setup enviroment for compilation
[linux-2.4.21-pre4.git] / drivers / sound / waveartist.c
1 /*
2  * linux/drivers/sound/waveartist.c
3  *
4  * The low level driver for the RWA010 Rockwell Wave Artist
5  * codec chip used in the Rebel.com NetWinder.
6  *
7  * Cleaned up and integrated into 2.1 by Russell King (rmk@arm.linux.org.uk)
8  * and Pat Beirne (patb@corel.ca)
9  *
10  *
11  * Copyright (C) by Rebel.com 1998-1999
12  *
13  * RWA010 specs received under NDA from Rockwell
14  *
15  * Copyright (C) by Hannu Savolainen 1993-1997
16  *
17  * OSS/Free for Linux is distributed under the GNU GENERAL PUBLIC LICENSE (GPL)
18  * Version 2 (June 1991). See the "COPYING" file distributed with this software
19  * for more info.
20  *
21  * Changes:
22  * 11-10-2000   Bartlomiej Zolnierkiewicz <bkz@linux-ide.org>
23  *              Added __init to waveartist_init()
24  */
25
26 /* Debugging */
27 #define DEBUG_CMD       1
28 #define DEBUG_OUT       2
29 #define DEBUG_IN        4
30 #define DEBUG_INTR      8
31 #define DEBUG_MIXER     16
32 #define DEBUG_TRIGGER   32
33
34 #define debug_flg (0)
35
36 #include <linux/module.h>
37 #include <linux/init.h>
38 #include <linux/config.h>
39 #include <linux/sched.h>
40 #include <linux/interrupt.h>
41 #include <linux/delay.h>
42 #include <linux/spinlock.h>
43 #include <linux/bitops.h>
44
45 #include <asm/system.h>
46
47 #include "sound_config.h"
48 #include "waveartist.h"
49
50 #ifdef CONFIG_ARM
51 #include <asm/hardware.h>
52 #include <asm/mach-types.h>
53 #endif
54
55 #ifndef NO_DMA
56 #define NO_DMA  255
57 #endif
58
59 #define SUPPORTED_MIXER_DEVICES         (SOUND_MASK_SYNTH      |\
60                                          SOUND_MASK_PCM        |\
61                                          SOUND_MASK_LINE       |\
62                                          SOUND_MASK_MIC        |\
63                                          SOUND_MASK_LINE1      |\
64                                          SOUND_MASK_RECLEV     |\
65                                          SOUND_MASK_VOLUME     |\
66                                          SOUND_MASK_IMIX)
67
68 static unsigned short levels[SOUND_MIXER_NRDEVICES] = {
69         0x5555,         /* Master Volume         */
70         0x0000,         /* Bass                  */
71         0x0000,         /* Treble                */
72         0x2323,         /* Synth (FM)            */
73         0x4b4b,         /* PCM                   */
74         0x6464,         /* PC Speaker            */
75         0x0000,         /* Ext Line              */
76         0x0000,         /* Mic                   */
77         0x0000,         /* CD                    */
78         0x6464,         /* Recording monitor     */
79         0x0000,         /* SB PCM (ALT PCM)      */
80         0x0000,         /* Recording level       */
81         0x6464,         /* Input gain            */
82         0x6464,         /* Output gain           */
83         0x0000,         /* Line1 (Aux1)          */
84         0x0000,         /* Line2 (Aux2)          */
85         0x0000,         /* Line3 (Aux3)          */
86         0x0000,         /* Digital1              */
87         0x0000,         /* Digital2              */
88         0x0000,         /* Digital3              */
89         0x0000,         /* Phone In              */
90         0x6464,         /* Phone Out             */
91         0x0000,         /* Video                 */
92         0x0000,         /* Radio                 */
93         0x0000          /* Monitor               */
94 };
95
96 typedef struct {
97         struct address_info  hw;        /* hardware */
98         char            *chip_name;
99
100         int             xfer_count;
101         int             audio_mode;
102         int             open_mode;
103         int             audio_flags;
104         int             record_dev;
105         int             playback_dev;
106         int             dev_no;
107
108         /* Mixer parameters */
109         const struct waveartist_mixer_info *mix;
110
111         unsigned short  *levels;           /* cache of volume settings   */
112         int             recmask;           /* currently enabled recording device! */
113
114 #ifdef CONFIG_ARCH_NETWINDER
115         signed int      slider_vol;        /* hardware slider volume     */
116         unsigned int    handset_detect  :1;
117         unsigned int    telephone_detect:1;
118         unsigned int    no_autoselect   :1;/* handset/telephone autoselects a path */
119         unsigned int    spkr_mute_state :1;/* set by ioctl or autoselect */
120         unsigned int    line_mute_state :1;/* set by ioctl or autoselect */
121         unsigned int    use_slider      :1;/* use slider setting for o/p vol */
122 #endif
123 } wavnc_info;
124
125 /*
126  * This is the implementation specific mixer information.
127  */
128 struct waveartist_mixer_info {
129         unsigned int    supported_devs;    /* Supported devices */
130         unsigned int    recording_devs;    /* Recordable devies */
131         unsigned int    stereo_devs;       /* Stereo devices    */
132
133         unsigned int    (*select_input)(wavnc_info *, unsigned int,
134                                         unsigned char *, unsigned char *);
135         int             (*decode_mixer)(wavnc_info *, int,
136                                         unsigned char, unsigned char);
137         int             (*get_mixer)(wavnc_info *, int);
138 };
139
140 typedef struct wavnc_port_info {
141         int             open_mode;
142         int             speed;
143         int             channels;
144         int             audio_format;
145 } wavnc_port_info;
146
147 static int              nr_waveartist_devs;
148 static wavnc_info       adev_info[MAX_AUDIO_DEV];
149 static spinlock_t       waveartist_lock = SPIN_LOCK_UNLOCKED;
150
151 #ifndef CONFIG_ARCH_NETWINDER
152 #define machine_is_netwinder() 0
153 #else
154 static struct timer_list vnc_timer;
155 static void vnc_configure_mixer(wavnc_info *devc, unsigned int input_mask);
156 static int vnc_private_ioctl(int dev, unsigned int cmd, caddr_t arg);
157 static void vnc_slider_tick(unsigned long data);
158 #endif
159
160 static inline void
161 waveartist_set_ctlr(struct address_info *hw, unsigned char clear, unsigned char set)
162 {
163         unsigned int ctlr_port = hw->io_base + CTLR;
164
165         clear = ~clear & inb(ctlr_port);
166
167         outb(clear | set, ctlr_port);
168 }
169
170 /* Toggle IRQ acknowledge line
171  */
172 static inline void
173 waveartist_iack(wavnc_info *devc)
174 {
175         unsigned int ctlr_port = devc->hw.io_base + CTLR;
176         int old_ctlr;
177
178         old_ctlr = inb(ctlr_port) & ~IRQ_ACK;
179
180         outb(old_ctlr | IRQ_ACK, ctlr_port);
181         outb(old_ctlr, ctlr_port);
182 }
183
184 static inline int
185 waveartist_sleep(int timeout_ms)
186 {
187         unsigned int timeout = timeout_ms * 10 * HZ / 100;
188
189         do {
190                 set_current_state(TASK_INTERRUPTIBLE);
191                 timeout = schedule_timeout(timeout);
192         } while (timeout);
193
194         return 0;
195 }
196
197 static int
198 waveartist_reset(wavnc_info *devc)
199 {
200         struct address_info *hw = &devc->hw;
201         unsigned int timeout, res = -1;
202
203         waveartist_set_ctlr(hw, -1, RESET);
204         waveartist_sleep(2);
205         waveartist_set_ctlr(hw, RESET, 0);
206
207         timeout = 500;
208         do {
209                 mdelay(2);
210
211                 if (inb(hw->io_base + STATR) & CMD_RF) {
212                         res = inw(hw->io_base + CMDR);
213                         if (res == 0x55aa)
214                                 break;
215                 }
216         } while (--timeout);
217
218         if (timeout == 0) {
219                 printk(KERN_WARNING "WaveArtist: reset timeout ");
220                 if (res != (unsigned int)-1)
221                         printk("(res=%04X)", res);
222                 printk("\n");
223                 return 1;
224         }
225         return 0;
226 }
227
228 /* Helper function to send and receive words
229  * from WaveArtist.  It handles all the handshaking
230  * and can send or receive multiple words.
