xref: /openbmc/linux/sound/pci/sis7019.c (revision 65a77217)
1175859bfSDavid Dillow /*
2175859bfSDavid Dillow  *  Driver for SiS7019 Audio Accelerator
3175859bfSDavid Dillow  *
4175859bfSDavid Dillow  *  Copyright (C) 2004-2007, David Dillow
5175859bfSDavid Dillow  *  Written by David Dillow <dave@thedillows.org>
6175859bfSDavid Dillow  *  Inspired by the Trident 4D-WaveDX/NX driver.
7175859bfSDavid Dillow  *
8175859bfSDavid Dillow  *  All rights reserved.
9175859bfSDavid Dillow  *
10175859bfSDavid Dillow  *  This program is free software; you can redistribute it and/or modify
11175859bfSDavid Dillow  *  it under the terms of the GNU General Public License as published by
12175859bfSDavid Dillow  *  the Free Software Foundation, version 2.
13175859bfSDavid Dillow  *
14175859bfSDavid Dillow  *  This program is distributed in the hope that it will be useful,
15175859bfSDavid Dillow  *  but WITHOUT ANY WARRANTY; without even the implied warranty of
16175859bfSDavid Dillow  *  MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
17175859bfSDavid Dillow  *  GNU General Public License for more details.
18175859bfSDavid Dillow  *
19175859bfSDavid Dillow  *  You should have received a copy of the GNU General Public License
20175859bfSDavid Dillow  *  along with this program; if not, write to the Free Software
21175859bfSDavid Dillow  *  Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA  02111-1307 USA
22175859bfSDavid Dillow  */
23175859bfSDavid Dillow 
24175859bfSDavid Dillow #include <linux/init.h>
25175859bfSDavid Dillow #include <linux/pci.h>
26175859bfSDavid Dillow #include <linux/time.h>
275a0e3ad6STejun Heo #include <linux/slab.h>
2865a77217SPaul Gortmaker #include <linux/module.h>
29175859bfSDavid Dillow #include <linux/interrupt.h>
30175859bfSDavid Dillow #include <linux/delay.h>
31175859bfSDavid Dillow #include <sound/core.h>
32175859bfSDavid Dillow #include <sound/ac97_codec.h>
33175859bfSDavid Dillow #include <sound/initval.h>
34175859bfSDavid Dillow #include "sis7019.h"
35175859bfSDavid Dillow 
36175859bfSDavid Dillow MODULE_AUTHOR("David Dillow <dave@thedillows.org>");
37175859bfSDavid Dillow MODULE_DESCRIPTION("SiS7019");
38175859bfSDavid Dillow MODULE_LICENSE("GPL");
39175859bfSDavid Dillow MODULE_SUPPORTED_DEVICE("{{SiS,SiS7019 Audio Accelerator}}");
40175859bfSDavid Dillow 
41175859bfSDavid Dillow static int index = SNDRV_DEFAULT_IDX1;	/* Index 0-MAX */
42175859bfSDavid Dillow static char *id = SNDRV_DEFAULT_STR1;	/* ID for this card */
43175859bfSDavid Dillow static int enable = 1;
44175859bfSDavid Dillow 
45175859bfSDavid Dillow module_param(index, int, 0444);
46175859bfSDavid Dillow MODULE_PARM_DESC(index, "Index value for SiS7019 Audio Accelerator.");
47175859bfSDavid Dillow module_param(id, charp, 0444);
48175859bfSDavid Dillow MODULE_PARM_DESC(id, "ID string for SiS7019 Audio Accelerator.");
49175859bfSDavid Dillow module_param(enable, bool, 0444);
50175859bfSDavid Dillow MODULE_PARM_DESC(enable, "Enable SiS7019 Audio Accelerator.");
51175859bfSDavid Dillow 
52cebe41d4SAlexey Dobriyan static DEFINE_PCI_DEVICE_TABLE(snd_sis7019_ids) = {
53175859bfSDavid Dillow 	{ PCI_DEVICE(PCI_VENDOR_ID_SI, 0x7019) },
54175859bfSDavid Dillow 	{ 0, }
55175859bfSDavid Dillow };
56175859bfSDavid Dillow 
57175859bfSDavid Dillow MODULE_DEVICE_TABLE(pci, snd_sis7019_ids);
58175859bfSDavid Dillow 
59175859bfSDavid Dillow /* There are three timing modes for the voices.
60175859bfSDavid Dillow  *
61175859bfSDavid Dillow  * For both playback and capture, when the buffer is one or two periods long,
62175859bfSDavid Dillow  * we use the hardware's built-in Mid-Loop Interrupt and End-Loop Interrupt
63175859bfSDavid Dillow  * to let us know when the periods have ended.
64175859bfSDavid Dillow  *
65175859bfSDavid Dillow  * When performing playback with more than two periods per buffer, we set
66175859bfSDavid Dillow  * the "Stop Sample Offset" and tell the hardware to interrupt us when we
67175859bfSDavid Dillow  * reach it. We then update the offset and continue on until we are
68175859bfSDavid Dillow  * interrupted for the next period.
69175859bfSDavid Dillow  *
70175859bfSDavid Dillow  * Capture channels do not have a SSO, so we allocate a playback channel to
71175859bfSDavid Dillow  * use as a timer for the capture periods. We use the SSO on the playback
72175859bfSDavid Dillow  * channel to clock out virtual periods, and adjust the virtual period length
73175859bfSDavid Dillow  * to maintain synchronization. This algorithm came from the Trident driver.
74175859bfSDavid Dillow  *
75175859bfSDavid Dillow  * FIXME: It'd be nice to make use of some of the synth features in the
76175859bfSDavid Dillow  * hardware, but a woeful lack of documentation is a significant roadblock.
77175859bfSDavid Dillow  */
78175859bfSDavid Dillow struct voice {
79175859bfSDavid Dillow 	u16 flags;
80175859bfSDavid Dillow #define 	VOICE_IN_USE		1
81175859bfSDavid Dillow #define 	VOICE_CAPTURE		2
82175859bfSDavid Dillow #define 	VOICE_SSO_TIMING	4
83175859bfSDavid Dillow #define 	VOICE_SYNC_TIMING	8
84175859bfSDavid Dillow 	u16 sync_cso;
85175859bfSDavid Dillow 	u16 period_size;
86175859bfSDavid Dillow 	u16 buffer_size;
87175859bfSDavid Dillow 	u16 sync_period_size;
88175859bfSDavid Dillow 	u16 sync_buffer_size;
89175859bfSDavid Dillow 	u32 sso;
90175859bfSDavid Dillow 	u32 vperiod;
91175859bfSDavid Dillow 	struct snd_pcm_substream *substream;
92175859bfSDavid Dillow 	struct voice *timing;
93175859bfSDavid Dillow 	void __iomem *ctrl_base;
94175859bfSDavid Dillow 	void __iomem *wave_base;
95175859bfSDavid Dillow 	void __iomem *sync_base;
96175859bfSDavid Dillow 	int num;
97175859bfSDavid Dillow };
98175859bfSDavid Dillow 
99175859bfSDavid Dillow /* We need four pages to store our wave parameters during a suspend. If
100175859bfSDavid Dillow  * we're not doing power management, we still need to allocate a page
101175859bfSDavid Dillow  * for the silence buffer.
102175859bfSDavid Dillow  */
103175859bfSDavid Dillow #ifdef CONFIG_PM
104175859bfSDavid Dillow #define SIS_SUSPEND_PAGES	4
105175859bfSDavid Dillow #else
106175859bfSDavid Dillow #define SIS_SUSPEND_PAGES	1
107175859bfSDavid Dillow #endif
108175859bfSDavid Dillow 
109175859bfSDavid Dillow struct sis7019 {
110175859bfSDavid Dillow 	unsigned long ioport;
111175859bfSDavid Dillow 	void __iomem *ioaddr;
112175859bfSDavid Dillow 	int irq;
113175859bfSDavid Dillow 	int codecs_present;
114175859bfSDavid Dillow 
115175859bfSDavid Dillow 	struct pci_dev *pci;
116175859bfSDavid Dillow 	struct snd_pcm *pcm;
117175859bfSDavid Dillow 	struct snd_card *card;
118175859bfSDavid Dillow 	struct snd_ac97 *ac97[3];
119175859bfSDavid Dillow 
120175859bfSDavid Dillow 	/* Protect against more than one thread hitting the AC97
121175859bfSDavid Dillow 	 * registers (in a more polite manner than pounding the hardware
122175859bfSDavid Dillow 	 * semaphore)
123175859bfSDavid Dillow 	 */
124175859bfSDavid Dillow 	struct mutex ac97_mutex;
125175859bfSDavid Dillow 
126175859bfSDavid Dillow 	/* voice_lock protects allocation/freeing of the voice descriptions
127175859bfSDavid Dillow 	 */
128175859bfSDavid Dillow 	spinlock_t voice_lock;
129175859bfSDavid Dillow 
130175859bfSDavid Dillow 	struct voice voices[64];
131175859bfSDavid Dillow 	struct voice capture_voice;
132175859bfSDavid Dillow 
133175859bfSDavid Dillow 	/* Allocate pages to store the internal wave state during
134175859bfSDavid Dillow 	 * suspends. When we're operating, this can be used as a silence
135175859bfSDavid Dillow 	 * buffer for a timing channel.
136175859bfSDavid Dillow 	 */
137175859bfSDavid Dillow 	void *suspend_state[SIS_SUSPEND_PAGES];
138175859bfSDavid Dillow 
139175859bfSDavid Dillow 	int silence_users;
140175859bfSDavid Dillow 	dma_addr_t silence_dma_addr;
141175859bfSDavid Dillow };
142175859bfSDavid Dillow 
143175859bfSDavid Dillow #define SIS_PRIMARY_CODEC_PRESENT	0x0001
144175859bfSDavid Dillow #define SIS_SECONDARY_CODEC_PRESENT	0x0002
145175859bfSDavid Dillow #define SIS_TERTIARY_CODEC_PRESENT	0x0004
146175859bfSDavid Dillow 
147175859bfSDavid Dillow /* The HW offset parameters (Loop End, Stop Sample, End Sample) have a
148175859bfSDavid Dillow  * documented range of 8-0xfff8 samples. Given that they are 0-based,
149175859bfSDavid Dillow  * that places our period/buffer range at 9-0xfff9 samples. That makes the
150175859bfSDavid Dillow  * max buffer size 0xfff9 samples * 2 channels * 2 bytes per sample, and
151175859bfSDavid Dillow  * max samples / min samples gives us the max periods in a buffer.
152175859bfSDavid Dillow  *
153175859bfSDavid Dillow  * We'll add a constraint upon open that limits the period and buffer sample
154175859bfSDavid Dillow  * size to values that are legal for the hardware.
