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1 /*
2  * sound/oss/sb_common.c
3  *
4  * Common routines for Sound Blaster compatible cards.
5  *
6  *
7  * Copyright (C) by Hannu Savolainen 1993-1997
8  *
9  * OSS/Free for Linux is distributed under the GNU GENERAL PUBLIC LICENSE (GPL)
10  * Version 2 (June 1991). See the "COPYING" file distributed with this software
11  * for more info.
12  *
13  *
14  * Daniel J. Rodriksson: Modified sbintr to handle 8 and 16 bit interrupts
15  *                       for full duplex support ( only sb16 by now )
16  * Rolf Fokkens:	 Added (BETA?) support for ES1887 chips.
17  * (fokkensr@vertis.nl)	 Which means: You can adjust the recording levels.
18  *
19  * 2000/01/18 - separated sb_card and sb_common -
20  * Jeff Garzik <jgarzik@pobox.com>
21  *
22  * 2000/09/18 - got rid of attach_uart401
23  * Arnaldo Carvalho de Melo <acme@conectiva.com.br>
24  *
25  * 2001/01/26 - replaced CLI/STI with spinlocks
26  * Chris Rankin <rankinc@zipworld.com.au>
27  */
28 
29 #include <linux/init.h>
30 #include <linux/interrupt.h>
31 #include <linux/module.h>
32 #include <linux/delay.h>
33 #include <linux/spinlock.h>
34 
35 #include "sound_config.h"
36 #include "sound_firmware.h"
37 
38 #include "mpu401.h"
39 
40 #include "sb_mixer.h"
41 #include "sb.h"
42 #include "sb_ess.h"
43 
44 /*
45  * global module flag
46  */
47 
48 int sb_be_quiet;
49 
50 static sb_devc *detected_devc;	/* For communication from probe to init */
51 static sb_devc *last_devc;	/* For MPU401 initialization */
52 
53 static unsigned char jazz_irq_bits[] = {
54 	0, 0, 2, 3, 0, 1, 0, 4, 0, 2, 5, 0, 0, 0, 0, 6
55 };
56 
57 static unsigned char jazz_dma_bits[] = {
58 	0, 1, 0, 2, 0, 3, 0, 4
59 };
60 
61 void *smw_free;
62 
63 /*
64  * Jazz16 chipset specific control variables
65  */
66 
67 static int jazz16_base;			/* Not detected */
68 static unsigned char jazz16_bits;	/* I/O relocation bits */
69 static DEFINE_SPINLOCK(jazz16_lock);
70 
71 /*
72  * Logitech Soundman Wave specific initialization code
73  */
74 
75 #ifdef SMW_MIDI0001_INCLUDED
76 #include "smw-midi0001.h"
77 #else
78 static unsigned char *smw_ucode;
79 static int      smw_ucodeLen;
80 
81 #endif
82 
83 static sb_devc *last_sb;		/* Last sb loaded */
84 
sb_dsp_command(sb_devc * devc,unsigned char val)85 int sb_dsp_command(sb_devc * devc, unsigned char val)
86 {
87 	int i;
88 	unsigned long limit;
89 
90 	limit = jiffies + HZ / 10;	/* Timeout */
91 
92 	/*
93 	 * Note! the i<500000 is an emergency exit. The sb_dsp_command() is sometimes
94 	 * called while interrupts are disabled. This means that the timer is
95 	 * disabled also. However the timeout situation is a abnormal condition.
96 	 * Normally the DSP should be ready to accept commands after just couple of
97 	 * loops.
98 	 */
99 
100 	for (i = 0; i < 500000 && (limit-jiffies)>0; i++)
101 	{
102 		if ((inb(DSP_STATUS) & 0x80) == 0)
103 		{
104 			outb((val), DSP_COMMAND);
105 			return 1;
106 		}
107 	}
108 	printk(KERN_WARNING "Sound Blaster:  DSP command(%x) timeout.\n", val);
109 	return 0;
110 }
111 
sb_dsp_get_byte(sb_devc * devc)112 int sb_dsp_get_byte(sb_devc * devc)
113 {
114 	int i;
115 
116 	for (i = 1000; i; i--)
117 	{
118 		if (inb(DSP_DATA_AVAIL) & 0x80)
119 			return inb(DSP_READ);
120 	}
121 	return 0xffff;
122 }
123 
sb_intr(sb_devc * devc)124 static void sb_intr (sb_devc *devc)
125 {
126 	int status;
127 	unsigned char   src = 0xff;
128 
129 	if (devc->model == MDL_SB16)
130 	{
131 		src = sb_getmixer(devc, IRQ_STAT);	/* Interrupt source register */
132 
133 		if (src & 4)						/* MPU401 interrupt */
134 			if(devc->midi_irq_cookie)
135 				uart401intr(devc->irq, devc->midi_irq_cookie);
136 
137 		if (!(src & 3))
138 			return;	/* Not a DSP interrupt */
139 	}
140 	if (devc->intr_active && (!devc->fullduplex || (src & 0x01)))
141 	{
142 		switch (devc->irq_mode)
143 		{
144 			case IMODE_OUTPUT:
145 				DMAbuf_outputintr(devc->dev, 1);
146 				break;
147 
148 			case IMODE_INPUT:
149 				DMAbuf_inputintr(devc->dev);
150 				break;
151 
152 			case IMODE_INIT:
153 				break;
154 
155 			case IMODE_MIDI:
156 				sb_midi_interrupt(devc);
157 				break;
158 
159 			default:
160 				/* printk(KERN_WARN "Sound Blaster: Unexpected interrupt\n"); */
161 				;
162 		}
163 	}
164 	else if (devc->intr_active_16 && (src & 0x02))
165 	{
166 		switch (devc->irq_mode_16)
167 		{
168 			case IMODE_OUTPUT:
169 				DMAbuf_outputintr(devc->dev, 1);
170 				break;
171 
172 			case IMODE_INPUT:
173 				DMAbuf_inputintr(devc->dev);
174 				break;
175 
176 			case IMODE_INIT:
177 				break;
178 
179 			default:
180 				/* printk(KERN_WARN "Sound Blaster: Unexpected interrupt\n"); */
181 				;
182 		}
183 	}
184 	/*
185 	 * Acknowledge interrupts
186 	 */
187 
188 	if (src & 0x01)
189 		status = inb(DSP_DATA_AVAIL);
