Add the rt linux 4.1.3-rt3 as base
[kvmfornfv.git] / kernel / sound / oss / pas2_card.c
1 /*
2  * sound/oss/pas2_card.c
3  *
4  * Detection routine for the Pro Audio Spectrum cards.
5  */
6
7 #include <linux/init.h>
8 #include <linux/interrupt.h>
9 #include <linux/module.h>
10 #include <linux/spinlock.h>
11 #include "sound_config.h"
12
13 #include "pas2.h"
14 #include "sb.h"
15
16 static unsigned char dma_bits[] = {
17         4, 1, 2, 3, 0, 5, 6, 7
18 };
19
20 static unsigned char irq_bits[] = {
21         0, 0, 1, 2, 3, 4, 5, 6, 0, 1, 7, 8, 9, 0, 10, 11
22 };
23
24 static unsigned char sb_irq_bits[] = {
25         0x00, 0x00, 0x08, 0x10, 0x00, 0x18, 0x00, 0x20, 
26         0x00, 0x08, 0x28, 0x30, 0x38, 0, 0
27 };
28
29 static unsigned char sb_dma_bits[] = {
30         0x00, 0x40, 0x80, 0xC0, 0, 0, 0, 0
31 };
32
33 /*
34  * The Address Translation code is used to convert I/O register addresses to
35  * be relative to the given base -register
36  */
37
38 int             pas_translate_code = 0;
39 static int      pas_intr_mask;
40 static int      pas_irq;
41 static int      pas_sb_base;
42 DEFINE_SPINLOCK(pas_lock);
43 #ifndef CONFIG_PAS_JOYSTICK
44 static bool     joystick;
45 #else
46 static bool     joystick = 1;
47 #endif
48 #ifdef SYMPHONY_PAS
49 static bool     symphony = 1;
50 #else
51 static bool     symphony;
52 #endif
53 #ifdef BROKEN_BUS_CLOCK
54 static bool     broken_bus_clock = 1;
55 #else
56 static bool     broken_bus_clock;
57 #endif
58
59 static struct address_info cfg;
60 static struct address_info cfg2;
61
62 char            pas_model = 0;
63 static char    *pas_model_names[] = {
64         "", 
65         "Pro AudioSpectrum+", 
66         "CDPC", 
67         "Pro AudioSpectrum 16", 
68         "Pro AudioSpectrum 16D"
69 };
70
71 /*
72  * pas_read() and pas_write() are equivalents of inb and outb 
73  * These routines perform the I/O address translation required
74  * to support other than the default base address
75  */
76
77 unsigned char pas_read(int ioaddr)
78 {
79         return inb(ioaddr + pas_translate_code);
80 }
81
82 void pas_write(unsigned char data, int ioaddr)
83 {
84         outb((data), ioaddr + pas_translate_code);
85 }
86
87 /******************* Begin of the Interrupt Handler ********************/
88
89 static irqreturn_t pasintr(int irq, void *dev_id)
90 {
91         int             status;
92
93         status = pas_read(0x0B89);
94         pas_write(status, 0x0B89);      /* Clear interrupt */
95
96         if (status & 0x08)
97         {
98                   pas_pcm_interrupt(status, 1);
99                   status &= ~0x08;
100         }
101         if (status & 0x10)
102         {
103                   pas_midi_interrupt();
104                   status &= ~0x10;
105         }
106         return IRQ_HANDLED;
107 }
108
109 int pas_set_intr(int mask)
110 {
111         if (!mask)
112                 return 0;
113
114         pas_intr_mask |= mask;
115
116         pas_write(pas_intr_mask, 0x0B8B);
117         return 0;
118 }
119
120 int pas_remove_intr(int mask)
121 {
122         if (!mask)
123                 return 0;
124
125         pas_intr_mask &= ~mask;
126         pas_write(pas_intr_mask, 0x0B8B);
127
128         return 0;
129 }
130
131 /******************* End of the Interrupt handler **********************/
132
133 /******************* Begin of the Initialization Code ******************/
134
135 static int __init config_pas_hw(struct address_info *hw_config)
136 {
137         char            ok = 1;
138         unsigned        int_ptrs;       /* scsi/sound interrupt pointers */
139
140         pas_irq = hw_config->irq;
141
142         pas_write(0x00, 0x0B8B);
143         pas_write(0x36, 0x138B);
144         pas_write(0x36, 0x1388);
145         pas_write(0, 0x1388);
146         pas_write(0x74, 0x138B);
147         pas_write(0x74, 0x1389);
148         pas_write(0, 0x1389);
149
150         pas_write(0x80 | 0x40 | 0x20 | 1, 0x0B8A);
151         pas_write(0x80 | 0x20 | 0x10 | 0x08 | 0x01, 0xF8A);
152         pas_write(0x01 | 0x02 | 0x04 | 0x10     /*
153                                                  * |
154                                                  * 0x80
155                                                  */ , 0xB88);
156
157         pas_write(0x80 | (joystick ? 0x40 : 0), 0xF388);
158
159         if (pas_irq < 0 || pas_irq > 15)
160         {
161                 printk(KERN_ERR "PAS16: Invalid IRQ %d", pas_irq);
162                 hw_config->irq=-1;
163                 ok = 0;
164         }
165         else
166         {
167                 int_ptrs = pas_read(0xF38A);
168                 int_ptrs = (int_ptrs & 0xf0) | irq_bits[pas_irq];
169                 pas_write(int_ptrs, 0xF38A);
170                 if (!irq_bits[pas_irq])
171                 {
172                         printk(KERN_ERR "PAS16: Invalid IRQ %d", pas_irq);
173                         hw_config->irq=-1;
174                         ok = 0;
175                 }
176                 else
177                 {
