source: sbliveos2/trunk/sblive/voicemgr.c@ 176

Last change on this file since 176 was 142, checked in by ktk, 25 years ago

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1/* $Id: voicemgr.c 142 2000-04-23 14:55:46Z ktk $ */
2
3
4/*
5 **********************************************************************
6 * voicemgr.c - Voice manager for emu10k1 driver
7 * Copyright 1999, 2000 Creative Labs, Inc.
8 *
9 **********************************************************************
10 *
11 * Date Author Summary of changes
12 * ---- ------ ------------------
13 * October 20, 1999 Bertrand Lee base code release
14 *
15 **********************************************************************
16 *
17 * This program is free software; you can redistribute it and/or
18 * modify it under the terms of the GNU General Public License as
19 * published by the Free Software Foundation; either version 2 of
20 * the License, or (at your option) any later version.
21 *
22 * This program is distributed in the hope that it will be useful,
23 * but WITHOUT ANY WARRANTY; without even the implied warranty of
24 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
25 * GNU General Public License for more details.
26 *
27 * You should have received a copy of the GNU General Public
28 * License along with this program; if not, write to the Free
29 * Software Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139,
30 * USA.
31 *
32 **********************************************************************
33 */
34
35#include "hwaccess.h"
36
37struct emu_voice *emu10k1_voice_alloc(struct voice_manager *voicemgr, struct voice_allocdesc *voiceallocdesc)
38{
39 struct emu10k1_card *card = voicemgr->card;
40 struct emu_voice *voice_tmp = voicemgr->voice;
41 struct emu_voice *voice = NULL;
42 int i;
43 unsigned long flags;
44
45 DPF(2, "emu10k1_voice_alloc()\n");
46
47 spin_lock_irqsave(&voicemgr->lock, flags);
48
49 if (voiceallocdesc->flags & VOICEMGR_FLAGS_MONO) {
50 for (i = 0; i < NUM_G; i++)
51 if (voice_tmp[i].usage == VOICEMGR_USAGE_FREE) {
52 voice_tmp[i].flags = VOICEMGR_FLAGS_VOICEMASTER | voiceallocdesc->flags;
53 voice_tmp[i].usage = voiceallocdesc->usage;
54 voice = &voice_tmp[i];
55#ifdef PRIVATE_PCM_VOLUME
56 {
57 int j;
58 for(j = 0; j < MAX_PCM_CHANNELS; j++) {
59 if (sblive_pcm_volume[j].files == current->files) {
60 sblive_pcm_volume[j].channel_l = voice_tmp[i].num;
61 sblive_pcm_volume[j].channel_r = NUM_G;
62 }
63 }
64 }
65#endif
66 break;
67 }
68 } else {
69 for (i = 0; i < NUM_G; i += 2)
70 if ((voice_tmp[i].usage == VOICEMGR_USAGE_FREE)
71 && (voice_tmp[i + 1].usage == VOICEMGR_USAGE_FREE)) {
72 voice_tmp[i].linked_voice = &voice_tmp[i + 1];
73 voice_tmp[i].flags = VOICEMGR_FLAGS_VOICEMASTER | voiceallocdesc->flags;
74 voice_tmp[i].usage = voiceallocdesc->usage;
75 voice_tmp[i + 1].flags = VOICEMGR_FLAGS_STEREOSLAVE | voiceallocdesc->flags;
76 voice_tmp[i + 1].usage = voiceallocdesc->usage;
77 voice = &voice_tmp[i];
78#ifdef PRIVATE_PCM_VOLUME
79 {
80 int j;
81 for(j = 0; j < MAX_PCM_CHANNELS; j++) {
82 if (sblive_pcm_volume[j].files == current->files) {
83 sblive_pcm_volume[j].channel_l = voice_tmp[i].num;
84 sblive_pcm_volume[j].channel_r = voice_tmp[i+1].num;
85 }
86 }
87 }
88#endif
89 break;
90 }
91 }
92
