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1
/*
2
 * QEMU Floppy disk emulator (Intel 82078)
3
 *
4
 * Copyright (c) 2003, 2007 Jocelyn Mayer
5
 *
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 * Permission is hereby granted, free of charge, to any person obtaining a copy
7
 * of this software and associated documentation files (the "Software"), to deal
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 * in the Software without restriction, including without limitation the rights
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 * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
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 * copies of the Software, and to permit persons to whom the Software is
11
 * furnished to do so, subject to the following conditions:
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 *
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 * The above copyright notice and this permission notice shall be included in
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 * all copies or substantial portions of the Software.
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 *
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 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
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 * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
20
 * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
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 * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
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 * THE SOFTWARE.
23
 */
24
/*
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 * The controller is used in Sun4m systems in a slightly different
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 * way. There are changes in DOR register and DMA is not available.
27
 */
28
#include "hw.h"
29
#include "fdc.h"
30
#include "block.h"
31
#include "qemu-timer.h"
32
#include "isa.h"
33

    
34
/********************************************************/
35
/* debug Floppy devices */
36
//#define DEBUG_FLOPPY
37

    
38
#ifdef DEBUG_FLOPPY
39
#define FLOPPY_DPRINTF(fmt, args...) \
40
do { printf("FLOPPY: " fmt , ##args); } while (0)
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#else
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#define FLOPPY_DPRINTF(fmt, args...)
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#endif
44

    
45
#define FLOPPY_ERROR(fmt, args...) \
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do { printf("FLOPPY ERROR: %s: " fmt, __func__ , ##args); } while (0)
47

    
48
/********************************************************/
49
/* Floppy drive emulation                               */
50

    
51
/* Will always be a fixed parameter for us */
52
#define FD_SECTOR_LEN 512
53
#define FD_SECTOR_SC  2   /* Sector size code */
54

    
55
/* Floppy disk drive emulation */
56
typedef enum fdisk_type_t {
57
    FDRIVE_DISK_288   = 0x01, /* 2.88 MB disk           */
58
    FDRIVE_DISK_144   = 0x02, /* 1.44 MB disk           */
59
    FDRIVE_DISK_720   = 0x03, /* 720 kB disk            */
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    FDRIVE_DISK_USER  = 0x04, /* User defined geometry  */
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    FDRIVE_DISK_NONE  = 0x05, /* No disk                */
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} fdisk_type_t;
63

    
64
typedef enum fdrive_type_t {
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    FDRIVE_DRV_144  = 0x00,   /* 1.44 MB 3"5 drive      */
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    FDRIVE_DRV_288  = 0x01,   /* 2.88 MB 3"5 drive      */
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    FDRIVE_DRV_120  = 0x02,   /* 1.2  MB 5"25 drive     */
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    FDRIVE_DRV_NONE = 0x03,   /* No drive connected     */
69
} fdrive_type_t;
70

    
71
typedef enum fdrive_flags_t {
72
    FDRIVE_MOTOR_ON   = 0x01, /* motor on/off           */
73
} fdrive_flags_t;
74

    
75
typedef enum fdisk_flags_t {
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    FDISK_DBL_SIDES  = 0x01,
77
} fdisk_flags_t;
78

    
79
typedef struct fdrive_t {
80
    BlockDriverState *bs;
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    /* Drive status */
82
    fdrive_type_t drive;
83
    fdrive_flags_t drflags;
84
    uint8_t perpendicular;    /* 2.88 MB access mode    */
85
    /* Position */
86
    uint8_t head;
87
    uint8_t track;
88
    uint8_t sect;
89
    /* Last operation status */
90
    uint8_t dir;              /* Direction              */
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    uint8_t rw;               /* Read/write             */
92
    /* Media */
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    fdisk_flags_t flags;
94
    uint8_t last_sect;        /* Nb sector per track    */
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    uint8_t max_track;        /* Nb of tracks           */
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    uint16_t bps;             /* Bytes per sector       */
97
    uint8_t ro;               /* Is read-only           */
98
} fdrive_t;
99

    
100
static void fd_init (fdrive_t *drv, BlockDriverState *bs)
101
{
102
    /* Drive */
103
    drv->bs = bs;
104
    drv->drive = FDRIVE_DRV_NONE;
105
    drv->drflags = 0;
106
    drv->perpendicular = 0;
107
    /* Disk */
108
    drv->last_sect = 0;
109
    drv->max_track = 0;
110
}
111

    
112
static int _fd_sector (uint8_t head, uint8_t track,
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                       uint8_t sect, uint8_t last_sect)
114
{
115
    return (((track * 2) + head) * last_sect) + sect - 1;
116
}
117

    
118
/* Returns current position, in sectors, for given drive */
119
static int fd_sector (fdrive_t *drv)
120
{
121
    return _fd_sector(drv->head, drv->track, drv->sect, drv->last_sect);
122
}
123

    
124
static int fd_seek (fdrive_t *drv, uint8_t head, uint8_t track, uint8_t sect,
125
                    int enable_seek)
126
{
127
    uint32_t sector;
128
    int ret;
129

    
130
    if (track > drv->max_track ||
131
        (head != 0 && (drv->flags & FDISK_DBL_SIDES) == 0)) {
132
        FLOPPY_DPRINTF("try to read %d %02x %02x (max=%d %d %02x %02x)\n",
133
                       head, track, sect, 1,
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                       (drv->flags & FDISK_DBL_SIDES) == 0 ? 0 : 1,
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                       drv->max_track, drv->last_sect);
136
        return 2;
137
    }
138
    if (sect > drv->last_sect) {
139
        FLOPPY_DPRINTF("try to read %d %02x %02x (max=%d %d %02x %02x)\n",
140
                       head, track, sect, 1,
141
                       (drv->flags & FDISK_DBL_SIDES) == 0 ? 0 : 1,
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                       drv->max_track, drv->last_sect);
143
        return 3;
144
    }
145
    sector = _fd_sector(head, track, sect, drv->last_sect);
146
    ret = 0;
147
    if (sector != fd_sector(drv)) {
148
#if 0
149
        if (!enable_seek) {
150
            FLOPPY_ERROR("no implicit seek %d %02x %02x (max=%d %02x %02x)\n",
151
                         head, track, sect, 1, drv->max_track, drv->last_sect);
152
            return 4;
153
        }
154
#endif
155
        drv->head = head;
156
        if (drv->track != track)
157
            ret = 1;
158
        drv->track = track;
159
        drv->sect = sect;
160
    }
161

    
162
    return ret;
163
}
164

    
165
/* Set drive back to track 0 */
166
static void fd_recalibrate (fdrive_t *drv)
167
{
168
    FLOPPY_DPRINTF("recalibrate\n");
169
    drv->head = 0;
170
    drv->track = 0;
171
    drv->sect = 1;
172
    drv->dir = 1;
173
    drv->rw = 0;
174
}
175

    
176
/* Recognize floppy formats */
177
typedef struct fd_format_t {
178
    fdrive_type_t drive;
179
    fdisk_type_t  disk;
180
    uint8_t last_sect;
181
    uint8_t max_track;
182
    uint8_t max_head;
183
    const char *str;
184
} fd_format_t;
185

    
186
static const fd_format_t fd_formats[] = {
187
    /* First entry is default format */
188
    /* 1.44 MB 3"1/2 floppy disks */
189
    { FDRIVE_DRV_144, FDRIVE_DISK_144, 18, 80, 1, "1.44 MB 3\"1/2", },
190
    { FDRIVE_DRV_144, FDRIVE_DISK_144, 20, 80, 1,  "1.6 MB 3\"1/2", },
191
    { FDRIVE_DRV_144, FDRIVE_DISK_144, 21, 80, 1, "1.68 MB 3\"1/2", },
192
    { FDRIVE_DRV_144, FDRIVE_DISK_144, 21, 82, 1, "1.72 MB 3\"1/2", },
193
    { FDRIVE_DRV_144, FDRIVE_DISK_144, 21, 83, 1, "1.74 MB 3\"1/2", },
194
    { FDRIVE_DRV_144, FDRIVE_DISK_144, 22, 80, 1, "1.76 MB 3\"1/2", },
195
    { FDRIVE_DRV_144, FDRIVE_DISK_144, 23, 80, 1, "1.84 MB 3\"1/2", },
196
    { FDRIVE_DRV_144, FDRIVE_DISK_144, 24, 80, 1, "1.92 MB 3\"1/2", },
197
    /* 2.88 MB 3"1/2 floppy disks */
198
    { FDRIVE_DRV_288, FDRIVE_DISK_288, 36, 80, 1, "2.88 MB 3\"1/2", },
199
    { FDRIVE_DRV_288, FDRIVE_DISK_288, 39, 80, 1, "3.12 MB 3\"1/2", },
200
    { FDRIVE_DRV_288, FDRIVE_DISK_288, 40, 80, 1,  "3.2 MB 3\"1/2", },
201
    { FDRIVE_DRV_288, FDRIVE_DISK_288, 44, 80, 1, "3.52 MB 3\"1/2", },
202
    { FDRIVE_DRV_288, FDRIVE_DISK_288, 48, 80, 1, "3.84 MB 3\"1/2", },
203
    /* 720 kB 3"1/2 floppy disks */
204
    { FDRIVE_DRV_144, FDRIVE_DISK_720,  9, 80, 1,  "720 kB 3\"1/2", },
205
    { FDRIVE_DRV_144, FDRIVE_DISK_720, 10, 80, 1,  "800 kB 3\"1/2", },
206
    { FDRIVE_DRV_144, FDRIVE_DISK_720, 10, 82, 1,  "820 kB 3\"1/2", },
207
    { FDRIVE_DRV_144, FDRIVE_DISK_720, 10, 83, 1,  "830 kB 3\"1/2", },
208
    { FDRIVE_DRV_144, FDRIVE_DISK_720, 13, 80, 1, "1.04 MB 3\"1/2", },
209
    { FDRIVE_DRV_144, FDRIVE_DISK_720, 14, 80, 1, "1.12 MB 3\"1/2", },
210
    /* 1.2 MB 5"1/4 floppy disks */
211
    { FDRIVE_DRV_120, FDRIVE_DISK_288, 15, 80, 1,  "1.2 kB 5\"1/4", },
212
    { FDRIVE_DRV_120, FDRIVE_DISK_288, 18, 80, 1, "1.44 MB 5\"1/4", },
213
    { FDRIVE_DRV_120, FDRIVE_DISK_288, 18, 82, 1, "1.48 MB 5\"1/4", },
214
    { FDRIVE_DRV_120, FDRIVE_DISK_288, 18, 83, 1, "1.49 MB 5\"1/4", },
215
    { FDRIVE_DRV_120, FDRIVE_DISK_288, 20, 80, 1,  "1.6 MB 5\"1/4", },
216
    /* 720 kB 5"1/4 floppy disks */
217
    { FDRIVE_DRV_120, FDRIVE_DISK_288,  9, 80, 1,  "720 kB 5\"1/4", },
218
    { FDRIVE_DRV_120, FDRIVE_DISK_288, 11, 80, 1,  "880 kB 5\"1/4", },
219
    /* 360 kB 5"1/4 floppy disks */
220
    { FDRIVE_DRV_120, FDRIVE_DISK_288,  9, 40, 1,  "360 kB 5\"1/4", },
221
    { FDRIVE_DRV_120, FDRIVE_DISK_288,  9, 40, 0,  "180 kB 5\"1/4", },
222
    { FDRIVE_DRV_120, FDRIVE_DISK_288, 10, 41, 1,  "410 kB 5\"1/4", },
223
    { FDRIVE_DRV_120, FDRIVE_DISK_288, 10, 42, 1,  "420 kB 5\"1/4", },
224
    /* 320 kB 5"1/4 floppy disks */
225
    { FDRIVE_DRV_120, FDRIVE_DISK_288,  8, 40, 1,  "320 kB 5\"1/4", },
226
    { FDRIVE_DRV_120, FDRIVE_DISK_288,  8, 40, 0,  "160 kB 5\"1/4", },
227
    /* 360 kB must match 5"1/4 better than 3"1/2... */
228
    { FDRIVE_DRV_144, FDRIVE_DISK_720,  9, 80, 0,  "360 kB 3\"1/2", },
229
    /* end */
230
    { FDRIVE_DRV_NONE, FDRIVE_DISK_NONE, -1, -1, 0, NULL, },
231
};
232