231  */
232 static int
233 waveartist_cmd(wavnc_info *devc,
234                 int nr_cmd, unsigned int *cmd,
235                 int nr_resp, unsigned int *resp)
236 {
237         unsigned int io_base = devc->hw.io_base;
238         unsigned int timed_out = 0;
239         unsigned int i;
240
241         if (debug_flg & DEBUG_CMD) {
242                 printk("waveartist_cmd: cmd=");
243
244                 for (i = 0; i < nr_cmd; i++)
245                         printk("%04X ", cmd[i]);
246
247                 printk("\n");
248         }
249
250         if (inb(io_base + STATR) & CMD_RF) {
251                 int old_data;
252
253                 /* flush the port
254                  */
255
256                 old_data = inw(io_base + CMDR);
257
258                 if (debug_flg & DEBUG_CMD)
259                         printk("flushed %04X...", old_data);
260
261                 udelay(10);
262         }
263
264         for (i = 0; !timed_out && i < nr_cmd; i++) {
265                 int count;
266
267                 for (count = 5000; count; count--)
268                         if (inb(io_base + STATR) & CMD_WE)
269                                 break;
270
271                 if (!count)
272                         timed_out = 1;
273                 else
274                         outw(cmd[i], io_base + CMDR);
275         }
276
277         for (i = 0; !timed_out && i < nr_resp; i++) {
278                 int count;
279
280                 for (count = 5000; count; count--)
281                         if (inb(io_base + STATR) & CMD_RF)
282                                 break;
283
284                 if (!count)
285                         timed_out = 1;
286                 else
287                         resp[i] = inw(io_base + CMDR);
288         }
289
290         if (debug_flg & DEBUG_CMD) {
291                 if (!timed_out) {
292                         printk("waveartist_cmd: resp=");
293
294                         for (i = 0; i < nr_resp; i++)
295                                 printk("%04X ", resp[i]);
296
297                         printk("\n");
298                 } else
299                         printk("waveartist_cmd: timed out\n");
300         }
301
302         return timed_out ? 1 : 0;
303 }
304
305 /*
306  * Send one command word
307  */
308 static inline int
309 waveartist_cmd1(wavnc_info *devc, unsigned int cmd)
310 {
311         return waveartist_cmd(devc, 1, &cmd, 0, NULL);
312 }
313
314 /*
315  * Send one command, receive one word
316  */
317 static inline unsigned int
318 waveartist_cmd1_r(wavnc_info *devc, unsigned int cmd)
319 {
320         unsigned int ret;
321
322         waveartist_cmd(devc, 1, &cmd, 1, &ret);
323
324         return ret;
325 }
326
327 /*
328  * Send a double command, receive one
329  * word (and throw it away)
330  */
331 static inline int
332 waveartist_cmd2(wavnc_info *devc, unsigned int cmd, unsigned int arg)
333 {
334         unsigned int vals[2];
335
336         vals[0] = cmd;
337         vals[1] = arg;
338
339         return waveartist_cmd(devc, 2, vals, 1, vals);
340 }
341
342 /*
343  * Send a triple command
344  */
345 static inline int
346 waveartist_cmd3(wavnc_info *devc, unsigned int cmd,
347                 unsigned int arg1, unsigned int arg2)
348 {
349         unsigned int vals[3];
350
351         vals[0] = cmd;
352         vals[1] = arg1;
353         vals[2] = arg2;
354
355         return waveartist_cmd(devc, 3, vals, 0, NULL);
356 }
357
358 static int
359 waveartist_getrev(wavnc_info *devc, char *rev)
360 {
361         unsigned int temp[2];
362         unsigned int cmd = WACMD_GETREV;
363
364         waveartist_cmd(devc, 1, &cmd, 2, temp);
365
366         rev[0] = temp[0] >> 8;
367         rev[1] = temp[0] & 255;
368         rev[2] = '\0';
369
370         return temp[0];
371 }
372
373 static void waveartist_halt_output(int dev);
374 static void waveartist_halt_input(int dev);
375 static void waveartist_halt(int dev);
376 static void waveartist_trigger(int dev, int state);
377
378 static int
379 waveartist_open(int dev, int mode)
380 {
381         wavnc_info      *devc;
382         wavnc_port_info *portc;
383         unsigned long   flags;
384
385         if (dev < 0 || dev >= num_audiodevs)
386                 return -ENXIO;
387
388         devc  = (wavnc_info *) audio_devs[dev]->devc;
389         portc = (wavnc_port_info *) audio_devs[dev]->portc;
390
391         spin_lock_irqsave(&waveartist_lock, flags);
392         if (portc->open_mode || (devc->open_mode & mode)) {
393                 spin_unlock_irqrestore(&waveartist_lock, flags);
394                 return -EBUSY;
395         }
396
397         devc->audio_mode  = 0;
398         devc->open_mode  |= mode;
399         portc->open_mode  = mode;
400         waveartist_trigger(dev, 0);
401
402         if (mode & OPEN_READ)
403                 devc->record_dev = dev;
404         if (mode & OPEN_WRITE)
405                 devc->playback_dev = dev;
406         spin_unlock_irqrestore(&waveartist_lock, flags);
407
408         return 0;
409 }
410
411 static void
412 waveartist_close(int dev)
413 {
414         wavnc_info      *devc = (wavnc_info *) audio_devs[dev]->devc;
415         wavnc_port_info *portc = (wavnc_port_info *) audio_devs[dev]->portc;
416         unsigned long   flags;
417
418         spin_lock_irqsave(&waveartist_lock, flags);
419
420         waveartist_halt(dev);
421
422         devc->audio_mode = 0;
423         devc->open_mode &= ~portc->open_mode;
424         portc->open_mode = 0;
425
426         spin_unlock_irqrestore(&waveartist_lock, flags);
427 }
428
429 static void
430 waveartist_output_block(int dev, unsigned long buf, int __count, int intrflag)
431 {
432         wavnc_port_info *portc = (wavnc_port_info *) audio_devs[dev]->portc;
433         wavnc_info      *devc = (wavnc_info *) audio_devs[dev]->devc;
434         unsigned long   flags;
435         unsigned int    count = __count; 
436
437         if (debug_flg & DEBUG_OUT)
438                 printk("waveartist: output block, buf=0x%lx, count=0x%x...\n",
439                         buf, count);
440         /*
441          * 16 bit data
442          */
443         if (portc->audio_format & (AFMT_S16_LE | AFMT_S16_BE))
444                 count >>= 1;
445
446         if (portc->channels > 1)
447                 count >>= 1;
448
449         count -= 1;
450
451         if (devc->audio_mode & PCM_ENABLE_OUTPUT &&
452             audio_devs[dev]->flags & DMA_AUTOMODE &&
453             intrflag &&
454             count == devc->xfer_count) {
455                 devc->audio_mode |= PCM_ENABLE_OUTPUT;
456                 return; /*
457                          * Auto DMA mode on. No need to react
458                          */
459         }
460
461         spin_lock_irqsave(&waveartist_lock, flags);
462
463         /*
464          * set sample count
465          */
466         waveartist_cmd2(devc, WACMD_OUTPUTSIZE, count);
467
468         devc->xfer_count = count;
469         devc->audio_mode |= PCM_ENABLE_OUTPUT;
470
471         spin_unlock_irqrestore(&waveartist_lock, flags);
472 }
473
474 static void
475 waveartist_start_input(int dev, unsigned long buf, int __count, int intrflag)
476 {
477         wavnc_port_info *portc = (wavnc_port_info *) audio_devs[dev]->portc;
478         wavnc_info      *devc = (wavnc_info *) audio_devs[dev]->devc;
479         unsigned long   flags;
480         unsigned int    count = __count;
481
482         if (debug_flg & DEBUG_IN)
483                 printk("waveartist: start input, buf=0x%lx, count=0x%x...\n",
484                         buf, count);
485
486         if (portc->audio_format & (AFMT_S16_LE | AFMT_S16_BE))  /* 16 bit data */
487                 count >>= 1;
488
489         if (portc->channels > 1)
490                 count >>= 1;
491
492         count -= 1;
493
494         if (devc->audio_mode & PCM_ENABLE_INPUT &&
495             audio_devs[dev]->flags & DMA_AUTOMODE &&
496             intrflag &&
497             count == devc->xfer_count) {
498                 devc->audio_mode |= PCM_ENABLE_INPUT;
499                 return; /*
500                          * Auto DMA mode on. No need to react
501                          */
502         }
503
504         spin_lock_irqsave(&waveartist_lock, flags);
505
506         /*
507          * set sample count
508          */
509         waveartist_cmd2(devc, WACMD_INPUTSIZE, count);
510
511         devc->xfer_count = count;
512         devc->audio_mode |= PCM_ENABLE_INPUT;
513
514         spin_unlock_irqrestore(&waveartist_lock, flags);
515 }
516
517 static int
518 waveartist_ioctl(int dev, unsigned int cmd, caddr_t arg)
519 {
520         return -EINVAL;
521 }
522
523 static unsigned int
524 waveartist_get_speed(wavnc_port_info *portc)
525 {
526         unsigned int speed;
527
528         /*
529          * program the speed, channels, bits
530          */
531         if (portc->speed == 8000)
532                 speed = 0x2E71;
533         else if (portc->speed == 11025)
534                 speed = 0x4000;
535         else if (portc->speed == 22050)
536                 speed = 0x8000;
537         else if (portc->speed == 44100)
538                 speed = 0x0;
539         else {
540                 /*
541                  * non-standard - just calculate
542                  */
543                 speed = portc->speed << 16;
544
545                 speed = (speed / 44100) & 65535;
546         }
547
548         return speed;
549 }
550
551 static unsigned int
552 waveartist_get_bits(wavnc_port_info *portc)
553 {
554         unsigned int bits;
555
556         if (portc->audio_format == AFMT_S16_LE)
557                 bits = 1;
558         else if (portc->audio_format == AFMT_S8)
559                 bits = 0;
560         else
561                 bits = 2;       //default AFMT_U8
562
563         return bits;
564 }
565
566 static int
567 waveartist_prepare_for_input(int dev, int bsize, int bcount)
568 {
569         unsigned long   flags;
570         wavnc_info      *devc = (wavnc_info *) audio_devs[dev]->devc;
571         wavnc_port_info *portc = (wavnc_port_info *) audio_devs[dev]->portc;
572         unsigned int    speed, bits;
573
574         if (devc->audio_mode)
575                 return 0;
576
577         speed = waveartist_get_speed(portc);
578         bits  = waveartist_get_bits(portc);
579
580         spin_lock_irqsave(&waveartist_lock, flags);
581
