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ALSA: emu10k1: enable bit-exact playback, part 1: DSP attenuation
Fractional multiplication with the maximal value 2^31-1 causes some tiny distortion. Instead, we want to multiply with the full 2^31. The catch is of course that this cannot be represented in the DSP's signed 32 bit registers. One way to deal with this is to encode 1.0 as a negative number and special-case it. As a matter of fact, the SbLive! code path already contained such code, though the controls never actually exercised it. A more efficient approach is to use negative values, which actually extend to -2^31. Accordingly, for all the volume adjustments we now use the MAC1 instruction which negates the X operand. The range of the controls in highres mode is extended downwards, so -1 is the new zero/mute. At maximal excursion, real zero is not mute any more, but I don't think anyone will notice this behavior change. ;-) That also required making the min/max/values in the control structs signed. This technically changes the user space interface, but it seems implausible that someone would notice - the numbers were actually treated as if they were signed anyway (and in the actual mixer iface they _are_). And without this change, the min value didn't even make sense in the first place (and no-one noticed, because it was always 0). Tested-by: Jonathan Dowland <jon@dow.land> Signed-off-by: Oswald Buddenhagen <oswald.buddenhagen@gmx.de> Link: https://lore.kernel.org/r/20230514170323.3408834-7-oswald.buddenhagen@gmx.de Signed-off-by: Takashi Iwai <tiwai@suse.de>
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@ -1508,9 +1508,9 @@ struct snd_emu10k1_fx8010_ctl {
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unsigned int vcount;
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unsigned int count; /* count of GPR (1..16) */
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unsigned short gpr[32]; /* GPR number(s) */
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unsigned int value[32];
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unsigned int min; /* minimum range */
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unsigned int max; /* maximum range */
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int value[32];
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int min; /* minimum range */
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int max; /* maximum range */
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unsigned int translation; /* translation type (EMU10K1_GPR_TRANSLATION*) */
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struct snd_kcontrol *kcontrol;
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};
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@ -308,6 +308,8 @@ struct snd_emu10k1_fx8010_info {
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#define EMU10K1_GPR_TRANSLATION_BASS 2
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#define EMU10K1_GPR_TRANSLATION_TREBLE 3
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#define EMU10K1_GPR_TRANSLATION_ONOFF 4
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#define EMU10K1_GPR_TRANSLATION_NEGATE 5
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#define EMU10K1_GPR_TRANSLATION_NEG_TABLE100 6
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enum emu10k1_ctl_elem_iface {
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EMU10K1_CTL_ELEM_IFACE_MIXER = 2, /* virtual mixer device */
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@ -328,9 +330,9 @@ struct snd_emu10k1_fx8010_control_gpr {
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unsigned int vcount; /* visible count */
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unsigned int count; /* count of GPR (1..16) */
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unsigned short gpr[32]; /* GPR number(s) */
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unsigned int value[32]; /* initial values */
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unsigned int min; /* minimum range */
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unsigned int max; /* maximum range */
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int value[32]; /* initial values */
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int min; /* minimum range */
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int max; /* maximum range */
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unsigned int translation; /* translation type (EMU10K1_GPR_TRANSLATION*) */
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const unsigned int *tlv;
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};
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@ -332,7 +332,7 @@ static int snd_emu10k1_gpr_ctl_put(struct snd_kcontrol *kcontrol, struct snd_ctl