155175859bfSDavid Dillow  */
156175859bfSDavid Dillow static struct snd_pcm_hardware sis_playback_hw_info = {
157175859bfSDavid Dillow 	.info = (SNDRV_PCM_INFO_MMAP |
158175859bfSDavid Dillow 		 SNDRV_PCM_INFO_MMAP_VALID |
159175859bfSDavid Dillow 		 SNDRV_PCM_INFO_INTERLEAVED |
160175859bfSDavid Dillow 		 SNDRV_PCM_INFO_BLOCK_TRANSFER |
161175859bfSDavid Dillow 		 SNDRV_PCM_INFO_SYNC_START |
162175859bfSDavid Dillow 		 SNDRV_PCM_INFO_RESUME),
163175859bfSDavid Dillow 	.formats = (SNDRV_PCM_FMTBIT_S8 | SNDRV_PCM_FMTBIT_U8 |
164175859bfSDavid Dillow 		    SNDRV_PCM_FMTBIT_S16_LE | SNDRV_PCM_FMTBIT_U16_LE),
165175859bfSDavid Dillow 	.rates = SNDRV_PCM_RATE_8000_48000 | SNDRV_PCM_RATE_CONTINUOUS,
166175859bfSDavid Dillow 	.rate_min = 4000,
167175859bfSDavid Dillow 	.rate_max = 48000,
168175859bfSDavid Dillow 	.channels_min = 1,
169175859bfSDavid Dillow 	.channels_max = 2,
170175859bfSDavid Dillow 	.buffer_bytes_max = (0xfff9 * 4),
171175859bfSDavid Dillow 	.period_bytes_min = 9,
172175859bfSDavid Dillow 	.period_bytes_max = (0xfff9 * 4),
173175859bfSDavid Dillow 	.periods_min = 1,
174175859bfSDavid Dillow 	.periods_max = (0xfff9 / 9),
175175859bfSDavid Dillow };
176175859bfSDavid Dillow 
177175859bfSDavid Dillow static struct snd_pcm_hardware sis_capture_hw_info = {
178175859bfSDavid Dillow 	.info = (SNDRV_PCM_INFO_MMAP |
179175859bfSDavid Dillow 		 SNDRV_PCM_INFO_MMAP_VALID |
180175859bfSDavid Dillow 		 SNDRV_PCM_INFO_INTERLEAVED |
181175859bfSDavid Dillow 		 SNDRV_PCM_INFO_BLOCK_TRANSFER |
182175859bfSDavid Dillow 		 SNDRV_PCM_INFO_SYNC_START |
183175859bfSDavid Dillow 		 SNDRV_PCM_INFO_RESUME),
184175859bfSDavid Dillow 	.formats = (SNDRV_PCM_FMTBIT_S8 | SNDRV_PCM_FMTBIT_U8 |
185175859bfSDavid Dillow 		    SNDRV_PCM_FMTBIT_S16_LE | SNDRV_PCM_FMTBIT_U16_LE),
186175859bfSDavid Dillow 	.rates = SNDRV_PCM_RATE_48000,
187175859bfSDavid Dillow 	.rate_min = 4000,
188175859bfSDavid Dillow 	.rate_max = 48000,
189175859bfSDavid Dillow 	.channels_min = 1,
190175859bfSDavid Dillow 	.channels_max = 2,
191175859bfSDavid Dillow 	.buffer_bytes_max = (0xfff9 * 4),
192175859bfSDavid Dillow 	.period_bytes_min = 9,
193175859bfSDavid Dillow 	.period_bytes_max = (0xfff9 * 4),
194175859bfSDavid Dillow 	.periods_min = 1,
195175859bfSDavid Dillow 	.periods_max = (0xfff9 / 9),
196175859bfSDavid Dillow };
197175859bfSDavid Dillow 
198175859bfSDavid Dillow static void sis_update_sso(struct voice *voice, u16 period)
199175859bfSDavid Dillow {
200175859bfSDavid Dillow 	void __iomem *base = voice->ctrl_base;
201175859bfSDavid Dillow 
202175859bfSDavid Dillow 	voice->sso += period;
203175859bfSDavid Dillow 	if (voice->sso >= voice->buffer_size)
204175859bfSDavid Dillow 		voice->sso -= voice->buffer_size;
205175859bfSDavid Dillow 
206175859bfSDavid Dillow 	/* Enforce the documented hardware minimum offset */
207175859bfSDavid Dillow 	if (voice->sso < 8)
208175859bfSDavid Dillow 		voice->sso = 8;
209175859bfSDavid Dillow 
210175859bfSDavid Dillow 	/* The SSO is in the upper 16 bits of the register. */
211175859bfSDavid Dillow 	writew(voice->sso & 0xffff, base + SIS_PLAY_DMA_SSO_ESO + 2);
212175859bfSDavid Dillow }
213175859bfSDavid Dillow 
214175859bfSDavid Dillow static void sis_update_voice(struct voice *voice)
215175859bfSDavid Dillow {
216175859bfSDavid Dillow 	if (voice->flags & VOICE_SSO_TIMING) {
217175859bfSDavid Dillow 		sis_update_sso(voice, voice->period_size);
218175859bfSDavid Dillow 	} else if (voice->flags & VOICE_SYNC_TIMING) {
219175859bfSDavid Dillow 		int sync;
220175859bfSDavid Dillow 
221175859bfSDavid Dillow 		/* If we've not hit the end of the virtual period, update
222175859bfSDavid Dillow 		 * our records and keep going.
223175859bfSDavid Dillow 		 */
224175859bfSDavid Dillow 		if (voice->vperiod > voice->period_size) {
225175859bfSDavid Dillow 			voice->vperiod -= voice->period_size;
226175859bfSDavid Dillow 			if (voice->vperiod < voice->period_size)
227175859bfSDavid Dillow 				sis_update_sso(voice, voice->vperiod);
228175859bfSDavid Dillow 			else
229175859bfSDavid Dillow 				sis_update_sso(voice, voice->period_size);
230175859bfSDavid Dillow 			return;
231175859bfSDavid Dillow 		}
232175859bfSDavid Dillow 
233175859bfSDavid Dillow 		/* Calculate our relative offset between the target and
234175859bfSDavid Dillow 		 * the actual CSO value. Since we're operating in a loop,
235175859bfSDavid Dillow 		 * if the value is more than half way around, we can
236175859bfSDavid Dillow 		 * consider ourselves wrapped.
237175859bfSDavid Dillow 		 */
238175859bfSDavid Dillow 		sync = voice->sync_cso;
239175859bfSDavid Dillow 		sync -= readw(voice->sync_base + SIS_CAPTURE_DMA_FORMAT_CSO);
240175859bfSDavid Dillow 		if (sync > (voice->sync_buffer_size / 2))
241175859bfSDavid Dillow 			sync -= voice->sync_buffer_size;
242175859bfSDavid Dillow 
243175859bfSDavid Dillow 		/* If sync is positive, then we interrupted too early, and
244175859bfSDavid Dillow 		 * we'll need to come back in a few samples and try again.
245175859bfSDavid Dillow 		 * There's a minimum wait, as it takes some time for the DMA
246175859bfSDavid Dillow 		 * engine to startup, etc...
247175859bfSDavid Dillow 		 */
248175859bfSDavid Dillow 		if (sync > 0) {
249175859bfSDavid Dillow 			if (sync < 16)
250175859bfSDavid Dillow 				sync = 16;
251175859bfSDavid Dillow 			sis_update_sso(voice, sync);
252175859bfSDavid Dillow 			return;
253175859bfSDavid Dillow 		}
254175859bfSDavid Dillow 
255175859bfSDavid Dillow 		/* Ok, we interrupted right on time, or (hopefully) just
256175859bfSDavid Dillow 		 * a bit late. We'll adjst our next waiting period based
257175859bfSDavid Dillow 		 * on how close we got.
258175859bfSDavid Dillow 		 *
259175859bfSDavid Dillow 		 * We need to stay just behind the actual channel to ensure
260175859bfSDavid Dillow 		 * it really is past a period when we get our interrupt --
261175859bfSDavid Dillow 		 * otherwise we'll fall into the early code above and have
262175859bfSDavid Dillow 		 * a minimum wait time, which makes us quite late here,
263175859bfSDavid Dillow 		 * eating into the user's time to refresh the buffer, esp.
264175859bfSDavid Dillow 		 * if using small periods.
265175859bfSDavid Dillow 		 *
266175859bfSDavid Dillow 		 * If we're less than 9 samples behind, we're on target.
2673a3d5fd1SDavid Dillow 		 * Otherwise, shorten the next vperiod by the amount we've
2683a3d5fd1SDavid Dillow 		 * been delayed.
269175859bfSDavid Dillow 		 */
270175859bfSDavid Dillow 		if (sync > -9)
271175859bfSDavid Dillow 			voice->vperiod = voice->sync_period_size + 1;
272175859bfSDavid Dillow 		else
2733a3d5fd1SDavid Dillow 			voice->vperiod = voice->sync_period_size + sync + 10;
274175859bfSDavid Dillow 
275175859bfSDavid Dillow 		if (voice->vperiod < voice->buffer_size) {
276175859bfSDavid Dillow 			sis_update_sso(voice, voice->vperiod);
277175859bfSDavid Dillow 			voice->vperiod = 0;
278175859bfSDavid Dillow 		} else
279175859bfSDavid Dillow 			sis_update_sso(voice, voice->period_size);
280175859bfSDavid Dillow 
281175859bfSDavid Dillow 		sync = voice->sync_cso + voice->sync_period_size;
282175859bfSDavid Dillow 		if (sync >= voice->sync_buffer_size)
283175859bfSDavid Dillow 			sync -= voice->sync_buffer_size;
284175859bfSDavid Dillow 		voice->sync_cso = sync;
285175859bfSDavid Dillow 	}
286175859bfSDavid Dillow 
287175859bfSDavid Dillow 	snd_pcm_period_elapsed(voice->substream);
288175859bfSDavid Dillow }
289175859bfSDavid Dillow 
290175859bfSDavid Dillow static void sis_voice_irq(u32 status, struct voice *voice)
291175859bfSDavid Dillow {
292175859bfSDavid Dillow 	int bit;
293175859bfSDavid Dillow 
294175859bfSDavid Dillow 	while (status) {
295175859bfSDavid Dillow 		bit = __ffs(status);
296175859bfSDavid Dillow 		status >>= bit + 1;
297175859bfSDavid Dillow 		voice += bit;
298175859bfSDavid Dillow 		sis_update_voice(voice);
299175859bfSDavid Dillow 		voice++;
300175859bfSDavid Dillow 	}
301175859bfSDavid Dillow }
302175859bfSDavid Dillow 
303175859bfSDavid Dillow static irqreturn_t sis_interrupt(int irq, void *dev)
304175859bfSDavid Dillow {
305175859bfSDavid Dillow 	struct sis7019 *sis = dev;
306175859bfSDavid Dillow 	unsigned long io = sis->ioport;
307175859bfSDavid Dillow 	struct voice *voice;
308175859bfSDavid Dillow 	u32 intr, status;
309175859bfSDavid Dillow 
310175859bfSDavid Dillow 	/* We only use the DMA interrupts, and we don't enable any other
31125985edcSLucas De Marchi 	 * source of interrupts. But, it is possible to see an interrupt
312175859bfSDavid Dillow 	 * status that didn't actually interrupt us, so eliminate anything
313175859bfSDavid Dillow 	 * we're not expecting to avoid falsely claiming an IRQ, and an
314175859bfSDavid Dillow 	 * ensuing endless loop.
315175859bfSDavid Dillow 	 */
316175859bfSDavid Dillow 	intr = inl(io + SIS_GISR);
317175859bfSDavid Dillow 	intr &= SIS_GISR_AUDIO_PLAY_DMA_IRQ_STATUS |
318175859bfSDavid Dillow 		SIS_GISR_AUDIO_RECORD_DMA_IRQ_STATUS;
319175859bfSDavid Dillow 	if (!intr)
320175859bfSDavid Dillow 		return IRQ_NONE;
321175859bfSDavid Dillow 
322175859bfSDavid Dillow 	do {
323175859bfSDavid Dillow 		status = inl(io + SIS_PISR_A);
324175859bfSDavid Dillow 		if (status) {
325175859bfSDavid Dillow 			sis_voice_irq(status, sis->voices);
326175859bfSDavid Dillow 			outl(status, io + SIS_PISR_A);
327175859bfSDavid Dillow 		}
328175859bfSDavid Dillow 
329175859bfSDavid Dillow 		status = inl(io + SIS_PISR_B);
330175859bfSDavid Dillow 		if (status) {
331175859bfSDavid Dillow 			sis_voice_irq(status, &sis->voices[32]);
332175859bfSDavid Dillow 			outl(status, io + SIS_PISR_B);
333175859bfSDavid Dillow 		}
334175859bfSDavid Dillow 
335175859bfSDavid Dillow 		status = inl(io + SIS_RISR);
336175859bfSDavid Dillow 		if (status) {
337175859bfSDavid Dillow 			voice = &sis->capture_voice;
338175859bfSDavid Dillow 			if (!voice->timing)
339175859bfSDavid Dillow 				snd_pcm_period_elapsed(voice->substream);
340175859bfSDavid Dillow 
341175859bfSDavid Dillow 			outl(status, io + SIS_RISR);
342175859bfSDavid Dillow 		}
343175859bfSDavid Dillow 
344175859bfSDavid Dillow 		outl(intr, io + SIS_GISR);
345175859bfSDavid Dillow 		intr = inl(io + SIS_GISR);
346175859bfSDavid Dillow 		intr &= SIS_GISR_AUDIO_PLAY_DMA_IRQ_STATUS |
347175859bfSDavid Dillow 			SIS_GISR_AUDIO_RECORD_DMA_IRQ_STATUS;
348175859bfSDavid Dillow 	} while (intr);
349175859bfSDavid Dillow 
350175859bfSDavid Dillow 	return IRQ_HANDLED;
351175859bfSDavid Dillow }
352175859bfSDavid Dillow 
353175859bfSDavid Dillow static u32 sis_rate_to_delta(unsigned int rate)
354175859bfSDavid Dillow {
355175859bfSDavid Dillow 	u32 delta;
356175859bfSDavid Dillow 
357175859bfSDavid Dillow 	/* This was copied from the trident driver, but it seems its gotten
358175859bfSDavid Dillow 	 * around a bit... nevertheless, it works well.