    
233
/* Revalidate a disk drive after a disk change */
234
static void fd_revalidate (fdrive_t *drv)
235
{
236
    const fd_format_t *parse;
237
    uint64_t nb_sectors, size;
238
    int i, first_match, match;
239
    int nb_heads, max_track, last_sect, ro;
240

    
241
    FLOPPY_DPRINTF("revalidate\n");
242
    if (drv->bs != NULL && bdrv_is_inserted(drv->bs)) {
243
        ro = bdrv_is_read_only(drv->bs);
244
        bdrv_get_geometry_hint(drv->bs, &nb_heads, &max_track, &last_sect);
245
        if (nb_heads != 0 && max_track != 0 && last_sect != 0) {
246
            FLOPPY_DPRINTF("User defined disk (%d %d %d)",
247
                           nb_heads - 1, max_track, last_sect);
248
        } else {
249
            bdrv_get_geometry(drv->bs, &nb_sectors);
250
            match = -1;
251
            first_match = -1;
252
            for (i = 0;; i++) {
253
                parse = &fd_formats[i];
254
                if (parse->drive == FDRIVE_DRV_NONE)
255
                    break;
256
                if (drv->drive == parse->drive ||
257
                    drv->drive == FDRIVE_DRV_NONE) {
258
                    size = (parse->max_head + 1) * parse->max_track *
259
                        parse->last_sect;
260
                    if (nb_sectors == size) {
261
                        match = i;
262
                        break;
263
                    }
264
                    if (first_match == -1)
265
                        first_match = i;
266
                }
267
            }
268
            if (match == -1) {
269
                if (first_match == -1)
270
                    match = 1;
271
                else
272
                    match = first_match;
273
                parse = &fd_formats[match];
274
            }
275
            nb_heads = parse->max_head + 1;
276
            max_track = parse->max_track;
277
            last_sect = parse->last_sect;
278
            drv->drive = parse->drive;
279
            FLOPPY_DPRINTF("%s floppy disk (%d h %d t %d s) %s\n", parse->str,
280
                           nb_heads, max_track, last_sect, ro ? "ro" : "rw");
281
        }
282
        if (nb_heads == 1) {
283
            drv->flags &= ~FDISK_DBL_SIDES;
284
        } else {
285
            drv->flags |= FDISK_DBL_SIDES;
286
        }
287
        drv->max_track = max_track;
288
        drv->last_sect = last_sect;
289
        drv->ro = ro;
290
    } else {
291
        FLOPPY_DPRINTF("No disk in drive\n");
292
        drv->last_sect = 0;
293
        drv->max_track = 0;
294
        drv->flags &= ~FDISK_DBL_SIDES;
295
    }
296
}
297

    
298
/* Motor control */
299
static void fd_start (fdrive_t *drv)
300
{
301
    drv->drflags |= FDRIVE_MOTOR_ON;
302
}
303

    
304
static void fd_stop (fdrive_t *drv)
305
{
306
    drv->drflags &= ~FDRIVE_MOTOR_ON;
307
}
308

    
309
/* Re-initialise a drives (motor off, repositioned) */
310
static void fd_reset (fdrive_t *drv)
311
{
312
    fd_stop(drv);
313
    fd_recalibrate(drv);
314
}
315

    
316
/********************************************************/
317
/* Intel 82078 floppy disk controller emulation          */
318

    
319
static void fdctrl_reset (fdctrl_t *fdctrl, int do_irq);
320
static void fdctrl_reset_fifo (fdctrl_t *fdctrl);
321
static int fdctrl_transfer_handler (void *opaque, int nchan,
322
                                    int dma_pos, int dma_len);
323
static void fdctrl_raise_irq (fdctrl_t *fdctrl, uint8_t status);
324
static void fdctrl_result_timer(void *opaque);
325

    
326
static uint32_t fdctrl_read_statusB (fdctrl_t *fdctrl);
327
static uint32_t fdctrl_read_dor (fdctrl_t *fdctrl);
328
static void fdctrl_write_dor (fdctrl_t *fdctrl, uint32_t value);
329
static uint32_t fdctrl_read_tape (fdctrl_t *fdctrl);
330
static void fdctrl_write_tape (fdctrl_t *fdctrl, uint32_t value);
331
static uint32_t fdctrl_read_main_status (fdctrl_t *fdctrl);
332
static void fdctrl_write_rate (fdctrl_t *fdctrl, uint32_t value);
333
static uint32_t fdctrl_read_data (fdctrl_t *fdctrl);
334
static void fdctrl_write_data (fdctrl_t *fdctrl, uint32_t value);
335
static uint32_t fdctrl_read_dir (fdctrl_t *fdctrl);
336

    
337
enum {
338
    FD_CTRL_ACTIVE = 0x01, /* XXX: suppress that */
339
    FD_CTRL_RESET  = 0x02,
340
    FD_CTRL_SLEEP  = 0x04, /* XXX: suppress that */
341
    FD_CTRL_BUSY   = 0x08, /* dma transfer in progress */
342
    FD_CTRL_INTR   = 0x10,
343
};
344

    
345
enum {
346
    FD_DIR_WRITE   = 0,
347
    FD_DIR_READ    = 1,
348
    FD_DIR_SCANE   = 2,
349
    FD_DIR_SCANL   = 3,
350
    FD_DIR_SCANH   = 4,
351
};
352

    
353
enum {
354
    FD_STATE_CMD    = 0x00,
355
    FD_STATE_STATUS = 0x01,
356
    FD_STATE_DATA   = 0x02,
357
    FD_STATE_STATE  = 0x03,
358
    FD_STATE_MULTI  = 0x10,
359
    FD_STATE_SEEK   = 0x20,
360
    FD_STATE_FORMAT = 0x40,
361
};
362

    
363
#define FD_STATE(state) ((state) & FD_STATE_STATE)
364
#define FD_SET_STATE(state, new_state) \
365
do { (state) = ((state) & ~FD_STATE_STATE) | (new_state); } while (0)
366
#define FD_MULTI_TRACK(state) ((state) & FD_STATE_MULTI)
367
#define FD_DID_SEEK(state) ((state) & FD_STATE_SEEK)
368
#define FD_FORMAT_CMD(state) ((state) & FD_STATE_FORMAT)
369

    
370
struct fdctrl_t {
371
    fdctrl_t *fdctrl;
372
    /* Controller's identification */
373
    uint8_t version;
374
    /* HW */
375
    qemu_irq irq;
376
    int dma_chann;
377
    target_phys_addr_t io_base;
378
    /* Controller state */
379
    QEMUTimer *result_timer;
380
    uint8_t state;
381
    uint8_t dma_en;
382
    uint8_t cur_drv;
383
    uint8_t bootsel;
384
    /* Command FIFO */
385
    uint8_t *fifo;
386
    uint32_t data_pos;
387
    uint32_t data_len;
388
    uint8_t data_state;
389
    uint8_t data_dir;
390
    uint8_t int_status;
391
    uint8_t eot; /* last wanted sector */
392
    /* States kept only to be returned back */
393
    /* Timers state */
394
    uint8_t timer0;
395
    uint8_t timer1;
396
    /* precompensation */
397
    uint8_t precomp_trk;
398
    uint8_t config;
399
    uint8_t lock;
400
    /* Power down config (also with status regB access mode */
401
    uint8_t pwrd;
402
    /* Sun4m quirks? */
403
    int sun4m;
404
    /* Floppy drives */
405
    fdrive_t drives[2];
406
};
407

    
408
static uint32_t fdctrl_read (void *opaque, uint32_t reg)
409
{
410
    fdctrl_t *fdctrl = opaque;
411
    uint32_t retval;
412

    
413
    switch (reg & 0x07) {
414
    case 0x00:
415
        if (fdctrl->sun4m) {
416
            // Identify to Linux as S82078B
417
            retval = fdctrl_read_statusB(fdctrl);
418
        } else {
419
            retval = (uint32_t)(-1);
420
        }
421
        break;
422
    case 0x01:
423
        retval = fdctrl_read_statusB(fdctrl);
424
        break;
425
    case 0x02:
426
        retval = fdctrl_read_dor(fdctrl);
427
        break;
428
    case 0x03:
429
        retval = fdctrl_read_tape(fdctrl);
430
        break;
431
    case 0x04:
432
        retval = fdctrl_read_main_status(fdctrl);
433
        break;
434
    case 0x05:
435
        retval = fdctrl_read_data(fdctrl);
436
        break;
437
    case 0x07:
438
        retval = fdctrl_read_dir(fdctrl);
439
        break;
440
    default:
441
        retval = (uint32_t)(-1);
442
        break;
443
    }
444
    FLOPPY_DPRINTF("read reg%d: 0x%02x\n", reg & 7, retval);
445

    
446
    return retval;
447
}
448

    
449
static void fdctrl_write (void *opaque, uint32_t reg, uint32_t value)
450
{
451
    fdctrl_t *fdctrl = opaque;
452

    
453
    FLOPPY_DPRINTF("write reg%d: 0x%02x\n", reg & 7, value);
454

    
455
    switch (reg & 0x07) {
456
    case 0x02:
457
        fdctrl_write_dor(fdctrl, value);
458
        break;
459
    case 0x03:
460
        fdctrl_write_tape(fdctrl, value);
461
        break;
462
    case 0x04:
463
        fdctrl_write_rate(fdctrl, value);
464
        break;
465
    case 0x05:
466
        fdctrl_write_data(fdctrl, value);
467
        break;
468
    default:
469
        break;
470
    }
471
}
472

    
473
static uint32_t fdctrl_read_mem (void *opaque, target_phys_addr_t reg)
474
{
475
    return fdctrl_read(opaque, (uint32_t)reg);
476
}
477

