This control specifies the destination - FX-bus accumulators. There are 24
values in this mapping:
-* 0 - mono, A destination (FX-bus 0-63), default 0
-* 1 - mono, B destination (FX-bus 0-63), default 1
-* 2 - mono, C destination (FX-bus 0-63), default 2
-* 3 - mono, D destination (FX-bus 0-63), default 3
-* 4 - mono, E destination (FX-bus 0-63), default 0
-* 5 - mono, F destination (FX-bus 0-63), default 0
-* 6 - mono, G destination (FX-bus 0-63), default 0
-* 7 - mono, H destination (FX-bus 0-63), default 0
-* 8 - left, A destination (FX-bus 0-63), default 0
-* 9 - left, B destination (FX-bus 0-63), default 1
+* 0 - mono, A destination (FX-bus 0-63), default 0
+* 1 - mono, B destination (FX-bus 0-63), default 1
+* 2 - mono, C destination (FX-bus 0-63), default 2
+* 3 - mono, D destination (FX-bus 0-63), default 3
+* 4 - mono, E destination (FX-bus 0-63), default 4
+* 5 - mono, F destination (FX-bus 0-63), default 5
+* 6 - mono, G destination (FX-bus 0-63), default 6
+* 7 - mono, H destination (FX-bus 0-63), default 7
+* 8 - left, A destination (FX-bus 0-63), default 0
+* 9 - left, B destination (FX-bus 0-63), default 1
* 10 - left, C destination (FX-bus 0-63), default 2
* 11 - left, D destination (FX-bus 0-63), default 3
-* 12 - left, E destination (FX-bus 0-63), default 0
-* 13 - left, F destination (FX-bus 0-63), default 0
-* 14 - left, G destination (FX-bus 0-63), default 0
-* 15 - left, H destination (FX-bus 0-63), default 0
+* 12 - left, E destination (FX-bus 0-63), default 4
+* 13 - left, F destination (FX-bus 0-63), default 5
+* 14 - left, G destination (FX-bus 0-63), default 6
+* 15 - left, H destination (FX-bus 0-63), default 7
* 16 - right, A destination (FX-bus 0-63), default 0
* 17 - right, B destination (FX-bus 0-63), default 1
* 18 - right, C destination (FX-bus 0-63), default 2
* 19 - right, D destination (FX-bus 0-63), default 3
-* 20 - right, E destination (FX-bus 0-63), default 0
-* 21 - right, F destination (FX-bus 0-63), default 0
-* 22 - right, G destination (FX-bus 0-63), default 0
-* 23 - right, H destination (FX-bus 0-63), default 0
+* 20 - right, E destination (FX-bus 0-63), default 4
+* 21 - right, F destination (FX-bus 0-63), default 5
+* 22 - right, G destination (FX-bus 0-63), default 6
+* 23 - right, H destination (FX-bus 0-63), default 7
Don't forget that it's illegal to assign a channel to the same FX-bus accumulator
more than once (it means 0=0 && 1=0 is an invalid combination).
int snd_emu10k1_mixer(struct snd_emu10k1 *emu,
int pcm_device, int multi_device)
{
- int err, pcm;
+ int err;
struct snd_kcontrol *kctl;
struct snd_card *card = emu->card;
const char * const *c;
if (err)
return err;
- /* initialize the routing and volume table for each pcm playback stream */
- for (pcm = 0; pcm < 32; pcm++) {
- struct snd_emu10k1_pcm_mixer *mix;
- int v;
-
- mix = &emu->pcm_mixer[pcm];
- mix->epcm = NULL;
-
- for (v = 0; v < 4; v++)
- mix->send_routing[0][v] =
- mix->send_routing[1][v] =
- mix->send_routing[2][v] = v;
-
- memset(&mix->send_volume, 0, sizeof(mix->send_volume));
- mix->send_volume[0][0] = mix->send_volume[0][1] =
- mix->send_volume[1][0] = mix->send_volume[2][1] = 255;
-
- mix->attn[0] = mix->attn[1] = mix->attn[2] = 0xffff;
- }
-
- /* initialize the routing and volume table for the multichannel playback stream */
- for (pcm = 0; pcm < NUM_EFX_PLAYBACK; pcm++) {
- struct snd_emu10k1_pcm_mixer *mix;
- int v;
-
- mix = &emu->efx_pcm_mixer[pcm];
- mix->epcm = NULL;
-
- mix->send_routing[0][0] = pcm;
- mix->send_routing[0][1] = (pcm == 0) ? 1 : 0;
- for (v = 0; v < 2; v++)
- mix->send_routing[0][2+v] = 13+v;
- if (emu->audigy)
- for (v = 0; v < 4; v++)
- mix->send_routing[0][4+v] = 60+v;
-
- memset(&mix->send_volume, 0, sizeof(mix->send_volume));
- mix->send_volume[0][0] = 255;
-
- mix->attn[0] = 0xffff;
- }
-
if (!emu->card_capabilities->ecard && !emu->card_capabilities->emu_model) {
/* sb live! and audigy */
kctl = snd_ctl_new1(&snd_emu10k1_spdif_mask_control, emu);
/* volume parameters */
if (extra) {
- memset(send_routing, 0, sizeof(send_routing));
- send_routing[0] = 0;
- send_routing[1] = 1;
- send_routing[2] = 2;
- send_routing[3] = 3;
+ for (int i = 0; i < 8; i++)
+ send_routing[i] = i;
memset(send_amount, 0, sizeof(send_amount));
} else {
/* mono, left, right (master voice = left) */
struct snd_emu10k1_pcm *epcm;
struct snd_emu10k1_pcm_mixer *mix;
struct snd_pcm_runtime *runtime = substream->runtime;
- int i;
+ int i, j;
epcm = kzalloc(sizeof(*epcm), GFP_KERNEL);
if (epcm == NULL)
for (i = 0; i < NUM_EFX_PLAYBACK; i++) {
mix = &emu->efx_pcm_mixer[i];
- mix->send_routing[0][0] = i;
+ for (j = 0; j < 8; j++)
+ mix->send_routing[0][j] = i + j;
memset(&mix->send_volume, 0, sizeof(mix->send_volume));
mix->send_volume[0][0] = 255;
mix->attn[0] = 0x8000;
return err;
}
mix = &emu->pcm_mixer[substream->number];
- for (i = 0; i < 4; i++)
+ for (i = 0; i < 8; i++)
mix->send_routing[0][i] = mix->send_routing[1][i] = mix->send_routing[2][i] = i;
memset(&mix->send_volume, 0, sizeof(mix->send_volume));
mix->send_volume[0][0] = mix->send_volume[0][1] =