359175859bfSDavid Dillow 	 *
360175859bfSDavid Dillow 	 * We special case 44100 and 8000 since rounding with the equation
361175859bfSDavid Dillow 	 * does not give us an accurate enough value. For 11025 and 22050
362175859bfSDavid Dillow 	 * the equation gives us the best answer. All other frequencies will
363175859bfSDavid Dillow 	 * also use the equation. JDW
364175859bfSDavid Dillow 	 */
365175859bfSDavid Dillow 	if (rate == 44100)
366175859bfSDavid Dillow 		delta = 0xeb3;
367175859bfSDavid Dillow 	else if (rate == 8000)
368175859bfSDavid Dillow 		delta = 0x2ab;
369175859bfSDavid Dillow 	else if (rate == 48000)
370175859bfSDavid Dillow 		delta = 0x1000;
371175859bfSDavid Dillow 	else
372175859bfSDavid Dillow 		delta = (((rate << 12) + 24000) / 48000) & 0x0000ffff;
373175859bfSDavid Dillow 	return delta;
374175859bfSDavid Dillow }
375175859bfSDavid Dillow 
376175859bfSDavid Dillow static void __sis_map_silence(struct sis7019 *sis)
377175859bfSDavid Dillow {
378175859bfSDavid Dillow 	/* Helper function: must hold sis->voice_lock on entry */
379175859bfSDavid Dillow 	if (!sis->silence_users)
380175859bfSDavid Dillow 		sis->silence_dma_addr = pci_map_single(sis->pci,
381175859bfSDavid Dillow 						sis->suspend_state[0],
382175859bfSDavid Dillow 						4096, PCI_DMA_TODEVICE);
383175859bfSDavid Dillow 	sis->silence_users++;
384175859bfSDavid Dillow }
385175859bfSDavid Dillow 
386175859bfSDavid Dillow static void __sis_unmap_silence(struct sis7019 *sis)
387175859bfSDavid Dillow {
388175859bfSDavid Dillow 	/* Helper function: must hold sis->voice_lock on entry */
389175859bfSDavid Dillow 	sis->silence_users--;
390175859bfSDavid Dillow 	if (!sis->silence_users)
391175859bfSDavid Dillow 		pci_unmap_single(sis->pci, sis->silence_dma_addr, 4096,
392175859bfSDavid Dillow 					PCI_DMA_TODEVICE);
393175859bfSDavid Dillow }
394175859bfSDavid Dillow 
395175859bfSDavid Dillow static void sis_free_voice(struct sis7019 *sis, struct voice *voice)
396175859bfSDavid Dillow {
397175859bfSDavid Dillow 	unsigned long flags;
398175859bfSDavid Dillow 
399175859bfSDavid Dillow 	spin_lock_irqsave(&sis->voice_lock, flags);
400175859bfSDavid Dillow 	if (voice->timing) {
401175859bfSDavid Dillow 		__sis_unmap_silence(sis);
402175859bfSDavid Dillow 		voice->timing->flags &= ~(VOICE_IN_USE | VOICE_SSO_TIMING |
403175859bfSDavid Dillow 						VOICE_SYNC_TIMING);
404175859bfSDavid Dillow 		voice->timing = NULL;
405175859bfSDavid Dillow 	}
406175859bfSDavid Dillow 	voice->flags &= ~(VOICE_IN_USE | VOICE_SSO_TIMING | VOICE_SYNC_TIMING);
407175859bfSDavid Dillow 	spin_unlock_irqrestore(&sis->voice_lock, flags);
408175859bfSDavid Dillow }
409175859bfSDavid Dillow 
410175859bfSDavid Dillow static struct voice *__sis_alloc_playback_voice(struct sis7019 *sis)
411175859bfSDavid Dillow {
412175859bfSDavid Dillow 	/* Must hold the voice_lock on entry */
413175859bfSDavid Dillow 	struct voice *voice;
414175859bfSDavid Dillow 	int i;
415175859bfSDavid Dillow 
416175859bfSDavid Dillow 	for (i = 0; i < 64; i++) {
417175859bfSDavid Dillow 		voice = &sis->voices[i];
418175859bfSDavid Dillow 		if (voice->flags & VOICE_IN_USE)
419175859bfSDavid Dillow 			continue;
420175859bfSDavid Dillow 		voice->flags |= VOICE_IN_USE;
421175859bfSDavid Dillow 		goto found_one;
422175859bfSDavid Dillow 	}
423175859bfSDavid Dillow 	voice = NULL;
424175859bfSDavid Dillow 
425175859bfSDavid Dillow found_one:
426175859bfSDavid Dillow 	return voice;
427175859bfSDavid Dillow }
428175859bfSDavid Dillow 
429175859bfSDavid Dillow static struct voice *sis_alloc_playback_voice(struct sis7019 *sis)
430175859bfSDavid Dillow {
431175859bfSDavid Dillow 	struct voice *voice;
432175859bfSDavid Dillow 	unsigned long flags;
433175859bfSDavid Dillow 
434175859bfSDavid Dillow 	spin_lock_irqsave(&sis->voice_lock, flags);
435175859bfSDavid Dillow 	voice = __sis_alloc_playback_voice(sis);
436175859bfSDavid Dillow 	spin_unlock_irqrestore(&sis->voice_lock, flags);
437175859bfSDavid Dillow 
438175859bfSDavid Dillow 	return voice;
439175859bfSDavid Dillow }
440175859bfSDavid Dillow 
441175859bfSDavid Dillow static int sis_alloc_timing_voice(struct snd_pcm_substream *substream,
442175859bfSDavid Dillow 					struct snd_pcm_hw_params *hw_params)
443175859bfSDavid Dillow {
444175859bfSDavid Dillow 	struct sis7019 *sis = snd_pcm_substream_chip(substream);
445175859bfSDavid Dillow 	struct snd_pcm_runtime *runtime = substream->runtime;
446175859bfSDavid Dillow 	struct voice *voice = runtime->private_data;
447175859bfSDavid Dillow 	unsigned int period_size, buffer_size;
448175859bfSDavid Dillow 	unsigned long flags;
449175859bfSDavid Dillow 	int needed;
450175859bfSDavid Dillow 
451175859bfSDavid Dillow 	/* If there are one or two periods per buffer, we don't need a
452175859bfSDavid Dillow 	 * timing voice, as we can use the capture channel's interrupts
453175859bfSDavid Dillow 	 * to clock out the periods.
454175859bfSDavid Dillow 	 */
455175859bfSDavid Dillow 	period_size = params_period_size(hw_params);
456175859bfSDavid Dillow 	buffer_size = params_buffer_size(hw_params);
457175859bfSDavid Dillow 	needed = (period_size != buffer_size &&
458175859bfSDavid Dillow 			period_size != (buffer_size / 2));
459175859bfSDavid Dillow 
460175859bfSDavid Dillow 	if (needed && !voice->timing) {
461175859bfSDavid Dillow 		spin_lock_irqsave(&sis->voice_lock, flags);
462175859bfSDavid Dillow 		voice->timing = __sis_alloc_playback_voice(sis);
463175859bfSDavid Dillow 		if (voice->timing)
464175859bfSDavid Dillow 			__sis_map_silence(sis);
465175859bfSDavid Dillow 		spin_unlock_irqrestore(&sis->voice_lock, flags);
466175859bfSDavid Dillow 		if (!voice->timing)
467175859bfSDavid Dillow 			return -ENOMEM;
468175859bfSDavid Dillow 		voice->timing->substream = substream;
469175859bfSDavid Dillow 	} else if (!needed && voice->timing) {
470175859bfSDavid Dillow 		sis_free_voice(sis, voice);
471175859bfSDavid Dillow 		voice->timing = NULL;
472175859bfSDavid Dillow 	}
473175859bfSDavid Dillow 
474175859bfSDavid Dillow 	return 0;
475175859bfSDavid Dillow }
476175859bfSDavid Dillow 
477175859bfSDavid Dillow static int sis_playback_open(struct snd_pcm_substream *substream)
478175859bfSDavid Dillow {
479175859bfSDavid Dillow 	struct sis7019 *sis = snd_pcm_substream_chip(substream);
480175859bfSDavid Dillow 	struct snd_pcm_runtime *runtime = substream->runtime;
481175859bfSDavid Dillow 	struct voice *voice;
482175859bfSDavid Dillow 
483175859bfSDavid Dillow 	voice = sis_alloc_playback_voice(sis);
484175859bfSDavid Dillow 	if (!voice)
485175859bfSDavid Dillow 		return -EAGAIN;
486175859bfSDavid Dillow 
487175859bfSDavid Dillow 	voice->substream = substream;
488175859bfSDavid Dillow 	runtime->private_data = voice;
489175859bfSDavid Dillow 	runtime->hw = sis_playback_hw_info;
490175859bfSDavid Dillow 	snd_pcm_hw_constraint_minmax(runtime, SNDRV_PCM_HW_PARAM_PERIOD_SIZE,
491175859bfSDavid Dillow 						9, 0xfff9);
492175859bfSDavid Dillow 	snd_pcm_hw_constraint_minmax(runtime, SNDRV_PCM_HW_PARAM_BUFFER_SIZE,
493175859bfSDavid Dillow 						9, 0xfff9);
494175859bfSDavid Dillow 	snd_pcm_set_sync(substream);
495175859bfSDavid Dillow 	return 0;
496175859bfSDavid Dillow }
497175859bfSDavid Dillow 
498175859bfSDavid Dillow static int sis_substream_close(struct snd_pcm_substream *substream)
499175859bfSDavid Dillow {
500175859bfSDavid Dillow 	struct sis7019 *sis = snd_pcm_substream_chip(substream);
501175859bfSDavid Dillow 	struct snd_pcm_runtime *runtime = substream->runtime;
502175859bfSDavid Dillow 	struct voice *voice = runtime->private_data;
503175859bfSDavid Dillow 
504175859bfSDavid Dillow 	sis_free_voice(sis, voice);
505175859bfSDavid Dillow 	return 0;
506175859bfSDavid Dillow }
507175859bfSDavid Dillow 
508175859bfSDavid Dillow static int sis_playback_hw_params(struct snd_pcm_substream *substream,
509175859bfSDavid Dillow 					struct snd_pcm_hw_params *hw_params)
510175859bfSDavid Dillow {
511175859bfSDavid Dillow 	return snd_pcm_lib_malloc_pages(substream,
512175859bfSDavid Dillow 					params_buffer_bytes(hw_params));
513175859bfSDavid Dillow }
514175859bfSDavid Dillow 
515175859bfSDavid Dillow static int sis_hw_free(struct snd_pcm_substream *substream)
516175859bfSDavid Dillow {
517175859bfSDavid Dillow 	return snd_pcm_lib_free_pages(substream);
518175859bfSDavid Dillow }
519175859bfSDavid Dillow 
520175859bfSDavid Dillow static int sis_pcm_playback_prepare(struct snd_pcm_substream *substream)
521175859bfSDavid Dillow {
522175859bfSDavid Dillow 	struct snd_pcm_runtime *runtime = substream->runtime;
523175859bfSDavid Dillow 	struct voice *voice = runtime->private_data;
524175859bfSDavid Dillow 	void __iomem *ctrl_base = voice->ctrl_base;
525175859bfSDavid Dillow 	void __iomem *wave_base = voice->wave_base;
526175859bfSDavid Dillow 	u32 format, dma_addr, control, sso_eso, delta, reg;
527175859bfSDavid Dillow 	u16 leo;
528175859bfSDavid Dillow 
529175859bfSDavid Dillow 	/* We rely on the PCM core to ensure that the parameters for this
530175859bfSDavid Dillow 	 * substream do not change on us while we're programming the HW.
531175859bfSDavid Dillow 	 */
532175859bfSDavid Dillow 	format = 0;
533175859bfSDavid Dillow 	if (snd_pcm_format_width(runtime->format) == 8)
534175859bfSDavid Dillow 		format |= SIS_PLAY_DMA_FORMAT_8BIT;
535175859bfSDavid Dillow 	if (!snd_pcm_format_signed(runtime->format))
536175859bfSDavid Dillow 		format |= SIS_PLAY_DMA_FORMAT_UNSIGNED;
537175859bfSDavid Dillow 	if (runtime->channels == 1)
538175859bfSDavid Dillow 		format |= SIS_PLAY_DMA_FORMAT_MONO;
539175859bfSDavid Dillow 
540175859bfSDavid Dillow 	/* The baseline setup is for a single period per buffer, and
541175859bfSDavid Dillow 	 * we add bells and whistles as needed from there.
542175859bfSDavid Dillow 	 */
543175859bfSDavid Dillow 	dma_addr = runtime->dma_addr;
544175859bfSDavid Dillow 	leo = runtime->buffer_size - 1;
545175859bfSDavid Dillow 	control = leo | SIS_PLAY_DMA_LOOP | SIS_PLAY_DMA_INTR_AT_LEO;
546175859bfSDavid Dillow 	sso_eso = leo;
547175859bfSDavid Dillow 
548175859bfSDavid Dillow 	if (runtime->period_size == (runtime->buffer_size / 2)) {
549175859bfSDavid Dillow 		control |= SIS_PLAY_DMA_INTR_AT_MLP;
550175859bfSDavid Dillow 	} else if (runtime->period_size != runtime->buffer_size) {
551175859bfSDavid Dillow 		voice->flags |= VOICE_SSO_TIMING;
552175859bfSDavid Dillow 		voice->sso = runtime->period_size - 1;
553175859bfSDavid Dillow 		voice->period_size = runtime->period_size;
554175859bfSDavid Dillow 		voice->buffer_size = runtime->buffer_size;
555175859bfSDavid Dillow 
556175859bfSDavid Dillow 		control &= ~SIS_PLAY_DMA_INTR_AT_LEO;
557175859bfSDavid Dillow 		control |= SIS_PLAY_DMA_INTR_AT_SSO;
558175859bfSDavid Dillow 		sso_eso |= (runtime->period_size - 1) << 16;
559175859bfSDavid Dillow 	}
560175859bfSDavid Dillow 
561175859bfSDavid Dillow 	delta = sis_rate_to_delta(runtime->rate);
562175859bfSDavid Dillow 
563175859bfSDavid Dillow 	/* Ok, we're ready to go, set up the channel.