    
478
static void fdctrl_write_mem (void *opaque,
479
                              target_phys_addr_t reg, uint32_t value)
480
{
481
    fdctrl_write(opaque, (uint32_t)reg, value);
482
}
483

    
484
static CPUReadMemoryFunc *fdctrl_mem_read[3] = {
485
    fdctrl_read_mem,
486
    fdctrl_read_mem,
487
    fdctrl_read_mem,
488
};
489

    
490
static CPUWriteMemoryFunc *fdctrl_mem_write[3] = {
491
    fdctrl_write_mem,
492
    fdctrl_write_mem,
493
    fdctrl_write_mem,
494
};
495

    
496
static void fd_save (QEMUFile *f, fdrive_t *fd)
497
{
498
    uint8_t tmp;
499

    
500
    tmp = fd->drflags;
501
    qemu_put_8s(f, &tmp);
502
    qemu_put_8s(f, &fd->head);
503
    qemu_put_8s(f, &fd->track);
504
    qemu_put_8s(f, &fd->sect);
505
    qemu_put_8s(f, &fd->dir);
506
    qemu_put_8s(f, &fd->rw);
507
}
508

    
509
static void fdc_save (QEMUFile *f, void *opaque)
510
{
511
    fdctrl_t *s = opaque;
512

    
513
    qemu_put_8s(f, &s->state);
514
    qemu_put_8s(f, &s->dma_en);
515
    qemu_put_8s(f, &s->cur_drv);
516
    qemu_put_8s(f, &s->bootsel);
517
    qemu_put_buffer(f, s->fifo, FD_SECTOR_LEN);
518
    qemu_put_be32s(f, &s->data_pos);
519
    qemu_put_be32s(f, &s->data_len);
520
    qemu_put_8s(f, &s->data_state);
521
    qemu_put_8s(f, &s->data_dir);
522
    qemu_put_8s(f, &s->int_status);
523
    qemu_put_8s(f, &s->eot);
524
    qemu_put_8s(f, &s->timer0);
525
    qemu_put_8s(f, &s->timer1);
526
    qemu_put_8s(f, &s->precomp_trk);
527
    qemu_put_8s(f, &s->config);
528
    qemu_put_8s(f, &s->lock);
529
    qemu_put_8s(f, &s->pwrd);
530
    fd_save(f, &s->drives[0]);
531
    fd_save(f, &s->drives[1]);
532
}
533

    
534
static int fd_load (QEMUFile *f, fdrive_t *fd)
535
{
536
    uint8_t tmp;
537

    
538
    qemu_get_8s(f, &tmp);
539
    fd->drflags = tmp;
540
    qemu_get_8s(f, &fd->head);
541
    qemu_get_8s(f, &fd->track);
542
    qemu_get_8s(f, &fd->sect);
543
    qemu_get_8s(f, &fd->dir);
544
    qemu_get_8s(f, &fd->rw);
545

    
546
    return 0;
547
}
548

    
549
static int fdc_load (QEMUFile *f, void *opaque, int version_id)
550
{
551
    fdctrl_t *s = opaque;
552
    int ret;
553

    
554
    if (version_id != 1)
555
        return -EINVAL;
556

    
557
    qemu_get_8s(f, &s->state);
558
    qemu_get_8s(f, &s->dma_en);
559
    qemu_get_8s(f, &s->cur_drv);
560
    qemu_get_8s(f, &s->bootsel);
561
    qemu_get_buffer(f, s->fifo, FD_SECTOR_LEN);
562
    qemu_get_be32s(f, &s->data_pos);
563
    qemu_get_be32s(f, &s->data_len);
564
    qemu_get_8s(f, &s->data_state);
565
    qemu_get_8s(f, &s->data_dir);
566
    qemu_get_8s(f, &s->int_status);
567
    qemu_get_8s(f, &s->eot);
568
    qemu_get_8s(f, &s->timer0);
569
    qemu_get_8s(f, &s->timer1);
570
    qemu_get_8s(f, &s->precomp_trk);
571
    qemu_get_8s(f, &s->config);
572
    qemu_get_8s(f, &s->lock);
573
    qemu_get_8s(f, &s->pwrd);
574

    
575
    ret = fd_load(f, &s->drives[0]);
576
    if (ret == 0)
577
        ret = fd_load(f, &s->drives[1]);
578

    
579
    return ret;
580
}
581

    
582
static void fdctrl_external_reset(void *opaque)
583
{
584
    fdctrl_t *s = opaque;
585

    
586
    fdctrl_reset(s, 0);
587
}
588

    
589
fdctrl_t *fdctrl_init (qemu_irq irq, int dma_chann, int mem_mapped,
590
                       target_phys_addr_t io_base,
591
                       BlockDriverState **fds)
592
{
593
    fdctrl_t *fdctrl;
594
    int io_mem;
595
    int i;
596

    
597
    FLOPPY_DPRINTF("init controller\n");
598
    fdctrl = qemu_mallocz(sizeof(fdctrl_t));
599
    if (!fdctrl)
600
        return NULL;
601
    fdctrl->fifo = qemu_memalign(512, FD_SECTOR_LEN);
602
    if (fdctrl->fifo == NULL) {
603
        qemu_free(fdctrl);
604
        return NULL;
605
    }
606
    fdctrl->result_timer = qemu_new_timer(vm_clock,
607
                                          fdctrl_result_timer, fdctrl);
608

    
609
    fdctrl->version = 0x90; /* Intel 82078 controller */
610
    fdctrl->irq = irq;
611
    fdctrl->dma_chann = dma_chann;
612
    fdctrl->io_base = io_base;
613
    fdctrl->config = 0x60; /* Implicit seek, polling & FIFO enabled */
614
    fdctrl->sun4m = 0;
615
    if (fdctrl->dma_chann != -1) {
616
        fdctrl->dma_en = 1;
617
        DMA_register_channel(dma_chann, &fdctrl_transfer_handler, fdctrl);
618
    } else {
619
        fdctrl->dma_en = 0;
620
    }
621
    for (i = 0; i < 2; i++) {
622
        fd_init(&fdctrl->drives[i], fds[i]);
623
    }
624
    fdctrl_reset(fdctrl, 0);
625
    fdctrl->state = FD_CTRL_ACTIVE;
626
    if (mem_mapped) {
627
        io_mem = cpu_register_io_memory(0, fdctrl_mem_read, fdctrl_mem_write,
628
                                        fdctrl);
629
        cpu_register_physical_memory(io_base, 0x08, io_mem);
630
    } else {
631
        register_ioport_read((uint32_t)io_base + 0x01, 5, 1, &fdctrl_read,
632
                             fdctrl);
633
        register_ioport_read((uint32_t)io_base + 0x07, 1, 1, &fdctrl_read,
634
                             fdctrl);
635
        register_ioport_write((uint32_t)io_base + 0x01, 5, 1, &fdctrl_write,
636
                              fdctrl);
637
        register_ioport_write((uint32_t)io_base + 0x07, 1, 1, &fdctrl_write,
638
                              fdctrl);
639
    }
640
    register_savevm("fdc", io_base, 1, fdc_save, fdc_load, fdctrl);
641
    qemu_register_reset(fdctrl_external_reset, fdctrl);
642
    for (i = 0; i < 2; i++) {
643
        fd_revalidate(&fdctrl->drives[i]);
644
    }
645

    
646
    return fdctrl;
647
}
648

    
649
fdctrl_t *sun4m_fdctrl_init (qemu_irq irq, target_phys_addr_t io_base,
650
                             BlockDriverState **fds)
651
{
652
    fdctrl_t *fdctrl;
653

    
654
    fdctrl = fdctrl_init(irq, 0, 1, io_base, fds);
655
    fdctrl->sun4m = 1;
656

    
657
    return fdctrl;
658
}
659

    
660
/* XXX: may change if moved to bdrv */
661
int fdctrl_get_drive_type(fdctrl_t *fdctrl, int drive_num)
662
{
663
    return fdctrl->drives[drive_num].drive;
664
}
665

    
666
/* Change IRQ state */
667
static void fdctrl_reset_irq (fdctrl_t *fdctrl)
668
{
669
    FLOPPY_DPRINTF("Reset interrupt\n");
670
    qemu_set_irq(fdctrl->irq, 0);
671
    fdctrl->state &= ~FD_CTRL_INTR;
672
}
673

    
674
static void fdctrl_raise_irq (fdctrl_t *fdctrl, uint8_t status)
675
{
676
    // Sparc mutation
677
    if (fdctrl->sun4m && !fdctrl->dma_en) {
678
        fdctrl->state &= ~FD_CTRL_BUSY;
679
        fdctrl->int_status = status;
680
        return;
681
    }
682
    if (~(fdctrl->state & FD_CTRL_INTR)) {
683
        qemu_set_irq(fdctrl->irq, 1);
684
        fdctrl->state |= FD_CTRL_INTR;
685
    }
686
    FLOPPY_DPRINTF("Set interrupt status to 0x%02x\n", status);
687
    fdctrl->int_status = status;
688
}
689

    
690
/* Reset controller */
691
static void fdctrl_reset (fdctrl_t *fdctrl, int do_irq)
692
{
693
    int i;
694

    
695
    FLOPPY_DPRINTF("reset controller\n");
696
    fdctrl_reset_irq(fdctrl);
697
    /* Initialise controller */
698
    fdctrl->cur_drv = 0;
699
    /* FIFO state */
700
    fdctrl->data_pos = 0;
701
    fdctrl->data_len = 0;
702
    fdctrl->data_state = FD_STATE_CMD;
703
    fdctrl->data_dir = FD_DIR_WRITE;
704
    for (i = 0; i < MAX_FD; i++)
705
        fd_reset(&fdctrl->drives[i]);
706
    fdctrl_reset_fifo(fdctrl);
707
    if (do_irq)
708
        fdctrl_raise_irq(fdctrl, 0xc0);
709
}
710

    
711
static inline fdrive_t *drv0 (fdctrl_t *fdctrl)
712
{
713
    return &fdctrl->drives[fdctrl->bootsel];
714
}
715

    
716
static inline fdrive_t *drv1 (fdctrl_t *fdctrl)
717
{
718
    return &fdctrl->drives[1 - fdctrl->bootsel];
719
}
720

    
721
static fdrive_t *get_cur_drv (fdctrl_t *fdctrl)
722
{
723
    return fdctrl->cur_drv == 0 ? drv0(fdctrl) : drv1(fdctrl);
724
}
725

    
726
/* Status B register : 0x01 (read-only) */
727
static uint32_t fdctrl_read_statusB (fdctrl_t *fdctrl)
728
{
729
    FLOPPY_DPRINTF("status register: 0x00\n");
730
    return 0;
731
}
732

    
733
/* Digital output register : 0x02 */
734
static uint32_t fdctrl_read_dor (fdctrl_t *fdctrl)
735
{
736
    uint32_t retval = 0;
737