178                         if (request_irq(pas_irq, pasintr, 0, "PAS16",hw_config) < 0) {
179                                 printk(KERN_ERR "PAS16: Cannot allocate IRQ %d\n",pas_irq);
180                                 hw_config->irq=-1;
181                                 ok = 0;
182                         }
183                 }
184         }
185
186         if (hw_config->dma < 0 || hw_config->dma > 7)
187         {
188                 printk(KERN_ERR "PAS16: Invalid DMA selection %d", hw_config->dma);
189                 hw_config->dma=-1;
190                 ok = 0;
191         }
192         else
193         {
194                 pas_write(dma_bits[hw_config->dma], 0xF389);
195                 if (!dma_bits[hw_config->dma])
196                 {
197                         printk(KERN_ERR "PAS16: Invalid DMA selection %d", hw_config->dma);
198                         hw_config->dma=-1;
199                         ok = 0;
200                 }
201                 else
202                 {
203                         if (sound_alloc_dma(hw_config->dma, "PAS16"))
204                         {
205                                 printk(KERN_ERR "pas2_card.c: Can't allocate DMA channel\n");
206                                 hw_config->dma=-1;
207                                 ok = 0;
208                         }
209                 }
210         }
211
212         /*
213          * This fixes the timing problems of the PAS due to the Symphony chipset
214          * as per Media Vision.  Only define this if your PAS doesn't work correctly.
215          */
216
217         if(symphony)
218         {
219                 outb((0x05), 0xa8);
220                 outb((0x60), 0xa9);
221         }
222
223         if(broken_bus_clock)
224                 pas_write(0x01 | 0x10 | 0x20 | 0x04, 0x8388);
225         else
226                 /*
227                  * pas_write(0x01, 0x8388);
228                  */
229                 pas_write(0x01 | 0x10 | 0x20, 0x8388);
230
231         pas_write(0x18, 0x838A);        /* ??? */
232         pas_write(0x20 | 0x01, 0x0B8A);         /* Mute off, filter = 17.897 kHz */
233         pas_write(8, 0xBF8A);
234
235         mix_write(0x80 | 5, 0x078B);
236         mix_write(5, 0x078B);
237
238         {
239                 struct address_info *sb_config;
240
241                 sb_config = &cfg2;
242                 if (sb_config->io_base)
243                 {
244                         unsigned char   irq_dma;
245
246                         /*
247                          * Turn on Sound Blaster compatibility
248                          * bit 1 = SB emulation
249                          * bit 0 = MPU401 emulation (CDPC only :-( )
250                          */
251                         
252                         pas_write(0x02, 0xF788);
253
254                         /*
255                          * "Emulation address"
256                          */
257                         
258                         pas_write((sb_config->io_base >> 4) & 0x0f, 0xF789);
259                         pas_sb_base = sb_config->io_base;
260
261                         if (!sb_dma_bits[sb_config->dma])
262                                 printk(KERN_ERR "PAS16 Warning: Invalid SB DMA %d\n\n", sb_config->dma);
263
264                         if (!sb_irq_bits[sb_config->irq])
265                                 printk(KERN_ERR "PAS16 Warning: Invalid SB IRQ %d\n\n", sb_config->irq);
266
267                         irq_dma = sb_dma_bits[sb_config->dma] |
268                                 sb_irq_bits[sb_config->irq];
269
270                         pas_write(irq_dma, 0xFB8A);
271                 }
272                 else
273                         pas_write(0x00, 0xF788);
274         }
275
276         if (!ok)
277                 printk(KERN_WARNING "PAS16: Driver not enabled\n");
278
279         return ok;
280 }
281
282 static int __init detect_pas_hw(struct address_info *hw_config)
283 {
284         unsigned char   board_id, foo;
285
286         /*
287          * WARNING: Setting an option like W:1 or so that disables warm boot reset
288          * of the card will screw up this detect code something fierce. Adding code
289          * to handle this means possibly interfering with other cards on the bus if
290          * you have something on base port 0x388. SO be forewarned.
291          */
292
293         outb((0xBC), 0x9A01);   /* Activate first board */
294         outb((hw_config->io_base >> 2), 0x9A01);        /* Set base address */
295         pas_translate_code = hw_config->io_base - 0x388;
296         pas_write(1, 0xBF88);   /* Select one wait states */
297
298         board_id = pas_read(0x0B8B);
299
300         if (board_id == 0xff)
301                 return 0;
302
303         /*
304          * We probably have a PAS-series board, now check for a PAS16-series board
305          * by trying to change the board revision bits. PAS16-series hardware won't
306          * let you do this - the bits are read-only.