564175859bfSDavid Dillow 	 */
565175859bfSDavid Dillow 	writel(format, ctrl_base + SIS_PLAY_DMA_FORMAT_CSO);
566175859bfSDavid Dillow 	writel(dma_addr, ctrl_base + SIS_PLAY_DMA_BASE);
567175859bfSDavid Dillow 	writel(control, ctrl_base + SIS_PLAY_DMA_CONTROL);
568175859bfSDavid Dillow 	writel(sso_eso, ctrl_base + SIS_PLAY_DMA_SSO_ESO);
569175859bfSDavid Dillow 
570175859bfSDavid Dillow 	for (reg = 0; reg < SIS_WAVE_SIZE; reg += 4)
571175859bfSDavid Dillow 		writel(0, wave_base + reg);
572175859bfSDavid Dillow 
573175859bfSDavid Dillow 	writel(SIS_WAVE_GENERAL_WAVE_VOLUME, wave_base + SIS_WAVE_GENERAL);
574175859bfSDavid Dillow 	writel(delta << 16, wave_base + SIS_WAVE_GENERAL_ARTICULATION);
575175859bfSDavid Dillow 	writel(SIS_WAVE_CHANNEL_CONTROL_FIRST_SAMPLE |
576175859bfSDavid Dillow 			SIS_WAVE_CHANNEL_CONTROL_AMP_ENABLE |
577175859bfSDavid Dillow 			SIS_WAVE_CHANNEL_CONTROL_INTERPOLATE_ENABLE,
578175859bfSDavid Dillow 			wave_base + SIS_WAVE_CHANNEL_CONTROL);
579175859bfSDavid Dillow 
580175859bfSDavid Dillow 	/* Force PCI writes to post. */
581175859bfSDavid Dillow 	readl(ctrl_base);
582175859bfSDavid Dillow 
583175859bfSDavid Dillow 	return 0;
584175859bfSDavid Dillow }
585175859bfSDavid Dillow 
586175859bfSDavid Dillow static int sis_pcm_trigger(struct snd_pcm_substream *substream, int cmd)
587175859bfSDavid Dillow {
588175859bfSDavid Dillow 	struct sis7019 *sis = snd_pcm_substream_chip(substream);
589175859bfSDavid Dillow 	unsigned long io = sis->ioport;
590175859bfSDavid Dillow 	struct snd_pcm_substream *s;
591175859bfSDavid Dillow 	struct voice *voice;
592175859bfSDavid Dillow 	void *chip;
593175859bfSDavid Dillow 	int starting;
594175859bfSDavid Dillow 	u32 record = 0;
595175859bfSDavid Dillow 	u32 play[2] = { 0, 0 };
596175859bfSDavid Dillow 
597175859bfSDavid Dillow 	/* No locks needed, as the PCM core will hold the locks on the
598175859bfSDavid Dillow 	 * substreams, and the HW will only start/stop the indicated voices
599175859bfSDavid Dillow 	 * without changing the state of the others.
600175859bfSDavid Dillow 	 */
601175859bfSDavid Dillow 	switch (cmd) {
602175859bfSDavid Dillow 	case SNDRV_PCM_TRIGGER_START:
603175859bfSDavid Dillow 	case SNDRV_PCM_TRIGGER_PAUSE_RELEASE:
604175859bfSDavid Dillow 	case SNDRV_PCM_TRIGGER_RESUME:
605175859bfSDavid Dillow 		starting = 1;
606175859bfSDavid Dillow 		break;
607175859bfSDavid Dillow 	case SNDRV_PCM_TRIGGER_STOP:
608175859bfSDavid Dillow 	case SNDRV_PCM_TRIGGER_PAUSE_PUSH:
609175859bfSDavid Dillow 	case SNDRV_PCM_TRIGGER_SUSPEND:
610175859bfSDavid Dillow 		starting = 0;
611175859bfSDavid Dillow 		break;
612175859bfSDavid Dillow 	default:
613175859bfSDavid Dillow 		return -EINVAL;
614175859bfSDavid Dillow 	}
615175859bfSDavid Dillow 
616175859bfSDavid Dillow 	snd_pcm_group_for_each_entry(s, substream) {
617175859bfSDavid Dillow 		/* Make sure it is for us... */
618175859bfSDavid Dillow 		chip = snd_pcm_substream_chip(s);
619175859bfSDavid Dillow 		if (chip != sis)
620175859bfSDavid Dillow 			continue;
621175859bfSDavid Dillow 
622175859bfSDavid Dillow 		voice = s->runtime->private_data;
623175859bfSDavid Dillow 		if (voice->flags & VOICE_CAPTURE) {
624175859bfSDavid Dillow 			record |= 1 << voice->num;
625175859bfSDavid Dillow 			voice = voice->timing;
626175859bfSDavid Dillow 		}
627175859bfSDavid Dillow 
628175859bfSDavid Dillow 		/* voice could be NULL if this a recording stream, and it
629175859bfSDavid Dillow 		 * doesn't have an external timing channel.
630175859bfSDavid Dillow 		 */
631175859bfSDavid Dillow 		if (voice)
632175859bfSDavid Dillow 			play[voice->num / 32] |= 1 << (voice->num & 0x1f);
633175859bfSDavid Dillow 
634175859bfSDavid Dillow 		snd_pcm_trigger_done(s, substream);
635175859bfSDavid Dillow 	}
636175859bfSDavid Dillow 
637175859bfSDavid Dillow 	if (starting) {
638175859bfSDavid Dillow 		if (record)
639175859bfSDavid Dillow 			outl(record, io + SIS_RECORD_START_REG);
640175859bfSDavid Dillow 		if (play[0])
641175859bfSDavid Dillow 			outl(play[0], io + SIS_PLAY_START_A_REG);
642175859bfSDavid Dillow 		if (play[1])
643175859bfSDavid Dillow 			outl(play[1], io + SIS_PLAY_START_B_REG);
644175859bfSDavid Dillow 	} else {
645175859bfSDavid Dillow 		if (record)
646175859bfSDavid Dillow 			outl(record, io + SIS_RECORD_STOP_REG);
647175859bfSDavid Dillow 		if (play[0])
648175859bfSDavid Dillow 			outl(play[0], io + SIS_PLAY_STOP_A_REG);
649175859bfSDavid Dillow 		if (play[1])
650175859bfSDavid Dillow 			outl(play[1], io + SIS_PLAY_STOP_B_REG);
651175859bfSDavid Dillow 	}
652175859bfSDavid Dillow 	return 0;
653175859bfSDavid Dillow }
654175859bfSDavid Dillow 
655175859bfSDavid Dillow static snd_pcm_uframes_t sis_pcm_pointer(struct snd_pcm_substream *substream)
656175859bfSDavid Dillow {
657175859bfSDavid Dillow 	struct snd_pcm_runtime *runtime = substream->runtime;
658175859bfSDavid Dillow 	struct voice *voice = runtime->private_data;
659175859bfSDavid Dillow 	u32 cso;
660175859bfSDavid Dillow 
661175859bfSDavid Dillow 	cso = readl(voice->ctrl_base + SIS_PLAY_DMA_FORMAT_CSO);
662175859bfSDavid Dillow 	cso &= 0xffff;
663175859bfSDavid Dillow 	return cso;
664175859bfSDavid Dillow }
665175859bfSDavid Dillow 
666175859bfSDavid Dillow static int sis_capture_open(struct snd_pcm_substream *substream)
667175859bfSDavid Dillow {
668175859bfSDavid Dillow 	struct sis7019 *sis = snd_pcm_substream_chip(substream);
669175859bfSDavid Dillow 	struct snd_pcm_runtime *runtime = substream->runtime;
670175859bfSDavid Dillow 	struct voice *voice = &sis->capture_voice;
671175859bfSDavid Dillow 	unsigned long flags;
672175859bfSDavid Dillow 
673175859bfSDavid Dillow 	/* FIXME: The driver only supports recording from one channel
674175859bfSDavid Dillow 	 * at the moment, but it could support more.
675175859bfSDavid Dillow 	 */
676175859bfSDavid Dillow 	spin_lock_irqsave(&sis->voice_lock, flags);
677175859bfSDavid Dillow 	if (voice->flags & VOICE_IN_USE)
678175859bfSDavid Dillow 		voice = NULL;
679175859bfSDavid Dillow 	else
680175859bfSDavid Dillow 		voice->flags |= VOICE_IN_USE;
681175859bfSDavid Dillow 	spin_unlock_irqrestore(&sis->voice_lock, flags);
682175859bfSDavid Dillow 
683175859bfSDavid Dillow 	if (!voice)
684175859bfSDavid Dillow 		return -EAGAIN;
685175859bfSDavid Dillow 
686175859bfSDavid Dillow 	voice->substream = substream;
687175859bfSDavid Dillow 	runtime->private_data = voice;
688175859bfSDavid Dillow 	runtime->hw = sis_capture_hw_info;
689175859bfSDavid Dillow 	runtime->hw.rates = sis->ac97[0]->rates[AC97_RATES_ADC];
690175859bfSDavid Dillow 	snd_pcm_limit_hw_rates(runtime);
691175859bfSDavid Dillow 	snd_pcm_hw_constraint_minmax(runtime, SNDRV_PCM_HW_PARAM_PERIOD_SIZE,
692175859bfSDavid Dillow 						9, 0xfff9);
693175859bfSDavid Dillow 	snd_pcm_hw_constraint_minmax(runtime, SNDRV_PCM_HW_PARAM_BUFFER_SIZE,
694175859bfSDavid Dillow 						9, 0xfff9);
695175859bfSDavid Dillow 	snd_pcm_set_sync(substream);
696175859bfSDavid Dillow 	return 0;
697175859bfSDavid Dillow }
698175859bfSDavid Dillow 
699175859bfSDavid Dillow static int sis_capture_hw_params(struct snd_pcm_substream *substream,
700175859bfSDavid Dillow 					struct snd_pcm_hw_params *hw_params)
701175859bfSDavid Dillow {
702175859bfSDavid Dillow 	struct sis7019 *sis = snd_pcm_substream_chip(substream);
703175859bfSDavid Dillow 	int rc;
704175859bfSDavid Dillow 
705175859bfSDavid Dillow 	rc = snd_ac97_set_rate(sis->ac97[0], AC97_PCM_LR_ADC_RATE,
706175859bfSDavid Dillow 						params_rate(hw_params));
707175859bfSDavid Dillow 	if (rc)
708175859bfSDavid Dillow 		goto out;
709175859bfSDavid Dillow 
710175859bfSDavid Dillow 	rc = snd_pcm_lib_malloc_pages(substream,
711175859bfSDavid Dillow 					params_buffer_bytes(hw_params));
712175859bfSDavid Dillow 	if (rc < 0)
713175859bfSDavid Dillow 		goto out;
714175859bfSDavid Dillow 
715175859bfSDavid Dillow 	rc = sis_alloc_timing_voice(substream, hw_params);
716175859bfSDavid Dillow 
717175859bfSDavid Dillow out:
718175859bfSDavid Dillow 	return rc;
719175859bfSDavid Dillow }
720175859bfSDavid Dillow 
721175859bfSDavid Dillow static void sis_prepare_timing_voice(struct voice *voice,
722175859bfSDavid Dillow 					struct snd_pcm_substream *substream)
723175859bfSDavid Dillow {
724175859bfSDavid Dillow 	struct sis7019 *sis = snd_pcm_substream_chip(substream);
725175859bfSDavid Dillow 	struct snd_pcm_runtime *runtime = substream->runtime;
726175859bfSDavid Dillow 	struct voice *timing = voice->timing;
727175859bfSDavid Dillow 	void __iomem *play_base = timing->ctrl_base;
728175859bfSDavid Dillow 	void __iomem *wave_base = timing->wave_base;
729175859bfSDavid Dillow 	u16 buffer_size, period_size;
730175859bfSDavid Dillow 	u32 format, control, sso_eso, delta;
731175859bfSDavid Dillow 	u32 vperiod, sso, reg;
732175859bfSDavid Dillow 
733175859bfSDavid Dillow 	/* Set our initial buffer and period as large as we can given a
734175859bfSDavid Dillow 	 * single page of silence.