190 
191 	if (devc->model == MDL_SB16 && src & 0x02)
192 		status = inb(DSP_DATA_AVL16);
193 }
194 
pci_intr(sb_devc * devc)195 static void pci_intr(sb_devc *devc)
196 {
197 	int src = inb(devc->pcibase+0x1A);
198 	src&=3;
199 	if(src)
200 		sb_intr(devc);
201 }
202 
sbintr(int irq,void * dev_id)203 static irqreturn_t sbintr(int irq, void *dev_id)
204 {
205 	sb_devc *devc = dev_id;
206 
207 	devc->irq_ok = 1;
208 
209 	switch (devc->model) {
210 	case MDL_ESSPCI:
211 		pci_intr (devc);
212 		break;
213 
214 	case MDL_ESS:
215 		ess_intr (devc);
216 		break;
217 	default:
218 		sb_intr (devc);
219 		break;
220 	}
221 	return IRQ_HANDLED;
222 }
223 
sb_dsp_reset(sb_devc * devc)224 int sb_dsp_reset(sb_devc * devc)
225 {
226 	int loopc;
227 
228 	DEB(printk("Entered sb_dsp_reset()\n"));
229 
230 	if (devc->model == MDL_ESS) return ess_dsp_reset (devc);
231 
232 	/* This is only for non-ESS chips */
233 
234 	outb(1, DSP_RESET);
235 
236 	udelay(10);
237 	outb(0, DSP_RESET);
238 	udelay(30);
239 
240 	for (loopc = 0; loopc < 1000 && !(inb(DSP_DATA_AVAIL) & 0x80); loopc++);
241 
242 	if (inb(DSP_READ) != 0xAA)
243 	{
244 		DDB(printk("sb: No response to RESET\n"));
245 		return 0;	/* Sorry */
246 	}
247 
248 	DEB(printk("sb_dsp_reset() OK\n"));
249 
250 	return 1;
251 }
252 
dsp_get_vers(sb_devc * devc)253 static void dsp_get_vers(sb_devc * devc)
254 {
255 	int i;
256 
257 	unsigned long   flags;
258 
259 	DDB(printk("Entered dsp_get_vers()\n"));
260 	spin_lock_irqsave(&devc->lock, flags);
261 	devc->major = devc->minor = 0;
262 	sb_dsp_command(devc, 0xe1);	/* Get version */
263 
264 	for (i = 100000; i; i--)
265 	{
266 		if (inb(DSP_DATA_AVAIL) & 0x80)
267 		{
268 			if (devc->major == 0)
269 				devc->major = inb(DSP_READ);
270 			else
271 			{
272 				devc->minor = inb(DSP_READ);
273 				break;
274 			}
275 		}
276 	}
277 	spin_unlock_irqrestore(&devc->lock, flags);
278 	DDB(printk("DSP version %d.%02d\n", devc->major, devc->minor));
279 }
280 
sb16_set_dma_hw(sb_devc * devc)281 static int sb16_set_dma_hw(sb_devc * devc)
282 {
283 	int bits;
284 
285 	if (devc->dma8 != 0 && devc->dma8 != 1 && devc->dma8 != 3)
286 	{
287 		printk(KERN_ERR "SB16: Invalid 8 bit DMA (%d)\n", devc->dma8);
288 		return 0;
289 	}
290 	bits = (1 << devc->dma8);
291 
292 	if (devc->dma16 >= 5 && devc->dma16 <= 7)
293 		bits |= (1 << devc->dma16);
294 
295 	sb_setmixer(devc, DMA_NR, bits);
296 	return 1;
297 }
298 
sb16_set_mpu_port(sb_devc * devc,struct address_info * hw_config)299 static void sb16_set_mpu_port(sb_devc * devc, struct address_info *hw_config)
300 {
301 	/*
302 	 * This routine initializes new MIDI port setup register of SB Vibra (CT2502).
303 	 */
304 	unsigned char   bits = sb_getmixer(devc, 0x84) & ~0x06;
305 
306 	switch (hw_config->io_base)
307 	{
308 		case 0x300:
309 			sb_setmixer(devc, 0x84, bits | 0x04);
310 			break;
311 
312 		case 0x330:
313 			sb_setmixer(devc, 0x84, bits | 0x00);
314 			break;
315 
316 		default:
317 			sb_setmixer(devc, 0x84, bits | 0x02);		/* Disable MPU */
318 			printk(KERN_ERR "SB16: Invalid MIDI I/O port %x\n", hw_config->io_base);
319 	}
320 }
321 
sb16_set_irq_hw(sb_devc * devc,int level)322 static int sb16_set_irq_hw(sb_devc * devc, int level)
323 {
324 	int ival;
325 
326 	switch (level)
327 	{
328 		case 5:
329 			ival = 2;
330 			break;
331 		case 7:
332 			ival = 4;
333 			break;
334 		case 9:
335 			ival = 1;
336 			break;
337 		case 10:
338 			ival = 8;
339 			break;
340 		default:
341 			printk(KERN_ERR "SB16: Invalid IRQ%d\n", level);
342 			return 0;
343 	}
344 	sb_setmixer(devc, IRQ_NR, ival);
345 	return 1;
346 }
347 
relocate_Jazz16(sb_devc * devc,struct address_info * hw_config)348 static void relocate_Jazz16(sb_devc * devc, struct address_info *hw_config)
349 {
350 	unsigned char bits = 0;
351 	unsigned long flags;
352 
353 	if (jazz16_base != 0 && jazz16_base != hw_config->io_base)
354 		return;
355 
356 	switch (hw_config->io_base)
357 	{
358 		case 0x220:
359 			bits = 1;
360 			break;
361 		case 0x240:
362 			bits = 2;
363 			break;
364 		case 0x260:
365 			bits = 3;
366 			break;
367 		default:
368 			return;
369 	}
370 	bits = jazz16_bits = bits << 5;
371 	jazz16_base = hw_config->io_base;
372 
373 	/*
374 	 *	Magic wake up sequence by writing to 0x201 (aka Joystick port)
375 	 */
376 	spin_lock_irqsave(&jazz16_lock, flags);
377 	outb((0xAF), 0x201);
378 	outb((0x50), 0x201);
379 	outb((bits), 0x201);
380 	spin_unlock_irqrestore(&jazz16_lock, flags);
381 }
382 
init_Jazz16(sb_devc * devc,struct address_info * hw_config)383 static int init_Jazz16(sb_devc * devc, struct address_info *hw_config)
384 {
385 	char name[100];
386 	/*
387 	 * First try to check that the card has Jazz16 chip. It identifies itself
388 	 * by returning 0x12 as response to DSP command 0xfa.