582         if (waveartist_cmd2(devc, WACMD_INPUTFORMAT, bits))
583                 printk(KERN_WARNING "waveartist: error setting the "
584                        "record format to %d\n", portc->audio_format);
585
586         if (waveartist_cmd2(devc, WACMD_INPUTCHANNELS, portc->channels))
587                 printk(KERN_WARNING "waveartist: error setting record "
588                        "to %d channels\n", portc->channels);
589
590         /*
591          * write cmd SetSampleSpeedTimeConstant
592          */
593         if (waveartist_cmd2(devc, WACMD_INPUTSPEED, speed))
594                 printk(KERN_WARNING "waveartist: error setting the record "
595                        "speed to %dHz.\n", portc->speed);
596
597         if (waveartist_cmd2(devc, WACMD_INPUTDMA, 1))
598                 printk(KERN_WARNING "waveartist: error setting the record "
599                        "data path to 0x%X\n", 1);
600
601         if (waveartist_cmd2(devc, WACMD_INPUTFORMAT, bits))
602                 printk(KERN_WARNING "waveartist: error setting the record "
603                        "format to %d\n", portc->audio_format);
604
605         devc->xfer_count = 0;
606         spin_unlock_irqrestore(&waveartist_lock, flags);
607         waveartist_halt_input(dev);
608
609         if (debug_flg & DEBUG_INTR) {
610                 printk("WA CTLR reg: 0x%02X.\n",
611                        inb(devc->hw.io_base + CTLR));
612                 printk("WA STAT reg: 0x%02X.\n",
613                        inb(devc->hw.io_base + STATR));
614                 printk("WA IRQS reg: 0x%02X.\n",
615                        inb(devc->hw.io_base + IRQSTAT));
616         }
617
618         return 0;
619 }
620
621 static int
622 waveartist_prepare_for_output(int dev, int bsize, int bcount)
623 {
624         unsigned long   flags;
625         wavnc_info      *devc = (wavnc_info *) audio_devs[dev]->devc;
626         wavnc_port_info *portc = (wavnc_port_info *) audio_devs[dev]->portc;
627         unsigned int    speed, bits;
628
629         /*
630          * program the speed, channels, bits
631          */
632         speed = waveartist_get_speed(portc);
633         bits  = waveartist_get_bits(portc);
634
635         spin_lock_irqsave(&waveartist_lock, flags);
636
637         if (waveartist_cmd2(devc, WACMD_OUTPUTSPEED, speed) &&
638             waveartist_cmd2(devc, WACMD_OUTPUTSPEED, speed))
639                 printk(KERN_WARNING "waveartist: error setting the playback "
640                        "speed to %dHz.\n", portc->speed);
641
642         if (waveartist_cmd2(devc, WACMD_OUTPUTCHANNELS, portc->channels))
643                 printk(KERN_WARNING "waveartist: error setting the playback "
644                        "to %d channels\n", portc->channels);
645
646         if (waveartist_cmd2(devc, WACMD_OUTPUTDMA, 0))
647                 printk(KERN_WARNING "waveartist: error setting the playback "
648                        "data path to 0x%X\n", 0);
649
650         if (waveartist_cmd2(devc, WACMD_OUTPUTFORMAT, bits))
651                 printk(KERN_WARNING "waveartist: error setting the playback "
652                        "format to %d\n", portc->audio_format);
653
654         devc->xfer_count = 0;
655         spin_unlock_irqrestore(&waveartist_lock, flags);
656         waveartist_halt_output(dev);
657
658         if (debug_flg & DEBUG_INTR) {
659                 printk("WA CTLR reg: 0x%02X.\n",inb(devc->hw.io_base + CTLR));
660                 printk("WA STAT reg: 0x%02X.\n",inb(devc->hw.io_base + STATR));
661                 printk("WA IRQS reg: 0x%02X.\n",inb(devc->hw.io_base + IRQSTAT));
662         }
663
664         return 0;
665 }
666
667 static void
668 waveartist_halt(int dev)
669 {
670         wavnc_port_info *portc = (wavnc_port_info *) audio_devs[dev]->portc;
671         wavnc_info      *devc;
672
673         if (portc->open_mode & OPEN_WRITE)
674                 waveartist_halt_output(dev);
675
676         if (portc->open_mode & OPEN_READ)
677                 waveartist_halt_input(dev);
678
679         devc = (wavnc_info *) audio_devs[dev]->devc;
680         devc->audio_mode = 0;
681 }
682
683 static void
684 waveartist_halt_input(int dev)
685 {
686         wavnc_info      *devc = (wavnc_info *) audio_devs[dev]->devc;
687         unsigned long   flags;
688
689         spin_lock_irqsave(&waveartist_lock, flags);
690
691         /*
692          * Stop capture
693          */
694         waveartist_cmd1(devc, WACMD_INPUTSTOP);
695
696         devc->audio_mode &= ~PCM_ENABLE_INPUT;
697
698         /*
699          * Clear interrupt by toggling
700          * the IRQ_ACK bit in CTRL
701          */
702         if (inb(devc->hw.io_base + STATR) & IRQ_REQ)
703                 waveartist_iack(devc);
704
705 //      devc->audio_mode &= ~PCM_ENABLE_INPUT;
706
707         spin_unlock_irqrestore(&waveartist_lock, flags);
708 }
709
710 static void
711 waveartist_halt_output(int dev)
712 {
713         wavnc_info      *devc = (wavnc_info *) audio_devs[dev]->devc;
714         unsigned long   flags;
715
716         spin_lock_irqsave(&waveartist_lock, flags);
717
718         waveartist_cmd1(devc, WACMD_OUTPUTSTOP);
719
720         devc->audio_mode &= ~PCM_ENABLE_OUTPUT;
721
722         /*
723          * Clear interrupt by toggling
724          * the IRQ_ACK bit in CTRL
725          */
726         if (inb(devc->hw.io_base + STATR) & IRQ_REQ)
727                 waveartist_iack(devc);
728
729 //      devc->audio_mode &= ~PCM_ENABLE_OUTPUT;
730
731         spin_unlock_irqrestore(&waveartist_lock, flags);
732 }
733
734 static void
735 waveartist_trigger(int dev, int state)
736 {
737         wavnc_info      *devc = (wavnc_info *) audio_devs[dev]->devc;
738         wavnc_port_info *portc = (wavnc_port_info *) audio_devs[dev]->portc;
739         unsigned long   flags;
740
741         if (debug_flg & DEBUG_TRIGGER) {
742                 printk("wavnc: audio trigger ");
743                 if (state & PCM_ENABLE_INPUT)
744                         printk("in ");
745                 if (state & PCM_ENABLE_OUTPUT)
746                         printk("out");
747                 printk("\n");
748         }
749
750         spin_lock_irqsave(&waveartist_lock, flags);
751
752         state &= devc->audio_mode;
753
754         if (portc->open_mode & OPEN_READ &&
755             state & PCM_ENABLE_INPUT)
756                 /*
757                  * enable ADC Data Transfer to PC
758                  */
759                 waveartist_cmd1(devc, WACMD_INPUTSTART);
760
761         if (portc->open_mode & OPEN_WRITE &&
762             state & PCM_ENABLE_OUTPUT)
763                 /*
764                  * enable DAC data transfer from PC
765                  */
766                 waveartist_cmd1(devc, WACMD_OUTPUTSTART);
767
768         spin_unlock_irqrestore(&waveartist_lock, flags);
769 }
770
771 static int
772 waveartist_set_speed(int dev, int arg)
773 {
774         wavnc_port_info *portc = (wavnc_port_info *) audio_devs[dev]->portc;
775
776         if (arg <= 0)
777                 return portc->speed;
778
779         if (arg < 5000)
780                 arg = 5000;
781         if (arg > 44100)
782                 arg = 44100;
783
784         portc->speed = arg;
785         return portc->speed;
786
787 }
788
789 static short
790 waveartist_set_channels(int dev, short arg)
791 {
792         wavnc_port_info *portc = (wavnc_port_info *) audio_devs[dev]->portc;
793
794         if (arg != 1 && arg != 2)
795                 return portc->channels;
796
797         portc->channels = arg;
798         return arg;
799 }
800
801 static unsigned int
802 waveartist_set_bits(int dev, unsigned int arg)
803 {
804         wavnc_port_info *portc = (wavnc_port_info *) audio_devs[dev]->portc;
805
806         if (arg == 0)
807                 return portc->audio_format;
808
809         if ((arg != AFMT_U8) && (arg != AFMT_S16_LE) && (arg != AFMT_S8))
810                 arg = AFMT_U8;
811
812         portc->audio_format = arg;
813
814         return arg;
815 }
816
817 static struct audio_driver waveartist_audio_driver = {
818         owner:                  THIS_MODULE,
819         open:                   waveartist_open,
820         close:                  waveartist_close,
821         output_block:           waveartist_output_block,
822         start_input:            waveartist_start_input,
823         ioctl:                  waveartist_ioctl,
824         prepare_for_input:      waveartist_prepare_for_input,
825         prepare_for_output:     waveartist_prepare_for_output,
826         halt_io:                waveartist_halt,
827         halt_input:             waveartist_halt_input,
828         halt_output:            waveartist_halt_output,
829         trigger:                waveartist_trigger,
830         set_speed:              waveartist_set_speed,
831         set_bits:               waveartist_set_bits,
832         set_channels:           waveartist_set_channels
833 };
834
835
836 static void
837 waveartist_intr(int irq, void *dev_id, struct pt_regs *regs)
838 {
839         wavnc_info *devc = (wavnc_info *)dev_id;
840         int        irqstatus, status;
841
842         irqstatus = inb(devc->hw.io_base + IRQSTAT);
843         status    = inb(devc->hw.io_base + STATR);
844
845         if (debug_flg & DEBUG_INTR)
846                 printk("waveartist_intr: stat=%02x, irqstat=%02x\n",
847                        status, irqstatus);
848
849         if (status & IRQ_REQ)   /* Clear interrupt */
850                 waveartist_iack(devc);
851         else
852                 printk(KERN_WARNING "waveartist: unexpected interrupt\n");
853
854         if (irqstatus & 0x01) {
855                 int temp = 1;
856
857                 /* PCM buffer done
858                  */
859                 if ((status & DMA0) && (devc->audio_mode & PCM_ENABLE_OUTPUT)) {
860                         DMAbuf_outputintr(devc->playback_dev, 1);
861                         temp = 0;
862                 }
863                 if ((status & DMA1) && (devc->audio_mode & PCM_ENABLE_INPUT)) {
864                         DMAbuf_inputintr(devc->record_dev);
865                         temp = 0;
866                 }
867                 if (temp)       //default:
868                         printk(KERN_WARNING "waveartist: Unknown interrupt\n");
869         }
870         if (irqstatus & 0x2)
871                 // We do not use SB mode natively...