    
738
    /* Drive motors state indicators */
739
    if (drv0(fdctrl)->drflags & FDRIVE_MOTOR_ON)
740
        retval |= 1 << 5;
741
    if (drv1(fdctrl)->drflags & FDRIVE_MOTOR_ON)
742
        retval |= 1 << 4;
743
    /* DMA enable */
744
    retval |= fdctrl->dma_en << 3;
745
    /* Reset indicator */
746
    retval |= (fdctrl->state & FD_CTRL_RESET) == 0 ? 0x04 : 0;
747
    /* Selected drive */
748
    retval |= fdctrl->cur_drv;
749
    FLOPPY_DPRINTF("digital output register: 0x%02x\n", retval);
750

    
751
    return retval;
752
}
753

    
754
static void fdctrl_write_dor (fdctrl_t *fdctrl, uint32_t value)
755
{
756
    /* Reset mode */
757
    if (fdctrl->state & FD_CTRL_RESET) {
758
        if (!(value & 0x04)) {
759
            FLOPPY_DPRINTF("Floppy controller in RESET state !\n");
760
            return;
761
        }
762
    }
763
    FLOPPY_DPRINTF("digital output register set to 0x%02x\n", value);
764
    /* Drive motors state indicators */
765
    if (value & 0x20)
766
        fd_start(drv1(fdctrl));
767
    else
768
        fd_stop(drv1(fdctrl));
769
    if (value & 0x10)
770
        fd_start(drv0(fdctrl));
771
    else
772
        fd_stop(drv0(fdctrl));
773
    /* DMA enable */
774
#if 0
775
    if (fdctrl->dma_chann != -1)
776
        fdctrl->dma_en = 1 - ((value >> 3) & 1);
777
#endif
778
    /* Reset */
779
    if (!(value & 0x04)) {
780
        if (!(fdctrl->state & FD_CTRL_RESET)) {
781
            FLOPPY_DPRINTF("controller enter RESET state\n");
782
            fdctrl->state |= FD_CTRL_RESET;
783
        }
784
    } else {
785
        if (fdctrl->state & FD_CTRL_RESET) {
786
            FLOPPY_DPRINTF("controller out of RESET state\n");
787
            fdctrl_reset(fdctrl, 1);
788
            fdctrl->state &= ~(FD_CTRL_RESET | FD_CTRL_SLEEP);
789
        }
790
    }
791
    /* Selected drive */
792
    fdctrl->cur_drv = value & 1;
793
}
794

    
795
/* Tape drive register : 0x03 */
796
static uint32_t fdctrl_read_tape (fdctrl_t *fdctrl)
797
{
798
    uint32_t retval = 0;
799

    
800
    /* Disk boot selection indicator */
801
    retval |= fdctrl->bootsel << 2;
802
    /* Tape indicators: never allowed */
803
    FLOPPY_DPRINTF("tape drive register: 0x%02x\n", retval);
804

    
805
    return retval;
806
}
807

    
808
static void fdctrl_write_tape (fdctrl_t *fdctrl, uint32_t value)
809
{
810
    /* Reset mode */
811
    if (fdctrl->state & FD_CTRL_RESET) {
812
        FLOPPY_DPRINTF("Floppy controller in RESET state !\n");
813
        return;
814
    }
815
    FLOPPY_DPRINTF("tape drive register set to 0x%02x\n", value);
816
    /* Disk boot selection indicator */
817
    fdctrl->bootsel = (value >> 2) & 1;
818
    /* Tape indicators: never allow */
819
}
820

    
821
/* Main status register : 0x04 (read) */
822
static uint32_t fdctrl_read_main_status (fdctrl_t *fdctrl)
823
{
824
    uint32_t retval = 0;
825

    
826
    fdctrl->state &= ~(FD_CTRL_SLEEP | FD_CTRL_RESET);
827
    if (!(fdctrl->state & FD_CTRL_BUSY)) {
828
        /* Data transfer allowed */
829
        retval |= 0x80;
830
        /* Data transfer direction indicator */
831
        if (fdctrl->data_dir == FD_DIR_READ)
832
            retval |= 0x40;
833
    }
834
    /* Should handle 0x20 for SPECIFY command */
835
    /* Command busy indicator */
836
    if (FD_STATE(fdctrl->data_state) == FD_STATE_DATA ||
837
        FD_STATE(fdctrl->data_state) == FD_STATE_STATUS)
838
        retval |= 0x10;
839
    FLOPPY_DPRINTF("main status register: 0x%02x\n", retval);
840

    
841
    return retval;
842
}
843

    
844
/* Data select rate register : 0x04 (write) */
845
static void fdctrl_write_rate (fdctrl_t *fdctrl, uint32_t value)
846
{
847
    /* Reset mode */
848
    if (fdctrl->state & FD_CTRL_RESET) {
849
        FLOPPY_DPRINTF("Floppy controller in RESET state !\n");
850
        return;
851
    }
852
    FLOPPY_DPRINTF("select rate register set to 0x%02x\n", value);
853
    /* Reset: autoclear */
854
    if (value & 0x80) {
855
        fdctrl->state |= FD_CTRL_RESET;
856
        fdctrl_reset(fdctrl, 1);
857
        fdctrl->state &= ~FD_CTRL_RESET;
858
    }
859
    if (value & 0x40) {
860
        fdctrl->state |= FD_CTRL_SLEEP;
861
        fdctrl_reset(fdctrl, 1);
862
    }
863
//        fdctrl.precomp = (value >> 2) & 0x07;
864
}
865

    
866
static int fdctrl_media_changed(fdrive_t *drv)
867
{
868
    int ret;
869

    
870
    if (!drv->bs)
871
        return 0;
872
    ret = bdrv_media_changed(drv->bs);
873
    if (ret) {
874
        fd_revalidate(drv);
875
    }
876
    return ret;
877
}
878

    
879
/* Digital input register : 0x07 (read-only) */
880
static uint32_t fdctrl_read_dir (fdctrl_t *fdctrl)
881
{
882
    uint32_t retval = 0;
883

    
884
    if (fdctrl_media_changed(drv0(fdctrl)) ||
885
        fdctrl_media_changed(drv1(fdctrl)))
886
        retval |= 0x80;
887
    if (retval != 0)
888
        FLOPPY_DPRINTF("Floppy digital input register: 0x%02x\n", retval);
889

    
890
    return retval;
891
}
892

    
893
/* FIFO state control */
894
static void fdctrl_reset_fifo (fdctrl_t *fdctrl)
895
{
896
    fdctrl->data_dir = FD_DIR_WRITE;
897
    fdctrl->data_pos = 0;
898
    FD_SET_STATE(fdctrl->data_state, FD_STATE_CMD);
899
}
900

    
901
/* Set FIFO status for the host to read */
902
static void fdctrl_set_fifo (fdctrl_t *fdctrl, int fifo_len, int do_irq)
903
{
904
    fdctrl->data_dir = FD_DIR_READ;
905
    fdctrl->data_len = fifo_len;
906
    fdctrl->data_pos = 0;
907
    FD_SET_STATE(fdctrl->data_state, FD_STATE_STATUS);
908
    if (do_irq)
909
        fdctrl_raise_irq(fdctrl, 0x00);
910
}
911

    
912
/* Set an error: unimplemented/unknown command */
913
static void fdctrl_unimplemented (fdctrl_t *fdctrl)
914
{
915
#if 0
916
    fdrive_t *cur_drv;
917

918
    cur_drv = get_cur_drv(fdctrl);
919
    fdctrl->fifo[0] = 0x60 | (cur_drv->head << 2) | fdctrl->cur_drv;
920
    fdctrl->fifo[1] = 0x00;
921
    fdctrl->fifo[2] = 0x00;
922
    fdctrl_set_fifo(fdctrl, 3, 1);
923
#else
924
    //    fdctrl_reset_fifo(fdctrl);
925
    fdctrl->fifo[0] = 0x80;
926
    fdctrl_set_fifo(fdctrl, 1, 0);
927
#endif
928
}
929

    
930
/* Callback for transfer end (stop or abort) */
931
static void fdctrl_stop_transfer (fdctrl_t *fdctrl, uint8_t status0,
932
                                  uint8_t status1, uint8_t status2)
933
{
934
    fdrive_t *cur_drv;
935

    
936
    cur_drv = get_cur_drv(fdctrl);
937
    FLOPPY_DPRINTF("transfer status: %02x %02x %02x (%02x)\n",
938
                   status0, status1, status2,
939
                   status0 | (cur_drv->head << 2) | fdctrl->cur_drv);
940
    fdctrl->fifo[0] = status0 | (cur_drv->head << 2) | fdctrl->cur_drv;
941
    fdctrl->fifo[1] = status1;
942
    fdctrl->fifo[2] = status2;
943
    fdctrl->fifo[3] = cur_drv->track;
944
    fdctrl->fifo[4] = cur_drv->head;
945
    fdctrl->fifo[5] = cur_drv->sect;
946
    fdctrl->fifo[6] = FD_SECTOR_SC;
947
    fdctrl->data_dir = FD_DIR_READ;
948
    if (fdctrl->state & FD_CTRL_BUSY) {
949
        DMA_release_DREQ(fdctrl->dma_chann);
950
        fdctrl->state &= ~FD_CTRL_BUSY;
951
    }
952
    fdctrl_set_fifo(fdctrl, 7, 1);
953
}
954

    
955
/* Prepare a data transfer (either DMA or FIFO) */
956
static void fdctrl_start_transfer (fdctrl_t *fdctrl, int direction)
957
{
958
    fdrive_t *cur_drv;
959
    uint8_t kh, kt, ks;
960
    int did_seek;
961

