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a915d60426
Instead of separate voices, we now allocate non-interleaved channels, which may in turn contain two interleaved voices each. The higher-level code keeps only one pointer per channel. The channels are not allocated in one block any more, as there is no reason to do that. As a consequence of that, and because it is cleaner regardless, we now let the allocator store these pointers at a specified location, rather than returning only the first one and having the calling code deduce the remaining ones. Signed-off-by: Oswald Buddenhagen <oswald.buddenhagen@gmx.de> Link: https://lore.kernel.org/r/20230518140947.3725394-8-oswald.buddenhagen@gmx.de Signed-off-by: Takashi Iwai <tiwai@suse.de>
511 lines
12 KiB
C
511 lines
12 KiB
C
// SPDX-License-Identifier: GPL-2.0-or-later
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/*
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* synth callback routines for Emu10k1
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*
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* Copyright (C) 2000 Takashi Iwai <tiwai@suse.de>
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*/
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#include <linux/export.h>
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#include "emu10k1_synth_local.h"
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#include <sound/asoundef.h>
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/* voice status */
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enum {
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V_FREE=0, V_OFF, V_RELEASED, V_PLAYING, V_END
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};
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/* Keeps track of what we are finding */
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struct best_voice {
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unsigned int time;
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int voice;
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};
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/*
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* prototypes
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*/
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static void lookup_voices(struct snd_emux *emux, struct snd_emu10k1 *hw,
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struct best_voice *best, int active_only);
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static struct snd_emux_voice *get_voice(struct snd_emux *emux,
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struct snd_emux_port *port);
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static int start_voice(struct snd_emux_voice *vp);
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static void trigger_voice(struct snd_emux_voice *vp);
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static void release_voice(struct snd_emux_voice *vp);
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static void update_voice(struct snd_emux_voice *vp, int update);
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static void terminate_voice(struct snd_emux_voice *vp);
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static void free_voice(struct snd_emux_voice *vp);
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static u32 make_fmmod(struct snd_emux_voice *vp);
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static u32 make_fm2frq2(struct snd_emux_voice *vp);
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/*
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* Ensure a value is between two points
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* macro evaluates its args more than once, so changed to upper-case.
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*/
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#define LIMITVALUE(x, a, b) do { if ((x) < (a)) (x) = (a); else if ((x) > (b)) (x) = (b); } while (0)
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#define LIMITMAX(x, a) do {if ((x) > (a)) (x) = (a); } while (0)
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/*
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* set up operators
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*/
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static const struct snd_emux_operators emu10k1_ops = {
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.owner = THIS_MODULE,
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.get_voice = get_voice,
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.prepare = start_voice,
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.trigger = trigger_voice,
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.release = release_voice,
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.update = update_voice,
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.terminate = terminate_voice,
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.free_voice = free_voice,
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.sample_new = snd_emu10k1_sample_new,
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.sample_free = snd_emu10k1_sample_free,
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};
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void
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snd_emu10k1_ops_setup(struct snd_emux *emux)
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{
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emux->ops = emu10k1_ops;
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}
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/*
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* get more voice for pcm
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*
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* terminate most inactive voice and give it as a pcm voice.
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*
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* voice_lock is already held.
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*/
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int
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snd_emu10k1_synth_get_voice(struct snd_emu10k1 *hw)
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{
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struct snd_emux *emu;
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struct snd_emux_voice *vp;
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struct best_voice best[V_END];
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int i;
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emu = hw->synth;
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lookup_voices(emu, hw, best, 1); /* no OFF voices */
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for (i = 0; i < V_END; i++) {
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if (best[i].voice >= 0) {
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int ch;
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vp = &emu->voices[best[i].voice];
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ch = vp->ch;
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if (ch < 0) {
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/*
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dev_warn(emu->card->dev,
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"synth_get_voice: ch < 0 (%d) ??", i);
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*/
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continue;
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}
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vp->emu->num_voices--;
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vp->ch = -1;
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vp->state = SNDRV_EMUX_ST_OFF;
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return ch;
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}
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}
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/* not found */
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return -ENOMEM;
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}
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/*
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* turn off the voice (not terminated)
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*/
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static void
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release_voice(struct snd_emux_voice *vp)
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{
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struct snd_emu10k1 *hw;
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hw = vp->hw;
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snd_emu10k1_ptr_write_multiple(hw, vp->ch,
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DCYSUSM, (unsigned char)vp->reg.parm.modrelease | DCYSUSM_PHASE1_MASK,
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DCYSUSV, (unsigned char)vp->reg.parm.volrelease | DCYSUSV_PHASE1_MASK | DCYSUSV_CHANNELENABLE_MASK,
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REGLIST_END);
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}
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/*
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* terminate the voice
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*/
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static void
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terminate_voice(struct snd_emux_voice *vp)
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{
