Linux kernel mirror (for testing) git.kernel.org/pub/scm/linux/kernel/git/torvalds/linux.git
kernel os linux
at v2.6.19 5967 lines 171 kB view raw
1/* 2 * sbpcd.c CD-ROM device driver for the whole family of traditional, 3 * non-ATAPI IDE-style Matsushita/Panasonic CR-5xx drives. 4 * Works with SoundBlaster compatible cards and with "no-sound" 5 * interface cards like Lasermate, Panasonic CI-101P, Teac, ... 6 * Also for the Longshine LCS-7260 drive. 7 * Also for the IBM "External ISA CD-Rom" drive. 8 * Also for the CreativeLabs CD200 drive. 9 * Also for the TEAC CD-55A drive. 10 * Also for the ECS-AT "Vertos 100" drive. 11 * Not for Sanyo drives (but for the H94A, sjcd is there...). 12 * Not for any other Funai drives than the CD200 types (sometimes 13 * labelled E2550UA or MK4015 or 2800F). 14 */ 15 16#define VERSION "v4.63 Andrew J. Kroll <ag784@freenet.buffalo.edu> Wed Jul 26 04:24:10 EDT 2000" 17 18/* Copyright (C) 1993, 1994, 1995 Eberhard Moenkeberg <emoenke@gwdg.de> 19 * 20 * This program is free software; you can redistribute it and/or modify 21 * it under the terms of the GNU General Public License as published by 22 * the Free Software Foundation; either version 2, or (at your option) 23 * any later version. 24 * 25 * You should have received a copy of the GNU General Public License 26 * (for example /usr/src/linux/COPYING); if not, write to the Free 27 * Software Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA. 28 * 29 * If you change this software, you should mail a .diff file with some 30 * description lines to emoenke@gwdg.de. I want to know about it. 31 * 32 * If you are the editor of a Linux CD, you should enable sbpcd.c within 33 * your boot floppy kernel and send me one of your CDs for free. 34 * 35 * If you would like to port the driver to an other operating system (f.e. 36 * FreeBSD or NetBSD) or use it as an information source, you shall not be 37 * restricted by the GPL under the following conditions: 38 * a) the source code of your work is freely available 39 * b) my part of the work gets mentioned at all places where your 40 * authorship gets mentioned 41 * c) I receive a copy of your code together with a full installation 42 * package of your operating system for free. 43 * 44 * 45 * VERSION HISTORY 46 * 47 * 0.1 initial release, April/May 93, after mcd.c (Martin Harriss) 48 * 49 * 0.2 thek "repeat:"-loop in do_sbpcd_request did not check for 50 * end-of-request_queue (resulting in kernel panic). 51 * Flow control seems stable, but throughput is not better. 52 * 53 * 0.3 interrupt locking totally eliminated (maybe "inb" and "outb" 54 * are still locking) - 0.2 made keyboard-type-ahead losses. 55 * check_sbpcd_media_change added (to use by isofs/inode.c) 56 * - but it detects almost nothing. 57 * 58 * 0.4 use MAJOR 25 definitely. 59 * Almost total re-design to support double-speed drives and 60 * "naked" (no sound) interface cards ("LaserMate" interface type). 61 * Flow control should be exact now. 62 * Don't occupy the SbPro IRQ line (not needed either); will 63 * live together with Hannu Savolainen's sndkit now. 64 * Speeded up data transfer to 150 kB/sec, with help from Kai 65 * Makisara, the "provider" of the "mt" tape utility. 66 * Give "SpinUp" command if necessary. 67 * First steps to support up to 4 drives (but currently only one). 68 * Implemented audio capabilities - workman should work, xcdplayer 69 * gives some problems. 70 * This version is still consuming too much CPU time, and 71 * sleeping still has to be worked on. 72 * During "long" implied seeks, it seems possible that a 73 * ReadStatus command gets ignored. That gives the message 74 * "ResponseStatus timed out" (happens about 6 times here during 75 * a "ls -alR" of the YGGDRASIL LGX-Beta CD). Such a case is 76 * handled without data error, but it should get done better. 77 * 78 * 0.5 Free CPU during waits (again with help from Kai Makisara). 79 * Made it work together with the LILO/kernel setup standard. 80 * Included auto-probing code, as suggested by YGGDRASIL. 81 * Formal redesign to add DDI debugging. 82 * There are still flaws in IOCTL (workman with double speed drive). 83 * 84 * 1.0 Added support for all drive IDs (0...3, no longer only 0) 85 * and up to 4 drives on one controller. 86 * Added "#define MANY_SESSION" for "old" multi session CDs. 87 * 88 * 1.1 Do SpinUp for new drives, too. 89 * Revised for clean compile under "old" kernels (0.99pl9). 90 * 91 * 1.2 Found the "workman with double-speed drive" bug: use the driver's 92 * audio_state, not what the drive is reporting with ReadSubQ. 93 * 94 * 1.3 Minor cleanups. 95 * Refinements regarding Workman. 96 * 97 * 1.4 Read XA disks (PhotoCDs) with "old" drives, too (but only the first 98 * session - no chance to fully access a "multi-session" CD). 99 * This currently still is too slow (50 kB/sec) - but possibly 100 * the old drives won't do it faster. 101 * Implemented "door (un)lock" for new drives (still does not work 102 * as wanted - no lock possible after an unlock). 103 * Added some debugging printout for the UPC/EAN code - but my drives 104 * return only zeroes. Is there no UPC/EAN code written? 105 * 106 * 1.5 Laborate with UPC/EAN code (not better yet). 107 * Adapt to kernel 1.1.8 change (have to explicitly include 108 * <linux/string.h> now). 109 * 110 * 1.6 Trying to read audio frames as data. Impossible with the current 111 * drive firmware levels, as it seems. Awaiting any hint. ;-) 112 * Changed "door unlock": repeat it until success. 113 * Changed CDROMSTOP routine (stop somewhat "softer" so that Workman 114 * won't get confused). 115 * Added a third interface type: Sequoia S-1000, as used with the SPEA 116 * Media FX sound card. This interface (usable for Sony and Mitsumi 117 * drives, too) needs a special configuration setup and behaves like a 118 * LaserMate type after that. Still experimental - I do not have such 119 * an interface. 120 * Use the "variable BLOCK_SIZE" feature (2048). But it does only work 121 * if you give the mount option "block=2048". 122 * The media_check routine is currently disabled; now that it gets 123 * called as it should I fear it must get synchronized for not to 124 * disturb the normal driver's activity. 125 * 126 * 2.0 Version number bumped - two reasons: 127 * - reading audio tracks as data works now with CR-562 and CR-563. We 128 * currently do it by an IOCTL (yet has to get standardized), one frame 129 * at a time; that is pretty slow. But it works. 130 * - we are maintaining now up to 4 interfaces (each up to 4 drives): 131 * did it the easy way - a different MAJOR (25, 26, ...) and a different 132 * copy of the driver (sbpcd.c, sbpcd2.c, sbpcd3.c, sbpcd4.c - only 133 * distinguished by the value of SBPCD_ISSUE and the driver's name), 134 * and a common sbpcd.h file. 135 * Bettered the "ReadCapacity error" problem with old CR-52x drives (the 136 * drives sometimes need a manual "eject/insert" before work): just 137 * reset the drive and do again. Needs lots of resets here and sometimes 138 * that does not cure, so this can't be the solution. 139 * 140 * 2.1 Found bug with multisession CDs (accessing frame 16). 141 * "read audio" works now with address type CDROM_MSF, too. 142 * Bigger audio frame buffer: allows reading max. 4 frames at time; this 143 * gives a significant speedup, but reading more than one frame at once 144 * gives missing chunks at each single frame boundary. 145 * 146 * 2.2 Kernel interface cleanups: timers, init, setup, media check. 147 * 148 * 2.3 Let "door lock" and "eject" live together. 149 * Implemented "close tray" (done automatically during open). 150 * 151 * 2.4 Use different names for device registering. 152 * 153 * 2.5 Added "#if EJECT" code (default: enabled) to automatically eject 154 * the tray during last call to "sbpcd_release". 155 * Added "#if JUKEBOX" code (default: disabled) to automatically eject 156 * the tray during call to "sbpcd_open" if no disk is in. 157 * Turn on the CD volume of "compatible" sound cards, too; just define 158 * SOUND_BASE (in sbpcd.h) accordingly (default: disabled). 159 * 160 * 2.6 Nothing new. 161 * 162 * 2.7 Added CDROMEJECT_SW ioctl to set the "EJECT" behavior on the fly: 163 * 0 disables, 1 enables auto-ejecting. Useful to keep the tray in 164 * during shutdown. 165 * 166 * 2.8 Added first support (still BETA, I need feedback or a drive) for 167 * the Longshine LCS-7260 drives. They appear as double-speed drives 168 * using the "old" command scheme, extended by tray control and door 169 * lock functions. 170 * Found (and fixed preliminary) a flaw with some multisession CDs: we 171 * have to re-direct not only the accesses to frame 16 (the isofs 172 * routines drive it up to max. 100), but also those to the continuation 173 * (repetition) frames (as far as they exist - currently set fix as 174 * 16..20). 175 * Changed default of the "JUKEBOX" define. If you use this default, 176 * your tray will eject if you try to mount without a disk in. Next 177 * mount command will insert the tray - so, just fill in a disk. ;-) 178 * 179 * 2.9 Fulfilled the Longshine LCS-7260 support; with great help and 180 * experiments by Serge Robyns. 181 * First attempts to support the TEAC CD-55A drives; but still not 182 * usable yet. 183 * Implemented the CDROMMULTISESSION ioctl; this is an attempt to handle 184 * multi session CDs more "transparent" (redirection handling has to be 185 * done within the isofs routines, and only for the special purpose of 186 * obtaining the "right" volume descriptor; accesses to the raw device 187 * should not get redirected). 188 * 189 * 3.0 Just a "normal" increment, with some provisions to do it better. ;-) 190 * Introduced "#define READ_AUDIO" to specify the maximum number of 191 * audio frames to grab with one request. This defines a buffer size 192 * within kernel space; a value of 0 will reserve no such space and 193 * disable the CDROMREADAUDIO ioctl. A value of 75 enables the reading 194 * of a whole second with one command, but will use a buffer of more 195 * than 172 kB. 196 * Started CD200 support. Drive detection should work, but nothing 197 * more. 198 * 199 * 3.1 Working to support the CD200 and the Teac CD-55A drives. 200 * AT-BUS style device numbering no longer used: use SCSI style now. 201 * So, the first "found" device has MINOR 0, regardless of the 202 * jumpered drive ID. This implies modifications to the /dev/sbpcd* 203 * entries for some people, but will help the DAU (german TLA, english: 204 * "newbie", maybe ;-) to install his "first" system from a CD. 205 * 206 * 3.2 Still testing with CD200 and CD-55A drives. 207 * 208 * 3.3 Working with CD200 support. 209 * 210 * 3.4 Auto-probing stops if an address of 0 is seen (to be entered with 211 * the kernel command line). 212 * Made the driver "loadable". If used as a module, "audio copy" is 213 * disabled, and the internal read ahead data buffer has a reduced size 214 * of 4 kB; so, throughput may be reduced a little bit with slow CPUs. 215 * 216 * 3.5 Provisions to handle weird photoCDs which have an interrupted 217 * "formatting" immediately after the last frames of some files: simply 218 * never "read ahead" with MultiSession CDs. By this, CPU usage may be 219 * increased with those CDs, and there may be a loss in speed. 220 * Re-structured the messaging system. 221 * The "loadable" version no longer has a limited READ_AUDIO buffer 222 * size. 223 * Removed "MANY_SESSION" handling for "old" multi session CDs. 224 * Added "private" IOCTLs CDROMRESET and CDROMVOLREAD. 225 * Started again to support the TEAC CD-55A drives, now that I found 226 * the money for "my own" drive. ;-) 227 * The TEAC CD-55A support is fairly working now. 228 * I have measured that the drive "delivers" at 600 kB/sec (even with 229 * bigger requests than the drive's 64 kB buffer can satisfy), but 230 * the "real" rate does not exceed 520 kB/sec at the moment. 231 * Caused by the various changes to build in TEAC support, the timed 232 * loops are de-optimized at the moment (less throughput with CR-52x 233 * drives, and the TEAC will give speed only with SBP_BUFFER_FRAMES 64). 234 * 235 * 3.6 Fixed TEAC data read problems with SbPro interfaces. 236 * Initial size of the READ_AUDIO buffer is 0. Can get set to any size 237 * during runtime. 238 * 239 * 3.7 Introduced MAX_DRIVES for some poor interface cards (seen with TEAC 240 * drives) which allow only one drive (ID 0); this avoids repetitive 241 * detection under IDs 1..3. 242 * Elongated cmd_out_T response waiting; necessary for photo CDs with 243 * a lot of sessions. 244 * Bettered the sbpcd_open() behavior with TEAC drives. 245 * 246 * 3.8 Elongated max_latency for CR-56x drives. 247 * 248 * 3.9 Finally fixed the long-known SoundScape/SPEA/Sequoia S-1000 interface 249 * configuration bug. 250 * Now Corey, Heiko, Ken, Leo, Vadim/Eric & Werner are invited to copy 251 * the config_spea() routine into their drivers. ;-) 252 * 253 * 4.0 No "big step" - normal version increment. 254 * Adapted the benefits from 1.3.33. 255 * Fiddled with CDROMREADAUDIO flaws. 256 * Avoid ReadCapacity command with CD200 drives (the MKE 1.01 version 257 * seems not to support it). 258 * Fulfilled "read audio" for CD200 drives, with help of Pete Heist 259 * (heistp@rpi.edu). 260 * 261 * 4.1 Use loglevel KERN_INFO with printk(). 262 * Added support for "Vertos 100" drive ("ECS-AT") - it is very similar 263 * to the Longshine LCS-7260. Give feedback if you can - I never saw 264 * such a drive, and I have no specs. 265 * 266 * 4.2 Support for Teac 16-bit interface cards. Can't get auto-detected, 267 * so you have to jumper your card to 0x2C0. Still not 100% - come 268 * in contact if you can give qualified feedback. 269 * Use loglevel KERN_NOTICE with printk(). If you get annoyed by a 270 * flood of unwanted messages and the accompanied delay, try to read 271 * my documentation. Especially the Linux CDROM drivers have to do an 272 * important job for the newcomers, so the "distributed" version has 273 * to fit some special needs. Since generations, the flood of messages 274 * is user-configurable (even at runtime), but to get aware of this, one 275 * needs a special mental quality: the ability to read. 276 * 277 * 4.3 CD200F does not like to receive a command while the drive is 278 * reading the ToC; still trying to solve it. 279 * Removed some redundant verify_area calls (yes, Heiko Eissfeldt 280 * is visiting all the Linux CDROM drivers ;-). 281 * 282 * 4.4 Adapted one idea from tiensivu@pilot.msu.edu's "stripping-down" 283 * experiments: "KLOGD_PAUSE". 284 * Inhibited "play audio" attempts with data CDs. Provisions for a 285 * "data-safe" handling of "mixed" (data plus audio) Cds. 286 * 287 * 4.5 Meanwhile Gonzalo Tornaria <tornaria@cmat.edu.uy> (GTL) built a 288 * special end_request routine: we seem to have to take care for not 289 * to have two processes working at the request list. My understanding 290 * was and is that ll_rw_blk should not call do_sbpcd_request as long 291 * as there is still one call active (the first call will care for all 292 * outstanding I/Os, and if a second call happens, that is a bug in 293 * ll_rw_blk.c). 294 * "Check media change" without touching any drive. 295 * 296 * 4.6 Use a semaphore to synchronize multi-activity; elaborated by Rob 297 * Riggs <rriggs@tesser.com>. At the moment, we simply block "read" 298 * against "ioctl" and vice versa. This could be refined further, but 299 * I guess with almost no performance increase. 300 * Experiments to speed up the CD-55A; again with help of Rob Riggs 301 * (to be true, he gave both, idea & code. ;-) 302 * 303 * 4.61 Ported to Uniform CD-ROM driver by 304 * Heiko Eissfeldt <heiko@colossus.escape.de> with additional 305 * changes by Erik Andersen <andersee@debian.org> 306 * 307 * 4.62 Fix a bug where playing audio left the drive in an unusable state. 308 * Heiko Eissfeldt <heiko@colossus.escape.de> 309 * 310 * November 1999 -- Make kernel-parameter implementation work with 2.3.x 311 * Removed init_module & cleanup_module in favor of 312 * module_init & module_exit. 313 * Torben Mathiasen <tmm@image.dk> 314 * 315 * 4.63 Bug fixes for audio annoyances, new legacy CDROM maintainer. 316 * Annoying things fixed: 317 * TOC reread on automated disk changes 318 * TOC reread on manual cd changes 319 * Play IOCTL tries to play CD before it's actually ready... sometimes. 320 * CD_AUDIO_COMPLETED state so workman (and other playes) can repeat play. 321 * Andrew J. Kroll <ag784@freenet.buffalo.edu> Wed Jul 26 04:24:10 EDT 2000 322 * 323 * 4.64 Fix module parameters - were being completely ignored. 324 * Can also specify max_drives=N as a setup int to get rid of 325 * "ghost" drives on crap hardware (aren't they all?) Paul Gortmaker 326 * 327 * TODO 328 * implement "read all subchannel data" (96 bytes per frame) 329 * remove alot of the virtual status bits and deal with hardware status 330 * move the change of cd for audio to a better place 331 * add debug levels to insmod parameters (trivial) 332 * 333 * special thanks to Kai Makisara (kai.makisara@vtt.fi) for his fine 334 * elaborated speed-up experiments (and the fabulous results!), for 335 * the "push" towards load-free wait loops, and for the extensive mail 336 * thread which brought additional hints and bug fixes. 337 * 338 */ 339 340/* 341 * Trying to merge requests breaks this driver horribly (as in it goes 342 * boom and apparently has done so since 2.3.41). As it is a legacy 343 * driver for a horribly slow double speed CD on a hideous interface 344 * designed for polled operation, I won't lose any sleep in simply 345 * disallowing merging. Paul G. 02/2001 346 * 347 * Thu May 30 14:14:47 CEST 2002: 348 * 349 * I have presumably found the reson for the above - there was a bogous 350 * end_request substitute, which was manipulating the request queues 351 * incorrectly. If someone has access to the actual hardware, and it's 352 * still operations - well please free to test it. 353 * 354 * Marcin Dalecki 355 */ 356 357/* 358 * Add bio/kdev_t changes for 2.5.x required to make it work again. 359 * Still room for improvement in the request handling here if anyone 360 * actually cares. Bring your own chainsaw. Paul G. 02/2002 361 */ 362 363 364#include <linux/module.h> 365 366#include <linux/errno.h> 367#include <linux/sched.h> 368#include <linux/mm.h> 369#include <linux/timer.h> 370#include <linux/fs.h> 371#include <linux/kernel.h> 372#include <linux/cdrom.h> 373#include <linux/ioport.h> 374#include <linux/major.h> 375#include <linux/string.h> 376#include <linux/vmalloc.h> 377#include <linux/init.h> 378#include <linux/interrupt.h> 379 380#include <asm/system.h> 381#include <asm/io.h> 382#include <asm/uaccess.h> 383#include <stdarg.h> 384#include "sbpcd.h" 385 386#define MAJOR_NR MATSUSHITA_CDROM_MAJOR 387#include <linux/blkdev.h> 388 389/*==========================================================================*/ 390#if SBPCD_DIS_IRQ 391# define SBPCD_CLI cli() 392# define SBPCD_STI sti() 393#else 394# define SBPCD_CLI 395# define SBPCD_STI 396#endif 397 398/*==========================================================================*/ 399/* 400 * auto-probing address list 401 * inspired by Adam J. Richter from Yggdrasil 402 * 403 * still not good enough - can cause a hang. 404 * example: a NE 2000 ethernet card at 300 will cause a hang probing 310. 405 * if that happens, reboot and use the LILO (kernel) command line. 406 * The possibly conflicting ethernet card addresses get NOT probed 407 * by default - to minimize the hang possibilities. 408 * 409 * The SB Pro addresses get "mirrored" at 0x6xx and some more locations - to 410 * avoid a type error, the 0x2xx-addresses must get checked before 0x6xx. 411 * 412 * send mail to emoenke@gwdg.de if your interface card is not FULLY 413 * represented here. 414 */ 415static int sbpcd[] = 416{ 417 CDROM_PORT, SBPRO, /* probe with user's setup first */ 418#if DISTRIBUTION 419 0x230, 1, /* Soundblaster Pro and 16 (default) */ 420#if 0 421 0x300, 0, /* CI-101P (default), WDH-7001C (default), 422 Galaxy (default), Reveal (one default) */ 423 0x250, 1, /* OmniCD default, Soundblaster Pro and 16 */ 424 0x2C0, 3, /* Teac 16-bit cards */ 425 0x260, 1, /* OmniCD */ 426 0x320, 0, /* Lasermate, CI-101P, WDH-7001C, Galaxy, Reveal (other default), 427 Longshine LCS-6853 (default) */ 428 0x338, 0, /* Reveal Sound Wave 32 card model #SC600 */ 429 0x340, 0, /* Mozart sound card (default), Lasermate, CI-101P */ 430 0x360, 0, /* Lasermate, CI-101P */ 431 0x270, 1, /* Soundblaster 16 */ 432 0x670, 0, /* "sound card #9" */ 433 0x690, 0, /* "sound card #9" */ 434 0x338, 2, /* SPEA Media FX, Ensonic SoundScape (default) */ 435 0x328, 2, /* SPEA Media FX */ 436 0x348, 2, /* SPEA Media FX */ 437 0x634, 0, /* some newer sound cards */ 438 0x638, 0, /* some newer sound cards */ 439 0x230, 1, /* some newer sound cards */ 440 /* due to incomplete address decoding of the SbPro card, these must be last */ 441 0x630, 0, /* "sound card #9" (default) */ 442 0x650, 0, /* "sound card #9" */ 443#ifdef MODULE 444 /* 445 * some "hazardous" locations (no harm with the loadable version) 446 * (will stop the bus if a NE2000 ethernet card resides at offset -0x10) 447 */ 448 0x330, 0, /* Lasermate, CI-101P, WDH-7001C */ 449 0x350, 0, /* Lasermate, CI-101P */ 450 0x358, 2, /* SPEA Media FX */ 451 0x370, 0, /* Lasermate, CI-101P */ 452 0x290, 1, /* Soundblaster 16 */ 453 0x310, 0, /* Lasermate, CI-101P, WDH-7001C */ 454#endif /* MODULE */ 455#endif 456#endif /* DISTRIBUTION */ 457}; 458 459/* 460 * Protects access to global structures etc. 461 */ 462static __cacheline_aligned DEFINE_SPINLOCK(sbpcd_lock); 463static struct request_queue *sbpcd_queue; 464 465/* You can only set the first pair, from old MODULE_PARM code. */ 466static int sbpcd_set(const char *val, struct kernel_param *kp) 467{ 468 get_options((char *)val, 2, (int *)sbpcd); 469 return 0; 470} 471module_param_call(sbpcd, sbpcd_set, NULL, NULL, 0); 472 473#define NUM_PROBE (sizeof(sbpcd) / sizeof(int)) 474 475/*==========================================================================*/ 476 477#define INLINE inline 478 479/*==========================================================================*/ 480/* 481 * the forward references: 482 */ 483static void sbp_sleep(u_int); 484static void mark_timeout_delay(u_long); 485static void mark_timeout_data(u_long); 486#if 0 487static void mark_timeout_audio(u_long); 488#endif 489static void sbp_read_cmd(struct request *req); 490static int sbp_data(struct request *req); 491static int cmd_out(void); 492static int DiskInfo(void); 493 494/*==========================================================================*/ 495 496/* 497 * pattern for printk selection: 498 * 499 * (1<<DBG_INF) necessary information 500 * (1<<DBG_BSZ) BLOCK_SIZE trace 501 * (1<<DBG_REA) "read" status trace 502 * (1<<DBG_CHK) "media check" trace 503 * (1<<DBG_TIM) datarate timer test 504 * (1<<DBG_INI) initialization trace 505 * (1<<DBG_TOC) tell TocEntry values 506 * (1<<DBG_IOC) ioctl trace 