307          */
308
309         foo = board_id ^ 0xe0;
310
311         pas_write(foo, 0x0B8B);
312         foo = pas_read(0x0B8B);
313         pas_write(board_id, 0x0B8B);
314
315         if (board_id != foo)
316                 return 0;
317
318         pas_model = pas_read(0xFF88);
319
320         return pas_model;
321 }
322
323 static void __init attach_pas_card(struct address_info *hw_config)
324 {
325         pas_irq = hw_config->irq;
326
327         if (detect_pas_hw(hw_config))
328         {
329
330                 if ((pas_model = pas_read(0xFF88)))
331                 {
332                         char            temp[100];
333
334                         if (pas_model < 0 ||
335                             pas_model >= ARRAY_SIZE(pas_model_names)) {
336                                 printk(KERN_ERR "pas2 unrecognized model.\n");
337                                 return;
338                         }
339                         sprintf(temp,
340                             "%s rev %d", pas_model_names[(int) pas_model],
341                                     pas_read(0x2789));
342                         conf_printf(temp, hw_config);
343                 }
344                 if (config_pas_hw(hw_config))
345                 {
346                         pas_pcm_init(hw_config);
347                         pas_midi_init();
348                         pas_init_mixer();
349                 }
350         }
351 }
352
353 static inline int __init probe_pas(struct address_info *hw_config)
354 {
355         return detect_pas_hw(hw_config);
356 }
357
358 static void __exit unload_pas(struct address_info *hw_config)
359 {
360         extern int pas_audiodev;
361         extern int pas2_mididev;
362
363         if (hw_config->dma>0)
364                 sound_free_dma(hw_config->dma);
365         if (hw_config->irq>0)
366                 free_irq(hw_config->irq, hw_config);
367
368         if(pas_audiodev!=-1)
369                 sound_unload_mixerdev(audio_devs[pas_audiodev]->mixer_dev);
370         if(pas2_mididev!=-1)
371                 sound_unload_mididev(pas2_mididev);
372         if(pas_audiodev!=-1)
373                 sound_unload_audiodev(pas_audiodev);
374 }
375
376 static int __initdata io        = -1;
377 static int __initdata irq       = -1;
378 static int __initdata dma       = -1;
379 static int __initdata dma16     = -1;   /* Set this for modules that need it */
380
381 static int __initdata sb_io     = 0;
382 static int __initdata sb_irq    = -1;
383 static int __initdata sb_dma    = -1;
384 static int __initdata sb_dma16  = -1;
385
386 module_param(io, int, 0);
387 module_param(irq, int, 0);
388 module_param(dma, int, 0);
389 module_param(dma16, int, 0);
390
391 module_param(sb_io, int, 0);
392 module_param(sb_irq, int, 0);
393 module_param(sb_dma, int, 0);
394 module_param(sb_dma16, int, 0);
395
396 module_param(joystick, bool, 0);
397 module_param(symphony, bool, 0);
398 module_param(broken_bus_clock, bool, 0);
399
400 MODULE_LICENSE("GPL");
401
402 static int __init init_pas2(void)
403 {
404         printk(KERN_INFO "Pro Audio Spectrum driver Copyright (C) by Hannu Savolainen 1993-1996\n");
405
406         cfg.io_base = io;
407         cfg.irq = irq;
408         cfg.dma = dma;
409         cfg.dma2 = dma16;
410
411         cfg2.io_base = sb_io;
412         cfg2.irq = sb_irq;
413         cfg2.dma = sb_dma;
414         cfg2.dma2 = sb_dma16;
415
416         if (cfg.io_base == -1 || cfg.dma == -1 || cfg.irq == -1) {
417                 printk(KERN_INFO "I/O, IRQ, DMA and type are mandatory\n");
418                 return -EINVAL;
419         }
420
421         if (!probe_pas(&cfg))
422                 return -ENODEV;
423         attach_pas_card(&cfg);
424
425         return 0;
426 }
427
428 static void __exit cleanup_pas2(void)
429 {
430         unload_pas(&cfg);
431 }
432
433 module_init(init_pas2);
434 module_exit(cleanup_pas2);
435
436 #ifndef MODULE
437 static int __init setup_pas2(char *str)
438 {
439         /* io, irq, dma, dma2, sb_io, sb_irq, sb_dma, sb_dma2 */
440         int ints[9];
441         
442         str = get_options(str, ARRAY_SIZE(ints), ints);
443
444         io      = ints[1];
445         irq     = ints[2];
446         dma     = ints[3];
447         dma16   = ints[4];
448
449         sb_io   = ints[5];
450         sb_irq  = ints[6];
451         sb_dma  = ints[7];
452         sb_dma16 = ints[8];
453
454         return 1;
455 }
456
457 __setup("pas2=", setup_pas2);
458 #endif