93 spin_unlock_irqrestore(&voicemgr->lock, flags);
94
95 voice_tmp = voice;
96
97 while (voice_tmp != NULL) {
98
99 DPD(2, " voice allocated -> %d\n", voice_tmp->num);
100
101 sblive_writeptr(card, IFATN, voice_tmp->num, 0xffff);
102 sblive_writeptr(card, DCYSUSV, voice_tmp->num, ENV_OFF);
103 sblive_writeptr(card, VTFT, voice_tmp->num, 0xffff);
104 sblive_writeptr(card, PTRX, voice_tmp->num, 0);
105
106 voice_tmp = voice_tmp->linked_voice;
107 }
108
109 return voice;
110}
111
112void emu10k1_voice_free(struct voice_manager *voicemgr, struct emu_voice *voice)
113{
114 struct emu10k1_card *card = voice->card;
115 struct emu_voice *voice_tmp;
116 unsigned dcysusv;
117 u32 cra, sample;
118 int i;
119 unsigned long flags;
120
121 DPF(2, "emu10k1_voice_free()\n");
122
123 voice_tmp = voice;
124
125 while (voice_tmp != NULL) {
126
127 DPD(2, " voice freed -> %d\n", voice_tmp->num);
128
129 sblive_writeptr(card, IFATN, voice_tmp->num, IFATN_FILTERCUTOFF_MASK | IFATN_ATTENUATION_MASK);
130 sblive_writeptr(card, IP, voice_tmp->num, 0);
131
132 dcysusv = sblive_readptr(card, DCYSUSV, voice_tmp->num) & (DCYSUSV_PHASE1_MASK | DCYSUSV_SUSTAINLEVEL_MASK | DCYSUSV_DECAYTIME_MASK);
133 sblive_writeptr(card, DCYSUSV, voice_tmp->num, dcysusv | ENV_OFF);
134
135 sblive_writeptr(card, VTFT, voice_tmp->num, VTFT_FILTERTARGET_MASK);
136 sblive_writeptr(card, PTRX_PITCHTARGET, voice_tmp->num, 0);
137 sblive_writeptr(card, CVCF, voice_tmp->num, CVCF_CURRENTFILTER_MASK);
138 sblive_writeptr(card, CPF, voice_tmp->num, 0);
139
140 sample = (voice_tmp->flags & VOICEMGR_FLAGS_16BIT) ? 0 : 0x80808080;
141 cra = sblive_readptr(card, CCR, voice_tmp->num) & CCR_READADDRESS_MASK;
142 sblive_writeptr(card, CCR, voice_tmp->num, cra);
143 cra = (cra >> 18) & 0xf;
144 sblive_writeptr(card, CD0 + cra, voice_tmp->num, sample);
145 cra = (cra + 0x1) & 0xf;
146 sblive_writeptr(card, CD0 + cra, voice_tmp->num, sample);
147
148 for (i = 0; i < NUM_FXSENDS; i++)
149 voice_tmp->sendhandle[i] = 0;
150
151 voice_tmp->flags = 0;
152
153 spin_lock_irqsave(&voicemgr->lock, flags);
154 voice_tmp->usage = VOICEMGR_USAGE_FREE;
155
156 voice_tmp = voice_tmp->linked_voice;
157 voice->linked_voice = NULL;
158 spin_unlock_irqrestore(&voicemgr->lock, flags);
159 }
160
161 return;
162}
163
164/* Sets up a voices for Wave Playback */
165
166void emu10k1_voice_playback_setup(struct emu_voice *voice)
167{
168 struct emu10k1_card *card = voice->card;
169 u32 sample, cra = 0, start = 0;
170
171 DPF(2, "emu10k1_voice_playback_setup()\n");
172
173 while (voice != NULL) {
174 sblive_writeptr(card, DCYSUSV, voice->num, ENV_OFF);
175 sblive_writeptr(card, VTFT, voice->num, VTFT_FILTERTARGET_MASK);
176 sblive_writeptr(card, CVCF, voice->num, CVCF_CURRENTFILTER_MASK);
177 sblive_writeptr(card, FXRT, voice->num, (voice->flags & VOICEMGR_FLAGS_FXRT2) ? 0xd23c0000 : 0xd01c0000);
178
179 /* Stop CA */
180 /* Assumption that PT is alreadt 0 so no harm overwriting */
181 sblive_writeptr(card, PTRX, voice->num, (voice->params.send_a << 8) | voice->params.send_b);
182
183 if (voice->flags & VOICEMGR_FLAGS_VOICEMASTER) {
184 if (voice->linked_voice != NULL) {
185 /* Set stereo bit */
186 cra = 64;
187 sblive_writeptr(card, CPF, voice->num, CPF_STEREO_MASK);
188 sblive_writeptr(card, CPF, voice->num + 1, CPF_STEREO_MASK);