    
962
    fdctrl->cur_drv = fdctrl->fifo[1] & 1;
963
    cur_drv = get_cur_drv(fdctrl);
964
    kt = fdctrl->fifo[2];
965
    kh = fdctrl->fifo[3];
966
    ks = fdctrl->fifo[4];
967
    FLOPPY_DPRINTF("Start transfer at %d %d %02x %02x (%d)\n",
968
                   fdctrl->cur_drv, kh, kt, ks,
969
                   _fd_sector(kh, kt, ks, cur_drv->last_sect));
970
    did_seek = 0;
971
    switch (fd_seek(cur_drv, kh, kt, ks, fdctrl->config & 0x40)) {
972
    case 2:
973
        /* sect too big */
974
        fdctrl_stop_transfer(fdctrl, 0x40, 0x00, 0x00);
975
        fdctrl->fifo[3] = kt;
976
        fdctrl->fifo[4] = kh;
977
        fdctrl->fifo[5] = ks;
978
        return;
979
    case 3:
980
        /* track too big */
981
        fdctrl_stop_transfer(fdctrl, 0x40, 0x80, 0x00);
982
        fdctrl->fifo[3] = kt;
983
        fdctrl->fifo[4] = kh;
984
        fdctrl->fifo[5] = ks;
985
        return;
986
    case 4:
987
        /* No seek enabled */
988
        fdctrl_stop_transfer(fdctrl, 0x40, 0x00, 0x00);
989
        fdctrl->fifo[3] = kt;
990
        fdctrl->fifo[4] = kh;
991
        fdctrl->fifo[5] = ks;
992
        return;
993
    case 1:
994
        did_seek = 1;
995
        break;
996
    default:
997
        break;
998
    }
999
    /* Set the FIFO state */
1000
    fdctrl->data_dir = direction;
1001
    fdctrl->data_pos = 0;
1002
    FD_SET_STATE(fdctrl->data_state, FD_STATE_DATA); /* FIFO ready for data */
1003
    if (fdctrl->fifo[0] & 0x80)
1004
        fdctrl->data_state |= FD_STATE_MULTI;
1005
    else
1006
        fdctrl->data_state &= ~FD_STATE_MULTI;
1007
    if (did_seek)
1008
        fdctrl->data_state |= FD_STATE_SEEK;
1009
    else
1010
        fdctrl->data_state &= ~FD_STATE_SEEK;
1011
    if (fdctrl->fifo[5] == 00) {
1012
        fdctrl->data_len = fdctrl->fifo[8];
1013
    } else {
1014
        int tmp;
1015
        fdctrl->data_len = 128 << (fdctrl->fifo[5] > 7 ? 7 : fdctrl->fifo[5]);
1016
        tmp = (cur_drv->last_sect - ks + 1);
1017
        if (fdctrl->fifo[0] & 0x80)
1018
            tmp += cur_drv->last_sect;
1019
        fdctrl->data_len *= tmp;
1020
    }
1021
    fdctrl->eot = fdctrl->fifo[6];
1022
    if (fdctrl->dma_en) {
1023
        int dma_mode;
1024
        /* DMA transfer are enabled. Check if DMA channel is well programmed */
1025
        dma_mode = DMA_get_channel_mode(fdctrl->dma_chann);
1026
        dma_mode = (dma_mode >> 2) & 3;
1027
        FLOPPY_DPRINTF("dma_mode=%d direction=%d (%d - %d)\n",
1028
                       dma_mode, direction,
1029
                       (128 << fdctrl->fifo[5]) *
1030
                       (cur_drv->last_sect - ks + 1), fdctrl->data_len);
1031
        if (((direction == FD_DIR_SCANE || direction == FD_DIR_SCANL ||
1032
              direction == FD_DIR_SCANH) && dma_mode == 0) ||
1033
            (direction == FD_DIR_WRITE && dma_mode == 2) ||
1034
            (direction == FD_DIR_READ && dma_mode == 1)) {
1035
            /* No access is allowed until DMA transfer has completed */
1036
            fdctrl->state |= FD_CTRL_BUSY;
1037
            /* Now, we just have to wait for the DMA controller to
1038
             * recall us...
1039
             */
1040
            DMA_hold_DREQ(fdctrl->dma_chann);
1041
            DMA_schedule(fdctrl->dma_chann);
1042
            return;
1043
        } else {
1044
            FLOPPY_ERROR("dma_mode=%d direction=%d\n", dma_mode, direction);
1045
        }
1046
    }
1047
    FLOPPY_DPRINTF("start non-DMA transfer\n");
1048
    /* IO based transfer: calculate len */
1049
    fdctrl_raise_irq(fdctrl, 0x00);
1050

    
1051
    return;
1052
}
1053

    
1054
/* Prepare a transfer of deleted data */
1055
static void fdctrl_start_transfer_del (fdctrl_t *fdctrl, int direction)
1056
{
1057
    /* We don't handle deleted data,
1058
     * so we don't return *ANYTHING*
1059
     */
1060
    fdctrl_stop_transfer(fdctrl, 0x60, 0x00, 0x00);
1061
}
1062

    
1063
/* handlers for DMA transfers */
1064
static int fdctrl_transfer_handler (void *opaque, int nchan,
1065
                                    int dma_pos, int dma_len)
1066
{
1067
    fdctrl_t *fdctrl;
1068
    fdrive_t *cur_drv;
1069
    int len, start_pos, rel_pos;
1070
    uint8_t status0 = 0x00, status1 = 0x00, status2 = 0x00;
1071

    
1072
    fdctrl = opaque;
1073
    if (!(fdctrl->state & FD_CTRL_BUSY)) {
1074
        FLOPPY_DPRINTF("Not in DMA transfer mode !\n");
1075
        return 0;
1076
    }
1077
    cur_drv = get_cur_drv(fdctrl);
1078
    if (fdctrl->data_dir == FD_DIR_SCANE || fdctrl->data_dir == FD_DIR_SCANL ||
1079
        fdctrl->data_dir == FD_DIR_SCANH)
1080
        status2 = 0x04;
1081
    if (dma_len > fdctrl->data_len)
1082
        dma_len = fdctrl->data_len;
1083
    if (cur_drv->bs == NULL) {
1084
        if (fdctrl->data_dir == FD_DIR_WRITE)
1085
            fdctrl_stop_transfer(fdctrl, 0x60, 0x00, 0x00);
1086
        else
1087
            fdctrl_stop_transfer(fdctrl, 0x40, 0x00, 0x00);
1088
        len = 0;
1089
        goto transfer_error;
1090
    }
1091
    rel_pos = fdctrl->data_pos % FD_SECTOR_LEN;
1092
    for (start_pos = fdctrl->data_pos; fdctrl->data_pos < dma_len;) {
1093
        len = dma_len - fdctrl->data_pos;
1094
        if (len + rel_pos > FD_SECTOR_LEN)
1095
            len = FD_SECTOR_LEN - rel_pos;
1096
        FLOPPY_DPRINTF("copy %d bytes (%d %d %d) %d pos %d %02x "
1097
                       "(%d-0x%08x 0x%08x)\n", len, dma_len, fdctrl->data_pos,
1098
                       fdctrl->data_len, fdctrl->cur_drv, cur_drv->head,
1099
                       cur_drv->track, cur_drv->sect, fd_sector(cur_drv),
1100
                       fd_sector(cur_drv) * 512);
1101
        if (fdctrl->data_dir != FD_DIR_WRITE ||
1102
            len < FD_SECTOR_LEN || rel_pos != 0) {
1103
            /* READ & SCAN commands and realign to a sector for WRITE */
1104
            if (bdrv_read(cur_drv->bs, fd_sector(cur_drv),
1105
                          fdctrl->fifo, 1) < 0) {
1106
                FLOPPY_DPRINTF("Floppy: error getting sector %d\n",
1107
                               fd_sector(cur_drv));
1108
                /* Sure, image size is too small... */
1109
                memset(fdctrl->fifo, 0, FD_SECTOR_LEN);
1110
            }
1111
        }
1112
        switch (fdctrl->data_dir) {
1113
        case FD_DIR_READ:
1114
            /* READ commands */
1115
            DMA_write_memory (nchan, fdctrl->fifo + rel_pos,
1116
                              fdctrl->data_pos, len);
1117
            break;
1118
        case FD_DIR_WRITE:
1119
            /* WRITE commands */
1120
            DMA_read_memory (nchan, fdctrl->fifo + rel_pos,
1121
                             fdctrl->data_pos, len);
1122
            if (bdrv_write(cur_drv->bs, fd_sector(cur_drv),
1123
                           fdctrl->fifo, 1) < 0) {
1124
                FLOPPY_ERROR("writting sector %d\n", fd_sector(cur_drv));
1125
                fdctrl_stop_transfer(fdctrl, 0x60, 0x00, 0x00);
1126
                goto transfer_error;
1127
            }
1128
            break;
1129
        default:
1130
            /* SCAN commands */
1131
            {
1132
                uint8_t tmpbuf[FD_SECTOR_LEN];
1133
                int ret;
1134
                DMA_read_memory (nchan, tmpbuf, fdctrl->data_pos, len);
1135
                ret = memcmp(tmpbuf, fdctrl->fifo + rel_pos, len);
1136
                if (ret == 0) {
1137
                    status2 = 0x08;
1138
                    goto end_transfer;
1139
                }
1140
                if ((ret < 0 && fdctrl->data_dir == FD_DIR_SCANL) ||
1141
                    (ret > 0 && fdctrl->data_dir == FD_DIR_SCANH)) {
1142
                    status2 = 0x00;
1143
                    goto end_transfer;
1144
                }
1145
            }
1146
            break;
1147
        }
1148
        fdctrl->data_pos += len;
1149
        rel_pos = fdctrl->data_pos % FD_SECTOR_LEN;
1150
        if (rel_pos == 0) {
1151
            /* Seek to next sector */
1152
            FLOPPY_DPRINTF("seek to next sector (%d %02x %02x => %d) (%d)\n",
1153
                           cur_drv->head, cur_drv->track, cur_drv->sect,
1154
                           fd_sector(cur_drv),
1155
                           fdctrl->data_pos - len);
1156
            /* XXX: cur_drv->sect >= cur_drv->last_sect should be an
1157
               error in fact */
1158
            if (cur_drv->sect >= cur_drv->last_sect ||
1159
                cur_drv->sect == fdctrl->eot) {
1160
                cur_drv->sect = 1;
1161
                if (FD_MULTI_TRACK(fdctrl->data_state)) {
1162
                    if (cur_drv->head == 0 &&
1163
                        (cur_drv->flags & FDISK_DBL_SIDES) != 0) {
1164
                        cur_drv->head = 1;
1165
                    } else {
1166
                        cur_drv->head = 0;
1167
                        cur_drv->track++;
1168
                        if ((cur_drv->flags & FDISK_DBL_SIDES) == 0)
1169
                            break;
1170
                    }
1171
                } else {
1172
                    cur_drv->track++;
1173
                    break;
1174
                }
1175
                FLOPPY_DPRINTF("seek to next track (%d %02x %02x => %d)\n",
1176
                               cur_drv->head, cur_drv->track,
1177
                               cur_drv->sect, fd_sector(cur_drv));
1178
            } else {
1179
                cur_drv->sect++;
1180
            }
1181
        }
1182
    }
1183
 end_transfer:
1184
    len = fdctrl->data_pos - start_pos;
1185
    FLOPPY_DPRINTF("end transfer %d %d %d\n",
1186
                   fdctrl->data_pos, len, fdctrl->data_len);
1187
    if (fdctrl->data_dir == FD_DIR_SCANE ||
1188
        fdctrl->data_dir == FD_DIR_SCANL ||
1189
        fdctrl->data_dir == FD_DIR_SCANH)
1190
        status2 = 0x08;
1191
    if (FD_DID_SEEK(fdctrl->data_state))
1192
        status0 |= 0x20;
1193
    fdctrl->data_len -= len;
1194
    //    if (fdctrl->data_len == 0)
1195
    fdctrl_stop_transfer(fdctrl, status0, status1, status2);
1196
 transfer_error:
1197

    
1198
    return len;
1199
}
1200

    
1201
/* Data register : 0x05 */
1202
static uint32_t fdctrl_read_data (fdctrl_t *fdctrl)
1203
{
1204
    fdrive_t *cur_drv;
1205
    uint32_t retval = 0;
1206
    int pos, len;
1207

