247 1.65 fredette #ifdef SCSI_OLD_NOINQUIRY 1248 1.64 fredette /* 1249 1.64 fredette * Kludge for the Adaptec ACB-4000 SCSI->MFM translator. 1250 1.64 fredette * This board doesn't support the INQUIRY command at all. 1251 1.64 fredette */ 1252 1.64 fredette if (error == EINVAL || error == EACCES) { 1253 1.64 fredette /* 1254 1.64 fredette * Conjure up an INQUIRY response. 1255 1.64 fredette */ 1256 1.64 fredette inqbuf->device = (error == EINVAL ? 1257 1.64 fredette SID_QUAL_LU_PRESENT : 1258 1.64 fredette SID_QUAL_LU_NOTPRESENT) | T_DIRECT; 1259 1.64 fredette inqbuf->dev_qual2 = 0; 1260 1.64 fredette inqbuf->version = 0; 1261 1.64 fredette inqbuf->response_format = SID_FORMAT_SCSI1; 1262 1.96 mycroft inqbuf->additional_length = SCSIPI_INQUIRY_LENGTH_SCSI2 - 4; 1263 1.64 fredette inqbuf->flags1 = inqbuf->flags2 = inqbuf->flags3 = 0; 1264 1.96 mycroft memcpy(inqbuf->vendor, "ADAPTEC ACB-4000 ", 28); 1265 1.64 fredette error = 0; 1266 1.64 fredette } 1267 1.64 fredette 1268 1.64 fredette /* 1269 1.64 fredette * Kludge for the Emulex MT-02 SCSI->QIC translator. 1270 1.64 fredette * This board gives an empty response to an INQUIRY command. 1271 1.64 fredette */ 1272 1.128 perry else if (error == 0 && 1273 1.117 mycroft inqbuf->device == (SID_QUAL_LU_PRESENT | T_DIRECT) && 1274 1.117 mycroft inqbuf->dev_qual2 == 0 && 1275 1.117 mycroft inqbuf->version == 0 && 1276 1.117 mycroft inqbuf->response_format == SID_FORMAT_SCSI1) { 1277 1.64 fredette /* 1278 1.64 fredette * Fill out the INQUIRY response. 1279 1.64 fredette */ 1280 1.64 fredette inqbuf->device = (SID_QUAL_LU_PRESENT | T_SEQUENTIAL); 1281 1.64 fredette inqbuf->dev_qual2 = SID_REMOVABLE; 1282 1.96 mycroft inqbuf->additional_length = SCSIPI_INQUIRY_LENGTH_SCSI2 - 4; 1283 1.64 fredette inqbuf->flags1 = inqbuf->flags2 = inqbuf->flags3 = 0; 1284 1.96 mycroft memcpy(inqbuf->vendor, "EMULEX MT-02 QIC ", 28); 1285 1.64 fredette } 1286 1.65 fredette #endif /* SCSI_OLD_NOINQUIRY */ 1287 1.64 fredette 1288 1.128 perry return error; 1289 1.2 bouyer } 1290 1.2 bouyer 1291 1.2 bouyer /* 1292 1.39 bouyer * scsipi_prevent: 1293 1.39 bouyer * 1294 1.39 bouyer * Prevent or allow the user to remove the media 1295 1.2 bouyer */ 1296 1.3 enami int 1297 1.108 thorpej scsipi_prevent(struct scsipi_periph *periph, int type, int flags) 1298 1.2 bouyer { 1299 1.127 thorpej struct scsi_prevent_allow_medium_removal cmd; 1300 1.116 mycroft 1301 1.148 mlelstv if (periph->periph_quirks & PQUIRK_NODOORLOCK) 1302 1.148 mlelstv return 0; 1303 1.148 mlelstv 1304 1.116 mycroft memset(&cmd, 0, sizeof(cmd)); 1305 1.127 thorpej cmd.opcode = SCSI_PREVENT_ALLOW_MEDIUM_REMOVAL; 1306 1.116 mycroft cmd.how = type; 1307 1.2 bouyer 1308 1.116 mycroft return (scsipi_command(periph, (void *)&cmd, sizeof(cmd), 0, 0, 1309 1.116 mycroft SCSIPIRETRIES, 5000, NULL, flags)); 1310 1.2 bouyer } 1311 1.2 bouyer 1312 1.2 bouyer /* 1313 1.39 bouyer * scsipi_start: 1314 1.39 bouyer * 1315 1.39 bouyer * Send a START UNIT. 1316 1.2 bouyer */ 1317 1.3 enami int 1318 1.108 thorpej scsipi_start(struct scsipi_periph *periph, int type, int flags) 1319 1.2 bouyer { 1320 1.116 mycroft struct scsipi_start_stop cmd; 1321 1.116 mycroft 1322 1.116 mycroft memset(&cmd, 0, sizeof(cmd)); 1323 1.116 mycroft cmd.opcode = START_STOP; 1324 1.116 mycroft cmd.byte2 = 0x00; 1325 1.116 mycroft cmd.how = type; 1326 1.2 bouyer 1327 1.174 skrll return scsipi_command(periph, (void *)&cmd, sizeof(cmd), 0, 0, 1328 1.174 skrll SCSIPIRETRIES, (type & SSS_START) ? 60000 : 10000, NULL, flags); 1329 1.41 bouyer } 1330 1.41 bouyer 1331 1.41 bouyer /* 1332 1.41 bouyer * scsipi_mode_sense, scsipi_mode_sense_big: 1333 1.41 bouyer * get a sense page from a device 1334 1.41 bouyer */ 1335 1.41 bouyer 1336 1.41 bouyer int 1337 1.108 thorpej scsipi_mode_sense(struct scsipi_periph *periph, int byte2, int page, 1338 1.127 thorpej struct scsi_mode_parameter_header_6 *data, int len, int flags, int retries, 1339 1.108 thorpej int timeout) 1340 1.41 bouyer { 1341 1.127 thorpej struct scsi_mode_sense_6 cmd; 1342 1.41 bouyer 1343 1.116 mycroft memset(&cmd, 0, sizeof(cmd)); 1344 1.127 thorpej cmd.opcode = SCSI_MODE_SENSE_6; 1345 1.116 mycroft cmd.byte2 = byte2; 1346 1.116 mycroft cmd.page = page; 1347 1.116 mycroft cmd.length = len & 0xff; 1348 1.116 mycroft 1349 1.174 skrll return scsipi_command(periph, (void *)&cmd, sizeof(cmd), 1350 1.174 skrll (void *)data, len, retries, timeout, NULL, flags | XS_CTL_DATA_IN); 1351 1.41 bouyer } 1352 1.41 bouyer 1353 1.41 bouyer int 1354 1.108 thorpej scsipi_mode_sense_big(struct scsipi_periph *periph, int byte2, int page, 1355 1.127 thorpej struct scsi_mode_parameter_header_10 *data, int len, int flags, int retries, 1356 1.108 thorpej int timeout) 1357 1.41 bouyer { 1358 1.127 thorpej struct scsi_mode_sense_10 cmd; 1359 1.41 bouyer 1360 1.116 mycroft memset(&cmd, 0, sizeof(cmd)); 1361 1.127 thorpej cmd.opcode = SCSI_MODE_SENSE_10; 1362 1.116 mycroft cmd.byte2 = byte2; 1363 1.116 mycroft cmd.page = page; 1364 1.116 mycroft _lto2b(len, cmd.length); 1365 1.116 mycroft 1366 1.174 skrll return scsipi_command(periph, (void *)&cmd, sizeof(cmd), 1367 1.174 skrll (void *)data, len, retries, timeout, NULL, flags | XS_CTL_DATA_IN); 1368 1.41 bouyer } 1369 1.41 bouyer 1370 1.41 bouyer int 1371 1.108 thorpej scsipi_mode_select(struct scsipi_periph *periph, int byte2, 1372 1.127 thorpej struct scsi_mode_parameter_header_6 *data, int len, int flags, int retries, 1373 1.108 thorpej int timeout) 1374 1.41 bouyer { 1375 1.127 thorpej struct scsi_mode_select_6 cmd; 1376 1.41 bouyer 1377 1.116 mycroft memset(&cmd, 0, sizeof(cmd)); 1378 1.127 thorpej cmd.opcode = SCSI_MODE_SELECT_6; 1379 1.116 mycroft cmd.byte2 = byte2; 1380 1.116 mycroft cmd.length = len & 0xff; 1381 1.116 mycroft 1382 1.174 skrll return scsipi_command(periph, (void *)&cmd, sizeof(cmd), 1383 1.174 skrll (void *)data, len, retries, timeout, NULL, flags | XS_CTL_DATA_OUT); 1384 1.41 bouyer } 1385 1.41 bouyer 1386 1.41 bouyer int 1387 1.108 thorpej scsipi_mode_select_big(struct scsipi_periph *periph, int byte2, 1388 1.127 thorpej struct scsi_mode_parameter_header_10 *data, int len, int flags, int retries, 1389 1.108 thorpej int timeout) 1390 1.41 bouyer { 1391 1.127 thorpej struct scsi_mode_select_10 cmd; 1392 1.41 bouyer 1393 1.116 mycroft memset(&cmd, 0, sizeof(cmd)); 1394 1.127 thorpej cmd.opcode = SCSI_MODE_SELECT_10; 1395 1.116 mycroft cmd.byte2 = byte2; 1396 1.116 mycroft _lto2b(len, cmd.length); 1397 1.116 mycroft 1398 1.174 skrll return scsipi_command(periph, (void *)&cmd, sizeof(cmd), 1399 1.174 skrll (void *)data, len, retries, timeout, NULL, flags | XS_CTL_DATA_OUT); 1400 1.2 bouyer } 1401 1.2 bouyer 1402 1.2 bouyer /* 1403 1.182 kardel * scsipi_get_opcodeinfo: 1404 1.182 kardel * 1405 1.187 jakllsch * query the device for supported commands and their timeout 1406 1.182 kardel * building a timeout lookup table if timeout information is available. 1407 1.182 kardel */ 1408 1.182 kardel void 1409 1.182 kardel scsipi_get_opcodeinfo(struct scsipi_periph *periph) 1410 1.182 kardel { 1411 1.182 kardel u_int8_t *data; 1412 1.182 kardel int len = 16*1024; 1413 1.182 kardel int rc; 1414 1.190 kardel int retries; 1415 1.182 kardel struct scsi_repsuppopcode cmd; 1416 1.182 kardel 1417 1.182 kardel /* refrain from asking for supported opcodes */ 1418 1.182 kardel if (periph->periph_quirks & PQUIRK_NOREPSUPPOPC || 1419 1.182 kardel periph->periph_type == T_PROCESSOR || /* spec. */ 1420 1.182 kardel periph->periph_type == T_CDROM) /* spec. */ 1421 1.182 kardel return; 1422 1.182 kardel 1423 1.182 kardel scsipi_free_opcodeinfo(periph); 1424 1.182 kardel 1425 1.182 kardel /* 1426 1.182 kardel * query REPORT SUPPORTED OPERATION CODES 1427 1.182 kardel * if OK 1428 1.182 kardel * enumerate all codes 1429 1.182 kardel * if timeout exists insert maximum into opcode table 1430 1.182 kardel */ 1431 1.184 chs data = malloc(len, M_DEVBUF, M_WAITOK|M_ZERO); 1432 1.182 kardel 1433 1.182 kardel memset(&cmd, 0, sizeof(cmd)); 1434 1.182 kardel cmd.opcode = SCSI_MAINTENANCE_IN; 1435 1.182 kardel cmd.svcaction = RSOC_REPORT_SUPPORTED_OPCODES; 1436 1.182 kardel cmd.repoption = RSOC_RCTD|RSOC_ALL; 1437 1.182 kardel _lto4b(len, cmd.alloclen); 1438 1.182 kardel 1439 1.190 kardel /* loop to skip any UNIT ATTENTIONS at this point */ 1440 1.190 kardel retries = 3; 1441 1.190 kardel do { 1442 1.190 kardel rc = scsipi_command(periph, (void *)&cmd, sizeof(cmd), 1443 1.190 kardel (void *)data, len, 0, 60000, NULL, 1444 1.190 kardel XS_CTL_DATA_IN|XS_CTL_SILENT); 1445 1.190 kardel #ifdef SCSIPI_DEBUG 1446 1.190 kardel if (rc != 0) { 1447 