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struct snd_emu10k1 *emu = snd_kcontrol_chip(kcontrol);
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struct snd_emu10k1_fx8010_ctl *ctl =
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(struct snd_emu10k1_fx8010_ctl *) kcontrol->private_value;
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unsigned int nval, val;
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int nval, val;
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unsigned int i, j;
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int change = 0;
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@ -349,9 +349,16 @@ static int snd_emu10k1_gpr_ctl_put(struct snd_kcontrol *kcontrol, struct snd_ctl
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case EMU10K1_GPR_TRANSLATION_NONE:
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snd_emu10k1_ptr_write(emu, emu->gpr_base + ctl->gpr[i], 0, val);
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break;
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case EMU10K1_GPR_TRANSLATION_NEGATE:
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snd_emu10k1_ptr_write(emu, emu->gpr_base + ctl->gpr[i], 0, ~val);
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break;
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case EMU10K1_GPR_TRANSLATION_TABLE100:
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snd_emu10k1_ptr_write(emu, emu->gpr_base + ctl->gpr[i], 0, db_table[val]);
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break;
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case EMU10K1_GPR_TRANSLATION_NEG_TABLE100:
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snd_emu10k1_ptr_write(emu, emu->gpr_base + ctl->gpr[i], 0,
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val == 100 ? 0x80000000 : -(int)db_table[val]);
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break;
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case EMU10K1_GPR_TRANSLATION_BASS:
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if ((ctl->count % 5) != 0 || (ctl->count / 5) != ctl->vcount) {
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change = -EIO;
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@ -771,8 +778,10 @@ static int snd_emu10k1_verify_controls(struct snd_emu10k1 *emu,
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}
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switch (gctl->translation) {
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case EMU10K1_GPR_TRANSLATION_NONE:
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case EMU10K1_GPR_TRANSLATION_NEGATE:
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break;
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case EMU10K1_GPR_TRANSLATION_TABLE100:
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case EMU10K1_GPR_TRANSLATION_NEG_TABLE100:
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if (gctl->min != 0 || gctl->max != 100) {
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err = -EINVAL;
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goto __error;
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@ -1137,44 +1146,44 @@ static int snd_emu10k1_ipcm_peek(struct snd_emu10k1 *emu,
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static void
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snd_emu10k1_init_mono_control(struct snd_emu10k1_fx8010_control_gpr *ctl,
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const char *name, int gpr, int defval)
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const char *name, int gpr, int defval)
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{
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ctl->id.iface = (__force int)SNDRV_CTL_ELEM_IFACE_MIXER;
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strcpy(ctl->id.name, name);
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ctl->vcount = ctl->count = 1;
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if (high_res_gpr_volume) {
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ctl->min = 0;
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ctl->min = -1;
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ctl->max = 0x7fffffff;
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ctl->tlv = snd_emu10k1_db_linear;
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ctl->translation = EMU10K1_GPR_TRANSLATION_NONE;
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defval = defval * 0x7fffffffLL / 100;
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ctl->translation = EMU10K1_GPR_TRANSLATION_NEGATE;
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defval = defval * 0x80000000LL / 100 - 1;