    
1208
    cur_drv = get_cur_drv(fdctrl);
1209
    fdctrl->state &= ~FD_CTRL_SLEEP;
1210
    if (FD_STATE(fdctrl->data_state) == FD_STATE_CMD) {
1211
        FLOPPY_ERROR("can't read data in CMD state\n");
1212
        return 0;
1213
    }
1214
    pos = fdctrl->data_pos;
1215
    if (FD_STATE(fdctrl->data_state) == FD_STATE_DATA) {
1216
        pos %= FD_SECTOR_LEN;
1217
        if (pos == 0) {
1218
            len = fdctrl->data_len - fdctrl->data_pos;
1219
            if (len > FD_SECTOR_LEN)
1220
                len = FD_SECTOR_LEN;
1221
            bdrv_read(cur_drv->bs, fd_sector(cur_drv), fdctrl->fifo, 1);
1222
        }
1223
    }
1224
    retval = fdctrl->fifo[pos];
1225
    if (++fdctrl->data_pos == fdctrl->data_len) {
1226
        fdctrl->data_pos = 0;
1227
        /* Switch from transfer mode to status mode
1228
         * then from status mode to command mode
1229
         */
1230
        if (FD_STATE(fdctrl->data_state) == FD_STATE_DATA) {
1231
            fdctrl_stop_transfer(fdctrl, 0x20, 0x00, 0x00);
1232
        } else {
1233
            fdctrl_reset_fifo(fdctrl);
1234
            fdctrl_reset_irq(fdctrl);
1235
        }
1236
    }
1237
    FLOPPY_DPRINTF("data register: 0x%02x\n", retval);
1238

    
1239
    return retval;
1240
}
1241

    
1242
static void fdctrl_format_sector (fdctrl_t *fdctrl)
1243
{
1244
    fdrive_t *cur_drv;
1245
    uint8_t kh, kt, ks;
1246
    int did_seek;
1247

    
1248
    fdctrl->cur_drv = fdctrl->fifo[1] & 1;
1249
    cur_drv = get_cur_drv(fdctrl);
1250
    kt = fdctrl->fifo[6];
1251
    kh = fdctrl->fifo[7];
1252
    ks = fdctrl->fifo[8];
1253
    FLOPPY_DPRINTF("format sector at %d %d %02x %02x (%d)\n",
1254
                   fdctrl->cur_drv, kh, kt, ks,
1255
                   _fd_sector(kh, kt, ks, cur_drv->last_sect));
1256
    did_seek = 0;
1257
    switch (fd_seek(cur_drv, kh, kt, ks, fdctrl->config & 0x40)) {
1258
    case 2:
1259
        /* sect too big */
1260
        fdctrl_stop_transfer(fdctrl, 0x40, 0x00, 0x00);
1261
        fdctrl->fifo[3] = kt;
1262
        fdctrl->fifo[4] = kh;
1263
        fdctrl->fifo[5] = ks;
1264
        return;
1265
    case 3:
1266
        /* track too big */
1267
        fdctrl_stop_transfer(fdctrl, 0x40, 0x80, 0x00);
1268
        fdctrl->fifo[3] = kt;
1269
        fdctrl->fifo[4] = kh;
1270
        fdctrl->fifo[5] = ks;
1271
        return;
1272
    case 4:
1273
        /* No seek enabled */
1274
        fdctrl_stop_transfer(fdctrl, 0x40, 0x00, 0x00);
1275
        fdctrl->fifo[3] = kt;
1276
        fdctrl->fifo[4] = kh;
1277
        fdctrl->fifo[5] = ks;
1278
        return;
1279
    case 1:
1280
        did_seek = 1;
1281
        fdctrl->data_state |= FD_STATE_SEEK;
1282
        break;
1283
    default:
1284
        break;
1285
    }
1286
    memset(fdctrl->fifo, 0, FD_SECTOR_LEN);
1287
    if (cur_drv->bs == NULL ||
1288
        bdrv_write(cur_drv->bs, fd_sector(cur_drv), fdctrl->fifo, 1) < 0) {
1289
        FLOPPY_ERROR("formatting sector %d\n", fd_sector(cur_drv));
1290
        fdctrl_stop_transfer(fdctrl, 0x60, 0x00, 0x00);
1291
    } else {
1292
        if (cur_drv->sect == cur_drv->last_sect) {
1293
            fdctrl->data_state &= ~FD_STATE_FORMAT;
1294
            /* Last sector done */
1295
            if (FD_DID_SEEK(fdctrl->data_state))
1296
                fdctrl_stop_transfer(fdctrl, 0x20, 0x00, 0x00);
1297
            else
1298
                fdctrl_stop_transfer(fdctrl, 0x00, 0x00, 0x00);
1299
        } else {
1300
            /* More to do */
1301
            fdctrl->data_pos = 0;
1302
            fdctrl->data_len = 4;
1303
        }
1304
    }
1305
}
1306

    
1307
static void fdctrl_write_data (fdctrl_t *fdctrl, uint32_t value)
1308
{
1309
    fdrive_t *cur_drv;
1310