872                 printk(KERN_WARNING "waveartist: Unexpected SB interrupt...\n");
873 }
874
875 /* -------------------------------------------------------------------------
876  * Mixer stuff
877  */
878 struct mix_ent {
879         unsigned char   reg_l;
880         unsigned char   reg_r;
881         unsigned char   shift;
882         unsigned char   max;
883 };
884
885 static const struct mix_ent mix_devs[SOUND_MIXER_NRDEVICES] = {
886         { 2, 6, 1,  7 }, /* SOUND_MIXER_VOLUME   */
887         { 0, 0, 0,  0 }, /* SOUND_MIXER_BASS     */
888         { 0, 0, 0,  0 }, /* SOUND_MIXER_TREBLE   */
889         { 0, 0, 0,  0 }, /* SOUND_MIXER_SYNTH    */
890         { 0, 0, 0,  0 }, /* SOUND_MIXER_PCM      */
891         { 0, 0, 0,  0 }, /* SOUND_MIXER_SPEAKER  */
892         { 0, 4, 6, 31 }, /* SOUND_MIXER_LINE     */
893         { 2, 6, 4,  3 }, /* SOUND_MIXER_MIC      */
894         { 0, 0, 0,  0 }, /* SOUND_MIXER_CD       */
895         { 0, 0, 0,  0 }, /* SOUND_MIXER_IMIX     */
896         { 0, 0, 0,  0 }, /* SOUND_MIXER_ALTPCM   */
897 #if 0
898         { 3, 7, 0, 10 }, /* SOUND_MIXER_RECLEV   */
899         { 0, 0, 0,  0 }, /* SOUND_MIXER_IGAIN    */
900 #else
901         { 0, 0, 0,  0 }, /* SOUND_MIXER_RECLEV   */
902         { 3, 7, 0,  7 }, /* SOUND_MIXER_IGAIN    */
903 #endif
904         { 0, 0, 0,  0 }, /* SOUND_MIXER_OGAIN    */
905         { 0, 4, 1, 31 }, /* SOUND_MIXER_LINE1    */
906         { 1, 5, 6, 31 }, /* SOUND_MIXER_LINE2    */
907         { 0, 0, 0,  0 }, /* SOUND_MIXER_LINE3    */
908         { 0, 0, 0,  0 }, /* SOUND_MIXER_DIGITAL1 */
909         { 0, 0, 0,  0 }, /* SOUND_MIXER_DIGITAL2 */
910         { 0, 0, 0,  0 }, /* SOUND_MIXER_DIGITAL3 */
911         { 0, 0, 0,  0 }, /* SOUND_MIXER_PHONEIN  */
912         { 0, 0, 0,  0 }, /* SOUND_MIXER_PHONEOUT */
913         { 0, 0, 0,  0 }, /* SOUND_MIXER_VIDEO    */
914         { 0, 0, 0,  0 }, /* SOUND_MIXER_RADIO    */
915         { 0, 0, 0,  0 }  /* SOUND_MIXER_MONITOR  */
916 };
917
918 static void
919 waveartist_mixer_update(wavnc_info *devc, int whichDev)
920 {
921         unsigned int lev_left, lev_right;
922
923         lev_left  = devc->levels[whichDev] & 0xff;
924         lev_right = devc->levels[whichDev] >> 8;
925
926         if (lev_left > 100)
927                 lev_left = 100;
928         if (lev_right > 100)
929                 lev_right = 100;
930
931 #define SCALE(lev,max)  ((lev) * (max) / 100)
932
933         if (machine_is_netwinder() && whichDev == SOUND_MIXER_PHONEOUT)
934                 whichDev = SOUND_MIXER_VOLUME;
935
936         if (mix_devs[whichDev].reg_l || mix_devs[whichDev].reg_r) {
937                 const struct mix_ent *mix = mix_devs + whichDev;
938                 unsigned int mask, left, right;
939
940                 mask = mix->max << mix->shift;
941                 lev_left  = SCALE(lev_left,  mix->max) << mix->shift;
942                 lev_right = SCALE(lev_right, mix->max) << mix->shift;
943
944                 /* read left setting */
945                 left  = waveartist_cmd1_r(devc, WACMD_GET_LEVEL |
946                                                mix->reg_l << 8);
947
948                 /* read right setting */
949                 right = waveartist_cmd1_r(devc, WACMD_GET_LEVEL |
950                                                 mix->reg_r << 8);
951
952                 left  = (left  & ~mask) | (lev_left  & mask);
953                 right = (right & ~mask) | (lev_right & mask);
954
955                 /* write left,right back */
956                 waveartist_cmd3(devc, WACMD_SET_MIXER, left, right);
957         } else {
958                 switch(whichDev) {
959                 case SOUND_MIXER_PCM:
960                         waveartist_cmd3(devc, WACMD_SET_LEVEL,
961                                         SCALE(lev_left,  32767),
962                                         SCALE(lev_right, 32767));
963                         break;
964
965                 case SOUND_MIXER_SYNTH:
966                         waveartist_cmd3(devc, 0x0100 | WACMD_SET_LEVEL,
967                                         SCALE(lev_left,  32767),
968                                         SCALE(lev_right, 32767));
969                         break;
970                 }
971         }
972 }
973
974 /*
975  * Set the ADC MUX to the specified values.  We do NOT do any
976  * checking of the values passed, since we assume that the
977  * relevant *_select_input function has done that for us.
978  */
979 static void
980 waveartist_set_adc_mux(wavnc_info *devc, char left_dev, char right_dev)
981 {
982         unsigned int reg_08, reg_09;
983
984         reg_08 = waveartist_cmd1_r(devc, WACMD_GET_LEVEL | 0x0800);
985         reg_09 = waveartist_cmd1_r(devc, WACMD_GET_LEVEL | 0x0900);
986
987         reg_08 = (reg_08 & ~0x3f) | right_dev << 3 | left_dev;
988
989         waveartist_cmd3(devc, WACMD_SET_MIXER, reg_08, reg_09);
990 }
991
992 /*
993  * Decode a recording mask into a mixer selection as follows:
994  *
995  *     OSS Source       WA Source       Actual source
996  *  SOUND_MASK_IMIX     Mixer           Mixer output (same as AD1848)
997  *  SOUND_MASK_LINE     Line            Line in
998  *  SOUND_MASK_LINE1    Aux 1           Aux 1 in
999  *  SOUND_MASK_LINE2    Aux 2           Aux 2 in
1000  *  SOUND_MASK_MIC      Mic             Microphone
1001  */
1002 static unsigned int
1003 waveartist_select_input(wavnc_info *devc, unsigned int recmask,
1004                         unsigned char *dev_l, unsigned char *dev_r)
1005 {
1006         unsigned int recdev = ADC_MUX_NONE;
1007
1008         if (recmask & SOUND_MASK_IMIX) {
1009                 recmask = SOUND_MASK_IMIX;
1010                 recdev = ADC_MUX_MIXER;
1011         } else if (recmask & SOUND_MASK_LINE2) {
1012                 recmask = SOUND_MASK_LINE2;
1013                 recdev = ADC_MUX_AUX2;
1014         } else if (recmask & SOUND_MASK_LINE1) {
1015                 recmask = SOUND_MASK_LINE1;
1016                 recdev = ADC_MUX_AUX1;
1017         } else if (recmask & SOUND_MASK_LINE) {
1018                 recmask = SOUND_MASK_LINE;
1019                 recdev = ADC_MUX_LINE;
1020         } else if (recmask & SOUND_MASK_MIC) {
1021                 recmask = SOUND_MASK_MIC;
1022                 recdev = ADC_MUX_MIC;
1023         }
1024
1025         *dev_l = *dev_r = recdev;
1026
1027         return recmask;
1028 }
1029
1030 static int
1031 waveartist_decode_mixer(wavnc_info *devc, int dev, unsigned char lev_l,
1032                         unsigned char lev_r)
1033 {
1034         switch (dev) {
1035         case SOUND_MIXER_VOLUME:
1036         case SOUND_MIXER_SYNTH:
1037         case SOUND_MIXER_PCM:
1038         case SOUND_MIXER_LINE:
1039         case SOUND_MIXER_MIC:
1040         case SOUND_MIXER_IGAIN:
1041         case SOUND_MIXER_LINE1:
1042         case SOUND_MIXER_LINE2:
1043                 devc->levels[dev] = lev_l | lev_r << 8;
1044                 break;
1045
1046         case SOUND_MIXER_IMIX:
1047                 break;
1048
1049         default:
1050                 dev = -EINVAL;
1051                 break;
1052         }
1053
1054         return dev;
1055 }
1056
1057 static int waveartist_get_mixer(wavnc_info *devc, int dev)
1058 {
1059         return devc->levels[dev];
1060 }
1061
1062 static const struct waveartist_mixer_info waveartist_mixer = {
1063         supported_devs: SUPPORTED_MIXER_DEVICES | SOUND_MASK_IGAIN,
1064         recording_devs: SOUND_MASK_LINE  | SOUND_MASK_MIC   |
1065                         SOUND_MASK_LINE1 | SOUND_MASK_LINE2 |
1066                         SOUND_MASK_IMIX,
1067         stereo_devs:    (SUPPORTED_MIXER_DEVICES | SOUND_MASK_IGAIN) & ~
1068                         (SOUND_MASK_SPEAKER | SOUND_MASK_IMIX),
1069         select_input:   waveartist_select_input,
1070         decode_mixer:   waveartist_decode_mixer,
1071         get_mixer:      waveartist_get_mixer,
1072 };
1073
1074 static void
1075 waveartist_set_recmask(wavnc_info *devc, unsigned int recmask)
1076 {
1077         unsigned char dev_l, dev_r;
1078
1079         recmask &= devc->mix->recording_devs;
1080
1081         /*
1082          * If more than one recording device selected,
1083          * disable the device that is currently in use.
