1 // SPDX-License-Identifier: GPL-2.0-or-later
3 * synth callback routines for the emu8000 (AWE32/64)
5 * Copyright (C) 1999 Steve Ratcliffe
6 * Copyright (C) 1999-2000 Takashi Iwai <tiwai@suse.de>
9 #include "emu8000_local.h"
10 #include <linux/export.h>
11 #include <sound/asoundef.h>
16 static struct snd_emux_voice *get_voice(struct snd_emux *emu,
17 struct snd_emux_port *port);
18 static int start_voice(struct snd_emux_voice *vp);
19 static void trigger_voice(struct snd_emux_voice *vp);
20 static void release_voice(struct snd_emux_voice *vp);
21 static void update_voice(struct snd_emux_voice *vp, int update);
22 static void reset_voice(struct snd_emux *emu, int ch);
23 static void terminate_voice(struct snd_emux_voice *vp);
24 static void sysex(struct snd_emux *emu, char *buf, int len, int parsed,
25 struct snd_midi_channel_set *chset);
26 #if IS_ENABLED(CONFIG_SND_SEQUENCER_OSS)
27 static int oss_ioctl(struct snd_emux *emu, int cmd, int p1, int p2);
29 static int load_fx(struct snd_emux *emu, int type, int mode,
30 const void __user *buf, long len);
32 static void set_pitch(struct snd_emu8000 *hw, struct snd_emux_voice *vp);
33 static void set_volume(struct snd_emu8000 *hw, struct snd_emux_voice *vp);
34 static void set_pan(struct snd_emu8000 *hw, struct snd_emux_voice *vp);
35 static void set_fmmod(struct snd_emu8000 *hw, struct snd_emux_voice *vp);
36 static void set_tremfreq(struct snd_emu8000 *hw, struct snd_emux_voice *vp);
37 static void set_fm2frq2(struct snd_emu8000 *hw, struct snd_emux_voice *vp);
38 static void set_filterQ(struct snd_emu8000 *hw, struct snd_emux_voice *vp);
39 static void snd_emu8000_tweak_voice(struct snd_emu8000 *emu, int ch);
42 * Ensure a value is between two points
43 * macro evaluates its args more than once, so changed to upper-case.
45 #define LIMITVALUE(x, a, b) do { if ((x) < (a)) (x) = (a); else if ((x) > (b)) (x) = (b); } while (0)
46 #define LIMITMAX(x, a) do {if ((x) > (a)) (x) = (a); } while (0)
52 static const struct snd_emux_operators emu8000_ops = {
54 .get_voice = get_voice,
55 .prepare = start_voice,
56 .trigger = trigger_voice,
57 .release = release_voice,
58 .update = update_voice,
59 .terminate = terminate_voice,
61 .sample_new = snd_emu8000_sample_new,
62 .sample_free = snd_emu8000_sample_free,
63 .sample_reset = snd_emu8000_sample_reset,
66 #if IS_ENABLED(CONFIG_SND_SEQUENCER_OSS)
67 .oss_ioctl = oss_ioctl,
72 snd_emu8000_ops_setup(struct snd_emu8000 *hw)
74 hw->emu->ops = emu8000_ops;
83 release_voice(struct snd_emux_voice *vp)
86 struct snd_emu8000 *hw;
89 dcysusv = 0x8000 | (unsigned char)vp->reg.parm.modrelease;
90 EMU8000_DCYSUS_WRITE(hw, vp->ch, dcysusv);
91 dcysusv = 0x8000 | (unsigned char)vp->reg.parm.volrelease;
92 EMU8000_DCYSUSV_WRITE(hw, vp->ch, dcysusv);
99 terminate_voice(struct snd_emux_voice *vp)
101 struct snd_emu8000 *hw;
104 EMU8000_DCYSUSV_WRITE(hw, vp->ch, 0x807F);
111 update_voice(struct snd_emux_voice *vp, int update)
113 struct snd_emu8000 *hw;
116 if (update & SNDRV_EMUX_UPDATE_VOLUME)
118 if (update & SNDRV_EMUX_UPDATE_PITCH)
120 if ((update & SNDRV_EMUX_UPDATE_PAN) &&
121 vp->port->ctrls[EMUX_MD_REALTIME_PAN])
123 if (update & SNDRV_EMUX_UPDATE_FMMOD)
125 if (update & SNDRV_EMUX_UPDATE_TREMFREQ)
126 set_tremfreq(hw, vp);
127 if (update & SNDRV_EMUX_UPDATE_FM2FRQ2)
129 if (update & SNDRV_EMUX_UPDATE_Q)
135 * Find a channel (voice) within the EMU that is not in use or at least
136 * less in use than other channels. Always returns a valid pointer
137 * no matter what. If there is a real shortage of voices then one
138 * will be cut. Such is life.