    
1311
    cur_drv = get_cur_drv(fdctrl);
1312
    /* Reset mode */
1313
    if (fdctrl->state & FD_CTRL_RESET) {
1314
        FLOPPY_DPRINTF("Floppy controller in RESET state !\n");
1315
        return;
1316
    }
1317
    fdctrl->state &= ~FD_CTRL_SLEEP;
1318
    if (FD_STATE(fdctrl->data_state) == FD_STATE_STATUS) {
1319
        FLOPPY_ERROR("can't write data in status mode\n");
1320
        return;
1321
    }
1322
    /* Is it write command time ? */
1323
    if (FD_STATE(fdctrl->data_state) == FD_STATE_DATA) {
1324
        /* FIFO data write */
1325
        fdctrl->fifo[fdctrl->data_pos++] = value;
1326
        if (fdctrl->data_pos % FD_SECTOR_LEN == (FD_SECTOR_LEN - 1) ||
1327
            fdctrl->data_pos == fdctrl->data_len) {
1328
            bdrv_write(cur_drv->bs, fd_sector(cur_drv), fdctrl->fifo, 1);
1329
        }
1330
        /* Switch from transfer mode to status mode
1331
         * then from status mode to command mode
1332
         */
1333
        if (FD_STATE(fdctrl->data_state) == FD_STATE_DATA)
1334
            fdctrl_stop_transfer(fdctrl, 0x20, 0x00, 0x00);
1335
        return;
1336
    }
1337
    if (fdctrl->data_pos == 0) {
1338
        /* Command */
1339
        switch (value & 0x5F) {
1340
        case 0x46:
1341
            /* READ variants */
1342
            FLOPPY_DPRINTF("READ command\n");
1343
            /* 8 parameters cmd */
1344
            fdctrl->data_len = 9;
1345
            goto enqueue;
1346
        case 0x4C:
1347
            /* READ_DELETED variants */
1348
            FLOPPY_DPRINTF("READ_DELETED command\n");
1349
            /* 8 parameters cmd */
1350
            fdctrl->data_len = 9;
1351
            goto enqueue;
1352
        case 0x50:
1353
            /* SCAN_EQUAL variants */
1354
            FLOPPY_DPRINTF("SCAN_EQUAL command\n");
1355
            /* 8 parameters cmd */
1356
            fdctrl->data_len = 9;
1357
            goto enqueue;
1358
        case 0x56:
1359
            /* VERIFY variants */
1360
            FLOPPY_DPRINTF("VERIFY command\n");
1361
            /* 8 parameters cmd */
1362
            fdctrl->data_len = 9;
1363
            goto enqueue;
1364
        case 0x59:
1365
            /* SCAN_LOW_OR_EQUAL variants */
1366
            FLOPPY_DPRINTF("SCAN_LOW_OR_EQUAL command\n");
1367
            /* 8 parameters cmd */
1368
            fdctrl->data_len = 9;
1369
            goto enqueue;
1370
        case 0x5D:
1371
            /* SCAN_HIGH_OR_EQUAL variants */
1372
            FLOPPY_DPRINTF("SCAN_HIGH_OR_EQUAL command\n");
1373
            /* 8 parameters cmd */
1374
            fdctrl->data_len = 9;
1375
            goto enqueue;
1376
        default:
1377
            break;
1378
        }
1379
        switch (value & 0x7F) {
1380
        case 0x45:
1381
            /* WRITE variants */
1382
            FLOPPY_DPRINTF("WRITE command\n");
1383
            /* 8 parameters cmd */
1384
            fdctrl->data_len = 9;
1385
            goto enqueue;
1386
        case 0x49:
1387
            /* WRITE_DELETED variants */
1388
            FLOPPY_DPRINTF("WRITE_DELETED command\n");
1389
            /* 8 parameters cmd */
1390
            fdctrl->data_len = 9;
1391
            goto enqueue;
1392
        default:
1393
            break;
1394
        }
1395
        switch (value) {
1396
        case 0x03:
1397
            /* SPECIFY */
1398
            FLOPPY_DPRINTF("SPECIFY command\n");
1399
            /* 1 parameter cmd */
1400
            fdctrl->data_len = 3;
1401
            goto enqueue;
1402
        case 0x04:
1403
            /* SENSE_DRIVE_STATUS */
1404
            FLOPPY_DPRINTF("SENSE_DRIVE_STATUS command\n");
1405
            /* 1 parameter cmd */
1406
            fdctrl->data_len = 2;
1407
            goto enqueue;
1408
        case 0x07:
1409
            /* RECALIBRATE */
1410
            FLOPPY_DPRINTF("RECALIBRATE command\n");
1411
            /* 1 parameter cmd */
1412
            fdctrl->data_len = 2;
1413
            goto enqueue;
1414
        case 0x08:
1415
            /* SENSE_INTERRUPT_STATUS */
1416
            FLOPPY_DPRINTF("SENSE_INTERRUPT_STATUS command (%02x)\n",
1417
                           fdctrl->int_status);
1418
            /* No parameters cmd: returns status if no interrupt */
1419
#if 0
1420
            fdctrl->fifo[0] =
1421
                fdctrl->int_status | (cur_drv->head << 2) | fdctrl->cur_drv;
1422
#else
1423
            /* XXX: int_status handling is broken for read/write
1424
               commands, so we do this hack. It should be suppressed
1425
               ASAP */
1426
            fdctrl->fifo[0] =
1427
                0x20 | (cur_drv->head << 2) | fdctrl->cur_drv;
1428
#endif
1429
            fdctrl->fifo[1] = cur_drv->track;
1430
            fdctrl_set_fifo(fdctrl, 2, 0);
1431
            fdctrl_reset_irq(fdctrl);
1432
            fdctrl->int_status = 0xC0;
1433
            return;
1434
        case 0x0E:
1435
            /* DUMPREG */
1436
            FLOPPY_DPRINTF("DUMPREG command\n");
1437
            /* Drives position */
1438
            fdctrl->fifo[0] = drv0(fdctrl)->track;
1439
            fdctrl->fifo[1] = drv1(fdctrl)->track;
1440
            fdctrl->fifo[2] = 0;
1441
            fdctrl->fifo[3] = 0;
1442
            /* timers */
1443
            fdctrl->fifo[4] = fdctrl->timer0;
1444
            fdctrl->fifo[5] = (fdctrl->timer1 << 1) | fdctrl->dma_en;
1445
            fdctrl->fifo[6] = cur_drv->last_sect;
1446
            fdctrl->fifo[7] = (fdctrl->lock << 7) |
1447
                (cur_drv->perpendicular << 2);
1448
            fdctrl->fifo[8] = fdctrl->config;
1449
            fdctrl->fifo[9] = fdctrl->precomp_trk;
1450
            fdctrl_set_fifo(fdctrl, 10, 0);
1451
            return;
1452
        case 0x0F:
1453
            /* SEEK */
1454
            FLOPPY_DPRINTF("SEEK command\n");
1455
            /* 2 parameters cmd */
1456
            fdctrl->data_len = 3;
1457
            goto enqueue;
1458
        case 0x10:
1459
            /* VERSION */
1460
            FLOPPY_DPRINTF("VERSION command\n");
1461
            /* No parameters cmd */
1462
            /* Controller's version */
1463
            fdctrl->fifo[0] = fdctrl->version;
1464
            fdctrl_set_fifo(fdctrl, 1, 1);
1465
            return;
1466
        case 0x12:
1467
            /* PERPENDICULAR_MODE */
1468
            FLOPPY_DPRINTF("PERPENDICULAR_MODE command\n");
1469
            /* 1 parameter cmd */
1470
            fdctrl->data_len = 2;
1471
            goto enqueue;
1472
        case 0x13:
1473
            /* CONFIGURE */
1474
            FLOPPY_DPRINTF("CONFIGURE command\n");
1475
            /* 3 parameters cmd */
1476
            fdctrl->data_len = 4;
1477
            goto enqueue;
1478
        case 0x14:
1479
            /* UNLOCK */
1480
            FLOPPY_DPRINTF("UNLOCK command\n");
1481
            /* No parameters cmd */
1482
            fdctrl->lock = 0;
1483
            fdctrl->fifo[0] = 0;
1484
            fdctrl_set_fifo(fdctrl, 1, 0);
1485
            return;
1486
        case 0x17:
1487
            /* POWERDOWN_MODE */
1488
            FLOPPY_DPRINTF("POWERDOWN_MODE command\n");
1489
            /* 2 parameters cmd */
1490
            fdctrl->data_len = 3;
1491
            goto enqueue;
1492
        case 0x18:
1493
            /* PART_ID */
1494
            FLOPPY_DPRINTF("PART_ID command\n");
1495
            /* No parameters cmd */
1496
            fdctrl->fifo[0] = 0x41; /* Stepping 1 */
1497
            fdctrl_set_fifo(fdctrl, 1, 0);
1498
            return;
1499
        case 0x2C:
1500
            /* SAVE */
1501
            FLOPPY_DPRINTF("SAVE command\n");
1502
            /* No parameters cmd */
1503
            fdctrl->fifo[0] = 0;
1504
            fdctrl->fifo[1] = 0;
1505
            /* Drives position */
1506
            fdctrl->fifo[2] = drv0(fdctrl)->track;
1507
            fdctrl->fifo[3] = drv1(fdctrl)->track;
1508
            fdctrl->fifo[4] = 0;
1509
            fdctrl->fifo[5] = 0;
1510
            /* timers */
1511
            fdctrl->fifo[6] = fdctrl->timer0;
1512
            fdctrl->fifo[7] = fdctrl->timer1;
1513
            fdctrl->fifo[8] = cur_drv->last_sect;
1514
            fdctrl->fifo[9] = (fdctrl->lock << 7) |
1515
                (cur_drv->perpendicular << 2);
1516
            fdctrl->fifo[10] = fdctrl->config;
1517
            fdctrl->fifo[11] = fdctrl->precomp_trk;
1518
            fdctrl->fifo[12] = fdctrl->pwrd;
1519
            fdctrl->fifo[13] = 0;
1520
            fdctrl->fifo[14] = 0;
1521
            fdctrl_set_fifo(fdctrl, 15, 1);
1522
            return;
1523
        case 0x33:
1524
            /* OPTION */
1525
            FLOPPY_DPRINTF("OPTION command\n");
1526
            /* 1 parameter cmd */
1527
            fdctrl->data_len = 2;
1528
            goto enqueue;
1529
        case 0x42:
1530
            /* READ_TRACK */
1531
            FLOPPY_DPRINTF("READ_TRACK command\n");
1532
            /* 8 parameters cmd */
1533
            fdctrl->data_len = 9;
1534
            goto enqueue;
1535
        case 0x4A:
1536
            /* READ_ID */
1537
            FLOPPY_DPRINTF("READ_ID command\n");
1538
            /* 1 parameter cmd */
1539
            fdctrl->data_len = 2;
1540
            goto enqueue;
1541
        case 0x4C:
1542
            /* RESTORE */
1543
            FLOPPY_DPRINTF("RESTORE command\n");
1544
            /* 17 parameters cmd */
1545
            fdctrl->data_len = 18;
1546
            goto enqueue;
1547
        case 0x4D:
1548
            /* FORMAT_TRACK */
1549
            FLOPPY_DPRINTF("FORMAT_TRACK command\n");
1550
            /* 5 parameters cmd */
1551
            fdctrl->data_len = 6;
1552
            goto enqueue;
1553
        case 0x8E:
1554
            /* DRIVE_SPECIFICATION_COMMAND */
1555
            FLOPPY_DPRINTF("DRIVE_SPECIFICATION_COMMAND command\n");
1556
            /* 5 parameters cmd */
1557
            fdctrl->data_len = 6;
1558
            goto enqueue;
1559
        case 0x8F:
1560
            /* RELATIVE_SEEK_OUT */
1561
            FLOPPY_DPRINTF("RELATIVE_SEEK_OUT command\n");
1562
            /* 2 parameters cmd */
1563
            fdctrl->data_len = 3;
1564
            goto enqueue;
1565
        case 0x94:
1566
            /* LOCK */
1567
            FLOPPY_DPRINTF("LOCK command\n");
1568
            /* No parameters cmd */
1569
            fdctrl->lock = 1;
1570
            fdctrl->fifo[0] = 0x10;
1571
            fdctrl_set_fifo(fdctrl, 1, 1);
1572
            return;
1573
        case 0xCD:
1574
            /* FORMAT_AND_WRITE */
1575
            FLOPPY_DPRINTF("FORMAT_AND_WRITE command\n");
1576
            /* 10 parameters cmd */
1577
            fdctrl->data_len = 11;
1578
            goto enqueue;
1579
        case 0xCF:
1580
            /* RELATIVE_SEEK_IN */
1581
            FLOPPY_DPRINTF("RELATIVE_SEEK_IN command\n");
1582
            /* 2 parameters cmd */
1583
            fdctrl->data_len = 3;
1584
            goto enqueue;
1585
        default:
1586
            /* Unknown command */
1587
            FLOPPY_ERROR("unknown command: 0x%02x\n", value);
1588
            fdctrl_unimplemented(fdctrl);
1589
            return;
1590
        }
1591
    }
1592
 enqueue:
1593
    FLOPPY_DPRINTF("%s: %02x\n", __func__, value);
1594
    fdctrl->fifo[fdctrl->data_pos] = value;
1595
    if (++fdctrl->data_pos == fdctrl->data_len) {
1596
        /* We now have all parameters
1597
         * and will be able to treat the command
1598
         */
1599
        if (fdctrl->data_state & FD_STATE_FORMAT) {
1600
            fdctrl_format_sector(fdctrl);
1601
            return;
1602
        }
1603
        switch (fdctrl->fifo[0] & 0x1F) {
1604
        case 0x06:
1605