389 	 */
390 
391 	if (!sb_dsp_command(devc, 0xfa))
392 		return 0;
393 
394 	if (sb_dsp_get_byte(devc) != 0x12)
395 		return 0;
396 
397 	/*
398 	 * OK so far. Now configure the IRQ and DMA channel used by the card.
399 	 */
400 	if (hw_config->irq < 1 || hw_config->irq > 15 || jazz_irq_bits[hw_config->irq] == 0)
401 	{
402 		printk(KERN_ERR "Jazz16: Invalid interrupt (IRQ%d)\n", hw_config->irq);
403 		return 0;
404 	}
405 	if (hw_config->dma < 0 || hw_config->dma > 3 || jazz_dma_bits[hw_config->dma] == 0)
406 	{
407 		  printk(KERN_ERR "Jazz16: Invalid 8 bit DMA (DMA%d)\n", hw_config->dma);
408 		  return 0;
409 	}
410 	if (hw_config->dma2 < 0)
411 	{
412 		printk(KERN_ERR "Jazz16: No 16 bit DMA channel defined\n");
413 		return 0;
414 	}
415 	if (hw_config->dma2 < 5 || hw_config->dma2 > 7 || jazz_dma_bits[hw_config->dma2] == 0)
416 	{
417 		printk(KERN_ERR "Jazz16: Invalid 16 bit DMA (DMA%d)\n", hw_config->dma2);
418 		return 0;
419 	}
420 	devc->dma16 = hw_config->dma2;
421 
422 	if (!sb_dsp_command(devc, 0xfb))
423 		return 0;
424 
425 	if (!sb_dsp_command(devc, jazz_dma_bits[hw_config->dma] |
426 			(jazz_dma_bits[hw_config->dma2] << 4)))
427 		return 0;
428 
429 	if (!sb_dsp_command(devc, jazz_irq_bits[hw_config->irq]))
430 		return 0;
431 
432 	/*
433 	 * Now we have configured a standard Jazz16 device.
434 	 */
435 	devc->model = MDL_JAZZ;
436 	strcpy(name, "Jazz16");
437 
438 	hw_config->name = "Jazz16";
439 	devc->caps |= SB_NO_MIDI;
440 	return 1;
441 }
442 
relocate_ess1688(sb_devc * devc)443 static void relocate_ess1688(sb_devc * devc)
444 {
445 	unsigned char bits;
446 
447 	switch (devc->base)
448 	{
449 		case 0x220:
450 			bits = 0x04;
451 			break;
452 		case 0x230:
453 			bits = 0x05;
454 			break;
455 		case 0x240:
456 			bits = 0x06;
457 			break;
458 		case 0x250:
459 			bits = 0x07;
460 			break;
461 		default:
462 			return;	/* Wrong port */
463 	}
464 
465 	DDB(printk("Doing ESS1688 address selection\n"));
466 
467 	/*
468 	 * ES1688 supports two alternative ways for software address config.
469 	 * First try the so called Read-Sequence-Key method.
470 	 */
471 
472 	/* Reset the sequence logic */
473 	inb(0x229);
474 	inb(0x229);
475 	inb(0x229);
476 
477 	/* Perform the read sequence */
478 	inb(0x22b);
479 	inb(0x229);
480 	inb(0x22b);
481 	inb(0x229);
482 	inb(0x229);
483 	inb(0x22b);
484 	inb(0x229);
485 
486 	/* Select the base address by reading from it. Then probe using the port. */
487 	inb(devc->base);
488 	if (sb_dsp_reset(devc))	/* Bingo */
489 		return;
490 
491 #if 0				/* This causes system lockups (Nokia 386/25 at least) */
492 	/*
493 	 * The last resort is the system control register method.
