linux-old/drivers/ide/ide-lib.c
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   1#include <linux/config.h>
   2#define __NO_VERSION__
   3#include <linux/module.h>
   4#include <linux/types.h>
   5#include <linux/string.h>
   6#include <linux/kernel.h>
   7#include <linux/timer.h>
   8#include <linux/mm.h>
   9#include <linux/interrupt.h>
  10#include <linux/major.h>
  11#include <linux/errno.h>
  12#include <linux/genhd.h>
  13#include <linux/blkpg.h>
  14#include <linux/slab.h>
  15#include <linux/pci.h>
  16#include <linux/delay.h>
  17#include <linux/hdreg.h>
  18#include <linux/ide.h>
  19
  20#include <asm/byteorder.h>
  21#include <asm/irq.h>
  22#include <asm/uaccess.h>
  23#include <asm/io.h>
  24#include <asm/bitops.h>
  25
  26#include "ide_modes.h"
  27
  28/*
  29 *      IDE library routines. These are plug in code that most 
  30 *      drivers can use but occasionally may be weird enough
  31 *      to want to do their own thing with
  32 *
  33 *      Add common non I/O op stuff here. Make sure it has proper
  34 *      kernel-doc function headers or your patch will be rejected
  35 */
  36 
  37
  38/**
  39 *      ide_xfer_verbose        -       return IDE mode names
  40 *      @xfer_rate: rate to name
  41 *
  42 *      Returns a constant string giving the name of the mode
  43 *      requested.
  44 */
  45
  46char *ide_xfer_verbose (u8 xfer_rate)
  47{
  48        switch(xfer_rate) {
  49                case XFER_UDMA_7:       return("UDMA 7");
  50                case XFER_UDMA_6:       return("UDMA 6");
  51                case XFER_UDMA_5:       return("UDMA 5");
  52                case XFER_UDMA_4:       return("UDMA 4");
  53                case XFER_UDMA_3:       return("UDMA 3");
  54                case XFER_UDMA_2:       return("UDMA 2");
  55                case XFER_UDMA_1:       return("UDMA 1");
  56                case XFER_UDMA_0:       return("UDMA 0");
  57                case XFER_MW_DMA_2:     return("MW DMA 2");
  58                case XFER_MW_DMA_1:     return("MW DMA 1");
  59                case XFER_MW_DMA_0:     return("MW DMA 0");
  60                case XFER_SW_DMA_2:     return("SW DMA 2");
  61                case XFER_SW_DMA_1:     return("SW DMA 1");
  62                case XFER_SW_DMA_0:     return("SW DMA 0");
  63                case XFER_PIO_4:        return("PIO 4");
  64                case XFER_PIO_3:        return("PIO 3");
  65                case XFER_PIO_2:        return("PIO 2");
  66                case XFER_PIO_1:        return("PIO 1");
  67                case XFER_PIO_0:        return("PIO 0");
  68                case XFER_PIO_SLOW:     return("PIO SLOW");
  69                default:                return("XFER ERROR");
  70        }
  71}
  72
  73EXPORT_SYMBOL(ide_xfer_verbose);
  74
  75/**
  76 *      ide_dma_speed   -       compute DMA speed
  77 *      @drive: drive
  78 *      @mode; intended mode
  79 *
  80 *      Checks the drive capabilities and returns the speed to use
  81 *      for the transfer. Returns -1 if the requested mode is unknown
  82 *      (eg PIO)
  83 */
  84 
  85u8 ide_dma_speed(ide_drive_t *drive, u8 mode)
  86{
  87        struct hd_driveid *id   = drive->id;
  88        ide_hwif_t *hwif        = HWIF(drive);
  89        u8 speed = 0;
  90
  91        if (drive->media != ide_disk && hwif->atapi_dma == 0)
  92                return 0;
  93
  94        switch(mode) {
  95                case 0x04:
  96                        if ((id->dma_ultra & 0x0040) &&
  97                            (id->dma_ultra & hwif->ultra_mask))
  98                                { speed = XFER_UDMA_6; break; }
  99                case 0x03:
 100                        if ((id->dma_ultra & 0x0020) &&
 101                            (id->dma_ultra & hwif->ultra_mask))
 102                                { speed = XFER_UDMA_5; break; }
 103                case 0x02:
 104                        if ((id->dma_ultra & 0x0010) &&
 105                            (id->dma_ultra & hwif->ultra_mask))
 106                                { speed = XFER_UDMA_4; break; }
 107                        if ((id->dma_ultra & 0x0008) &&
 108                            (id->dma_ultra & hwif->ultra_mask))