735175859bfSDavid Dillow 	 */
736175859bfSDavid Dillow 	buffer_size = 4096 / runtime->channels;
737175859bfSDavid Dillow 	buffer_size /= snd_pcm_format_size(runtime->format, 1);
738175859bfSDavid Dillow 	period_size = buffer_size;
739175859bfSDavid Dillow 
740175859bfSDavid Dillow 	/* Initially, we want to interrupt just a bit behind the end of
7413a3d5fd1SDavid Dillow 	 * the period we're clocking out. 12 samples seems to give a good
742175859bfSDavid Dillow 	 * delay.
743175859bfSDavid Dillow 	 *
744175859bfSDavid Dillow 	 * We want to spread our interrupts throughout the virtual period,
745175859bfSDavid Dillow 	 * so that we don't end up with two interrupts back to back at the
746175859bfSDavid Dillow 	 * end -- this helps minimize the effects of any jitter. Adjust our
747175859bfSDavid Dillow 	 * clocking period size so that the last period is at least a fourth
748175859bfSDavid Dillow 	 * of a full period.
749175859bfSDavid Dillow 	 *
750175859bfSDavid Dillow 	 * This is all moot if we don't need to use virtual periods.
751175859bfSDavid Dillow 	 */
7523a3d5fd1SDavid Dillow 	vperiod = runtime->period_size + 12;
753175859bfSDavid Dillow 	if (vperiod > period_size) {
754175859bfSDavid Dillow 		u16 tail = vperiod % period_size;
755175859bfSDavid Dillow 		u16 quarter_period = period_size / 4;
756175859bfSDavid Dillow 
757175859bfSDavid Dillow 		if (tail && tail < quarter_period) {
758175859bfSDavid Dillow 			u16 loops = vperiod / period_size;
759175859bfSDavid Dillow 
760175859bfSDavid Dillow 			tail = quarter_period - tail;
761175859bfSDavid Dillow 			tail += loops - 1;
762175859bfSDavid Dillow 			tail /= loops;
763175859bfSDavid Dillow 			period_size -= tail;
764175859bfSDavid Dillow 		}
765175859bfSDavid Dillow 
766175859bfSDavid Dillow 		sso = period_size - 1;
767175859bfSDavid Dillow 	} else {
768175859bfSDavid Dillow 		/* The initial period will fit inside the buffer, so we
769175859bfSDavid Dillow 		 * don't need to use virtual periods -- disable them.
770175859bfSDavid Dillow 		 */
771175859bfSDavid Dillow 		period_size = runtime->period_size;
772175859bfSDavid Dillow 		sso = vperiod - 1;
773175859bfSDavid Dillow 		vperiod = 0;
774175859bfSDavid Dillow 	}
775175859bfSDavid Dillow 
77625985edcSLucas De Marchi 	/* The interrupt handler implements the timing synchronization, so
777175859bfSDavid Dillow 	 * setup its state.
778175859bfSDavid Dillow 	 */
779175859bfSDavid Dillow 	timing->flags |= VOICE_SYNC_TIMING;
780175859bfSDavid Dillow 	timing->sync_base = voice->ctrl_base;
7813a3d5fd1SDavid Dillow 	timing->sync_cso = runtime->period_size;
782175859bfSDavid Dillow 	timing->sync_period_size = runtime->period_size;
783175859bfSDavid Dillow 	timing->sync_buffer_size = runtime->buffer_size;
784175859bfSDavid Dillow 	timing->period_size = period_size;
785175859bfSDavid Dillow 	timing->buffer_size = buffer_size;
786175859bfSDavid Dillow 	timing->sso = sso;
787175859bfSDavid Dillow 	timing->vperiod = vperiod;
788175859bfSDavid Dillow 
789175859bfSDavid Dillow 	/* Using unsigned samples with the all-zero silence buffer
790175859bfSDavid Dillow 	 * forces the output to the lower rail, killing playback.
791175859bfSDavid Dillow 	 * So ignore unsigned vs signed -- it doesn't change the timing.
792175859bfSDavid Dillow 	 */
793175859bfSDavid Dillow 	format = 0;
794175859bfSDavid Dillow 	if (snd_pcm_format_width(runtime->format) == 8)
795175859bfSDavid Dillow 		format = SIS_CAPTURE_DMA_FORMAT_8BIT;
796175859bfSDavid Dillow 	if (runtime->channels == 1)
797175859bfSDavid Dillow 		format |= SIS_CAPTURE_DMA_FORMAT_MONO;
798175859bfSDavid Dillow 
799175859bfSDavid Dillow 	control = timing->buffer_size - 1;
800175859bfSDavid Dillow 	control |= SIS_PLAY_DMA_LOOP | SIS_PLAY_DMA_INTR_AT_SSO;
801175859bfSDavid Dillow 	sso_eso = timing->buffer_size - 1;
802175859bfSDavid Dillow 	sso_eso |= timing->sso << 16;
803175859bfSDavid Dillow 
804175859bfSDavid Dillow 	delta = sis_rate_to_delta(runtime->rate);
805175859bfSDavid Dillow 
806175859bfSDavid Dillow 	/* We've done the math, now configure the channel.
807175859bfSDavid Dillow 	 */
808175859bfSDavid Dillow 	writel(format, play_base + SIS_PLAY_DMA_FORMAT_CSO);
809175859bfSDavid Dillow 	writel(sis->silence_dma_addr, play_base + SIS_PLAY_DMA_BASE);
810175859bfSDavid Dillow 	writel(control, play_base + SIS_PLAY_DMA_CONTROL);
811175859bfSDavid Dillow 	writel(sso_eso, play_base + SIS_PLAY_DMA_SSO_ESO);
812175859bfSDavid Dillow 
813175859bfSDavid Dillow 	for (reg = 0; reg < SIS_WAVE_SIZE; reg += 4)
814175859bfSDavid Dillow 		writel(0, wave_base + reg);
815175859bfSDavid Dillow 
816175859bfSDavid Dillow 	writel(SIS_WAVE_GENERAL_WAVE_VOLUME, wave_base + SIS_WAVE_GENERAL);
817175859bfSDavid Dillow 	writel(delta << 16, wave_base + SIS_WAVE_GENERAL_ARTICULATION);
818175859bfSDavid Dillow 	writel(SIS_WAVE_CHANNEL_CONTROL_FIRST_SAMPLE |
819175859bfSDavid Dillow 			SIS_WAVE_CHANNEL_CONTROL_AMP_ENABLE |
820175859bfSDavid Dillow 			SIS_WAVE_CHANNEL_CONTROL_INTERPOLATE_ENABLE,
821175859bfSDavid Dillow 			wave_base + SIS_WAVE_CHANNEL_CONTROL);
822175859bfSDavid Dillow }
823175859bfSDavid Dillow 
824175859bfSDavid Dillow static int sis_pcm_capture_prepare(struct snd_pcm_substream *substream)
825175859bfSDavid Dillow {
826175859bfSDavid Dillow 	struct snd_pcm_runtime *runtime = substream->runtime;
827175859bfSDavid Dillow 	struct voice *voice = runtime->private_data;
828175859bfSDavid Dillow 	void __iomem *rec_base = voice->ctrl_base;
829175859bfSDavid Dillow 	u32 format, dma_addr, control;
830175859bfSDavid Dillow 	u16 leo;
831175859bfSDavid Dillow 
832175859bfSDavid Dillow 	/* We rely on the PCM core to ensure that the parameters for this
833175859bfSDavid Dillow 	 * substream do not change on us while we're programming the HW.
834175859bfSDavid Dillow 	 */
835175859bfSDavid Dillow 	format = 0;
836175859bfSDavid Dillow 	if (snd_pcm_format_width(runtime->format) == 8)
837175859bfSDavid Dillow 		format = SIS_CAPTURE_DMA_FORMAT_8BIT;
838175859bfSDavid Dillow 	if (!snd_pcm_format_signed(runtime->format))
839175859bfSDavid Dillow 		format |= SIS_CAPTURE_DMA_FORMAT_UNSIGNED;
840175859bfSDavid Dillow 	if (runtime->channels == 1)
841175859bfSDavid Dillow 		format |= SIS_CAPTURE_DMA_FORMAT_MONO;
842175859bfSDavid Dillow 
843175859bfSDavid Dillow 	dma_addr = runtime->dma_addr;
844175859bfSDavid Dillow 	leo = runtime->buffer_size - 1;
845175859bfSDavid Dillow 	control = leo | SIS_CAPTURE_DMA_LOOP;
846175859bfSDavid Dillow 
847175859bfSDavid Dillow 	/* If we've got more than two periods per buffer, then we have
848175859bfSDavid Dillow 	 * use a timing voice to clock out the periods. Otherwise, we can
849175859bfSDavid Dillow 	 * use the capture channel's interrupts.
850175859bfSDavid Dillow 	 */
851175859bfSDavid Dillow 	if (voice->timing) {
852175859bfSDavid Dillow 		sis_prepare_timing_voice(voice, substream);
853175859bfSDavid Dillow 	} else {
854175859bfSDavid Dillow 		control |= SIS_CAPTURE_DMA_INTR_AT_LEO;
855175859bfSDavid Dillow 		if (runtime->period_size != runtime->buffer_size)
856175859bfSDavid Dillow 			control |= SIS_CAPTURE_DMA_INTR_AT_MLP;
857175859bfSDavid Dillow 	}
858175859bfSDavid Dillow 
859175859bfSDavid Dillow 	writel(format, rec_base + SIS_CAPTURE_DMA_FORMAT_CSO);
860175859bfSDavid Dillow 	writel(dma_addr, rec_base + SIS_CAPTURE_DMA_BASE);
861175859bfSDavid Dillow 	writel(control, rec_base + SIS_CAPTURE_DMA_CONTROL);
862175859bfSDavid Dillow 
863175859bfSDavid Dillow 	/* Force the writes to post. */
864175859bfSDavid Dillow 	readl(rec_base);
865175859bfSDavid Dillow 
866175859bfSDavid Dillow 	return 0;
867175859bfSDavid Dillow }
868175859bfSDavid Dillow 
869175859bfSDavid Dillow static struct snd_pcm_ops sis_playback_ops = {
870175859bfSDavid Dillow 	.open = sis_playback_open,
871175859bfSDavid Dillow 	.close = sis_substream_close,
872175859bfSDavid Dillow 	.ioctl = snd_pcm_lib_ioctl,
873175859bfSDavid Dillow 	.hw_params = sis_playback_hw_params,
874175859bfSDavid Dillow 	.hw_free = sis_hw_free,
875175859bfSDavid Dillow 	.prepare = sis_pcm_playback_prepare,
876175859bfSDavid Dillow 	.trigger = sis_pcm_trigger,
877175859bfSDavid Dillow 	.pointer = sis_pcm_pointer,
878175859bfSDavid Dillow };
879175859bfSDavid Dillow 
880175859bfSDavid Dillow static struct snd_pcm_ops sis_capture_ops = {
881175859bfSDavid Dillow 	.open = sis_capture_open,
882175859bfSDavid Dillow 	.close = sis_substream_close,
883175859bfSDavid Dillow 	.ioctl = snd_pcm_lib_ioctl,
884175859bfSDavid Dillow 	.hw_params = sis_capture_hw_params,
885175859bfSDavid Dillow 	.hw_free = sis_hw_free,
886175859bfSDavid Dillow 	.prepare = sis_pcm_capture_prepare,
887175859bfSDavid Dillow 	.trigger = sis_pcm_trigger,
888175859bfSDavid Dillow 	.pointer = sis_pcm_pointer,
889175859bfSDavid Dillow };
890175859bfSDavid Dillow 
891175859bfSDavid Dillow static int __devinit sis_pcm_create(struct sis7019 *sis)
892175859bfSDavid Dillow {
893175859bfSDavid Dillow 	struct snd_pcm *pcm;
894175859bfSDavid Dillow 	int rc;
895175859bfSDavid Dillow 
896175859bfSDavid Dillow 	/* We have 64 voices, and the driver currently records from
897175859bfSDavid Dillow 	 * only one channel, though that could change in the future.
898175859bfSDavid Dillow 	 */
899175859bfSDavid Dillow 	rc = snd_pcm_new(sis->card, "SiS7019", 0, 64, 1, &pcm);
900175859bfSDavid Dillow 	if (rc)
901175859bfSDavid Dillow 		return rc;
902175859bfSDavid Dillow 
903175859bfSDavid Dillow 	pcm->private_data = sis;
904175859bfSDavid Dillow 	strcpy(pcm->name, "SiS7019");
905175859bfSDavid Dillow 	sis->pcm = pcm;
906175859bfSDavid Dillow 
907175859bfSDavid Dillow 	snd_pcm_set_ops(pcm, SNDRV_PCM_STREAM_PLAYBACK, &sis_playback_ops);
908175859bfSDavid Dillow 	snd_pcm_set_ops(pcm, SNDRV_PCM_STREAM_CAPTURE, &sis_capture_ops);
909175859bfSDavid Dillow 
910175859bfSDavid Dillow 	/* Try to preallocate some memory, but it's not the end of the
911175859bfSDavid Dillow 	 * world if this fails.