494 	 */
495 
496 	outb((0x00), 0xfb);	/* 0xFB is the unlock register */
497 	outb((0x00), 0xe0);	/* Select index 0 */
498 	outb((bits), 0xe1);	/* Write the config bits */
499 	outb((0x00), 0xf9);	/* 0xFB is the lock register */
500 #endif
501 }
502 
sb_dsp_detect(struct address_info * hw_config,int pci,int pciio,struct sb_module_options * sbmo)503 int sb_dsp_detect(struct address_info *hw_config, int pci, int pciio, struct sb_module_options *sbmo)
504 {
505 	sb_devc sb_info;
506 	sb_devc *devc = &sb_info;
507 
508 	memset((char *) &sb_info, 0, sizeof(sb_info));	/* Zero everything */
509 
510 	/* Copy module options in place */
511 	if(sbmo) memcpy(&devc->sbmo, sbmo, sizeof(struct sb_module_options));
512 
513 	sb_info.my_mididev = -1;
514 	sb_info.my_mixerdev = -1;
515 	sb_info.dev = -1;
516 
517 	/*
518 	 * Initialize variables
519 	 */
520 
521 	DDB(printk("sb_dsp_detect(%x) entered\n", hw_config->io_base));
522 
523 	spin_lock_init(&devc->lock);
524 	devc->type = hw_config->card_subtype;
525 
526 	devc->base = hw_config->io_base;
527 	devc->irq = hw_config->irq;
528 	devc->dma8 = hw_config->dma;
529 
530 	devc->dma16 = -1;
531 	devc->pcibase = pciio;
532 
533 	if(pci == SB_PCI_ESSMAESTRO)
534 	{
535 		devc->model = MDL_ESSPCI;
536 		devc->caps |= SB_PCI_IRQ;
537 		hw_config->driver_use_1 |= SB_PCI_IRQ;
538 		hw_config->card_subtype	= MDL_ESSPCI;
539 	}
540 
541 	if(pci == SB_PCI_YAMAHA)
542 	{
543 		devc->model = MDL_YMPCI;
544 		devc->caps |= SB_PCI_IRQ;
545 		hw_config->driver_use_1 |= SB_PCI_IRQ;
546 		hw_config->card_subtype	= MDL_YMPCI;
547 
548 		printk("Yamaha PCI mode.\n");
549 	}
550 
551 	if (devc->sbmo.acer)
552 	{
553 		unsigned long flags;
554 
555 		spin_lock_irqsave(&devc->lock, flags);
556 		inb(devc->base + 0x09);
557 		inb(devc->base + 0x09);
558 		inb(devc->base + 0x09);
559 		inb(devc->base + 0x0b);
560 		inb(devc->base + 0x09);
561 		inb(devc->base + 0x0b);
562 		inb(devc->base + 0x09);
563 		inb(devc->base + 0x09);
564 		inb(devc->base + 0x0b);
565 		inb(devc->base + 0x09);
566 		inb(devc->base + 0x00);
567 		spin_unlock_irqrestore(&devc->lock, flags);
568 	}
569 	/*
570 	 * Detect the device
571 	 */
572 
573 	if (sb_dsp_reset(devc))
574 		dsp_get_vers(devc);
575 	else
576 		devc->major = 0;
577 
578 	if (devc->type == 0 || devc->type == MDL_JAZZ || devc->type == MDL_SMW)
579 		if (devc->major == 0 || (devc->major == 3 && devc->minor == 1))
580 			relocate_Jazz16(devc, hw_config);
581 
582 	if (devc->major == 0 && (devc->type == MDL_ESS || devc->type == 0))
583 		relocate_ess1688(devc);
584 
585 	if (!sb_dsp_reset(devc))
586 	{
587 		DDB(printk("SB reset failed\n"));
588 #ifdef MODULE
589 		printk(KERN_INFO "sb: dsp reset failed.\n");
590 #endif
591 		return 0;
592 	}
593 	if (devc->major == 0)
594 		dsp_get_vers(devc);
595 
596 	if (devc->major == 3 && devc->minor == 1)
597 	{
598 		if (devc->type == MDL_AZTECH)		/* SG Washington? */
599 		{
600 			if (sb_dsp_command(devc, 0x09))
601 				if (sb_dsp_command(devc, 0x00))	/* Enter WSS mode */
602 				{
603 					int i;
604 
605 					/* Have some delay */
606 					for (i = 0; i < 10000; i++)
607 						inb(DSP_DATA_AVAIL);
608 					devc->caps = SB_NO_AUDIO | SB_NO_MIDI;	/* Mixer only */
609 					devc->model = MDL_AZTECH;
610 				}
611 		}
612 	}
613 
614 	if(devc->type == MDL_ESSPCI)
615 		devc->model = MDL_ESSPCI;
616 
617 	if(devc->type == MDL_YMPCI)
618 	{
619 		printk("YMPCI selected\n");
620 		devc->model = MDL_YMPCI;
621 	}
622 
623 	/*
624 	 * Save device information for sb_dsp_init()
625 	 */
626 
627 
628 	detected_devc = kmalloc(sizeof(sb_devc), GFP_KERNEL);
629 	if (detected_devc == NULL)
630 	{
631 		printk(KERN_ERR "sb: Can't allocate memory for device information\n");
632 		return 0;
633 	}
634 	memcpy(detected_devc, devc, sizeof(sb_devc));
635 	MDB(printk(KERN_INFO "SB %d.%02d detected OK (%x)\n", devc->major, devc->minor, hw_config->io_base));
636 	return 1;
637 }
638 
sb_dsp_init(struct address_info * hw_config,struct module * owner)639 int sb_dsp_init(struct address_info *hw_config, struct module *owner)
640 {
641 	sb_devc *devc;
642 	char name[100];
643 	extern int sb_be_quiet;
644 	int	mixer22, mixer30;
645 
646 /*
647  * Check if we had detected a SB device earlier
648  */
649 	DDB(printk("sb_dsp_init(%x) entered\n", hw_config->io_base));
650 	name[0] = 0;
651 
652 	if (detected_devc == NULL)
653 	{
654 		MDB(printk("No detected device\n"));
655 		return 0;
656 	}
657 	devc = detected_devc;
658 	detected_devc = NULL;
659 
660 	if (devc->base != hw_config->io_base)
661 	{
662 		DDB(printk("I/O port mismatch\n"));
663 		release_region(devc->base, 16);
664 		return 0;
665 	}
666 	/*
667 	 * Now continue initialization of the device
668 	 */
669 
670 	devc->caps = hw_config->driver_use_1;
671 
672 	if (!((devc->caps & SB_NO_AUDIO) && (devc->caps & SB_NO_MIDI)) && hw_config->irq > 0)
673 	{			/* IRQ setup */
674 
675 		/*
676 		 *	ESS PCI cards do shared PCI IRQ stuff. Since they
677 		 *	will get shared PCI irq lines we must cope.