 109                                { speed = XFER_UDMA_3; break; }
 110                case 0x01:
 111                        if ((id->dma_ultra & 0x0004) &&
 112                            (id->dma_ultra & hwif->ultra_mask))
 113                                { speed = XFER_UDMA_2; break; }
 114                        if ((id->dma_ultra & 0x0002) &&
 115                            (id->dma_ultra & hwif->ultra_mask))
 116                                { speed = XFER_UDMA_1; break; }
 117                        if ((id->dma_ultra & 0x0001) &&
 118                            (id->dma_ultra & hwif->ultra_mask))
 119                                { speed = XFER_UDMA_0; break; }
 120                case 0x00:
 121                        if ((id->dma_mword & 0x0004) &&
 122                            (id->dma_mword & hwif->mwdma_mask))
 123                                { speed = XFER_MW_DMA_2; break; }
 124                        if ((id->dma_mword & 0x0002) &&
 125                            (id->dma_mword & hwif->mwdma_mask))
 126                                { speed = XFER_MW_DMA_1; break; }
 127                        if ((id->dma_mword & 0x0001) &&
 128                            (id->dma_mword & hwif->mwdma_mask))
 129                                { speed = XFER_MW_DMA_0; break; }
 130                        if ((id->dma_1word & 0x0004) &&
 131                            (id->dma_1word & hwif->swdma_mask))
 132                                { speed = XFER_SW_DMA_2; break; }
 133                        if ((id->dma_1word & 0x0002) &&
 134                            (id->dma_1word & hwif->swdma_mask))
 135                                { speed = XFER_SW_DMA_1; break; }
 136                        if ((id->dma_1word & 0x0001) &&
 137                            (id->dma_1word & hwif->swdma_mask))
 138                                { speed = XFER_SW_DMA_0; break; }
 139        }
 140
 141//      printk("%s: %s: mode 0x%02x, speed 0x%02x\n",
 142//              __FUNCTION__, drive->name, mode, speed);
 143
 144        return speed;
 145}
 146
 147EXPORT_SYMBOL(ide_dma_speed);
 148
 149
 150/**
 151 *      ide_rate_filter         -       return best speed for mode
 152 *      @mode: modes available
 153 *      @speed: desired speed
 154 *
 155 *      Given the available DMA/UDMA mode this function returns
 156 *      the best available speed at or below the speed requested.
 157 */
 158
 159u8 ide_rate_filter (u8 mode, u8 speed) 
 160{
 161#ifdef CONFIG_BLK_DEV_IDEDMA
 162        static u8 speed_max[] = {
 163                XFER_MW_DMA_2, XFER_UDMA_2, XFER_UDMA_4,
 164                XFER_UDMA_5, XFER_UDMA_6
 165        };
 166
 167//      printk("%s: mode 0x%02x, speed 0x%02x\n", __FUNCTION__, mode, speed);
 168
 169        /* So that we remember to update this if new modes appear */
 170        if (mode > 4)
 171                BUG();
 172        return min(speed, speed_max[mode]);
 173#else /* !CONFIG_BLK_DEV_IDEDMA */
 174        return min(speed, XFER_PIO_4);
 175#endif /* CONFIG_BLK_DEV_IDEDMA */
 176}
 177
 178EXPORT_SYMBOL(ide_rate_filter);
 179
 180int ide_dma_enable (ide_drive_t *drive)
 181{
 182        ide_hwif_t *hwif        = HWIF(drive);
 183        struct hd_driveid *id   = drive->id;
 184
 185        return ((int)   ((((id->dma_ultra >> 8) & hwif->ultra_mask) ||
 186                          ((id->dma_mword >> 8) & hwif->mwdma_mask) ||
 187                          ((id->dma_1word >> 8) & hwif->swdma_mask)) ? 1 : 0));
 188}
 189
 190EXPORT_SYMBOL(ide_dma_enable);
 191
 192const ide_pio_timings_t ide_pio_timings[6] = {
 193        { 70,   165,    600 },  /* PIO Mode 0 */
 194        { 50,   125,    383 },  /* PIO Mode 1 */
 195        { 30,   100,    240 },  /* PIO Mode 2 */
 196        { 30,   80,     180 },  /* PIO Mode 3 with IORDY */
 197        { 25,   70,     120 },  /* PIO Mode 4 with IORDY */
 198        { 20,   50,     100 }   /* PIO Mode 5 with IORDY (nonstandard) */
 199};
 200
 201EXPORT_SYMBOL_GPL(ide_pio_timings);
 202
 203/*
 204 * Black list. Some drives incorrectly report their maximal PIO mode,
 205 * at least in respect to CMD640. Here we keep info on some known drives.