1.190 kardel SC_DEBUG(periph, SCSIPI_DB3, 1448 1.190 kardel ("SCSI_MAINTENANCE_IN" 1449 1.190 kardel "[RSOC_REPORT_SUPPORTED_OPCODES] command" 1450 1.190 kardel " failed: rc=%d, retries=%d\n", 1451 1.190 kardel rc, retries)); 1452 1.190 kardel } 1453 1.190 kardel #endif 1454 1.190 kardel } while (rc == EIO && retries-- > 0); 1455 1.182 kardel 1456 1.182 kardel if (rc == 0) { 1457 1.182 kardel int count; 1458 1.182 kardel int dlen = _4btol(data); 1459 1.182 kardel u_int8_t *c = data + 4; 1460 1.182 kardel 1461 1.182 kardel SC_DEBUG(periph, SCSIPI_DB3, 1462 1.182 kardel ("supported opcode timeout-values loaded\n")); 1463 1.182 kardel SC_DEBUG(periph, SCSIPI_DB3, 1464 1.182 kardel ("CMD LEN SA spec nom. time cmd timeout\n")); 1465 1.182 kardel 1466 1.184 chs struct scsipi_opcodes *tot = malloc(sizeof(struct scsipi_opcodes), 1467 1.184 chs M_DEVBUF, M_WAITOK|M_ZERO); 1468 1.182 kardel 1469 1.182 kardel count = 0; 1470 1.182 kardel while (tot != NULL && 1471 1.182 kardel dlen >= (int)sizeof(struct scsi_repsupopcode_all_commands_descriptor)) { 1472 1.182 kardel struct scsi_repsupopcode_all_commands_descriptor *acd 1473 1.182 kardel = (struct scsi_repsupopcode_all_commands_descriptor *)c; 1474 1.182 kardel #ifdef SCSIPI_DEBUG 1475 1.182 kardel int cdblen = _2btol((const u_int8_t *)&acd->cdblen); 1476 1.182 kardel #endif 1477 1.182 kardel dlen -= sizeof(struct scsi_repsupopcode_all_commands_descriptor); 1478 1.182 kardel c += sizeof(struct scsi_repsupopcode_all_commands_descriptor); 1479 1.182 kardel SC_DEBUG(periph, SCSIPI_DB3, 1480 1.182 kardel ("0x%02x(%2d) ", acd->opcode, cdblen)); 1481 1.182 kardel 1482 1.182 kardel tot->opcode_info[acd->opcode].ti_flags = SCSIPI_TI_VALID; 1483 1.182 kardel 1484 1.182 kardel if (acd->flags & RSOC_ACD_SERVACTV) { 1485 1.182 kardel SC_DEBUGN(periph, SCSIPI_DB3, 1486 1.182 kardel ("0x%02x%02x ", 1487 1.182 kardel acd->serviceaction[0], 1488 1.182 kardel acd->serviceaction[1])); 1489 1.182 kardel } else { 1490 1.182 kardel SC_DEBUGN(periph, SCSIPI_DB3, (" ")); 1491 1.182 kardel } 1492 1.182 kardel 1493 1.182 kardel if (acd->flags & RSOC_ACD_CTDP 1494 1.182 kardel && dlen >= (int)sizeof(struct scsi_repsupopcode_timeouts_descriptor)) { 1495 1.182 kardel struct scsi_repsupopcode_timeouts_descriptor *td 1496 1.182 kardel = (struct scsi_repsupopcode_timeouts_descriptor *)c; 1497 1.182 kardel long nomto = _4btol(td->nom_process_timeout); 1498 1.182 kardel long cmdto = _4btol(td->cmd_process_timeout); 1499 1.182 kardel long t = (cmdto > nomto) ? cmdto : nomto; 1500 1.182 kardel 1501 1.182 kardel dlen -= sizeof(struct scsi_repsupopcode_timeouts_descriptor); 1502 1.182 kardel c += sizeof(struct scsi_repsupopcode_timeouts_descriptor); 1503 1.182 kardel 1504 1.182 kardel SC_DEBUGN(periph, SCSIPI_DB3, 1505 1.182 kardel ("0x%02x %10ld %10ld", 1506 1.182 kardel td->cmd_specific, 1507 1.182 kardel nomto, cmdto)); 1508 1.182 kardel 1509 1.182 kardel if (t > tot->opcode_info[acd->opcode].ti_timeout) { 1510 1.182 kardel tot->opcode_info[acd->opcode].ti_timeout = t; 1511 1.182 kardel ++count; 1512 1.182 kardel } 1513 1.182 kardel } 1514 1.182 kardel SC_DEBUGN(periph, SCSIPI_DB3,("\n")); 1515 1.182 kardel } 1516 1.182 kardel 1517 1.182 kardel if (count > 0) { 1518 1.182 kardel periph->periph_opcs = tot; 1519 1.182 kardel } else { 1520 1.182 kardel free(tot, M_DEVBUF); 1521 1.182 kardel SC_DEBUG(periph, SCSIPI_DB3, 1522 1.182 kardel ("no usable timeout values available\n")); 1523 1.182 kardel } 1524 1.182 kardel } else { 1525 1.182 kardel SC_DEBUG(periph, SCSIPI_DB3, 1526 1.182 kardel ("SCSI_MAINTENANCE_IN" 1527 1.182 kardel "[RSOC_REPORT_SUPPORTED_OPCODES] failed error=%d" 1528 1.182 kardel " - no device provided timeout " 1529 1.182 kardel "values available\n", rc)); 1530 1.182 kardel } 1531 1.182 kardel 1532 1.182 kardel free(data, M_DEVBUF); 1533 1.182 kardel } 1534 1.182 kardel 1535 1.182 kardel /* 1536 1.182 kardel * scsipi_update_timeouts: 1537 1.187 jakllsch * Override timeout value if device/config provided 1538 1.182 kardel * timeouts are available. 1539 1.182 kardel */ 1540 1.182 kardel static void 1541 1.182 kardel scsipi_update_timeouts(struct scsipi_xfer *xs) 1542 1.182 kardel { 1543 1.182 kardel struct scsipi_opcodes *opcs; 1544 1.182 kardel u_int8_t cmd; 1545 1.182 kardel int timeout; 1546 1.182 kardel struct scsipi_opinfo *oi; 1547 1.182 kardel 1548 1.182 kardel if (xs->timeout <= 0) { 1549 1.182 kardel return; 1550 1.182 kardel } 1551 1.182 kardel 1552 1.182 kardel opcs = xs->xs_periph->periph_opcs; 1553 1.182 kardel 1554 1.182 kardel if (opcs == NULL) { 1555 1.182 kardel return; 1556 1.182 kardel } 1557 1.182 kardel 1558 1.182 kardel cmd = xs->cmd->opcode; 1559 1.182 kardel oi = &opcs->opcode_info[cmd]; 1560 1.182 kardel 1561 1.182 kardel timeout = 1000 * (int)oi->ti_timeout; 1562 1.182 kardel 1563 1.182 kardel 1564 1.182 kardel if (timeout > xs->timeout && timeout < 86400000) { 1565 1.182 kardel /* 1566 1.182 kardel * pick up device configured timeouts if they 1567 1.182 kardel * are longer than the requested ones but less 1568 1.182 kardel * than a day 1569 1.182 kardel */ 1570 1.182 kardel #ifdef SCSIPI_DEBUG 1571 1.182 kardel if ((oi->ti_flags & SCSIPI_TI_LOGGED) == 0) { 1572 1.182 kardel SC_DEBUG(xs->xs_periph, SCSIPI_DB3, 1573 1.182 kardel ("Overriding command 0x%02x " 1574 1.182 kardel "timeout of %d with %d ms\n", 1575 1.182 kardel cmd, xs->timeout, timeout)); 1576 1.182 kardel oi->ti_flags |= SCSIPI_TI_LOGGED; 1577 1.182 kardel } 1578 1.182 kardel #endif 1579 1.182 kardel xs->timeout = timeout; 1580 1.182 kardel } 1581 1.182 kardel } 1582 1.182 kardel 1583 1.182 kardel /* 1584 1.182 kardel * scsipi_free_opcodeinfo: 1585 1.182 kardel * 1586 1.182 kardel * free the opcode information table 1587 1.182 kardel */ 1588 1.182 kardel void 1589 1.182 kardel scsipi_free_opcodeinfo(struct scsipi_periph *periph) 1590 1.182 kardel { 1591 1.182 kardel if (periph->periph_opcs != NULL) { 1592 1.182 kardel free(periph->periph_opcs, M_DEVBUF); 1593 1.182 kardel } 1594 1.182 kardel 1595 1.182 kardel periph->periph_opcs = NULL; 1596 1.182 kardel } 1597 1.182 kardel 1598 1.182 kardel /* 1599 1.39 bouyer * scsipi_done: 1600 1.39 bouyer * 1601 1.39 bouyer * This routine is called by an adapter's interrupt handler when 1602 1.39 bouyer * an xfer is completed. 1603 1.2 bouyer */ 1604 1.3 enami void 1605 1.108 thorpej scsipi_done(struct scsipi_xfer *xs) 1606 1.2 bouyer { 1607 1.39 bouyer struct scsipi_periph *periph = xs->xs_periph; 1608 1.39 bouyer struct scsipi_channel *chan = periph->periph_channel; 1609 1.167 mlelstv int freezecnt; 1610 1.156 mrg 1611 1.39 bouyer SC_DEBUG(periph, SCSIPI_DB2, ("scsipi_done\n")); 1612 1.39 bouyer #ifdef SCSIPI_DEBUG 1613 1.39 bouyer if (periph->periph_dbflags & SCSIPI_DB1) 1614 1.39 bouyer show_scsipi_cmd(xs); 1615 1.39 bouyer #endif 1616 1.39 bouyer 1617 1.167 mlelstv mutex_enter(chan_mtx(chan)); 1618 1.185 riastrad SDT_PROBE1(scsi, base, xfer, done, xs); 1619 1.39 bouyer /* 1620 1.39 bouyer * The resource this command was using is now free. 1621 1.39 bouyer */ 1622 1.135 nathanw if (xs->xs_status & XS_STS_DONE) { 1623 1.135 nathanw /* XXX in certain circumstances, such as a device 1624 1.135 nathanw * being detached, a xs that has already been 1625 1.135 nathanw * scsipi_done()'d by the main thread will be done'd 1626 1.135 nathanw * again by scsibusdetach(). Putting the xs on the 1627 1.135 nathanw * chan_complete queue causes list corruption and 1628 1.135 nathanw * everyone dies. This prevents that, but perhaps 1629 1.135 nathanw * there should be better coordination somewhere such 1630 1.135 nathanw * that this won't ever happen (and can be turned into 1631 1.135 nathanw * a KASSERT(). 