140 * The channel index (vp->ch) must be initialized in this routine.
141 * In Emu8k, it is identical with the array index.
143 static struct snd_emux_voice *
144 get_voice(struct snd_emux *emu, struct snd_emux_port *port)
147 struct snd_emux_voice *vp;
148 struct snd_emu8000 *hw;
150 /* what we are looking for, in order of preference */
152 OFF=0, RELEASED, PLAYING, END
155 /* Keeps track of what we are finding */
164 for (i = 0; i < END; i++) {
165 best[i].time = (unsigned int)(-1); /* XXX MAX_?INT really */
170 * Go through them all and get a best one to use.
172 for (i = 0; i < emu->max_voices; i++) {
175 vp = &emu->voices[i];
178 if (state == SNDRV_EMUX_ST_OFF)
180 else if (state == SNDRV_EMUX_ST_RELEASED ||
181 state == SNDRV_EMUX_ST_PENDING) {
182 bp = best + RELEASED;
183 val = (EMU8000_CVCF_READ(hw, vp->ch) >> 16) & 0xffff;
187 else if (state & SNDRV_EMUX_ST_ON)
192 /* check if sample is finished playing (non-looping only) */
193 if (state != SNDRV_EMUX_ST_OFF &&
194 (vp->reg.sample_mode & SNDRV_SFNT_SAMPLE_SINGLESHOT)) {
195 val = EMU8000_CCCA_READ(hw, vp->ch) & 0xffffff;
196 if (val >= vp->reg.loopstart)
200 if (vp->time < bp->time) {
206 for (i = 0; i < END; i++) {
207 if (best[i].voice >= 0) {
208 vp = &emu->voices[best[i].voice];
209 vp->ch = best[i].voice;
221 start_voice(struct snd_emux_voice *vp)
226 struct snd_midi_channel *chan;
227 struct snd_emu8000 *hw;
233 /* channel to be silent and idle */
234 EMU8000_DCYSUSV_WRITE(hw, ch, 0x0080);
235 EMU8000_VTFT_WRITE(hw, ch, 0x0000FFFF);
236 EMU8000_CVCF_WRITE(hw, ch, 0x0000FFFF);
237 EMU8000_PTRX_WRITE(hw, ch, 0);
238 EMU8000_CPF_WRITE(hw, ch, 0);
240 /* set pitch offset */
243 /* set envelope parameters */
244 EMU8000_ENVVAL_WRITE(hw, ch, vp->reg.parm.moddelay);
245 EMU8000_ATKHLD_WRITE(hw, ch, vp->reg.parm.modatkhld);
246 EMU8000_DCYSUS_WRITE(hw, ch, vp->reg.parm.moddcysus);
247 EMU8000_ENVVOL_WRITE(hw, ch, vp->reg.parm.voldelay);
248 EMU8000_ATKHLDV_WRITE(hw, ch, vp->reg.parm.volatkhld);
249 /* decay/sustain parameter for volume envelope is used
250 for triggerg the voice */
252 /* cutoff and volume */
255 /* modulation envelope heights */
256 EMU8000_PEFE_WRITE(hw, ch, vp->reg.parm.pefe);
259 EMU8000_LFO1VAL_WRITE(hw, ch, vp->reg.parm.lfo1delay);
260 EMU8000_LFO2VAL_WRITE(hw, ch, vp->reg.parm.lfo2delay);
262 /* lfo1 pitch & cutoff shift */
264 /* lfo1 volume & freq */
265 set_tremfreq(hw, vp);
266 /* lfo2 pitch & freq */
268 /* pan & loop start */
271 /* chorus & loop end (chorus 8bit, MSB) */
272 addr = vp->reg.loopend - 1;
273 temp = vp->reg.parm.chorus;
274 temp += (int)chan->control[MIDI_CTL_E3_CHORUS_DEPTH] * 9 / 10;