912175859bfSDavid Dillow 	 */
913175859bfSDavid Dillow 	snd_pcm_lib_preallocate_pages_for_all(pcm, SNDRV_DMA_TYPE_DEV,
914175859bfSDavid Dillow 				snd_dma_pci_data(sis->pci), 64*1024, 128*1024);
915175859bfSDavid Dillow 
916175859bfSDavid Dillow 	return 0;
917175859bfSDavid Dillow }
918175859bfSDavid Dillow 
919175859bfSDavid Dillow static unsigned short sis_ac97_rw(struct sis7019 *sis, int codec, u32 cmd)
920175859bfSDavid Dillow {
921175859bfSDavid Dillow 	unsigned long io = sis->ioport;
922175859bfSDavid Dillow 	unsigned short val = 0xffff;
923175859bfSDavid Dillow 	u16 status;
924175859bfSDavid Dillow 	u16 rdy;
925175859bfSDavid Dillow 	int count;
9263f76d984STobias Klauser 	static const u16 codec_ready[3] = {
927175859bfSDavid Dillow 		SIS_AC97_STATUS_CODEC_READY,
928175859bfSDavid Dillow 		SIS_AC97_STATUS_CODEC2_READY,
929175859bfSDavid Dillow 		SIS_AC97_STATUS_CODEC3_READY,
930175859bfSDavid Dillow 	};
931175859bfSDavid Dillow 
932175859bfSDavid Dillow 	rdy = codec_ready[codec];
933175859bfSDavid Dillow 
934175859bfSDavid Dillow 
935175859bfSDavid Dillow 	/* Get the AC97 semaphore -- software first, so we don't spin
936175859bfSDavid Dillow 	 * pounding out IO reads on the hardware semaphore...
937175859bfSDavid Dillow 	 */
938175859bfSDavid Dillow 	mutex_lock(&sis->ac97_mutex);
939175859bfSDavid Dillow 
940175859bfSDavid Dillow 	count = 0xffff;
941175859bfSDavid Dillow 	while ((inw(io + SIS_AC97_SEMA) & SIS_AC97_SEMA_BUSY) && --count)
942175859bfSDavid Dillow 		udelay(1);
943175859bfSDavid Dillow 
944175859bfSDavid Dillow 	if (!count)
945175859bfSDavid Dillow 		goto timeout;
946175859bfSDavid Dillow 
947175859bfSDavid Dillow 	/* ... and wait for any outstanding commands to complete ...
948175859bfSDavid Dillow 	 */
949175859bfSDavid Dillow 	count = 0xffff;
950175859bfSDavid Dillow 	do {
951175859bfSDavid Dillow 		status = inw(io + SIS_AC97_STATUS);
952175859bfSDavid Dillow 		if ((status & rdy) && !(status & SIS_AC97_STATUS_BUSY))
953175859bfSDavid Dillow 			break;
954175859bfSDavid Dillow 
955175859bfSDavid Dillow 		udelay(1);
956175859bfSDavid Dillow 	} while (--count);
957175859bfSDavid Dillow 
958175859bfSDavid Dillow 	if (!count)
959175859bfSDavid Dillow 		goto timeout_sema;
960175859bfSDavid Dillow 
961175859bfSDavid Dillow 	/* ... before sending our command and waiting for it to finish ...
962175859bfSDavid Dillow 	 */
963175859bfSDavid Dillow 	outl(cmd, io + SIS_AC97_CMD);
964175859bfSDavid Dillow 	udelay(10);
965175859bfSDavid Dillow 
966175859bfSDavid Dillow 	count = 0xffff;
967175859bfSDavid Dillow 	while ((inw(io + SIS_AC97_STATUS) & SIS_AC97_STATUS_BUSY) && --count)
968175859bfSDavid Dillow 		udelay(1);
969175859bfSDavid Dillow 
970175859bfSDavid Dillow 	/* ... and reading the results (if any).
971175859bfSDavid Dillow 	 */
972175859bfSDavid Dillow 	val = inl(io + SIS_AC97_CMD) >> 16;
973175859bfSDavid Dillow 
974175859bfSDavid Dillow timeout_sema:
975175859bfSDavid Dillow 	outl(SIS_AC97_SEMA_RELEASE, io + SIS_AC97_SEMA);
976175859bfSDavid Dillow timeout:
977175859bfSDavid Dillow 	mutex_unlock(&sis->ac97_mutex);
978175859bfSDavid Dillow 
979175859bfSDavid Dillow 	if (!count) {
980175859bfSDavid Dillow 		printk(KERN_ERR "sis7019: ac97 codec %d timeout cmd 0x%08x\n",
981175859bfSDavid Dillow 					codec, cmd);
982175859bfSDavid Dillow 	}
983175859bfSDavid Dillow 
984175859bfSDavid Dillow 	return val;
985175859bfSDavid Dillow }
986175859bfSDavid Dillow 
987175859bfSDavid Dillow static void sis_ac97_write(struct snd_ac97 *ac97, unsigned short reg,
988175859bfSDavid Dillow 				unsigned short val)
989175859bfSDavid Dillow {
9903f76d984STobias Klauser 	static const u32 cmd[3] = {
991175859bfSDavid Dillow 		SIS_AC97_CMD_CODEC_WRITE,
992175859bfSDavid Dillow 		SIS_AC97_CMD_CODEC2_WRITE,
993175859bfSDavid Dillow 		SIS_AC97_CMD_CODEC3_WRITE,
994175859bfSDavid Dillow 	};
995175859bfSDavid Dillow 	sis_ac97_rw(ac97->private_data, ac97->num,
996175859bfSDavid Dillow 			(val << 16) | (reg << 8) | cmd[ac97->num]);
997175859bfSDavid Dillow }
998175859bfSDavid Dillow 
999175859bfSDavid Dillow static unsigned short sis_ac97_read(struct snd_ac97 *ac97, unsigned short reg)
1000175859bfSDavid Dillow {
10013f76d984STobias Klauser 	static const u32 cmd[3] = {
1002175859bfSDavid Dillow 		SIS_AC97_CMD_CODEC_READ,
1003175859bfSDavid Dillow 		SIS_AC97_CMD_CODEC2_READ,
1004175859bfSDavid Dillow 		SIS_AC97_CMD_CODEC3_READ,
1005175859bfSDavid Dillow 	};
1006175859bfSDavid Dillow 	return sis_ac97_rw(ac97->private_data, ac97->num,
1007175859bfSDavid Dillow 					(reg << 8) | cmd[ac97->num]);
1008175859bfSDavid Dillow }
1009175859bfSDavid Dillow 
1010175859bfSDavid Dillow static int __devinit sis_mixer_create(struct sis7019 *sis)
1011175859bfSDavid Dillow {
1012175859bfSDavid Dillow 	struct snd_ac97_bus *bus;
1013175859bfSDavid Dillow 	struct snd_ac97_template ac97;
1014175859bfSDavid Dillow 	static struct snd_ac97_bus_ops ops = {
1015175859bfSDavid Dillow 		.write = sis_ac97_write,
1016175859bfSDavid Dillow 		.read = sis_ac97_read,
1017175859bfSDavid Dillow 	};
1018175859bfSDavid Dillow 	int rc;
1019175859bfSDavid Dillow 
1020175859bfSDavid Dillow 	memset(&ac97, 0, sizeof(ac97));
1021175859bfSDavid Dillow 	ac97.private_data = sis;
1022175859bfSDavid Dillow 
1023175859bfSDavid Dillow 	rc = snd_ac97_bus(sis->card, 0, &ops, NULL, &bus);
1024175859bfSDavid Dillow 	if (!rc && sis->codecs_present & SIS_PRIMARY_CODEC_PRESENT)
1025175859bfSDavid Dillow 		rc = snd_ac97_mixer(bus, &ac97, &sis->ac97[0]);
1026175859bfSDavid Dillow 	ac97.num = 1;
1027175859bfSDavid Dillow 	if (!rc && (sis->codecs_present & SIS_SECONDARY_CODEC_PRESENT))
1028175859bfSDavid Dillow 		rc = snd_ac97_mixer(bus, &ac97, &sis->ac97[1]);
1029175859bfSDavid Dillow 	ac97.num = 2;
1030175859bfSDavid Dillow 	if (!rc && (sis->codecs_present & SIS_TERTIARY_CODEC_PRESENT))
1031175859bfSDavid Dillow 		rc = snd_ac97_mixer(bus, &ac97, &sis->ac97[2]);
1032175859bfSDavid Dillow 
1033175859bfSDavid Dillow 	/* If we return an error here, then snd_card_free() should
1034175859bfSDavid Dillow 	 * free up any ac97 codecs that got created, as well as the bus.
1035175859bfSDavid Dillow 	 */
1036175859bfSDavid Dillow 	return rc;
1037175859bfSDavid Dillow }
1038175859bfSDavid Dillow 
1039175859bfSDavid Dillow static void sis_free_suspend(struct sis7019 *sis)
1040175859bfSDavid Dillow {
1041175859bfSDavid Dillow 	int i;
1042175859bfSDavid Dillow 
1043175859bfSDavid Dillow 	for (i = 0; i < SIS_SUSPEND_PAGES; i++)
1044175859bfSDavid Dillow 		kfree(sis->suspend_state[i]);
1045175859bfSDavid Dillow }
1046175859bfSDavid Dillow 
1047175859bfSDavid Dillow static int sis_chip_free(struct sis7019 *sis)
1048175859bfSDavid Dillow {
1049175859bfSDavid Dillow 	/* Reset the chip, and disable all interrputs.
1050175859bfSDavid Dillow 	 */
1051175859bfSDavid Dillow 	outl(SIS_GCR_SOFTWARE_RESET, sis->ioport + SIS_GCR);
105208b45098SDavid Dillow 	udelay(25);
1053175859bfSDavid Dillow 	outl(0, sis->ioport + SIS_GCR);
1054175859bfSDavid Dillow 	outl(0, sis->ioport + SIS_GIER);
1055175859bfSDavid Dillow 
1056175859bfSDavid Dillow 	/* Now, free everything we allocated.
1057175859bfSDavid Dillow 	 */
1058175859bfSDavid Dillow 	if (sis->irq >= 0)
1059175859bfSDavid Dillow 		free_irq(sis->irq, sis);
1060175859bfSDavid Dillow 
1061175859bfSDavid Dillow 	if (sis->ioaddr)
1062175859bfSDavid Dillow 		iounmap(sis->ioaddr);
1063175859bfSDavid Dillow 
1064175859bfSDavid Dillow 	pci_release_regions(sis->pci);
1065175859bfSDavid Dillow 	pci_disable_device(sis->pci);
1066175859bfSDavid Dillow 
1067175859bfSDavid Dillow 	sis_free_suspend(sis);
1068175859bfSDavid Dillow 	return 0;
1069175859bfSDavid Dillow }
1070175859bfSDavid Dillow 
1071175859bfSDavid Dillow static int sis_dev_free(struct snd_device *dev)
1072175859bfSDavid Dillow {
1073175859bfSDavid Dillow 	struct sis7019 *sis = dev->device_data;
1074175859bfSDavid Dillow 	return sis_chip_free(sis);
1075175859bfSDavid Dillow }
1076175859bfSDavid Dillow 
1077175859bfSDavid Dillow static int sis_chip_init(struct sis7019 *sis)
1078175859bfSDavid Dillow {
1079175859bfSDavid Dillow 	unsigned long io = sis->ioport;
1080175859bfSDavid Dillow 	void __iomem *ioaddr = sis->ioaddr;
1081175859bfSDavid Dillow 	u16 status;
1082175859bfSDavid Dillow 	int count;
1083175859bfSDavid Dillow 	int i;
1084175859bfSDavid Dillow 
1085175859bfSDavid Dillow 	/* Reset the audio controller
1086175859bfSDavid Dillow 	 */
1087175859bfSDavid Dillow 	outl(SIS_GCR_SOFTWARE_RESET, io + SIS_GCR);
108808b45098SDavid Dillow 	udelay(25);
1089175859bfSDavid Dillow 	outl(0, io + SIS_GCR);
1090175859bfSDavid Dillow 
1091175859bfSDavid Dillow 	/* Get the AC-link semaphore, and reset the codecs
1092175859bfSDavid Dillow 	 */
1093175859bfSDavid Dillow 	count = 0xffff;
1094175859bfSDavid Dillow 	while ((inw(io + SIS_AC97_SEMA) & SIS_AC97_SEMA_BUSY) && --count)
1095175859bfSDavid Dillow 		udelay(1);
1096175859bfSDavid Dillow 
1097175859bfSDavid Dillow 	if (!count)
1098175859bfSDavid Dillow 		return -EIO;
1099175859bfSDavid Dillow 
1100175859bfSDavid Dillow 	outl(SIS_AC97_CMD_CODEC_COLD_RESET, io + SIS_AC97_CMD);
110108b45098SDavid Dillow 	udelay(250);
1102175859bfSDavid Dillow 
1103175859bfSDavid Dillow 	count = 0xffff;
1104175859bfSDavid Dillow 	while ((inw(io + SIS_AC97_STATUS) & SIS_AC97_STATUS_BUSY) && --count)
1105175859bfSDavid Dillow 		udelay(1);
1106175859bfSDavid Dillow 
1107175859bfSDavid Dillow 	/* Now that we've finished the reset, find out what's attached.