1632 1.135 nathanw */ 1633 1.185 riastrad SDT_PROBE1(scsi, base, xfer, redone, xs); 1634 1.167 mlelstv mutex_exit(chan_mtx(chan)); 1635 1.135 nathanw goto out; 1636 1.135 nathanw } 1637 1.39 bouyer scsipi_put_resource(chan); 1638 1.39 bouyer xs->xs_periph->periph_sent--; 1639 1.39 bouyer 1640 1.39 bouyer /* 1641 1.39 bouyer * If the command was tagged, free the tag. 1642 1.39 bouyer */ 1643 1.39 bouyer if (XS_CTL_TAGTYPE(xs) != 0) 1644 1.39 bouyer scsipi_put_tag(xs); 1645 1.39 bouyer else 1646 1.39 bouyer periph->periph_flags &= ~PERIPH_UNTAG; 1647 1.39 bouyer 1648 1.39 bouyer /* Mark the command as `done'. */ 1649 1.39 bouyer xs->xs_status |= XS_STS_DONE; 1650 1.39 bouyer 1651 1.39 bouyer #ifdef DIAGNOSTIC 1652 1.39 bouyer if ((xs->xs_control & (XS_CTL_ASYNC|XS_CTL_POLL)) == 1653 1.39 bouyer (XS_CTL_ASYNC|XS_CTL_POLL)) 1654 1.39 bouyer panic("scsipi_done: ASYNC and POLL"); 1655 1.39 bouyer #endif 1656 1.39 bouyer 1657 1.39 bouyer /* 1658 1.39 bouyer * If the xfer had an error of any sort, freeze the 1659 1.39 bouyer * periph's queue. Freeze it again if we were requested 1660 1.39 bouyer * to do so in the xfer. 1661 1.39 bouyer */ 1662 1.39 bouyer freezecnt = 0; 1663 1.39 bouyer if (xs->error != XS_NOERROR) 1664 1.39 bouyer freezecnt++; 1665 1.39 bouyer if (xs->xs_control & XS_CTL_FREEZE_PERIPH) 1666 1.39 bouyer freezecnt++; 1667 1.39 bouyer if (freezecnt != 0) 1668 1.167 mlelstv scsipi_periph_freeze_locked(periph, freezecnt); 1669 1.39 bouyer 1670 1.39 bouyer /* 1671 1.39 bouyer * record the xfer with a pending sense, in case a SCSI reset is 1672 1.39 bouyer * received before the thread is waked up. 1673 1.39 bouyer */ 1674 1.39 bouyer if (xs->error == XS_BUSY && xs->status == SCSI_CHECK) { 1675 1.39 bouyer periph->periph_flags |= PERIPH_SENSE; 1676 1.39 bouyer periph->periph_xscheck = xs; 1677 1.39 bouyer } 1678 1.39 bouyer 1679 1.39 bouyer /* 1680 1.58 mjacob * If this was an xfer that was not to complete asynchronously, 1681 1.39 bouyer * let the requesting thread perform error checking/handling 1682 1.39 bouyer * in its context. 1683 1.39 bouyer */ 1684 1.39 bouyer if ((xs->xs_control & XS_CTL_ASYNC) == 0) { 1685 1.39 bouyer /* 1686 1.39 bouyer * If it's a polling job, just return, to unwind the 1687 1.39 bouyer * call graph. We don't need to restart the queue, 1688 1.187 jakllsch * because polling jobs are treated specially, and 1689 1.39 bouyer * are really only used during crash dumps anyway 1690 1.187 jakllsch * (XXX or during boot-time autoconfiguration of 1691 1.39 bouyer * ATAPI devices). 1692 1.39 bouyer */ 1693 1.167 mlelstv if (xs->xs_control & XS_CTL_POLL) { 1694 1.167 mlelstv mutex_exit(chan_mtx(chan)); 1695 1.193 nat return; 1696 1.167 mlelstv } 1697 1.167 mlelstv cv_broadcast(xs_cv(xs)); 1698 1.167 mlelstv mutex_exit(chan_mtx(chan)); 1699 1.39 bouyer goto out; 1700 1.39 bouyer } 1701 1.39 bouyer 1702 1.39 bouyer /* 1703 1.39 bouyer * Catch the extremely common case of I/O completing 1704 1.39 bouyer * without error; no use in taking a context switch 1705 1.39 bouyer * if we can handle it in interrupt context. 1706 1.39 bouyer */ 1707 1.193 nat if (xs->error == XS_NOERROR) { 1708 1.167 mlelstv mutex_exit(chan_mtx(chan)); 1709 1.39 bouyer (void) scsipi_complete(xs); 1710 1.39 bouyer goto out; 1711 1.39 bouyer } 1712 1.39 bouyer 1713 1.39 bouyer /* 1714 1.39 bouyer * There is an error on this xfer. Put it on the channel's 1715 1.39 bouyer * completion queue, and wake up the completion thread. 1716 1.39 bouyer */ 1717 1.39 bouyer TAILQ_INSERT_TAIL(&chan->chan_complete, xs, channel_q); 1718 1.171 mlelstv cv_broadcast(chan_cv_complete(chan)); 1719 1.167 mlelstv mutex_exit(chan_mtx(chan)); 1720 1.39 bouyer 1721 1.39 bouyer out: 1722 1.193 nat /* 1723 1.193 nat * If there are more xfers on the channel's queue, attempt to 1724 1.193 nat * run them. 1725 1.193 nat */ 1726 1.193 nat scsipi_run_queue(chan); 1727 1.39 bouyer } 1728 1.39 bouyer 1729 1.39 bouyer /* 1730 1.39 bouyer * scsipi_complete: 1731 1.39 bouyer * 1732 1.39 bouyer * Completion of a scsipi_xfer. This is the guts of scsipi_done(). 1733 1.39 bouyer * 1734 1.39 bouyer * NOTE: This routine MUST be called with valid thread context 1735 1.39 bouyer * except for the case where the following two conditions are 1736 1.39 bouyer * true: 1737 1.39 bouyer * 1738 1.39 bouyer * xs->error == XS_NOERROR 1739 1.39 bouyer * XS_CTL_ASYNC is set in xs->xs_control 1740 1.39 bouyer * 1741 1.39 bouyer * The semantics of this routine can be tricky, so here is an 1742 1.39 bouyer * explanation: 1743 1.39 bouyer * 1744 1.39 bouyer * 0 Xfer completed successfully. 1745 1.39 bouyer * 1746 1.39 bouyer * ERESTART Xfer had an error, but was restarted. 1747 1.39 bouyer * 1748 1.39 bouyer * anything else Xfer had an error, return value is Unix 1749 1.39 bouyer * errno. 1750 1.39 bouyer * 1751 1.39 bouyer * If the return value is anything but ERESTART: 1752 1.39 bouyer * 1753 1.39 bouyer * - If XS_CTL_ASYNC is set, `xs' has been freed back to 1754 1.39 bouyer * the pool. 1755 1.39 bouyer * - If there is a buf associated with the xfer, 1756 1.39 bouyer * it has been biodone()'d. 1757 1.39 bouyer */ 1758 1.108 thorpej static int 1759 1.108 thorpej scsipi_complete(struct scsipi_xfer *xs) 1760 1.39 bouyer { 1761 1.39 bouyer struct scsipi_periph *periph = xs->xs_periph; 1762 1.39 bouyer struct scsipi_channel *chan = periph->periph_channel; 1763 1.167 mlelstv int error; 1764 1.2 bouyer 1765 1.185 riastrad SDT_PROBE1(scsi, base, xfer, complete, xs); 1766 1.185 riastrad 1767 1.39 bouyer #ifdef DIAGNOSTIC 1768 1.39 bouyer if ((xs->xs_control & XS_CTL_ASYNC) != 0 && xs->bp == NULL) 1769 1.39 bouyer panic("scsipi_complete: XS_CTL_ASYNC but no buf"); 1770 1.39 bouyer #endif 1771 1.39 bouyer /* 1772 1.39 bouyer * If command terminated with a CHECK CONDITION, we need to issue a 1773 1.39 bouyer * REQUEST_SENSE command. Once the REQUEST_SENSE has been processed 1774 1.39 bouyer * we'll have the real status. 1775 1.167 mlelstv * Must be processed with channel lock held to avoid missing 1776 1.167 mlelstv * a SCSI bus reset for this command. 1777 1.39 bouyer */ 1778 1.167 mlelstv mutex_enter(chan_mtx(chan)); 1779 1.39 bouyer if (xs->error == XS_BUSY && xs->status == SCSI_CHECK) { 1780 1.39 bouyer /* request sense for a request sense ? */ 1781 1.39 bouyer if (xs->xs_control & XS_CTL_REQSENSE) { 1782 1.39 bouyer scsipi_printaddr(periph); 1783 1.47 bouyer printf("request sense for a request sense ?\n"); 1784 1.39 bouyer /* XXX maybe we should reset the device ? */ 1785 1.39 bouyer /* we've been frozen because xs->error != XS_NOERROR */ 1786 1.167 mlelstv scsipi_periph_thaw_locked(periph, 1); 1787 1.167 mlelstv mutex_exit(chan_mtx(chan)); 1788 1.47 bouyer if (xs->resid < xs->datalen) { 1789 1.47 bouyer printf("we read %d bytes of sense anyway:\n", 1790 1.47 bouyer xs->datalen - xs->resid); 1791 1.47 bouyer scsipi_print_sense_data((void *)xs->data, 0); 1792 1.47 bouyer } 1793 1.39 bouyer return EINVAL; 1794 1.39 bouyer } 1795 1.167 mlelstv mutex_exit(chan_mtx(chan)); // XXX allows other commands to queue or run 1796 1.39 bouyer scsipi_request_sense(xs); 1797 1.167 mlelstv } else 1798 1.167 mlelstv mutex_exit(chan_mtx(chan)); 1799 1.54 ad 1800 1.2 bouyer /* 1801 1.3 enami * If it's a user level request, bypass all usual completion 1802 1.128 perry * processing, let the user work it out.. 1803 1.3 enami */ 1804 1.24 thorpej if ((xs->xs_control & XS_CTL_USERCMD) != 0) { 1805 1.39 bouyer SC_DEBUG(periph, SCSIPI_DB3, ("calling user done()\n")); 1806 1.167 mlelstv mutex_enter(chan_mtx(chan)); 1807 1.39 bouyer if (xs->error != XS_NOERROR) 1808 1.167 mlelstv scsipi_periph_thaw_locked(periph, 1); 1809 1.167 mlelstv mutex_exit(chan_mtx(chan)); 1810 1.39 bouyer scsipi_user_done(xs); 1811 1.39 bouyer SC_DEBUG(periph, SCSIPI_DB3, ("returned from user done()\n ")); 1812 1.39 bouyer return 0; 1813 1.39 bouyer } 1814 1.39 bouyer 1815 1.39 bouyer switch (xs->error) { 1816 1.39 bouyer case XS_NOERROR: 1817 1.39 bouyer error = 0; 1818 1.39 bouyer break; 1819 1.39 bouyer 1820 1.39 bouyer case XS_SENSE: 1821 1.39 bouyer case XS_SHORTSENSE: 1822 1.39 bouyer error = (*chan->chan_bustype->bustype_interpret_sense)(xs); 1823 1.39 bouyer break; 1824 1.2 bouyer 1825 1.39 bouyer case XS_RESOURCE_SHORTAGE: 1826 1.9 scottr /* 1827 1.39 bouyer * XXX Should freeze channel's queue. 1828 1.39 bouyer */ 1829 1.39 bouyer scsipi_printaddr(periph); 1830 1.39 bouyer printf("adapter resource shortage\n"); 1831 1.39 bouyer /* FALLTHROUGH */ 1832 1.39 bouyer 1833 1.39 bouyer case XS_BUSY: 1834 1.39 bouyer if (xs->error == XS_BUSY && xs->status == SCSI_QUEUE_FULL) { 1835 1.39 bouyer struct scsipi_max_openings mo; 1836 1.39 bouyer 1837 1.39 bouyer /* 1838 1.39 bouyer * We set the openings to active - 1, assuming that 1839 1.39 bouyer * the command that got us here is the first one that 1840 1.39 bouyer * can't fit into the device's queue. If that's not 1841 1.39 bouyer * the case, I guess we'll find out soon enough. 