276 temp = (temp <<24) | (unsigned int)addr;
277 EMU8000_CSL_WRITE(hw, ch, temp);
279 /* Q & current address (Q 4bit value, MSB) */
280 addr = vp->reg.start - 1;
281 temp = vp->reg.parm.filterQ;
282 temp = (temp<<28) | (unsigned int)addr;
283 EMU8000_CCCA_WRITE(hw, ch, temp);
285 /* clear unknown registers */
286 EMU8000_00A0_WRITE(hw, ch, 0);
287 EMU8000_0080_WRITE(hw, ch, 0);
290 temp = vp->vtarget << 16;
291 EMU8000_VTFT_WRITE(hw, ch, temp | vp->ftarget);
292 EMU8000_CVCF_WRITE(hw, ch, temp | 0xff00);
301 trigger_voice(struct snd_emux_voice *vp)
305 struct snd_emu8000 *hw;
309 /* set reverb and pitch target */
310 temp = vp->reg.parm.reverb;
311 temp += (int)vp->chan->control[MIDI_CTL_E1_REVERB_DEPTH] * 9 / 10;
313 temp = (temp << 8) | (vp->ptarget << 16) | vp->aaux;
314 EMU8000_PTRX_WRITE(hw, ch, temp);
315 EMU8000_CPF_WRITE(hw, ch, vp->ptarget << 16);
316 EMU8000_DCYSUSV_WRITE(hw, ch, vp->reg.parm.voldcysus);
320 * reset voice parameters
323 reset_voice(struct snd_emux *emu, int ch)
325 struct snd_emu8000 *hw;
328 EMU8000_DCYSUSV_WRITE(hw, ch, 0x807F);
329 snd_emu8000_tweak_voice(hw, ch);
333 * Set the pitch of a possibly playing note.
336 set_pitch(struct snd_emu8000 *hw, struct snd_emux_voice *vp)
338 EMU8000_IP_WRITE(hw, vp->ch, vp->apitch);
342 * Set the volume of a possibly already playing note
345 set_volume(struct snd_emu8000 *hw, struct snd_emux_voice *vp)
349 ifatn = (unsigned char)vp->acutoff;
350 ifatn = (ifatn << 8);
351 ifatn |= (unsigned char)vp->avol;
352 EMU8000_IFATN_WRITE(hw, vp->ch, ifatn);
356 * Set pan and loop start address.
359 set_pan(struct snd_emu8000 *hw, struct snd_emux_voice *vp)
363 temp = ((unsigned int)vp->apan<<24) | ((unsigned int)vp->reg.loopstart - 1);
364 EMU8000_PSST_WRITE(hw, vp->ch, temp);
370 set_fmmod(struct snd_emu8000 *hw, struct snd_emux_voice *vp)
372 unsigned short fmmod;
374 unsigned char cutoff;
377 pitch = (char)(vp->reg.parm.fmmod>>8);
378 cutoff = (vp->reg.parm.fmmod & 0xff);
379 modulation = vp->chan->gm_modulation + vp->chan->midi_pressure;
380 pitch += (MOD_SENSE * modulation) / 1200;
381 LIMITVALUE(pitch, -128, 127);
382 fmmod = ((unsigned char)pitch<<8) | cutoff;
383 EMU8000_FMMOD_WRITE(hw, vp->ch, fmmod);
386 /* set tremolo (lfo1) volume & frequency */
388 set_tremfreq(struct snd_emu8000 *hw, struct snd_emux_voice *vp)
390 EMU8000_TREMFRQ_WRITE(hw, vp->ch, vp->reg.parm.tremfrq);
393 /* set lfo2 pitch & frequency */
395 set_fm2frq2(struct snd_emu8000 *hw, struct snd_emux_voice *vp)
397 unsigned short fm2frq2;
402 pitch = (char)(vp->reg.parm.fm2frq2>>8);
403 freq = vp->reg.parm.fm2frq2 & 0xff;