1084          */
1085         if (hweight32(recmask) > 1)
1086                 recmask &= ~devc->recmask;
1087
1088         /*
1089          * Translate the recording device mask into
1090          * the ADC multiplexer settings.
1091          */
1092         devc->recmask = devc->mix->select_input(devc, recmask,
1093                                                 &dev_l, &dev_r);
1094
1095         waveartist_set_adc_mux(devc, dev_l, dev_r);
1096 }
1097
1098 static int
1099 waveartist_set_mixer(wavnc_info *devc, int dev, unsigned int level)
1100 {
1101         unsigned int lev_left  = level & 0x00ff;
1102         unsigned int lev_right = (level & 0xff00) >> 8;
1103
1104         if (lev_left > 100)
1105                 lev_left = 100;
1106         if (lev_right > 100)
1107                 lev_right = 100;
1108
1109         /*
1110          * Mono devices have their right volume forced to their
1111          * left volume.  (from ALSA driver OSS emulation).
1112          */
1113         if (!(devc->mix->stereo_devs & (1 << dev)))
1114                 lev_right = lev_left;
1115
1116         dev = devc->mix->decode_mixer(devc, dev, lev_left, lev_right);
1117
1118         if (dev >= 0)
1119                 waveartist_mixer_update(devc, dev);
1120
1121         return dev < 0 ? dev : 0;
1122 }
1123
1124 static int
1125 waveartist_mixer_ioctl(int dev, unsigned int cmd, caddr_t arg)
1126 {
1127         wavnc_info *devc = (wavnc_info *)audio_devs[dev]->devc;
1128         int ret = 0, val, nr;
1129
1130         /*
1131          * All SOUND_MIXER_* ioctls use type 'M'
1132          */
1133         if (((cmd >> 8) & 255) != 'M')
1134                 return -ENOIOCTLCMD;
1135
1136 #ifdef CONFIG_ARCH_NETWINDER
1137         if (machine_is_netwinder()) {
1138                 ret = vnc_private_ioctl(dev, cmd, arg);
1139                 if (ret != -ENOIOCTLCMD)
1140                         return ret;
1141                 else
1142                         ret = 0;
1143         }
1144 #endif
1145
1146         nr = cmd & 0xff;
1147
1148         if (_SIOC_DIR(cmd) & _SIOC_WRITE) {
1149                 if (get_user(val, (int *)arg))
1150                         return -EFAULT;
1151
1152                 switch (nr) {
1153                 case SOUND_MIXER_RECSRC:
1154                         waveartist_set_recmask(devc, val);
1155                         break;
1156
1157                 default:
1158                         ret = -EINVAL;
1159                         if (nr < SOUND_MIXER_NRDEVICES &&
1160                             devc->mix->supported_devs & (1 << nr))
1161                                 ret = waveartist_set_mixer(devc, nr, val);
1162                 }
1163         }
1164
1165         if (ret == 0 && _SIOC_DIR(cmd) & _SIOC_READ) {
1166                 ret = -EINVAL;
1167
1168                 switch (nr) {
1169                 case SOUND_MIXER_RECSRC:
1170                         ret = devc->recmask;
1171                         break;
1172
1173                 case SOUND_MIXER_DEVMASK:
1174                         ret = devc->mix->supported_devs;
1175                         break;
1176
1177                 case SOUND_MIXER_STEREODEVS:
1178                         ret = devc->mix->stereo_devs;
1179                         break;
1180
1181                 case SOUND_MIXER_RECMASK:
1182                         ret = devc->mix->recording_devs;
1183                         break;
1184
1185                 case SOUND_MIXER_CAPS:
1186                         ret = SOUND_CAP_EXCL_INPUT;
1187                         break;
1188
1189                 default:
1190                         if (nr < SOUND_MIXER_NRDEVICES)
1191                                 ret = devc->mix->get_mixer(devc, nr);
1192                         break;
1193                 }
1194
1195                 if (ret >= 0)
1196                         ret = put_user(ret, (int *)arg) ? -EFAULT : 0;
1197         }
1198
1199         return ret;
1200 }
1201
1202 static struct mixer_operations waveartist_mixer_operations =
1203 {
1204         owner:  THIS_MODULE,
1205         id:     "WaveArtist",
1206         name:   "WaveArtist",
1207         ioctl:  waveartist_mixer_ioctl
1208 };
1209
1210 static void
1211 waveartist_mixer_reset(wavnc_info *devc)
1212 {
1213         int i;
1214
1215         if (debug_flg & DEBUG_MIXER)
1216                 printk("%s: mixer_reset\n", devc->hw.name);
1217
1218         /*
1219          * reset mixer cmd
1220          */
1221         waveartist_cmd1(devc, WACMD_RST_MIXER);
1222
1223         /*
1224          * set input for ADC to come from 'quiet'
1225          * turn on default modes
1226          */
1227         waveartist_cmd3(devc, WACMD_SET_MIXER, 0x9800, 0xa836);
1228
1229         /*
1230          * set mixer input select to none, RX filter gains 0 dB
1231          */
1232         waveartist_cmd3(devc, WACMD_SET_MIXER, 0x4c00, 0x8c00);
1233
1234         /*
1235          * set bit 0 reg 2 to 1 - unmute MonoOut
1236          */
1237         waveartist_cmd3(devc, WACMD_SET_MIXER, 0x2801, 0x6800);
1238
1239         /* set default input device = internal mic
1240          * current recording device = none
1241          */
1242         waveartist_set_recmask(devc, 0);
1243
1244         for (i = 0; i < SOUND_MIXER_NRDEVICES; i++)
1245                 waveartist_mixer_update(devc, i);
1246 }
1247
1248 static int __init waveartist_init(wavnc_info *devc)
1249 {
1250         wavnc_port_info *portc;
1251         char rev[3], dev_name[64];
1252         int my_dev;
1253
1254         if (waveartist_reset(devc))
1255                 return -ENODEV;
1256
1257         sprintf(dev_name, "%s (%s", devc->hw.name, devc->chip_name);
1258
1259         if (waveartist_getrev(devc, rev)) {
1260                 strcat(dev_name, " rev. ");
1261                 strcat(dev_name, rev);
1262         }
1263         strcat(dev_name, ")");
1264
1265         conf_printf2(dev_name, devc->hw.io_base, devc->hw.irq,
1266                      devc->hw.dma, devc->hw.dma2);
1267
1268         portc = (wavnc_port_info *)kmalloc(sizeof(wavnc_port_info), GFP_KERNEL);
1269         if (portc == NULL)
1270                 goto nomem;
1271
1272         memset(portc, 0, sizeof(wavnc_port_info));
1273
1274         my_dev = sound_install_audiodrv(AUDIO_DRIVER_VERSION, dev_name,
1275                         &waveartist_audio_driver, sizeof(struct audio_driver),
1276                         devc->audio_flags, AFMT_U8 | AFMT_S16_LE | AFMT_S8,
1277                         devc, devc->hw.dma, devc->hw.dma2);
1278
1279         if (my_dev < 0)
1280                 goto free;
1281
1282         audio_devs[my_dev]->portc = portc;
1283
1284         waveartist_mixer_reset(devc);
1285
1286         /*
1287          * clear any pending interrupt
1288          */
1289         waveartist_iack(devc);
1290
1291         if (request_irq(devc->hw.irq, waveartist_intr, 0, devc->hw.name, devc) < 0) {
1292                 printk(KERN_ERR "%s: IRQ %d in use\n",
1293                         devc->hw.name, devc->hw.irq);
1294                 goto uninstall;
1295         }
1296
1297         if (sound_alloc_dma(devc->hw.dma, devc->hw.name)) {
1298                 printk(KERN_ERR "%s: Can't allocate DMA%d\n",
1299                         devc->hw.name, devc->hw.dma);
1300                 goto uninstall_irq;
1301         }
1302
1303         if (devc->hw.dma != devc->hw.dma2 && devc->hw.dma2 != NO_DMA)
1304                 if (sound_alloc_dma(devc->hw.dma2, devc->hw.name)) {
1305                         printk(KERN_ERR "%s: can't allocate DMA%d\n",
1306                                 devc->hw.name, devc->hw.dma2);
1307                         goto uninstall_dma;
1308                 }
1309
1310         waveartist_set_ctlr(&devc->hw, 0, DMA1_IE | DMA0_IE);
1311
1312         audio_devs[my_dev]->mixer_dev =
1313                 sound_install_mixer(MIXER_DRIVER_VERSION,
1314                                 dev_name,