1842 1.39 bouyer */ 1843 1.39 bouyer mo.mo_target = periph->periph_target; 1844 1.39 bouyer mo.mo_lun = periph->periph_lun; 1845 1.42 bouyer if (periph->periph_active < periph->periph_openings) 1846 1.42 bouyer mo.mo_openings = periph->periph_active - 1; 1847 1.42 bouyer else 1848 1.42 bouyer mo.mo_openings = periph->periph_openings - 1; 1849 1.39 bouyer #ifdef DIAGNOSTIC 1850 1.39 bouyer if (mo.mo_openings < 0) { 1851 1.39 bouyer scsipi_printaddr(periph); 1852 1.39 bouyer printf("QUEUE FULL resulted in < 0 openings\n"); 1853 1.39 bouyer panic("scsipi_done"); 1854 1.39 bouyer } 1855 1.39 bouyer #endif 1856 1.39 bouyer if (mo.mo_openings == 0) { 1857 1.39 bouyer scsipi_printaddr(periph); 1858 1.39 bouyer printf("QUEUE FULL resulted in 0 openings\n"); 1859 1.39 bouyer mo.mo_openings = 1; 1860 1.39 bouyer } 1861 1.39 bouyer scsipi_async_event(chan, ASYNC_EVENT_MAX_OPENINGS, &mo); 1862 1.39 bouyer error = ERESTART; 1863 1.39 bouyer } else if (xs->xs_retries != 0) { 1864 1.39 bouyer xs->xs_retries--; 1865 1.39 bouyer /* 1866 1.39 bouyer * Wait one second, and try again. 1867 1.39 bouyer */ 1868 1.167 mlelstv mutex_enter(chan_mtx(chan)); 1869 1.58 mjacob if ((xs->xs_control & XS_CTL_POLL) || 1870 1.58 mjacob (chan->chan_flags & SCSIPI_CHAN_TACTIVE) == 0) { 1871 1.154 pooka /* XXX: quite extreme */ 1872 1.167 mlelstv kpause("xsbusy", false, hz, chan_mtx(chan)); 1873 1.84 thorpej } else if (!callout_pending(&periph->periph_callout)) { 1874 1.167 mlelstv scsipi_periph_freeze_locked(periph, 1); 1875 1.39 bouyer callout_reset(&periph->periph_callout, 1876 1.39 bouyer hz, scsipi_periph_timed_thaw, periph); 1877 1.39 bouyer } 1878 1.167 mlelstv mutex_exit(chan_mtx(chan)); 1879 1.39 bouyer error = ERESTART; 1880 1.39 bouyer } else 1881 1.39 bouyer error = EBUSY; 1882 1.39 bouyer break; 1883 1.39 bouyer 1884 1.39 bouyer case XS_REQUEUE: 1885 1.39 bouyer error = ERESTART; 1886 1.39 bouyer break; 1887 1.39 bouyer 1888 1.77 mjacob case XS_SELTIMEOUT: 1889 1.39 bouyer case XS_TIMEOUT: 1890 1.77 mjacob /* 1891 1.77 mjacob * If the device hasn't gone away, honor retry counts. 1892 1.77 mjacob * 1893 1.77 mjacob * Note that if we're in the middle of probing it, 1894 1.77 mjacob * it won't be found because it isn't here yet so 1895 1.77 mjacob * we won't honor the retry count in that case. 1896 1.77 mjacob */ 1897 1.77 mjacob if (scsipi_lookup_periph(chan, periph->periph_target, 1898 1.77 mjacob periph->periph_lun) && xs->xs_retries != 0) { 1899 1.39 bouyer xs->xs_retries--; 1900 1.39 bouyer error = ERESTART; 1901 1.39 bouyer } else 1902 1.39 bouyer error = EIO; 1903 1.39 bouyer break; 1904 1.39 bouyer 1905 1.39 bouyer case XS_RESET: 1906 1.39 bouyer if (xs->xs_control & XS_CTL_REQSENSE) { 1907 1.39 bouyer /* 1908 1.39 bouyer * request sense interrupted by reset: signal it 1909 1.39 bouyer * with EINTR return code. 1910 1.39 bouyer */ 1911 1.39 bouyer error = EINTR; 1912 1.39 bouyer } else { 1913 1.39 bouyer if (xs->xs_retries != 0) { 1914 1.39 bouyer xs->xs_retries--; 1915 1.39 bouyer error = ERESTART; 1916 1.39 bouyer } else 1917 1.39 bouyer error = EIO; 1918 1.31 enami } 1919 1.39 bouyer break; 1920 1.39 bouyer 1921 1.75 mjacob case XS_DRIVER_STUFFUP: 1922 1.75 mjacob scsipi_printaddr(periph); 1923 1.75 mjacob printf("generic HBA error\n"); 1924 1.75 mjacob error = EIO; 1925 1.75 mjacob break; 1926 1.39 bouyer default: 1927 1.39 bouyer scsipi_printaddr(periph); 1928 1.39 bouyer printf("invalid return code from adapter: %d\n", xs->error); 1929 1.39 bouyer error = EIO; 1930 1.39 bouyer break; 1931 1.2 bouyer } 1932 1.2 bouyer 1933 1.167 mlelstv mutex_enter(chan_mtx(chan)); 1934 1.39 bouyer if (error == ERESTART) { 1935 1.185 riastrad SDT_PROBE1(scsi, base, xfer, restart, xs); 1936 1.2 bouyer /* 1937 1.39 bouyer * If we get here, the periph has been thawed and frozen 1938 1.39 bouyer * again if we had to issue recovery commands. Alternatively, 1939 1.39 bouyer * it may have been frozen again and in a timed thaw. In 1940 1.39 bouyer * any case, we thaw the periph once we re-enqueue the 1941 1.39 bouyer * command. Once the periph is fully thawed, it will begin 1942 1.39 bouyer * operation again. 1943 1.2 bouyer */ 1944 1.39 bouyer xs->error = XS_NOERROR; 1945 1.39 bouyer xs->status = SCSI_OK; 1946 1.39 bouyer xs->xs_status &= ~XS_STS_DONE; 1947 1.39 bouyer xs->xs_requeuecnt++; 1948 1.39 bouyer error = scsipi_enqueue(xs); 1949 1.39 bouyer if (error == 0) { 1950 1.167 mlelstv scsipi_periph_thaw_locked(periph, 1); 1951 1.167 mlelstv mutex_exit(chan_mtx(chan)); 1952 1.174 skrll return ERESTART; 1953 1.39 bouyer } 1954 1.2 bouyer } 1955 1.2 bouyer 1956 1.2 bouyer /* 1957 1.39 bouyer * scsipi_done() freezes the queue if not XS_NOERROR. 1958 1.39 bouyer * Thaw it here. 1959 1.2 bouyer */ 1960 1.39 bouyer if (xs->error != XS_NOERROR) 1961 1.167 mlelstv scsipi_periph_thaw_locked(periph, 1); 1962 1.167 mlelstv mutex_exit(chan_mtx(chan)); 1963 1.2 bouyer 1964 1.70 christos if (periph->periph_switch->psw_done) 1965 1.113 mycroft periph->periph_switch->psw_done(xs, error); 1966 1.39 bouyer 1967 1.167 mlelstv mutex_enter(chan_mtx(chan)); 1968 1.39 bouyer if (xs->xs_control & XS_CTL_ASYNC) 1969 1.39 bouyer scsipi_put_xs(xs); 1970 1.167 mlelstv mutex_exit(chan_mtx(chan)); 1971 1.39 bouyer 1972 1.174 skrll return error; 1973 1.39 bouyer } 1974 1.39 bouyer 1975 1.39 bouyer /* 1976 1.39 bouyer * Issue a request sense for the given scsipi_xfer. Called when the xfer 1977 1.39 bouyer * returns with a CHECK_CONDITION status. Must be called in valid thread 1978 1.175 mlelstv * context. 1979 1.39 bouyer */ 1980 1.39 bouyer 1981 1.108 thorpej static void 1982 1.108 thorpej scsipi_request_sense(struct scsipi_xfer *xs) 1983 1.39 bouyer { 1984 1.39 bouyer struct scsipi_periph *periph = xs->xs_periph; 1985 1.39 bouyer int flags, error; 1986 1.127 thorpej struct scsi_request_sense cmd; 1987 1.39 bouyer 1988 1.39 bouyer periph->periph_flags |= PERIPH_SENSE; 1989 1.39 bouyer 1990 1.39 bouyer /* if command was polling, request sense will too */ 1991 1.39 bouyer flags = xs->xs_control & XS_CTL_POLL; 1992 1.39 bouyer /* Polling commands can't sleep */ 1993 1.39 bouyer if (flags) 1994 1.39 bouyer flags |= XS_CTL_NOSLEEP; 1995 1.39 bouyer 1996 1.39 bouyer flags |= XS_CTL_REQSENSE | XS_CTL_URGENT | XS_CTL_DATA_IN | 1997 1.39 bouyer XS_CTL_THAW_PERIPH | XS_CTL_FREEZE_PERIPH; 1998 1.39 bouyer 1999 1.50 thorpej memset(&cmd, 0, sizeof(cmd)); 2000 1.127 thorpej cmd.opcode = SCSI_REQUEST_SENSE; 2001 1.127 thorpej cmd.length = sizeof(struct scsi_sense_data); 2002 1.39 bouyer 2003 1.116 mycroft error = scsipi_command(periph, (void *)&cmd, sizeof(cmd), 2004 1.127 thorpej (void *)&xs->sense.scsi_sense, sizeof(struct scsi_sense_data), 2005 1.39 bouyer 0, 1000, NULL, flags); 2006 1.39 bouyer periph->periph_flags &= ~PERIPH_SENSE; 2007 1.39 bouyer periph->periph_xscheck = NULL; 2008 1.117 mycroft switch (error) { 2009 1.39 bouyer case 0: 2010 1.39 bouyer /* we have a valid sense */ 2011 1.39 bouyer xs->error = XS_SENSE; 2012 1.39 bouyer return; 2013 1.39 bouyer case EINTR: 2014 1.39 bouyer /* REQUEST_SENSE interrupted by bus reset. */ 2015 1.39 bouyer xs->error = XS_RESET; 2016 1.39 bouyer return; 2017 1.39 bouyer case EIO: 2018 1.187 jakllsch /* request sense couldn't be performed */ 2019 1.2 bouyer /* 2020 1.78 wiz * XXX this isn't quite right but we don't have anything 2021 1.39 bouyer * better for now 2022 1.2 bouyer */ 2023 1.39 bouyer xs->error = XS_DRIVER_STUFFUP; 2024 1.39 bouyer return; 2025 1.39 bouyer default: 2026 1.39 bouyer /* Notify that request sense failed. */ 2027 1.39 bouyer xs->error = XS_DRIVER_STUFFUP; 2028 1.39 bouyer scsipi_printaddr(periph); 2029 1.39 bouyer printf("request sense failed with error %d\n", error); 2030 1.39 bouyer return; 2031 1.39 bouyer } 2032 1.39 bouyer } 2033 1.39 bouyer 2034 1.39 bouyer /* 2035 1.39 bouyer * scsipi_enqueue: 2036 1.39 bouyer * 2037 1.39 bouyer * Enqueue an xfer on a channel. 2038 1.39 bouyer */ 2039 1.108 thorpej static int 2040 1.108 thorpej scsipi_enqueue(struct scsipi_xfer *xs) 2041 1.39 bouyer { 2042 1.39 bouyer struct scsipi_channel *chan = xs->xs_periph->periph_channel; 2043 1.39 bouyer struct scsipi_xfer *qxs; 2044 1.39 bouyer 2045 1.185 riastrad SDT_PROBE1(scsi, base, xfer, enqueue, xs); 2046 1.185 riastrad 2047 1.39 bouyer /* 2048 1.39 bouyer * If the xfer is to be polled, and there are already jobs on 2049 1.39 bouyer * the queue, we can't proceed. 2050 1.39 bouyer */ 2051 1.180 bouyer KASSERT(mutex_owned(chan_mtx(chan))); 2052 1.39 bouyer if ((xs->xs_control & XS_CTL_POLL) != 0 && 2053 1.39 bouyer TAILQ_FIRST(&chan->chan_queue) != NULL) { 2054 1.39 bouyer xs->error = XS_DRIVER_STUFFUP; 2055 1.174 skrll return EAGAIN; 2056 1.2 bouyer } 2057 1.39 bouyer 2058 1.9 scottr /* 2059 1.39 bouyer * If we have an URGENT xfer, it's an error recovery command 2060 1.39 bouyer * and it should just go on the head of the channel's queue. 