 206 */
 207static struct ide_pio_info {
 208        const char      *name;
 209        int             pio;
 210} ide_pio_blacklist [] = {
 211/*      { "Conner Peripherals 1275MB - CFS1275A", 4 }, */
 212        { "Conner Peripherals 540MB - CFS540A", 3 },
 213
 214        { "WDC AC2700",  3 },
 215        { "WDC AC2540",  3 },
 216        { "WDC AC2420",  3 },
 217        { "WDC AC2340",  3 },
 218        { "WDC AC2250",  0 },
 219        { "WDC AC2200",  0 },
 220        { "WDC AC21200", 4 },
 221        { "WDC AC2120",  0 },
 222        { "WDC AC2850",  3 },
 223        { "WDC AC1270",  3 },
 224        { "WDC AC1170",  1 },
 225        { "WDC AC1210",  1 },
 226        { "WDC AC280",   0 },
 227/*      { "WDC AC21000", 4 }, */
 228        { "WDC AC31000", 3 },
 229        { "WDC AC31200", 3 },
 230/*      { "WDC AC31600", 4 }, */
 231
 232        { "Maxtor 7131 AT", 1 },
 233        { "Maxtor 7171 AT", 1 },
 234        { "Maxtor 7213 AT", 1 },
 235        { "Maxtor 7245 AT", 1 },
 236        { "Maxtor 7345 AT", 1 },
 237        { "Maxtor 7546 AT", 3 },
 238        { "Maxtor 7540 AV", 3 },
 239
 240        { "SAMSUNG SHD-3121A", 1 },
 241        { "SAMSUNG SHD-3122A", 1 },
 242        { "SAMSUNG SHD-3172A", 1 },
 243
 244/*      { "ST51080A", 4 },
 245 *      { "ST51270A", 4 },
 246 *      { "ST31220A", 4 },
 247 *      { "ST31640A", 4 },
 248 *      { "ST32140A", 4 },
 249 *      { "ST3780A",  4 },
 250 */
 251        { "ST5660A",  3 },
 252        { "ST3660A",  3 },
 253        { "ST3630A",  3 },
 254        { "ST3655A",  3 },
 255        { "ST3391A",  3 },
 256        { "ST3390A",  1 },
 257        { "ST3600A",  1 },
 258        { "ST3290A",  0 },
 259        { "ST3144A",  0 },
 260        { "ST3491A",  1 },      /* reports 3, should be 1 or 2 (depending on */ 
 261                                /* drive) according to Seagates FIND-ATA program */
 262
 263        { "QUANTUM ELS127A", 0 },
 264        { "QUANTUM ELS170A", 0 },
 265        { "QUANTUM LPS240A", 0 },
 266        { "QUANTUM LPS210A", 3 },
 267        { "QUANTUM LPS270A", 3 },
 268        { "QUANTUM LPS365A", 3 },
 269        { "QUANTUM LPS540A", 3 },
 270        { "QUANTUM LIGHTNING 540A", 3 },
 271        { "QUANTUM LIGHTNING 730A", 3 },
 272
 273        { "QUANTUM FIREBALL_540", 3 }, /* Older Quantum Fireballs don't work */
 274        { "QUANTUM FIREBALL_640", 3 }, 
 275        { "QUANTUM FIREBALL_1080", 3 },
 276        { "QUANTUM FIREBALL_1280", 3 },
 277        { NULL, 0 }
 278};
 279
 280/**
 281 *      ide_scan_pio_blacklist  -       check for a blacklisted drive
 282 *      @model: Drive model string
 283 *
 284 *      This routine searches the ide_pio_blacklist for an entry
 285 *      matching the start/whole of the supplied model name.
 286 *
 287 *      Returns -1 if no match found.
 288 *      Otherwise returns the recommended PIO mode from ide_pio_blacklist[].
 289 */
 290
 291static int ide_scan_pio_blacklist (char *model)
 292{
 293        struct ide_pio_info *p;
 294
 295        for (p = ide_pio_blacklist; p->name != NULL; p++) {
 296                if (strncmp(p->name, model, strlen(p->name)) == 0)
 297                        return p->pio;
 298        }
 299        return -1;
 300}
 301
 302/**
 303 *      ide_get_best_pio_mode   -       get PIO mode from drive
 304 *      @driver: drive to consider
 305 *      @mode_wanted: preferred mode
 306 *      @max_mode: highest allowed
 307 *      @d: pio data
 308 *
 309 *      This routine returns the recommended PIO settings for a given drive,
 310 *      based on the drive->id information and the ide_pio_blacklist[].
 311 *      This is used by most chipset support modules when "auto-tuning".