507 * (1<<DBG_STA) "ResponseStatus" trace 508 * (1<<DBG_ERR) "cc_ReadError" trace 509 * (1<<DBG_CMD) "cmd_out" trace 510 * (1<<DBG_WRN) give explanation before auto-probing 511 * (1<<DBG_MUL) multi session code test 512 * (1<<DBG_IDX) "drive_id != 0" test code 513 * (1<<DBG_IOX) some special information 514 * (1<<DBG_DID) drive ID test 515 * (1<<DBG_RES) drive reset info 516 * (1<<DBG_SPI) SpinUp test info 517 * (1<<DBG_IOS) ioctl trace: "subchannel" 518 * (1<<DBG_IO2) ioctl trace: general 519 * (1<<DBG_UPC) show UPC info 520 * (1<<DBG_XA1) XA mode debugging 521 * (1<<DBG_LCK) door (un)lock info 522 * (1<<DBG_SQ1) dump SubQ frame 523 * (1<<DBG_AUD) "read audio" debugging 524 * (1<<DBG_SEQ) Sequoia interface configuration trace 525 * (1<<DBG_LCS) Longshine LCS-7260 debugging trace 526 * (1<<DBG_CD2) MKE/Funai CD200 debugging trace 527 * (1<<DBG_TEA) TEAC CD-55A debugging trace 528 * (1<<DBG_ECS) ECS-AT (Vertos-100) debugging trace 529 * (1<<DBG_000) unnecessary information 530 */ 531#if DISTRIBUTION 532static int sbpcd_debug = (1<<DBG_INF); 533#else 534static int sbpcd_debug = 0 & ((1<<DBG_INF) | 535 (1<<DBG_TOC) | 536 (1<<DBG_MUL) | 537 (1<<DBG_UPC)); 538#endif /* DISTRIBUTION */ 539 540static int sbpcd_ioaddr = CDROM_PORT; /* default I/O base address */ 541static int sbpro_type = SBPRO; 542static unsigned char f_16bit; 543static unsigned char do_16bit; 544static int CDo_command, CDo_reset; 545static int CDo_sel_i_d, CDo_enable; 546static int CDi_info, CDi_status, CDi_data; 547static struct cdrom_msf msf; 548static struct cdrom_ti ti; 549static struct cdrom_tochdr tochdr; 550static struct cdrom_tocentry tocentry; 551static struct cdrom_subchnl SC; 552static struct cdrom_volctrl volctrl; 553static struct cdrom_read_audio read_audio; 554 555static unsigned char msgnum; 556static char msgbuf[80]; 557 558static int max_drives = MAX_DRIVES; 559module_param(max_drives, int, 0); 560#ifndef MODULE 561static unsigned char setup_done; 562static const char *str_sb_l = "soundblaster"; 563static const char *str_sp_l = "spea"; 564static const char *str_ss_l = "soundscape"; 565static const char *str_t16_l = "teac16bit"; 566static const char *str_ss = "SoundScape"; 567#endif 568static const char *str_sb = "SoundBlaster"; 569static const char *str_lm = "LaserMate"; 570static const char *str_sp = "SPEA"; 571static const char *str_t16 = "Teac16bit"; 572static const char *type; 573static const char *major_name="sbpcd"; 574 575/*==========================================================================*/ 576 577#ifdef FUTURE 578static DECLARE_WAIT_QUEUE_HEAD(sbp_waitq); 579#endif /* FUTURE */ 580 581static int teac=SBP_TEAC_SPEED; 582static int buffers=SBP_BUFFER_FRAMES; 583 584static u_char family0[]="MATSHITA"; /* MKE CR-521, CR-522, CR-523 */ 585static u_char family1[]="CR-56"; /* MKE CR-562, CR-563 */ 586static u_char family2[]="CD200"; /* MKE CD200, Funai CD200F */ 587static u_char familyL[]="LCS-7260"; /* Longshine LCS-7260 */ 588static u_char familyT[]="CD-55"; /* TEAC CD-55A */ 589static u_char familyV[]="ECS-AT"; /* ECS Vertos 100 */ 590 591static u_int recursion; /* internal testing only */ 592static u_int fatal_err; /* internal testing only */ 593static u_int response_count; 594static u_int flags_cmd_out; 595static u_char cmd_type; 596static u_char drvcmd[10]; 597static u_char infobuf[20]; 598static u_char xa_head_buf[CD_XA_HEAD]; 599static u_char xa_tail_buf[CD_XA_TAIL]; 600 601#if OLD_BUSY 602static volatile u_char busy_data; 603static volatile u_char busy_audio; /* true semaphores would be safer */ 604#endif /* OLD_BUSY */ 605static DECLARE_MUTEX(ioctl_read_sem); 606static u_long timeout; 607static volatile u_char timed_out_delay; 608static volatile u_char timed_out_data; 609#if 0 610static volatile u_char timed_out_audio; 611#endif 612static u_int datarate= 1000000; 613static u_int maxtim16=16000000; 614static u_int maxtim04= 4000000; 615static u_int maxtim02= 2000000; 616static u_int maxtim_8= 30000; 617#if LONG_TIMING 618static u_int maxtim_data= 9000; 619#else 620static u_int maxtim_data= 3000; 621#endif /* LONG_TIMING */ 622#if DISTRIBUTION 623static int n_retries=6; 624#else 625static int n_retries=6; 626#endif 627/*==========================================================================*/ 628 629static int ndrives; 630static u_char drv_pattern[NR_SBPCD]={speed_auto,speed_auto,speed_auto,speed_auto}; 631 632/*==========================================================================*/ 633/* 634 * drive space begins here (needed separate for each unit) 635 */ 636static struct sbpcd_drive { 637 char drv_id; /* "jumpered" drive ID or -1 */ 638 char drv_sel; /* drive select lines bits */ 639 640 char drive_model[9]; 641 u_char firmware_version[4]; 642 char f_eject; /* auto-eject flag: 0 or 1 */ 643 u_char *sbp_buf; /* Pointer to internal data buffer, 644 space allocated during sbpcd_init() */ 645 u_int sbp_bufsiz; /* size of sbp_buf (# of frames) */ 646 int sbp_first_frame; /* First frame in buffer */ 647 int sbp_last_frame; /* Last frame in buffer */ 648 int sbp_read_frames; /* Number of frames being read to buffer */ 649 int sbp_current; /* Frame being currently read */ 650 651 u_char mode; /* read_mode: READ_M1, READ_M2, READ_SC, READ_AU */ 652 u_char *aud_buf; /* Pointer to audio data buffer, 653 space allocated during sbpcd_init() */ 654 u_int sbp_audsiz; /* size of aud_buf (# of raw frames) */ 655 u_int drv_type; 656 u_char drv_options; 657 int status_bits; 658 u_char diskstate_flags; 659 u_char sense_byte; 660 661 u_char CD_changed; 662 char open_count; 663 u_char error_byte; 664 665 u_char f_multisession; 666 u_int lba_multi; 667 int first_session; 668 int last_session; 669 int track_of_last_session; 670 671 u_char audio_state; 672 u_int pos_audio_start; 673 u_int pos_audio_end; 674 char vol_chan0; 675 u_char vol_ctrl0; 676 char vol_chan1; 677 u_char vol_ctrl1; 678#if 000 /* no supported drive has it */ 679 char vol_chan2; 680 u_char vol_ctrl2; 681 char vol_chan3; 682 u_char vol_ctrl3; 683#endif /*000 */ 684 u_char volume_control; /* TEAC on/off bits */ 685 686 u_char SubQ_ctl_adr; 687 u_char SubQ_trk; 688 u_char SubQ_pnt_idx; 689 u_int SubQ_run_tot; 690 u_int SubQ_run_trk; 691 u_char SubQ_whatisthis; 692 693 u_char UPC_ctl_adr; 694 u_char UPC_buf[7]; 695 696 int frame_size; 697 int CDsize_frm; 698 699 u_char xa_byte; /* 0x20: XA capabilities */ 700 u_char n_first_track; /* binary */ 701 u_char n_last_track; /* binary (not bcd), 0x01...0x63 */ 702 u_int size_msf; /* time of whole CD, position of LeadOut track */ 703 u_int size_blk; 704 705 u_char TocEnt_nixbyte; /* em */ 706 u_char TocEnt_ctl_adr; 707 u_char TocEnt_number; 708 u_char TocEnt_format; /* em */ 709 u_int TocEnt_address; 710#ifdef SAFE_MIXED 711 char has_data; 712#endif /* SAFE_MIXED */ 713 u_char ored_ctl_adr; /* to detect if CDROM contains data tracks */ 714 715 struct { 716 u_char nixbyte; /* em */ 717 u_char ctl_adr; /* 0x4x: data, 0x0x: audio */ 718 u_char number; 719 u_char format; /* em */ /* 0x00: lba, 0x01: msf */ 720 u_int address; 721 } TocBuffer[MAX_TRACKS+1]; /* last entry faked */ 722 723 int in_SpinUp; /* CR-52x test flag */ 724 int n_bytes; /* TEAC awaited response count */ 725 u_char error_state, b3, b4; /* TEAC command error state */ 726 u_char f_drv_error; /* TEAC command error flag */ 727 u_char speed_byte; 728 int frmsiz; 729 u_char f_XA; /* 1: XA */ 730 u_char type_byte; /* 0, 1, 3 */ 731 u_char mode_xb_6; 732 u_char mode_yb_7; 733 u_char mode_xb_8; 734 u_char delay; 735 struct cdrom_device_info *sbpcd_infop; 736 struct gendisk *disk; 737} D_S[NR_SBPCD]; 738 739static struct sbpcd_drive *current_drive = D_S; 740 741/* 742 * drive space ends here (needed separate for each unit) 743 */ 744/*==========================================================================*/ 745#if 0 746unsigned long cli_sti; /* for saving the processor flags */ 747#endif 748/*==========================================================================*/ 749static DEFINE_TIMER(delay_timer, mark_timeout_delay, 0, 0); 750static DEFINE_TIMER(data_timer, mark_timeout_data, 0, 0); 751#if 0 752static DEFINE_TIMER(audio_timer, mark_timeout_audio, 0, 0); 753#endif 754/*==========================================================================*/ 755/* 756 * DDI interface 757 */ 758static void msg(int level, const char *fmt, ...) 759{ 760#if DISTRIBUTION 761#define MSG_LEVEL KERN_NOTICE 762#else 763#define MSG_LEVEL KERN_INFO 764#endif /* DISTRIBUTION */ 765 766 char buf[256]; 767 va_list args; 768 769 if (!(sbpcd_debug&(1<<level))) return; 770 771 msgnum++; 772 if (msgnum>99) msgnum=0; 773 sprintf(buf, MSG_LEVEL "%s-%d [%02d]: ", major_name, current_drive - D_S, msgnum); 774 va_start(args, fmt); 775 vsprintf(&buf[18], fmt, args); 776 va_end(args); 777 printk(buf); 778#if KLOGD_PAUSE 779 sbp_sleep(KLOGD_PAUSE); /* else messages get lost */ 780#endif /* KLOGD_PAUSE */ 781 return; 782} 783/*==========================================================================*/ 784/* 785 * DDI interface: runtime trace bit pattern maintenance 786 */ 787static int sbpcd_dbg_ioctl(unsigned long arg, int level) 788{ 789 switch(arg) 790 { 791 case 0: /* OFF */ 792 sbpcd_debug = DBG_INF; 793 break; 794 795 default: 796 if (arg>=128) sbpcd_debug &= ~(1<<(arg-128)); 797 else sbpcd_debug |= (1<<arg); 798 } 799 return (arg); 800} 801/*==========================================================================*/ 802static void mark_timeout_delay(u_long i) 803{ 804 timed_out_delay=1; 805#if 0 806 msg(DBG_TIM,"delay timer expired.\n"); 807#endif 808} 809/*==========================================================================*/ 810static void mark_timeout_data(u_long i) 811{ 812 timed_out_data=1; 813#if 0 814 msg(DBG_TIM,"data timer expired.\n"); 815#endif 816} 817/*==========================================================================*/ 818#if 0 819static void mark_timeout_audio(u_long i) 820{ 821 timed_out_audio=1; 822#if 0 823 msg(DBG_TIM,"audio timer expired.\n"); 824#endif 825} 826#endif 827/*==========================================================================*/ 828/* 829 * Wait a little while (used for polling the drive). 830 */ 831static void sbp_sleep(u_int time) 832{ 833 sti(); 834 schedule_timeout_interruptible(time); 835 sti(); 836} 837/*==========================================================================*/ 838#define RETURN_UP(rc) {up(&ioctl_read_sem); return(rc);} 839/*==========================================================================*/ 840/* 841 * convert logical_block_address to m-s-f_number (3 bytes only) 842 */ 843static INLINE void lba2msf(int lba, u_char *msf) 844{ 845 lba += CD_MSF_OFFSET; 846 msf[0] = lba / (CD_SECS*CD_FRAMES); 847 lba %= CD_SECS*CD_FRAMES; 848 msf[1] = lba / CD_FRAMES; 849 msf[2] = lba % CD_FRAMES; 850} 851/*==========================================================================*/ 852/*==========================================================================*/ 853/* 854 * convert msf-bin to msf-bcd 855 */ 856static INLINE void bin2bcdx(u_char *p) /* must work only up to 75 or 99 */ 857{ 858 *p=((*p/10)<<4)|(*p%10); 859} 860/*==========================================================================*/ 861static INLINE u_int blk2msf(u_int blk) 862{ 863 MSF msf; 864 u_int mm; 865 866 msf.c[3] = 0; 867 msf.c[2] = (blk + CD_MSF_OFFSET) / (CD_SECS * CD_FRAMES); 868 mm = (blk + CD_MSF_OFFSET) % (CD_SECS * CD_FRAMES); 869 msf.c[1] = mm / CD_FRAMES; 870 msf.c[0] = mm % CD_FRAMES; 871 return (msf.n); 872} 873/*==========================================================================*/ 874static INLINE u_int make16(u_char rh, u_char rl) 875{ 876 return ((rh<<8)|rl); 877} 878/*==========================================================================*/ 879static INLINE u_int make32(u_int rh, u_int rl) 880{ 881 return ((rh<<16)|rl); 882} 883/*==========================================================================*/ 884static INLINE u_char swap_nibbles(u_char i) 885{ 886 return ((i<<4)|(i>>4)); 887} 888/*==========================================================================*/ 889static INLINE u_char byt2bcd(u_char i) 890{ 891 return (((i/10)<<4)+i%10); 892} 893/*==========================================================================*/ 894static INLINE u_char bcd2bin(u_char bcd) 895{ 896 return ((bcd>>4)*10+(bcd&0x0F)); 897} 898/*==========================================================================*/ 899static INLINE int msf2blk(int msfx) 900{ 901 MSF msf; 902 int i; 903 904 msf.n=msfx; 905 i=(msf.c[2] * CD_SECS + msf.c[1]) * CD_FRAMES + msf.c[0] - CD_MSF_OFFSET; 906 if (i<0) return (0); 907 return (i); 908} 909/*==========================================================================*/ 910/* 911 * convert m-s-f_number (3 bytes only) to logical_block_address 912 */ 913static INLINE int msf2lba(u_char *msf) 914{ 915 int i; 916 917 i=(msf[0] * CD_SECS + msf[1]) * CD_FRAMES + msf[2] - CD_MSF_OFFSET; 918 if (i<0) return (0); 919 return (i); 920} 921/*==========================================================================*/ 922/* evaluate cc_ReadError code */ 923static int sta2err(int sta) 924{ 925 if (famT_drive) 926 { 927 if (sta==0x00) return (0); 928 if (sta==0x01) return (-604); /* CRC error */ 929 if (sta==0x02) return (-602); /* drive not ready */ 930 if (sta==0x03) return (-607); /* unknown media */ 931 if (sta==0x04) return (-612); /* general failure */ 932 if (sta==0x05) return (0); 933 if (sta==0x06) return (-ERR_DISKCHANGE); /* disk change */ 934 if (sta==0x0b) return (-612); /* general failure */ 935 if (sta==0xff) return (-612); /* general failure */ 936 return (0); 937 } 938 else 939 { 940 if (sta<=2) return (sta); 941 if (sta==0x05) return (-604); /* CRC error */ 942 if (sta==0x06) return (-606); /* seek error */ 943 if (sta==0x0d) return (-606); /* seek error */ 944 if (sta==0x0e) return (-603); /* unknown command */ 945 if (sta==0x14) return (-603); /* unknown command */ 946 if (sta==0x0c) return (-611); /* read fault */ 947 if (sta==0x0f) return (-611); /* read fault */ 948 if (sta==0x10) return (-611); /* read fault */ 949 if (sta>=0x16) return (-612); /* general failure */ 950 if (sta==0x11) return (-ERR_DISKCHANGE); /* disk change (LCS: removed) */ 951 if (famL_drive) 952 if (sta==0x12) return (-ERR_DISKCHANGE); /* disk change (inserted) */ 953 return (-602); /* drive not ready */ 954 } 955} 956/*==========================================================================*/ 957static INLINE void clr_cmdbuf(void) 958{ 959 int i; 960 961 for (i=0;i<10;i++) drvcmd[i]=0; 962 cmd_type=0; 963} 964/*==========================================================================*/ 965static void flush_status(void) 966{ 967 int i; 968 969 sbp_sleep(15*HZ/10); 970 for (i=maxtim_data;i!=0;i--) inb(CDi_status); 971} 972/*====================================================================*/ 973/* 974 * CDi status loop for Teac CD-55A (Rob Riggs) 975 * 976 * This is needed because for some strange reason 977 * the CD-55A can take a real long time to give a 978 * status response. This seems to happen after we 979 * issue a READ command where a long seek is involved. 980 * 981 * I tried to ensure that we get max throughput with 982 * minimal busy waiting. We busy wait at first, then 983 * "switch gears" and start sleeping. We sleep for 984 * longer periods of time the longer we wait. 985 * 986 */ 987static int CDi_stat_loop_T(void) 988{ 989 int i, gear=1; 990 u_long timeout_1, timeout_2, timeout_3, timeout_4; 991 992 timeout_1 = jiffies + HZ / 50; /* sbp_sleep(0) for a short period */ 993 timeout_2 = jiffies + HZ / 5; /* nap for no more than 200ms */ 994 timeout_3 = jiffies + 5 * HZ; /* sleep for up to 5s */ 995 timeout_4 = jiffies + 45 * HZ; /* long sleep for up to 45s. */ 996 do 997 { 998 i = inb(CDi_status); 999 if (!(i&s_not_data_ready)) return (i); 1000 if (!(i&s_not_result_ready)) return (i); 1001 switch(gear) 1002 { 1003 case 4: 1004 sbp_sleep(HZ); 1005 if (time_after(jiffies, timeout_4)) gear++; 1006 msg(DBG_TEA, "CDi_stat_loop_T: long sleep active.\n"); 1007 break; 1008 case 3: 1009 sbp_sleep(HZ/10); 1010 if (time_after(jiffies, timeout_3)) gear++; 1011 break; 1012 case 2: 1013 sbp_sleep(HZ/100); 1014 if (time_after(jiffies, timeout_2)) gear++; 1015 break; 1016 case 1: 1017 sbp_sleep(0); 1018 if (time_after(jiffies, timeout_1)) gear++; 1019 } 1020 } while (gear < 5); 1021 return -1; 1022} 1023/*==========================================================================*/ 1024static int CDi_stat_loop(void) 1025{ 1026 int i,j; 1027 1028 for(timeout = jiffies + 10*HZ, i=maxtim_data; time_before(jiffies, timeout); ) 1029 { 1030 for ( ;i!=0;i--) 1031 { 1032 j=inb(CDi_status); 1033 if (!(j&s_not_data_ready)) return (j); 1034 if (!(j&s_not_result_ready)) return (j); 1035 if (fam0L_drive) if (j&s_attention) return (j); 1036 } 1037 sbp_sleep(1); 1038 i = 1; 1039 } 1040 msg(DBG_LCS,"CDi_stat_loop failed in line %d\n", __LINE__); 1041 return (-1); 1042} 1043/*==========================================================================*/ 1044#if 00000 1045/*==========================================================================*/ 1046static int tst_DataReady(void) 1047{ 1048 int i; 1049 1050 i=inb(CDi_status); 1051 if (i&s_not_data_ready) return (0); 1052 return (1); 1053} 1054/*==========================================================================*/ 1055static int tst_ResultReady(void) 1056{ 1057 int i; 1058 1059 i=inb(CDi_status); 1060 if (i&s_not_result_ready) return (0); 1061 return (1); 1062} 1063/*==========================================================================*/ 1064static int tst_Attention(void) 1065{ 1066 int i; 1067 1068 i=inb(CDi_status); 1069 if (i&s_attention) return (1); 1070 return (0); 1071} 1072/*==========================================================================*/ 1073#endif 1074/*==========================================================================*/ 1075static int ResponseInfo(void) 1076{ 1077 int i,j,st=0; 1078 u_long timeout; 1079 1080 for (i=0,timeout=jiffies+HZ;i<response_count;i++) 1081 { 1082 for (j=maxtim_data; ; ) 1083 { 1084 for ( ;j!=0;j-- ) 1085 { 1086 st=inb(CDi_status); 1087 if (!(st&s_not_result_ready)) break; 1088 } 1089 if ((j!=0)||time_after_eq(jiffies, timeout)) break; 1090 sbp_sleep(1); 1091 j = 1; 1092 } 1093 if (time_after_eq(jiffies, timeout)) break; 1094 infobuf[i]=inb(CDi_info); 1095 } 1096#if 000 1097 while (!(inb(CDi_status)&s_not_result_ready)) 1098 { 1099 infobuf[i++]=inb(CDi_info); 1100 } 1101 j=i-response_count; 1102 if (j>0) msg(DBG_INF,"ResponseInfo: got %d trailing bytes.\n",j); 1103#endif /* 000 */ 1104 for (j=0;j<i;j++) 1105 sprintf(&msgbuf[j*3]," %02X",infobuf[j]); 1106 msgbuf[j*3]=0; 1107 msg(DBG_CMD,"ResponseInfo:%s (%d,%d)\n",msgbuf,response_count,i); 1108 j=response_count-i; 1109 if (j>0) return (-j); 1110 else return (i); 1111} 1112/*==========================================================================*/ 1113static void EvaluateStatus(int st) 1114{ 1115 current_drive->status_bits=0; 1116 if (fam1_drive) current_drive->status_bits=st|p_success; 1117 else if (fam0_drive) 1118 { 1119 if (st&p_caddin_old) current_drive->status_bits |= p_door_closed|p_caddy_in; 1120 if (st&p_spinning) current_drive->status_bits |= p_spinning; 1121 if (st&p_check) current_drive->status_bits |= p_check; 1122 if (st&p_success_old) current_drive->status_bits |= p_success; 1123 if (st&p_busy_old) current_drive->status_bits |= p_busy_new; 1124 if (st&p_disk_ok) current_drive->status_bits |= p_disk_ok; 1125 } 1126 else if (famLV_drive) 1127 { 1128 current_drive->status_bits |= p_success; 1129 if (st&p_caddin_old) current_drive->status_bits |= p_disk_ok|p_caddy_in; 1130 if (st&p_spinning) current_drive->status_bits |= p_spinning; 1131 if (st&p_check) current_drive->status_bits |= p_check; 1132 if (st&p_busy_old) current_drive->status_bits |= p_busy_new; 1133 if (st&p_lcs_door_closed) current_drive->status_bits |= p_door_closed; 1134 if (st&p_lcs_door_locked) current_drive->status_bits |= p_door_locked; 1135 } 1136 else if (fam2_drive) 1137 { 1138 current_drive->status_bits |= p_success; 1139 if (st&p2_check) current_drive->status_bits |= p1_check; 1140 if (st&p2_door_closed) current_drive->status_bits |= p1_door_closed; 1141 if (st&p2_disk_in) current_drive->status_bits |= p1_disk_in; 1142 if (st&p2_busy1) current_drive->status_bits |= p1_busy; 1143 if (st&p2_busy2) current_drive->status_bits |= p1_busy; 1144 if (st&p2_spinning) current_drive->status_bits |= p1_spinning; 1145 if (st&p2_door_locked) current_drive->status_bits |= p1_door_locked; 1146 if (st&p2_disk_ok) current_drive->status_bits |= p1_disk_ok; 1147 } 1148 else if (famT_drive) 1149 { 1150 return; /* still needs to get coded */ 1151 current_drive->status_bits |= p_success; 1152 if (st&p2_check) current_drive->status_bits |= p1_check; 1153 if (st&p2_door_closed) current_drive->status_bits |= p1_door_closed; 1154 if (st&p2_disk_in) current_drive->status_bits |= p1_disk_in; 1155 if (st&p2_busy1) current_drive->status_bits |= p1_busy; 1156 if (st&p2_busy2) current_drive->status_bits |= p1_busy; 1157 if (st&p2_spinning) current_drive->status_bits |= p1_spinning; 1158 if (st&p2_door_locked) current_drive->status_bits |= p1_door_locked; 1159 if (st&p2_disk_ok) current_drive->status_bits |= p1_disk_ok; 1160 } 1161 return; 1162} 1163/*==========================================================================*/ 1164static int cmd_out_T(void); 1165 1166static int get_state_T(void) 1167{ 1168 int i; 1169 1170 clr_cmdbuf(); 1171 current_drive->n_bytes=1; 1172 drvcmd[0]=CMDT_STATUS; 1173 i=cmd_out_T(); 1174 if (i>=0) i=infobuf[0]; 1175 else 1176 { 1177 msg(DBG_TEA,"get_state_T error %d\n", i); 1178 return (i); 1179 } 1180 if (i>=0) 1181 /* 2: closed, disk in */ 1182 current_drive->status_bits=p1_door_closed|p1_disk_in|p1_spinning|p1_disk_ok; 1183 else if (current_drive->error_state==6) 1184 { 1185 /* 3: closed, disk in, changed ("06 xx xx") */ 1186 current_drive->status_bits=p1_door_closed|p1_disk_in; 1187 current_drive->CD_changed=0xFF; 1188 current_drive->diskstate_flags &= ~toc_bit; 1189 } 1190 else if ((current_drive->error_state!=2)||(current_drive->b3!=0x3A)||(current_drive->b4==0x00)) 1191 { 1192 /* 1: closed, no disk ("xx yy zz"or "02 3A 00") */ 1193 current_drive->status_bits=p1_door_closed; 1194 current_drive->open_count=0; 1195 } 1196 else if (current_drive->b4==0x01) 1197 { 1198 /* 0: open ("02 3A 01") */ 1199 current_drive->status_bits=0; 1200 current_drive->open_count=0; 1201 } 1202 else 1203 { 1204 /* 1: closed, no disk ("02 3A xx") */ 1205 current_drive->status_bits=p1_door_closed; 1206 current_drive->open_count=0; 1207 } 1208 return (current_drive->status_bits); 1209} 1210/*==========================================================================*/ 1211static int ResponseStatus(void) 1212{ 1213 int i,j; 1214 u_long timeout; 1215 1216 msg(DBG_STA,"doing ResponseStatus...\n"); 1217 if (famT_drive) return (get_state_T()); 1218 if (flags_cmd_out & f_respo3) timeout = jiffies; 1219 else if (flags_cmd_out & f_respo2) timeout = jiffies + 16*HZ; 1220 else timeout = jiffies + 4*HZ; 1221 j=maxtim_8; 1222 do 1223 { 1224 for ( ;j!