2061 1.9 scottr */ 2062 1.39 bouyer if (xs->xs_control & XS_CTL_URGENT) { 2063 1.39 bouyer TAILQ_INSERT_HEAD(&chan->chan_queue, xs, channel_q); 2064 1.39 bouyer goto out; 2065 1.39 bouyer } 2066 1.39 bouyer 2067 1.39 bouyer /* 2068 1.39 bouyer * If this xfer has already been on the queue before, we 2069 1.39 bouyer * need to reinsert it in the correct order. That order is: 2070 1.39 bouyer * 2071 1.39 bouyer * Immediately before the first xfer for this periph 2072 1.39 bouyer * with a requeuecnt less than xs->xs_requeuecnt. 2073 1.39 bouyer * 2074 1.39 bouyer * Failing that, at the end of the queue. (We'll end up 2075 1.39 bouyer * there naturally.) 2076 1.39 bouyer */ 2077 1.39 bouyer if (xs->xs_requeuecnt != 0) { 2078 1.39 bouyer for (qxs = TAILQ_FIRST(&chan->chan_queue); qxs != NULL; 2079 1.39 bouyer qxs = TAILQ_NEXT(qxs, channel_q)) { 2080 1.39 bouyer if (qxs->xs_periph == xs->xs_periph && 2081 1.39 bouyer qxs->xs_requeuecnt < xs->xs_requeuecnt) 2082 1.39 bouyer break; 2083 1.39 bouyer } 2084 1.39 bouyer if (qxs != NULL) { 2085 1.39 bouyer TAILQ_INSERT_AFTER(&chan->chan_queue, qxs, xs, 2086 1.39 bouyer channel_q); 2087 1.39 bouyer goto out; 2088 1.39 bouyer } 2089 1.39 bouyer } 2090 1.39 bouyer TAILQ_INSERT_TAIL(&chan->chan_queue, xs, channel_q); 2091 1.39 bouyer out: 2092 1.39 bouyer if (xs->xs_control & XS_CTL_THAW_PERIPH) 2093 1.167 mlelstv scsipi_periph_thaw_locked(xs->xs_periph, 1); 2094 1.174 skrll return 0; 2095 1.39 bouyer } 2096 1.39 bouyer 2097 1.39 bouyer /* 2098 1.39 bouyer * scsipi_run_queue: 2099 1.39 bouyer * 2100 1.39 bouyer * Start as many xfers as possible running on the channel. 2101 1.39 bouyer */ 2102 1.108 thorpej static void 2103 1.108 thorpej scsipi_run_queue(struct scsipi_channel *chan) 2104 1.39 bouyer { 2105 1.39 bouyer struct scsipi_xfer *xs; 2106 1.39 bouyer struct scsipi_periph *periph; 2107 1.39 bouyer 2108 1.185 riastrad SDT_PROBE1(scsi, base, queue, batch__start, chan); 2109 1.39 bouyer for (;;) { 2110 1.167 mlelstv mutex_enter(chan_mtx(chan)); 2111 1.39 bouyer 2112 1.39 bouyer /* 2113 1.39 bouyer * If the channel is frozen, we can't do any work right 2114 1.39 bouyer * now. 2115 1.39 bouyer */ 2116 1.39 bouyer if (chan->chan_qfreeze != 0) { 2117 1.167 mlelstv mutex_exit(chan_mtx(chan)); 2118 1.185 riastrad break; 2119 1.39 bouyer } 2120 1.39 bouyer 2121 1.39 bouyer /* 2122 1.39 bouyer * Look for work to do, and make sure we can do it. 2123 1.39 bouyer */ 2124 1.39 bouyer for (xs = TAILQ_FIRST(&chan->chan_queue); xs != NULL; 2125 1.39 bouyer xs = TAILQ_NEXT(xs, channel_q)) { 2126 1.39 bouyer periph = xs->xs_periph; 2127 1.39 bouyer 2128 1.39 bouyer if ((periph->periph_sent >= periph->periph_openings) || 2129 1.39 bouyer periph->periph_qfreeze != 0 || 2130 1.39 bouyer (periph->periph_flags & PERIPH_UNTAG) != 0) 2131 1.39 bouyer continue; 2132 1.39 bouyer 2133 1.39 bouyer if ((periph->periph_flags & 2134 1.39 bouyer (PERIPH_RECOVERING | PERIPH_SENSE)) != 0 && 2135 1.39 bouyer (xs->xs_control & XS_CTL_URGENT) == 0) 2136 1.39 bouyer continue; 2137 1.39 bouyer 2138 1.39 bouyer /* 2139 1.39 bouyer * We can issue this xfer! 2140 1.39 bouyer */ 2141 1.39 bouyer goto got_one; 2142 1.39 bouyer } 2143 1.39 bouyer 2144 1.39 bouyer /* 2145 1.39 bouyer * Can't find any work to do right now. 2146 1.39 bouyer */ 2147 1.167 mlelstv mutex_exit(chan_mtx(chan)); 2148 1.185 riastrad break; 2149 1.39 bouyer 2150 1.39 bouyer got_one: 2151 1.39 bouyer /* 2152 1.39 bouyer * Have an xfer to run. Allocate a resource from 2153 1.39 bouyer * the adapter to run it. If we can't allocate that 2154 1.39 bouyer * resource, we don't dequeue the xfer. 2155 1.39 bouyer */ 2156 1.39 bouyer if (scsipi_get_resource(chan) == 0) { 2157 1.39 bouyer /* 2158 1.39 bouyer * Adapter is out of resources. If the adapter 2159 1.39 bouyer * supports it, attempt to grow them. 2160 1.39 bouyer */ 2161 1.39 bouyer if (scsipi_grow_resources(chan) == 0) { 2162 1.39 bouyer /* 2163 1.39 bouyer * Wasn't able to grow resources, 2164 1.39 bouyer * nothing more we can do. 2165 1.39 bouyer */ 2166 1.39 bouyer if (xs->xs_control & XS_CTL_POLL) { 2167 1.39 bouyer scsipi_printaddr(xs->xs_periph); 2168 1.39 bouyer printf("polling command but no " 2169 1.39 bouyer "adapter resources"); 2170 1.39 bouyer /* We'll panic shortly... */ 2171 1.39 bouyer } 2172 1.167 mlelstv mutex_exit(chan_mtx(chan)); 2173 1.128 perry 2174 1.39 bouyer /* 2175 1.39 bouyer * XXX: We should be able to note that 2176 1.39 bouyer * XXX: that resources are needed here! 2177 1.39 bouyer */ 2178 1.185 riastrad break; 2179 1.39 bouyer } 2180 1.39 bouyer /* 2181 1.39 bouyer * scsipi_grow_resources() allocated the resource 2182 1.39 bouyer * for us. 2183 1.39 bouyer */ 2184 1.39 bouyer } 2185 1.39 bouyer 2186 1.39 bouyer /* 2187 1.39 bouyer * We have a resource to run this xfer, do it! 2188 1.39 bouyer */ 2189 1.39 bouyer TAILQ_REMOVE(&chan->chan_queue, xs, channel_q); 2190 1.39 bouyer 2191 1.39 bouyer /* 2192 1.39 bouyer * If the command is to be tagged, allocate a tag ID 2193 1.39 bouyer * for it. 2194 1.39 bouyer */ 2195 1.39 bouyer if (XS_CTL_TAGTYPE(xs) != 0) 2196 1.39 bouyer scsipi_get_tag(xs); 2197 1.39 bouyer else 2198 1.39 bouyer periph->periph_flags |= PERIPH_UNTAG; 2199 1.39 bouyer periph->periph_sent++; 2200 1.167 mlelstv mutex_exit(chan_mtx(chan)); 2201 1.39 bouyer 2202 1.185 riastrad SDT_PROBE2(scsi, base, queue, run, chan, xs); 2203 1.39 bouyer scsipi_adapter_request(chan, ADAPTER_REQ_RUN_XFER, xs); 2204 1.22 pk } 2205 1.185 riastrad SDT_PROBE1(scsi, base, queue, batch__done, chan); 2206 1.2 bouyer } 2207 1.2 bouyer 2208 1.39 bouyer /* 2209 1.39 bouyer * scsipi_execute_xs: 2210 1.39 bouyer * 2211 1.39 bouyer * Begin execution of an xfer, waiting for it to complete, if necessary. 2212 1.39 bouyer */ 2213 1.2 bouyer int 2214 1.108 thorpej scsipi_execute_xs(struct scsipi_xfer *xs) 2215 1.2 bouyer { 2216 1.39 bouyer struct scsipi_periph *periph = xs->xs_periph; 2217 1.39 bouyer struct scsipi_channel *chan = periph->periph_channel; 2218 1.167 mlelstv int oasync, async, poll, error; 2219 1.2 bouyer 2220 1.119 mycroft KASSERT(!cold); 2221 1.119 mycroft 2222 1.182 kardel scsipi_update_timeouts(xs); 2223 1.182 kardel 2224 1.114 mycroft (chan->chan_bustype->bustype_cmd)(xs); 2225 1.114 mycroft 2226 1.24 thorpej xs->xs_status &= ~XS_STS_DONE; 2227 1.2 bouyer xs->error = XS_NOERROR; 2228 1.2 bouyer xs->resid = xs->datalen; 2229 1.39 bouyer xs->status = SCSI_OK; 2230 1.185 riastrad SDT_PROBE1(scsi, base, xfer, execute, xs); 2231 1.39 bouyer 2232 1.39 bouyer #ifdef SCSIPI_DEBUG 2233 1.39 bouyer if (xs->xs_periph->periph_dbflags & SCSIPI_DB3) { 2234 1.39 bouyer printf("scsipi_execute_xs: "); 2235 1.39 bouyer show_scsipi_xs(xs); 2236 1.39 bouyer printf("\n"); 2237 1.39 bouyer } 2238 1.39 bouyer #endif 2239 1.2 bouyer 2240 1.2 bouyer /* 2241 1.39 bouyer * Deal with command tagging: 2242 1.3 enami * 2243 1.39 bouyer * - If the device's current operating mode doesn't 2244 1.39 bouyer * include tagged queueing, clear the tag mask. 2245 1.3 enami * 2246 1.39 bouyer * - If the device's current operating mode *does* 2247 1.39 bouyer * include tagged queueing, set the tag_type in 2248 1.39 bouyer * the xfer to the appropriate byte for the tag 2249 1.39 bouyer * message. 2250 1.39 bouyer */ 2251 1.39 bouyer if ((PERIPH_XFER_MODE(periph) & PERIPH_CAP_TQING) == 0 || 2252 1.39 bouyer (xs->xs_control & XS_CTL_REQSENSE)) { 2253 1.39 bouyer xs->xs_control &= ~XS_CTL_TAGMASK; 2254 1.39 bouyer xs->xs_tag_type = 0; 2255 1.39 bouyer } else { 2256 1.39 bouyer /* 2257 1.39 bouyer * If the request doesn't specify a tag, give Head 2258 1.166 jdolecek * tags to URGENT operations and Simple tags to 2259 1.39 bouyer * everything else. 2260 1.39 bouyer */ 2261 1.39 bouyer if (XS_CTL_TAGTYPE(xs) == 0) { 2262 1.39 bouyer if (xs->xs_control & XS_CTL_URGENT) 2263 1.39 bouyer xs->xs_control |= XS_CTL_HEAD_TAG; 2264 1.39 bouyer else 2265 1.166 jdolecek xs->xs_control |= XS_CTL_SIMPLE_TAG; 2266 1.39 bouyer } 2267 1.39 bouyer 2268 1.39 bouyer switch (XS_CTL_TAGTYPE(xs)) { 2269 1.39 bouyer case XS_CTL_ORDERED_TAG: 2270 1.39 bouyer xs->xs_tag_type = MSG_ORDERED_Q_TAG; 2271 1.39 bouyer break; 2272 1.39 bouyer 2273 1.39 bouyer case XS_CTL_SIMPLE_TAG: 2274 1.39 bouyer xs->xs_tag_type = MSG_SIMPLE_Q_TAG; 2275 1.39 bouyer break; 2276 1.39 bouyer 2277 1.39 bouyer case XS_CTL_HEAD_TAG: 2278 1.39 bouyer xs->xs_tag_type = MSG_HEAD_OF_Q_TAG; 2279 1.39 bouyer break; 2280 1.39 bouyer 2281 1.39 bouyer default: 2282 1.39 bouyer scsipi_printaddr(periph); 2283 1.39 bouyer printf("invalid tag mask 0x%08x\n", 2284 1.39 bouyer XS_CTL_TAGTYPE(xs)); 2285 1.39 bouyer panic("scsipi_execute_xs"); 2286 1.39 bouyer } 2287 1.2 bouyer } 2288 1.45 bjh21 2289 1.187 jakllsch /* If the adapter wants us to poll, poll. */ 2290 1.45 bjh21 if (chan->chan_adapter->adapt_flags & SCSIPI_ADAPT_POLL_ONLY) 2291 1.45 bjh21 xs->xs_control |= XS_CTL_POLL; 2292 1.39 bouyer 2293 1.39 bouyer /* 2294 1.39 bouyer * If we don't yet have a completion thread, or we are to poll for 2295 1.39 bouyer * completion, clear the ASYNC flag. 2296 1.39 bouyer */ 2297 1.69 bouyer oasync = (xs->xs_control & XS_CTL_ASYNC); 2298 1.39 bouyer if (chan->chan_thread == NULL || (xs->xs_control & XS_CTL_POLL) != 0) 2299 1.39 bouyer xs->xs_control &= ~XS_CTL_ASYNC; 2300 1.39 bouyer 2301 1.24 thorpej async = (xs->xs_control & XS_CTL_ASYNC); 2302 1.39 bouyer poll = (xs->xs_control & XS_CTL_POLL); 2303 1.39 bouyer 2304 1.2 bouyer #ifdef DIAGNOSTIC 2305 1.69 bouyer if (oasync != 0 && xs->bp == NULL) 2306 1.39 bouyer panic("scsipi_execute_xs: XS_CTL_ASYNC but no buf"); 2307 1.2 bouyer #endif 2308 1.39 bouyer 2309 1.39 bouyer /* 2310 1.39 bouyer * Enqueue the transfer. If we're not polling for completion, this 2311 1.39 bouyer * should ALWAYS return `no error'. 