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} else {
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ctl->min = 0;
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ctl->max = 100;
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ctl->tlv = snd_emu10k1_db_scale1;
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ctl->translation = EMU10K1_GPR_TRANSLATION_TABLE100;
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ctl->translation = EMU10K1_GPR_TRANSLATION_NEG_TABLE100;
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}
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ctl->gpr[0] = gpr + 0; ctl->value[0] = defval;
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}
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static void
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snd_emu10k1_init_stereo_control(struct snd_emu10k1_fx8010_control_gpr *ctl,
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const char *name, int gpr, int defval)
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const char *name, int gpr, int defval)
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{
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ctl->id.iface = (__force int)SNDRV_CTL_ELEM_IFACE_MIXER;
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strcpy(ctl->id.name, name);
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ctl->vcount = ctl->count = 2;
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if (high_res_gpr_volume) {
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ctl->min = 0;
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ctl->min = -1;
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ctl->max = 0x7fffffff;
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ctl->tlv = snd_emu10k1_db_linear;
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ctl->translation = EMU10K1_GPR_TRANSLATION_NONE;
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defval = defval * 0x7fffffffLL / 100;
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ctl->translation = EMU10K1_GPR_TRANSLATION_NEGATE;
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defval = defval * 0x80000000LL / 100 - 1;
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} else {
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ctl->min = 0;
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ctl->max = 100;
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ctl->tlv = snd_emu10k1_db_scale1;
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ctl->translation = EMU10K1_GPR_TRANSLATION_TABLE100;
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ctl->translation = EMU10K1_GPR_TRANSLATION_NEG_TABLE100;
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}
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ctl->gpr[0] = gpr + 0; ctl->value[0] = defval;
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ctl->gpr[1] = gpr + 1; ctl->value[1] = defval;
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@ -1293,36 +1302,36 @@ static int _snd_emu10k1_audigy_init_efx(struct snd_emu10k1 *emu)
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#if 1
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/* PCM front Playback Volume (independent from stereo mix)
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* playback = 0 + ( gpr * FXBUS_PCM_LEFT_FRONT >> 31)
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* where gpr contains attenuation from corresponding mixer control
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* playback = -gpr * FXBUS_PCM_LEFT_FRONT >> 31
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* where gpr contains negated attenuation from corresponding mixer control
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* (snd_emu10k1_init_stereo_control)
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*/
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A_OP(icode, &ptr, iMAC0, A_GPR(playback), A_C_00000000, A_GPR(gpr), A_FXBUS(FXBUS_PCM_LEFT_FRONT));
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A_OP(icode, &ptr, iMAC0, A_GPR(playback+1), A_C_00000000, A_GPR(gpr+1), A_FXBUS(FXBUS_PCM_RIGHT_FRONT));
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A_OP(icode, &ptr, iMAC1, A_GPR(playback), A_C_00000000, A_GPR(gpr), A_FXBUS(FXBUS_PCM_LEFT_FRONT));
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A_OP(icode, &ptr, iMAC1, A_GPR(playback+1), A_C_00000000, A_GPR(gpr+1), A_FXBUS(FXBUS_PCM_RIGHT_FRONT));
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snd_emu10k1_init_stereo_control(&controls[nctl++], "PCM Front Playback Volume", gpr, 100);
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gpr += 2;
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/* PCM Surround Playback (independent from stereo mix) */