189 } else {
190 cra = 32;
191 sblive_writeptr(card, CPF, voice->num, 0);
192 }
193
194 if (voice->flags & VOICEMGR_FLAGS_16BIT)
195 sample = 0;
196 else {
197 cra = cra * 2;
198 sample = 0x80808080;
199 }
200 cra -= 4;
201
202 if (voice->linked_voice != NULL) {
203 /* CCR_READADDRESS_MASK */
204 sblive_writeptr(card, CCR, voice->num, 0x3c << 16);
205 sblive_writeptr(card, CCR, voice->num + 1, cra << 16);
206 sblive_writeptr(card, CDE, voice->num + 1, sample);
207 sblive_writeptr(card, CDF, voice->num + 1, sample);
208 start = voice->params.start + cra / 2;
209 } else {
210 sblive_writeptr(card, CCR, voice->num, 0x1c << 16); /* FIXME: Is 0x1c correct? */
211 sblive_writeptr(card, CDE, voice->num, sample);
212 sblive_writeptr(card, CDF, voice->num, sample);
213 start = voice->params.start + cra;
214 }
215
216 if (start > voice->params.endloop) {
217 start -= voice->params.endloop;
218
219 if (voice->linked_voice != NULL)
220 cra = (cra << 25) | 0x1bc0000 | ((cra - start) << 9);
221 else
222 cra = (cra << 25) | 0x11c0000 | ((cra - start) << 9);
223
224 start += voice->params.startloop;
225
226 if (start >= voice->params.endloop)
227 start = voice->params.endloop - 1;
228 } else if (voice->linked_voice != NULL)
229 cra = (cra << 25) | (0x3c << 16);
230 else
231 cra = (cra << 25) | (0x1c << 16);
232
233 start |= CCCA_INTERPROM_0;
234 }
235
236 /* CSL, ST, CA */
237 sblive_writeptr(card, DSL, voice->num, voice->params.endloop | (voice->params.send_d << 24));
238 sblive_writeptr(card, PSST, voice->num, voice->params.startloop | (voice->params.send_c << 24));
239
240 if (voice->flags & VOICEMGR_FLAGS_16BIT)
241 sblive_writeptr(card, CCCA, voice->num, start);
242 else
243 sblive_writeptr(card, CCCA, voice->num, start | CCCA_8BITSELECT);
244
245 /* Clear filter delay memory */
246 sblive_writeptr(card, Z1, voice->num, 0);
247 sblive_writeptr(card, Z2, voice->num, 0);
248
249 /* Invalidate maps */
250 sblive_writeptr(card, MAPA, voice->num, MAP_PTI_MASK | (card->silentpage->busaddx * 2));
251 sblive_writeptr(card, MAPB, voice->num, MAP_PTI_MASK | (card->silentpage->busaddx * 2));
252
253 /* Fill cache */
254 if (voice->flags & VOICEMGR_FLAGS_VOICEMASTER)
255 sblive_writeptr(card, CCR, voice->num, cra);
256
257 sblive_writeptr(card, ATKHLDV, voice->num, ATKHLDV_HOLDTIME_MASK | ATKHLDV_ATTACKTIME_MASK);
258 sblive_writeptr(card, LFOVAL1, voice->num, 0x8000);
259 sblive_writeptr(card, ATKHLDM, voice->num, 0);
260 sblive_writeptr(card, DCYSUSM, voice->num, DCYSUSM_DECAYTIME_MASK);
261 sblive_writeptr(card, LFOVAL2, voice->num, 0x8000);
262 sblive_writeptr(card, IP, voice->num, voice->params.initial_pitch);
263 sblive_writeptr(card, PEFE, voice->num, 0x7f);
264 sblive_writeptr(card, FMMOD, voice->num, 0);
265 sblive_writeptr(card, TREMFRQ, voice->num, 0);
266 sblive_writeptr(card, FM2FRQ2, voice->num, 0);
267 sblive_writeptr(card, ENVVAL, voice->num, 0xbfff);
268 sblive_writeptr(card, ENVVOL, voice->num, 0xbfff);
269
270#ifdef PRIVATE_PCM_VOLUME
271 {
272 int i;
273
274 for (i = 0; i < MAX_PCM_CHANNELS; i++) {
275 if (sblive_pcm_volume[i].channel_l == voice->num) {
276 voice->params.initial_attn = (sblive_pcm_volume[i].channel_r < NUM_G) ? sblive_pcm_volume[i].attn_l :
277 // test for mono channel (reverse logic is correct here!)