2312 1.39 bouyer */ 2313 1.39 bouyer error = scsipi_enqueue(xs); 2314 1.39 bouyer if (error) { 2315 1.39 bouyer if (poll == 0) { 2316 1.39 bouyer scsipi_printaddr(periph); 2317 1.39 bouyer printf("not polling, but enqueue failed with %d\n", 2318 1.39 bouyer error); 2319 1.39 bouyer panic("scsipi_execute_xs"); 2320 1.39 bouyer } 2321 1.128 perry 2322 1.39 bouyer scsipi_printaddr(periph); 2323 1.120 mycroft printf("should have flushed queue?\n"); 2324 1.39 bouyer goto free_xs; 2325 1.39 bouyer } 2326 1.39 bouyer 2327 1.167 mlelstv mutex_exit(chan_mtx(chan)); 2328 1.39 bouyer restarted: 2329 1.39 bouyer scsipi_run_queue(chan); 2330 1.167 mlelstv mutex_enter(chan_mtx(chan)); 2331 1.39 bouyer 2332 1.39 bouyer /* 2333 1.39 bouyer * The xfer is enqueued, and possibly running. If it's to be 2334 1.39 bouyer * completed asynchronously, just return now. 2335 1.39 bouyer */ 2336 1.39 bouyer if (async) 2337 1.174 skrll return 0; 2338 1.39 bouyer 2339 1.39 bouyer /* 2340 1.39 bouyer * Not an asynchronous command; wait for it to complete. 2341 1.39 bouyer */ 2342 1.39 bouyer while ((xs->xs_status & XS_STS_DONE) == 0) { 2343 1.39 bouyer if (poll) { 2344 1.39 bouyer scsipi_printaddr(periph); 2345 1.39 bouyer printf("polling command not done\n"); 2346 1.39 bouyer panic("scsipi_execute_xs"); 2347 1.39 bouyer } 2348 1.167 mlelstv cv_wait(xs_cv(xs), chan_mtx(chan)); 2349 1.39 bouyer } 2350 1.39 bouyer 2351 1.39 bouyer /* 2352 1.39 bouyer * Command is complete. scsipi_done() has awakened us to perform 2353 1.39 bouyer * the error handling. 2354 1.39 bouyer */ 2355 1.167 mlelstv mutex_exit(chan_mtx(chan)); 2356 1.39 bouyer error = scsipi_complete(xs); 2357 1.39 bouyer if (error == ERESTART) 2358 1.39 bouyer goto restarted; 2359 1.39 bouyer 2360 1.69 bouyer /* 2361 1.187 jakllsch * If it was meant to run async and we cleared async ourselves, 2362 1.69 bouyer * don't return an error here. It has already been handled 2363 1.69 bouyer */ 2364 1.69 bouyer if (oasync) 2365 1.118 mycroft error = 0; 2366 1.39 bouyer /* 2367 1.39 bouyer * Command completed successfully or fatal error occurred. Fall 2368 1.39 bouyer * into.... 2369 1.39 bouyer */ 2370 1.167 mlelstv mutex_enter(chan_mtx(chan)); 2371 1.39 bouyer free_xs: 2372 1.39 bouyer scsipi_put_xs(xs); 2373 1.167 mlelstv mutex_exit(chan_mtx(chan)); 2374 1.39 bouyer 2375 1.39 bouyer /* 2376 1.39 bouyer * Kick the queue, keep it running in case it stopped for some 2377 1.39 bouyer * reason. 2378 1.39 bouyer */ 2379 1.39 bouyer scsipi_run_queue(chan); 2380 1.39 bouyer 2381 1.167 mlelstv mutex_enter(chan_mtx(chan)); 2382 1.174 skrll return error; 2383 1.39 bouyer } 2384 1.39 bouyer 2385 1.39 bouyer /* 2386 1.39 bouyer * scsipi_completion_thread: 2387 1.39 bouyer * 2388 1.39 bouyer * This is the completion thread. We wait for errors on 2389 1.39 bouyer * asynchronous xfers, and perform the error handling 2390 1.39 bouyer * function, restarting the command, if necessary. 2391 1.39 bouyer */ 2392 1.108 thorpej static void 2393 1.108 thorpej scsipi_completion_thread(void *arg) 2394 1.39 bouyer { 2395 1.39 bouyer struct scsipi_channel *chan = arg; 2396 1.39 bouyer struct scsipi_xfer *xs; 2397 1.79 jmc 2398 1.79 jmc if (chan->chan_init_cb) 2399 1.79 jmc (*chan->chan_init_cb)(chan, chan->chan_init_cb_arg); 2400 1.39 bouyer 2401 1.167 mlelstv mutex_enter(chan_mtx(chan)); 2402 1.58 mjacob chan->chan_flags |= SCSIPI_CHAN_TACTIVE; 2403 1.39 bouyer for (;;) { 2404 1.39 bouyer xs = TAILQ_FIRST(&chan->chan_complete); 2405 1.173 skrll if (xs == NULL && chan->chan_tflags == 0) { 2406 1.60 bouyer /* nothing to do; wait */ 2407 1.167 mlelstv cv_wait(chan_cv_complete(chan), chan_mtx(chan)); 2408 1.39 bouyer continue; 2409 1.39 bouyer } 2410 1.59 bouyer if (chan->chan_tflags & SCSIPI_CHANT_CALLBACK) { 2411 1.51 bouyer /* call chan_callback from thread context */ 2412 1.59 bouyer chan->chan_tflags &= ~SCSIPI_CHANT_CALLBACK; 2413 1.51 bouyer chan->chan_callback(chan, chan->chan_callback_arg); 2414 1.60 bouyer continue; 2415 1.60 bouyer } 2416 1.60 bouyer if (chan->chan_tflags & SCSIPI_CHANT_GROWRES) { 2417 1.60 bouyer /* attempt to get more openings for this channel */ 2418 1.60 bouyer chan->chan_tflags &= ~SCSIPI_CHANT_GROWRES; 2419 1.167 mlelstv mutex_exit(chan_mtx(chan)); 2420 1.60 bouyer scsipi_adapter_request(chan, 2421 1.60 bouyer ADAPTER_REQ_GROW_RESOURCES, NULL); 2422 1.60 bouyer scsipi_channel_thaw(chan, 1); 2423 1.143 ad if (chan->chan_tflags & SCSIPI_CHANT_GROWRES) 2424 1.143 ad kpause("scsizzz", FALSE, hz/10, NULL); 2425 1.171 mlelstv mutex_enter(chan_mtx(chan)); 2426 1.58 mjacob continue; 2427 1.58 mjacob } 2428 1.59 bouyer if (chan->chan_tflags & SCSIPI_CHANT_KICK) { 2429 1.58 mjacob /* explicitly run the queues for this channel */ 2430 1.59 bouyer chan->chan_tflags &= ~SCSIPI_CHANT_KICK; 2431 1.167 mlelstv mutex_exit(chan_mtx(chan)); 2432 1.58 mjacob scsipi_run_queue(chan); 2433 1.171 mlelstv mutex_enter(chan_mtx(chan)); 2434 1.51 bouyer continue; 2435 1.51 bouyer } 2436 1.59 bouyer if (chan->chan_tflags & SCSIPI_CHANT_SHUTDOWN) { 2437 1.39 bouyer break; 2438 1.39 bouyer } 2439 1.51 bouyer if (xs) { 2440 1.51 bouyer TAILQ_REMOVE(&chan->chan_complete, xs, channel_q); 2441 1.167 mlelstv mutex_exit(chan_mtx(chan)); 2442 1.2 bouyer 2443 1.51 bouyer /* 2444 1.51 bouyer * Have an xfer with an error; process it. 2445 1.51 bouyer */ 2446 1.51 bouyer (void) scsipi_complete(xs); 2447 1.2 bouyer 2448 1.51 bouyer /* 2449 1.51 bouyer * Kick the queue; keep it running if it was stopped 2450 1.51 bouyer * for some reason. 2451 1.51 bouyer */ 2452 1.51 bouyer scsipi_run_queue(chan); 2453 1.172 skrll mutex_enter(chan_mtx(chan)); 2454 1.51 bouyer } 2455 1.2 bouyer } 2456 1.2 bouyer 2457 1.39 bouyer chan->chan_thread = NULL; 2458 1.39 bouyer 2459 1.39 bouyer /* In case parent is waiting for us to exit. */ 2460 1.167 mlelstv cv_broadcast(chan_cv_thread(chan)); 2461 1.171 mlelstv mutex_exit(chan_mtx(chan)); 2462 1.39 bouyer 2463 1.39 bouyer kthread_exit(0); 2464 1.2 bouyer } 2465 1.39 bouyer /* 2466 1.51 bouyer * scsipi_thread_call_callback: 2467 1.51 bouyer * 2468 1.51 bouyer * request to call a callback from the completion thread 2469 1.51 bouyer */ 2470 1.51 bouyer int 2471 1.108 thorpej scsipi_thread_call_callback(struct scsipi_channel *chan, 2472 1.108 thorpej void (*callback)(struct scsipi_channel *, void *), void *arg) 2473 1.51 bouyer { 2474 1.51 bouyer 2475 1.167 mlelstv mutex_enter(chan_mtx(chan)); 2476 1.61 bouyer if ((chan->chan_flags & SCSIPI_CHAN_TACTIVE) == 0) { 2477 1.61 bouyer /* kernel thread doesn't exist yet */ 2478 1.167 mlelstv mutex_exit(chan_mtx(chan)); 2479 1.61 bouyer return ESRCH; 2480 1.61 bouyer } 2481 1.59 bouyer if (chan->chan_tflags & SCSIPI_CHANT_CALLBACK) { 2482 1.167 mlelstv mutex_exit(chan_mtx(chan)); 2483 1.51 bouyer return EBUSY; 2484 1.51 bouyer } 2485 1.51 bouyer scsipi_channel_freeze(chan, 1); 2486 1.51 bouyer chan->chan_callback = callback; 2487 1.51 bouyer chan->chan_callback_arg = arg; 2488 1.59 bouyer chan->chan_tflags |= SCSIPI_CHANT_CALLBACK; 2489 1.167 mlelstv cv_broadcast(chan_cv_complete(chan)); 2490 1.167 mlelstv mutex_exit(chan_mtx(chan)); 2491 1.174 skrll return 0; 2492 1.51 bouyer } 2493 1.51 bouyer 2494 1.51 bouyer /* 2495 1.39 bouyer * scsipi_async_event: 2496 1.39 bouyer * 2497 1.39 bouyer * Handle an asynchronous event from an adapter. 