678 		 */
679 
680 		int i=(devc->caps&SB_PCI_IRQ)?IRQF_SHARED:0;
681 
682 		if (request_irq(hw_config->irq, sbintr, i, "soundblaster", devc) < 0)
683 		{
684 			printk(KERN_ERR "SB: Can't allocate IRQ%d\n", hw_config->irq);
685 			release_region(devc->base, 16);
686 			return 0;
687 		}
688 		devc->irq_ok = 0;
689 
690 		if (devc->major == 4)
691 			if (!sb16_set_irq_hw(devc, devc->irq))	/* Unsupported IRQ */
692 			{
693 				free_irq(devc->irq, devc);
694 				release_region(devc->base, 16);
695 				return 0;
696 			}
697 		if ((devc->type == 0 || devc->type == MDL_ESS) &&
698 			devc->major == 3 && devc->minor == 1)
699 		{		/* Handle various chipsets which claim they are SB Pro compatible */
700 			if ((devc->type != 0 && devc->type != MDL_ESS) ||
701 				!ess_init(devc, hw_config))
702 			{
703 				if ((devc->type != 0 && devc->type != MDL_JAZZ &&
704 					 devc->type != MDL_SMW) || !init_Jazz16(devc, hw_config))
705 				{
706 					DDB(printk("This is a genuine SB Pro\n"));
707 				}
708 			}
709 		}
710 		if (devc->major == 4 && devc->minor <= 11 )	/* Won't work */
711 			devc->irq_ok = 1;
712 		else
713 		{
714 			int n;
715 
716 			for (n = 0; n < 3 && devc->irq_ok == 0; n++)
717 			{
718 				if (sb_dsp_command(devc, 0xf2))	/* Cause interrupt immediately */
719 				{
720 					int i;
721 
722 					for (i = 0; !devc->irq_ok && i < 10000; i++);
723 				}
724 			}
725 			if (!devc->irq_ok)
726 				printk(KERN_WARNING "sb: Interrupt test on IRQ%d failed - Probable IRQ conflict\n", devc->irq);
727 			else
728 			{
729 				DDB(printk("IRQ test OK (IRQ%d)\n", devc->irq));
730 			}
731 		}
732 	}			/* IRQ setup */
733 
734 	last_sb = devc;
735 
736 	switch (devc->major)
737 	{
738 		case 1:		/* SB 1.0 or 1.5 */
739 			devc->model = hw_config->card_subtype = MDL_SB1;
740 			break;
741 
742 		case 2:		/* SB 2.x */
743 			if (devc->minor == 0)
744 				devc->model = hw_config->card_subtype = MDL_SB2;
745 			else
746 				devc->model = hw_config->card_subtype = MDL_SB201;
747 			break;
748 
749 		case 3:		/* SB Pro and most clones */
750 			switch (devc->model) {
751 			case 0:
752 				devc->model = hw_config->card_subtype = MDL_SBPRO;
753 				if (hw_config->name == NULL)
754 					hw_config->name = "Sound Blaster Pro (8 BIT ONLY)";
755 				break;
756 			case MDL_ESS:
757 				ess_dsp_init(devc, hw_config);
758 				break;
759 			}
760 			break;
761 
762 		case 4:
763 			devc->model = hw_config->card_subtype = MDL_SB16;
764 			/*
765 			 * ALS007 and ALS100 return DSP version 4.2 and have 2 post-reset !=0
766 			 * registers at 0x3c and 0x4c (output ctrl registers on ALS007) whereas
767 			 * a "standard" SB16 doesn't have a register at 0x4c.  ALS100 actively
768 			 * updates register 0x22 whenever 0x30 changes, as per the SB16 spec.
769 			 * Since ALS007 doesn't, this can be used to differentiate the 2 cards.
770 			 */
771 			if ((devc->minor == 2) && sb_getmixer(devc,0x3c) && sb_getmixer(devc,0x4c))
772 			{
773 				mixer30 = sb_getmixer(devc,0x30);
774 				sb_setmixer(devc,0x22,(mixer22=sb_getmixer(devc,0x22)) & 0x0f);
775 				sb_setmixer(devc,0x30,0xff);
776 				/* ALS100 will force 0x30 to 0xf8 like SB16; ALS007 will allow 0xff. */
777 				/* Register 0x22 & 0xf0 on ALS100 == 0xf0; on ALS007 it == 0x10.     */
778 				if ((sb_getmixer(devc,0x30) != 0xff) || ((sb_getmixer(devc,0x22) & 0xf0) != 0x10))
779 				{
780 					devc->submodel = SUBMDL_ALS100;
781 					if (hw_config->name == NULL)
782 						hw_config->name = "Sound Blaster 16 (ALS-100)";
783         			}
784         			else
785         			{
786         				sb_setmixer(devc,0x3c,0x1f);    /* Enable all inputs */
787 					sb_setmixer(devc,0x4c,0x1f);
788 					sb_setmixer(devc,0x22,mixer22); /* Restore 0x22 to original value */
789 					devc->submodel = SUBMDL_ALS007;
790 					if (hw_config->name == NULL)
791 						hw_config->name = "Sound Blaster 16 (ALS-007)";
792 				}
793 				sb_setmixer(devc,0x30,mixer30);
794 			}
795 			else if (hw_config->name == NULL)
796 				hw_config->name = "Sound Blaster 16";
797 
798 			if (hw_config->dma2 == -1)
799 				devc->dma16 = devc->dma8;
800 			else if (hw_config->dma2 < 5 || hw_config->dma2 > 7)
801 			{
802 				printk(KERN_WARNING  "SB16: Bad or missing 16 bit DMA channel\n");
803 				devc->dma16 = devc->dma8;
804 			}
805 			else
806 				devc->dma16 = hw_config->dma2;
807 
808 			if(!sb16_set_dma_hw(devc)) {
809 				free_irq(devc->irq, devc);
810 			        release_region(hw_config->io_base, 16);
811 				return 0;
812 			}
813 
814 			devc->caps |= SB_NO_MIDI;
815 	}
816 
817 	if (!(devc->caps & SB_NO_MIXER))
818 		if (devc->major == 3 || devc->major == 4)
819 			sb_mixer_init(devc, owner);
820 
821 	if (!(devc->caps & SB_NO_MIDI))
822 		sb_dsp_midi_init(devc, owner);
823 
824 	if (hw_config->name == NULL)
825 		hw_config->name = "Sound Blaster (8 BIT/MONO ONLY)";
826 
827 	sprintf(name, "%s (%d.%02d)", hw_config->name, devc->major, devc->minor);
828 	conf_printf(name, hw_config);
829 
830 	/*
831 	 * Assuming that a sound card is Sound Blaster (compatible) is the most common
832 	 * configuration error and the mother of all problems. Usually sound cards
833 	 * emulate SB Pro but in addition they have a 16 bit native mode which should be
834 	 * used in Unix. See Readme.cards for more information about configuring OSS/Free
835 	 * properly.