278 (sblive_pcm_volume[i].attn_r >
279 sblive_pcm_volume[i].attn_l) ? sblive_pcm_volume[i].attn_l : sblive_pcm_volume[i].attn_r;
280 DPD(2, "set left volume %d\n", voice->params.initial_attn);
281 break;
282 } else if (sblive_pcm_volume[i].channel_r == voice->num) {
283 voice->params.initial_attn = sblive_pcm_volume[i].attn_r;
284 DPD(2, "set right volume %d\n", voice->params.initial_attn);
285 break;
286 }
287 }
288 }
289#endif
290 sblive_writeptr(card, IFATN, voice->num, IFATN_FILTERCUTOFF_MASK | voice->params.initial_attn);
291
292 voice->params.FC_target = 0xffff;
293 voice->params.pitch_target = (u16) (IP_TO_CP(voice->params.initial_pitch) >> 16);
294
295 voice = voice->linked_voice;
296 }
297
298 return;
299}
300
301void emu10k1_voice_start(struct emu_voice *voice)
302{
303 struct emu10k1_card *card = voice->card;
304
305 DPF(2, "emu10k1_voice_start()\n");
306
307 while (voice != NULL) {
308 sblive_writeptr(card, PTRX_PITCHTARGET, voice->num, voice->params.pitch_target);
309
310 if (voice->flags & VOICEMGR_FLAGS_VOICEMASTER)
311 sblive_writeptr(card, CPF_CURRENTPITCH, voice->num, voice->params.pitch_target);
312
313 sblive_writeptr(card, VTFT, voice->num, ((u32) voice->params.volume_target << 16)
314 | voice->params.FC_target);
315 sblive_writeptr(card, CVCF, voice->num, ((u32) voice->params.volume_target << 16)
316 | voice->params.FC_target);
317 sblive_writeptr(card, DCYSUSV, voice->num, (voice->params.byampl_env_sustain << 8)
318 | ENV_ON | voice->params.byampl_env_decay);
319
320 /* Using StopOnLoop for MIDI stops the playback
321 too early, which may cause a DC level to be played
322 until the note is released. */
323
324 if (voice->usage == VOICEMGR_USAGE_MIDI)
325 emu10k1_clear_stop_on_loop(card, voice->num);
326 else {
327 if (voice->params.startloop > voice->params.end)
328 emu10k1_set_stop_on_loop(card, voice->num);
329 else
330 emu10k1_clear_stop_on_loop(card, voice->num);
331 }
332 voice = voice->linked_voice;
333 }
334
335 return;
336}
337
338void emu10k1_voice_stop(struct emu_voice *voice)
339{
340 struct emu10k1_card *card = voice->card;
341
342 DPF(2, "emu10k1_voice_stop()\n");
343
344 while (voice != NULL) {
345 sblive_writeptr(card, IFATN, voice->num, 0xffff);
346 sblive_writeptr(card, IP, voice->num, 0);
347 sblive_writeptr(card, VTFT, voice->num, 0xffff);
348 sblive_writeptr(card, PTRX_PITCHTARGET, voice->num, 0);
349 voice = voice->linked_voice;
350 }
351
352 return;
353}
354
355void emu10k1_voice_setcontrol(struct emu_voice *voice, struct voice_cntlset *setting, u32 numparam)
356{
357 struct emu10k1_card *card = voice->card;
358 int count;
359
360 for (count = 0; count < numparam; count++)
361 sblive_writeptr(card, setting[count].paramID, voice->num, setting[count].value);
362
363 return;
364}
365
366void emu10k1_voice_getcontrol(struct emu_voice *voice, u32 controlid, u32 * value)
367{
368 struct emu10k1_card *card = voice->card;
369
370 *value = sblive_readptr(card, controlid, voice->num);
371
372 return;
373}
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