1315                                 &waveartist_mixer_operations,
1316                                 sizeof(struct mixer_operations),
1317                                 devc);
1318
1319         return my_dev;
1320
1321 uninstall_dma:
1322         sound_free_dma(devc->hw.dma);
1323
1324 uninstall_irq:
1325         free_irq(devc->hw.irq, devc);
1326
1327 uninstall:
1328         sound_unload_audiodev(my_dev);
1329
1330 free:
1331         kfree(portc);
1332
1333 nomem:
1334         return -1;
1335 }
1336
1337 static int __init probe_waveartist(struct address_info *hw_config)
1338 {
1339         wavnc_info *devc = &adev_info[nr_waveartist_devs];
1340
1341         if (nr_waveartist_devs >= MAX_AUDIO_DEV) {
1342                 printk(KERN_WARNING "waveartist: too many audio devices\n");
1343                 return 0;
1344         }
1345
1346         if (check_region(hw_config->io_base, 15))  {
1347                 printk(KERN_WARNING "WaveArtist: I/O port conflict\n");
1348                 return 0;
1349         }
1350
1351         if (hw_config->irq > 15 || hw_config->irq < 0) {
1352                 printk(KERN_WARNING "WaveArtist: Bad IRQ %d\n",
1353                        hw_config->irq);
1354                 return 0;
1355         }
1356
1357         if (hw_config->dma != 3) {
1358                 printk(KERN_WARNING "WaveArtist: Bad DMA %d\n",
1359                        hw_config->dma);
1360                 return 0;
1361         }
1362
1363         hw_config->name = "WaveArtist";
1364         devc->hw = *hw_config;
1365         devc->open_mode = 0;
1366         devc->chip_name = "RWA-010";
1367
1368         return 1;
1369 }
1370
1371 static void __init
1372 attach_waveartist(struct address_info *hw, const struct waveartist_mixer_info *mix)
1373 {
1374         wavnc_info *devc = &adev_info[nr_waveartist_devs];
1375
1376         /*
1377          * NOTE! If irq < 0, there is another driver which has allocated the
1378          *   IRQ so that this driver doesn't need to allocate/deallocate it.
1379          *   The actually used IRQ is ABS(irq).
1380          */
1381         devc->hw = *hw;
1382         devc->hw.irq = (hw->irq > 0) ? hw->irq : 0;
1383         devc->open_mode = 0;
1384         devc->playback_dev = 0;
1385         devc->record_dev = 0;
1386         devc->audio_flags = DMA_AUTOMODE;
1387         devc->levels = levels;
1388
1389         if (hw->dma != hw->dma2 && hw->dma2 != NO_DMA)
1390                 devc->audio_flags |= DMA_DUPLEX;
1391
1392         request_region(hw->io_base, 15, devc->hw.name);
1393
1394         devc->mix = mix;
1395         devc->dev_no = waveartist_init(devc);
1396
1397         if (devc->dev_no < 0)
1398                 release_region(hw->io_base, 15);
1399         else {
1400 #ifdef CONFIG_ARCH_NETWINDER
1401                 if (machine_is_netwinder()) {
1402                         init_timer(&vnc_timer);
1403                         vnc_timer.function = vnc_slider_tick;
1404                         vnc_timer.expires  = jiffies;
1405                         vnc_timer.data     = nr_waveartist_devs;
1406                         add_timer(&vnc_timer);
1407
1408                         vnc_configure_mixer(devc, 0);
1409
1410                         devc->no_autoselect = 1;
1411                 }
1412 #endif
1413                 nr_waveartist_devs += 1;
1414         }
1415 }
1416
1417 static void __exit unload_waveartist(struct address_info *hw)
1418 {
1419         wavnc_info *devc = NULL;
1420         int i;
1421
1422         for (i = 0; i < nr_waveartist_devs; i++)
1423                 if (hw->io_base == adev_info[i].hw.io_base) {
1424                         devc = adev_info + i;
1425                         break;
1426                 }
1427
1428         if (devc != NULL) {
1429                 int mixer;
1430
1431 #ifdef CONFIG_ARCH_NETWINDER
1432                 if (machine_is_netwinder())
1433                         del_timer(&vnc_timer);
1434 #endif
1435
1436                 release_region(devc->hw.io_base, 15);
1437
1438                 waveartist_set_ctlr(&devc->hw, DMA1_IE|DMA0_IE, 0);
1439
1440                 if (devc->hw.irq >= 0)
1441                         free_irq(devc->hw.irq, devc);
1442
1443                 sound_free_dma(devc->hw.dma);
1444
1445                 if (devc->hw.dma != devc->hw.dma2 &&
1446                     devc->hw.dma2 != NO_DMA)
1447                         sound_free_dma(devc->hw.dma2);
1448
1449                 mixer = audio_devs[devc->dev_no]->mixer_dev;
1450
1451                 if (mixer >= 0)
1452                         sound_unload_mixerdev(mixer);
1453
1454                 if (devc->dev_no >= 0)
1455                         sound_unload_audiodev(devc->dev_no);
1456
1457                 nr_waveartist_devs -= 1;
1458
1459                 for (; i < nr_waveartist_devs; i++)
1460                         adev_info[i] = adev_info[i + 1];
1461         } else
1462                 printk(KERN_WARNING "waveartist: can't find device "
1463                        "to unload\n");
1464 }
1465
1466 #ifdef CONFIG_ARCH_NETWINDER
1467
1468 /*
1469  * Rebel.com Netwinder specifics...
1470  */
1471
1472 #include <asm/hardware/dec21285.h>
1473  
1474 #define VNC_TIMER_PERIOD (HZ/4) //check slider 4 times/sec
1475
1476 #define MIXER_PRIVATE3_RESET    0x53570000
1477 #define MIXER_PRIVATE3_READ     0x53570001
1478 #define MIXER_PRIVATE3_WRITE    0x53570002
1479
1480 #define VNC_MUTE_INTERNAL_SPKR  0x01    //the sw mute on/off control bit
1481 #define VNC_MUTE_LINE_OUT       0x10
1482 #define VNC_PHONE_DETECT        0x20
1483 #define VNC_HANDSET_DETECT      0x40
1484 #define VNC_DISABLE_AUTOSWITCH  0x80
1485
1486 extern spinlock_t gpio_lock;
1487
1488 static inline void
1489 vnc_mute_spkr(wavnc_info *devc)
1490 {
1491         unsigned long flags;
1492
1493         spin_lock_irqsave(&gpio_lock, flags);
1494         cpld_modify(CPLD_UNMUTE, devc->spkr_mute_state ? 0 : CPLD_UNMUTE);
1495         spin_unlock_irqrestore(&gpio_lock, flags);
1496 }
1497
1498 static void
1499 vnc_mute_lout(wavnc_info *devc)
1500 {
1501         unsigned int left, right;
1502
1503         left  = waveartist_cmd1_r(devc, WACMD_GET_LEVEL);
1504         right = waveartist_cmd1_r(devc, WACMD_GET_LEVEL | 0x400);
1505
1506         if (devc->line_mute_state) {
1507                 left &= ~1;
1508                 right &= ~1;
1509         } else {
1510                 left |= 1;
1511                 right |= 1;
1512         }
1513         waveartist_cmd3(devc, WACMD_SET_MIXER, left, right);
1514                 
1515 }
1516
1517 static int
1518 vnc_volume_slider(wavnc_info *devc)
1519 {
1520         static signed int old_slider_volume;
1521         unsigned long flags;
1522         signed int volume = 255;
1523
1524         *CSR_TIMER1_LOAD = 0x00ffffff;
1525
1526         save_flags(flags);
1527         cli();
1528
1529         outb(0xFF, 0x201);
1530         *CSR_TIMER1_CNTL = TIMER_CNTL_ENABLE | TIMER_CNTL_DIV1;
1531
1532         while (volume && (inb(0x201) & 0x01))
1533                 volume--;
1534
1535         *CSR_TIMER1_CNTL = 0;
1536
1537         restore_flags(flags);
1538         
1539         volume = 0x00ffffff - *CSR_TIMER1_VALUE;
1540
1541
1542 #ifndef REVERSE
1543         volume = 150 - (volume >> 5);
1544 #else
1545         volume = (volume >> 6) - 25;
1546 #endif
1547
1548         if (volume < 0)
1549                 volume = 0;
1550
1551         if (volume > 100)
1552                 volume = 100;
1553
1554         /*
1555          * slider quite often reads +-8, so debounce this random noise
1556          */
1557         if (abs(volume - old_slider_volume) > 7) {
1558                 old_slider_volume = volume;
1559
1560                 if (debug_flg & DEBUG_MIXER)
1561                         printk(KERN_DEBUG "Slider volume: %d.\n", volume);
1562         }
1563
1564         return old_slider_volume;
1565 }
1566
1567 /*