836 	 */
837 	if (devc->model <= MDL_SBPRO)
838 	{
839 		if (devc->major == 3 && devc->minor != 1)	/* "True" SB Pro should have v3.1 (rare ones may have 3.2). */
840 		{
841 			printk(KERN_INFO "This sound card may not be fully Sound Blaster Pro compatible.\n");
842 			printk(KERN_INFO "In many cases there is another way to configure OSS so that\n");
843 			printk(KERN_INFO "it works properly with OSS (for example in 16 bit mode).\n");
844 			printk(KERN_INFO "Please ignore this message if you _really_ have a SB Pro.\n");
845 		}
846 		else if (!sb_be_quiet && devc->model == MDL_SBPRO)
847 		{
848 			printk(KERN_INFO "SB DSP version is just %d.%02d which means that your card is\n", devc->major, devc->minor);
849 			printk(KERN_INFO "several years old (8 bit only device) or alternatively the sound driver\n");
850 			printk(KERN_INFO "is incorrectly configured.\n");
851 		}
852 	}
853 	hw_config->card_subtype = devc->model;
854 	hw_config->slots[0]=devc->dev;
855 	last_devc = devc;	/* For SB MPU detection */
856 
857 	if (!(devc->caps & SB_NO_AUDIO) && devc->dma8 >= 0)
858 	{
859 		if (sound_alloc_dma(devc->dma8, "SoundBlaster8"))
860 		{
861 			printk(KERN_WARNING "Sound Blaster: Can't allocate 8 bit DMA channel %d\n", devc->dma8);
862 		}
863 		if (devc->dma16 >= 0 && devc->dma16 != devc->dma8)
864 		{
865 			if (sound_alloc_dma(devc->dma16, "SoundBlaster16"))
866 				printk(KERN_WARNING "Sound Blaster:  can't allocate 16 bit DMA channel %d.\n", devc->dma16);
867 		}
868 		sb_audio_init(devc, name, owner);
869 		hw_config->slots[0]=devc->dev;
870 	}
871 	else
872 	{
873 		MDB(printk("Sound Blaster:  no audio devices found.\n"));
874 	}
875 	return 1;
876 }
877 
878 /* if (sbmpu) below we allow mpu401 to manage the midi devs
879    otherwise we have to unload them. (Andrzej Krzysztofowicz) */
880 
sb_dsp_unload(struct address_info * hw_config,int sbmpu)881 void sb_dsp_unload(struct address_info *hw_config, int sbmpu)
882 {
883 	sb_devc *devc;
884 
885 	devc = audio_devs[hw_config->slots[0]]->devc;
886 
887 	if (devc && devc->base == hw_config->io_base)
888 	{
889 		if ((devc->model & MDL_ESS) && devc->pcibase)
890 			release_region(devc->pcibase, 8);
891 
892 		release_region(devc->base, 16);
893 
894 		if (!(devc->caps & SB_NO_AUDIO))
895 		{
896 			sound_free_dma(devc->dma8);
897 			if (devc->dma16 >= 0)
898 				sound_free_dma(devc->dma16);
899 		}
900 		if (!(devc->caps & SB_NO_AUDIO && devc->caps & SB_NO_MIDI))
901 		{
902 			if (devc->irq > 0)
903 				free_irq(devc->irq, devc);
904 
905 			sb_mixer_unload(devc);
906 			/* We don't have to do this bit any more the UART401 is its own
907 				master  -- Krzysztof Halasa */
908 			/* But we have to do it, if UART401 is not detected */
909 			if (!sbmpu)
910 				sound_unload_mididev(devc->my_mididev);
911 			sound_unload_audiodev(devc->dev);
912 		}
913 		kfree(devc);
914 	}
915 	else
916 		release_region(hw_config->io_base, 16);
917 
918 	kfree(detected_devc);
919 }
920 
921 /*
922  *	Mixer access routines
923  *
924  *	ES1887 modifications: some mixer registers reside in the
925  *	range above 0xa0. These must be accessed in another way.
926  */
927 
sb_setmixer(sb_devc * devc,unsigned int port,unsigned int value)928 void sb_setmixer(sb_devc * devc, unsigned int port, unsigned int value)
929 {
930 	unsigned long flags;
931 
932 	if (devc->model == MDL_ESS) {
933 		ess_setmixer (devc, port, value);
934 		return;
935 	}
936 
937 	spin_lock_irqsave(&devc->lock, flags);
938 
939 	outb(((unsigned char) (port & 0xff)), MIXER_ADDR);
940 	udelay(20);
941 	outb(((unsigned char) (value & 0xff)), MIXER_DATA);
942 	udelay(20);
943 
944 	spin_unlock_irqrestore(&devc->lock, flags);
945 }
946 
sb_getmixer(sb_devc * devc,unsigned int port)947 unsigned int sb_getmixer(sb_devc * devc, unsigned int port)
948 {
949 	unsigned int val;
950 	unsigned long flags;
951 
952 	if (devc->model == MDL_ESS) return ess_getmixer (devc, port);
953 
954 	spin_lock_irqsave(&devc->lock, flags);
955 
956 	outb(((unsigned char) (port & 0xff)), MIXER_ADDR);
957 	udelay(20);
958 	val = inb(MIXER_DATA);
959 	udelay(20);
960 
961 	spin_unlock_irqrestore(&devc->lock, flags);
962 
963 	return val;
964 }
965 
sb_chgmixer(sb_devc * devc,unsigned int reg,unsigned int mask,unsigned int val)966 void sb_chgmixer
967 	(sb_devc * devc, unsigned int reg, unsigned int mask, unsigned int val)
968 {
969 	int value;
970 
971 	value = sb_getmixer(devc, reg);
972 	value = (value & ~mask) | (val & mask);
973 	sb_setmixer(devc, reg, value);
974 }
975 
976 /*
977  *	MPU401 MIDI initialization.