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A_OP(icode, &ptr, iMAC0, A_GPR(playback+2), A_C_00000000, A_GPR(gpr), A_FXBUS(FXBUS_PCM_LEFT_REAR));
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A_OP(icode, &ptr, iMAC0, A_GPR(playback+3), A_C_00000000, A_GPR(gpr+1), A_FXBUS(FXBUS_PCM_RIGHT_REAR));
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A_OP(icode, &ptr, iMAC1, A_GPR(playback+2), A_C_00000000, A_GPR(gpr), A_FXBUS(FXBUS_PCM_LEFT_REAR));
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A_OP(icode, &ptr, iMAC1, A_GPR(playback+3), A_C_00000000, A_GPR(gpr+1), A_FXBUS(FXBUS_PCM_RIGHT_REAR));
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snd_emu10k1_init_stereo_control(&controls[nctl++], "PCM Surround Playback Volume", gpr, 100);
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gpr += 2;
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/* PCM Side Playback (independent from stereo mix) */
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if (emu->card_capabilities->spk71) {
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A_OP(icode, &ptr, iMAC0, A_GPR(playback+6), A_C_00000000, A_GPR(gpr), A_FXBUS(FXBUS_PCM_LEFT_SIDE));
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A_OP(icode, &ptr, iMAC0, A_GPR(playback+7), A_C_00000000, A_GPR(gpr+1), A_FXBUS(FXBUS_PCM_RIGHT_SIDE));
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A_OP(icode, &ptr, iMAC1, A_GPR(playback+6), A_C_00000000, A_GPR(gpr), A_FXBUS(FXBUS_PCM_LEFT_SIDE));
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A_OP(icode, &ptr, iMAC1, A_GPR(playback+7), A_C_00000000, A_GPR(gpr+1), A_FXBUS(FXBUS_PCM_RIGHT_SIDE));
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snd_emu10k1_init_stereo_control(&controls[nctl++], "PCM Side Playback Volume", gpr, 100);
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gpr += 2;
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}
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/* PCM Center Playback (independent from stereo mix) */
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A_OP(icode, &ptr, iMAC0, A_GPR(playback+4), A_C_00000000, A_GPR(gpr), A_FXBUS(FXBUS_PCM_CENTER));
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A_OP(icode, &ptr, iMAC1, A_GPR(playback+4), A_C_00000000, A_GPR(gpr), A_FXBUS(FXBUS_PCM_CENTER));
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snd_emu10k1_init_mono_control(&controls[nctl++], "PCM Center Playback Volume", gpr, 100);
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gpr++;
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/* PCM LFE Playback (independent from stereo mix) */
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A_OP(icode, &ptr, iMAC0, A_GPR(playback+5), A_C_00000000, A_GPR(gpr), A_FXBUS(FXBUS_PCM_LFE));
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A_OP(icode, &ptr, iMAC1, A_GPR(playback+5), A_C_00000000, A_GPR(gpr), A_FXBUS(FXBUS_PCM_LFE));
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snd_emu10k1_init_mono_control(&controls[nctl++], "PCM LFE Playback Volume", gpr, 100);
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gpr++;
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@ -1330,26 +1339,26 @@ static int _snd_emu10k1_audigy_init_efx(struct snd_emu10k1 *emu)
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* Stereo Mix
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*/
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/* Wave (PCM) Playback Volume (will be renamed later) */
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A_OP(icode, &ptr, iMAC0, A_GPR(stereo_mix), A_C_00000000, A_GPR(gpr), A_FXBUS(FXBUS_PCM_LEFT));
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A_OP(icode, &ptr, iMAC0, A_GPR(stereo_mix+1), A_C_00000000, A_GPR(gpr+1), A_FXBUS(FXBUS_PCM_RIGHT));
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A_OP(icode, &ptr, iMAC1, A_GPR(stereo_mix), A_C_00000000, A_GPR(gpr), A_FXBUS(FXBUS_PCM_LEFT));
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A_OP(icode, &ptr, iMAC1, A_GPR(stereo_mix+1), A_C_00000000, A_GPR(gpr+1), A_FXBUS(FXBUS_PCM_RIGHT));
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snd_emu10k1_init_stereo_control(&controls[nctl++], "Wave Playback Volume", gpr, 100);
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gpr += 2;
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/* Synth Playback */
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A_OP(icode, &ptr, iMAC0, A_GPR(stereo_mix+0), A_GPR(stereo_mix+0), A_GPR(gpr), A_FXBUS(FXBUS_MIDI_LEFT));
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A_OP(icode, &ptr, iMAC0, A_GPR(stereo_mix+1), A_GPR(stereo_mix+1), A_GPR(gpr+1), A_FXBUS(FXBUS_MIDI_RIGHT));
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A_OP(icode, &ptr, iMAC1, A_GPR(stereo_mix+0), A_GPR(stereo_mix+0), A_GPR(gpr), A_FXBUS(FXBUS_MIDI_LEFT));