2498 1.39 bouyer */ 2499 1.39 bouyer void 2500 1.108 thorpej scsipi_async_event(struct scsipi_channel *chan, scsipi_async_event_t event, 2501 1.108 thorpej void *arg) 2502 1.39 bouyer { 2503 1.178 christos bool lock = chan_running(chan) > 0; 2504 1.39 bouyer 2505 1.178 christos if (lock) 2506 1.178 christos mutex_enter(chan_mtx(chan)); 2507 1.39 bouyer switch (event) { 2508 1.39 bouyer case ASYNC_EVENT_MAX_OPENINGS: 2509 1.39 bouyer scsipi_async_event_max_openings(chan, 2510 1.39 bouyer (struct scsipi_max_openings *)arg); 2511 1.2 bouyer break; 2512 1.2 bouyer 2513 1.39 bouyer case ASYNC_EVENT_XFER_MODE: 2514 1.159 bouyer if (chan->chan_bustype->bustype_async_event_xfer_mode) { 2515 1.159 bouyer chan->chan_bustype->bustype_async_event_xfer_mode( 2516 1.159 bouyer chan, arg); 2517 1.159 bouyer } 2518 1.39 bouyer break; 2519 1.39 bouyer case ASYNC_EVENT_RESET: 2520 1.39 bouyer scsipi_async_event_channel_reset(chan); 2521 1.2 bouyer break; 2522 1.39 bouyer } 2523 1.178 christos if (lock) 2524 1.178 christos mutex_exit(chan_mtx(chan)); 2525 1.39 bouyer } 2526 1.39 bouyer 2527 1.39 bouyer /* 2528 1.39 bouyer * scsipi_async_event_max_openings: 2529 1.39 bouyer * 2530 1.39 bouyer * Update the maximum number of outstanding commands a 2531 1.39 bouyer * device may have. 2532 1.39 bouyer */ 2533 1.108 thorpej static void 2534 1.108 thorpej scsipi_async_event_max_openings(struct scsipi_channel *chan, 2535 1.108 thorpej struct scsipi_max_openings *mo) 2536 1.39 bouyer { 2537 1.39 bouyer struct scsipi_periph *periph; 2538 1.39 bouyer int minlun, maxlun; 2539 1.39 bouyer 2540 1.39 bouyer if (mo->mo_lun == -1) { 2541 1.39 bouyer /* 2542 1.39 bouyer * Wildcarded; apply it to all LUNs. 2543 1.39 bouyer */ 2544 1.39 bouyer minlun = 0; 2545 1.39 bouyer maxlun = chan->chan_nluns - 1; 2546 1.39 bouyer } else 2547 1.39 bouyer minlun = maxlun = mo->mo_lun; 2548 1.39 bouyer 2549 1.74 thorpej /* XXX This could really suck with a large LUN space. */ 2550 1.39 bouyer for (; minlun <= maxlun; minlun++) { 2551 1.168 mlelstv periph = scsipi_lookup_periph_locked(chan, mo->mo_target, minlun); 2552 1.39 bouyer if (periph == NULL) 2553 1.39 bouyer continue; 2554 1.39 bouyer 2555 1.39 bouyer if (mo->mo_openings < periph->periph_openings) 2556 1.39 bouyer periph->periph_openings = mo->mo_openings; 2557 1.39 bouyer else if (mo->mo_openings > periph->periph_openings && 2558 1.39 bouyer (periph->periph_flags & PERIPH_GROW_OPENINGS) != 0) 2559 1.39 bouyer periph->periph_openings = mo->mo_openings; 2560 1.39 bouyer } 2561 1.39 bouyer } 2562 1.39 bouyer 2563 1.39 bouyer /* 2564 1.39 bouyer * scsipi_set_xfer_mode: 2565 1.39 bouyer * 2566 1.39 bouyer * Set the xfer mode for the specified I_T Nexus. 2567 1.39 bouyer */ 2568 1.39 bouyer void 2569 1.108 thorpej scsipi_set_xfer_mode(struct scsipi_channel *chan, int target, int immed) 2570 1.39 bouyer { 2571 1.39 bouyer struct scsipi_xfer_mode xm; 2572 1.39 bouyer struct scsipi_periph *itperiph; 2573 1.167 mlelstv int lun; 2574 1.39 bouyer 2575 1.39 bouyer /* 2576 1.39 bouyer * Go to the minimal xfer mode. 2577 1.39 bouyer */ 2578 1.39 bouyer xm.xm_target = target; 2579 1.39 bouyer xm.xm_mode = 0; 2580 1.39 bouyer xm.xm_period = 0; /* ignored */ 2581 1.39 bouyer xm.xm_offset = 0; /* ignored */ 2582 1.39 bouyer 2583 1.39 bouyer /* 2584 1.39 bouyer * Find the first LUN we know about on this I_T Nexus. 2585 1.39 bouyer */ 2586 1.82 scw for (itperiph = NULL, lun = 0; lun < chan->chan_nluns; lun++) { 2587 1.39 bouyer itperiph = scsipi_lookup_periph(chan, target, lun); 2588 1.39 bouyer if (itperiph != NULL) 2589 1.39 bouyer break; 2590 1.39 bouyer } 2591 1.49 bouyer if (itperiph != NULL) { 2592 1.39 bouyer xm.xm_mode = itperiph->periph_cap; 2593 1.49 bouyer /* 2594 1.49 bouyer * Now issue the request to the adapter. 2595 1.49 bouyer */ 2596 1.49 bouyer scsipi_adapter_request(chan, ADAPTER_REQ_SET_XFER_MODE, &xm); 2597 1.49 bouyer /* 2598 1.49 bouyer * If we want this to happen immediately, issue a dummy 2599 1.49 bouyer * command, since most adapters can't really negotiate unless 2600 1.49 bouyer * they're executing a job. 2601 1.49 bouyer */ 2602 1.49 bouyer if (immed != 0) { 2603 1.49 bouyer (void) scsipi_test_unit_ready(itperiph, 2604 1.49 bouyer XS_CTL_DISCOVERY | XS_CTL_IGNORE_ILLEGAL_REQUEST | 2605 1.49 bouyer XS_CTL_IGNORE_NOT_READY | 2606 1.49 bouyer XS_CTL_IGNORE_MEDIA_CHANGE); 2607 1.49 bouyer } 2608 1.2 bouyer } 2609 1.39 bouyer } 2610 1.2 bouyer 2611 1.39 bouyer /* 2612 1.39 bouyer * scsipi_channel_reset: 2613 1.39 bouyer * 2614 1.39 bouyer * handle scsi bus reset 2615 1.167 mlelstv * called with channel lock held 2616 1.39 bouyer */ 2617 1.108 thorpej static void 2618 1.108 thorpej scsipi_async_event_channel_reset(struct scsipi_channel *chan) 2619 1.39 bouyer { 2620 1.39 bouyer struct scsipi_xfer *xs, *xs_next; 2621 1.39 bouyer struct scsipi_periph *periph; 2622 1.39 bouyer int target, lun; 2623 1.39 bouyer 2624 1.39 bouyer /* 2625 1.39 bouyer * Channel has been reset. Also mark as reset pending REQUEST_SENSE 2626 1.39 bouyer * commands; as the sense is not available any more. 2627 1.39 bouyer * can't call scsipi_done() from here, as the command has not been 2628 1.39 bouyer * sent to the adapter yet (this would corrupt accounting). 2629 1.39 bouyer */ 2630 1.39 bouyer 2631 1.39 bouyer for (xs = TAILQ_FIRST(&chan->chan_queue); xs != NULL; xs = xs_next) { 2632 1.39 bouyer xs_next = TAILQ_NEXT(xs, channel_q); 2633 1.39 bouyer if (xs->xs_control & XS_CTL_REQSENSE) { 2634 1.39 bouyer TAILQ_REMOVE(&chan->chan_queue, xs, channel_q); 2635 1.39 bouyer xs->error = XS_RESET; 2636 1.39 bouyer if ((xs->xs_control & XS_CTL_ASYNC) != 0) 2637 1.39 bouyer TAILQ_INSERT_TAIL(&chan->chan_complete, xs, 2638 1.39 bouyer channel_q); 2639 1.39 bouyer } 2640 1.39 bouyer } 2641 1.167 mlelstv cv_broadcast(chan_cv_complete(chan)); 2642 1.39 bouyer /* Catch xs with pending sense which may not have a REQSENSE xs yet */ 2643 1.39 bouyer for (target = 0; target < chan->chan_ntargets; target++) { 2644 1.39 bouyer if (target == chan->chan_id) 2645 1.39 bouyer continue; 2646 1.39 bouyer for (lun = 0; lun < chan->chan_nluns; lun++) { 2647 1.168 mlelstv periph = scsipi_lookup_periph_locked(chan, target, lun); 2648 1.39 bouyer if (periph) { 2649 1.39 bouyer xs = periph->periph_xscheck; 2650 1.39 bouyer if (xs) 2651 1.39 bouyer xs->error = XS_RESET; 2652 1.39 bouyer } 2653 1.39 bouyer } 2654 1.39 bouyer } 2655 1.2 bouyer } 2656 1.2 bouyer 2657 1.51 bouyer /* 2658 1.51 bouyer * scsipi_target_detach: 2659 1.51 bouyer * 2660 1.51 bouyer * detach all periph associated with a I_T 2661 1.51 bouyer * must be called from valid thread context 2662 1.51 bouyer */ 2663 1.51 bouyer int 2664 1.108 thorpej scsipi_target_detach(struct scsipi_channel *chan, int target, int lun, 2665 1.108 thorpej int flags) 2666 1.51 bouyer { 2667 1.51 bouyer struct scsipi_periph *periph; 2668 1.176 mlelstv device_t tdev; 2669 1.51 bouyer int ctarget, mintarget, maxtarget; 2670 1.51 bouyer int clun, minlun, maxlun; 2671 1.177 mlelstv int error = 0; 2672 1.51 bouyer 2673 1.51 bouyer if (target == -1) { 2674 1.51 bouyer mintarget = 0; 2675 1.51 bouyer maxtarget = chan->chan_ntargets; 2676 1.51 bouyer } else { 2677 1.51 bouyer if (target == chan->chan_id) 2678 1.51 bouyer return EINVAL; 2679 1.51 bouyer if (target < 0 || target >= chan->chan_ntargets) 2680 1.51 bouyer return EINVAL; 2681 1.51 bouyer mintarget = target; 2682 1.51 bouyer maxtarget = target + 1; 2683 1.51 bouyer } 2684 1.51 bouyer 2685 1.51 bouyer if (lun == -1) { 2686 1.51 bouyer minlun = 0; 2687 1.51 bouyer maxlun = chan->chan_nluns; 2688 1.51 bouyer } else { 2689 1.51 bouyer if (lun < 0 || lun >= chan->chan_nluns) 2690 1.51 bouyer return EINVAL; 2691 1.51 bouyer minlun = lun; 2692 1.51 bouyer maxlun = lun + 1; 2693 1.51 bouyer } 2694 1.51 bouyer 2695 1.176 mlelstv /* for config_detach */ 2696 1.176 mlelstv KERNEL_LOCK(1, curlwp); 2697 1.176 mlelstv 2698 1.176 mlelstv mutex_enter(chan_mtx(chan)); 2699 1.52 yamt for (ctarget = mintarget; ctarget < maxtarget; ctarget++) { 2700 1.51 bouyer if (ctarget == chan->chan_id) 2701 1.51 bouyer continue; 2702 1.51 bouyer 2703 1.51 bouyer for (clun = minlun; clun < maxlun; clun++) { 2704 1.176 mlelstv periph = scsipi_lookup_periph_locked(chan, ctarget, clun); 2705 1.51 bouyer if (periph == NULL) 2706 1.51 bouyer continue; 2707 1.176 mlelstv tdev = periph->periph_dev; 2708 1.176 mlelstv mutex_exit(chan_mtx(chan)); 2709 1.176 mlelstv error = config_detach(tdev, flags); 2710 1.51 bouyer if (error) 2711 1.176 mlelstv goto out; 2712 1.176 mlelstv mutex_enter(chan_mtx(chan)); 2713 1.176 mlelstv KASSERT(scsipi_lookup_periph_locked(chan, ctarget, clun) == NULL); 2714 1.51 bouyer } 2715 1.51 bouyer } 2716 1.176 mlelstv mutex_exit(chan_mtx(chan)); 2717 1.176 mlelstv 2718 1.176 mlelstv out: 2719 1.176 mlelstv KERNEL_UNLOCK_ONE(curlwp); 2720 1.176 mlelstv 2721 1.177 mlelstv return error; 2722 1.51 bouyer } 2723 1.39 bouyer 2724 1.14 thorpej /* 2725 1.39 bouyer * scsipi_adapter_addref: 2726 1.39 bouyer * 2727 1.39 bouyer * Add a reference to the adapter pointed to by the provided 2728 1.39 bouyer * link, enabling the adapter if necessary. 