978  */
979 
smw_putmem(sb_devc * devc,int base,int addr,unsigned char val)980 static void smw_putmem(sb_devc * devc, int base, int addr, unsigned char val)
981 {
982 	unsigned long flags;
983 
984 	spin_lock_irqsave(&jazz16_lock, flags);  /* NOT the SB card? */
985 
986 	outb((addr & 0xff), base + 1);	/* Low address bits */
987 	outb((addr >> 8), base + 2);	/* High address bits */
988 	outb((val), base);	/* Data */
989 
990 	spin_unlock_irqrestore(&jazz16_lock, flags);
991 }
992 
smw_getmem(sb_devc * devc,int base,int addr)993 static unsigned char smw_getmem(sb_devc * devc, int base, int addr)
994 {
995 	unsigned long flags;
996 	unsigned char val;
997 
998 	spin_lock_irqsave(&jazz16_lock, flags);  /* NOT the SB card? */
999 
1000 	outb((addr & 0xff), base + 1);	/* Low address bits */
1001 	outb((addr >> 8), base + 2);	/* High address bits */
1002 	val = inb(base);	/* Data */
1003 
1004 	spin_unlock_irqrestore(&jazz16_lock, flags);
1005 	return val;
1006 }
1007 
smw_midi_init(sb_devc * devc,struct address_info * hw_config)1008 static int smw_midi_init(sb_devc * devc, struct address_info *hw_config)
1009 {
1010 	int mpu_base = hw_config->io_base;
1011 	int mp_base = mpu_base + 4;		/* Microcontroller base */
1012 	int i;
1013 	unsigned char control;
1014 
1015 
1016 	/*
1017 	 *  Reset the microcontroller so that the RAM can be accessed
1018 	 */
1019 
1020 	control = inb(mpu_base + 7);
1021 	outb((control | 3), mpu_base + 7);	/* Set last two bits to 1 (?) */
1022 	outb(((control & 0xfe) | 2), mpu_base + 7);	/* xxxxxxx0 resets the mc */
1023 
1024 	mdelay(3);	/* Wait at least 1ms */
1025 
1026 	outb((control & 0xfc), mpu_base + 7);	/* xxxxxx00 enables RAM */
1027 
1028 	/*
1029 	 *  Detect microcontroller by probing the 8k RAM area
1030 	 */
1031 	smw_putmem(devc, mp_base, 0, 0x00);
1032 	smw_putmem(devc, mp_base, 1, 0xff);
1033 	udelay(10);
1034 
1035 	if (smw_getmem(devc, mp_base, 0) != 0x00 || smw_getmem(devc, mp_base, 1) != 0xff)
1036 	{
1037 		DDB(printk("SM Wave: No microcontroller RAM detected (%02x, %02x)\n", smw_getmem(devc, mp_base, 0), smw_getmem(devc, mp_base, 1)));
1038 		return 0;	/* No RAM */
1039 	}
1040 	/*
1041 	 *  There is RAM so assume it's really a SM Wave
1042 	 */
1043 
1044 	devc->model = MDL_SMW;
1045 	smw_mixer_init(devc);
1046 
1047 #ifdef MODULE
1048 	if (!smw_ucode)
1049 	{
1050 		smw_ucodeLen = mod_firmware_load("/etc/sound/midi0001.bin", (void *) &smw_ucode);
1051 		smw_free = smw_ucode;
1052 	}
1053 #endif
1054 	if (smw_ucodeLen > 0)
1055 	{
1056 		if (smw_ucodeLen != 8192)
1057 		{
1058 			printk(KERN_ERR "SM Wave: Invalid microcode (MIDI0001.BIN) length\n");
1059 			return 1;
1060 		}
1061 		/*
1062 		 *  Download microcode
1063 		 */
1064 
1065 		for (i = 0; i < 8192; i++)
1066 			smw_putmem(devc, mp_base, i, smw_ucode[i]);
1067 
1068 		/*
1069 		 *  Verify microcode
1070 		 */
1071 
1072 		for (i = 0; i < 8192; i++)
1073 			if (smw_getmem(devc, mp_base, i) != smw_ucode[i])
1074 			{
1075 				printk(KERN_ERR "SM Wave: Microcode verification failed\n");
1076 				return 0;
1077 			}
1078 	}
1079 	control = 0;
1080 #ifdef SMW_SCSI_IRQ
1081 	/*
1082 	 * Set the SCSI interrupt (IRQ2/9, IRQ3 or IRQ10). The SCSI interrupt
1083 	 * is disabled by default.
1084 	 *
1085 	 * FIXME - make this a module option
1086 	 *
1087 	 * BTW the Zilog 5380 SCSI controller is located at MPU base + 0x10.
1088 	 */
1089 	{
1090 		static unsigned char scsi_irq_bits[] = {
1091 			0, 0, 3, 1, 0, 0, 0, 0, 0, 3, 2, 0, 0, 0, 0, 0
1092 		};
1093 		control |= scsi_irq_bits[SMW_SCSI_IRQ] << 6;
1094 	}
1095 #endif
1096 
1097 #ifdef SMW_OPL4_ENABLE
1098 	/*
1099 	 *  Make the OPL4 chip visible on the PC bus at 0x380.
1100 	 *
1101 	 *  There is no need to enable this feature since this driver
1102 	 *  doesn't support OPL4 yet. Also there is no RAM in SM Wave so
1103 	 *  enabling OPL4 is pretty useless.