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A_OP(icode, &ptr, iMAC1, A_GPR(stereo_mix+1), A_GPR(stereo_mix+1), A_GPR(gpr+1), A_FXBUS(FXBUS_MIDI_RIGHT));
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snd_emu10k1_init_stereo_control(&controls[nctl++], "Synth Playback Volume", gpr, 100);
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gpr += 2;
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/* Wave (PCM) Capture */
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A_OP(icode, &ptr, iMAC0, A_GPR(capture+0), A_C_00000000, A_GPR(gpr), A_FXBUS(FXBUS_PCM_LEFT));
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A_OP(icode, &ptr, iMAC0, A_GPR(capture+1), A_C_00000000, A_GPR(gpr+1), A_FXBUS(FXBUS_PCM_RIGHT));
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A_OP(icode, &ptr, iMAC1, A_GPR(capture+0), A_C_00000000, A_GPR(gpr), A_FXBUS(FXBUS_PCM_LEFT));
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A_OP(icode, &ptr, iMAC1, A_GPR(capture+1), A_C_00000000, A_GPR(gpr+1), A_FXBUS(FXBUS_PCM_RIGHT));
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snd_emu10k1_init_stereo_control(&controls[nctl++], "PCM Capture Volume", gpr, 0);
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gpr += 2;
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/* Synth Capture */
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A_OP(icode, &ptr, iMAC0, A_GPR(capture+0), A_GPR(capture+0), A_GPR(gpr), A_FXBUS(FXBUS_MIDI_LEFT));
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A_OP(icode, &ptr, iMAC0, A_GPR(capture+1), A_GPR(capture+1), A_GPR(gpr+1), A_FXBUS(FXBUS_MIDI_RIGHT));
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A_OP(icode, &ptr, iMAC1, A_GPR(capture+0), A_GPR(capture+0), A_GPR(gpr), A_FXBUS(FXBUS_MIDI_LEFT));
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A_OP(icode, &ptr, iMAC1, A_GPR(capture+1), A_GPR(capture+1), A_GPR(gpr+1), A_FXBUS(FXBUS_MIDI_RIGHT));
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snd_emu10k1_init_stereo_control(&controls[nctl++], "Synth Capture Volume", gpr, 0);
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gpr += 2;
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@ -1357,23 +1366,23 @@ static int _snd_emu10k1_audigy_init_efx(struct snd_emu10k1 *emu)
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* inputs
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*/
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#define A_ADD_VOLUME_IN(var,vol,input) \
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A_OP(icode, &ptr, iMAC0, A_GPR(var), A_GPR(var), A_GPR(vol), A_EXTIN(input))
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A_OP(icode, &ptr, iMAC1, A_GPR(var), A_GPR(var), A_GPR(vol), A_EXTIN(input))
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if (emu->card_capabilities->emu_model) {
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/* EMU1010 DSP 0 and DSP 1 Capture */
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// The 24 MSB hold the actual value. We implicitly discard the 16 LSB.
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if (emu->card_capabilities->ca0108_chip) {
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// For unclear reasons, the EMU32IN cannot be the Y operand!
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A_OP(icode, &ptr, iMAC0, A_GPR(capture+0), A_GPR(capture+0), A3_EMU32IN(0x0), A_GPR(gpr));
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A_OP(icode, &ptr, iMAC1, A_GPR(capture+0), A_GPR(capture+0), A3_EMU32IN(0x0), A_GPR(gpr));
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// A3_EMU32IN(0) is delayed by one sample, so all other A3_EMU32IN channels
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// need to be delayed as well; we use an auxiliary register for that.
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A_OP(icode, &ptr, iMAC0, A_GPR(capture+1), A_GPR(capture+1), A_GPR(gpr+2), A_GPR(gpr+1));
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A_OP(icode, &ptr, iMAC1, A_GPR(capture+1), A_GPR(capture+1), A_GPR(gpr+2), A_GPR(gpr+1));
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A_OP(icode, &ptr, iACC3, A_GPR(gpr+2), A3_EMU32IN(0x1), A_C_00000000, A_C_00000000);
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} else {
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A_OP(icode, &ptr, iMAC0, A_GPR(capture+0), A_GPR(capture+0), A_GPR(gpr), A_P16VIN(0x0));
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A_OP(icode, &ptr, iMAC1, A_GPR(capture+0), A_GPR(capture+0), A_P16VIN(0x0), A_GPR(gpr));
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// A_P16VIN(0) is delayed by one sample, so all other A_P16VIN channels
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// need to be delayed as well; we use an auxiliary register for that.