1108175859bfSDavid Dillow 	 */
1109175859bfSDavid Dillow 	status = inl(io + SIS_AC97_STATUS);
1110175859bfSDavid Dillow 	if (status & SIS_AC97_STATUS_CODEC_READY)
1111175859bfSDavid Dillow 		sis->codecs_present |= SIS_PRIMARY_CODEC_PRESENT;
1112175859bfSDavid Dillow 	if (status & SIS_AC97_STATUS_CODEC2_READY)
1113175859bfSDavid Dillow 		sis->codecs_present |= SIS_SECONDARY_CODEC_PRESENT;
1114175859bfSDavid Dillow 	if (status & SIS_AC97_STATUS_CODEC3_READY)
1115175859bfSDavid Dillow 		sis->codecs_present |= SIS_TERTIARY_CODEC_PRESENT;
1116175859bfSDavid Dillow 
1117175859bfSDavid Dillow 	/* All done, let go of the semaphore, and check for errors
1118175859bfSDavid Dillow 	 */
1119175859bfSDavid Dillow 	outl(SIS_AC97_SEMA_RELEASE, io + SIS_AC97_SEMA);
1120175859bfSDavid Dillow 	if (!sis->codecs_present || !count)
1121175859bfSDavid Dillow 		return -EIO;
1122175859bfSDavid Dillow 
1123175859bfSDavid Dillow 	/* Let the hardware know that the audio driver is alive,
1124175859bfSDavid Dillow 	 * and enable PCM slots on the AC-link for L/R playback (3 & 4) and
1125175859bfSDavid Dillow 	 * record channels. We're going to want to use Variable Rate Audio
1126175859bfSDavid Dillow 	 * for recording, to avoid needlessly resampling from 48kHZ.
1127175859bfSDavid Dillow 	 */
1128175859bfSDavid Dillow 	outl(SIS_AC97_CONF_AUDIO_ALIVE, io + SIS_AC97_CONF);
1129175859bfSDavid Dillow 	outl(SIS_AC97_CONF_AUDIO_ALIVE | SIS_AC97_CONF_PCM_LR_ENABLE |
1130175859bfSDavid Dillow 		SIS_AC97_CONF_PCM_CAP_MIC_ENABLE |
1131175859bfSDavid Dillow 		SIS_AC97_CONF_PCM_CAP_LR_ENABLE |
1132175859bfSDavid Dillow 		SIS_AC97_CONF_CODEC_VRA_ENABLE, io + SIS_AC97_CONF);
1133175859bfSDavid Dillow 
1134175859bfSDavid Dillow 	/* All AC97 PCM slots should be sourced from sub-mixer 0.
1135175859bfSDavid Dillow 	 */
1136175859bfSDavid Dillow 	outl(0, io + SIS_AC97_PSR);
1137175859bfSDavid Dillow 
1138175859bfSDavid Dillow 	/* There is only one valid DMA setup for a PCI environment.
1139175859bfSDavid Dillow 	 */
1140175859bfSDavid Dillow 	outl(SIS_DMA_CSR_PCI_SETTINGS, io + SIS_DMA_CSR);
1141175859bfSDavid Dillow 
114225985edcSLucas De Marchi 	/* Reset the synchronization groups for all of the channels
1143175859bfSDavid Dillow 	 * to be asyncronous. If we start doing SPDIF or 5.1 sound, etc.
1144175859bfSDavid Dillow 	 * we'll need to change how we handle these. Until then, we just
1145175859bfSDavid Dillow 	 * assign sub-mixer 0 to all playback channels, and avoid any
1146175859bfSDavid Dillow 	 * attenuation on the audio.
1147175859bfSDavid Dillow 	 */
1148175859bfSDavid Dillow 	outl(0, io + SIS_PLAY_SYNC_GROUP_A);
1149175859bfSDavid Dillow 	outl(0, io + SIS_PLAY_SYNC_GROUP_B);
1150175859bfSDavid Dillow 	outl(0, io + SIS_PLAY_SYNC_GROUP_C);
1151175859bfSDavid Dillow 	outl(0, io + SIS_PLAY_SYNC_GROUP_D);
1152175859bfSDavid Dillow 	outl(0, io + SIS_MIXER_SYNC_GROUP);
1153175859bfSDavid Dillow 
1154175859bfSDavid Dillow 	for (i = 0; i < 64; i++) {
1155175859bfSDavid Dillow 		writel(i, SIS_MIXER_START_ADDR(ioaddr, i));
1156175859bfSDavid Dillow 		writel(SIS_MIXER_RIGHT_NO_ATTEN | SIS_MIXER_LEFT_NO_ATTEN |
1157175859bfSDavid Dillow 				SIS_MIXER_DEST_0, SIS_MIXER_ADDR(ioaddr, i));
1158175859bfSDavid Dillow 	}
1159175859bfSDavid Dillow 
1160175859bfSDavid Dillow 	/* Don't attenuate any audio set for the wave amplifier.
1161175859bfSDavid Dillow 	 *
1162175859bfSDavid Dillow 	 * FIXME: Maximum attenuation is set for the music amp, which will
1163175859bfSDavid Dillow 	 * need to change if we start using the synth engine.
1164175859bfSDavid Dillow 	 */
1165175859bfSDavid Dillow 	outl(0xffff0000, io + SIS_WEVCR);
1166175859bfSDavid Dillow 
1167175859bfSDavid Dillow 	/* Ensure that the wave engine is in normal operating mode.
1168175859bfSDavid Dillow 	 */
1169175859bfSDavid Dillow 	outl(0, io + SIS_WECCR);
1170175859bfSDavid Dillow 
1171175859bfSDavid Dillow 	/* Go ahead and enable the DMA interrupts. They won't go live
1172175859bfSDavid Dillow 	 * until we start a channel.
1173175859bfSDavid Dillow 	 */
1174175859bfSDavid Dillow 	outl(SIS_GIER_AUDIO_PLAY_DMA_IRQ_ENABLE |
1175175859bfSDavid Dillow 		SIS_GIER_AUDIO_RECORD_DMA_IRQ_ENABLE, io + SIS_GIER);
1176175859bfSDavid Dillow 
1177175859bfSDavid Dillow 	return 0;
1178175859bfSDavid Dillow }
1179175859bfSDavid Dillow 
1180175859bfSDavid Dillow #ifdef CONFIG_PM
1181175859bfSDavid Dillow static int sis_suspend(struct pci_dev *pci, pm_message_t state)
1182175859bfSDavid Dillow {
1183175859bfSDavid Dillow 	struct snd_card *card = pci_get_drvdata(pci);
1184175859bfSDavid Dillow 	struct sis7019 *sis = card->private_data;
1185175859bfSDavid Dillow 	void __iomem *ioaddr = sis->ioaddr;
1186175859bfSDavid Dillow 	int i;
1187175859bfSDavid Dillow 
1188175859bfSDavid Dillow 	snd_power_change_state(card, SNDRV_CTL_POWER_D3hot);
1189175859bfSDavid Dillow 	snd_pcm_suspend_all(sis->pcm);
1190175859bfSDavid Dillow 	if (sis->codecs_present & SIS_PRIMARY_CODEC_PRESENT)
1191175859bfSDavid Dillow 		snd_ac97_suspend(sis->ac97[0]);
1192175859bfSDavid Dillow 	if (sis->codecs_present & SIS_SECONDARY_CODEC_PRESENT)
1193175859bfSDavid Dillow 		snd_ac97_suspend(sis->ac97[1]);
1194175859bfSDavid Dillow 	if (sis->codecs_present & SIS_TERTIARY_CODEC_PRESENT)
1195175859bfSDavid Dillow 		snd_ac97_suspend(sis->ac97[2]);
1196175859bfSDavid Dillow 
1197175859bfSDavid Dillow 	/* snd_pcm_suspend_all() stopped all channels, so we're quiescent.
1198175859bfSDavid Dillow 	 */
1199175859bfSDavid Dillow 	if (sis->irq >= 0) {
1200175859bfSDavid Dillow 		free_irq(sis->irq, sis);
1201175859bfSDavid Dillow 		sis->irq = -1;
1202175859bfSDavid Dillow 	}
1203175859bfSDavid Dillow 
1204175859bfSDavid Dillow 	/* Save the internal state away
1205175859bfSDavid Dillow 	 */
1206175859bfSDavid Dillow 	for (i = 0; i < 4; i++) {
1207175859bfSDavid Dillow 		memcpy_fromio(sis->suspend_state[i], ioaddr, 4096);
1208175859bfSDavid Dillow 		ioaddr += 4096;
1209175859bfSDavid Dillow 	}
1210175859bfSDavid Dillow 
1211175859bfSDavid Dillow 	pci_disable_device(pci);
1212175859bfSDavid Dillow 	pci_save_state(pci);
1213175859bfSDavid Dillow 	pci_set_power_state(pci, pci_choose_state(pci, state));
1214175859bfSDavid Dillow 	return 0;
1215175859bfSDavid Dillow }
1216175859bfSDavid Dillow 
1217175859bfSDavid Dillow static int sis_resume(struct pci_dev *pci)
1218175859bfSDavid Dillow {
1219175859bfSDavid Dillow 	struct snd_card *card = pci_get_drvdata(pci);
1220175859bfSDavid Dillow 	struct sis7019 *sis = card->private_data;
1221175859bfSDavid Dillow 	void __iomem *ioaddr = sis->ioaddr;
1222175859bfSDavid Dillow 	int i;
1223175859bfSDavid Dillow 
1224175859bfSDavid Dillow 	pci_set_power_state(pci, PCI_D0);
1225175859bfSDavid Dillow 	pci_restore_state(pci);
1226175859bfSDavid Dillow 
1227175859bfSDavid Dillow 	if (pci_enable_device(pci) < 0) {
1228175859bfSDavid Dillow 		printk(KERN_ERR "sis7019: unable to re-enable device\n");
1229175859bfSDavid Dillow 		goto error;
1230175859bfSDavid Dillow 	}
1231175859bfSDavid Dillow 
1232175859bfSDavid Dillow 	if (sis_chip_init(sis)) {
1233175859bfSDavid Dillow 		printk(KERN_ERR "sis7019: unable to re-init controller\n");
1234175859bfSDavid Dillow 		goto error;
1235175859bfSDavid Dillow 	}
1236175859bfSDavid Dillow 
123788e24c3aSYong Zhang 	if (request_irq(pci->irq, sis_interrupt, IRQF_SHARED,
1238934c2b6dSTakashi Iwai 			KBUILD_MODNAME, sis)) {
1239175859bfSDavid Dillow 		printk(KERN_ERR "sis7019: unable to regain IRQ %d\n", pci->irq);
1240175859bfSDavid Dillow 		goto error;
1241175859bfSDavid Dillow 	}
1242175859bfSDavid Dillow 
1243175859bfSDavid Dillow 	/* Restore saved state, then clear out the page we use for the
1244175859bfSDavid Dillow 	 * silence buffer.
1245175859bfSDavid Dillow 	 */
1246175859bfSDavid Dillow 	for (i = 0; i < 4; i++) {
1247175859bfSDavid Dillow 		memcpy_toio(ioaddr, sis->suspend_state[i], 4096);
1248175859bfSDavid Dillow 		ioaddr += 4096;
1249175859bfSDavid Dillow 	}
1250175859bfSDavid Dillow 
1251175859bfSDavid Dillow 	memset(sis->suspend_state[0], 0, 4096);
1252175859bfSDavid Dillow 
1253175859bfSDavid Dillow 	sis->irq = pci->irq;
1254175859bfSDavid Dillow 	pci_set_master(pci);
1255175859bfSDavid Dillow 
1256175859bfSDavid Dillow 	if (sis->codecs_present & SIS_PRIMARY_CODEC_PRESENT)
1257175859bfSDavid Dillow 		snd_ac97_resume(sis->ac97[0]);
1258175859bfSDavid Dillow 	if (sis->codecs_present & SIS_SECONDARY_CODEC_PRESENT)
1259175859bfSDavid Dillow 		snd_ac97_resume(sis->ac97[1]);
1260175859bfSDavid Dillow 	if (sis->codecs_present & SIS_TERTIARY_CODEC_PRESENT)
1261175859bfSDavid Dillow 		snd_ac97_resume(sis->ac97[2]);
1262175859bfSDavid Dillow 
1263175859bfSDavid Dillow 	snd_power_change_state(card, SNDRV_CTL_POWER_D0);
1264175859bfSDavid Dillow 	return 0;
1265175859bfSDavid Dillow 
1266175859bfSDavid Dillow error:
1267175859bfSDavid Dillow 	snd_card_disconnect(card);
1268175859bfSDavid Dillow 	return -EIO;
1269175859bfSDavid Dillow }
1270175859bfSDavid Dillow #endif /* CONFIG_PM */
1271175859bfSDavid Dillow 
1272175859bfSDavid Dillow static int sis_alloc_suspend(struct sis7019 *sis)
1273175859bfSDavid Dillow {
1274175859bfSDavid Dillow 	int i;
1275175859bfSDavid Dillow 
1276175859bfSDavid Dillow 	/* We need 16K to store the internal wave engine state during a
1277175859bfSDavid Dillow 	 * suspend, but we don't need it to be contiguous, so play nice
1278175859bfSDavid Dillow 	 * with the memory system. We'll also use this area for a silence
1279175859bfSDavid Dillow 	 * buffer.