1568  * Decode a recording mask into a mixer selection on the NetWinder
1569  * as follows:
1570  *
1571  *     OSS Source       WA Source       Actual source
1572  *  SOUND_MASK_IMIX     Mixer           Mixer output (same as AD1848)
1573  *  SOUND_MASK_LINE     Line            Line in
1574  *  SOUND_MASK_LINE1    Left Mic        Handset
1575  *  SOUND_MASK_PHONEIN  Left Aux        Telephone microphone
1576  *  SOUND_MASK_MIC      Right Mic       Builtin microphone
1577  */
1578 static unsigned int
1579 netwinder_select_input(wavnc_info *devc, unsigned int recmask,
1580                        unsigned char *dev_l, unsigned char *dev_r)
1581 {
1582         unsigned int recdev_l = ADC_MUX_NONE, recdev_r = ADC_MUX_NONE;
1583
1584         if (recmask & SOUND_MASK_IMIX) {
1585                 recmask = SOUND_MASK_IMIX;
1586                 recdev_l = ADC_MUX_MIXER;
1587                 recdev_r = ADC_MUX_MIXER;
1588         } else if (recmask & SOUND_MASK_LINE) {
1589                 recmask = SOUND_MASK_LINE;
1590                 recdev_l = ADC_MUX_LINE;
1591                 recdev_r = ADC_MUX_LINE;
1592         } else if (recmask & SOUND_MASK_LINE1) {
1593                 recmask = SOUND_MASK_LINE1;
1594                 waveartist_cmd1(devc, WACMD_SET_MONO); /* left */
1595                 recdev_l = ADC_MUX_MIC;
1596                 recdev_r = ADC_MUX_NONE;
1597         } else if (recmask & SOUND_MASK_PHONEIN) {
1598                 recmask = SOUND_MASK_PHONEIN;
1599                 waveartist_cmd1(devc, WACMD_SET_MONO); /* left */
1600                 recdev_l = ADC_MUX_AUX1;
1601                 recdev_r = ADC_MUX_NONE;
1602         } else if (recmask & SOUND_MASK_MIC) {
1603                 recmask = SOUND_MASK_MIC;
1604                 waveartist_cmd1(devc, WACMD_SET_MONO | 0x100);  /* right */
1605                 recdev_l = ADC_MUX_NONE;
1606                 recdev_r = ADC_MUX_MIC;
1607         }
1608
1609         *dev_l = recdev_l;
1610         *dev_r = recdev_r;
1611
1612         return recmask;
1613 }
1614
1615 static int
1616 netwinder_decode_mixer(wavnc_info *devc, int dev, unsigned char lev_l,
1617                        unsigned char lev_r)
1618 {
1619         switch (dev) {
1620         case SOUND_MIXER_VOLUME:
1621         case SOUND_MIXER_SYNTH:
1622         case SOUND_MIXER_PCM:
1623         case SOUND_MIXER_LINE:
1624         case SOUND_MIXER_IGAIN:
1625                 devc->levels[dev] = lev_l | lev_r << 8;
1626                 break;
1627
1628         case SOUND_MIXER_MIC:           /* right mic only */
1629                 devc->levels[SOUND_MIXER_MIC] &= 0xff;
1630                 devc->levels[SOUND_MIXER_MIC] |= lev_l << 8;
1631                 break;
1632
1633         case SOUND_MIXER_LINE1:         /* left mic only  */
1634                 devc->levels[SOUND_MIXER_MIC] &= 0xff00;
1635                 devc->levels[SOUND_MIXER_MIC] |= lev_l;
1636                 dev = SOUND_MIXER_MIC;
1637                 break;
1638
1639         case SOUND_MIXER_PHONEIN:       /* left aux only  */
1640                 devc->levels[SOUND_MIXER_LINE1] = lev_l;
1641                 dev = SOUND_MIXER_LINE1;
1642                 break;
1643
1644         case SOUND_MIXER_IMIX:
1645         case SOUND_MIXER_PHONEOUT:
1646                 break;
1647
1648         default:
1649                 dev = -EINVAL;
1650                 break;
1651         }
1652         return dev;
1653 }
1654
1655 static int netwinder_get_mixer(wavnc_info *devc, int dev)
1656 {
1657         int levels;
1658
1659         switch (dev) {
1660         case SOUND_MIXER_VOLUME:
1661         case SOUND_MIXER_SYNTH:
1662         case SOUND_MIXER_PCM:
1663         case SOUND_MIXER_LINE:
1664         case SOUND_MIXER_IGAIN:
1665                 levels = devc->levels[dev];
1666                 break;
1667
1668         case SOUND_MIXER_MIC:           /* builtin mic: right mic only */
1669                 levels = devc->levels[SOUND_MIXER_MIC] >> 8;
1670                 levels |= levels << 8;
1671                 break;
1672
1673         case SOUND_MIXER_LINE1:         /* handset mic: left mic only */
1674                 levels = devc->levels[SOUND_MIXER_MIC] & 0xff;
1675                 levels |= levels << 8;
1676                 break;
1677
1678         case SOUND_MIXER_PHONEIN:       /* phone mic: left aux1 only */
1679                 levels = devc->levels[SOUND_MIXER_LINE1] & 0xff;
1680                 levels |= levels << 8;
1681                 break;
1682
1683         default:
1684                 levels = 0;
1685         }
1686
1687         return levels;
1688 }
1689
1690 /*
1691  * Waveartist specific mixer information.
1692  */
1693 static const struct waveartist_mixer_info netwinder_mixer = {
1694         supported_devs: SOUND_MASK_VOLUME  | SOUND_MASK_SYNTH   |
1695                         SOUND_MASK_PCM     | SOUND_MASK_SPEAKER |
1696                         SOUND_MASK_LINE    | SOUND_MASK_MIC     |
1697                         SOUND_MASK_IMIX    | SOUND_MASK_LINE1   |
1698                         SOUND_MASK_PHONEIN | SOUND_MASK_PHONEOUT|
1699                         SOUND_MASK_IGAIN,
1700
1701         recording_devs: SOUND_MASK_LINE    | SOUND_MASK_MIC     |
1702                         SOUND_MASK_IMIX    | SOUND_MASK_LINE1   |
1703                         SOUND_MASK_PHONEIN,
1704
1705         stereo_devs:    SOUND_MASK_VOLUME  | SOUND_MASK_SYNTH   |
1706                         SOUND_MASK_PCM     | SOUND_MASK_LINE    |
1707                         SOUND_MASK_IMIX    | SOUND_MASK_IGAIN,
1708
1709         select_input:   netwinder_select_input,
1710         decode_mixer:   netwinder_decode_mixer,
1711         get_mixer:      netwinder_get_mixer,
1712 };
1713
1714 static void
1715 vnc_configure_mixer(wavnc_info *devc, unsigned int recmask)
1716 {
1717         if (!devc->no_autoselect) {
1718                 if (devc->handset_detect) {
1719                         recmask = SOUND_MASK_LINE1;
1720                         devc->spkr_mute_state = devc->line_mute_state = 1;
1721                 } else if (devc->telephone_detect) {
1722                         recmask = SOUND_MASK_PHONEIN;
1723                         devc->spkr_mute_state = devc->line_mute_state = 1;
1724                 } else {
1725                         /* unless someone has asked for LINE-IN,
1726                          * we default to MIC
1727                          */
1728                         if ((devc->recmask & SOUND_MASK_LINE) == 0)
1729                                 devc->recmask = SOUND_MASK_MIC;
1730                         devc->spkr_mute_state = devc->line_mute_state = 0;
1731                 }
1732                 vnc_mute_spkr(devc);
1733                 vnc_mute_lout(devc);
1734
1735                 if (recmask != devc->recmask)
1736                         waveartist_set_recmask(devc, recmask);
1737         }
1738 }
1739
1740 static int
1741 vnc_slider(wavnc_info *devc)
1742 {
1743         signed int slider_volume;
1744         unsigned int temp, old_hs, old_td;
1745
1746         /*
1747          * read the "buttons" state.
1748          *  Bit 4 = 0 means handset present
1749          *  Bit 5 = 1 means phone offhook
1750          */
1751         temp = inb(0x201);
1752
1753         old_hs = devc->handset_detect;
1754         old_td = devc->telephone_detect;
1755
1756         devc->handset_detect = !(temp & 0x10);
1757         devc->telephone_detect = !!(temp & 0x20);
1758
1759         if (!devc->no_autoselect &&
1760             (old_hs != devc->handset_detect ||
1761              old_td != devc->telephone_detect))
1762                 vnc_configure_mixer(devc, devc->recmask);
1763
1764         slider_volume = vnc_volume_slider(devc);
1765
1766         /*
1767          * If we're using software controlled volume, and
1768          * the slider moves by more than 20%, then we
1769          * switch back to slider controlled volume.