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struct snd_emu10k1 *hw;
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if (snd_BUG_ON(!vp))
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return;
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hw = vp->hw;
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snd_emu10k1_ptr_write_multiple(hw, vp->ch,
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DCYSUSV, 0,
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VTFT, VTFT_FILTERTARGET_MASK,
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CVCF, CVCF_CURRENTFILTER_MASK,
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PTRX, 0,
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CPF, 0,
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REGLIST_END);
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if (vp->block) {
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struct snd_emu10k1_memblk *emem;
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emem = (struct snd_emu10k1_memblk *)vp->block;
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if (emem->map_locked > 0)
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emem->map_locked--;
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}
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}
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/*
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* release the voice to system
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*/
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static void
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free_voice(struct snd_emux_voice *vp)
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{
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struct snd_emu10k1 *hw;
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hw = vp->hw;
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/* FIXME: emu10k1_synth is broken. */
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/* This can get called with hw == 0 */
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/* Problem apparent on plug, unplug then plug */
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/* on the Audigy 2 ZS Notebook. */
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if (hw && (vp->ch >= 0)) {
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snd_emu10k1_voice_free(hw, &hw->voices[vp->ch]);
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vp->emu->num_voices--;
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vp->ch = -1;
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}
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}
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/*
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* update registers
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*/
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static void
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update_voice(struct snd_emux_voice *vp, int update)
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{
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struct snd_emu10k1 *hw;
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hw = vp->hw;
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if (update & SNDRV_EMUX_UPDATE_VOLUME)
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snd_emu10k1_ptr_write(hw, IFATN_ATTENUATION, vp->ch, vp->avol);
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if (update & SNDRV_EMUX_UPDATE_PITCH)
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snd_emu10k1_ptr_write(hw, IP, vp->ch, vp->apitch);
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if (update & SNDRV_EMUX_UPDATE_PAN) {
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snd_emu10k1_ptr_write(hw, PTRX_FXSENDAMOUNT_A, vp->ch, vp->apan);
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snd_emu10k1_ptr_write(hw, PTRX_FXSENDAMOUNT_B, vp->ch, vp->aaux);
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}
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if (update & SNDRV_EMUX_UPDATE_FMMOD)
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snd_emu10k1_ptr_write(hw, FMMOD, vp->ch, make_fmmod(vp));
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if (update & SNDRV_EMUX_UPDATE_TREMFREQ)
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snd_emu10k1_ptr_write(hw, TREMFRQ, vp->ch, vp->reg.parm.tremfrq);
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if (update & SNDRV_EMUX_UPDATE_FM2FRQ2)
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snd_emu10k1_ptr_write(hw, FM2FRQ2, vp->ch, make_fm2frq2(vp));
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if (update & SNDRV_EMUX_UPDATE_Q)
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snd_emu10k1_ptr_write(hw, CCCA_RESONANCE, vp->ch, vp->reg.parm.filterQ);
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}
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/*
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* look up voice table - get the best voice in order of preference
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*/
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/* spinlock held! */
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static void
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lookup_voices(struct snd_emux *emu, struct snd_emu10k1 *hw,
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struct best_voice *best, int active_only)
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{
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struct snd_emux_voice *vp;
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struct best_voice *bp;
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int i;
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for (i = 0; i < V_END; i++) {
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best[i].time = (unsigned int)-1; /* XXX MAX_?INT really */
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best[i].voice = -1;
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}
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/*
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* Go through them all and get a best one to use.
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* NOTE: could also look at volume and pick the quietest one.
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*/
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for (i = 0; i < emu->max_voices; i++) {
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int state, val;
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vp = &emu->voices[i];
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state = vp->state;
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if (state == SNDRV_EMUX_ST_OFF) {
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if (vp->ch < 0) {
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if (active_only)
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continue;
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bp = best + V_FREE;
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} else
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bp = best + V_OFF;
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}
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else if (state == SNDRV_EMUX_ST_RELEASED ||
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state == SNDRV_EMUX_ST_PENDING) {
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bp = best + V_RELEASED;
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#if 1
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val = snd_emu10k1_ptr_read(hw, CVCF_CURRENTVOL, vp->ch);
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if (! val)
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bp = best + V_OFF;
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#endif
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}
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else if (state == SNDRV_EMUX_ST_STANDBY)
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continue;
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else if (state & SNDRV_EMUX_ST_ON)
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bp = best + V_PLAYING;
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else
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continue;
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/* check if sample is finished playing (non-looping only) */
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if (bp != best + V_OFF && bp != best + V_FREE &&
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(vp->reg.sample_mode & SNDRV_SFNT_SAMPLE_SINGLESHOT)) {
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val = snd_emu10k1_ptr_read(hw, CCCA_CURRADDR, vp->ch) - 64;
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if (val >= vp->reg.loopstart)
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bp = best + V_OFF;
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}
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if (vp->time < bp->time) {
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bp->time = vp->time;
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bp->voice = i;
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}
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}
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}
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/*
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* get an empty voice
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*
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* emu->voice_lock is already held.