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A_OP(icode, &ptr, iMAC0, A_GPR(capture+1), A_GPR(capture+1), A_GPR(gpr+1), A_GPR(gpr+2));
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A_OP(icode, &ptr, iMAC1, A_GPR(capture+1), A_GPR(capture+1), A_GPR(gpr+2), A_GPR(gpr+1));
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A_OP(icode, &ptr, iACC3, A_GPR(gpr+2), A_P16VIN(0x1), A_C_00000000, A_C_00000000);
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}
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snd_emu10k1_init_stereo_control(&controls[nctl++], "EMU Capture Volume", gpr, 0);
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@ -1465,33 +1474,33 @@ A_OP(icode, &ptr, iMAC0, A_GPR(var), A_GPR(var), A_GPR(vol), A_EXTIN(input))
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}
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/* Stereo Mix Front Playback Volume */
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A_OP(icode, &ptr, iMAC0, A_GPR(playback), A_GPR(playback), A_GPR(gpr), A_GPR(stereo_mix));
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A_OP(icode, &ptr, iMAC0, A_GPR(playback+1), A_GPR(playback+1), A_GPR(gpr+1), A_GPR(stereo_mix+1));
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A_OP(icode, &ptr, iMAC1, A_GPR(playback), A_GPR(playback), A_GPR(gpr), A_GPR(stereo_mix));
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A_OP(icode, &ptr, iMAC1, A_GPR(playback+1), A_GPR(playback+1), A_GPR(gpr+1), A_GPR(stereo_mix+1));
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snd_emu10k1_init_stereo_control(&controls[nctl++], "Front Playback Volume", gpr, 100);
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gpr += 2;
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/* Stereo Mix Surround Playback */
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A_OP(icode, &ptr, iMAC0, A_GPR(playback+2), A_GPR(playback+2), A_GPR(gpr), A_GPR(stereo_mix));
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A_OP(icode, &ptr, iMAC0, A_GPR(playback+3), A_GPR(playback+3), A_GPR(gpr+1), A_GPR(stereo_mix+1));
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A_OP(icode, &ptr, iMAC1, A_GPR(playback+2), A_GPR(playback+2), A_GPR(gpr), A_GPR(stereo_mix));
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A_OP(icode, &ptr, iMAC1, A_GPR(playback+3), A_GPR(playback+3), A_GPR(gpr+1), A_GPR(stereo_mix+1));
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snd_emu10k1_init_stereo_control(&controls[nctl++], "Surround Playback Volume", gpr, 0);
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||||
gpr += 2;
|
||||
|
||||
/* Stereo Mix Center Playback */
|
||||
/* Center = sub = Left/2 + Right/2 */
|
||||
A_OP(icode, &ptr, iINTERP, A_GPR(tmp), A_GPR(stereo_mix), A_C_40000000, A_GPR(stereo_mix+1));
|
||||
A_OP(icode, &ptr, iMAC0, A_GPR(playback+4), A_GPR(playback+4), A_GPR(gpr), A_GPR(tmp));
|
||||
A_OP(icode, &ptr, iMAC1, A_GPR(playback+4), A_GPR(playback+4), A_GPR(gpr), A_GPR(tmp));
|
||||
snd_emu10k1_init_mono_control(&controls[nctl++], "Center Playback Volume", gpr, 0);