=0;j--) 1225 { 1226 i=inb(CDi_status); 1227 if (!(i&s_not_result_ready)) break; 1228 } 1229 if ((j!=0)||time_after(jiffies, timeout)) break; 1230 sbp_sleep(1); 1231 j = 1; 1232 } 1233 while (1); 1234 if (j==0) 1235 { 1236 if ((flags_cmd_out & f_respo3) == 0) 1237 msg(DBG_STA,"ResponseStatus: timeout.\n"); 1238 current_drive->status_bits=0; 1239 return (-401); 1240 } 1241 i=inb(CDi_info); 1242 msg(DBG_STA,"ResponseStatus: response %02X.\n", i); 1243 EvaluateStatus(i); 1244 msg(DBG_STA,"status_bits=%02X, i=%02X\n",current_drive->status_bits,i); 1245 return (current_drive->status_bits); 1246} 1247/*==========================================================================*/ 1248static void cc_ReadStatus(void) 1249{ 1250 int i; 1251 1252 msg(DBG_STA,"giving cc_ReadStatus command\n"); 1253 if (famT_drive) return; 1254 SBPCD_CLI; 1255 if (fam0LV_drive) OUT(CDo_command,CMD0_STATUS); 1256 else if (fam1_drive) OUT(CDo_command,CMD1_STATUS); 1257 else if (fam2_drive) OUT(CDo_command,CMD2_STATUS); 1258 if (!fam0LV_drive) for (i=0;i<6;i++) OUT(CDo_command,0); 1259 SBPCD_STI; 1260} 1261/*==========================================================================*/ 1262static int cc_ReadError(void) 1263{ 1264 int i; 1265 1266 clr_cmdbuf(); 1267 msg(DBG_ERR,"giving cc_ReadError command.\n"); 1268 if (fam1_drive) 1269 { 1270 drvcmd[0]=CMD1_READ_ERR; 1271 response_count=8; 1272 flags_cmd_out=f_putcmd|f_ResponseStatus; 1273 } 1274 else if (fam0LV_drive) 1275 { 1276 drvcmd[0]=CMD0_READ_ERR; 1277 response_count=6; 1278 if (famLV_drive) 1279 flags_cmd_out=f_putcmd; 1280 else 1281 flags_cmd_out=f_putcmd|f_getsta|f_ResponseStatus; 1282 } 1283 else if (fam2_drive) 1284 { 1285 drvcmd[0]=CMD2_READ_ERR; 1286 response_count=6; 1287 flags_cmd_out=f_putcmd; 1288 } 1289 else if (famT_drive) 1290 { 1291 response_count=5; 1292 drvcmd[0]=CMDT_READ_ERR; 1293 } 1294 i=cmd_out(); 1295 current_drive->error_byte=0; 1296 msg(DBG_ERR,"cc_ReadError: cmd_out(CMDx_READ_ERR) returns %d (%02X)\n",i,i); 1297 if (i<0) return (i); 1298 if (fam0V_drive) i=1; 1299 else i=2; 1300 current_drive->error_byte=infobuf[i]; 1301 msg(DBG_ERR,"cc_ReadError: infobuf[%d] is %d (%02X)\n",i,current_drive->error_byte,current_drive->error_byte); 1302 i=sta2err(infobuf[i]); 1303 if (i==-ERR_DISKCHANGE) 1304 { 1305 current_drive->CD_changed=0xFF; 1306 current_drive->diskstate_flags &= ~toc_bit; 1307 } 1308 return (i); 1309} 1310/*==========================================================================*/ 1311static int cc_DriveReset(void); 1312 1313static int cmd_out_T(void) 1314{ 1315#undef CMDT_TRIES 1316#define CMDT_TRIES 1000 1317#define TEST_FALSE_FF 1 1318 1319 int i, j, l=0, m, ntries; 1320 unsigned long flags; 1321 1322 current_drive->error_state=0; 1323 current_drive->b3=0; 1324 current_drive->b4=0; 1325 current_drive->f_drv_error=0; 1326 for (i=0;i<10;i++) sprintf(&msgbuf[i*3]," %02X",drvcmd[i]); 1327 msgbuf[i*3]=0; 1328 msg(DBG_CMD,"cmd_out_T:%s\n",msgbuf); 1329 1330 OUT(CDo_sel_i_d,0); 1331 OUT(CDo_enable,current_drive->drv_sel); 1332 i=inb(CDi_status); 1333 do_16bit=0; 1334 if ((f_16bit)&&(!(i&0x80))) 1335 { 1336 do_16bit=1; 1337 msg(DBG_TEA,"cmd_out_T: do_16bit set.\n"); 1338 } 1339 if (!(i&s_not_result_ready)) 1340 do 1341 { 1342 j=inb(CDi_info); 1343 i=inb(CDi_status); 1344 sbp_sleep(0); 1345 msg(DBG_TEA,"cmd_out_T: spurious !s_not_result_ready. (%02X)\n", j); 1346 } 1347 while (!(i&s_not_result_ready)); 1348 save_flags(flags); cli(); 1349 for (i=0;i<10;i++) OUT(CDo_command,drvcmd[i]); 1350 restore_flags(flags); 1351 for (ntries=CMDT_TRIES;ntries>0;ntries--) 1352 { 1353 if (drvcmd[0]==CMDT_READ_VER) sbp_sleep(HZ); /* fixme */ 1354#if 01 1355 OUT(CDo_sel_i_d,1); 1356#endif /* 01 */ 1357 if (teac==2) 1358 { 1359 if ((i=CDi_stat_loop_T()) == -1) break; 1360 } 1361 else 1362 { 1363#if 0 1364 OUT(CDo_sel_i_d,1); 1365#endif /* 0 */ 1366 i=inb(CDi_status); 1367 } 1368 if (!(i&s_not_data_ready)) /* f.e. CMDT_DISKINFO */ 1369 { 1370 OUT(CDo_sel_i_d,1); 1371 if (drvcmd[0]==CMDT_READ) return (0); /* handled elsewhere */ 1372 if (drvcmd[0]==CMDT_DISKINFO) 1373 { 1374 l=0; 1375 do 1376 { 1377 if (do_16bit) 1378 { 1379 i=inw(CDi_data); 1380 infobuf[l++]=i&0x0ff; 1381 infobuf[l++]=i>>8; 1382#if TEST_FALSE_FF 1383 if ((l==2)&&(infobuf[0]==0x0ff)) 1384 { 1385 infobuf[0]=infobuf[1]; 1386 l=1; 1387 msg(DBG_TEA,"cmd_out_T: do_16bit: false first byte!\n"); 1388 } 1389#endif /* TEST_FALSE_FF */ 1390 } 1391 else infobuf[l++]=inb(CDi_data); 1392 i=inb(CDi_status); 1393 } 1394 while (!(i&s_not_data_ready)); 1395 for (j=0;j<l;j++) sprintf(&msgbuf[j*3]," %02X",infobuf[j]); 1396 msgbuf[j*3]=0; 1397 msg(DBG_CMD,"cmd_out_T data response:%s\n", msgbuf); 1398 } 1399 else 1400 { 1401 msg(DBG_TEA,"cmd_out_T: data response with cmd_%02X!\n", 1402 drvcmd[0]); 1403 j=0; 1404 do 1405 { 1406 if (do_16bit) i=inw(CDi_data); 1407 else i=inb(CDi_data); 1408 j++; 1409 i=inb(CDi_status); 1410 } 1411 while (!(i&s_not_data_ready)); 1412 msg(DBG_TEA,"cmd_out_T: data response: discarded %d bytes/words.\n", j); 1413 fatal_err++; 1414 } 1415 } 1416 i=inb(CDi_status); 1417 if (!(i&s_not_result_ready)) 1418 { 1419 OUT(CDo_sel_i_d,0); 1420 if (drvcmd[0]==CMDT_DISKINFO) m=l; 1421 else m=0; 1422 do 1423 { 1424 infobuf[m++]=inb(CDi_info); 1425 i=inb(CDi_status); 1426 } 1427 while (!(i&s_not_result_ready)); 1428 for (j=0;j<m;j++) sprintf(&msgbuf[j*3]," %02X",infobuf[j]); 1429 msgbuf[j*3]=0; 1430 msg(DBG_CMD,"cmd_out_T info response:%s\n", msgbuf); 1431 if (drvcmd[0]==CMDT_DISKINFO) 1432 { 1433 infobuf[0]=infobuf[l]; 1434 if (infobuf[0]!=0x02) return (l); /* data length */ 1435 } 1436 else if (infobuf[0]!=0x02) return (m); /* info length */ 1437 do 1438 { 1439 ++recursion; 1440 if (recursion>1) msg(DBG_TEA,"cmd_out_T READ_ERR recursion (%02X): %d !!!!!!!!!!!!!!!!!!!!!!!!!!!!!!\n", drvcmd[0], recursion); 1441 clr_cmdbuf(); 1442 drvcmd[0]=CMDT_READ_ERR; 1443 j=cmd_out_T(); /* !!! recursive here !!! */ 1444 --recursion; 1445 sbp_sleep(1); 1446 } 1447 while (j<0); 1448 current_drive->error_state=infobuf[2]; 1449 current_drive->b3=infobuf[3]; 1450 current_drive->b4=infobuf[4]; 1451 if (current_drive->f_drv_error) 1452 { 1453 current_drive->f_drv_error=0; 1454 cc_DriveReset(); 1455 current_drive->error_state=2; 1456 } 1457 return (-current_drive->error_state-400); 1458 } 1459 if (drvcmd[0]==CMDT_READ) return (0); /* handled elsewhere */ 1460 if ((teac==0)||(ntries<(CMDT_TRIES-5))) sbp_sleep(HZ/10); 1461 else sbp_sleep(HZ/100); 1462 if (ntries>(CMDT_TRIES-50)) continue; 1463 msg(DBG_TEA,"cmd_out_T: next CMDT_TRIES (%02X): %d.\n", drvcmd[0], ntries-1); 1464 } 1465 current_drive->f_drv_error=1; 1466 cc_DriveReset(); 1467 current_drive->error_state=2; 1468 return (-99); 1469} 1470/*==========================================================================*/ 1471static int cmd_out(void) 1472{ 1473 int i=0; 1474 1475 if (famT_drive) return(cmd_out_T()); 1476 1477 if (flags_cmd_out&f_putcmd) 1478 { 1479 unsigned long flags; 1480 for (i=0;i<7;i++) 1481 sprintf(&msgbuf[i*3], " %02X", drvcmd[i]); 1482 msgbuf[i*3]=0; 1483 msg(DBG_CMD,"cmd_out:%s\n", msgbuf); 1484 save_flags(flags); cli(); 1485 for (i=0;i<7;i++) OUT(CDo_command,drvcmd[i]); 1486 restore_flags(flags); 1487 } 1488 if (response_count!=0) 1489 { 1490 if (cmd_type!=0) 1491 { 1492 if (sbpro_type==1) OUT(CDo_sel_i_d,1); 1493 msg(DBG_INF,"misleaded to try ResponseData.\n"); 1494 if (sbpro_type==1) OUT(CDo_sel_i_d,0); 1495 return (-22); 1496 } 1497 else i=ResponseInfo(); 1498 if (i<0) return (i); 1499 } 1500 if (current_drive->in_SpinUp) msg(DBG_SPI,"in_SpinUp: to CDi_stat_loop.\n"); 1501 if (flags_cmd_out&f_lopsta) 1502 { 1503 i=CDi_stat_loop(); 1504 if ((i<0)||!(i&s_attention)) return (-8); 1505 } 1506 if (!(flags_cmd_out&f_getsta)) goto LOC_229; 1507 1508 LOC_228: 1509 if (current_drive->in_SpinUp) msg(DBG_SPI,"in_SpinUp: to cc_ReadStatus.\n"); 1510 cc_ReadStatus(); 1511 1512 LOC_229: 1513 if (flags_cmd_out&f_ResponseStatus) 1514 { 1515 if (current_drive->in_SpinUp) msg(DBG_SPI,"in_SpinUp: to ResponseStatus.\n"); 1516 i=ResponseStatus(); 1517 /* builds status_bits, returns orig. status or p_busy_new */ 1518 if (i<0) return (i); 1519 if (flags_cmd_out&(f_bit1|f_wait_if_busy)) 1520 { 1521 if (!st_check) 1522 { 1523 if ((flags_cmd_out&f_bit1)&&(i&p_success)) goto LOC_232; 1524 if ((!(flags_cmd_out&f_wait_if_busy))||(!st_busy)) goto LOC_228; 1525 } 1526 } 1527 } 1528 LOC_232: 1529 if (!(flags_cmd_out&f_obey_p_check)) return (0); 1530 if (!st_check) return (0); 1531 if (current_drive->in_SpinUp) msg(DBG_SPI,"in_SpinUp: to cc_ReadError.\n"); 1532 i=cc_ReadError(); 1533 if (current_drive->in_SpinUp) msg(DBG_SPI,"in_SpinUp: to cmd_out OK.\n"); 1534 msg(DBG_000,"cmd_out: cc_ReadError=%d\n", i); 1535 return (i); 1536} 1537/*==========================================================================*/ 1538static int cc_Seek(u_int pos, char f_blk_msf) 1539{ 1540 int i; 1541 1542 clr_cmdbuf(); 1543 if (f_blk_msf>1) return (-3); 1544 if (fam0V_drive) 1545 { 1546 drvcmd[0]=CMD0_SEEK; 1547 if (f_blk_msf==1) pos=msf2blk(pos); 1548 drvcmd[2]=(pos>>16)&0x00FF; 1549 drvcmd[3]=(pos>>8)&0x00FF; 1550 drvcmd[4]=pos&0x00FF; 1551 if (fam0_drive) 1552 flags_cmd_out = f_putcmd | f_respo2 | f_lopsta | f_getsta | 1553 f_ResponseStatus | f_obey_p_check | f_bit1; 1554 else 1555 flags_cmd_out = f_putcmd; 1556 } 1557 else if (fam1L_drive) 1558 { 1559 drvcmd[0]=CMD1_SEEK; /* same as CMD1_ and CMDL_ */ 1560 if (f_blk_msf==0) pos=blk2msf(pos); 1561 drvcmd[1]=(pos>>16)&0x00FF; 1562 drvcmd[2]=(pos>>8)&0x00FF; 1563 drvcmd[3]=pos&0x00FF; 1564 if (famL_drive) 1565 flags_cmd_out=f_putcmd|f_respo2|f_lopsta|f_getsta|f_ResponseStatus|f_obey_p_check|f_bit1; 1566 else 1567 flags_cmd_out=f_putcmd|f_respo2|f_ResponseStatus|f_obey_p_check; 1568 } 1569 else if (fam2_drive) 1570 { 1571 drvcmd[0]=CMD2_SEEK; 1572 if (f_blk_msf==0) pos=blk2msf(pos); 1573 drvcmd[2]=(pos>>24)&0x00FF; 1574 drvcmd[3]=(pos>>16)&0x00FF; 1575 drvcmd[4]=(pos>>8)&0x00FF; 1576 drvcmd[5]=pos&0x00FF; 1577 flags_cmd_out=f_putcmd|f_ResponseStatus; 1578 } 1579 else if (famT_drive) 1580 { 1581 drvcmd[0]=CMDT_SEEK; 1582 if (f_blk_msf==1) pos=msf2blk(pos); 1583 drvcmd[2]=(pos>>24)&0x00FF; 1584 drvcmd[3]=(pos>>16)&0x00FF; 1585 drvcmd[4]=(pos>>8)&0x00FF; 1586 drvcmd[5]=pos&0x00FF; 1587 current_drive->n_bytes=1; 1588 } 1589 response_count=0; 1590 i=cmd_out(); 1591 return (i); 1592} 1593/*==========================================================================*/ 1594static int cc_SpinUp(void) 1595{ 1596 int i; 1597 1598 msg(DBG_SPI,"SpinUp.\n"); 1599 current_drive->in_SpinUp = 1; 1600 clr_cmdbuf(); 1601 if (fam0LV_drive) 1602 { 1603 drvcmd[0]=CMD0_SPINUP; 1604 if (fam0L_drive) 1605 flags_cmd_out=f_putcmd|f_respo2|f_lopsta|f_getsta| 1606 f_ResponseStatus|f_obey_p_check|f_bit1; 1607 else 1608 flags_cmd_out=f_putcmd; 1609 } 1610 else if (fam1_drive) 1611 { 1612 drvcmd[0]=CMD1_SPINUP; 1613 flags_cmd_out=f_putcmd|f_respo2|f_ResponseStatus|f_obey_p_check; 1614 } 1615 else if (fam2_drive) 1616 { 1617 drvcmd[0]=CMD2_TRAY_CTL; 1618 drvcmd[4]=0x01; /* "spinup" */ 1619 flags_cmd_out=f_putcmd|f_respo2|f_ResponseStatus|f_obey_p_check; 1620 } 1621 else if (famT_drive) 1622 { 1623 drvcmd[0]=CMDT_TRAY_CTL; 1624 drvcmd[4]=0x03; /* "insert", it hopefully spins the drive up */ 1625 } 1626 response_count=0; 1627 i=cmd_out(); 1628 current_drive->in_SpinUp = 0; 1629 return (i); 1630} 1631/*==========================================================================*/ 1632static int cc_SpinDown(void) 1633{ 1634 int i; 1635 1636 if (fam0_drive) return (0); 1637 clr_cmdbuf(); 1638 response_count=0; 1639 if (fam1_drive) 1640 { 1641 drvcmd[0]=CMD1_SPINDOWN; 1642 flags_cmd_out=f_putcmd|f_respo2|f_ResponseStatus|f_obey_p_check; 1643 } 1644 else if (fam2_drive) 1645 { 1646 drvcmd[0]=CMD2_TRAY_CTL; 1647 drvcmd[4]=0x02; /* "eject" */ 1648 flags_cmd_out=f_putcmd|f_ResponseStatus; 1649 } 1650 else if (famL_drive) 1651 { 1652 drvcmd[0]=CMDL_SPINDOWN; 1653 drvcmd[1]=1; 1654 flags_cmd_out=f_putcmd|f_respo2|f_lopsta|f_getsta|f_ResponseStatus|f_obey_p_check|f_bit1; 1655 } 1656 else if (famV_drive) 1657 { 1658 drvcmd[0]=CMDV_SPINDOWN; 1659 flags_cmd_out=f_putcmd; 1660 } 1661 else if (famT_drive) 1662 { 1663 drvcmd[0]=CMDT_TRAY_CTL; 1664 drvcmd[4]=0x02; /* "eject" */ 1665 } 1666 i=cmd_out(); 1667 return (i); 1668} 1669/*==========================================================================*/ 1670static int cc_get_mode_T(void) 1671{ 1672 int i; 1673 1674 clr_cmdbuf(); 1675 response_count=10; 1676 drvcmd[0]=CMDT_GETMODE; 1677 drvcmd[4]=response_count; 1678 i=cmd_out_T(); 1679 return (i); 1680} 1681/*==========================================================================*/ 1682static int cc_set_mode_T(void) 1683{ 1684 int i; 1685 1686 clr_cmdbuf(); 1687 response_count=1; 1688 drvcmd[0]=CMDT_SETMODE; 1689 drvcmd[1]=current_drive->speed_byte; 1690 drvcmd[2]=current_drive->frmsiz>>8; 1691 drvcmd[3]=current_drive->frmsiz&0x0FF; 1692 drvcmd[4]=current_drive->f_XA; /* 1: XA */ 1693 drvcmd[5]=current_drive->type_byte; /* 0, 1, 3 */ 1694 drvcmd[6]=current_drive->mode_xb_6; 1695 drvcmd[7]=current_drive->mode_yb_7|current_drive->volume_control; 1696 drvcmd[8]=current_drive->mode_xb_8; 1697 drvcmd[9]=current_drive->delay; 1698 i=cmd_out_T(); 1699 return (i); 1700} 1701/*==========================================================================*/ 1702static int cc_prep_mode_T(void) 1703{ 1704 int i, j; 1705 1706 i=cc_get_mode_T(); 1707 if (i<0) return (i); 1708 for (i=0;i<10;i++) 1709 sprintf(&msgbuf[i*3], " %02X", infobuf[i]); 1710 msgbuf[i*3]=0; 1711 msg(DBG_TEA,"CMDT_GETMODE:%s\n", msgbuf); 1712 current_drive->speed_byte=0x02; /* 0x02: auto quad, 0x82: quad, 0x81: double, 0x80: single */ 1713 current_drive->frmsiz=make16(infobuf[2],infobuf[3]); 1714 current_drive->f_XA=infobuf[4]; 1715 if (current_drive->f_XA==0) current_drive->type_byte=0; 1716 else current_drive->type_byte=1; 1717 current_drive->mode_xb_6=infobuf[6]; 1718 current_drive->mode_yb_7=1; 1719 current_drive->mode_xb_8=infobuf[8]; 1720 current_drive->delay=0; /* 0, 1, 2, 3 */ 1721 j=cc_set_mode_T(); 1722 i=cc_get_mode_T(); 1723 for (i=0;i<10;i++) 1724 sprintf(&msgbuf[i*3], " %02X", infobuf[i]); 1725 msgbuf[i*3]=0; 1726 msg(DBG_TEA,"CMDT_GETMODE:%s\n", msgbuf); 1727 return (j); 1728} 1729/*==========================================================================*/ 1730static int cc_SetSpeed(u_char speed, u_char x1, u_char x2) 1731{ 1732 int i; 1733 1734 if (fam0LV_drive) return (0); 1735 clr_cmdbuf(); 1736 response_count=0; 1737 if (fam1_drive) 1738 { 1739 drvcmd[0]=CMD1_SETMODE; 1740 drvcmd[1]=0x03; 1741 drvcmd[2]=speed; 1742 drvcmd[3]=x1; 1743 drvcmd[4]=x2; 1744 flags_cmd_out=f_putcmd|f_ResponseStatus|f_obey_p_check; 1745 } 1746 else if (fam2_drive) 1747 { 1748 drvcmd[0]=CMD2_SETSPEED; 1749 if (speed&speed_auto) 1750 { 1751 drvcmd[2]=0xFF; 1752 drvcmd[3]=0xFF; 1753 } 1754 else 1755 { 1756 drvcmd[2]=0; 1757 drvcmd[3]=150; 1758 } 1759 flags_cmd_out=f_putcmd|f_ResponseStatus|f_obey_p_check; 1760 } 1761 else if (famT_drive) 1762 { 1763 return (0); 1764 } 1765 i=cmd_out(); 1766 return (i); 1767} 1768/*==========================================================================*/ 1769static int cc_SetVolume(void) 1770{ 1771 int i; 1772 u_char channel0,channel1,volume0,volume1; 1773 u_char control0,value0,control1,value1; 1774 1775 current_drive->diskstate_flags &= ~volume_bit; 1776 clr_cmdbuf(); 1777 channel0=current_drive->vol_chan0; 1778 volume0=current_drive->vol_ctrl0; 1779 channel1=control1=current_drive->vol_chan1; 1780 volume1=value1=current_drive->vol_ctrl1; 1781 control0=value0=0; 1782 1783 if (famV_drive) return (0); 1784 1785 if (((current_drive->drv_options&audio_mono)!=0)&&(current_drive->drv_type>=drv_211)) 1786 { 1787 if ((volume0!=0)&&(volume1==0)) 1788 { 1789 volume1=volume0; 1790 channel1=channel0; 1791 } 1792 else if ((volume0==0)&&(volume1!=0)) 1793 { 1794 volume0=volume1; 1795 channel0=channel1; 1796 } 1797 } 1798 if (channel0>1) 1799 { 1800 channel0=0; 1801 volume0=0; 1802 } 1803 if (channel1>1) 1804 { 1805 channel1=1; 1806 volume1=0; 1807 } 1808 1809 if (fam1_drive) 1810 { 1811 control0=channel0+1; 1812 control1=channel1+1; 1813 value0=(volume0>volume1)?volume0:volume1; 1814 value1=value0; 1815 if (volume0==0) control0=0; 1816 if (volume1==0) control1=0; 1817 drvcmd[0]=CMD1_SETMODE; 1818 drvcmd[1]=0x05; 1819 drvcmd[3]=control0; 1820 drvcmd[4]=value0; 1821 drvcmd[5]=control1; 1822 drvcmd[6]=value1; 1823 flags_cmd_out=f_putcmd|f_ResponseStatus|f_obey_p_check; 1824 } 1825 else if (fam2_drive) 1826 { 1827 control0=channel0+1; 1828 control1=channel1+1; 1829 value0=(volume0>volume1)?volume0:volume1; 1830 value1=value0; 1831 if (volume0==0) control0=0; 1832 if (volume1==0) control1=0; 1833 drvcmd[0]=CMD2_SETMODE; 1834 drvcmd[1]=0x0E; 1835 drvcmd[3]=control0; 1836 drvcmd[4]=value0; 1837 drvcmd[5]=control1; 1838 drvcmd[6]=value1; 1839 flags_cmd_out=f_putcmd|f_ResponseStatus; 1840 } 1841 else if (famL_drive) 1842 { 1843 if ((volume0==0)||(channel0!=0)) control0 |= 0x80; 1844 if ((volume1==0)||(channel1!=1)) control0 |= 0x40; 1845 if (volume0|volume1) value0=0x80; 1846 drvcmd[0]=CMDL_SETMODE; 1847 drvcmd[1]=0x03; 1848 drvcmd[4]=control0; 1849 drvcmd[5]=value0; 1850 flags_cmd_out=f_putcmd|f_lopsta|f_getsta|f_ResponseStatus|f_obey_p_check|f_bit1; 1851 } 1852 else if (fam0_drive) /* different firmware levels */ 1853 { 1854 if (current_drive->drv_type>=drv_300) 1855 { 1856 control0=volume0&0xFC; 1857 value0=volume1&0xFC; 1858 if ((volume0!=0)&&(volume0<4)) control0 |= 0x04; 1859 if ((volume1!=0)&&(volume1<4)) value0 |= 0x04; 1860 if (channel0!=0) control0 |= 0x01; 1861 if (channel1==1) value0 |= 0x01; 1862 } 1863 else 1864 { 1865 value0=(volume0>volume1)?volume0:volume1; 1866 if (current_drive->drv_type<drv_211) 1867 { 1868 if (channel0!=0) 1869 { 1870 i=channel1; 1871 channel1=channel0; 1872 channel0=i; 1873 i=volume1; 1874 volume1=volume0; 1875 volume0=i; 1876 } 1877 if (channel0==channel1) 1878 { 1879 if (channel0==0) 1880 { 1881 channel1=1; 1882 volume1=0; 1883 volume0=value0; 1884 } 1885 else 1886 { 1887 channel0=0; 1888 volume0=0; 1889 volume1=value0; 1890 } 1891 } 1892 } 1893 1894 if ((volume0!=0)&&(volume1!=0)) 1895 { 1896 if (volume0==0xFF) volume1=0xFF; 1897 else if (volume1==0xFF) volume0=0xFF; 1898 } 1899 else if (current_drive->drv_type<drv_201) volume0=volume1=value0; 1900 1901 if (current_drive->drv_type>=drv_201) 1902 { 1903 if (volume0==0) control0 |= 0x80; 1904 if (volume1==0) control0 |= 0x40; 1905 } 1906 if (current_drive->drv_type>=drv_211) 1907 { 1908 if (channel0!=0) control0 |= 0x20; 1909 if (channel1!=1) control0 |= 0x10; 1910 } 1911 } 1912 drvcmd[0]=CMD0_SETMODE; 1913 drvcmd[1]=0x83; 1914 drvcmd[4]=control0; 1915 drvcmd[5]=value0; 1916 flags_cmd_out=f_putcmd|f_getsta|f_ResponseStatus|f_obey_p_check; 1917 } 1918 else if (famT_drive) 1919 { 1920 current_drive->volume_control=0; 1921 if (!volume0) current_drive->volume_control|=0x10; 1922 if (!volume1) current_drive->volume_control|=0x20; 1923 i=cc_prep_mode_T(); 1924 if (i<0) return (i); 1925 } 1926 if (!famT_drive) 1927 { 1928 response_count=0; 1929 i=cmd_out(); 1930 if (i<0) return (i); 1931 } 1932 current_drive->diskstate_flags |= volume_bit; 1933 return (0); 1934} 1935/*==========================================================================*/ 1936static int GetStatus(void) 1937{ 1938 int i; 1939 1940 if (famT_drive) return (0); 1941 flags_cmd_out=f_getsta|f_ResponseStatus|f_obey_p_check; 1942 response_count=0; 1943 cmd_type=0; 1944 i=cmd_out(); 1945 return (i); 1946} 1947/*==========================================================================*/ 1948static int cc_DriveReset(void) 1949{ 1950 int i; 1951 1952 msg(DBG_RES,"cc_DriveReset called.\n"); 1953 clr_cmdbuf(); 1954 response_count=0; 1955 if (fam0LV_drive) OUT(CDo_reset,0x00); 1956 else if (fam1_drive) 1957 { 1958 drvcmd[0]=CMD1_RESET; 1959 flags_cmd_out=f_putcmd; 1960 i=cmd_out(); 1961 } 1962 else if (fam2_drive) 1963 { 1964 drvcmd[0]=CMD2_RESET; 1965 flags_cmd_out=f_putcmd; 1966 i=cmd_out(); 1967 OUT(CDo_reset,0x00); 1968 } 1969 else if (famT_drive) 1970 { 1971 OUT(CDo_sel_i_d,0); 1972 OUT(CDo_enable,current_drive->drv_sel); 1973 OUT(CDo_command,CMDT_RESET); 1974 for (i=1;i<10;i++) OUT(CDo_command,0); 1975 } 1976 if (fam0LV_drive) sbp_sleep(5*HZ); /* wait 5 seconds */ 1977 else sbp_sleep(1*HZ); /* wait a second */ 1978#if 1 1979 if (famT_drive) 1980 { 1981 msg(DBG_TEA, "================CMDT_RESET given=================.\n"); 1982 sbp_sleep(3*HZ); 1983 } 1984#endif /* 1 */ 1985 flush_status(); 1986 i=GetStatus(); 1987 if (i<0) return i; 1988 if (!famT_drive) 1989 if (current_drive->error_byte!=aud_12) return -501; 1990 return (0); 1991} 1992 1993/*==========================================================================*/ 1994static int SetSpeed(void) 1995{ 1996 int i, speed; 1997 1998 if (!(current_drive->drv_options&(speed_auto|speed_300|speed_150))) return (0); 1999 speed=speed_auto; 2000 if (!(current_drive->drv_options&speed_auto)) 2001 { 2002 speed |= speed_300; 2003 if (!(current_drive->drv_options&speed_300)) speed=0; 2004 } 2005 i=cc_SetSpeed(speed,0,0); 2006 return (i); 2007} 2008 2009static void switch_drive(struct sbpcd_drive *); 2010 2011static int sbpcd_select_speed(struct cdrom_device_info *cdi, int speed) 2012{ 2013 struct sbpcd_drive *p = cdi->handle; 2014 if (p != current_drive) 2015 switch_drive(p); 2016 2017 return cc_SetSpeed(speed == 2 ? speed_300 : speed_150, 0, 0); 2018} 2019 2020/*==========================================================================*/ 2021static int DriveReset(void) 2022{ 2023 int i; 2024 2025 i=cc_DriveReset(); 2026 if (i<0) return (-22); 2027 do 2028 { 2029 i=GetStatus(); 2030 if ((i<0)&&(i!=-ERR_DISKCHANGE)) { 2031 return (-2); /* from sta2err */ 2032 } 2033 if (!st_caddy_in) break; 2034 sbp_sleep(1); 2035 } 2036 while (!st_diskok); 2037#if 000 2038 current_drive->CD_changed=1; 2039#endif 2040 if ((st_door_closed) && (st_caddy_in)) 2041 { 2042 i=DiskInfo(); 2043 if (i<0) return (-23); 2044 } 2045 return (0); 2046} 2047 2048static int sbpcd_reset(struct cdrom_device_info *cdi) 2049{ 2050 struct sbpcd_drive *p = cdi->handle; 2051 if (p != current_drive) 2052 switch_drive(p); 2053 return DriveReset(); 2054} 2055 2056/*==========================================================================*/ 2057static int cc_PlayAudio(int pos_audio_start,int pos_audio_end) 2058{ 2059 int i, j, n; 2060 2061 if (current_drive->audio_state==audio_playing) return (-EINVAL); 2062 clr_cmdbuf(); 2063 response_count=0; 2064 if (famLV_drive) 2065 { 2066 drvcmd[0]=CMDL_PLAY; 2067 i=msf2blk(pos_audio_start); 2068 n=msf2blk(pos_audio_end)+1-i; 2069 drvcmd[1]=(i>>16)&0x00FF; 2070 drvcmd[2]=(i>>8)&0x00FF; 2071 drvcmd[3]=i&0x00FF; 2072 drvcmd[4]=(n>>16)&0x00FF; 2073 drvcmd[5]=(n>>8)&0x00FF; 2074 drvcmd[6]=n&0x00FF; 2075 if (famL_drive) 2076 flags_cmd_out = f_putcmd | f_respo2 | f_lopsta | f_getsta | 2077 f_ResponseStatus | f_obey_p_check | f_wait_if_busy; 2078 else 2079 flags_cmd_out = f_putcmd; 2080 } 2081 else 2082 { 2083 j=1; 2084 if (fam1_drive) 2085 { 2086 drvcmd[0]=CMD1_PLAY_MSF; 2087 flags_cmd_out = f_putcmd | f_respo2 | f_ResponseStatus | 2088 f_obey_p_check | f_wait_if_busy; 2089 } 2090 else if (fam2_drive) 2091 { 2092 drvcmd[0]=CMD2_PLAY_MSF; 2093 flags_cmd_out = f_putcmd | f_ResponseStatus | f_obey_p_check; 2094 } 2095 else if (famT_drive) 2096 { 2097 drvcmd[0]=CMDT_PLAY_MSF; 2098 j=3; 2099 response_count=1; 2100 } 2101 else if (fam0_drive) 2102 { 2103 drvcmd[0]=CMD0_PLAY_MSF; 2104 flags_cmd_out = f_putcmd | f_respo2 | f_lopsta | f_getsta | 2105 f_ResponseStatus | f_obey_p_check | f_wait_if_busy; 2106 } 2107 drvcmd[j]=(pos_audio_start>>16)&0x00FF; 2108 drvcmd[j+1]=(pos_audio_start>>8)&0x00FF; 2109 drvcmd[j+2]=pos_audio_start&0x00FF; 2110 drvcmd[j+3]=(pos_audio_end>>16)&0x00FF; 2111 drvcmd[j+4]=(pos_audio_end>>8)&0x00FF; 2112 drvcmd[j+5]=pos_audio_end&0x00FF; 2113 } 2114 i=cmd_out(); 2115 return (i); 2116} 2117/*==========================================================================*/ 2118static int cc_Pause_Resume(int pau_res) 2119{ 2120 int i; 2121 2122 clr_cmdbuf(); 2123 response_count=0; 2124 if (fam1_drive) 2125 { 2126 drvcmd[0]=CMD1_PAU_RES; 2127 if (pau_res!