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*/
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static struct snd_emux_voice *
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get_voice(struct snd_emux *emu, struct snd_emux_port *port)
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{
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struct snd_emu10k1 *hw;
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struct snd_emux_voice *vp;
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struct best_voice best[V_END];
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int i;
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hw = emu->hw;
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lookup_voices(emu, hw, best, 0);
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for (i = 0; i < V_END; i++) {
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if (best[i].voice >= 0) {
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vp = &emu->voices[best[i].voice];
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if (vp->ch < 0) {
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/* allocate a voice */
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struct snd_emu10k1_voice *hwvoice;
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if (snd_emu10k1_voice_alloc(hw, EMU10K1_SYNTH, 1, 1, NULL, &hwvoice) < 0)
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continue;
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vp->ch = hwvoice->number;
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emu->num_voices++;
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}
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return vp;
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}
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}
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/* not found */
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return NULL;
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}
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/*
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* prepare envelopes and LFOs
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*/
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static int
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start_voice(struct snd_emux_voice *vp)
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{
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unsigned int temp;
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int ch;
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u32 psst, dsl, map, ccca, vtarget;
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unsigned int addr, mapped_offset;
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struct snd_midi_channel *chan;
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struct snd_emu10k1 *hw;
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struct snd_emu10k1_memblk *emem;
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hw = vp->hw;
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ch = vp->ch;
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if (snd_BUG_ON(ch < 0))
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return -EINVAL;
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chan = vp->chan;
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emem = (struct snd_emu10k1_memblk *)vp->block;
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if (emem == NULL)
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return -EINVAL;
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emem->map_locked++;
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if (snd_emu10k1_memblk_map(hw, emem) < 0) {
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/* dev_err(hw->card->devK, "emu: cannot map!\n"); */
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return -ENOMEM;
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}
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mapped_offset = snd_emu10k1_memblk_offset(emem) >> 1;
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vp->reg.start += mapped_offset;
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vp->reg.end += mapped_offset;
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vp->reg.loopstart += mapped_offset;
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vp->reg.loopend += mapped_offset;
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/* set channel routing */
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/* A = left(0), B = right(1), C = reverb(c), D = chorus(d) */
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if (hw->audigy) {
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temp = FXBUS_MIDI_LEFT | (FXBUS_MIDI_RIGHT << 8) |
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(FXBUS_MIDI_REVERB << 16) | (FXBUS_MIDI_CHORUS << 24);
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snd_emu10k1_ptr_write(hw, A_FXRT1, ch, temp);
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} else {
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temp = (FXBUS_MIDI_LEFT << 16) | (FXBUS_MIDI_RIGHT << 20) |
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(FXBUS_MIDI_REVERB << 24) | (FXBUS_MIDI_CHORUS << 28);
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snd_emu10k1_ptr_write(hw, FXRT, ch, temp);
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}
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temp = vp->reg.parm.reverb;
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temp += (int)vp->chan->control[MIDI_CTL_E1_REVERB_DEPTH] * 9 / 10;
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LIMITMAX(temp, 255);
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addr = vp->reg.loopstart;
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psst = (temp << 24) | addr;
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addr = vp->reg.loopend;
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temp = vp->reg.parm.chorus;
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temp += (int)chan->control[MIDI_CTL_E3_CHORUS_DEPTH] * 9 / 10;
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LIMITMAX(temp, 255);
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dsl = (temp << 24) | addr;
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map = (hw->silent_page.addr << hw->address_mode) | (hw->address_mode ? MAP_PTI_MASK1 : MAP_PTI_MASK0);
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addr = vp->reg.start + 64;
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temp = vp->reg.parm.filterQ;
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ccca = (temp << 28) | addr;
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if (vp->apitch < 0xe400)
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ccca |= CCCA_INTERPROM_0;
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else {
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unsigned int shift = (vp->apitch - 0xe000) >> 10;
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ccca |= shift << 25;
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}
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if (vp->reg.sample_mode & SNDRV_SFNT_SAMPLE_8BITS)
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ccca |= CCCA_8BITSELECT;
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vtarget = (unsigned int)vp->vtarget << 16;
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snd_emu10k1_ptr_write_multiple(hw, ch,