2729 1.14 thorpej */ 2730 1.14 thorpej int 2731 1.108 thorpej scsipi_adapter_addref(struct scsipi_adapter *adapt) 2732 1.14 thorpej { 2733 1.167 mlelstv int error = 0; 2734 1.14 thorpej 2735 1.167 mlelstv if (atomic_inc_uint_nv(&adapt->adapt_refcnt) == 1 2736 1.167 mlelstv && adapt->adapt_enable != NULL) { 2737 1.167 mlelstv scsipi_adapter_lock(adapt); 2738 1.167 mlelstv error = scsipi_adapter_enable(adapt, 1); 2739 1.167 mlelstv scsipi_adapter_unlock(adapt); 2740 1.14 thorpej if (error) 2741 1.167 mlelstv atomic_dec_uint(&adapt->adapt_refcnt); 2742 1.14 thorpej } 2743 1.174 skrll return error; 2744 1.14 thorpej } 2745 1.14 thorpej 2746 1.14 thorpej /* 2747 1.39 bouyer * scsipi_adapter_delref: 2748 1.39 bouyer * 2749 1.39 bouyer * Delete a reference to the adapter pointed to by the provided 2750 1.39 bouyer * link, disabling the adapter if possible. 2751 1.14 thorpej */ 2752 1.14 thorpej void 2753 1.108 thorpej scsipi_adapter_delref(struct scsipi_adapter *adapt) 2754 1.14 thorpej { 2755 1.14 thorpej 2756 1.189 riastrad membar_release(); 2757 1.167 mlelstv if (atomic_dec_uint_nv(&adapt->adapt_refcnt) == 0 2758 1.167 mlelstv && adapt->adapt_enable != NULL) { 2759 1.189 riastrad membar_acquire(); 2760 1.167 mlelstv scsipi_adapter_lock(adapt); 2761 1.167 mlelstv (void) scsipi_adapter_enable(adapt, 0); 2762 1.167 mlelstv scsipi_adapter_unlock(adapt); 2763 1.167 mlelstv } 2764 1.14 thorpej } 2765 1.14 thorpej 2766 1.108 thorpej static struct scsipi_syncparam { 2767 1.39 bouyer int ss_factor; 2768 1.86 thorpej int ss_period; /* ns * 100 */ 2769 1.39 bouyer } scsipi_syncparams[] = { 2770 1.86 thorpej { 0x08, 625 }, /* FAST-160 (Ultra320) */ 2771 1.86 thorpej { 0x09, 1250 }, /* FAST-80 (Ultra160) */ 2772 1.86 thorpej { 0x0a, 2500 }, /* FAST-40 40MHz (Ultra2) */ 2773 1.86 thorpej { 0x0b, 3030 }, /* FAST-40 33MHz (Ultra2) */ 2774 1.86 thorpej { 0x0c, 5000 }, /* FAST-20 (Ultra) */ 2775 1.39 bouyer }; 2776 1.108 thorpej static const int scsipi_nsyncparams = 2777 1.39 bouyer sizeof(scsipi_syncparams) / sizeof(scsipi_syncparams[0]); 2778 1.39 bouyer 2779 1.39 bouyer int 2780 1.108 thorpej scsipi_sync_period_to_factor(int period /* ns * 100 */) 2781 1.39 bouyer { 2782 1.39 bouyer int i; 2783 1.39 bouyer 2784 1.39 bouyer for (i = 0; i < scsipi_nsyncparams; i++) { 2785 1.39 bouyer if (period <= scsipi_syncparams[i].ss_period) 2786 1.174 skrll return scsipi_syncparams[i].ss_factor; 2787 1.39 bouyer } 2788 1.39 bouyer 2789 1.174 skrll return (period / 100) / 4; 2790 1.39 bouyer } 2791 1.39 bouyer 2792 1.39 bouyer int 2793 1.108 thorpej scsipi_sync_factor_to_period(int factor) 2794 1.39 bouyer { 2795 1.39 bouyer int i; 2796 1.39 bouyer 2797 1.39 bouyer for (i = 0; i < scsipi_nsyncparams; i++) { 2798 1.39 bouyer if (factor == scsipi_syncparams[i].ss_factor) 2799 1.174 skrll return scsipi_syncparams[i].ss_period; 2800 1.39 bouyer } 2801 1.39 bouyer 2802 1.174 skrll return (factor * 4) * 100; 2803 1.39 bouyer } 2804 1.39 bouyer 2805 1.39 bouyer int 2806 1.108 thorpej scsipi_sync_factor_to_freq(int factor) 2807 1.39 bouyer { 2808 1.39 bouyer int i; 2809 1.39 bouyer 2810 1.39 bouyer for (i = 0; i < scsipi_nsyncparams; i++) { 2811 1.39 bouyer if (factor == scsipi_syncparams[i].ss_factor) 2812 1.174 skrll return 100000000 / scsipi_syncparams[i].ss_period; 2813 1.39 bouyer } 2814 1.39 bouyer 2815 1.174 skrll return 10000000 / ((factor * 4) * 10); 2816 1.39 bouyer } 2817 1.39 bouyer 2818 1.167 mlelstv static inline void 2819 1.167 mlelstv scsipi_adapter_lock(struct scsipi_adapter *adapt) 2820 1.167 mlelstv { 2821 1.167 mlelstv 2822 1.167 mlelstv if ((adapt->adapt_flags & SCSIPI_ADAPT_MPSAFE) == 0) 2823 1.167 mlelstv KERNEL_LOCK(1, NULL); 2824 1.167 mlelstv } 2825 1.167 mlelstv 2826 1.167 mlelstv static inline void 2827 1.167 mlelstv scsipi_adapter_unlock(struct scsipi_adapter *adapt) 2828 1.167 mlelstv { 2829 1.167 mlelstv 2830 1.167 mlelstv if ((adapt->adapt_flags & SCSIPI_ADAPT_MPSAFE) == 0) 2831 1.167 mlelstv KERNEL_UNLOCK_ONE(NULL); 2832 1.167 mlelstv } 2833 1.167 mlelstv 2834 1.167 mlelstv void 2835 1.167 mlelstv scsipi_adapter_minphys(struct scsipi_channel *chan, struct buf *bp) 2836 1.167 mlelstv { 2837 1.167 mlelstv struct scsipi_adapter *adapt = chan->chan_adapter; 2838 1.167 mlelstv 2839 1.167 mlelstv scsipi_adapter_lock(adapt); 2840 1.167 mlelstv (adapt->adapt_minphys)(bp); 2841 1.167 mlelstv scsipi_adapter_unlock(chan->chan_adapter); 2842 1.167 mlelstv } 2843 1.167 mlelstv 2844 1.167 mlelstv void 2845 1.167 mlelstv scsipi_adapter_request(struct scsipi_channel *chan, 2846 1.167 mlelstv scsipi_adapter_req_t req, void *arg) 2847 1.167 mlelstv 2848 1.167 mlelstv { 2849 1.167 mlelstv struct scsipi_adapter *adapt = chan->chan_adapter; 2850 1.167 mlelstv 2851 1.167 mlelstv scsipi_adapter_lock(adapt); 2852 1.185 riastrad SDT_PROBE3(scsi, base, adapter, request__start, chan, req, arg); 2853 1.167 mlelstv (adapt->adapt_request)(chan, req, arg); 2854 1.185 riastrad SDT_PROBE3(scsi, base, adapter, request__done, chan, req, arg); 2855 1.167 mlelstv scsipi_adapter_unlock(adapt); 2856 1.167 mlelstv } 2857 1.167 mlelstv 2858 1.167 mlelstv int 2859 1.167 mlelstv scsipi_adapter_ioctl(struct scsipi_channel *chan, u_long cmd, 2860 1.167 mlelstv void *data, int flag, struct proc *p) 2861 1.167 mlelstv { 2862 1.167 mlelstv struct scsipi_adapter *adapt = chan->chan_adapter; 2863 1.167 mlelstv int error; 2864 1.167 mlelstv 2865 1.167 mlelstv if (adapt->adapt_ioctl == NULL) 2866 1.167 mlelstv return ENOTTY; 2867 1.167 mlelstv 2868 1.167 mlelstv scsipi_adapter_lock(adapt); 2869 1.167 mlelstv error = (adapt->adapt_ioctl)(chan, cmd, data, flag, p); 2870 1.167 mlelstv scsipi_adapter_unlock(adapt); 2871 1.167 mlelstv return error; 2872 1.167 mlelstv } 2873 1.167 mlelstv 2874 1.167 mlelstv int 2875 1.167 mlelstv scsipi_adapter_enable(struct scsipi_adapter *adapt, int enable) 2876 1.167 mlelstv { 2877 1.167 mlelstv int error; 2878 1.167 mlelstv 2879 1.167 mlelstv scsipi_adapter_lock(adapt); 2880 1.167 mlelstv error = (adapt->adapt_enable)(adapt->adapt_dev, enable); 2881 1.167 mlelstv scsipi_adapter_unlock(adapt); 2882 1.167 mlelstv return error; 2883 1.167 mlelstv } 2884 1.167 mlelstv 2885 1.39 bouyer #ifdef SCSIPI_DEBUG 2886 1.2 bouyer /* 2887 1.162 snj * Given a scsipi_xfer, dump the request, in all its glory 2888 1.2 bouyer */ 2889 1.2 bouyer void 2890 1.108 thorpej show_scsipi_xs(struct scsipi_xfer *xs) 2891 1.2 bouyer { 2892 1.3 enami 2893 1.2 bouyer printf("xs(%p): ", xs); 2894 1.24 thorpej printf("xs_control(0x%08x)", xs->xs_control); 2895 1.24 thorpej printf("xs_status(0x%08x)", xs->xs_status); 2896 1.39 bouyer printf("periph(%p)", xs->xs_periph); 2897 1.39 bouyer printf("retr(0x%x)", xs->xs_retries); 2898 1.2 bouyer printf("timo(0x%x)", xs->timeout); 2899 1.2 bouyer printf("cmd(%p)", xs->cmd); 2900 1.2 bouyer printf("len(0x%x)", xs->cmdlen); 2901 1.2 bouyer printf("data(%p)", xs->data); 2902 1.2 bouyer printf("len(0x%x)", xs->datalen); 2903 1.2 bouyer printf("res(0x%x)", xs->resid); 2904 1.2 bouyer printf("err(0x%x)", xs->error); 2905 1.2 bouyer printf("bp(%p)", xs->bp); 2906 1.2 bouyer show_scsipi_cmd(xs); 2907 1.2 bouyer } 2908 1.2 bouyer 2909 1.2 bouyer void 2910 1.109 bouyer show_scsipi_cmd(struct scsipi_xfer *xs) 2911 1.2 bouyer { 2912 1.126 reinoud u_char *b = (u_char *) xs->cmd; 2913 1.3 enami int i = 0; 2914 1.2 bouyer 2915 1.39 bouyer scsipi_printaddr(xs->xs_periph); 2916 1.39 bouyer printf(" command: "); 2917 1.2 bouyer 2918 1.24 thorpej if ((xs->xs_control & XS_CTL_RESET) == 0) { 2919 1.2 bouyer while (i < xs->cmdlen) { 2920 1.2 bouyer if (i) 2921 1.2 bouyer printf(","); 2922 1.2 bouyer printf("0x%x", b[i++]); 2923 1.2 bouyer } 2924 1.2 bouyer printf("-[%d bytes]\n", xs->datalen); 2925 1.2 bouyer if (xs->datalen) 2926 1.179 riastrad show_mem(xs->data, uimin(64, xs->datalen)); 2927 1.2 bouyer } else 2928 1.2 bouyer printf("-RESET-\n"); 2929 1.2 bouyer } 2930 1.2 bouyer 2931 1.2 bouyer void 2932 1.126 reinoud show_mem(u_char *address, int num) 2933 1.2 bouyer { 2934 1.2 bouyer int x; 2935 1.2 bouyer 2936 1.2 bouyer printf("------------------------------"); 2937 1.2 bouyer for (x = 0; x < num; x++) { 2938 1.2 bouyer if ((x % 16) == 0) 2939 1.2 bouyer printf("\n%03d: ", x); 2940 1.2 bouyer printf("%02x ", *address++); 2941 1.2 bouyer } 2942 1.2 bouyer printf("\n------------------------------\n"); 2943 1.2 bouyer } 2944 1.39 bouyer #endif /* SCSIPI_DEBUG */ 2945