=1) drvcmd[1]=0x80; 2128 flags_cmd_out=f_putcmd|f_respo2|f_ResponseStatus|f_obey_p_check; 2129 } 2130 else if (fam2_drive) 2131 { 2132 drvcmd[0]=CMD2_PAU_RES; 2133 if (pau_res!=1) drvcmd[2]=0x01; 2134 flags_cmd_out=f_putcmd|f_ResponseStatus; 2135 } 2136 else if (fam0LV_drive) 2137 { 2138 drvcmd[0]=CMD0_PAU_RES; 2139 if (pau_res!=1) drvcmd[1]=0x80; 2140 if (famL_drive) 2141 flags_cmd_out=f_putcmd|f_respo2|f_lopsta|f_getsta|f_ResponseStatus| 2142 f_obey_p_check|f_bit1; 2143 else if (famV_drive) 2144 flags_cmd_out=f_putcmd; 2145 else 2146 flags_cmd_out=f_putcmd|f_respo2|f_lopsta|f_getsta|f_ResponseStatus| 2147 f_obey_p_check; 2148 } 2149 else if (famT_drive) 2150 { 2151 if (pau_res==3) return (cc_PlayAudio(current_drive->pos_audio_start,current_drive->pos_audio_end)); 2152 else if (pau_res==1) drvcmd[0]=CMDT_PAUSE; 2153 else return (-56); 2154 } 2155 i=cmd_out(); 2156 return (i); 2157} 2158/*==========================================================================*/ 2159static int cc_LockDoor(char lock) 2160{ 2161 int i; 2162 2163 if (fam0_drive) return (0); 2164 msg(DBG_LCK,"cc_LockDoor: %d (drive %d)\n", lock, current_drive - D_S); 2165 msg(DBG_LCS,"p_door_locked bit %d before\n", st_door_locked); 2166 clr_cmdbuf(); 2167 response_count=0; 2168 if (fam1_drive) 2169 { 2170 drvcmd[0]=CMD1_LOCK_CTL; 2171 if (lock==1) drvcmd[1]=0x01; 2172 flags_cmd_out=f_putcmd|f_ResponseStatus|f_obey_p_check; 2173 } 2174 else if (fam2_drive) 2175 { 2176 drvcmd[0]=CMD2_LOCK_CTL; 2177 if (lock==1) drvcmd[4]=0x01; 2178 flags_cmd_out=f_putcmd|f_ResponseStatus; 2179 } 2180 else if (famLV_drive) 2181 { 2182 drvcmd[0]=CMDL_LOCK_CTL; 2183 if (lock==1) drvcmd[1]=0x01; 2184 if (famL_drive) 2185 flags_cmd_out=f_putcmd|f_respo2|f_lopsta|f_getsta|f_ResponseStatus|f_obey_p_check|f_bit1; 2186 else 2187 flags_cmd_out=f_putcmd; 2188 } 2189 else if (famT_drive) 2190 { 2191 drvcmd[0]=CMDT_LOCK_CTL; 2192 if (lock==1) drvcmd[4]=0x01; 2193 } 2194 i=cmd_out(); 2195 msg(DBG_LCS,"p_door_locked bit %d after\n", st_door_locked); 2196 return (i); 2197} 2198/*==========================================================================*/ 2199/*==========================================================================*/ 2200static int UnLockDoor(void) 2201{ 2202 int i,j; 2203 2204 j=20; 2205 do 2206 { 2207 i=cc_LockDoor(0); 2208 --j; 2209 sbp_sleep(1); 2210 } 2211 while ((i<0)&&(j)); 2212 if (i<0) 2213 { 2214 cc_DriveReset(); 2215 return -84; 2216 } 2217 return (0); 2218} 2219/*==========================================================================*/ 2220static int LockDoor(void) 2221{ 2222 int i,j; 2223 2224 j=20; 2225 do 2226 { 2227 i=cc_LockDoor(1); 2228 --j; 2229 sbp_sleep(1); 2230 } 2231 while ((i<0)&&(j)); 2232 if (j==0) 2233 { 2234 cc_DriveReset(); 2235 j=20; 2236 do 2237 { 2238 i=cc_LockDoor(1); 2239 --j; 2240 sbp_sleep(1); 2241 } 2242 while ((i<0)&&(j)); 2243 } 2244 return (i); 2245} 2246 2247static int sbpcd_lock_door(struct cdrom_device_info *cdi, int lock) 2248{ 2249 return lock ? LockDoor() : UnLockDoor(); 2250} 2251 2252/*==========================================================================*/ 2253static int cc_CloseTray(void) 2254{ 2255 int i; 2256 2257 if (fam0_drive) return (0); 2258 msg(DBG_LCK,"cc_CloseTray (drive %d)\n", current_drive - D_S); 2259 msg(DBG_LCS,"p_door_closed bit %d before\n", st_door_closed); 2260 2261 clr_cmdbuf(); 2262 response_count=0; 2263 if (fam1_drive) 2264 { 2265 drvcmd[0]=CMD1_TRAY_CTL; 2266 flags_cmd_out=f_putcmd|f_respo2|f_ResponseStatus|f_obey_p_check; 2267 } 2268 else if (fam2_drive) 2269 { 2270 drvcmd[0]=CMD2_TRAY_CTL; 2271 drvcmd[1]=0x01; 2272 drvcmd[4]=0x03; /* "insert" */ 2273 flags_cmd_out=f_putcmd|f_ResponseStatus; 2274 } 2275 else if (famLV_drive) 2276 { 2277 drvcmd[0]=CMDL_TRAY_CTL; 2278 if (famLV_drive) 2279 flags_cmd_out=f_putcmd|f_respo2|f_lopsta|f_getsta| 2280 f_ResponseStatus|f_obey_p_check|f_bit1; 2281 else 2282 flags_cmd_out=f_putcmd; 2283 } 2284 else if (famT_drive) 2285 { 2286 drvcmd[0]=CMDT_TRAY_CTL; 2287 drvcmd[4]=0x03; /* "insert" */ 2288 } 2289 i=cmd_out(); 2290 msg(DBG_LCS,"p_door_closed bit %d after\n", st_door_closed); 2291 2292 i=cc_ReadError(); 2293 flags_cmd_out |= f_respo2; 2294 cc_ReadStatus(); /* command: give 1-byte status */ 2295 i=ResponseStatus(); 2296 if (famT_drive&&(i<0)) 2297 { 2298 cc_DriveReset(); 2299 i=ResponseStatus(); 2300#if 0 2301 sbp_sleep(HZ); 2302#endif /* 0 */ 2303 i=ResponseStatus(); 2304 } 2305 if (i<0) 2306 { 2307 msg(DBG_INF,"sbpcd cc_CloseTray: ResponseStatus timed out (%d).\n",i); 2308 } 2309 if (!(famT_drive)) 2310 { 2311 if (!st_spinning) 2312 { 2313 cc_SpinUp(); 2314 if (st_check) i=cc_ReadError(); 2315 flags_cmd_out |= f_respo2; 2316 cc_ReadStatus(); 2317 i=ResponseStatus(); 2318 } else { 2319 } 2320 } 2321 i=DiskInfo(); 2322 return (i); 2323} 2324 2325static int sbpcd_tray_move(struct cdrom_device_info *cdi, int position) 2326{ 2327 int retval=0; 2328 switch_drive(cdi->handle); 2329 /* DUH! --AJK */ 2330 if(current_drive->CD_changed != 0xFF) { 2331 current_drive->CD_changed=0xFF; 2332 current_drive->diskstate_flags &= ~cd_size_bit; 2333 } 2334 if (position == 1) { 2335 cc_SpinDown(); 2336 } else { 2337 retval=cc_CloseTray(); 2338 } 2339 return retval; 2340} 2341 2342/*==========================================================================*/ 2343static int cc_ReadSubQ(void) 2344{ 2345 int i,j; 2346 2347 current_drive->diskstate_flags &= ~subq_bit; 2348 for (j=255;j>0;j--) 2349 { 2350 clr_cmdbuf(); 2351 if (fam1_drive) 2352 { 2353 drvcmd[0]=CMD1_READSUBQ; 2354 flags_cmd_out=f_putcmd|f_ResponseStatus|f_obey_p_check; 2355 response_count=11; 2356 } 2357 else if (fam2_drive) 2358 { 2359 drvcmd[0]=CMD2_READSUBQ; 2360 drvcmd[1]=0x02; 2361 drvcmd[3]=0x01; 2362 flags_cmd_out=f_putcmd; 2363 response_count=10; 2364 } 2365 else if (fam0LV_drive) 2366 { 2367 drvcmd[0]=CMD0_READSUBQ; 2368 drvcmd[1]=0x02; 2369 if (famLV_drive) 2370 flags_cmd_out=f_putcmd; 2371 else 2372 flags_cmd_out=f_putcmd|f_getsta|f_ResponseStatus|f_obey_p_check; 2373 response_count=13; 2374 } 2375 else if (famT_drive) 2376 { 2377 response_count=12; 2378 drvcmd[0]=CMDT_READSUBQ; 2379 drvcmd[1]=0x02; 2380 drvcmd[2]=0x40; 2381 drvcmd[3]=0x01; 2382 drvcmd[8]=response_count; 2383 } 2384 i=cmd_out(); 2385 if (i<0) return (i); 2386 for (i=0;i<response_count;i++) 2387 { 2388 sprintf(&msgbuf[i*3], " %02X", infobuf[i]); 2389 msgbuf[i*3]=0; 2390 msg(DBG_SQ1,"cc_ReadSubQ:%s\n", msgbuf); 2391 } 2392 if (famT_drive) break; 2393 if (infobuf[0]!=0) break; 2394 if ((!st_spinning) || (j==1)) 2395 { 2396 current_drive->SubQ_ctl_adr=current_drive->SubQ_trk=current_drive->SubQ_pnt_idx=current_drive->SubQ_whatisthis=0; 2397 current_drive->SubQ_run_tot=current_drive->SubQ_run_trk=0; 2398 return (0); 2399 } 2400 } 2401 if (famT_drive) current_drive->SubQ_ctl_adr=infobuf[1]; 2402 else current_drive->SubQ_ctl_adr=swap_nibbles(infobuf[1]); 2403 current_drive->SubQ_trk=byt2bcd(infobuf[2]); 2404 current_drive->SubQ_pnt_idx=byt2bcd(infobuf[3]); 2405 if (fam0LV_drive) i=5; 2406 else if (fam12_drive) i=4; 2407 else if (famT_drive) i=8; 2408 current_drive->SubQ_run_tot=make32(make16(0,infobuf[i]),make16(infobuf[i+1],infobuf[i+2])); /* msf-bin */ 2409 i=7; 2410 if (fam0LV_drive) i=9; 2411 else if (fam12_drive) i=7; 2412 else if (famT_drive) i=4; 2413 current_drive->SubQ_run_trk=make32(make16(0,infobuf[i]),make16(infobuf[i+1],infobuf[i+2])); /* msf-bin */ 2414 current_drive->SubQ_whatisthis=infobuf[i+3]; 2415 current_drive->diskstate_flags |= subq_bit; 2416 return (0); 2417} 2418/*==========================================================================*/ 2419static int cc_ModeSense(void) 2420{ 2421 int i; 2422 2423 if (fam2_drive) return (0); 2424 if (famV_drive) return (0); 2425 current_drive->diskstate_flags &= ~frame_size_bit; 2426 clr_cmdbuf(); 2427 if (fam1_drive) 2428 { 2429 response_count=5; 2430 drvcmd[0]=CMD1_GETMODE; 2431 flags_cmd_out=f_putcmd|f_ResponseStatus|f_obey_p_check; 2432 } 2433 else if (fam0L_drive) 2434 { 2435 response_count=2; 2436 drvcmd[0]=CMD0_GETMODE; 2437 if (famL_drive) flags_cmd_out=f_putcmd; 2438 else flags_cmd_out=f_putcmd|f_getsta|f_ResponseStatus|f_obey_p_check; 2439 } 2440 else if (famT_drive) 2441 { 2442 response_count=10; 2443 drvcmd[0]=CMDT_GETMODE; 2444 drvcmd[4]=response_count; 2445 } 2446 i=cmd_out(); 2447 if (i<0) return (i); 2448 i=0; 2449 current_drive->sense_byte=0; 2450 if (fam1_drive) current_drive->sense_byte=infobuf[i++]; 2451 else if (famT_drive) 2452 { 2453 if (infobuf[4]==0x01) current_drive->xa_byte=0x20; 2454 else current_drive->xa_byte=0; 2455 i=2; 2456 } 2457 current_drive->frame_size=make16(infobuf[i],infobuf[i+1]); 2458 for (i=0;i<response_count;i++) 2459 sprintf(&msgbuf[i*3], " %02X", infobuf[i]); 2460 msgbuf[i*3]=0; 2461 msg(DBG_XA1,"cc_ModeSense:%s\n", msgbuf); 2462 2463 current_drive->diskstate_flags |= frame_size_bit; 2464 return (0); 2465} 2466/*==========================================================================*/ 2467/*==========================================================================*/ 2468static int cc_ModeSelect(int framesize) 2469{ 2470 int i; 2471 2472 if (fam2_drive) return (0); 2473 if (famV_drive) return (0); 2474 current_drive->diskstate_flags &= ~frame_size_bit; 2475 clr_cmdbuf(); 2476 current_drive->frame_size=framesize; 2477 if (framesize==CD_FRAMESIZE_RAW) current_drive->sense_byte=0x82; 2478 else current_drive->sense_byte=0x00; 2479 2480 msg(DBG_XA1,"cc_ModeSelect: %02X %04X\n", 2481 current_drive->sense_byte, current_drive->frame_size); 2482 2483 if (fam1_drive) 2484 { 2485 drvcmd[0]=CMD1_SETMODE; 2486 drvcmd[1]=0x00; 2487 drvcmd[2]=current_drive->sense_byte; 2488 drvcmd[3]=(current_drive->frame_size>>8)&0xFF; 2489 drvcmd[4]=current_drive->frame_size&0xFF; 2490 flags_cmd_out=f_putcmd|f_ResponseStatus|f_obey_p_check; 2491 } 2492 else if (fam0L_drive) 2493 { 2494 drvcmd[0]=CMD0_SETMODE; 2495 drvcmd[1]=0x00; 2496 drvcmd[2]=(current_drive->frame_size>>8)&0xFF; 2497 drvcmd[3]=current_drive->frame_size&0xFF; 2498 drvcmd[4]=0x00; 2499 if(famL_drive) 2500 flags_cmd_out=f_putcmd|f_lopsta|f_getsta|f_ResponseStatus|f_obey_p_check; 2501 else 2502 flags_cmd_out=f_putcmd|f_getsta|f_ResponseStatus|f_obey_p_check; 2503 } 2504 else if (famT_drive) 2505 { 2506 return (-1); 2507 } 2508 response_count=0; 2509 i=cmd_out(); 2510 if (i<0) return (i); 2511 current_drive->diskstate_flags |= frame_size_bit; 2512 return (0); 2513} 2514/*==========================================================================*/ 2515static int cc_GetVolume(void) 2516{ 2517 int i; 2518 u_char switches; 2519 u_char chan0=0; 2520 u_char vol0=0; 2521 u_char chan1=1; 2522 u_char vol1=0; 2523 2524 if (famV_drive) return (0); 2525 current_drive->diskstate_flags &= ~volume_bit; 2526 clr_cmdbuf(); 2527 if (fam1_drive) 2528 { 2529 drvcmd[0]=CMD1_GETMODE; 2530 drvcmd[1]=0x05; 2531 response_count=5; 2532 flags_cmd_out=f_putcmd|f_ResponseStatus|f_obey_p_check; 2533 } 2534 else if (fam2_drive) 2535 { 2536 drvcmd[0]=CMD2_GETMODE; 2537 drvcmd[1]=0x0E; 2538 response_count=5; 2539 flags_cmd_out=f_putcmd; 2540 } 2541 else if (fam0L_drive) 2542 { 2543 drvcmd[0]=CMD0_GETMODE; 2544 drvcmd[1]=0x03; 2545 response_count=2; 2546 if(famL_drive) 2547 flags_cmd_out=f_putcmd; 2548 else 2549 flags_cmd_out=f_putcmd|f_getsta|f_ResponseStatus|f_obey_p_check; 2550 } 2551 else if (famT_drive) 2552 { 2553 i=cc_get_mode_T(); 2554 if (i<0) return (i); 2555 } 2556 if (!famT_drive) 2557 { 2558 i=cmd_out(); 2559 if (i<0) return (i); 2560 } 2561 if (fam1_drive) 2562 { 2563 chan0=infobuf[1]&0x0F; 2564 vol0=infobuf[2]; 2565 chan1=infobuf[3]&0x0F; 2566 vol1=infobuf[4]; 2567 if (chan0==0) 2568 { 2569 chan0=1; 2570 vol0=0; 2571 } 2572 if (chan1==0) 2573 { 2574 chan1=2; 2575 vol1=0; 2576 } 2577 chan0 >>= 1; 2578 chan1 >>= 1; 2579 } 2580 else if (fam2_drive) 2581 { 2582 chan0=infobuf[1]; 2583 vol0=infobuf[2]; 2584 chan1=infobuf[3]; 2585 vol1=infobuf[4]; 2586 } 2587 else if (famL_drive) 2588 { 2589 chan0=0; 2590 chan1=1; 2591 vol0=vol1=infobuf[1]; 2592 switches=infobuf[0]; 2593 if ((switches&0x80)!=0) chan0=1; 2594 if ((switches&0x40)!=0) chan1=0; 2595 } 2596 else if (fam0_drive) /* different firmware levels */ 2597 { 2598 chan0=0; 2599 chan1=1; 2600 vol0=vol1=infobuf[1]; 2601 if (current_drive->drv_type>=drv_201) 2602 { 2603 if (current_drive->drv_type<drv_300) 2604 { 2605 switches=infobuf[0]; 2606 if ((switches&0x80)!=0) vol0=0; 2607 if ((switches&0x40)!=0) vol1=0; 2608 if (current_drive->drv_type>=drv_211) 2609 { 2610 if ((switches&0x20)!=0) chan0=1; 2611 if ((switches&0x10)!=0) chan1=0; 2612 } 2613 } 2614 else 2615 { 2616 vol0=infobuf[0]; 2617 if ((vol0&0x01)!=0) chan0=1; 2618 if ((vol1&0x01)==0) chan1=0; 2619 vol0 &= 0xFC; 2620 vol1 &= 0xFC; 2621 if (vol0!=0) vol0 += 3; 2622 if (vol1!=0) vol1 += 3; 2623 } 2624 } 2625 } 2626 else if (famT_drive) 2627 { 2628 current_drive->volume_control=infobuf[7]; 2629 chan0=0; 2630 chan1=1; 2631 if (current_drive->volume_control&0x10) vol0=0; 2632 else vol0=0xff; 2633 if (current_drive->volume_control&0x20) vol1=0; 2634 else vol1=0xff; 2635 } 2636 current_drive->vol_chan0=chan0; 2637 current_drive->vol_ctrl0=vol0; 2638 current_drive->vol_chan1=chan1; 2639 current_drive->vol_ctrl1=vol1; 2640#if 000 2641 current_drive->vol_chan2=2; 2642 current_drive->vol_ctrl2=0xFF; 2643 current_drive->vol_chan3=3; 2644 current_drive->vol_ctrl3=0xFF; 2645#endif /* 000 */ 2646 current_drive->diskstate_flags |= volume_bit; 2647 return (0); 2648} 2649/*==========================================================================*/ 2650static int cc_ReadCapacity(void) 2651{ 2652 int i, j; 2653 2654 if (fam2_drive) return (0); /* some firmware lacks this command */ 2655 if (famLV_drive) return (0); /* some firmware lacks this command */ 2656 if (famT_drive) return (0); /* done with cc_ReadTocDescr() */ 2657 current_drive->diskstate_flags &= ~cd_size_bit; 2658 for (j=3;j>0;j--) 2659 { 2660 clr_cmdbuf(); 2661 if (fam1_drive) 2662 { 2663 drvcmd[0]=CMD1_CAPACITY; 2664 response_count=5; 2665 flags_cmd_out=f_putcmd|f_ResponseStatus|f_obey_p_check; 2666 } 2667#if 00 2668 else if (fam2_drive) 2669 { 2670 drvcmd[0]=CMD2_CAPACITY; 2671 response_count=8; 2672 flags_cmd_out=f_putcmd; 2673 } 2674#endif 2675 else if (fam0_drive) 2676 { 2677 drvcmd[0]=CMD0_CAPACITY; 2678 response_count=5; 2679 flags_cmd_out=f_putcmd|f_getsta|f_ResponseStatus|f_obey_p_check; 2680 } 2681 i=cmd_out(); 2682 if (i>=0) break; 2683 msg(DBG_000,"cc_ReadCapacity: cmd_out: err %d\n", i); 2684 cc_ReadError(); 2685 } 2686 if (j==0) return (i); 2687 if (fam1_drive) current_drive->CDsize_frm=msf2blk(make32(make16(0,infobuf[0]),make16(infobuf[1],infobuf[2])))+CD_MSF_OFFSET; 2688 else if (fam0_drive) current_drive->CDsize_frm=make32(make16(0,infobuf[0]),make16(infobuf[1],infobuf[2])); 2689#if 00 2690 else if (fam2_drive) current_drive->CDsize_frm=make32(make16(infobuf[0],infobuf[1]),make16(infobuf[2],infobuf[3])); 2691#endif 2692 current_drive->diskstate_flags |= cd_size_bit; 2693 msg(DBG_000,"cc_ReadCapacity: %d frames.\n", current_drive->CDsize_frm); 2694 return (0); 2695} 2696/*==========================================================================*/ 2697static int cc_ReadTocDescr(void) 2698{ 2699 int i; 2700 2701 current_drive->diskstate_flags &= ~toc_bit; 2702 clr_cmdbuf(); 2703 if (fam1_drive) 2704 { 2705 drvcmd[0]=CMD1_DISKINFO; 2706 response_count=6; 2707 flags_cmd_out=f_putcmd|f_ResponseStatus|f_obey_p_check; 2708 } 2709 else if (fam0LV_drive) 2710 { 2711 drvcmd[0]=CMD0_DISKINFO; 2712 response_count=6; 2713 if(famLV_drive) 2714 flags_cmd_out=f_putcmd; 2715 else 2716 flags_cmd_out=f_putcmd|f_getsta|f_ResponseStatus|f_obey_p_check; 2717 } 2718 else if (fam2_drive) 2719 { 2720 /* possibly longer timeout periods necessary */ 2721 current_drive->f_multisession=0; 2722 drvcmd[0]=CMD2_DISKINFO; 2723 drvcmd[1]=0x02; 2724 drvcmd[2]=0xAB; 2725 drvcmd[3]=0xFF; /* session */ 2726 response_count=8; 2727 flags_cmd_out=f_putcmd; 2728 } 2729 else if (famT_drive) 2730 { 2731 current_drive->f_multisession=0; 2732 response_count=12; 2733 drvcmd[0]=CMDT_DISKINFO; 2734 drvcmd[1]=0x02; 2735 drvcmd[6]=CDROM_LEADOUT; 2736 drvcmd[8]=response_count; 2737 drvcmd[9]=0x00; 2738 } 2739 i=cmd_out(); 2740 if (i<0) return (i); 2741 if ((famT_drive)&&(i<response_count)) return (-100-i); 2742 if ((fam1_drive)||(fam2_drive)||(fam0LV_drive)) 2743 current_drive->xa_byte=infobuf[0]; 2744 if (fam2_drive) 2745 { 2746 current_drive->first_session=infobuf[1]; 2747 current_drive->last_session=infobuf[2]; 2748 current_drive->n_first_track=infobuf[3]; 2749 current_drive->n_last_track=infobuf[4]; 2750 if (current_drive->first_session!=current_drive->last_session) 2751 { 2752 current_drive->f_multisession=1; 2753 current_drive->lba_multi=msf2blk(make32(make16(0,infobuf[5]),make16(infobuf[6],infobuf[7]))); 2754 } 2755#if 0 2756 if (current_drive->first_session!=current_drive->last_session) 2757 { 2758 if (current_drive->last_session<=20) 2759 zwanzig=current_drive->last_session+1; 2760 else zwanzig=20; 2761 for (count=current_drive->first_session;count<zwanzig;count++) 2762 { 2763 drvcmd[0]=CMD2_DISKINFO; 2764 drvcmd[1]=0x02; 2765 drvcmd[2]=0xAB; 2766 drvcmd[3]=count; 2767 response_count=8; 2768 flags_cmd_out=f_putcmd; 2769 i=cmd_out(); 2770 if (i<0) return (i); 2771 current_drive->msf_multi_n[count]=make32(make16(0,infobuf[5]),make16(infobuf[6],infobuf[7])); 2772 } 2773 current_drive->diskstate_flags |= multisession_bit; 2774 } 2775#endif 2776 drvcmd[0]=CMD2_DISKINFO; 2777 drvcmd[1]=0x02; 2778 drvcmd[2]=0xAA; 2779 drvcmd[3]=0xFF; 2780 response_count=5; 2781 flags_cmd_out=f_putcmd; 2782 i=cmd_out(); 2783 if (i<0) return (i); 2784 current_drive->size_msf=make32(make16(0,infobuf[2]),make16(infobuf[3],infobuf[4])); 2785 current_drive->size_blk=msf2blk(current_drive->size_msf); 2786 current_drive->CDsize_frm=current_drive->size_blk+1; 2787 } 2788 else if (famT_drive) 2789 { 2790 current_drive->size_msf=make32(make16(infobuf[8],infobuf[9]),make16(infobuf[10],infobuf[11])); 2791 current_drive->size_blk=msf2blk(current_drive->size_msf); 2792 current_drive->CDsize_frm=current_drive->size_blk+1; 2793 current_drive->n_first_track=infobuf[2]; 2794 current_drive->n_last_track=infobuf[3]; 2795 } 2796 else 2797 { 2798 current_drive->n_first_track=infobuf[1]; 2799 current_drive->n_last_track=infobuf[2]; 2800 current_drive->size_msf=make32(make16(0,infobuf[3]),make16(infobuf[4],infobuf[5])); 2801 current_drive->size_blk=msf2blk(current_drive->size_msf); 2802 if (famLV_drive) current_drive->CDsize_frm=current_drive->size_blk+1; 2803 } 2804 current_drive->diskstate_flags |= toc_bit; 2805 msg(DBG_TOC,"TocDesc: xa %02X firstt %02X lastt %02X size %08X firstses %02X lastsess %02X\n", 2806 current_drive->xa_byte, 2807 current_drive->n_first_track, 2808 current_drive->n_last_track, 2809 current_drive->size_msf, 2810 current_drive->first_session, 2811 current_drive->last_session); 2812 return (0); 2813} 2814/*==========================================================================*/ 2815static int cc_ReadTocEntry(int num) 2816{ 2817 int i; 2818 2819 clr_cmdbuf(); 2820 if (fam1_drive) 2821 { 2822 drvcmd[0]=CMD1_READTOC; 2823 drvcmd[2]=num; 2824 response_count=8; 2825 flags_cmd_out=f_putcmd|f_ResponseStatus|f_obey_p_check; 2826 } 2827 else if (fam2_drive) 2828 { 2829 /* possibly longer timeout periods necessary */ 2830 drvcmd[0]=CMD2_DISKINFO; 2831 drvcmd[1]=0x02; 2832 drvcmd[2]=num; 2833 response_count=5; 2834 flags_cmd_out=f_putcmd; 2835 } 2836 else if (fam0LV_drive) 2837 { 2838 drvcmd[0]=CMD0_READTOC; 2839 drvcmd[1]=0x02; 2840 drvcmd[2]=num; 2841 response_count=8; 2842 if (famLV_drive) 2843 flags_cmd_out=f_putcmd; 2844 else 2845 flags_cmd_out=f_putcmd|f_getsta|f_ResponseStatus|f_obey_p_check; 2846 } 2847 else if (famT_drive) 2848 { 2849 response_count=12; 2850 drvcmd[0]=CMDT_DISKINFO; 2851 drvcmd[1]=0x02; 2852 drvcmd[6]=num; 2853 drvcmd[8]=response_count; 2854 drvcmd[9]=0x00; 2855 } 2856 i=cmd_out(); 2857 if (i<0) return (i); 2858 if ((famT_drive)&&(i<response_count)) return (-100-i); 2859 if ((fam1_drive)||(fam0LV_drive)) 2860 { 2861 current_drive->TocEnt_nixbyte=infobuf[0]; 2862 i=1; 2863 } 2864 else if (fam2_drive) i=0; 2865 else if (famT_drive) i=5; 2866 current_drive->TocEnt_ctl_adr=swap_nibbles(infobuf[i++]); 2867 if ((fam1_drive)||(fam0L_drive)) 2868 { 2869 current_drive->TocEnt_number=infobuf[i++]; 2870 current_drive->TocEnt_format=infobuf[i]; 2871 } 2872 else 2873 { 2874 current_drive->TocEnt_number=num; 2875 current_drive->TocEnt_format=0; 2876 } 2877 if (fam1_drive) i=4; 2878 else if (fam0LV_drive) i=5; 2879 else if (fam2_drive) i=2; 2880 else if (famT_drive) i=9; 2881 current_drive->TocEnt_address=make32(make16(0,infobuf[i]), 2882 make16(infobuf[i+1],infobuf[i+2])); 2883 for (i=0;i<response_count;i++) 2884 sprintf(&msgbuf[i*3], " %02X", infobuf[i]); 2885 msgbuf[i*3]=0; 2886 msg(DBG_ECS,"TocEntry:%s\n", msgbuf); 2887 msg(DBG_TOC,"TocEntry: %02X %02X %02X %02X %08X\n", 2888 current_drive->TocEnt_nixbyte, current_drive->TocEnt_ctl_adr, 2889 current_drive->TocEnt_number, current_drive->TocEnt_format, 2890 current_drive->TocEnt_address); 2891 return (0); 2892} 2893/*==========================================================================*/ 2894static int cc_ReadPacket(void) 2895{ 2896 int i; 2897 2898 clr_cmdbuf(); 2899 drvcmd[0]=CMD0_PACKET; 2900 drvcmd[1]=response_count; 2901 if(famL_drive) flags_cmd_out=f_putcmd; 2902 else if (fam01_drive) 2903 flags_cmd_out=f_putcmd|f_getsta|f_ResponseStatus|f_obey_p_check; 2904 else if (fam2_drive) return (-1); /* not implemented yet */ 2905 else if (famT_drive) 2906 { 2907 return (-1); 2908 } 2909 i=cmd_out(); 2910 return (i); 2911} 2912/*==========================================================================*/ 2913static int convert_UPC(u_char *p) 2914{ 2915 int i; 2916 2917 p++; 2918 if (fam0L_drive) p[13]=0; 2919 for (i=0;i<7;i++) 2920 { 2921 if (fam1_drive) current_drive->UPC_buf[i]=swap_nibbles(*p++); 2922 else if (fam0L_drive) 2923 { 2924 current_drive->UPC_buf[i]=((*p++)<<4)&0xFF; 2925 current_drive->UPC_buf[i] |= *p++; 2926 } 2927 else if (famT_drive) 2928 { 2929 return (-1); 2930 } 2931 else /* CD200 */ 2932 { 2933 return (-1); 2934 } 2935 } 2936 current_drive->UPC_buf[6] &= 0xF0; 2937 return (0); 2938} 2939/*==========================================================================*/ 2940static int cc_ReadUPC(void) 2941{ 2942 int i; 2943#if TEST_UPC 2944 int block, checksum; 2945#endif /* TEST_UPC */ 2946 2947 if (fam2_drive) return (0); /* not implemented yet */ 2948 if (famT_drive) return (0); /* not implemented yet */ 2949 if (famV_drive) return (0); /* not implemented yet */ 2950#if 1 2951 if (fam0_drive) return (0); /* but it should work */ 2952#endif 2953 2954 current_drive->diskstate_flags &= ~upc_bit; 2955#if TEST_UPC 2956 for (block=CD_MSF_OFFSET+1;block<CD_MSF_OFFSET+200;block++) 2957 { 2958#endif /* TEST_UPC */ 2959 clr_cmdbuf(); 2960 if (fam1_drive) 2961 { 2962 drvcmd[0]=CMD1_READ_UPC; 2963#if TEST_UPC 2964 drvcmd[1]=(block>>16)&0xFF; 2965 drvcmd[2]=(block>>8)&0xFF; 2966 drvcmd[3]=block&0xFF; 2967#endif /* TEST_UPC */ 2968 response_count=8; 2969 flags_cmd_out=f_putcmd|f_ResponseStatus|f_obey_p_check; 2970 } 2971 else if (fam0L_drive) 2972 { 2973 drvcmd[0]=CMD0_READ_UPC; 2974#if TEST_UPC 2975 drvcmd[2]=(block>>16)&0xFF; 2976 drvcmd[3]=(block>>8)&0xFF; 2977 drvcmd[4]=block&0xFF; 2978#endif /* TEST_UPC */ 2979 response_count=0; 2980 flags_cmd_out=f_putcmd|f_lopsta|f_getsta|f_ResponseStatus|f_obey_p_check|f_bit1; 2981 } 2982 else if (fam2_drive) 2983 { 2984 return (-1); 2985 } 2986 else if (famT_drive) 2987 { 2988 return (-1); 2989 } 2990 i=cmd_out(); 2991 if (i<0) 2992 { 2993 msg(DBG_000,"cc_ReadUPC cmd_out: err %d\n", i); 2994 return (i); 2995 } 2996 if (fam0L_drive) 2997 { 2998 response_count=16; 2999 if (famL_drive) flags_cmd_out=f_putcmd; 3000 i=cc_ReadPacket(); 3001 if (i<0) 3002 { 3003 msg(DBG_000,"cc_ReadUPC ReadPacket: err %d\n", i); 3004 return (i); 3005 } 3006 } 3007#if TEST_UPC 3008 checksum=0; 3009#endif /* TEST_UPC */ 3010 for (i=0;i<(fam1_drive?8:16);i++) 3011 { 3012#if TEST_UPC 3013 checksum |= infobuf[i]; 3014#endif /* TEST_UPC */ 3015 sprintf(&msgbuf[i*3], " %02X", infobuf[i]); 3016 } 3017 msgbuf[i*3]=0; 3018 msg(DBG_UPC,"UPC info:%s\n", msgbuf); 3019#if TEST_UPC 3020 if ((checksum&0x7F)!