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/* channel to be silent and idle */
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DCYSUSV, 0,
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VTFT, VTFT_FILTERTARGET_MASK,
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CVCF, CVCF_CURRENTFILTER_MASK,
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PTRX, 0,
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CPF, 0,
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/* set pitch offset */
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IP, vp->apitch,
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/* set envelope parameters */
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ENVVAL, vp->reg.parm.moddelay,
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ATKHLDM, vp->reg.parm.modatkhld,
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DCYSUSM, vp->reg.parm.moddcysus,
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ENVVOL, vp->reg.parm.voldelay,
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ATKHLDV, vp->reg.parm.volatkhld,
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/* decay/sustain parameter for volume envelope is used
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for triggerg the voice */
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/* cutoff and volume */
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IFATN, (unsigned int)vp->acutoff << 8 | (unsigned char)vp->avol,
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/* modulation envelope heights */
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PEFE, vp->reg.parm.pefe,
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/* lfo1/2 delay */
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LFOVAL1, vp->reg.parm.lfo1delay,
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LFOVAL2, vp->reg.parm.lfo2delay,
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/* lfo1 pitch & cutoff shift */
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FMMOD, make_fmmod(vp),
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/* lfo1 volume & freq */
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TREMFRQ, vp->reg.parm.tremfrq,
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/* lfo2 pitch & freq */
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FM2FRQ2, make_fm2frq2(vp),
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/* reverb and loop start (reverb 8bit, MSB) */
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PSST, psst,
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/* chorus & loop end (chorus 8bit, MSB) */
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DSL, dsl,
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/* clear filter delay memory */
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Z1, 0,
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Z2, 0,
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/* invalidate maps */
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MAPA, map,
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MAPB, map,
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/* Q & current address (Q 4bit value, MSB) */
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CCCA, ccca,
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/* cache */
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CCR, REG_VAL_PUT(CCR_CACHEINVALIDSIZE, 64),
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/* reset volume */
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VTFT, vtarget | vp->ftarget,
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CVCF, vtarget | CVCF_CURRENTFILTER_MASK,
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REGLIST_END);
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hw->voices[ch].dirty = 1;
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return 0;
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}
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/*
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* Start envelope
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*/
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static void
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trigger_voice(struct snd_emux_voice *vp)
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{
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unsigned int ptarget;
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struct snd_emu10k1 *hw;
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struct snd_emu10k1_memblk *emem;
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hw = vp->hw;
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emem = (struct snd_emu10k1_memblk *)vp->block;
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if (! emem || emem->mapped_page < 0)
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return; /* not mapped */
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#if 0
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ptarget = (unsigned int)vp->ptarget << 16;
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#else
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ptarget = IP_TO_CP(vp->apitch);
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#endif
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snd_emu10k1_ptr_write_multiple(hw, vp->ch,
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/* set pitch target and pan (volume) */
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PTRX, ptarget | (vp->apan << 8) | vp->aaux,
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/* current pitch and fractional address */
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CPF, ptarget,
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/* enable envelope engine */
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DCYSUSV, vp->reg.parm.voldcysus | DCYSUSV_CHANNELENABLE_MASK,
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REGLIST_END);
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}
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#define MOD_SENSE 18
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/* calculate lfo1 modulation height and cutoff register */
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static u32
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make_fmmod(struct snd_emux_voice *vp)
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{
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short pitch;
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unsigned char cutoff;
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int modulation;
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pitch = (char)(vp->reg.parm.fmmod>>8);
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cutoff = (vp->reg.parm.fmmod & 0xff);
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modulation = vp->chan->gm_modulation + vp->chan->midi_pressure;
|
|
pitch += (MOD_SENSE * modulation) / 1200;
|
|
LIMITVALUE(pitch, -128, 127);
|
|
return ((unsigned char)pitch << 8) | cutoff;
|
|
}
|
|
|
|
/* calculate set lfo2 pitch & frequency register */
|
|
static u32
|
|
make_fm2frq2(struct snd_emux_voice *vp)
|
|
{
|
|
short pitch;
|
|
unsigned char freq;
|
|
int modulation;
|
|
|
|
pitch = (char)(vp->reg.parm.fm2frq2>>8);
|
|
freq = vp->reg.parm.fm2frq2 & 0xff;
|
|
modulation = vp->chan->gm_modulation + vp->chan->midi_pressure;
|
|
pitch += (MOD_SENSE * modulation) / 1200;
|
|
LIMITVALUE(pitch, -128, 127);
|
|
return ((unsigned char)pitch << 8) | freq;
|
|
}
|