404 modulation = vp->chan->gm_modulation + vp->chan->midi_pressure;
405 pitch += (MOD_SENSE * modulation) / 1200;
406 LIMITVALUE(pitch, -128, 127);
407 fm2frq2 = ((unsigned char)pitch<<8) | freq;
408 EMU8000_FM2FRQ2_WRITE(hw, vp->ch, fm2frq2);
413 set_filterQ(struct snd_emu8000 *hw, struct snd_emux_voice *vp)
416 addr = EMU8000_CCCA_READ(hw, vp->ch) & 0xffffff;
417 addr |= (vp->reg.parm.filterQ << 28);
418 EMU8000_CCCA_WRITE(hw, vp->ch, addr);
422 * set the envelope & LFO parameters to the default values
425 snd_emu8000_tweak_voice(struct snd_emu8000 *emu, int i)
427 /* set all mod/vol envelope shape to minimum */
428 EMU8000_ENVVOL_WRITE(emu, i, 0x8000);
429 EMU8000_ENVVAL_WRITE(emu, i, 0x8000);
430 EMU8000_DCYSUS_WRITE(emu, i, 0x7F7F);
431 EMU8000_ATKHLDV_WRITE(emu, i, 0x7F7F);
432 EMU8000_ATKHLD_WRITE(emu, i, 0x7F7F);
433 EMU8000_PEFE_WRITE(emu, i, 0); /* mod envelope height to zero */
434 EMU8000_LFO1VAL_WRITE(emu, i, 0x8000); /* no delay for LFO1 */
435 EMU8000_LFO2VAL_WRITE(emu, i, 0x8000);
436 EMU8000_IP_WRITE(emu, i, 0xE000); /* no pitch shift */
437 EMU8000_IFATN_WRITE(emu, i, 0xFF00); /* volume to minimum */
438 EMU8000_FMMOD_WRITE(emu, i, 0);
439 EMU8000_TREMFRQ_WRITE(emu, i, 0);
440 EMU8000_FM2FRQ2_WRITE(emu, i, 0);
447 sysex(struct snd_emux *emu, char *buf, int len, int parsed, struct snd_midi_channel_set *chset)
449 struct snd_emu8000 *hw;
454 case SNDRV_MIDI_SYSEX_GS_CHORUS_MODE:
455 hw->chorus_mode = chset->gs_chorus_mode;
456 snd_emu8000_update_chorus_mode(hw);
459 case SNDRV_MIDI_SYSEX_GS_REVERB_MODE:
460 hw->reverb_mode = chset->gs_reverb_mode;
461 snd_emu8000_update_reverb_mode(hw);
467 #if IS_ENABLED(CONFIG_SND_SEQUENCER_OSS)
472 oss_ioctl(struct snd_emux *emu, int cmd, int p1, int p2)
474 struct snd_emu8000 *hw;
479 case _EMUX_OSS_REVERB_MODE:
480 hw->reverb_mode = p1;
481 snd_emu8000_update_reverb_mode(hw);
484 case _EMUX_OSS_CHORUS_MODE:
485 hw->chorus_mode = p1;
486 snd_emu8000_update_chorus_mode(hw);
489 case _EMUX_OSS_INITIALIZE_CHIP:
490 /* snd_emu8000_init(hw); */ /*ignored*/
493 case _EMUX_OSS_EQUALIZER:
495 hw->treble_level = p2;
496 snd_emu8000_update_equalizer(hw);
505 * additional patch keys
508 #define SNDRV_EMU8000_LOAD_CHORUS_FX 0x10 /* optarg=mode */
509 #define SNDRV_EMU8000_LOAD_REVERB_FX 0x11 /* optarg=mode */
517 load_fx(struct snd_emux *emu, int type, int mode, const void __user *buf, long len)
519 struct snd_emu8000 *hw;
527 case SNDRV_EMU8000_LOAD_CHORUS_FX:
528 return snd_emu8000_load_chorus_fx(hw, mode, buf, len);
529 case SNDRV_EMU8000_LOAD_REVERB_FX:
530 return snd_emu8000_load_reverb_fx(hw, mode, buf, len);