=0) break; 3021 } 3022#endif /* TEST_UPC */ 3023 current_drive->UPC_ctl_adr=0; 3024 if (fam1_drive) i=0; 3025 else i=2; 3026 if ((infobuf[i]&0x80)!=0) 3027 { 3028 convert_UPC(&infobuf[i]); 3029 current_drive->UPC_ctl_adr = (current_drive->TocEnt_ctl_adr & 0xF0) | 0x02; 3030 } 3031 for (i=0;i<7;i++) 3032 sprintf(&msgbuf[i*3], " %02X", current_drive->UPC_buf[i]); 3033 sprintf(&msgbuf[i*3], " (%02X)", current_drive->UPC_ctl_adr); 3034 msgbuf[i*3+5]=0; 3035 msg(DBG_UPC,"UPC code:%s\n", msgbuf); 3036 current_drive->diskstate_flags |= upc_bit; 3037 return (0); 3038} 3039 3040static int sbpcd_get_mcn(struct cdrom_device_info *cdi, struct cdrom_mcn *mcn) 3041{ 3042 int i; 3043 unsigned char *mcnp = mcn->medium_catalog_number; 3044 unsigned char *resp; 3045 3046 current_drive->diskstate_flags &= ~upc_bit; 3047 clr_cmdbuf(); 3048 if (fam1_drive) 3049 { 3050 drvcmd[0]=CMD1_READ_UPC; 3051 response_count=8; 3052 flags_cmd_out=f_putcmd|f_ResponseStatus|f_obey_p_check; 3053 } 3054 else if (fam0L_drive) 3055 { 3056 drvcmd[0]=CMD0_READ_UPC; 3057 response_count=0; 3058 flags_cmd_out=f_putcmd|f_lopsta|f_getsta|f_ResponseStatus|f_obey_p_check|f_bit1; 3059 } 3060 else if (fam2_drive) 3061 { 3062 return (-1); 3063 } 3064 else if (famT_drive) 3065 { 3066 return (-1); 3067 } 3068 i=cmd_out(); 3069 if (i<0) 3070 { 3071 msg(DBG_000,"cc_ReadUPC cmd_out: err %d\n", i); 3072 return (i); 3073 } 3074 if (fam0L_drive) 3075 { 3076 response_count=16; 3077 if (famL_drive) flags_cmd_out=f_putcmd; 3078 i=cc_ReadPacket(); 3079 if (i<0) 3080 { 3081 msg(DBG_000,"cc_ReadUPC ReadPacket: err %d\n", i); 3082 return (i); 3083 } 3084 } 3085 current_drive->UPC_ctl_adr=0; 3086 if (fam1_drive) i=0; 3087 else i=2; 3088 3089 resp = infobuf + i; 3090 if (*resp++ == 0x80) { 3091 /* packed bcd to single ASCII digits */ 3092 *mcnp++ = (*resp >> 4) + '0'; 3093 *mcnp++ = (*resp++ & 0x0f) + '0'; 3094 *mcnp++ = (*resp >> 4) + '0'; 3095 *mcnp++ = (*resp++ & 0x0f) + '0'; 3096 *mcnp++ = (*resp >> 4) + '0'; 3097 *mcnp++ = (*resp++ & 0x0f) + '0'; 3098 *mcnp++ = (*resp >> 4) + '0'; 3099 *mcnp++ = (*resp++ & 0x0f) + '0'; 3100 *mcnp++ = (*resp >> 4) + '0'; 3101 *mcnp++ = (*resp++ & 0x0f) + '0'; 3102 *mcnp++ = (*resp >> 4) + '0'; 3103 *mcnp++ = (*resp++ & 0x0f) + '0'; 3104 *mcnp++ = (*resp >> 4) + '0'; 3105 } 3106 *mcnp = '\0'; 3107 3108 current_drive->diskstate_flags |= upc_bit; 3109 return (0); 3110} 3111 3112/*==========================================================================*/ 3113static int cc_CheckMultiSession(void) 3114{ 3115 int i; 3116 3117 if (fam2_drive) return (0); 3118 current_drive->f_multisession=0; 3119 current_drive->lba_multi=0; 3120 if (fam0_drive) return (0); 3121 clr_cmdbuf(); 3122 if (fam1_drive) 3123 { 3124 drvcmd[0]=CMD1_MULTISESS; 3125 response_count=6; 3126 flags_cmd_out=f_putcmd|f_ResponseStatus|f_obey_p_check; 3127 i=cmd_out(); 3128 if (i<0) return (i); 3129 if ((infobuf[0]&0x80)!=0) 3130 { 3131 current_drive->f_multisession=1; 3132 current_drive->lba_multi=msf2blk(make32(make16(0,infobuf[1]), 3133 make16(infobuf[2],infobuf[3]))); 3134 } 3135 } 3136 else if (famLV_drive) 3137 { 3138 drvcmd[0]=CMDL_MULTISESS; 3139 drvcmd[1]=3; 3140 drvcmd[2]=1; 3141 response_count=8; 3142 flags_cmd_out=f_putcmd; 3143 i=cmd_out(); 3144 if (i<0) return (i); 3145 current_drive->lba_multi=msf2blk(make32(make16(0,infobuf[5]), 3146 make16(infobuf[6],infobuf[7]))); 3147 } 3148 else if (famT_drive) 3149 { 3150 response_count=12; 3151 drvcmd[0]=CMDT_DISKINFO; 3152 drvcmd[1]=0x02; 3153 drvcmd[6]=0; 3154 drvcmd[8]=response_count; 3155 drvcmd[9]=0x40; 3156 i=cmd_out(); 3157 if (i<0) return (i); 3158 if (i<response_count) return (-100-i); 3159 current_drive->first_session=infobuf[2]; 3160 current_drive->last_session=infobuf[3]; 3161 current_drive->track_of_last_session=infobuf[6]; 3162 if (current_drive->first_session!=current_drive->last_session) 3163 { 3164 current_drive->f_multisession=1; 3165 current_drive->lba_multi=msf2blk(make32(make16(0,infobuf[9]),make16(infobuf[10],infobuf[11]))); 3166 } 3167 } 3168 for (i=0;i<response_count;i++) 3169 sprintf(&msgbuf[i*3], " %02X", infobuf[i]); 3170 msgbuf[i*3]=0; 3171 msg(DBG_MUL,"MultiSession Info:%s (%d)\n", msgbuf, current_drive->lba_multi); 3172 if (current_drive->lba_multi>200) 3173 { 3174 current_drive->f_multisession=1; 3175 msg(DBG_MUL,"MultiSession base: %06X\n", current_drive->lba_multi); 3176 } 3177 return (0); 3178} 3179/*==========================================================================*/ 3180#ifdef FUTURE 3181static int cc_SubChanInfo(int frame, int count, u_char *buffer) 3182 /* "frame" is a RED BOOK (msf-bin) address */ 3183{ 3184 int i; 3185 3186 if (fam0LV_drive) return (-ENOSYS); /* drive firmware lacks it */ 3187 if (famT_drive) 3188 { 3189 return (-1); 3190 } 3191#if 0 3192 if (current_drive->audio_state!=audio_playing) return (-ENODATA); 3193#endif 3194 clr_cmdbuf(); 3195 drvcmd[0]=CMD1_SUBCHANINF; 3196 drvcmd[1]=(frame>>16)&0xFF; 3197 drvcmd[2]=(frame>>8)&0xFF; 3198 drvcmd[3]=frame&0xFF; 3199 drvcmd[5]=(count>>8)&0xFF; 3200 drvcmd[6]=count&0xFF; 3201 flags_cmd_out=f_putcmd|f_respo2|f_ResponseStatus|f_obey_p_check; 3202 cmd_type=READ_SC; 3203 current_drive->frame_size=CD_FRAMESIZE_SUB; 3204 i=cmd_out(); /* which buffer to use? */ 3205 return (i); 3206} 3207#endif /* FUTURE */ 3208/*==========================================================================*/ 3209static void __init check_datarate(void) 3210{ 3211 int i=0; 3212 3213 msg(DBG_IOX,"check_datarate entered.\n"); 3214 datarate=0; 3215#if TEST_STI 3216 for (i=0;i<=1000;i++) printk("."); 3217#endif 3218 /* set a timer to make (timed_out_delay!=0) after 1.1 seconds */ 3219#if 1 3220 del_timer(&delay_timer); 3221#endif 3222 delay_timer.expires=jiffies+11*HZ/10; 3223 timed_out_delay=0; 3224 add_timer(&delay_timer); 3225#if 0 3226 msg(DBG_TIM,"delay timer started (11*HZ/10).\n"); 3227#endif 3228 do 3229 { 3230 i=inb(CDi_status); 3231 datarate++; 3232#if 1 3233 if (datarate>0x6FFFFFFF) break; 3234#endif 3235 } 3236 while (!timed_out_delay); 3237 del_timer(&delay_timer); 3238#if 0 3239 msg(DBG_TIM,"datarate: %04X\n", datarate); 3240#endif 3241 if (datarate<65536) datarate=65536; 3242 maxtim16=datarate*16; 3243 maxtim04=datarate*4; 3244 maxtim02=datarate*2; 3245 maxtim_8=datarate/32; 3246#if LONG_TIMING 3247 maxtim_data=datarate/100; 3248#else 3249 maxtim_data=datarate/300; 3250#endif /* LONG_TIMING */ 3251#if 0 3252 msg(DBG_TIM,"maxtim_8 %d, maxtim_data %d.\n", maxtim_8, maxtim_data); 3253#endif 3254} 3255/*==========================================================================*/ 3256#if 0 3257static int c2_ReadError(int fam) 3258{ 3259 int i; 3260 3261 clr_cmdbuf(); 3262 response_count=9; 3263 clr_respo_buf(9); 3264 if (fam==1) 3265 { 3266 drvcmd[0]=CMD0_READ_ERR; /* same as CMD1_ and CMDL_ */ 3267 i=do_cmd(f_putcmd|f_lopsta|f_getsta|f_ResponseStatus); 3268 } 3269 else if (fam==2) 3270 { 3271 drvcmd[0]=CMD2_READ_ERR; 3272 i=do_cmd(f_putcmd); 3273 } 3274 else return (-1); 3275 return (i); 3276} 3277#endif 3278/*==========================================================================*/ 3279static void __init ask_mail(void) 3280{ 3281 int i; 3282 3283 msg(DBG_INF, "please mail the following lines to emoenke@gwdg.de\n"); 3284 msg(DBG_INF, "(don't mail if you are not using the actual kernel):\n"); 3285 msg(DBG_INF, "%s\n", VERSION); 3286 msg(DBG_INF, "address %03X, type %s, drive %s (ID %d)\n", 3287 CDo_command, type, current_drive->drive_model, current_drive->drv_id); 3288 for (i=0;i<12;i++) 3289 sprintf(&msgbuf[i*3], " %02X", infobuf[i]); 3290 msgbuf[i*3]=0; 3291 msg(DBG_INF,"infobuf =%s\n", msgbuf); 3292 for (i=0;i<12;i++) 3293 sprintf(&msgbuf[i*3], " %c ", infobuf[i]); 3294 msgbuf[i*3]=0; 3295 msg(DBG_INF,"infobuf =%s\n", msgbuf); 3296} 3297/*==========================================================================*/ 3298static int __init check_version(void) 3299{ 3300 int i, j, l; 3301 int teac_possible=0; 3302 3303 msg(DBG_INI,"check_version: id=%d, d=%d.\n", current_drive->drv_id, current_drive - D_S); 3304 current_drive->drv_type=0; 3305 3306 /* check for CR-52x, CR-56x, LCS-7260 and ECS-AT */ 3307 /* clear any pending error state */ 3308 clr_cmdbuf(); 3309 drvcmd[0]=CMD0_READ_ERR; /* same as CMD1_ and CMDL_ */ 3310 response_count=9; 3311 flags_cmd_out=f_putcmd; 3312 i=cmd_out(); 3313 if (i<0) msg(DBG_INI,"CMD0_READ_ERR returns %d (ok anyway).\n",i); 3314 /* read drive version */ 3315 clr_cmdbuf(); 3316 for (i=0;i<12;i++) infobuf[i]=0; 3317 drvcmd[0]=CMD0_READ_VER; /* same as CMD1_ and CMDL_ */ 3318 response_count=12; /* fam1: only 11 */ 3319 flags_cmd_out=f_putcmd; 3320 i=cmd_out(); 3321 if (i<-1) msg(DBG_INI,"CMD0_READ_VER returns %d\n",i); 3322 if (i==-11) teac_possible++; 3323 j=0; 3324 for (i=0;i<12;i++) j+=infobuf[i]; 3325 if (j) 3326 { 3327 for (i=0;i<12;i++) 3328 sprintf(&msgbuf[i*3], " %02X", infobuf[i]); 3329 msgbuf[i*3]=0; 3330 msg(DBG_ECS,"infobuf =%s\n", msgbuf); 3331 for (i=0;i<12;i++) 3332 sprintf(&msgbuf[i*3], " %c ", infobuf[i]); 3333 msgbuf[i*3]=0; 3334 msg(DBG_ECS,"infobuf =%s\n", msgbuf); 3335 } 3336 for (i=0;i<4;i++) if (infobuf[i]!=family1[i]) break; 3337 if (i==4) 3338 { 3339 current_drive->drive_model[0]='C'; 3340 current_drive->drive_model[1]='R'; 3341 current_drive->drive_model[2]='-'; 3342 current_drive->drive_model[3]='5'; 3343 current_drive->drive_model[4]=infobuf[i++]; 3344 current_drive->drive_model[5]=infobuf[i++]; 3345 current_drive->drive_model[6]=0; 3346 current_drive->drv_type=drv_fam1; 3347 } 3348 if (!current_drive->drv_type) 3349 { 3350 for (i=0;i<8;i++) if (infobuf[i]!=family0[i]) break; 3351 if (i==8) 3352 { 3353 current_drive->drive_model[0]='C'; 3354 current_drive->drive_model[1]='R'; 3355 current_drive->drive_model[2]='-'; 3356 current_drive->drive_model[3]='5'; 3357 current_drive->drive_model[4]='2'; 3358 current_drive->drive_model[5]='x'; 3359 current_drive->drive_model[6]=0; 3360 current_drive->drv_type=drv_fam0; 3361 } 3362 } 3363 if (!current_drive->drv_type) 3364 { 3365 for (i=0;i<8;i++) if (infobuf[i]!=familyL[i]) break; 3366 if (i==8) 3367 { 3368 for (j=0;j<8;j++) 3369 current_drive->drive_model[j]=infobuf[j]; 3370 current_drive->drive_model[8]=0; 3371 current_drive->drv_type=drv_famL; 3372 } 3373 } 3374 if (!current_drive->drv_type) 3375 { 3376 for (i=0;i<6;i++) if (infobuf[i]!=familyV[i]) break; 3377 if (i==6) 3378 { 3379 for (j=0;j<6;j++) 3380 current_drive->drive_model[j]=infobuf[j]; 3381 current_drive->drive_model[6]=0; 3382 current_drive->drv_type=drv_famV; 3383 i+=2; /* 2 blanks before version */ 3384 } 3385 } 3386 if (!current_drive->drv_type) 3387 { 3388 /* check for CD200 */ 3389 clr_cmdbuf(); 3390 drvcmd[0]=CMD2_READ_ERR; 3391 response_count=9; 3392 flags_cmd_out=f_putcmd; 3393 i=cmd_out(); 3394 if (i<0) msg(DBG_INI,"CMD2_READERR returns %d (ok anyway).\n",i); 3395 if (i<0) msg(DBG_000,"CMD2_READERR returns %d (ok anyway).\n",i); 3396 /* read drive version */ 3397 clr_cmdbuf(); 3398 for (i=0;i<12;i++) infobuf[i]=0; 3399 if (sbpro_type==1) OUT(CDo_sel_i_d,0); 3400#if 0 3401 OUT(CDo_reset,0); 3402 sbp_sleep(6*HZ); 3403 OUT(CDo_enable,current_drive->drv_sel); 3404#endif 3405 drvcmd[0]=CMD2_READ_VER; 3406 response_count=12; 3407 flags_cmd_out=f_putcmd; 3408 i=cmd_out(); 3409 if (i<0) msg(DBG_INI,"CMD2_READ_VER returns %d\n",i); 3410 if (i==-7) teac_possible++; 3411 j=0; 3412 for (i=0;i<12;i++) j+=infobuf[i]; 3413 if (j) 3414 { 3415 for (i=0;i<12;i++) 3416 sprintf(&msgbuf[i*3], " %02X", infobuf[i]); 3417 msgbuf[i*3]=0; 3418 msg(DBG_IDX,"infobuf =%s\n", msgbuf); 3419 for (i=0;i<12;i++) 3420 sprintf(&msgbuf[i*3], " %c ", infobuf[i]); 3421 msgbuf[i*3]=0; 3422 msg(DBG_IDX,"infobuf =%s\n", msgbuf); 3423 } 3424 if (i>=0) 3425 { 3426 for (i=0;i<5;i++) if (infobuf[i]!=family2[i]) break; 3427 if (i==5) 3428 { 3429 current_drive->drive_model[0]='C'; 3430 current_drive->drive_model[1]='D'; 3431 current_drive->drive_model[2]='2'; 3432 current_drive->drive_model[3]='0'; 3433 current_drive->drive_model[4]='0'; 3434 current_drive->drive_model[5]=infobuf[i++]; 3435 current_drive->drive_model[6]=infobuf[i++]; 3436 current_drive->drive_model[7]=0; 3437 current_drive->drv_type=drv_fam2; 3438 } 3439 } 3440 } 3441 if (!current_drive->drv_type) 3442 { 3443 /* check for TEAC CD-55A */ 3444 msg(DBG_TEA,"teac_possible: %d\n",teac_possible); 3445 for (j=1;j<=((current_drive->drv_id==0)?3:1);j++) 3446 { 3447 for (l=1;l<=((current_drive->drv_id==0)?10:1);l++) 3448 { 3449 msg(DBG_TEA,"TEAC reset #%d-%d.\n", j, l); 3450 if (sbpro_type==1) OUT(CDo_reset,0); 3451 else 3452 { 3453 OUT(CDo_enable,current_drive->drv_sel); 3454 OUT(CDo_sel_i_d,0); 3455 OUT(CDo_command,CMDT_RESET); 3456 for (i=0;i<9;i++) OUT(CDo_command,0); 3457 } 3458 sbp_sleep(5*HZ/10); 3459 OUT(CDo_enable,current_drive->drv_sel); 3460 OUT(CDo_sel_i_d,0); 3461 i=inb(CDi_status); 3462 msg(DBG_TEA,"TEAC CDi_status: %02X.\n",i); 3463#if 0 3464 if (i&s_not_result_ready) continue; /* drive not present or ready */ 3465#endif 3466 i=inb(CDi_info); 3467 msg(DBG_TEA,"TEAC CDi_info: %02X.\n",i); 3468 if (i==0x55) break; /* drive found */ 3469 } 3470 if (i==0x55) break; /* drive found */ 3471 } 3472 if (i==0x55) /* drive found */ 3473 { 3474 msg(DBG_TEA,"TEAC drive found.\n"); 3475 clr_cmdbuf(); 3476 flags_cmd_out=f_putcmd; 3477 response_count=12; 3478 drvcmd[0]=CMDT_READ_VER; 3479 drvcmd[4]=response_count; 3480 for (i=0;i<12;i++) infobuf[i]=0; 3481 i=cmd_out_T(); 3482 if (i!=0) msg(DBG_TEA,"cmd_out_T(CMDT_READ_VER) returns %d.\n",i); 3483 for (i=1;i<6;i++) if (infobuf[i]!=familyT[i-1]) break; 3484 if (i==6) 3485 { 3486 current_drive->drive_model[0]='C'; 3487 current_drive->drive_model[1]='D'; 3488 current_drive->drive_model[2]='-'; 3489 current_drive->drive_model[3]='5'; 3490 current_drive->drive_model[4]='5'; 3491 current_drive->drive_model[5]=0; 3492 current_drive->drv_type=drv_famT; 3493 } 3494 } 3495 } 3496 if (!current_drive->drv_type) 3497 { 3498 msg(DBG_TEA,"no drive found at address %03X under ID %d.\n",CDo_command,current_drive->drv_id); 3499 return (-522); 3500 } 3501 for (j=0;j<4;j++) current_drive->firmware_version[j]=infobuf[i+j]; 3502 if (famL_drive) 3503 { 3504 u_char lcs_firm_e1[]="A E1"; 3505 u_char lcs_firm_f4[]="A4F4"; 3506 3507 for (j=0;j<4;j++) 3508 if (current_drive->firmware_version[j]!=lcs_firm_e1[j]) break; 3509 if (j==4) current_drive->drv_type=drv_e1; 3510 3511 for (j=0;j<4;j++) 3512 if (current_drive->firmware_version[j]!=lcs_firm_f4[j]) break; 3513 if (j==4) current_drive->drv_type=drv_f4; 3514 3515 if (current_drive->drv_type==drv_famL) ask_mail(); 3516 } 3517 else if (famT_drive) 3518 { 3519 j=infobuf[4]; /* one-byte version??? - here: 0x15 */ 3520 if (j=='5') 3521 { 3522 current_drive->firmware_version[0]=infobuf[7]; 3523 current_drive->firmware_version[1]=infobuf[8]; 3524 current_drive->firmware_version[2]=infobuf[10]; 3525 current_drive->firmware_version[3]=infobuf[11]; 3526 } 3527 else 3528 { 3529 if (j!=0x15) ask_mail(); 3530 current_drive->firmware_version[0]='0'; 3531 current_drive->firmware_version[1]='.'; 3532 current_drive->firmware_version[2]='0'+(j>>4); 3533 current_drive->firmware_version[3]='0'+(j&0x0f); 3534 } 3535 } 3536 else /* CR-52x, CR-56x, CD200, ECS-AT */ 3537 { 3538 j = (current_drive->firmware_version[0] & 0x0F) * 100 + 3539 (current_drive->firmware_version[2] & 0x0F) *10 + 3540 (current_drive->firmware_version[3] & 0x0F); 3541 if (fam0_drive) 3542 { 3543 if (j<200) current_drive->drv_type=drv_199; 3544 else if (j<201) current_drive->drv_type=drv_200; 3545 else if (j<210) current_drive->drv_type=drv_201; 3546 else if (j<211) current_drive->drv_type=drv_210; 3547 else if (j<300) current_drive->drv_type=drv_211; 3548 else if (j>=300) current_drive->drv_type=drv_300; 3549 } 3550 else if (fam1_drive) 3551 { 3552 if (j<100) current_drive->drv_type=drv_099; 3553 else 3554 { 3555 current_drive->drv_type=drv_100; 3556 if ((j!=500)&&(j!=102)) ask_mail(); 3557 } 3558 } 3559 else if (fam2_drive) 3560 { 3561 if (current_drive->drive_model[5]=='F') 3562 { 3563 if ((j!=1)&&(j!=35)&&(j!=200)&&(j!=210)) 3564 ask_mail(); /* unknown version at time */ 3565 } 3566 else 3567 { 3568 msg(DBG_INF,"this CD200 drive is not fully supported yet - only audio will work.\n"); 3569 if ((j!=101)&&(j!=35)) 3570 ask_mail(); /* unknown version at time */ 3571 } 3572 } 3573 else if (famV_drive) 3574 { 3575 if ((j==100)||(j==150)) current_drive->drv_type=drv_at; 3576 ask_mail(); /* hopefully we get some feedback by this */ 3577 } 3578 } 3579 msg(DBG_LCS,"drive type %02X\n",current_drive->drv_type); 3580 msg(DBG_INI,"check_version done.\n"); 3581 return (0); 3582} 3583/*==========================================================================*/ 3584static void switch_drive(struct sbpcd_drive *p) 3585{ 3586 current_drive = p; 3587 OUT(CDo_enable,current_drive->drv_sel); 3588 msg(DBG_DID,"drive %d (ID=%d) activated.\n", 3589 current_drive - D_S, current_drive->drv_id); 3590 return; 3591} 3592/*==========================================================================*/ 3593#ifdef PATH_CHECK 3594/* 3595 * probe for the presence of an interface card 3596 */ 3597static int __init check_card(int port) 3598{ 3599#undef N_RESPO 3600#define N_RESPO 20 3601 int i, j, k; 3602 u_char response[N_RESPO]; 3603 u_char save_port0; 3604 u_char save_port3; 3605 3606 msg(DBG_INI,"check_card entered.\n"); 3607 save_port0=inb(port+0); 3608 save_port3=inb(port+3); 3609 3610 for (j=0;j<NR_SBPCD;j++) 3611 { 3612 OUT(port+3,j) ; /* enable drive #j */ 3613 OUT(port+0,CMD0_PATH_CHECK); 3614 for (i=10;i>0;i--) OUT(port+0,0); 3615 for (k=0;k<N_RESPO;k++) response[k]=0; 3616 for (k=0;k<N_RESPO;k++) 3617 { 3618 for (i=10000;i>0;i--) 3619 { 3620 if (inb(port+1)&s_not_result_ready) continue; 3621 response[k]=inb(port+0); 3622 break; 3623 } 3624 } 3625 for (i=0;i<N_RESPO;i++) 3626 sprintf(&msgbuf[i*3], " %02X", response[i]); 3627 msgbuf[i*3]=0; 3628 msg(DBG_TEA,"path check 00 (%d): %s\n", j, msgbuf); 3629 OUT(port+0,CMD0_PATH_CHECK); 3630 for (i=10;i>0;i--) OUT(port+0,0); 3631 for (k=0;k<N_RESPO;k++) response[k]=0xFF; 3632 for (k=0;k<N_RESPO;k++) 3633 { 3634 for (i=10000;i>0;i--) 3635 { 3636 if (inb(port+1)&s_not_result_ready) continue; 3637 response[k]=inb(port+0); 3638 break; 3639 } 3640 } 3641 for (i=0;i<N_RESPO;i++) 3642 sprintf(&msgbuf[i*3], " %02X", response[i]); 3643 msgbuf[i*3]=0; 3644 msg(DBG_TEA,"path check 00 (%d): %s\n", j, msgbuf); 3645 3646 if (response[0]==0xAA) 3647 if (response[1]==0x55) 3648 return (0); 3649 } 3650 for (j=0;j<NR_SBPCD;j++) 3651 { 3652 OUT(port+3,j) ; /* enable drive #j */ 3653 OUT(port+0,CMD2_READ_VER); 3654 for (i=10;i>0;i--) OUT(port+0,0); 3655 for (k=0;k<N_RESPO;k++) response[k]=0; 3656 for (k=0;k<N_RESPO;k++) 3657 { 3658 for (i=1000000;i>0;i--) 3659 { 3660 if (inb(port+1)&s_not_result_ready) continue; 3661 response[k]=inb(port+0); 3662 break; 3663 } 3664 } 3665 for (i=0;i<N_RESPO;i++) 3666 sprintf(&msgbuf[i*3], " %02X", response[i]); 3667 msgbuf[i*3]=0; 3668 msg(DBG_TEA,"path check 12 (%d): %s\n", j, msgbuf); 3669 3670 OUT(port+0,CMD2_READ_VER); 3671 for (i=10;i>0;i--) OUT(port+0,0); 3672 for (k=0;k<N_RESPO;k++) response[k]=0xFF; 3673 for (k=0;k<N_RESPO;k++) 3674 { 3675 for (i=1000000;i>0;i--) 3676 { 3677 if (inb(port+1)&s_not_result_ready) continue; 3678 response[k]=inb(port+0); 3679 break; 3680 } 3681 } 3682 for (i=0;i<N_RESPO;i++) 3683 sprintf(&msgbuf[i*3], " %02X", response[i]); 3684 msgbuf[i*3]=0; 3685 msg(DBG_TEA,"path check 12 (%d): %s\n", j, msgbuf); 3686 3687 if (response[0]==0xAA) 3688 if (response[1]==0x55) 3689 return (0); 3690 } 3691 OUT(port+0,save_port0); 3692 OUT(port+3,save_port3); 3693 return (0); /* in any case - no real "function" at time */ 3694} 3695#endif /* PATH_CHECK */ 3696/*==========================================================================*/ 3697/*==========================================================================*/ 3698/* 3699 * probe for the presence of drives on the selected controller 3700 */ 3701static int __init check_drives(void) 3702{ 3703 int i, j; 3704 3705 msg(DBG_INI,"check_drives entered.\n"); 3706 ndrives=0; 3707 for (j=0;j<max_drives;j++) 3708 { 3709 struct sbpcd_drive *p = D_S + ndrives; 3710 p->drv_id=j; 3711 if (sbpro_type==1) p->drv_sel=(j&0x01)<<1|(j&0x02)>>1; 3712 else p->drv_sel=j; 3713 switch_drive(p); 3714 msg(DBG_INI,"check_drives: drive %d (ID=%d) activated.\n",ndrives,j); 3715 msg(DBG_000,"check_drives: drive %d (ID=%d) activated.\n",ndrives,j); 3716 i=check_version(); 3717 if (i<0) msg(DBG_INI,"check_version returns %d.