1770          */
1771         if (abs(devc->slider_vol - slider_volume) > 20)
1772                 devc->use_slider = 1;
1773
1774         /*
1775          * use only left channel
1776          */
1777         temp = levels[SOUND_MIXER_VOLUME] & 0xFF;
1778
1779         if (slider_volume != temp && devc->use_slider) {
1780                 devc->slider_vol = slider_volume;
1781
1782                 waveartist_set_mixer(devc, SOUND_MIXER_VOLUME,
1783                         slider_volume | slider_volume << 8);
1784
1785                 return 1;
1786         }
1787
1788         return 0;
1789 }
1790
1791 static void
1792 vnc_slider_tick(unsigned long data)
1793 {
1794         int next_timeout;
1795
1796         if (vnc_slider(adev_info + data))
1797                 next_timeout = 5;       // mixer reported change
1798         else
1799                 next_timeout = VNC_TIMER_PERIOD;
1800
1801         mod_timer(&vnc_timer, jiffies + next_timeout);
1802 }
1803
1804 static int
1805 vnc_private_ioctl(int dev, unsigned int cmd, caddr_t arg)
1806 {
1807         wavnc_info *devc = (wavnc_info *)audio_devs[dev]->devc;
1808         int val;
1809
1810         switch (cmd) {
1811         case SOUND_MIXER_PRIVATE1:
1812         {
1813                 u_int prev_spkr_mute, prev_line_mute, prev_auto_state;
1814                 int val;
1815
1816                 if (get_user(val, (int *)arg))
1817                         return -EFAULT;
1818
1819                 /* check if parameter is logical */
1820                 if (val & ~(VNC_MUTE_INTERNAL_SPKR |
1821                             VNC_MUTE_LINE_OUT |
1822                             VNC_DISABLE_AUTOSWITCH))
1823                         return -EINVAL;
1824
1825                 prev_auto_state = devc->no_autoselect;
1826                 prev_spkr_mute  = devc->spkr_mute_state;
1827                 prev_line_mute  = devc->line_mute_state;
1828
1829                 devc->no_autoselect   = (val & VNC_DISABLE_AUTOSWITCH) ? 1 : 0;
1830                 devc->spkr_mute_state = (val & VNC_MUTE_INTERNAL_SPKR) ? 1 : 0;
1831                 devc->line_mute_state = (val & VNC_MUTE_LINE_OUT) ? 1 : 0;
1832
1833                 if (prev_spkr_mute != devc->spkr_mute_state)
1834                         vnc_mute_spkr(devc);
1835
1836                 if (prev_line_mute != devc->line_mute_state)
1837                         vnc_mute_lout(devc);
1838
1839                 if (prev_auto_state != devc->no_autoselect)
1840                         vnc_configure_mixer(devc, devc->recmask);
1841
1842                 return 0;
1843         }
1844
1845         case SOUND_MIXER_PRIVATE2:
1846                 if (get_user(val, (int *)arg))
1847                         return -EFAULT;
1848
1849                 switch (val) {
1850 #define VNC_SOUND_PAUSE         0x53    //to pause the DSP
1851 #define VNC_SOUND_RESUME        0x57    //to unpause the DSP
1852                 case VNC_SOUND_PAUSE:
1853                         waveartist_cmd1(devc, 0x16);
1854                         break;
1855
1856                 case VNC_SOUND_RESUME:
1857                         waveartist_cmd1(devc, 0x18);
1858                         break;
1859
1860                 default:
1861                         return -EINVAL;
1862                 }
1863                 return 0;
1864
1865         /* private ioctl to allow bulk access to waveartist */
1866         case SOUND_MIXER_PRIVATE3:
1867         {
1868                 unsigned long   flags;
1869                 int             mixer_reg[15], i, val;
1870
1871                 if (get_user(val, (int *)arg))
1872                         return -EFAULT;
1873                 if (copy_from_user(mixer_reg, (void *)val, sizeof(mixer_reg)))
1874                         return -EFAULT;
1875
1876                 switch (mixer_reg[14]) {
1877                 case MIXER_PRIVATE3_RESET:
1878                         waveartist_mixer_reset(devc);
1879                         break;
1880
1881                 case MIXER_PRIVATE3_WRITE:
1882                         waveartist_cmd3(devc, WACMD_SET_MIXER, mixer_reg[0], mixer_reg[4]);
1883                         waveartist_cmd3(devc, WACMD_SET_MIXER, mixer_reg[1], mixer_reg[5]);
1884                         waveartist_cmd3(devc, WACMD_SET_MIXER, mixer_reg[2], mixer_reg[6]);
1885                         waveartist_cmd3(devc, WACMD_SET_MIXER, mixer_reg[3], mixer_reg[7]);
1886                         waveartist_cmd3(devc, WACMD_SET_MIXER, mixer_reg[8], mixer_reg[9]);
1887
1888                         waveartist_cmd3(devc, WACMD_SET_LEVEL, mixer_reg[10], mixer_reg[11]);
1889                         waveartist_cmd3(devc, WACMD_SET_LEVEL, mixer_reg[12], mixer_reg[13]);
1890                         break;
1891
1892                 case MIXER_PRIVATE3_READ:
1893                         spin_lock_irqsave(&waveartist_lock, flags);
1894
1895                         for (i = 0x30; i < 14 << 8; i += 1 << 8)
1896                                 waveartist_cmd(devc, 1, &i, 1, mixer_reg + (i >> 8));
1897
1898                         spin_unlock_irqrestore(&waveartist_lock, flags);
1899
1900                         if (copy_to_user((void *)val, mixer_reg, sizeof(mixer_reg)))
1901                                 return -EFAULT;
1902                         break;
1903
1904                 default:
1905                         return -EINVAL;
1906                 }
1907                 return 0;
1908         }
1909
1910         /* read back the state from PRIVATE1 */
1911         case SOUND_MIXER_PRIVATE4:
1912                 val = (devc->spkr_mute_state  ? VNC_MUTE_INTERNAL_SPKR : 0) |
1913                       (devc->line_mute_state  ? VNC_MUTE_LINE_OUT      : 0) |
1914                       (devc->handset_detect   ? VNC_HANDSET_DETECT     : 0) |
1915                       (devc->telephone_detect ? VNC_PHONE_DETECT       : 0) |
1916                       (devc->no_autoselect    ? VNC_DISABLE_AUTOSWITCH : 0);
1917
1918                 return put_user(val, (int *)arg) ? -EFAULT : 0;
1919         }
1920
1921         if (_SIOC_DIR(cmd) & _SIOC_WRITE) {
1922                 /*
1923                  * special case for master volume: if we
1924                  * received this call - switch from hw
1925                  * volume control to a software volume
1926                  * control, till the hw volume is modified
1927                  * to signal that user wants to be back in
1928                  * hardware...
1929                  */
1930                 if ((cmd & 0xff) == SOUND_MIXER_VOLUME)
1931                         devc->use_slider = 0;
1932
1933                 /* speaker output            */
1934                 if ((cmd & 0xff) == SOUND_MIXER_SPEAKER) {
1935                         unsigned int val, l, r;
1936
1937                         if (get_user(val, (int *)arg))
1938                                 return -EFAULT;
1939
1940                         l = val & 0x7f;
1941                         r = (val & 0x7f00) >> 8;
1942                         val = (l + r) / 2;
1943                         devc->levels[SOUND_MIXER_SPEAKER] = val | (val << 8);
1944                         devc->spkr_mute_state = (val <= 50);
1945                         vnc_mute_spkr(devc);
1946                         return 0;
1947                 }
1948         }
1949
1950         return -ENOIOCTLCMD;
1951 }
1952
1953 #endif
1954
1955 static struct address_info cfg;
1956
1957 static int attached;
1958
1959 static int __initdata io = 0;
1960 static int __initdata irq = 0;
1961 static int __initdata dma = 0;
1962 static int __initdata dma2 = 0;
1963
1964
1965 static int __init init_waveartist(void)
1966 {
1967         const struct waveartist_mixer_info *mix;
1968
1969         if (!io && machine_is_netwinder()) {
1970                 /*
1971                  * The NetWinder WaveArtist is at a fixed address.
1972                  * If the user does not supply an address, use the
1973                  * well-known parameters.
1974                  */
1975                 io   = 0x250;
1976                 irq  = 12;
1977                 dma  = 3;
1978                 dma2 = 7;
1979         }
1980
1981         mix = &waveartist_mixer;
1982 #ifdef CONFIG_ARCH_NETWINDER
1983         if (machine_is_netwinder())
1984                 mix = &netwinder_mixer;
1985 #endif
1986
1987         cfg.io_base = io;
1988         cfg.irq = irq;
1989         cfg.dma = dma;
1990         cfg.dma2 = dma2;
1991
1992         if (!probe_waveartist(&cfg))
1993                 return -ENODEV;
1994
1995         attach_waveartist(&cfg, mix);
1996         attached = 1;
1997
1998         return 0;
1999 }
2000
2001 static void __exit cleanup_waveartist(void)
2002 {
2003         if (attached)
2004                 unload_waveartist(&cfg);
2005 }
2006
2007 module_init(init_waveartist);
2008 module_exit(cleanup_waveartist);
2009
2010 #ifndef MODULE
2011 static int __init setup_waveartist(char *str)
2012 {
2013         /* io, irq, dma, dma2 */
2014         int ints[5];
2015         
2016         str = get_options(str, ARRAY_SIZE(ints), ints);
2017         
2018         io      = ints[1];
2019         irq     = ints[2];
2020         dma     = ints[3];
2021         dma2    = ints[4];
2022
2023         return 1;
2024 }
2025 __setup("waveartist=", setup_waveartist);
2026 #endif
2027
2028 MODULE_DESCRIPTION("Rockwell WaveArtist RWA-010 sound driver");
2029 MODULE_PARM(io, "i");           /* IO base */
2030 MODULE_PARM(irq, "i");          /* IRQ */
2031 MODULE_PARM(dma, "i");          /* DMA */
2032 MODULE_PARM(dma2, "i");         /* DMA2 */
2033 MODULE_LICENSE("GPL");