1104 	 */
1105 	control |= 0x10;	/* Uses IRQ12 if bit 0x20 == 0 */
1106 	/* control |= 0x20;      Uncomment this if you want to use IRQ7 */
1107 #endif
1108 	outb((control | 0x03), mpu_base + 7);	/* xxxxxx11 restarts */
1109 	hw_config->name = "SoundMan Wave";
1110 	return 1;
1111 }
1112 
init_Jazz16_midi(sb_devc * devc,struct address_info * hw_config)1113 static int init_Jazz16_midi(sb_devc * devc, struct address_info *hw_config)
1114 {
1115 	int mpu_base = hw_config->io_base;
1116 	int sb_base = devc->base;
1117 	int irq = hw_config->irq;
1118 
1119 	unsigned char bits = 0;
1120 	unsigned long flags;
1121 
1122 	if (irq < 0)
1123 		irq *= -1;
1124 
1125 	if (irq < 1 || irq > 15 ||
1126 	    jazz_irq_bits[irq] == 0)
1127 	{
1128 		printk(KERN_ERR "Jazz16: Invalid MIDI interrupt (IRQ%d)\n", irq);
1129 		return 0;
1130 	}
1131 	switch (sb_base)
1132 	{
1133 		case 0x220:
1134 			bits = 1;
1135 			break;
1136 		case 0x240:
1137 			bits = 2;
1138 			break;
1139 		case 0x260:
1140 			bits = 3;
1141 			break;
1142 		default:
1143 			return 0;
1144 	}
1145 	bits = jazz16_bits = bits << 5;
1146 	switch (mpu_base)
1147 	{
1148 		case 0x310:
1149 			bits |= 1;
1150 			break;
1151 		case 0x320:
1152 			bits |= 2;
1153 			break;
1154 		case 0x330:
1155 			bits |= 3;
1156 			break;
1157 		default:
1158 			printk(KERN_ERR "Jazz16: Invalid MIDI I/O port %x\n", mpu_base);
1159 			return 0;
1160 	}
1161 	/*
1162 	 *	Magic wake up sequence by writing to 0x201 (aka Joystick port)
1163 	 */
1164 	spin_lock_irqsave(&jazz16_lock, flags);
1165 	outb(0xAF, 0x201);
1166 	outb(0x50, 0x201);
1167 	outb(bits, 0x201);
1168 	spin_unlock_irqrestore(&jazz16_lock, flags);
1169 
1170 	hw_config->name = "Jazz16";
1171 	smw_midi_init(devc, hw_config);
1172 
1173 	if (!sb_dsp_command(devc, 0xfb))
1174 		return 0;
1175 
1176 	if (!sb_dsp_command(devc, jazz_dma_bits[devc->dma8] |
1177 			    (jazz_dma_bits[devc->dma16] << 4)))
1178 		return 0;
1179 
1180 	if (!sb_dsp_command(devc, jazz_irq_bits[devc->irq] |
1181 			    (jazz_irq_bits[irq] << 4)))
1182 		return 0;
1183 
1184 	return 1;
1185 }
1186 
probe_sbmpu(struct address_info * hw_config,struct module * owner)1187 int probe_sbmpu(struct address_info *hw_config, struct module *owner)
1188 {
1189 	sb_devc *devc = last_devc;
1190 	int ret;
1191 
1192 	if (last_devc == NULL)
1193 		return 0;
1194 
1195 	last_devc = NULL;
1196 
1197 	if (hw_config->io_base <= 0)
1198 	{
1199 		/* The real vibra16 is fine about this, but we have to go
1200 		   wipe up after Cyrix again */
1201 
1202 		if(devc->model == MDL_SB16 && devc->minor >= 12)
1203 		{
1204 			unsigned char   bits = sb_getmixer(devc, 0x84) & ~0x06;
1205 			sb_setmixer(devc, 0x84, bits | 0x02);		/* Disable MPU */
1206 		}
1207 		return 0;
1208 	}
1209 
1210 #if defined(CONFIG_SOUND_MPU401)
1211 	if (devc->model == MDL_ESS)
1212 	{
1213 		struct resource *ports;
1214 		ports = request_region(hw_config->io_base, 2, "mpu401");
1215 		if (!ports) {
1216 			printk(KERN_ERR "sbmpu: I/O port conflict (%x)\n", hw_config->io_base);
1217 			return 0;
1218 		}
1219 		if (!ess_midi_init(devc, hw_config)) {
1220 			release_region(hw_config->io_base, 2);
1221 			return 0;
1222 		}
1223 		hw_config->name = "ESS1xxx MPU";
1224 		devc->midi_irq_cookie = NULL;
1225 		if (!probe_mpu401(hw_config, ports)) {
1226 			release_region(hw_config->io_base, 2);
1227 			return 0;
1228 		}
1229 		attach_mpu401(hw_config, owner);
1230 		if (last_sb->irq == -hw_config->irq)
1231 			last_sb->midi_irq_cookie =
1232 				(void *)(long) hw_config->slots[1];
1233 		return 1;
1234 	}
1235 #endif
1236 
1237 	switch (devc->model)
1238 	{
1239 		case MDL_SB16:
1240 			if (hw_config->io_base != 0x300 && hw_config->io_base != 0x330)
1241 			{
1242 				printk(KERN_ERR "SB16: Invalid MIDI port %x\n", hw_config->io_base);
1243 				return 0;
1244 			}
1245 			hw_config->name = "Sound Blaster 16";
1246 			if (hw_config->irq < 3 || hw_config->irq == devc->irq)
1247 				hw_config->irq = -devc->irq;
1248 			if (devc->minor > 12)		/* What is Vibra's version??? */
1249 				sb16_set_mpu_port(devc, hw_config);
1250 			break;
1251 
1252 		case MDL_JAZZ:
1253 			if (hw_config->irq < 3 || hw_config->irq == devc->irq)
1254 				hw_config->irq = -devc->irq;
1255 			if (!init_Jazz16_midi(devc, hw_config))
1256 				return 0;
1257 			break;
1258 
1259 		case MDL_YMPCI:
1260 			hw_config->name = "Yamaha PCI Legacy";
1261 			printk("Yamaha PCI legacy UART401 check.\n");
1262 			break;
1263 		default:
1264 			return 0;
1265 	}
1266 
1267 	ret = probe_uart401(hw_config, owner);
1268 	if (ret)
1269 		last_sb->midi_irq_cookie=midi_devs[hw_config->slots[4]]->devc;
1270 	return ret;
1271 }
1272 
unload_sbmpu(struct address_info * hw_config)1273 void unload_sbmpu(struct address_info *hw_config)
1274 {
1275 #if defined(CONFIG_SOUND_MPU401)
1276 	if (!strcmp (hw_config->name, "ESS1xxx MPU")) {
1277 		unload_mpu401(hw_config);
1278 		return;
1279 	}
1280 #endif
1281 	unload_uart401(hw_config);
1282 }
1283 
1284 EXPORT_SYMBOL(sb_dsp_init);
1285 EXPORT_SYMBOL(sb_dsp_detect);
1286 EXPORT_SYMBOL(sb_dsp_unload);
1287 EXPORT_SYMBOL(sb_be_quiet);
1288 EXPORT_SYMBOL(probe_sbmpu);
1289 EXPORT_SYMBOL(unload_sbmpu);
1290 EXPORT_SYMBOL(smw_free);
1291 MODULE_LICENSE("GPL");
1292