\n",i); 3718 else 3719 { 3720 current_drive->drv_options=drv_pattern[j]; 3721 if (fam0L_drive) current_drive->drv_options&=~(speed_auto|speed_300|speed_150); 3722 msg(DBG_INF, "Drive %d (ID=%d): %.9s (%.4s) at 0x%03X (type %d)\n", 3723 current_drive - D_S, 3724 current_drive->drv_id, 3725 current_drive->drive_model, 3726 current_drive->firmware_version, 3727 CDo_command, 3728 sbpro_type); 3729 ndrives++; 3730 } 3731 } 3732 for (j=ndrives;j<NR_SBPCD;j++) D_S[j].drv_id=-1; 3733 if (ndrives==0) return (-1); 3734 return (0); 3735} 3736/*==========================================================================*/ 3737#ifdef FUTURE 3738/* 3739 * obtain if requested service disturbs current audio state 3740 */ 3741static int obey_audio_state(u_char audio_state, u_char func,u_char subfunc) 3742{ 3743 switch (audio_state) /* audio status from controller */ 3744 { 3745 case aud_11: /* "audio play in progress" */ 3746 case audx11: 3747 switch (func) /* DOS command code */ 3748 { 3749 case cmd_07: /* input flush */ 3750 case cmd_0d: /* open device */ 3751 case cmd_0e: /* close device */ 3752 case cmd_0c: /* ioctl output */ 3753 return (1); 3754 case cmd_03: /* ioctl input */ 3755 switch (subfunc) 3756 /* DOS ioctl input subfunction */ 3757 { 3758 case cxi_00: 3759 case cxi_06: 3760 case cxi_09: 3761 return (1); 3762 default: 3763 return (ERROR15); 3764 } 3765 return (1); 3766 default: 3767 return (ERROR15); 3768 } 3769 return (1); 3770 case aud_12: /* "audio play paused" */ 3771 case audx12: 3772 return (1); 3773 default: 3774 return (2); 3775 } 3776} 3777/*==========================================================================*/ 3778/* allowed is only 3779 * ioctl_o, flush_input, open_device, close_device, 3780 * tell_address, tell_volume, tell_capabiliti, 3781 * tell_framesize, tell_CD_changed, tell_audio_posi 3782 */ 3783static int check_allowed1(u_char func1, u_char func2) 3784{ 3785#if 000 3786 if (func1==ioctl_o) return (0); 3787 if (func1==read_long) return (-1); 3788 if (func1==read_long_prefetch) return (-1); 3789 if (func1==seek) return (-1); 3790 if (func1==audio_play) return (-1); 3791 if (func1==audio_pause) return (-1); 3792 if (func1==audio_resume) return (-1); 3793 if (func1!=ioctl_i) return (0); 3794 if (func2==tell_SubQ_run_tot) return (-1); 3795 if (func2==tell_cdsize) return (-1); 3796 if (func2==tell_TocDescrip) return (-1); 3797 if (func2==tell_TocEntry) return (-1); 3798 if (func2==tell_subQ_info) return (-1); 3799 if (fam1_drive) if (func2==tell_SubChanInfo) return (-1); 3800 if (func2==tell_UPC) return (-1); 3801#else 3802 return (0); 3803#endif 3804} 3805/*==========================================================================*/ 3806static int check_allowed2(u_char func1, u_char func2) 3807{ 3808#if 000 3809 if (func1==read_long) return (-1); 3810 if (func1==read_long_prefetch) return (-1); 3811 if (func1==seek) return (-1); 3812 if (func1==audio_play) return (-1); 3813 if (func1!=ioctl_o) return (0); 3814 if (fam1_drive) 3815 { 3816 if (func2==EjectDisk) return (-1); 3817 if (func2==CloseTray) return (-1); 3818 } 3819#else 3820 return (0); 3821#endif 3822} 3823/*==========================================================================*/ 3824static int check_allowed3(u_char func1, u_char func2) 3825{ 3826#if 000 3827 if (func1==ioctl_i) 3828 { 3829 if (func2==tell_address) return (0); 3830 if (func2==tell_capabiliti) return (0); 3831 if (func2==tell_CD_changed) return (0); 3832 if (fam0L_drive) if (func2==tell_SubChanInfo) return (0); 3833 return (-1); 3834 } 3835 if (func1==ioctl_o) 3836 { 3837 if (func2==DriveReset) return (0); 3838 if (fam0L_drive) 3839 { 3840 if (func2==EjectDisk) return (0); 3841 if (func2==LockDoor) return (0); 3842 if (func2==CloseTray) return (0); 3843 } 3844 return (-1); 3845 } 3846 if (func1==flush_input) return (-1); 3847 if (func1==read_long) return (-1); 3848 if (func1==read_long_prefetch) return (-1); 3849 if (func1==seek) return (-1); 3850 if (func1==audio_play) return (-1); 3851 if (func1==audio_pause) return (-1); 3852 if (func1==audio_resume) return (-1); 3853#else 3854 return (0); 3855#endif 3856} 3857/*==========================================================================*/ 3858static int seek_pos_audio_end(void) 3859{ 3860 int i; 3861 3862 i=msf2blk(current_drive->pos_audio_end)-1; 3863 if (i<0) return (-1); 3864 i=cc_Seek(i,0); 3865 return (i); 3866} 3867#endif /* FUTURE */ 3868/*==========================================================================*/ 3869static int ReadToC(void) 3870{ 3871 int i, j; 3872 current_drive->diskstate_flags &= ~toc_bit; 3873 current_drive->ored_ctl_adr=0; 3874 /* special handling of CD-I HE */ 3875 if ((current_drive->n_first_track == 2 && current_drive->n_last_track == 2) || 3876 current_drive->xa_byte == 0x10) 3877 { 3878 current_drive->TocBuffer[1].nixbyte=0; 3879 current_drive->TocBuffer[1].ctl_adr=0x40; 3880 current_drive->TocBuffer[1].number=1; 3881 current_drive->TocBuffer[1].format=0; 3882 current_drive->TocBuffer[1].address=blk2msf(0); 3883 current_drive->ored_ctl_adr |= 0x40; 3884 current_drive->n_first_track = 1; 3885 current_drive->n_last_track = 1; 3886 current_drive->xa_byte = 0x10; 3887 j = 2; 3888 } else 3889 for (j=current_drive->n_first_track;j<=current_drive->n_last_track;j++) 3890 { 3891 i=cc_ReadTocEntry(j); 3892 if (i<0) 3893 { 3894 msg(DBG_INF,"cc_ReadTocEntry(%d) returns %d.\n",j,i); 3895 return (i); 3896 } 3897 current_drive->TocBuffer[j].nixbyte=current_drive->TocEnt_nixbyte; 3898 current_drive->TocBuffer[j].ctl_adr=current_drive->TocEnt_ctl_adr; 3899 current_drive->TocBuffer[j].number=current_drive->TocEnt_number; 3900 current_drive->TocBuffer[j].format=current_drive->TocEnt_format; 3901 current_drive->TocBuffer[j].address=current_drive->TocEnt_address; 3902 current_drive->ored_ctl_adr |= current_drive->TocEnt_ctl_adr; 3903 } 3904 /* fake entry for LeadOut Track */ 3905 current_drive->TocBuffer[j].nixbyte=0; 3906 current_drive->TocBuffer[j].ctl_adr=0; 3907 current_drive->TocBuffer[j].number=CDROM_LEADOUT; 3908 current_drive->TocBuffer[j].format=0; 3909 current_drive->TocBuffer[j].address=current_drive->size_msf; 3910 3911 current_drive->diskstate_flags |= toc_bit; 3912 return (0); 3913} 3914/*==========================================================================*/ 3915static int DiskInfo(void) 3916{ 3917 int i, j; 3918 3919 current_drive->mode=READ_M1; 3920 3921#undef LOOP_COUNT 3922#define LOOP_COUNT 10 /* needed for some "old" drives */ 3923 3924 msg(DBG_000,"DiskInfo entered.\n"); 3925 for (j=1;j<LOOP_COUNT;j++) 3926 { 3927#if 0 3928 i=SetSpeed(); 3929 if (i<0) 3930 { 3931 msg(DBG_INF,"DiskInfo: SetSpeed returns %d\n", i); 3932 continue; 3933 } 3934 i=cc_ModeSense(); 3935 if (i<0) 3936 { 3937 msg(DBG_INF,"DiskInfo: cc_ModeSense returns %d\n", i); 3938 continue; 3939 } 3940#endif 3941 i=cc_ReadCapacity(); 3942 if (i>=0) break; 3943 msg(DBG_INF,"DiskInfo: ReadCapacity #%d returns %d\n", j, i); 3944#if 0 3945 i=cc_DriveReset(); 3946#endif 3947 if (!fam0_drive && j == 2) break; 3948 } 3949 if (j==LOOP_COUNT) return (-33); /* give up */ 3950 3951 i=cc_ReadTocDescr(); 3952 if (i<0) 3953 { 3954 msg(DBG_INF,"DiskInfo: ReadTocDescr returns %d\n", i); 3955 return (i); 3956 } 3957 i=ReadToC(); 3958 if (i<0) 3959 { 3960 msg(DBG_INF,"DiskInfo: ReadToC returns %d\n", i); 3961 return (i); 3962 } 3963 i=cc_CheckMultiSession(); 3964 if (i<0) 3965 { 3966 msg(DBG_INF,"DiskInfo: cc_CheckMultiSession returns %d\n", i); 3967 return (i); 3968 } 3969 if (current_drive->f_multisession) current_drive->sbp_bufsiz=1; /* possibly a weird PhotoCD */ 3970 else current_drive->sbp_bufsiz=buffers; 3971 i=cc_ReadTocEntry(current_drive->n_first_track); 3972 if (i<0) 3973 { 3974 msg(DBG_INF,"DiskInfo: cc_ReadTocEntry(1) returns %d\n", i); 3975 return (i); 3976 } 3977 i=cc_ReadUPC(); 3978 if (i<0) msg(DBG_INF,"DiskInfo: cc_ReadUPC returns %d\n", i); 3979 if ((fam0L_drive) && (current_drive->xa_byte==0x20 || current_drive->xa_byte == 0x10)) 3980 { 3981 /* XA disk with old drive */ 3982 cc_ModeSelect(CD_FRAMESIZE_RAW1); 3983 cc_ModeSense(); 3984 } 3985 if (famT_drive) cc_prep_mode_T(); 3986 msg(DBG_000,"DiskInfo done.\n"); 3987 return (0); 3988} 3989 3990static int sbpcd_drive_status(struct cdrom_device_info *cdi, int slot_nr) 3991{ 3992 struct sbpcd_drive *p = cdi->handle; 3993 int st; 3994 3995 if (CDSL_CURRENT != slot_nr) { 3996 /* we have no changer support */ 3997 return -EINVAL; 3998 } 3999 4000 cc_ReadStatus(); 4001 st=ResponseStatus(); 4002 if (st<0) 4003 { 4004 msg(DBG_INF,"sbpcd_drive_status: timeout.\n"); 4005 return (0); 4006 } 4007 msg(DBG_000,"Drive Status: door_locked =%d.\n", st_door_locked); 4008 msg(DBG_000,"Drive Status: door_closed =%d.\n", st_door_closed); 4009 msg(DBG_000,"Drive Status: caddy_in =%d.\n", st_caddy_in); 4010 msg(DBG_000,"Drive Status: disk_ok =%d.\n", st_diskok); 4011 msg(DBG_000,"Drive Status: spinning =%d.\n", st_spinning); 4012 msg(DBG_000,"Drive Status: busy =%d.\n", st_busy); 4013 4014#if 0 4015 if (!(p->status_bits & p_door_closed)) return CDS_TRAY_OPEN; 4016 if (p->status_bits & p_disk_ok) return CDS_DISC_OK; 4017 if (p->status_bits & p_disk_in) return CDS_DRIVE_NOT_READY; 4018 4019 return CDS_NO_DISC; 4020#else 4021 if (p->status_bits & p_spinning) return CDS_DISC_OK; 4022/* return CDS_TRAY_OPEN; */ 4023 return CDS_NO_DISC; 4024 4025#endif 4026 4027} 4028 4029 4030/*==========================================================================*/ 4031#ifdef FUTURE 4032/* 4033 * called always if driver gets entered 4034 * returns 0 or ERROR2 or ERROR15 4035 */ 4036static int prepare(u_char func, u_char subfunc) 4037{ 4038 int i; 4039 4040 if (fam0L_drive) 4041 { 4042 i=inb(CDi_status); 4043 if (i&s_attention) GetStatus(); 4044 } 4045 else if (fam1_drive) GetStatus(); 4046 else if (fam2_drive) GetStatus(); 4047 else if (famT_drive) GetStatus(); 4048 if (current_drive->CD_changed==0xFF) 4049 { 4050 current_drive->diskstate_flags=0; 4051 current_drive->audio_state=0; 4052 if (!st_diskok) 4053 { 4054 i=check_allowed1(func,subfunc); 4055 if (i<0) return (-2); 4056 } 4057 else 4058 { 4059 i=check_allowed3(func,subfunc); 4060 if (i<0) 4061 { 4062 current_drive->CD_changed=1; 4063 return (-15); 4064 } 4065 } 4066 } 4067 else 4068 { 4069 if (!st_diskok) 4070 { 4071 current_drive->diskstate_flags=0; 4072 current_drive->audio_state=0; 4073 i=check_allowed1(func,subfunc); 4074 if (i<0) return (-2); 4075 } 4076 else 4077 { 4078 if (st_busy) 4079 { 4080 if (current_drive->audio_state!=audio_pausing) 4081 { 4082 i=check_allowed2(func,subfunc); 4083 if (i<0) return (-2); 4084 } 4085 } 4086 else 4087 { 4088 if (current_drive->audio_state==audio_playing) seek_pos_audio_end(); 4089 current_drive->audio_state=0; 4090 } 4091 if (!frame_size_valid) 4092 { 4093 i=DiskInfo(); 4094 if (i<0) 4095 { 4096 current_drive->diskstate_flags=0; 4097 current_drive->audio_state=0; 4098 i=check_allowed1(func,subfunc); 4099 if (i<0) return (-2); 4100 } 4101 } 4102 } 4103 } 4104 return (0); 4105} 4106#endif /* FUTURE */ 4107/*==========================================================================*/ 4108/*==========================================================================*/ 4109/* 4110 * Check the results of the "get status" command. 4111 */ 4112static int sbp_status(void) 4113{ 4114 int st; 4115 4116 st=ResponseStatus(); 4117 if (st<0) 4118 { 4119 msg(DBG_INF,"sbp_status: timeout.\n"); 4120 return (0); 4121 } 4122 4123 if (!st_spinning) msg(DBG_SPI,"motor got off - ignoring.\n"); 4124 4125 if (st_check) 4126 { 4127 msg(DBG_INF,"st_check detected - retrying.\n"); 4128 return (0); 4129 } 4130 if (!st_door_closed) 4131 { 4132 msg(DBG_INF,"door is open - retrying.\n"); 4133 return (0); 4134 } 4135 if (!st_caddy_in) 4136 { 4137 msg(DBG_INF,"disk removed - retrying.\n"); 4138 return (0); 4139 } 4140 if (!st_diskok) 4141 { 4142 msg(DBG_INF,"!st_diskok detected - retrying.\n"); 4143 return (0); 4144 } 4145 if (st_busy) 4146 { 4147 msg(DBG_INF,"st_busy detected - retrying.\n"); 4148 return (0); 4149 } 4150 return (1); 4151} 4152/*==========================================================================*/ 4153 4154static int sbpcd_get_last_session(struct cdrom_device_info *cdi, struct cdrom_multisession *ms_infp) 4155{ 4156 struct sbpcd_drive *p = cdi->handle; 4157 ms_infp->addr_format = CDROM_LBA; 4158 ms_infp->addr.lba = p->lba_multi; 4159 if (p->f_multisession) 4160 ms_infp->xa_flag=1; /* valid redirection address */ 4161 else 4162 ms_infp->xa_flag=0; /* invalid redirection address */ 4163 4164 return 0; 4165} 4166 4167static int sbpcd_audio_ioctl(struct cdrom_device_info *cdi, u_int cmd, 4168 void * arg) 4169{ 4170 struct sbpcd_drive *p = cdi->handle; 4171 int i, st, j; 4172 4173 msg(DBG_IO2,"ioctl(%s, 0x%08lX, 0x%08p)\n", cdi->name, cmd, arg); 4174 if (p->drv_id==-1) { 4175 msg(DBG_INF, "ioctl: bad device: %s\n", cdi->name); 4176 return (-ENXIO); /* no such drive */ 4177 } 4178 down(&ioctl_read_sem); 4179 if (p != current_drive) 4180 switch_drive(p); 4181 4182 msg(DBG_IO2,"ioctl: device %s, request %04X\n",cdi->name,cmd); 4183 switch (cmd) /* Sun-compatible */ 4184 { 4185 4186 case CDROMPAUSE: /* Pause the drive */ 4187 msg(DBG_IOC,"ioctl: CDROMPAUSE entered.\n"); 4188 /* pause the drive unit when it is currently in PLAY mode, */ 4189 /* or reset the starting and ending locations when in PAUSED mode. */ 4190 /* If applicable, at the next stopping point it reaches */ 4191 /* the drive will discontinue playing. */ 4192 switch (current_drive->audio_state) 4193 { 4194 case audio_playing: 4195 if (famL_drive) i=cc_ReadSubQ(); 4196 else i=cc_Pause_Resume(1); 4197 if (i<0) RETURN_UP(-EIO); 4198 if (famL_drive) i=cc_Pause_Resume(1); 4199 else i=cc_ReadSubQ(); 4200 if (i<0) RETURN_UP(-EIO); 4201 current_drive->pos_audio_start=current_drive->SubQ_run_tot; 4202 current_drive->audio_state=audio_pausing; 4203 RETURN_UP(0); 4204 case audio_pausing: 4205 i=cc_Seek(current_drive->pos_audio_start,1); 4206 if (i<0) RETURN_UP(-EIO); 4207 RETURN_UP(0); 4208 default: 4209 RETURN_UP(-EINVAL); 4210 } 4211 4212 case CDROMRESUME: /* resume paused audio play */ 4213 msg(DBG_IOC,"ioctl: CDROMRESUME entered.\n"); 4214 /* resume playing audio tracks when a previous PLAY AUDIO call has */ 4215 /* been paused with a PAUSE command. */ 4216 /* It will resume playing from the location saved in SubQ_run_tot. */ 4217 if (current_drive->audio_state!=audio_pausing) RETURN_UP(-EINVAL); 4218 if (famL_drive) 4219 i=cc_PlayAudio(current_drive->pos_audio_start, 4220 current_drive->pos_audio_end); 4221 else i=cc_Pause_Resume(3); 4222 if (i<0) RETURN_UP(-EIO); 4223 current_drive->audio_state=audio_playing; 4224 RETURN_UP(0); 4225 4226 case CDROMPLAYMSF: 4227 msg(DBG_IOC,"ioctl: CDROMPLAYMSF entered.\n"); 4228#ifdef SAFE_MIXED 4229 if (current_drive->has_data>1) RETURN_UP(-EBUSY); 4230#endif /* SAFE_MIXED */ 4231 if (current_drive->audio_state==audio_playing) 4232 { 4233 i=cc_Pause_Resume(1); 4234 if (i<0) RETURN_UP(-EIO); 4235 i=cc_ReadSubQ(); 4236 if (i<0) RETURN_UP(-EIO); 4237 current_drive->pos_audio_start=current_drive->SubQ_run_tot; 4238 i=cc_Seek(current_drive->pos_audio_start,1); 4239 } 4240 memcpy(&msf, (void *) arg, sizeof(struct cdrom_msf)); 4241 /* values come as msf-bin */ 4242 current_drive->pos_audio_start = (msf.cdmsf_min0<<16) | 4243 (msf.cdmsf_sec0<<8) | 4244 msf.cdmsf_frame0; 4245 current_drive->pos_audio_end = (msf.cdmsf_min1<<16) | 4246 (msf.cdmsf_sec1<<8) | 4247 msf.cdmsf_frame1; 4248 msg(DBG_IOX,"ioctl: CDROMPLAYMSF %08X %08X\n", 4249 current_drive->pos_audio_start,current_drive->pos_audio_end); 4250 i=cc_PlayAudio(current_drive->pos_audio_start,current_drive->pos_audio_end); 4251 if (i<0) 4252 { 4253 msg(DBG_INF,"ioctl: cc_PlayAudio returns %d\n",i); 4254 DriveReset(); 4255 current_drive->audio_state=0; 4256 RETURN_UP(-EIO); 4257 } 4258 current_drive->audio_state=audio_playing; 4259 RETURN_UP(0); 4260 4261 case CDROMPLAYTRKIND: /* Play a track. This currently ignores index. */ 4262 msg(DBG_IOC,"ioctl: CDROMPLAYTRKIND entered.\n"); 4263#ifdef SAFE_MIXED 4264 if (current_drive->has_data>1) RETURN_UP(-EBUSY); 4265#endif /* SAFE_MIXED */ 4266 if (current_drive->audio_state==audio_playing) 4267 { 4268 msg(DBG_IOX,"CDROMPLAYTRKIND: already audio_playing.\n"); 4269#if 1 4270 RETURN_UP(0); /* just let us play on */ 4271#else 4272 RETURN_UP(-EINVAL); /* play on, but say "error" */ 4273#endif 4274 } 4275 memcpy(&ti,(void *) arg,sizeof(struct cdrom_ti)); 4276 msg(DBG_IOX,"ioctl: trk0: %d, ind0: %d, trk1:%d, ind1:%d\n", 4277 ti.cdti_trk0,ti.cdti_ind0,ti.cdti_trk1,ti.cdti_ind1); 4278 if (ti.cdti_trk0<current_drive->n_first_track) RETURN_UP(-EINVAL); 4279 if (ti.cdti_trk0>current_drive->n_last_track) RETURN_UP(-EINVAL); 4280 if (ti.cdti_trk1<ti.cdti_trk0) ti.cdti_trk1=ti.cdti_trk0; 4281 if (ti.cdti_trk1>current_drive->n_last_track) ti.cdti_trk1=current_drive->n_last_track; 4282 current_drive->pos_audio_start=current_drive->TocBuffer[ti.cdti_trk0].address; 4283 current_drive->pos_audio_end=current_drive->TocBuffer[ti.cdti_trk1+1].address; 4284 i=cc_PlayAudio(current_drive->pos_audio_start,current_drive->pos_audio_end); 4285 if (i<0) 4286 { 4287 msg(DBG_INF,"ioctl: cc_PlayAudio returns %d\n",i); 4288 DriveReset(); 4289 current_drive->audio_state=0; 4290 RETURN_UP(-EIO); 4291 } 4292 current_drive->audio_state=audio_playing; 4293 RETURN_UP(0); 4294 4295 case CDROMREADTOCHDR: /* Read the table of contents header */ 4296 msg(DBG_IOC,"ioctl: CDROMREADTOCHDR entered.\n"); 4297 tochdr.cdth_trk0=current_drive->n_first_track; 4298 tochdr.cdth_trk1=current_drive->n_last_track; 4299 memcpy((void *) arg, &tochdr, sizeof(struct cdrom_tochdr)); 4300 RETURN_UP(0); 4301 4302 case CDROMREADTOCENTRY: /* Read an entry in the table of contents */ 4303 msg(DBG_IOC,"ioctl: CDROMREADTOCENTRY entered.\n"); 4304 memcpy(&tocentry, (void *) arg, sizeof(struct cdrom_tocentry)); 4305 i=tocentry.cdte_track; 4306 if (i==CDROM_LEADOUT) i=current_drive->n_last_track+1; 4307 else if (i<current_drive->n_first_track||i>current_drive->n_last_track) 4308 RETURN_UP(-EINVAL); 4309 tocentry.cdte_adr=current_drive->TocBuffer[i].ctl_adr&0x0F; 4310 tocentry.cdte_ctrl=(current_drive->TocBuffer[i].ctl_adr>>4)&0x0F; 4311 tocentry.cdte_datamode=current_drive->TocBuffer[i].format; 4312 if (tocentry.cdte_format==CDROM_MSF) /* MSF-bin required */ 4313 { 4314 tocentry.cdte_addr.msf.minute=(current_drive->TocBuffer[i].address>>16)&0x00FF; 4315 tocentry.cdte_addr.msf.second=(current_drive->TocBuffer[i].address>>8)&0x00FF; 4316 tocentry.cdte_addr.msf.frame=current_drive->TocBuffer[i].address&0x00FF; 4317 } 4318 else if (tocentry.cdte_format==CDROM_LBA) /* blk required */ 4319 tocentry.cdte_addr.lba=msf2blk(current_drive->TocBuffer[i].address); 4320 else RETURN_UP(-EINVAL); 4321 memcpy((void *) arg, &tocentry, sizeof(struct cdrom_tocentry)); 4322 RETURN_UP(0); 4323 4324 case CDROMSTOP: /* Spin down the drive */ 4325 msg(DBG_IOC,"ioctl: CDROMSTOP entered.\n"); 4326#ifdef SAFE_MIXED 4327 if (current_drive->has_data>1) RETURN_UP(-EBUSY); 4328#endif /* SAFE_MIXED */ 4329 i=cc_Pause_Resume(1); 4330 current_drive->audio_state=0; 4331#if 0 4332 cc_DriveReset(); 4333#endif 4334 RETURN_UP(i); 4335 4336 case CDROMSTART: /* Spin up the drive */ 4337 msg(DBG_IOC,"ioctl: CDROMSTART entered.\n"); 4338 cc_SpinUp(); 4339 current_drive->audio_state=0; 4340 RETURN_UP(0); 4341 4342 case CDROMVOLCTRL: /* Volume control */ 4343 msg(DBG_IOC,"ioctl: CDROMVOLCTRL entered.\n"); 4344 memcpy(&volctrl,(char *) arg,sizeof(volctrl)); 4345 current_drive->vol_chan0=0; 4346 current_drive->vol_ctrl0=volctrl.channel0; 4347 current_drive->vol_chan1=1; 4348 current_drive->vol_ctrl1=volctrl.channel1; 4349 i=cc_SetVolume(); 4350 RETURN_UP(0); 4351 4352 case CDROMVOLREAD: /* read Volume settings from drive */ 4353 msg(DBG_IOC,"ioctl: CDROMVOLREAD entered.\n"); 4354 st=cc_GetVolume(); 4355 if (st<0) RETURN_UP(st); 4356 volctrl.channel0=current_drive->vol_ctrl0; 4357 volctrl.channel1=current_drive->vol_ctrl1; 4358 volctrl.channel2=0; 4359 volctrl.channel2=0; 4360 memcpy((void *)arg,&volctrl,sizeof(volctrl)); 4361 RETURN_UP(0); 4362 4363 case CDROMSUBCHNL: /* Get subchannel info */ 4364 msg(DBG_IOS,"ioctl: CDROMSUBCHNL entered.\n"); 4365 /* Bogus, I can do better than this! --AJK 4366 if ((st_spinning)||(!subq_valid)) { 4367 i=cc_ReadSubQ(); 4368 if (i<0) RETURN_UP(-EIO); 4369 } 4370 */ 4371 i=cc_ReadSubQ(); 4372 if (i<0) { 4373 j=cc_ReadError(); /* clear out error status from drive */ 4374 current_drive->audio_state=CDROM_AUDIO_NO_STATUS; 4375 /* get and set the disk state here, 4376 probably not the right place, but who cares! 4377 It makes it work properly! --AJK */ 4378 if (current_drive->CD_changed==0xFF) { 4379 msg(DBG_000,"Disk changed detect\n"); 4380 current_drive->diskstate_flags &= ~cd_size_bit; 4381 } 4382 RETURN_UP(-EIO); 4383 } 4384 if (current_drive->CD_changed==0xFF) { 4385 /* reread the TOC because the disk has changed! --AJK */ 4386 msg(DBG_000,"Disk changed STILL detected, rereading TOC!\n"); 4387 i=DiskInfo(); 4388 if(i==0) { 4389 current_drive->CD_changed=0x00; /* cd has changed, procede, */ 4390 RETURN_UP(-EIO); /* and get TOC, etc on next try! --AJK */ 4391 } else { 4392 RETURN_UP(-EIO); /* we weren't ready yet! --AJK */ 4393 } 4394 } 4395 memcpy(&SC, (void *) arg, sizeof(struct cdrom_subchnl)); 4396 /* 4397 This virtual crap is very bogus! 4398 It doesn't detect when the cd is done playing audio! 4399 Lets do this right with proper hardware register reading! 4400 */ 4401 cc_ReadStatus(); 4402 i=ResponseStatus(); 4403 msg(DBG_000,"Drive Status: door_locked =%d.\n", st_door_locked); 4404 msg(DBG_000,"Drive Status: door_closed =%d.\n", st_door_closed); 4405 msg(DBG_000,"Drive Status: caddy_in =%d.\n", st_caddy_in); 4406 msg(DBG_000,"Drive Status: disk_ok =%d.\n", st_diskok); 4407 msg(DBG_000,"Drive Status: spinning =%d.\n", st_spinning); 4408 msg(DBG_000,"Drive Status: busy =%d.\n", st_busy); 4409 /* st_busy indicates if it's _ACTUALLY_ playing audio */ 4410 switch (current_drive->audio_state) 4411 { 4412 case audio_playing: 4413 if(st_busy==0) { 4414 /* CD has stopped playing audio --AJK */ 4415 current_drive->audio_state=audio_completed; 4416 SC.cdsc_audiostatus=CDROM_AUDIO_COMPLETED; 4417 } else { 4418 SC.cdsc_audiostatus=CDROM_AUDIO_PLAY; 4419 } 4420 break; 4421 case audio_pausing: 4422 SC.cdsc_audiostatus=CDROM_AUDIO_PAUSED; 4423 break; 4424 case audio_completed: 4425 SC.cdsc_audiostatus=CDROM_AUDIO_COMPLETED; 4426 break; 4427 default: 4428 SC.cdsc_audiostatus=CDROM_AUDIO_NO_STATUS; 4429 break; 4430 } 4431 SC.cdsc_adr=current_drive->SubQ_ctl_adr; 4432 SC.cdsc_ctrl=current_drive->SubQ_ctl_adr>>4; 4433 SC.cdsc_trk=bcd2bin(current_drive->SubQ_trk); 4434 SC.cdsc_ind=bcd2bin(current_drive->SubQ_pnt_idx); 4435 if (SC.cdsc_format==CDROM_LBA) 4436 { 4437 SC.cdsc_absaddr.lba=msf2blk(current_drive->SubQ_run_tot); 4438 SC.cdsc_reladdr.lba=msf2blk(current_drive->SubQ_run_trk); 4439 } 4440 else /* not only if (SC.cdsc_format==CDROM_MSF) */ 4441 { 4442 SC.cdsc_absaddr.msf.minute=(current_drive->SubQ_run_tot>>16)&0x00FF; 4443 SC.cdsc_absaddr.msf.second=(current_drive->SubQ_run_tot>>8)&0x00FF; 4444 SC.cdsc_absaddr.msf.frame=current_drive->SubQ_run_tot&0x00FF; 4445 SC.cdsc_reladdr.msf.minute=(current_drive->SubQ_run_trk>>16)&0x00FF; 4446 SC.cdsc_reladdr.msf.second=(current_drive->SubQ_run_trk>>8)&0x00FF; 4447 SC.cdsc_reladdr.msf.frame=current_drive->SubQ_run_trk&0x00FF; 4448 } 4449 memcpy((void *) arg, &SC, sizeof(struct cdrom_subchnl)); 4450 msg(DBG_IOS,"CDROMSUBCHNL: %1X %02X %08X %08X %02X %02X %06X %06X\n", 4451 SC.cdsc_format,SC.cdsc_audiostatus, 4452 SC.cdsc_adr,SC.cdsc_ctrl, 4453 SC.cdsc_trk,SC.cdsc_ind, 4454 SC.cdsc_absaddr,SC.cdsc_reladdr); 4455 RETURN_UP(0); 4456 4457 default: 4458 msg(DBG_IOC,"ioctl: unknown function request %04X\n", cmd); 4459 RETURN_UP(-EINVAL); 4460 } /* end switch(cmd) */ 4461} 4462/*==========================================================================*/ 4463/* 4464 * Take care of the different block sizes between cdrom and Linux. 