            {
1606
                /* READ variants */
1607
                FLOPPY_DPRINTF("treat READ command\n");
1608
                fdctrl_start_transfer(fdctrl, FD_DIR_READ);
1609
                return;
1610
            }
1611
        case 0x0C:
1612
            /* READ_DELETED variants */
1613
//            FLOPPY_DPRINTF("treat READ_DELETED command\n");
1614
            FLOPPY_ERROR("treat READ_DELETED command\n");
1615
            fdctrl_start_transfer_del(fdctrl, FD_DIR_READ);
1616
            return;
1617
        case 0x16:
1618
            /* VERIFY variants */
1619
//            FLOPPY_DPRINTF("treat VERIFY command\n");
1620
            FLOPPY_ERROR("treat VERIFY command\n");
1621
            fdctrl_stop_transfer(fdctrl, 0x20, 0x00, 0x00);
1622
            return;
1623
        case 0x10:
1624
            /* SCAN_EQUAL variants */
1625
//            FLOPPY_DPRINTF("treat SCAN_EQUAL command\n");
1626
            FLOPPY_ERROR("treat SCAN_EQUAL command\n");
1627
            fdctrl_start_transfer(fdctrl, FD_DIR_SCANE);
1628
            return;
1629
        case 0x19:
1630
            /* SCAN_LOW_OR_EQUAL variants */
1631
//            FLOPPY_DPRINTF("treat SCAN_LOW_OR_EQUAL command\n");
1632
            FLOPPY_ERROR("treat SCAN_LOW_OR_EQUAL command\n");
1633
            fdctrl_start_transfer(fdctrl, FD_DIR_SCANL);
1634
            return;
1635
        case 0x1D:
1636
            /* SCAN_HIGH_OR_EQUAL variants */
1637
//            FLOPPY_DPRINTF("treat SCAN_HIGH_OR_EQUAL command\n");
1638
            FLOPPY_ERROR("treat SCAN_HIGH_OR_EQUAL command\n");
1639
            fdctrl_start_transfer(fdctrl, FD_DIR_SCANH);
1640
            return;
1641
        default:
1642
            break;
1643
        }
1644
        switch (fdctrl->fifo[0] & 0x3F) {
1645
        case 0x05:
1646
            /* WRITE variants */
1647
            FLOPPY_DPRINTF("treat WRITE command (%02x)\n", fdctrl->fifo[0]);
1648
            fdctrl_start_transfer(fdctrl, FD_DIR_WRITE);
1649
            return;
1650
        case 0x09:
1651
            /* WRITE_DELETED variants */
1652
//            FLOPPY_DPRINTF("treat WRITE_DELETED command\n");
1653
            FLOPPY_ERROR("treat WRITE_DELETED command\n");
1654
            fdctrl_start_transfer_del(fdctrl, FD_DIR_WRITE);
1655
            return;
1656
        default:
1657
            break;
1658
        }
1659
        switch (fdctrl->fifo[0]) {
1660
        case 0x03:
1661
            /* SPECIFY */
1662
            FLOPPY_DPRINTF("treat SPECIFY command\n");
1663
            fdctrl->timer0 = (fdctrl->fifo[1] >> 4) & 0xF;
1664
            fdctrl->timer1 = fdctrl->fifo[2] >> 1;
1665
            fdctrl->dma_en = 1 - (fdctrl->fifo[2] & 1) ;
1666
            /* No result back */
1667
            fdctrl_reset_fifo(fdctrl);
1668
            break;
1669
        case 0x04:
1670
            /* SENSE_DRIVE_STATUS */
1671
            FLOPPY_DPRINTF("treat SENSE_DRIVE_STATUS command\n");
1672
            fdctrl->cur_drv = fdctrl->fifo[1] & 1;
1673
            cur_drv = get_cur_drv(fdctrl);
1674
            cur_drv->head = (fdctrl->fifo[1] >> 2) & 1;
1675
            /* 1 Byte status back */
1676
            fdctrl->fifo[0] = (cur_drv->ro << 6) |
1677
                (cur_drv->track == 0 ? 0x10 : 0x00) |
1678
                (cur_drv->head << 2) |
1679
                fdctrl->cur_drv |
1680
                0x28;
1681
            fdctrl_set_fifo(fdctrl, 1, 0);
1682
            break;
1683
        case 0x07:
1684
            /* RECALIBRATE */
1685
            FLOPPY_DPRINTF("treat RECALIBRATE command\n");
1686
            fdctrl->cur_drv = fdctrl->fifo[1] & 1;
1687
            cur_drv = get_cur_drv(fdctrl);
1688
            fd_recalibrate(cur_drv);
1689
            fdctrl_reset_fifo(fdctrl);
1690
            /* Raise Interrupt */
1691
            fdctrl_raise_irq(fdctrl, 0x20);
1692
            break;
1693
        case 0x0F:
1694
            /* SEEK */
1695
            FLOPPY_DPRINTF("treat SEEK command\n");
1696
            fdctrl->cur_drv = fdctrl->fifo[1] & 1;
1697
            cur_drv = get_cur_drv(fdctrl);
1698
            fd_start(cur_drv);
1699
            if (fdctrl->fifo[2] <= cur_drv->track)
1700
                cur_drv->dir = 1;
1701
            else
1702
                cur_drv->dir = 0;
1703
            fdctrl_reset_fifo(fdctrl);
1704
            if (fdctrl->fifo[2] > cur_drv->max_track) {
1705
                fdctrl_raise_irq(fdctrl, 0x60);
1706
            } else {
1707
                cur_drv->track = fdctrl->fifo[2];
1708
                /* Raise Interrupt */
1709
                fdctrl_raise_irq(fdctrl, 0x20);
1710
            }
1711
            break;
1712
        case 0x12:
1713
            /* PERPENDICULAR_MODE */
1714
            FLOPPY_DPRINTF("treat PERPENDICULAR_MODE command\n");
1715
            if (fdctrl->fifo[1] & 0x80)
1716
                cur_drv->perpendicular = fdctrl->fifo[1] & 0x7;
1717
            /* No result back */
1718
            fdctrl_reset_fifo(fdctrl);
1719
            break;
1720
        case 0x13:
1721
            /* CONFIGURE */
1722
            FLOPPY_DPRINTF("treat CONFIGURE command\n");
1723
            fdctrl->config = fdctrl->fifo[2];
1724
            fdctrl->precomp_trk =  fdctrl->fifo[3];
1725
            /* No result back */
1726
            fdctrl_reset_fifo(fdctrl);
1727
            break;
1728
        case 0x17:
1729
            /* POWERDOWN_MODE */
1730
            FLOPPY_DPRINTF("treat POWERDOWN_MODE command\n");
1731
            fdctrl->pwrd = fdctrl->fifo[1];
1732
            fdctrl->fifo[0] = fdctrl->fifo[1];
1733
            fdctrl_set_fifo(fdctrl, 1, 1);
1734
            break;
1735
        case 0x33:
1736
            /* OPTION */
1737
            FLOPPY_DPRINTF("treat OPTION command\n");
1738
            /* No result back */
1739
            fdctrl_reset_fifo(fdctrl);
1740
            break;
1741
        case 0x42:
1742
            /* READ_TRACK */
1743
//            FLOPPY_DPRINTF("treat READ_TRACK command\n");
1744
            FLOPPY_ERROR("treat READ_TRACK command\n");
1745
            fdctrl_start_transfer(fdctrl, FD_DIR_READ);
1746
            break;
1747
        case 0x4A:
1748
            /* READ_ID */
1749
            FLOPPY_DPRINTF("treat READ_ID command\n");
1750
            /* XXX: should set main status register to busy */
1751
            cur_drv->head = (fdctrl->fifo[1] >> 2) & 1;
1752
            qemu_mod_timer(fdctrl->result_timer,
1753
                           qemu_get_clock(vm_clock) + (ticks_per_sec / 50));
1754
            break;
1755
        case 0x4C:
1756
            /* RESTORE */
1757
            FLOPPY_DPRINTF("treat RESTORE command\n");
1758
            /* Drives position */
1759
            drv0(fdctrl)->track = fdctrl->fifo[3];
1760
            drv1(fdctrl)->track = fdctrl->fifo[4];
1761
            /* timers */
1762
            fdctrl->timer0 = fdctrl->fifo[7];
1763
            fdctrl->timer1 = fdctrl->fifo[8];
1764
            cur_drv->last_sect = fdctrl->fifo[9];
1765
            fdctrl->lock = fdctrl->fifo[10] >> 7;
1766
            cur_drv->perpendicular = (fdctrl->fifo[10] >> 2) & 0xF;
1767
            fdctrl->config = fdctrl->fifo[11];
1768
            fdctrl->precomp_trk = fdctrl->fifo[12];
1769
            fdctrl->pwrd = fdctrl->fifo[13];
1770
            fdctrl_reset_fifo(fdctrl);
1771
            break;
1772
        case 0x4D:
1773
            /* FORMAT_TRACK */
1774
            FLOPPY_DPRINTF("treat FORMAT_TRACK command\n");
1775
            fdctrl->cur_drv = fdctrl->fifo[1] & 1;
1776
            cur_drv = get_cur_drv(fdctrl);
1777
            fdctrl->data_state |= FD_STATE_FORMAT;
1778
            if (fdctrl->fifo[0] & 0x80)
1779
                fdctrl->data_state |= FD_STATE_MULTI;
1780
            else
1781
                fdctrl->data_state &= ~FD_STATE_MULTI;
1782
            fdctrl->data_state &= ~FD_STATE_SEEK;
1783
            cur_drv->bps =
1784
                fdctrl->fifo[2] > 7 ? 16384 : 128 << fdctrl->fifo[2];
1785
#if 0
1786
            cur_drv->last_sect =
1787
                cur_drv->flags & FDISK_DBL_SIDES ? fdctrl->fifo[3] :
1788
                fdctrl->fifo[3] / 2;
1789
#else
1790
            cur_drv->last_sect = fdctrl->fifo[3];
1791
#endif
1792
            /* TODO: implement format using DMA expected by the Bochs BIOS
1793
             * and Linux fdformat (read 3 bytes per sector via DMA and fill
1794
             * the sector with the specified fill byte
1795
             */
1796
            fdctrl->data_state &= ~FD_STATE_FORMAT;
1797
            fdctrl_stop_transfer(fdctrl, 0x00, 0x00, 0x00);
1798
            break;
1799
        case 0x8E:
1800
            /* DRIVE_SPECIFICATION_COMMAND */
1801
            FLOPPY_DPRINTF("treat DRIVE_SPECIFICATION_COMMAND command\n");
1802
            if (fdctrl->fifo[fdctrl->data_pos - 1] & 0x80) {
1803
                /* Command parameters done */
1804
                if (fdctrl->fifo[fdctrl->data_pos - 1] & 0x40) {
1805
                    fdctrl->fifo[0] = fdctrl->fifo[1];
1806
                    fdctrl->fifo[2] = 0;
1807
                    fdctrl->fifo[3] = 0;
1808
                    fdctrl_set_fifo(fdctrl, 4, 1);
1809
                } else {
1810
                    fdctrl_reset_fifo(fdctrl);
1811
                }
1812
            } else if (fdctrl->data_len > 7) {
1813
                /* ERROR */
1814
                fdctrl->fifo[0] = 0x80 |
1815
                    (cur_drv->head << 2) | fdctrl->cur_drv;
1816
                fdctrl_set_fifo(fdctrl, 1, 1);
1817
            }
1818
            break;
1819
        case 0x8F:
1820
            /* RELATIVE_SEEK_OUT */
1821
            FLOPPY_DPRINTF("treat RELATIVE_SEEK_OUT command\n");
1822
            fdctrl->cur_drv = fdctrl->fifo[1] & 1;
1823
            cur_drv = get_cur_drv(fdctrl);
1824
            fd_start(cur_drv);
1825
            cur_drv->dir = 0;
1826
            if (fdctrl->fifo[2] + cur_drv->track >= cur_drv->max_track) {
1827
                cur_drv->track = cur_drv->max_track - 1;
1828
            } else {
1829
                cur_drv->track += fdctrl->fifo[2];
1830
            }
1831
            fdctrl_reset_fifo(fdctrl);
1832
            fdctrl_raise_irq(fdctrl, 0x20);
1833
            break;
1834
        case 0xCD:
1835
            /* FORMAT_AND_WRITE */
1836
//                FLOPPY_DPRINTF("treat FORMAT_AND_WRITE command\n");
1837
            FLOPPY_ERROR("treat FORMAT_AND_WRITE command\n");
1838
            fdctrl_unimplemented(fdctrl);
1839
            break;
1840
        case 0xCF:
1841
            /* RELATIVE_SEEK_IN */
1842
            FLOPPY_DPRINTF("treat RELATIVE_SEEK_IN command\n");
1843
            fdctrl->cur_drv = fdctrl->fifo[1] & 1;
1844
            cur_drv = get_cur_drv(fdctrl);
1845
            fd_start(cur_drv);
1846
            cur_drv->dir = 1;
1847
            if (fdctrl->fifo[2] > cur_drv->track) {
1848
                cur_drv->track = 0;
1849
            } else {
1850
                cur_drv->track -= fdctrl->fifo[2];
1851
            }
1852
            fdctrl_reset_fifo(fdctrl);
1853
            /* Raise Interrupt */
1854
            fdctrl_raise_irq(fdctrl, 0x20);
1855
            break;
1856
        }
1857
    }
1858
}
1859

    
1860
static void fdctrl_result_timer(void *opaque)
1861
{
1862
    fdctrl_t *fdctrl = opaque;
1863
    fdrive_t *cur_drv = get_cur_drv(fdctrl);
1864

    
1865
    /* Pretend we are spinning.
1866
     * This is needed for Coherent, which uses READ ID to check for
1867
     * sector interleaving.
1868
     */
1869
    if (cur_drv->last_sect != 0) {
1870
        cur_drv->sect = (cur_drv->sect % cur_drv->last_sect) + 1;
1871
    }
1872
    fdctrl_stop_transfer(fdctrl, 0x00, 0x00, 0x00);
1873
}