 312 *
 313 *      Drive PIO mode auto selection
 314 */
 315
 316u8 ide_get_best_pio_mode (ide_drive_t *drive, u8 mode_wanted, u8 max_mode, ide_pio_data_t *d)
 317{
 318        int pio_mode;
 319        int cycle_time = 0;
 320        int use_iordy = 0;
 321        struct hd_driveid* id = drive->id;
 322        int overridden  = 0;
 323        int blacklisted = 0;
 324
 325        if (mode_wanted != 255) {
 326                pio_mode = mode_wanted;
 327        } else if (!drive->id) {
 328                pio_mode = 0;
 329        } else if ((pio_mode = ide_scan_pio_blacklist(id->model)) != -1) {
 330                overridden = 1;
 331                blacklisted = 1;
 332                use_iordy = (pio_mode > 2);
 333        } else {
 334                pio_mode = id->tPIO;
 335                if (pio_mode > 2) {     /* 2 is maximum allowed tPIO value */
 336                        pio_mode = 2;
 337                        overridden = 1;
 338                }
 339                if (id->field_valid & 2) {        /* drive implements ATA2? */
 340                        if (id->capability & 8) { /* drive supports use_iordy? */
 341                                use_iordy = 1;
 342                                cycle_time = id->eide_pio_iordy;
 343                                if (id->eide_pio_modes & 7) {
 344                                        overridden = 0;
 345                                        if (id->eide_pio_modes & 4)
 346                                                pio_mode = 5;
 347                                        else if (id->eide_pio_modes & 2)
 348                                                pio_mode = 4;
 349                                        else
 350                                                pio_mode = 3;
 351                                }
 352                        } else {
 353                                cycle_time = id->eide_pio;
 354                        }
 355                }
 356
 357#if 0
 358                if (drive->id->major_rev_num & 0x0004) printk("ATA-2 ");
 359#endif
 360
 361                /*
 362                 * Conservative "downgrade" for all pre-ATA2 drives
 363                 */
 364                if (pio_mode && pio_mode < 4) {
 365                        pio_mode--;
 366                        overridden = 1;
 367#if 0
 368                        use_iordy = (pio_mode > 2);
 369#endif
 370                        if (cycle_time && cycle_time < ide_pio_timings[pio_mode].cycle_time)
 371                                cycle_time = 0; /* use standard timing */
 372                }
 373        }
 374        if (pio_mode > max_mode) {
 375                pio_mode = max_mode;
 376                cycle_time = 0;
 377        }
 378        if (d) {
 379                d->pio_mode = pio_mode;
 380                d->cycle_time = cycle_time ? cycle_time : ide_pio_timings[pio_mode].cycle_time;
 381                d->use_iordy = use_iordy;
 382                d->overridden = overridden;
 383                d->blacklisted = blacklisted;
 384        }
 385        return pio_mode;
 386}
 387
 388EXPORT_SYMBOL_GPL(ide_get_best_pio_mode);
 389
 390/**
 391 *      ide_toggle_bounce       -       handle bounce buffering
 392 *      @drive: drive to update
 393 *      @on: on/off boolean
 394 *
 395 *      Enable or disable bounce buffering for the device. Drives move
 396 *      between PIO and DMA and that changes the rules we need.
 397 */
 398 
 399void ide_toggle_bounce(ide_drive_t *drive, int on)
 400{
 401        u64 addr = BLK_BOUNCE_HIGH;     /* dma64_addr_t */
 402
 403        if (on && drive->media == ide_disk) {
 404                if (!PCI_DMA_BUS_IS_PHYS)
 405                        addr = BLK_BOUNCE_ANY;
 406                else
 407                        addr = HWIF(drive)->pci_dev->dma_mask;
 408        }
 409
 410        blk_queue_bounce_limit(&drive->queue, addr);
 411}
 412
 413EXPORT_SYMBOL(ide_toggle_bounce);
 414
 415
 416/**
 417 *      ide_set_xfer_rate       -       set transfer rate
 418 *      @drive: drive to set
 419 *      @speed: speed to attempt to set
 420 *      
 421 *      General helper for setting the speed of an IDE device. This
 422 *      function knows about user enforced limits from the configuration
 423 *      which speedproc() does not.  High level drivers should never
 424 *      invoke speedproc() directly.
 425 */
 426 
 427int ide_set_xfer_rate(ide_drive_t *drive, u8 rate)
 428{
 429#ifndef CONFIG_BLK_DEV_IDEDMA
 430        rate = min(rate, (u8) XFER_PIO_4);
 431#endif
 432        if(HWIF(drive)->speedproc)
 433                return HWIF(drive)->speedproc(drive, rate);
 434        else
 435                return -1;
 436}
 437
 438EXPORT_SYMBOL_GPL(ide_set_xfer_rate);
 439
 440
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