4465 */ 4466static void sbp_transfer(struct request *req) 4467{ 4468 long offs; 4469 4470 while ( (req->nr_sectors > 0) && 4471 (req->sector/4 >= current_drive->sbp_first_frame) && 4472 (req->sector/4 <= current_drive->sbp_last_frame) ) 4473 { 4474 offs = (req->sector - current_drive->sbp_first_frame * 4) * 512; 4475 memcpy(req->buffer, current_drive->sbp_buf + offs, 512); 4476 req->nr_sectors--; 4477 req->sector++; 4478 req->buffer += 512; 4479 } 4480} 4481/*==========================================================================*/ 4482/* 4483 * special end_request for sbpcd to solve CURRENT==NULL bug. (GTL) 4484 * GTL = Gonzalo Tornaria <tornaria@cmat.edu.uy> 4485 * 4486 * This is a kludge so we don't need to modify end_request. 4487 * We put the req we take out after INIT_REQUEST in the requests list, 4488 * so that end_request will discard it. 4489 * 4490 * The bug could be present in other block devices, perhaps we 4491 * should modify INIT_REQUEST and end_request instead, and 4492 * change every block device.. 4493 * 4494 * Could be a race here?? Could e.g. a timer interrupt schedule() us? 4495 * If so, we should copy end_request here, and do it right.. (or 4496 * modify end_request and the block devices). 4497 * 4498 * In any case, the race here would be much small than it was, and 4499 * I couldn't reproduce.. 4500 * 4501 * The race could be: suppose CURRENT==NULL. We put our req in the list, 4502 * and we are scheduled. Other process takes over, and gets into 4503 * do_sbpcd_request. It sees CURRENT!=NULL (it is == to our req), so 4504 * proceeds. It ends, so CURRENT is now NULL.. Now we awake somewhere in 4505 * end_request, but now CURRENT==NULL... oops! 4506 * 4507 */ 4508#undef DEBUG_GTL 4509 4510/*==========================================================================*/ 4511/* 4512 * I/O request routine, called from Linux kernel. 4513 */ 4514static void do_sbpcd_request(request_queue_t * q) 4515{ 4516 u_int block; 4517 u_int nsect; 4518 int status_tries, data_tries; 4519 struct request *req; 4520 struct sbpcd_drive *p; 4521#ifdef DEBUG_GTL 4522 static int xx_nr=0; 4523 int xnr; 4524#endif 4525 4526 request_loop: 4527#ifdef DEBUG_GTL 4528 xnr=++xx_nr; 4529 4530 req = elv_next_request(q); 4531 4532 if (!req) 4533 { 4534 printk( "do_sbpcd_request[%di](NULL), Pid:%d, Time:%li\n", 4535 xnr, current->pid, jiffies); 4536 printk( "do_sbpcd_request[%do](NULL) end 0 (null), Time:%li\n", 4537 xnr, jiffies); 4538 return; 4539 } 4540 4541 printk(" do_sbpcd_request[%di](%p:%ld+%ld), Pid:%d, Time:%li\n", 4542 xnr, req, req->sector, req->nr_sectors, current->pid, jiffies); 4543#endif 4544 4545 req = elv_next_request(q); /* take out our request so no other */ 4546 if (!req) 4547 return; 4548 4549 if (req -> sector == -1) 4550 end_request(req, 0); 4551 spin_unlock_irq(q->queue_lock); 4552 4553 down(&ioctl_read_sem); 4554 if (rq_data_dir(elv_next_request(q)) != READ) 4555 { 4556 msg(DBG_INF, "bad cmd %d\n", req->cmd[0]); 4557 goto err_done; 4558 } 4559 p = req->rq_disk->private_data; 4560#if OLD_BUSY 4561 while (busy_audio) sbp_sleep(HZ); /* wait a bit */ 4562 busy_data=1; 4563#endif /* OLD_BUSY */ 4564 4565 if (p->audio_state==audio_playing) goto err_done; 4566 if (p != current_drive) 4567 switch_drive(p); 4568 4569 block = req->sector; /* always numbered as 512-byte-pieces */ 4570 nsect = req->nr_sectors; /* always counted as 512-byte-pieces */ 4571 4572 msg(DBG_BSZ,"read sector %d (%d sectors)\n", block, nsect); 4573#if 0 4574 msg(DBG_MUL,"read LBA %d\n", block/4); 4575#endif 4576 4577 sbp_transfer(req); 4578 /* if we satisfied the request from the buffer, we're done. */ 4579 if (req->nr_sectors == 0) 4580 { 4581#ifdef DEBUG_GTL 4582 printk(" do_sbpcd_request[%do](%p:%ld+%ld) end 2, Time:%li\n", 4583 xnr, req, req->sector, req->nr_sectors, jiffies); 4584#endif 4585 up(&ioctl_read_sem); 4586 spin_lock_irq(q->queue_lock); 4587 end_request(req, 1); 4588 goto request_loop; 4589 } 4590 4591#ifdef FUTURE 4592 i=prepare(0,0); /* at moment not really a hassle check, but ... */ 4593 if (i!=0) 4594 msg(DBG_INF,"\"prepare\" tells error %d -- ignored\n", i); 4595#endif /* FUTURE */ 4596 4597 if (!st_spinning) cc_SpinUp(); 4598 4599 for (data_tries=n_retries; data_tries > 0; data_tries--) 4600 { 4601 for (status_tries=3; status_tries > 0; status_tries--) 4602 { 4603 flags_cmd_out |= f_respo3; 4604 cc_ReadStatus(); 4605 if (sbp_status() != 0) break; 4606 if (st_check) cc_ReadError(); 4607 sbp_sleep(1); /* wait a bit, try again */ 4608 } 4609 if (status_tries == 0) 4610 { 4611 msg(DBG_INF,"sbp_status: failed after 3 tries in line %d\n", __LINE__); 4612 break; 4613 } 4614 4615 sbp_read_cmd(req); 4616 sbp_sleep(0); 4617 if (sbp_data(req) != 0) 4618 { 4619#ifdef SAFE_MIXED 4620 current_drive->has_data=2; /* is really a data disk */ 4621#endif /* SAFE_MIXED */ 4622#ifdef DEBUG_GTL 4623 printk(" do_sbpcd_request[%do](%p:%ld+%ld) end 3, Time:%li\n", 4624 xnr, req, req->sector, req->nr_sectors, jiffies); 4625#endif 4626 up(&ioctl_read_sem); 4627 spin_lock_irq(q->queue_lock); 4628 end_request(req, 1); 4629 goto request_loop; 4630 } 4631 } 4632 4633 err_done: 4634#if OLD_BUSY 4635 busy_data=0; 4636#endif /* OLD_BUSY */ 4637#ifdef DEBUG_GTL 4638 printk(" do_sbpcd_request[%do](%p:%ld+%ld) end 4 (error), Time:%li\n", 4639 xnr, req, req->sector, req->nr_sectors, jiffies); 4640#endif 4641 up(&ioctl_read_sem); 4642 sbp_sleep(0); /* wait a bit, try again */ 4643 spin_lock_irq(q->queue_lock); 4644 end_request(req, 0); 4645 goto request_loop; 4646} 4647/*==========================================================================*/ 4648/* 4649 * build and send the READ command. 4650 */ 4651static void sbp_read_cmd(struct request *req) 4652{ 4653#undef OLD 4654 4655 int i; 4656 int block; 4657 4658 current_drive->sbp_first_frame=current_drive->sbp_last_frame=-1; /* purge buffer */ 4659 current_drive->sbp_current = 0; 4660 block=req->sector/4; 4661 if (block+current_drive->sbp_bufsiz <= current_drive->CDsize_frm) 4662 current_drive->sbp_read_frames = current_drive->sbp_bufsiz; 4663 else 4664 { 4665 current_drive->sbp_read_frames=current_drive->CDsize_frm-block; 4666 /* avoid reading past end of data */ 4667 if (current_drive->sbp_read_frames < 1) 4668 { 4669 msg(DBG_INF,"requested frame %d, CD size %d ???\n", 4670 block, current_drive->CDsize_frm); 4671 current_drive->sbp_read_frames=1; 4672 } 4673 } 4674 4675 flags_cmd_out = f_putcmd | f_respo2 | f_ResponseStatus | f_obey_p_check; 4676 clr_cmdbuf(); 4677 if (famV_drive) 4678 { 4679 drvcmd[0]=CMDV_READ; 4680 lba2msf(block,&drvcmd[1]); /* msf-bcd format required */ 4681 bin2bcdx(&drvcmd[1]); 4682 bin2bcdx(&drvcmd[2]); 4683 bin2bcdx(&drvcmd[3]); 4684 drvcmd[4]=current_drive->sbp_read_frames>>8; 4685 drvcmd[5]=current_drive->sbp_read_frames&0xff; 4686 drvcmd[6]=0x02; /* flag "msf-bcd" */ 4687 } 4688 else if (fam0L_drive) 4689 { 4690 flags_cmd_out |= f_lopsta | f_getsta | f_bit1; 4691 if (current_drive->xa_byte==0x20) 4692 { 4693 cmd_type=READ_M2; 4694 drvcmd[0]=CMD0_READ_XA; /* "read XA frames", old drives */ 4695 drvcmd[1]=(block>>16)&0x0ff; 4696 drvcmd[2]=(block>>8)&0x0ff; 4697 drvcmd[3]=block&0x0ff; 4698 drvcmd[4]=(current_drive->sbp_read_frames>>8)&0x0ff; 4699 drvcmd[5]=current_drive->sbp_read_frames&0x0ff; 4700 } 4701 else 4702 { 4703 drvcmd[0]=CMD0_READ; /* "read frames", old drives */ 4704 if (current_drive->drv_type>=drv_201) 4705 { 4706 lba2msf(block,&drvcmd[1]); /* msf-bcd format required */ 4707 bin2bcdx(&drvcmd[1]); 4708 bin2bcdx(&drvcmd[2]); 4709 bin2bcdx(&drvcmd[3]); 4710 } 4711 else 4712 { 4713 drvcmd[1]=(block>>16)&0x0ff; 4714 drvcmd[2]=(block>>8)&0x0ff; 4715 drvcmd[3]=block&0x0ff; 4716 } 4717 drvcmd[4]=(current_drive->sbp_read_frames>>8)&0x0ff; 4718 drvcmd[5]=current_drive->sbp_read_frames&0x0ff; 4719 drvcmd[6]=(current_drive->drv_type<drv_201)?0:2; /* flag "lba or msf-bcd format" */ 4720 } 4721 } 4722 else if (fam1_drive) 4723 { 4724 drvcmd[0]=CMD1_READ; 4725 lba2msf(block,&drvcmd[1]); /* msf-bin format required */ 4726 drvcmd[5]=(current_drive->sbp_read_frames>>8)&0x0ff; 4727 drvcmd[6]=current_drive->sbp_read_frames&0x0ff; 4728 } 4729 else if (fam2_drive) 4730 { 4731 drvcmd[0]=CMD2_READ; 4732 lba2msf(block,&drvcmd[1]); /* msf-bin format required */ 4733 drvcmd[4]=(current_drive->sbp_read_frames>>8)&0x0ff; 4734 drvcmd[5]=current_drive->sbp_read_frames&0x0ff; 4735 drvcmd[6]=0x02; 4736 } 4737 else if (famT_drive) 4738 { 4739 drvcmd[0]=CMDT_READ; 4740 drvcmd[2]=(block>>24)&0x0ff; 4741 drvcmd[3]=(block>>16)&0x0ff; 4742 drvcmd[4]=(block>>8)&0x0ff; 4743 drvcmd[5]=block&0x0ff; 4744 drvcmd[7]=(current_drive->sbp_read_frames>>8)&0x0ff; 4745 drvcmd[8]=current_drive->sbp_read_frames&0x0ff; 4746 } 4747 flags_cmd_out=f_putcmd; 4748 response_count=0; 4749 i=cmd_out(); 4750 if (i<0) msg(DBG_INF,"error giving READ command: %0d\n", i); 4751 return; 4752} 4753/*==========================================================================*/ 4754/* 4755 * Check the completion of the read-data command. On success, read 4756 * the current_drive->sbp_bufsiz * 2048 bytes of data from the disk into buffer. 4757 */ 4758static int sbp_data(struct request *req) 4759{ 4760 int i=0, j=0, l, frame; 4761 u_int try=0; 4762 u_long timeout; 4763 u_char *p; 4764 u_int data_tries = 0; 4765 u_int data_waits = 0; 4766 u_int data_retrying = 0; 4767 int error_flag; 4768 int xa_count; 4769 int max_latency; 4770 int success; 4771 int wait; 4772 int duration; 4773 4774 error_flag=0; 4775 success=0; 4776#if LONG_TIMING 4777 max_latency=9*HZ; 4778#else 4779 if (current_drive->f_multisession) max_latency=15*HZ; 4780 else max_latency=5*HZ; 4781#endif 4782 duration=jiffies; 4783 for (frame=0;frame<current_drive->sbp_read_frames&&!error_flag; frame++) 4784 { 4785 SBPCD_CLI; 4786 4787 del_timer(&data_timer); 4788 data_timer.expires=jiffies+max_latency; 4789 timed_out_data=0; 4790 add_timer(&data_timer); 4791 while (!timed_out_data) 4792 { 4793 if (current_drive->f_multisession) try=maxtim_data*4; 4794 else try=maxtim_data; 4795 msg(DBG_000,"sbp_data: CDi_status loop: try=%d.\n",try); 4796 for ( ; try!=0;try--) 4797 { 4798 j=inb(CDi_status); 4799 if (!(j&s_not_data_ready)) break; 4800 if (!(j&s_not_result_ready)) break; 4801 if (fam0LV_drive) if (j&s_attention) break; 4802 } 4803 if (!(j&s_not_data_ready)) goto data_ready; 4804 if (try==0) 4805 { 4806 if (data_retrying == 0) data_waits++; 4807 data_retrying = 1; 4808 msg(DBG_000,"sbp_data: CDi_status loop: sleeping.\n"); 4809 sbp_sleep(1); 4810 try = 1; 4811 } 4812 } 4813 msg(DBG_INF,"sbp_data: CDi_status loop expired.\n"); 4814 data_ready: 4815 del_timer(&data_timer); 4816 4817 if (timed_out_data) 4818 { 4819 msg(DBG_INF,"sbp_data: CDi_status timeout (timed_out_data) (%02X).\n", j); 4820 error_flag++; 4821 } 4822 if (try==0) 4823 { 4824 msg(DBG_INF,"sbp_data: CDi_status timeout (try=0) (%02X).\n", j); 4825 error_flag++; 4826 } 4827 if (!(j&s_not_result_ready)) 4828 { 4829 msg(DBG_INF, "sbp_data: RESULT_READY where DATA_READY awaited (%02X).\n", j); 4830 response_count=20; 4831 j=ResponseInfo(); 4832 j=inb(CDi_status); 4833 } 4834 if (j&s_not_data_ready) 4835 { 4836 if ((current_drive->ored_ctl_adr&0x40)==0) 4837 msg(DBG_INF, "CD contains no data tracks.\n"); 4838 else msg(DBG_INF, "sbp_data: DATA_READY timeout (%02X).\n", j); 4839 error_flag++; 4840 } 4841 SBPCD_STI; 4842 if (error_flag) break; 4843 4844 msg(DBG_000, "sbp_data: beginning to read.\n"); 4845 p = current_drive->sbp_buf + frame * CD_FRAMESIZE; 4846 if (sbpro_type==1) OUT(CDo_sel_i_d,1); 4847 if (cmd_type==READ_M2) { 4848 if (do_16bit) insw(CDi_data, xa_head_buf, CD_XA_HEAD>>1); 4849 else insb(CDi_data, xa_head_buf, CD_XA_HEAD); 4850 } 4851 if (do_16bit) insw(CDi_data, p, CD_FRAMESIZE>>1); 4852 else insb(CDi_data, p, CD_FRAMESIZE); 4853 if (cmd_type==READ_M2) { 4854 if (do_16bit) insw(CDi_data, xa_tail_buf, CD_XA_TAIL>>1); 4855 else insb(CDi_data, xa_tail_buf, CD_XA_TAIL); 4856 } 4857 current_drive->sbp_current++; 4858 if (sbpro_type==1) OUT(CDo_sel_i_d,0); 4859 if (cmd_type==READ_M2) 4860 { 4861 for (xa_count=0;xa_count<CD_XA_HEAD;xa_count++) 4862 sprintf(&msgbuf[xa_count*3], " %02X", xa_head_buf[xa_count]); 4863 msgbuf[xa_count*3]=0; 4864 msg(DBG_XA1,"xa head:%s\n", msgbuf); 4865 } 4866 data_retrying = 0; 4867 data_tries++; 4868 if (data_tries >= 1000) 4869 { 4870 msg(DBG_INF,"sbp_data() statistics: %d waits in %d frames.\n", data_waits, data_tries); 4871 data_waits = data_tries = 0; 4872 } 4873 } 4874 duration=jiffies-duration; 4875 msg(DBG_TEA,"time to read %d frames: %d jiffies .\n",frame,duration); 4876 if (famT_drive) 4877 { 4878 wait=8; 4879 do 4880 { 4881 if (teac==2) 4882 { 4883 if ((i=CDi_stat_loop_T()) == -1) break; 4884 } 4885 else 4886 { 4887 sbp_sleep(1); 4888 OUT(CDo_sel_i_d,0); 4889 i=inb(CDi_status); 4890 } 4891 if (!(i&s_not_data_ready)) 4892 { 4893 OUT(CDo_sel_i_d,1); 4894 j=0; 4895 do 4896 { 4897 if (do_16bit) i=inw(CDi_data); 4898 else i=inb(CDi_data); 4899 j++; 4900 i=inb(CDi_status); 4901 } 4902 while (!(i&s_not_data_ready)); 4903 msg(DBG_TEA, "==========too much data (%d bytes/words)==============.\n", j); 4904 } 4905 if (!(i&s_not_result_ready)) 4906 { 4907 OUT(CDo_sel_i_d,0); 4908 l=0; 4909 do 4910 { 4911 infobuf[l++]=inb(CDi_info); 4912 i=inb(CDi_status); 4913 } 4914 while (!(i&s_not_result_ready)); 4915 if (infobuf[0]==0x00) success=1; 4916#if 1 4917 for (j=0;j<l;j++) sprintf(&msgbuf[j*3], " %02X", infobuf[j]); 4918 msgbuf[j*3]=0; 4919 msg(DBG_TEA,"sbp_data info response:%s\n", msgbuf); 4920#endif 4921 if (infobuf[0]==0x02) 4922 { 4923 error_flag++; 4924 do 4925 { 4926 ++recursion; 4927 if (recursion>1) msg(DBG_TEA,"cmd_out_T READ_ERR recursion (sbp_data): %d !!!!!!!!!!!!!!!!!!!!!!!!!!!!!!\n",recursion); 4928 else msg(DBG_TEA,"sbp_data: CMDT_READ_ERR necessary.\n"); 4929 clr_cmdbuf(); 4930 drvcmd[0]=CMDT_READ_ERR; 4931 j=cmd_out_T(); /* !!! recursive here !!! */ 4932 --recursion; 4933 sbp_sleep(1); 4934 } 4935 while (j<0); 4936 current_drive->error_state=infobuf[2]; 4937 current_drive->b3=infobuf[3]; 4938 current_drive->b4=infobuf[4]; 4939 } 4940 break; 4941 } 4942 else 4943 { 4944#if 0 4945 msg(DBG_TEA, "============= waiting for result=================.\n"); 4946 sbp_sleep(1); 4947#endif 4948 } 4949 } 4950 while (wait--); 4951 } 4952 4953 if (error_flag) /* must have been spurious D_RDY or (ATTN&&!D_RDY) */ 4954 { 4955 msg(DBG_TEA, "================error flag: %d=================.\n", error_flag); 4956 msg(DBG_INF,"sbp_data: read aborted by drive.\n"); 4957#if 1 4958 i=cc_DriveReset(); /* ugly fix to prevent a hang */ 4959#else 4960 i=cc_ReadError(); 4961#endif 4962 return (0); 4963 } 4964 4965 if (fam0LV_drive) 4966 { 4967 SBPCD_CLI; 4968 i=maxtim_data; 4969 for (timeout=jiffies+HZ; time_before(jiffies, timeout); timeout--) 4970 { 4971 for ( ;i!=0;i--) 4972 { 4973 j=inb(CDi_status); 4974 if (!(j&s_not_data_ready)) break; 4975 if (!(j&s_not_result_ready)) break; 4976 if (j&s_attention) break; 4977 } 4978 if (i != 0 || time_after_eq(jiffies, timeout)) break; 4979 sbp_sleep(0); 4980 i = 1; 4981 } 4982 if (i==0) msg(DBG_INF,"status timeout after READ.\n"); 4983 if (!(j&s_attention)) 4984 { 4985 msg(DBG_INF,"sbp_data: timeout waiting DRV_ATTN - retrying.\n"); 4986 i=cc_DriveReset(); /* ugly fix to prevent a hang */ 4987 SBPCD_STI; 4988 return (0); 4989 } 4990 SBPCD_STI; 4991 } 4992 4993#if 0 4994 if (!success) 4995#endif 4996 do 4997 { 4998 if (fam0LV_drive) cc_ReadStatus(); 4999#if 1 5000 if (famT_drive) msg(DBG_TEA, "================before ResponseStatus=================.\n", i); 5001#endif 5002 i=ResponseStatus(); /* builds status_bits, returns orig. status (old) or faked p_success (new) */ 5003#if 1 5004 if (famT_drive) msg(DBG_TEA, "================ResponseStatus: %d=================.\n", i); 5005#endif 5006 if (i<0) 5007 { 5008 msg(DBG_INF,"bad cc_ReadStatus after read: %02X\n", current_drive->status_bits); 5009 return (0); 5010 } 5011 } 5012 while ((fam0LV_drive)&&(!st_check)&&(!(i&p_success))); 5013 if (st_check) 5014 { 5015 i=cc_ReadError(); 5016 msg(DBG_INF,"cc_ReadError was necessary after read: %d\n",i); 5017 return (0); 5018 } 5019 if (fatal_err) 5020 { 5021 fatal_err=0; 5022 current_drive->sbp_first_frame=current_drive->sbp_last_frame=-1; /* purge buffer */ 5023 current_drive->sbp_current = 0; 5024 msg(DBG_INF,"sbp_data: fatal_err - retrying.\n"); 5025 return (0); 5026 } 5027 5028 current_drive->sbp_first_frame = req -> sector / 4; 5029 current_drive->sbp_last_frame = current_drive->sbp_first_frame + current_drive->sbp_read_frames - 1; 5030 sbp_transfer(req); 5031 return (1); 5032} 5033/*==========================================================================*/ 5034 5035static int sbpcd_block_open(struct inode *inode, struct file *file) 5036{ 5037 struct sbpcd_drive *p = inode->i_bdev->bd_disk->private_data; 5038 return cdrom_open(p->sbpcd_infop, inode, file); 5039} 5040 5041static int sbpcd_block_release(struct inode *inode, struct file *file) 5042{ 5043 struct sbpcd_drive *p = inode->i_bdev->bd_disk->private_data; 5044 return cdrom_release(p->sbpcd_infop, file); 5045} 5046 5047static int sbpcd_block_ioctl(struct inode *inode, struct file *file, 5048 unsigned cmd, unsigned long arg) 5049{ 5050 struct sbpcd_drive *p = inode->i_bdev->bd_disk->private_data; 5051 struct cdrom_device_info *cdi = p->sbpcd_infop; 5052 int ret, i; 5053 5054 ret = cdrom_ioctl(file, p->sbpcd_infop, inode, cmd, arg); 5055 if (ret != -ENOSYS) 5056 return ret; 5057 5058 msg(DBG_IO2,"ioctl(%s, 0x%08lX, 0x%08lX)\n", cdi->name, cmd, arg); 5059 if (p->drv_id==-1) { 5060 msg(DBG_INF, "ioctl: bad device: %s\n", cdi->name); 5061 return (-ENXIO); /* no such drive */ 5062 } 5063 down(&ioctl_read_sem); 5064 if (p != current_drive) 5065 switch_drive(p); 5066 5067 msg(DBG_IO2,"ioctl: device %s, request %04X\n",cdi->name,cmd); 5068 switch (cmd) /* Sun-compatible */ 5069 { 5070 case DDIOCSDBG: /* DDI Debug */ 5071 if (!capable(CAP_SYS_ADMIN)) RETURN_UP(-EPERM); 5072 i=sbpcd_dbg_ioctl(arg,1); 5073 RETURN_UP(i); 5074 case CDROMRESET: /* hard reset the drive */ 5075 msg(DBG_IOC,"ioctl: CDROMRESET entered.\n"); 5076 i=DriveReset(); 5077 current_drive->audio_state=0; 5078 RETURN_UP(i); 5079 5080 case CDROMREADMODE1: 5081 msg(DBG_IOC,"ioctl: CDROMREADMODE1 requested.\n"); 5082#ifdef SAFE_MIXED 5083 if (current_drive->has_data>1) RETURN_UP(-EBUSY); 5084#endif /* SAFE_MIXED */ 5085 cc_ModeSelect(CD_FRAMESIZE); 5086 cc_ModeSense(); 5087 current_drive->mode=READ_M1; 5088 RETURN_UP(0); 5089 5090 case CDROMREADMODE2: /* not usable at the moment */ 5091 msg(DBG_IOC,"ioctl: CDROMREADMODE2 requested.\n"); 5092#ifdef SAFE_MIXED 5093 if (current_drive->has_data>1) RETURN_UP(-EBUSY); 5094#endif /* SAFE_MIXED */ 5095 cc_ModeSelect(CD_FRAMESIZE_RAW1); 5096 cc_ModeSense(); 5097 current_drive->mode=READ_M2; 5098 RETURN_UP(0); 5099 5100 case CDROMAUDIOBUFSIZ: /* configure the audio buffer size */ 5101 msg(DBG_IOC,"ioctl: CDROMAUDIOBUFSIZ entered.\n"); 5102 if (current_drive->sbp_audsiz>0) 5103 vfree(current_drive->aud_buf); 5104 current_drive->aud_buf=NULL; 5105 current_drive->sbp_audsiz=arg; 5106 5107 if (current_drive->sbp_audsiz>16) 5108 { 5109 current_drive->sbp_audsiz = 0; 5110 RETURN_UP(current_drive->sbp_audsiz); 5111 } 5112 5113 if (current_drive->sbp_audsiz>0) 5114 { 5115 current_drive->aud_buf=(u_char *) vmalloc(current_drive->sbp_audsiz*CD_FRAMESIZE_RAW); 5116 if (current_drive->aud_buf==NULL) 5117 { 5118 msg(DBG_INF,"audio buffer (%d frames) not available.\n",current_drive->sbp_audsiz); 5119 current_drive->sbp_audsiz=0; 5120 } 5121 else msg(DBG_INF,"audio buffer size: %d frames.\n",current_drive->sbp_audsiz); 5122 } 5123 RETURN_UP(current_drive->sbp_audsiz); 5124 5125 case CDROMREADAUDIO: 5126 { /* start of CDROMREADAUDIO */ 5127 int i=0, j=0, frame, block=0; 5128 u_int try=0; 5129 u_long timeout; 5130 u_char *p; 5131 u_int data_tries = 0; 5132 u_int data_waits = 0; 5133 u_int data_retrying = 0; 5134 int status_tries; 5135 int error_flag; 5136 5137 msg(DBG_IOC,"ioctl: CDROMREADAUDIO entered.\n"); 5138 if (fam0_drive) RETURN_UP(-EINVAL); 5139 if (famL_drive) RETURN_UP(-EINVAL); 5140 if (famV_drive) RETURN_UP(-EINVAL); 5141 if (famT_drive) RETURN_UP(-EINVAL); 5142#ifdef SAFE_MIXED 5143 if (current_drive->has_data>1) RETURN_UP(-EBUSY); 5144#endif /* SAFE_MIXED */ 5145 if (current_drive->aud_buf==NULL) RETURN_UP(-EINVAL); 5146 if (copy_from_user(&read_audio, (void __user *)arg, 5147 sizeof(struct cdrom_read_audio))) 5148 RETURN_UP(-EFAULT); 5149 if (read_audio.nframes < 0 || read_audio.nframes>current_drive->sbp_audsiz) RETURN_UP(-EINVAL); 5150 if (!access_ok(VERIFY_WRITE, read_audio.buf, 5151 read_audio.nframes*CD_FRAMESIZE_RAW)) 5152 RETURN_UP(-EFAULT); 5153 5154 if (read_audio.addr_format==CDROM_MSF) /* MSF-bin specification of where to start */ 5155 block=msf2lba(&read_audio.addr.msf.minute); 5156 else if (read_audio.addr_format==CDROM_LBA) /* lba specification of where to start */ 5157 block=read_audio.addr.lba; 5158 else RETURN_UP(-EINVAL); 5159#if 000 5160 i=cc_SetSpeed(speed_150,0,0); 5161 if (i) msg(DBG_AUD,"read_audio: SetSpeed error %d\n", i); 5162#endif 5163 msg(DBG_AUD,"read_audio: lba: %d, msf: %06X\n", 5164 block, blk2msf(block)); 5165 msg(DBG_AUD,"read_audio: before cc_ReadStatus.\n"); 5166#if OLD_BUSY 5167 while (busy_data) sbp_sleep(HZ/10); /* wait a bit */ 5168 busy_audio=1; 5169#endif /* OLD_BUSY */ 5170 error_flag=0; 5171 for (data_tries=5; data_tries>0; data_tries--) 5172 { 5173 msg(DBG_AUD,"data_tries=%d ...\n", data_tries); 5174 current_drive->mode=READ_AU; 5175 cc_ModeSelect(CD_FRAMESIZE_RAW); 5176 cc_ModeSense(); 5177 for (status_tries=3; status_tries > 0; status_tries--) 5178 { 5179 flags_cmd_out |= f_respo3; 5180 cc_ReadStatus(); 5181 if (sbp_status() != 0) break; 5182 if (st_check) cc_ReadError(); 5183 sbp_sleep(1); /* wait a bit, try again */ 5184 } 5185 if (status_tries == 0) 5186 { 5187 msg(DBG_AUD,"read_audio: sbp_status: failed after 3 tries in line %d.\n", __LINE__); 5188 continue; 5189 } 5190 msg(DBG_AUD,"read_audio: sbp_status: ok.