1280175859bfSDavid Dillow 	 */
1281175859bfSDavid Dillow 	for (i = 0; i < SIS_SUSPEND_PAGES; i++) {
1282175859bfSDavid Dillow 		sis->suspend_state[i] = kmalloc(4096, GFP_KERNEL);
1283175859bfSDavid Dillow 		if (!sis->suspend_state[i])
1284175859bfSDavid Dillow 			return -ENOMEM;
1285175859bfSDavid Dillow 	}
1286175859bfSDavid Dillow 	memset(sis->suspend_state[0], 0, 4096);
1287175859bfSDavid Dillow 
1288175859bfSDavid Dillow 	return 0;
1289175859bfSDavid Dillow }
1290175859bfSDavid Dillow 
1291175859bfSDavid Dillow static int __devinit sis_chip_create(struct snd_card *card,
1292175859bfSDavid Dillow 					struct pci_dev *pci)
1293175859bfSDavid Dillow {
1294175859bfSDavid Dillow 	struct sis7019 *sis = card->private_data;
1295175859bfSDavid Dillow 	struct voice *voice;
1296175859bfSDavid Dillow 	static struct snd_device_ops ops = {
1297175859bfSDavid Dillow 		.dev_free = sis_dev_free,
1298175859bfSDavid Dillow 	};
1299175859bfSDavid Dillow 	int rc;
1300175859bfSDavid Dillow 	int i;
1301175859bfSDavid Dillow 
1302175859bfSDavid Dillow 	rc = pci_enable_device(pci);
1303175859bfSDavid Dillow 	if (rc)
1304175859bfSDavid Dillow 		goto error_out;
1305175859bfSDavid Dillow 
130628b76796SYang Hongyang 	if (pci_set_dma_mask(pci, DMA_BIT_MASK(30)) < 0) {
1307175859bfSDavid Dillow 		printk(KERN_ERR "sis7019: architecture does not support "
1308175859bfSDavid Dillow 					"30-bit PCI busmaster DMA");
1309175859bfSDavid Dillow 		goto error_out_enabled;
1310175859bfSDavid Dillow 	}
1311175859bfSDavid Dillow 
1312175859bfSDavid Dillow 	memset(sis, 0, sizeof(*sis));
1313175859bfSDavid Dillow 	mutex_init(&sis->ac97_mutex);
1314175859bfSDavid Dillow 	spin_lock_init(&sis->voice_lock);
1315175859bfSDavid Dillow 	sis->card = card;
1316175859bfSDavid Dillow 	sis->pci = pci;
1317175859bfSDavid Dillow 	sis->irq = -1;
1318175859bfSDavid Dillow 	sis->ioport = pci_resource_start(pci, 0);
1319175859bfSDavid Dillow 
1320175859bfSDavid Dillow 	rc = pci_request_regions(pci, "SiS7019");
1321175859bfSDavid Dillow 	if (rc) {
1322175859bfSDavid Dillow 		printk(KERN_ERR "sis7019: unable request regions\n");
1323175859bfSDavid Dillow 		goto error_out_enabled;
1324175859bfSDavid Dillow 	}
1325175859bfSDavid Dillow 
1326175859bfSDavid Dillow 	rc = -EIO;
1327175859bfSDavid Dillow 	sis->ioaddr = ioremap_nocache(pci_resource_start(pci, 1), 0x4000);
1328175859bfSDavid Dillow 	if (!sis->ioaddr) {
1329175859bfSDavid Dillow 		printk(KERN_ERR "sis7019: unable to remap MMIO, aborting\n");
1330175859bfSDavid Dillow 		goto error_out_cleanup;
1331175859bfSDavid Dillow 	}
1332175859bfSDavid Dillow 
1333175859bfSDavid Dillow 	rc = sis_alloc_suspend(sis);
1334175859bfSDavid Dillow 	if (rc < 0) {
1335175859bfSDavid Dillow 		printk(KERN_ERR "sis7019: unable to allocate state storage\n");
1336175859bfSDavid Dillow 		goto error_out_cleanup;
1337175859bfSDavid Dillow 	}
1338175859bfSDavid Dillow 
1339175859bfSDavid Dillow 	rc = sis_chip_init(sis);
1340175859bfSDavid Dillow 	if (rc)
1341175859bfSDavid Dillow 		goto error_out_cleanup;
1342175859bfSDavid Dillow 
134388e24c3aSYong Zhang 	if (request_irq(pci->irq, sis_interrupt, IRQF_SHARED,
1344934c2b6dSTakashi Iwai 			KBUILD_MODNAME, sis)) {
1345175859bfSDavid Dillow 		printk(KERN_ERR "unable to allocate irq %d\n", sis->irq);
1346175859bfSDavid Dillow 		goto error_out_cleanup;
1347175859bfSDavid Dillow 	}
1348175859bfSDavid Dillow 
1349175859bfSDavid Dillow 	sis->irq = pci->irq;
1350175859bfSDavid Dillow 	pci_set_master(pci);
1351175859bfSDavid Dillow 
1352175859bfSDavid Dillow 	for (i = 0; i < 64; i++) {
1353175859bfSDavid Dillow 		voice = &sis->voices[i];
1354175859bfSDavid Dillow 		voice->num = i;
1355175859bfSDavid Dillow 		voice->ctrl_base = SIS_PLAY_DMA_ADDR(sis->ioaddr, i);
1356175859bfSDavid Dillow 		voice->wave_base = SIS_WAVE_ADDR(sis->ioaddr, i);
1357175859bfSDavid Dillow 	}
1358175859bfSDavid Dillow 
1359175859bfSDavid Dillow 	voice = &sis->capture_voice;
1360175859bfSDavid Dillow 	voice->flags = VOICE_CAPTURE;
1361175859bfSDavid Dillow 	voice->num = SIS_CAPTURE_CHAN_AC97_PCM_IN;
1362175859bfSDavid Dillow 	voice->ctrl_base = SIS_CAPTURE_DMA_ADDR(sis->ioaddr, voice->num);
1363175859bfSDavid Dillow 
1364175859bfSDavid Dillow 	rc = snd_device_new(card, SNDRV_DEV_LOWLEVEL, sis, &ops);
1365175859bfSDavid Dillow 	if (rc)
1366175859bfSDavid Dillow 		goto error_out_cleanup;
1367175859bfSDavid Dillow 
1368175859bfSDavid Dillow 	snd_card_set_dev(card, &pci->dev);
1369175859bfSDavid Dillow 
1370175859bfSDavid Dillow 	return 0;
1371175859bfSDavid Dillow 
1372175859bfSDavid Dillow error_out_cleanup:
1373175859bfSDavid Dillow 	sis_chip_free(sis);
1374175859bfSDavid Dillow 
1375175859bfSDavid Dillow error_out_enabled:
1376175859bfSDavid Dillow 	pci_disable_device(pci);
1377175859bfSDavid Dillow 
1378175859bfSDavid Dillow error_out:
1379175859bfSDavid Dillow 	return rc;
1380175859bfSDavid Dillow }
1381175859bfSDavid Dillow 
1382175859bfSDavid Dillow static int __devinit snd_sis7019_probe(struct pci_dev *pci,
1383175859bfSDavid Dillow 					const struct pci_device_id *pci_id)
1384175859bfSDavid Dillow {
1385175859bfSDavid Dillow 	struct snd_card *card;
1386175859bfSDavid Dillow 	struct sis7019 *sis;
1387175859bfSDavid Dillow 	int rc;
1388175859bfSDavid Dillow 
1389175859bfSDavid Dillow 	rc = -ENOENT;
1390175859bfSDavid Dillow 	if (!enable)
1391175859bfSDavid Dillow 		goto error_out;
1392175859bfSDavid Dillow 
1393e58de7baSTakashi Iwai 	rc = snd_card_create(index, id, THIS_MODULE, sizeof(*sis), &card);
1394e58de7baSTakashi Iwai 	if (rc < 0)
1395175859bfSDavid Dillow 		goto error_out;
1396175859bfSDavid Dillow 
1397175859bfSDavid Dillow 	strcpy(card->driver, "SiS7019");
1398175859bfSDavid Dillow 	strcpy(card->shortname, "SiS7019");
1399175859bfSDavid Dillow 	rc = sis_chip_create(card, pci);
1400175859bfSDavid Dillow 	if (rc)
1401175859bfSDavid Dillow 		goto card_error_out;
1402175859bfSDavid Dillow 
1403175859bfSDavid Dillow 	sis = card->private_data;
1404175859bfSDavid Dillow 
1405175859bfSDavid Dillow 	rc = sis_mixer_create(sis);
1406175859bfSDavid Dillow 	if (rc)
1407175859bfSDavid Dillow 		goto card_error_out;
1408175859bfSDavid Dillow 
1409175859bfSDavid Dillow 	rc = sis_pcm_create(sis);
1410175859bfSDavid Dillow 	if (rc)
1411175859bfSDavid Dillow 		goto card_error_out;
1412175859bfSDavid Dillow 
1413175859bfSDavid Dillow 	snprintf(card->longname, sizeof(card->longname),
1414175859bfSDavid Dillow 			"%s Audio Accelerator with %s at 0x%lx, irq %d",
1415175859bfSDavid Dillow 			card->shortname, snd_ac97_get_short_name(sis->ac97[0]),
1416175859bfSDavid Dillow 			sis->ioport, sis->irq);
1417175859bfSDavid Dillow 
1418175859bfSDavid Dillow 	rc = snd_card_register(card);
1419175859bfSDavid Dillow 	if (rc)
1420175859bfSDavid Dillow 		goto card_error_out;
1421175859bfSDavid Dillow 
1422175859bfSDavid Dillow 	pci_set_drvdata(pci, card);
1423175859bfSDavid Dillow 	return 0;
1424175859bfSDavid Dillow 
1425175859bfSDavid Dillow card_error_out:
1426175859bfSDavid Dillow 	snd_card_free(card);
1427175859bfSDavid Dillow 
1428175859bfSDavid Dillow error_out:
1429175859bfSDavid Dillow 	return rc;
1430175859bfSDavid Dillow }
1431175859bfSDavid Dillow 
1432175859bfSDavid Dillow static void __devexit snd_sis7019_remove(struct pci_dev *pci)
1433175859bfSDavid Dillow {
1434175859bfSDavid Dillow 	snd_card_free(pci_get_drvdata(pci));
1435175859bfSDavid Dillow 	pci_set_drvdata(pci, NULL);
1436175859bfSDavid Dillow }
1437175859bfSDavid Dillow 
1438175859bfSDavid Dillow static struct pci_driver sis7019_driver = {
14393733e424STakashi Iwai 	.name = KBUILD_MODNAME,
1440175859bfSDavid Dillow 	.id_table = snd_sis7019_ids,
1441175859bfSDavid Dillow 	.probe = snd_sis7019_probe,
1442175859bfSDavid Dillow 	.remove = __devexit_p(snd_sis7019_remove),
1443175859bfSDavid Dillow 
1444175859bfSDavid Dillow #ifdef CONFIG_PM
1445175859bfSDavid Dillow 	.suspend = sis_suspend,
1446175859bfSDavid Dillow 	.resume = sis_resume,
1447175859bfSDavid Dillow #endif
1448175859bfSDavid Dillow };
1449175859bfSDavid Dillow 
1450175859bfSDavid Dillow static int __init sis7019_init(void)
1451175859bfSDavid Dillow {
1452175859bfSDavid Dillow 	return pci_register_driver(&sis7019_driver);
1453175859bfSDavid Dillow }
1454175859bfSDavid Dillow 
1455175859bfSDavid Dillow static void __exit sis7019_exit(void)
1456175859bfSDavid Dillow {
1457175859bfSDavid Dillow 	pci_unregister_driver(&sis7019_driver);
1458175859bfSDavid Dillow }
1459175859bfSDavid Dillow 
1460175859bfSDavid Dillow module_init(sis7019_init);
1461175859bfSDavid Dillow module_exit(sis7019_exit);
1462