\n"); 5191 5192 flags_cmd_out = f_putcmd | f_respo2 | f_ResponseStatus | f_obey_p_check; 5193 if (fam0L_drive) 5194 { 5195 flags_cmd_out |= f_lopsta | f_getsta | f_bit1; 5196 cmd_type=READ_M2; 5197 drvcmd[0]=CMD0_READ_XA; /* "read XA frames", old drives */ 5198 drvcmd[1]=(block>>16)&0x000000ff; 5199 drvcmd[2]=(block>>8)&0x000000ff; 5200 drvcmd[3]=block&0x000000ff; 5201 drvcmd[4]=0; 5202 drvcmd[5]=read_audio.nframes; /* # of frames */ 5203 drvcmd[6]=0; 5204 } 5205 else if (fam1_drive) 5206 { 5207 drvcmd[0]=CMD1_READ; /* "read frames", new drives */ 5208 lba2msf(block,&drvcmd[1]); /* msf-bin format required */ 5209 drvcmd[4]=0; 5210 drvcmd[5]=0; 5211 drvcmd[6]=read_audio.nframes; /* # of frames */ 5212 } 5213 else if (fam2_drive) 5214 { 5215 drvcmd[0]=CMD2_READ_XA2; 5216 lba2msf(block,&drvcmd[1]); /* msf-bin format required */ 5217 drvcmd[4]=0; 5218 drvcmd[5]=read_audio.nframes; /* # of frames */ 5219 drvcmd[6]=0x11; /* raw mode */ 5220 } 5221 else if (famT_drive) /* CD-55A: not tested yet */ 5222 { 5223 } 5224 msg(DBG_AUD,"read_audio: before giving \"read\" command.\n"); 5225 flags_cmd_out=f_putcmd; 5226 response_count=0; 5227 i=cmd_out(); 5228 if (i<0) msg(DBG_INF,"error giving READ AUDIO command: %0d\n", i); 5229 sbp_sleep(0); 5230 msg(DBG_AUD,"read_audio: after giving \"read\" command.\n"); 5231 for (frame=1;frame<2 && !error_flag; frame++) 5232 { 5233 try=maxtim_data; 5234 for (timeout=jiffies+9*HZ; ; ) 5235 { 5236 for ( ; try!=0;try--) 5237 { 5238 j=inb(CDi_status); 5239 if (!(j&s_not_data_ready)) break; 5240 if (!(j&s_not_result_ready)) break; 5241 if (fam0L_drive) if (j&s_attention) break; 5242 } 5243 if (try != 0 || time_after_eq(jiffies, timeout)) break; 5244 if (data_retrying == 0) data_waits++; 5245 data_retrying = 1; 5246 sbp_sleep(1); 5247 try = 1; 5248 } 5249 if (try==0) 5250 { 5251 msg(DBG_INF,"read_audio: sbp_data: CDi_status timeout.\n"); 5252 error_flag++; 5253 break; 5254 } 5255 msg(DBG_AUD,"read_audio: sbp_data: CDi_status ok.\n"); 5256 if (j&s_not_data_ready) 5257 { 5258 msg(DBG_INF, "read_audio: sbp_data: DATA_READY timeout.\n"); 5259 error_flag++; 5260 break; 5261 } 5262 msg(DBG_AUD,"read_audio: before reading data.\n"); 5263 error_flag=0; 5264 p = current_drive->aud_buf; 5265 if (sbpro_type==1) OUT(CDo_sel_i_d,1); 5266 if (do_16bit) 5267 { 5268 u_short *p2 = (u_short *) p; 5269 5270 for (; (u_char *) p2 < current_drive->aud_buf + read_audio.nframes*CD_FRAMESIZE_RAW;) 5271 { 5272 if ((inb_p(CDi_status)&s_not_data_ready)) continue; 5273 5274 /* get one sample */ 5275 *p2++ = inw_p(CDi_data); 5276 *p2++ = inw_p(CDi_data); 5277 } 5278 } else { 5279 for (; p < current_drive->aud_buf + read_audio.nframes*CD_FRAMESIZE_RAW;) 5280 { 5281 if ((inb_p(CDi_status)&s_not_data_ready)) continue; 5282 5283 /* get one sample */ 5284 *p++ = inb_p(CDi_data); 5285 *p++ = inb_p(CDi_data); 5286 *p++ = inb_p(CDi_data); 5287 *p++ = inb_p(CDi_data); 5288 } 5289 } 5290 if (sbpro_type==1) OUT(CDo_sel_i_d,0); 5291 data_retrying = 0; 5292 } 5293 msg(DBG_AUD,"read_audio: after reading data.\n"); 5294 if (error_flag) /* must have been spurious D_RDY or (ATTN&&!D_RDY) */ 5295 { 5296 msg(DBG_AUD,"read_audio: read aborted by drive\n"); 5297#if 0000 5298 i=cc_DriveReset(); /* ugly fix to prevent a hang */ 5299#else 5300 i=cc_ReadError(); 5301#endif 5302 continue; 5303 } 5304 if (fam0L_drive) 5305 { 5306 i=maxtim_data; 5307 for (timeout=jiffies+9*HZ; time_before(jiffies, timeout); timeout--) 5308 { 5309 for ( ;i!=0;i--) 5310 { 5311 j=inb(CDi_status); 5312 if (!(j&s_not_data_ready)) break; 5313 if (!(j&s_not_result_ready)) break; 5314 if (j&s_attention) break; 5315 } 5316 if (i != 0 || time_after_eq(jiffies, timeout)) break; 5317 sbp_sleep(0); 5318 i = 1; 5319 } 5320 if (i==0) msg(DBG_AUD,"read_audio: STATUS TIMEOUT AFTER READ"); 5321 if (!(j&s_attention)) 5322 { 5323 msg(DBG_AUD,"read_audio: sbp_data: timeout waiting DRV_ATTN - retrying\n"); 5324 i=cc_DriveReset(); /* ugly fix to prevent a hang */ 5325 continue; 5326 } 5327 } 5328 do 5329 { 5330 if (fam0L_drive) cc_ReadStatus(); 5331 i=ResponseStatus(); /* builds status_bits, returns orig. status (old) or faked p_success (new) */ 5332 if (i<0) { msg(DBG_AUD, 5333 "read_audio: cc_ReadStatus error after read: %02X\n", 5334 current_drive->status_bits); 5335 continue; /* FIXME */ 5336 } 5337 } 5338 while ((fam0L_drive)&&(!st_check)&&(!(i&p_success))); 5339 if (st_check) 5340 { 5341 i=cc_ReadError(); 5342 msg(DBG_AUD,"read_audio: cc_ReadError was necessary after read: %02X\n",i); 5343 continue; 5344 } 5345 if (copy_to_user(read_audio.buf, 5346 current_drive->aud_buf, 5347 read_audio.nframes * CD_FRAMESIZE_RAW)) 5348 RETURN_UP(-EFAULT); 5349 msg(DBG_AUD,"read_audio: copy_to_user done.\n"); 5350 break; 5351 } 5352 cc_ModeSelect(CD_FRAMESIZE); 5353 cc_ModeSense(); 5354 current_drive->mode=READ_M1; 5355#if OLD_BUSY 5356 busy_audio=0; 5357#endif /* OLD_BUSY */ 5358 if (data_tries == 0) 5359 { 5360 msg(DBG_AUD,"read_audio: failed after 5 tries in line %d.\n", __LINE__); 5361 RETURN_UP(-EIO); 5362 } 5363 msg(DBG_AUD,"read_audio: successful return.\n"); 5364 RETURN_UP(0); 5365 } /* end of CDROMREADAUDIO */ 5366 5367 default: 5368 msg(DBG_IOC,"ioctl: unknown function request %04X\n", cmd); 5369 RETURN_UP(-EINVAL); 5370 } /* end switch(cmd) */ 5371} 5372 5373static int sbpcd_block_media_changed(struct gendisk *disk) 5374{ 5375 struct sbpcd_drive *p = disk->private_data; 5376 return cdrom_media_changed(p->sbpcd_infop); 5377} 5378 5379static struct block_device_operations sbpcd_bdops = 5380{ 5381 .owner = THIS_MODULE, 5382 .open = sbpcd_block_open, 5383 .release = sbpcd_block_release, 5384 .ioctl = sbpcd_block_ioctl, 5385 .media_changed = sbpcd_block_media_changed, 5386}; 5387/*==========================================================================*/ 5388/* 5389 * Open the device special file. Check that a disk is in. Read TOC. 5390 */ 5391static int sbpcd_open(struct cdrom_device_info *cdi, int purpose) 5392{ 5393 struct sbpcd_drive *p = cdi->handle; 5394 5395 down(&ioctl_read_sem); 5396 switch_drive(p); 5397 5398 /* 5399 * try to keep an "open" counter here and lock the door if 0->1. 5400 */ 5401 msg(DBG_LCK,"open_count: %d -> %d\n", 5402 current_drive->open_count,current_drive->open_count+1); 5403 if (++current_drive->open_count<=1) 5404 { 5405 int i; 5406 i=LockDoor(); 5407 current_drive->open_count=1; 5408 if (famT_drive) msg(DBG_TEA,"sbpcd_open: before i=DiskInfo();.\n"); 5409 i=DiskInfo(); 5410 if (famT_drive) msg(DBG_TEA,"sbpcd_open: after i=DiskInfo();.\n"); 5411 if ((current_drive->ored_ctl_adr&0x40)==0) 5412 { 5413 msg(DBG_INF,"CD contains no data tracks.\n"); 5414#ifdef SAFE_MIXED 5415 current_drive->has_data=0; 5416#endif /* SAFE_MIXED */ 5417 } 5418#ifdef SAFE_MIXED 5419 else if (current_drive->has_data<1) current_drive->has_data=1; 5420#endif /* SAFE_MIXED */ 5421 } 5422 if (!st_spinning) cc_SpinUp(); 5423 RETURN_UP(0); 5424} 5425/*==========================================================================*/ 5426/* 5427 * On close, we flush all sbp blocks from the buffer cache. 5428 */ 5429static void sbpcd_release(struct cdrom_device_info * cdi) 5430{ 5431 struct sbpcd_drive *p = cdi->handle; 5432 5433 if (p->drv_id==-1) { 5434 msg(DBG_INF, "release: bad device: %s\n", cdi->name); 5435 return; 5436 } 5437 down(&ioctl_read_sem); 5438 switch_drive(p); 5439 /* 5440 * try to keep an "open" counter here and unlock the door if 1->0. 5441 */ 5442 msg(DBG_LCK,"open_count: %d -> %d\n", 5443 p->open_count,p->open_count-1); 5444 if (p->open_count>-2) /* CDROMEJECT may have been done */ 5445 { 5446 if (--p->open_count<=0) 5447 { 5448 p->sbp_first_frame=p->sbp_last_frame=-1; 5449 if (p->audio_state!=audio_playing) 5450 if (p->f_eject) cc_SpinDown(); 5451 p->diskstate_flags &= ~cd_size_bit; 5452 p->open_count=0; 5453#ifdef SAFE_MIXED 5454 p->has_data=0; 5455#endif /* SAFE_MIXED */ 5456 } 5457 } 5458 up(&ioctl_read_sem); 5459 return ; 5460} 5461/*==========================================================================*/ 5462/* 5463 * 5464 */ 5465static int sbpcd_media_changed( struct cdrom_device_info *cdi, int disc_nr); 5466static struct cdrom_device_ops sbpcd_dops = { 5467 .open = sbpcd_open, 5468 .release = sbpcd_release, 5469 .drive_status = sbpcd_drive_status, 5470 .media_changed = sbpcd_media_changed, 5471 .tray_move = sbpcd_tray_move, 5472 .lock_door = sbpcd_lock_door, 5473 .select_speed = sbpcd_select_speed, 5474 .get_last_session = sbpcd_get_last_session, 5475 .get_mcn = sbpcd_get_mcn, 5476 .reset = sbpcd_reset, 5477 .audio_ioctl = sbpcd_audio_ioctl, 5478 .capability = CDC_CLOSE_TRAY | CDC_OPEN_TRAY | CDC_LOCK | 5479 CDC_MULTI_SESSION | CDC_MEDIA_CHANGED | 5480 CDC_MCN | CDC_PLAY_AUDIO, 5481 .n_minors = 1, 5482}; 5483 5484/*==========================================================================*/ 5485/* 5486 * accept "kernel command line" parameters 5487 * (suggested by Peter MacDonald with SLS 1.03) 5488 * 5489 * This is only implemented for the first controller. Should be enough to 5490 * allow installing with a "strange" distribution kernel. 5491 * 5492 * use: tell LILO: 5493 * sbpcd=0x230,SoundBlaster 5494 * or 5495 * sbpcd=0x300,LaserMate 5496 * or 5497 * sbpcd=0x338,SoundScape 5498 * or 5499 * sbpcd=0x2C0,Teac16bit 5500 * 5501 * (upper/lower case sensitive here - but all-lowercase is ok!!!). 5502 * 5503 * the address value has to be the CDROM PORT ADDRESS - 5504 * not the soundcard base address. 5505 * For the SPEA/SoundScape setup, DO NOT specify the "configuration port" 5506 * address, but the address which is really used for the CDROM (usually 8 5507 * bytes above). 5508 * 5509 */ 5510 5511int sbpcd_setup(char *s) 5512{ 5513#ifndef MODULE 5514 int p[4]; 5515 (void)get_options(s, ARRAY_SIZE(p), p); 5516 setup_done++; 5517 msg(DBG_INI,"sbpcd_setup called with %04X,%s\n",p[1], s); 5518 sbpro_type=0; /* default: "LaserMate" */ 5519 if (p[0]>1) sbpro_type=p[2]; 5520 else if (!strcmp(s,str_sb)) sbpro_type=1; 5521 else if (!strcmp(s,str_sb_l)) sbpro_type=1; 5522 else if (!strcmp(s,str_sp)) sbpro_type=2; 5523 else if (!strcmp(s,str_sp_l)) sbpro_type=2; 5524 else if (!strcmp(s,str_ss)) sbpro_type=2; 5525 else if (!strcmp(s,str_ss_l)) sbpro_type=2; 5526 else if (!strcmp(s,str_t16)) sbpro_type=3; 5527 else if (!strcmp(s,str_t16_l)) sbpro_type=3; 5528 if (p[0]>0) sbpcd_ioaddr=p[1]; 5529 if (p[0]>2) max_drives=p[3]; 5530#else 5531 sbpcd_ioaddr = sbpcd[0]; 5532 sbpro_type = sbpcd[1]; 5533#endif 5534 5535 CDo_command=sbpcd_ioaddr; 5536 CDi_info=sbpcd_ioaddr; 5537 CDi_status=sbpcd_ioaddr+1; 5538 CDo_sel_i_d=sbpcd_ioaddr+1; 5539 CDo_reset=sbpcd_ioaddr+2; 5540 CDo_enable=sbpcd_ioaddr+3; 5541 f_16bit=0; 5542 if ((sbpro_type==1)||(sbpro_type==3)) 5543 { 5544 CDi_data=sbpcd_ioaddr; 5545 if (sbpro_type==3) 5546 { 5547 f_16bit=1; 5548 sbpro_type=1; 5549 } 5550 } 5551 else CDi_data=sbpcd_ioaddr+2; 5552 5553 return 1; 5554} 5555 5556__setup("sbpcd=", sbpcd_setup); 5557 5558 5559/*==========================================================================*/ 5560/* 5561 * Sequoia S-1000 CD-ROM Interface Configuration 5562 * as used within SPEA Media FX, Ensonic SoundScape and some Reveal cards 5563 * The soundcard has to get jumpered for the interface type "Panasonic" 5564 * (not Sony or Mitsumi) and to get soft-configured for 5565 * -> configuration port address 5566 * -> CDROM port offset (num_ports): has to be 8 here. Possibly this 5567 * offset value determines the interface type (none, Panasonic, 5568 * Mitsumi, Sony). 5569 * The interface uses a configuration port (0x320, 0x330, 0x340, 0x350) 5570 * some bytes below the real CDROM address. 5571 * 5572 * For the Panasonic style (LaserMate) interface and the configuration 5573 * port 0x330, we have to use an offset of 8; so, the real CDROM port 5574 * address is 0x338. 5575 */ 5576static int __init config_spea(void) 5577{ 5578 /* 5579 * base address offset between configuration port and CDROM port, 5580 * this probably defines the interface type 5581 * 2 (type=??): 0x00 5582 * 8 (type=LaserMate):0x10 5583 * 16 (type=??):0x20 5584 * 32 (type=??):0x30 5585 */ 5586 int n_ports=0x10; 5587 5588 int irq_number=0; /* off:0x00, 2/9:0x01, 7:0x03, 12:0x05, 15:0x07 */ 5589 int dma_channel=0; /* off: 0x00, 0:0x08, 1:0x18, 3:0x38, 5:0x58, 6:0x68 */ 5590 int dack_polarity=0; /* L:0x00, H:0x80 */ 5591 int drq_polarity=0x40; /* L:0x00, H:0x40 */ 5592 int i; 5593 5594#define SPEA_REG_1 sbpcd_ioaddr-0x08+4 5595#define SPEA_REG_2 sbpcd_ioaddr-0x08+5 5596 5597 OUT(SPEA_REG_1,0xFF); 5598 i=inb(SPEA_REG_1); 5599 if (i!=0x0F) 5600 { 5601 msg(DBG_SEQ,"no SPEA interface at %04X present.\n", sbpcd_ioaddr); 5602 return (-1); /* no interface found */ 5603 } 5604 OUT(SPEA_REG_1,0x04); 5605 OUT(SPEA_REG_2,0xC0); 5606 5607 OUT(SPEA_REG_1,0x05); 5608 OUT(SPEA_REG_2,0x10|drq_polarity|dack_polarity); 5609 5610#if 1 5611#define SPEA_PATTERN 0x80 5612#else 5613#define SPEA_PATTERN 0x00 5614#endif 5615 OUT(SPEA_REG_1,0x06); 5616 OUT(SPEA_REG_2,dma_channel|irq_number|SPEA_PATTERN); 5617 OUT(SPEA_REG_2,dma_channel|irq_number|SPEA_PATTERN); 5618 5619 OUT(SPEA_REG_1,0x09); 5620 i=(inb(SPEA_REG_2)&0xCF)|n_ports; 5621 OUT(SPEA_REG_2,i); 5622 5623 sbpro_type = 0; /* acts like a LaserMate interface now */ 5624 msg(DBG_SEQ,"found SoundScape interface at %04X.\n", sbpcd_ioaddr); 5625 return (0); 5626} 5627 5628/*==========================================================================*/ 5629/* 5630 * Test for presence of drive and initialize it. 5631 * Called once at boot or load time. 5632 */ 5633 5634/* FIXME: cleanups after failed allocations are too ugly for words */ 5635#ifdef MODULE 5636int __init __sbpcd_init(void) 5637#else 5638int __init sbpcd_init(void) 5639#endif 5640{ 5641 int i=0, j=0; 5642 int addr[2]={1, CDROM_PORT}; 5643 int port_index; 5644 5645 sti(); 5646 5647 msg(DBG_INF,"sbpcd.c %s\n", VERSION); 5648#ifndef MODULE 5649#if DISTRIBUTION 5650 if (!setup_done) 5651 { 5652 msg(DBG_INF,"Looking for Matsushita/Panasonic, CreativeLabs, Longshine, TEAC CD-ROM drives\n"); 5653 msg(DBG_INF,"= = = = = = = = = = W A R N I N G = = = = = = = = = =\n"); 5654 msg(DBG_INF,"Auto-Probing can cause a hang (f.e. touching an NE2000 card).\n"); 5655 msg(DBG_INF,"If that happens, you have to reboot and use the\n"); 5656 msg(DBG_INF,"LILO (kernel) command line feature like:\n"); 5657 msg(DBG_INF," LILO boot: ... sbpcd=0x230,SoundBlaster\n"); 5658 msg(DBG_INF,"or like:\n"); 5659 msg(DBG_INF," LILO boot: ... sbpcd=0x300,LaserMate\n"); 5660 msg(DBG_INF,"or like:\n"); 5661 msg(DBG_INF," LILO boot: ... sbpcd=0x338,SoundScape\n"); 5662 msg(DBG_INF,"with your REAL address.\n"); 5663 msg(DBG_INF,"= = = = = = = = = = END of WARNING = = = = = == = = =\n"); 5664 } 5665#endif /* DISTRIBUTION */ 5666 sbpcd[0]=sbpcd_ioaddr; /* possibly changed by kernel command line */ 5667 sbpcd[1]=sbpro_type; /* possibly changed by kernel command line */ 5668#endif /* MODULE */ 5669 5670 for (port_index=0;port_index<NUM_PROBE;port_index+=2) 5671 { 5672 addr[1]=sbpcd[port_index]; 5673 if (addr[1]==0) break; 5674 if (check_region(addr[1],4)) 5675 { 5676 msg(DBG_INF,"check_region: %03X is not free.\n",addr[1]); 5677 continue; 5678 } 5679 if (sbpcd[port_index+1]==2) type=str_sp; 5680 else if (sbpcd[port_index+1]==1) type=str_sb; 5681 else if (sbpcd[port_index+1]==3) type=str_t16; 5682 else type=str_lm; 5683 sbpcd_setup((char *)type); 5684#if DISTRIBUTION 5685 msg(DBG_INF,"Scanning 0x%X (%s)...\n", CDo_command, type); 5686#endif /* DISTRIBUTION */ 5687 if (sbpcd[port_index+1]==2) 5688 { 5689 i=config_spea(); 5690 if (i<0) continue; 5691 } 5692#ifdef PATH_CHECK 5693 if (check_card(addr[1])) continue; 5694#endif /* PATH_CHECK */ 5695 i=check_drives(); 5696 msg(DBG_INI,"check_drives done.\n"); 5697 if (i>=0) break; /* drive found */ 5698 } /* end of cycling through the set of possible I/O port addresses */ 5699 5700 if (ndrives==0) 5701 { 5702 msg(DBG_INF, "No drive found.\n"); 5703#ifdef MODULE 5704 return -EIO; 5705#else 5706 goto init_done; 5707#endif /* MODULE */ 5708 } 5709 5710 if (port_index>0) 5711 { 5712 msg(DBG_INF, "You should read Documentation/cdrom/sbpcd\n"); 5713 msg(DBG_INF, "and then configure sbpcd.h for your hardware.\n"); 5714 } 5715 check_datarate(); 5716 msg(DBG_INI,"check_datarate done.\n"); 5717 5718 for (j=0;j<NR_SBPCD;j++) 5719 { 5720 struct sbpcd_drive *p = D_S + j; 5721 if (p->drv_id==-1) 5722 continue; 5723 switch_drive(p); 5724#if 1 5725 if (!famL_drive) cc_DriveReset(); 5726#endif 5727 if (!st_spinning) cc_SpinUp(); 5728 p->sbp_first_frame = -1; /* First frame in buffer */ 5729 p->sbp_last_frame = -1; /* Last frame in buffer */ 5730 p->sbp_read_frames = 0; /* Number of frames being read to buffer */ 5731 p->sbp_current = 0; /* Frame being currently read */ 5732 p->CD_changed=1; 5733 p->frame_size=CD_FRAMESIZE; 5734 p->f_eject=0; 5735#if EJECT 5736 if (!fam0_drive) p->f_eject=1; 5737#endif /* EJECT */ 5738 cc_ReadStatus(); 5739 i=ResponseStatus(); /* returns orig. status or p_busy_new */ 5740 if (famT_drive) i=ResponseStatus(); /* returns orig. status or p_busy_new */ 5741 if (i<0) 5742 { 5743 if (i!=-402) 5744 msg(DBG_INF,"init: ResponseStatus returns %d.\n",i); 5745 } 5746 else 5747 { 5748 if (st_check) 5749 { 5750 i=cc_ReadError(); 5751 msg(DBG_INI,"init: cc_ReadError returns %d\n",i); 5752 } 5753 } 5754 msg(DBG_INI,"init: first GetStatus: %d\n",i); 5755 msg(DBG_LCS,"init: first GetStatus: error_byte=%d\n", 5756 p->error_byte); 5757 if (p->error_byte==aud_12) 5758 { 5759 timeout=jiffies+2*HZ; 5760 do 5761 { 5762 i=GetStatus(); 5763 msg(DBG_INI,"init: second GetStatus: %02X\n",i); 5764 msg(DBG_LCS, 5765 "init: second GetStatus: error_byte=%d\n", 5766 p->error_byte); 5767 if (i<0) break; 5768 if (!st_caddy_in) break; 5769 } 5770 while ((!st_diskok)||time_after(jiffies, timeout)); 5771 } 5772 i=SetSpeed(); 5773 if (i>=0) p->CD_changed=1; 5774 } 5775 5776 if (!request_region(CDo_command,4,major_name)) 5777 { 5778 printk(KERN_WARNING "sbpcd: Unable to request region 0x%x\n", CDo_command); 5779 return -EIO; 5780 } 5781 5782 /* 5783 * Turn on the CD audio channels. 5784 * The addresses are obtained from SOUND_BASE (see sbpcd.h). 5785 */ 5786#if SOUND_BASE 5787 OUT(MIXER_addr,MIXER_CD_Volume); /* select SB Pro mixer register */ 5788 OUT(MIXER_data,0xCC); /* one nibble per channel, max. value: 0xFF */ 5789#endif /* SOUND_BASE */ 5790 5791 if (register_blkdev(MAJOR_NR, major_name)) { 5792#ifdef MODULE 5793 return -EIO; 5794#else 5795 goto init_done; 5796#endif /* MODULE */ 5797 } 5798 5799 /* 5800 * init error handling is broken beyond belief in this driver... 5801 */ 5802 sbpcd_queue = blk_init_queue(do_sbpcd_request, &sbpcd_lock); 5803 if (!sbpcd_queue) { 5804 release_region(CDo_command,4); 5805 unregister_blkdev(MAJOR_NR, major_name); 5806 return -ENOMEM; 5807 } 5808 5809 for (j=0;j<NR_SBPCD;j++) 5810 { 5811 struct cdrom_device_info * sbpcd_infop; 5812 struct gendisk *disk; 5813 struct sbpcd_drive *p = D_S + j; 5814 5815 if (p->drv_id==-1) continue; 5816 switch_drive(p); 5817#ifdef SAFE_MIXED 5818 p->has_data=0; 5819#endif /* SAFE_MIXED */ 5820 /* 5821 * allocate memory for the frame buffers 5822 */ 5823 p->aud_buf=NULL; 5824 p->sbp_audsiz=0; 5825 p->sbp_bufsiz=buffers; 5826 if (p->drv_type&drv_fam1) 5827 if (READ_AUDIO>0) 5828 p->sbp_audsiz = READ_AUDIO; 5829 p->sbp_buf=(u_char *) vmalloc(buffers*CD_FRAMESIZE); 5830 if (!p->sbp_buf) { 5831 msg(DBG_INF,"data buffer (%d frames) not available.\n", 5832 buffers); 5833 if ((unregister_blkdev(MAJOR_NR, major_name) == -EINVAL)) 5834 { 5835 printk("Can't unregister %s\n", major_name); 5836 } 5837 release_region(CDo_command,4); 5838 blk_cleanup_queue(sbpcd_queue); 5839 return -EIO; 5840 } 5841#ifdef MODULE 5842 msg(DBG_INF,"data buffer size: %d frames.\n",buffers); 5843#endif /* MODULE */ 5844 if (p->sbp_audsiz>0) 5845 { 5846 p->aud_buf=(u_char *) vmalloc(p->sbp_audsiz*CD_FRAMESIZE_RAW); 5847 if (p->aud_buf==NULL) msg(DBG_INF,"audio buffer (%d frames) not available.\n",p->sbp_audsiz); 5848 else msg(DBG_INF,"audio buffer size: %d frames.\n",p->sbp_audsiz); 5849 } 5850 sbpcd_infop = vmalloc(sizeof (struct cdrom_device_info)); 5851 if (sbpcd_infop == NULL) 5852 { 5853 release_region(CDo_command,4); 5854 blk_cleanup_queue(sbpcd_queue); 5855 return -ENOMEM; 5856 } 5857 memset(sbpcd_infop, 0, sizeof(struct cdrom_device_info)); 5858 sbpcd_infop->ops = &sbpcd_dops; 5859 sbpcd_infop->speed = 2; 5860 sbpcd_infop->capacity = 1; 5861 sprintf(sbpcd_infop->name, "sbpcd%d", j); 5862 sbpcd_infop->handle = p; 5863 p->sbpcd_infop = sbpcd_infop; 5864 disk = alloc_disk(1); 5865 disk->major = MAJOR_NR; 5866 disk->first_minor = j; 5867 disk->fops = &sbpcd_bdops; 5868 strcpy(disk->disk_name, sbpcd_infop->name); 5869 disk->flags = GENHD_FL_CD; 5870 p->disk = disk; 5871 if (register_cdrom(sbpcd_infop)) 5872 { 5873 printk(" sbpcd: Unable to register with Uniform CD-ROm driver\n"); 5874 } 5875 disk->private_data = p; 5876 disk->queue = sbpcd_queue; 5877 add_disk(disk); 5878 } 5879 blk_queue_hardsect_size(sbpcd_queue, CD_FRAMESIZE); 5880 5881#ifndef MODULE 5882 init_done: 5883#endif 5884 return 0; 5885} 5886/*==========================================================================*/ 5887#ifdef MODULE 5888static void sbpcd_exit(void) 5889{ 5890 int j; 5891 5892 if ((unregister_blkdev(MAJOR_NR, major_name) == -EINVAL)) 5893 { 5894 msg(DBG_INF, "What's that: can't unregister %s.\n", major_name); 5895 return; 5896 } 5897 release_region(CDo_command,4); 5898 blk_cleanup_queue(sbpcd_queue); 5899 for (j=0;j<NR_SBPCD;j++) 5900 { 5901 if (D_S[j].drv_id==-1) continue; 5902 del_gendisk(D_S[j].disk); 5903 put_disk(D_S[j].disk); 5904 vfree(D_S[j].sbp_buf); 5905 if (D_S[j].sbp_audsiz>0) 5906 vfree(D_S[j].aud_buf); 5907 if ((unregister_cdrom(D_S[j].sbpcd_infop) == -EINVAL)) 5908 { 5909 msg(DBG_INF, "What's that: can't unregister info %s.\n", major_name); 5910 return; 5911 } 5912 vfree(D_S[j].sbpcd_infop); 5913 } 5914 msg(DBG_INF, "%s module released.\n", major_name); 5915} 5916 5917 5918module_init(__sbpcd_init) /*HACK!*/; 5919module_exit(sbpcd_exit); 5920 5921 5922#endif /* MODULE */ 5923static int sbpcd_media_changed(struct cdrom_device_info *cdi, int disc_nr) 5924{ 5925 struct sbpcd_drive *p = cdi->handle; 5926 msg(DBG_CHK,"media_check (%s) called\n", cdi->name); 5927 5928 if (p->CD_changed==0xFF) 5929 { 5930 p->CD_changed=0; 5931 msg(DBG_CHK,"medium changed (drive %s)\n", cdi->name); 5932 current_drive->diskstate_flags &= ~toc_bit; 5933 /* we *don't* need invalidate here, it's done by caller */ 5934 current_drive->diskstate_flags &= ~cd_size_bit; 5935#ifdef SAFE_MIXED 5936 current_drive->has_data=0; 5937#endif /* SAFE_MIXED */ 5938 5939 return (1); 5940 } 5941 else 5942 return (0); 5943} 5944 5945MODULE_LICENSE("GPL"); 5946/* FIXME: Old modules.conf claims MATSUSHITA_CDROM2_MAJOR and CDROM3, but 5947 AFAICT this doesn't support those majors, so why? --RR 30 Jul 2003 */ 5948MODULE_ALIAS_BLOCKDEV_MAJOR(MATSUSHITA_CDROM_MAJOR); 5949 5950/*==========================================================================*/ 5951/* 5952 * Overrides for Emacs so that we follow Linus's tabbing style. 5953 * Emacs will notice this stuff at the end of the file and automatically 5954 * adjust the settings for this buffer only. This must remain at the end 5955 * of the file. 5956 * --------------------------------------------------------------------------- 5957 * Local variables: 5958 * c-indent-level: 8 5959 * c-brace-imaginary-offset: 0 5960 * c-brace-offset: -8 5961 * c-argdecl-indent: 8 5962 * c-label-offset: -8 5963 * c-continued-statement-offset: 8 5964 * c-continued-brace-offset: 0 5965 * End: 5966 */ 5967