|
||||
gpr++;
|
||||
|
||||
/* Stereo Mix LFE Playback */
|
||||
A_OP(icode, &ptr, iMAC0, A_GPR(playback+5), A_GPR(playback+5), A_GPR(gpr), A_GPR(tmp));
|
||||
A_OP(icode, &ptr, iMAC1, A_GPR(playback+5), A_GPR(playback+5), A_GPR(gpr), A_GPR(tmp));
|
||||
snd_emu10k1_init_mono_control(&controls[nctl++], "LFE Playback Volume", gpr, 0);
|
||||
gpr++;
|
||||
|
||||
if (emu->card_capabilities->spk71) {
|
||||
/* Stereo Mix Side Playback */
|
||||
A_OP(icode, &ptr, iMAC0, A_GPR(playback+6), A_GPR(playback+6), A_GPR(gpr), A_GPR(stereo_mix));
|
||||
A_OP(icode, &ptr, iMAC0, A_GPR(playback+7), A_GPR(playback+7), A_GPR(gpr+1), A_GPR(stereo_mix+1));
|
||||
A_OP(icode, &ptr, iMAC1, A_GPR(playback+6), A_GPR(playback+6), A_GPR(gpr), A_GPR(stereo_mix));
|
||||
A_OP(icode, &ptr, iMAC1, A_GPR(playback+7), A_GPR(playback+7), A_GPR(gpr+1), A_GPR(stereo_mix+1));
|
||||
snd_emu10k1_init_stereo_control(&controls[nctl++], "Side Playback Volume", gpr, 0);
|
||||
gpr += 2;
|
||||
}
|
||||
@ -1579,7 +1588,7 @@ A_OP(icode, &ptr, iMAC0, A_GPR(var), A_GPR(var), A_GPR(vol), A_EXTIN(input))
|
||||
|
||||
/* Master volume (will be renamed later) */
|
||||
for (z = 0; z < 8; z++)
|
||||
A_OP(icode, &ptr, iMAC0, A_GPR(playback+z), A_C_00000000, A_GPR(gpr), A_GPR(playback+z));
|
||||
A_OP(icode, &ptr, iMAC1, A_GPR(playback+z), A_C_00000000, A_GPR(gpr), A_GPR(playback+z));
|
||||
snd_emu10k1_init_mono_control(&controls[nctl++], "Wave Master Playback Volume", gpr, 0);
|
||||
gpr++;
|
||||
|
||||
@ -1731,30 +1740,14 @@ __err_gpr:
|
||||
* initial DSP configuration for Emu10k1
|
||||
*/
|
||||
|
||||
/* when volume = max, then copy only to avoid volume modification */
|
||||
/* with iMAC0 (negative values) */
|
||||
/* Volumes are in the [-2^31, 0] range, zero being mute. */
|
||||
static void _volume(struct snd_emu10k1_fx8010_code *icode, u32 *ptr, u32 dst, u32 src, u32 vol)
|
||||
{
|
||||
OP(icode, ptr, iMAC0, dst, C_00000000, src, vol);
|
||||
OP(icode, ptr, iANDXOR, C_00000000, vol, C_ffffffff, C_7fffffff);
|
||||
OP(icode, ptr, iSKIP, GPR_COND, GPR_COND, CC_REG_NONZERO, C_00000001);
|
||||
OP(icode, ptr, iACC3, dst, src, C_00000000, C_00000000);
|
||||
OP(icode, ptr, iMAC1, dst, C_00000000, src, vol);
|
||||
}
|
||||
static void _volume_add(struct snd_emu10k1_fx8010_code *icode, u32 *ptr, u32 dst, u32 src, u32 vol)
|
||||
{
|
||||
OP(icode, ptr, iANDXOR, C_00000000, vol, C_ffffffff, C_7fffffff);
|
||||
OP(icode, ptr, iSKIP, GPR_COND, GPR_COND, CC_REG_NONZERO, C_00000002);
|
||||
OP(icode, ptr, iMACINT0, dst, dst, src, C_00000001);
|
||||
OP(icode, ptr, iSKIP, C_00000000, C_7fffffff, C_7fffffff, C_00000001);
|
||||
OP(icode, ptr, iMAC0, dst, dst, src, vol);
|
||||
}
|
||||
static void _volume_out(struct snd_emu10k1_fx8010_code *icode, u32 *ptr, u32 dst, u32 src, u32 vol)
|
||||
{
|
||||
OP(icode, ptr, iANDXOR, C_00000000, vol, C_ffffffff, C_7fffffff);
|
||||
OP(icode, ptr, iSKIP, GPR_COND, GPR_COND, CC_REG_NONZERO, C_00000002);
|
||||
OP(icode, ptr, iACC3, dst, src, C_00000000, C_00000000);
|
||||
OP(icode, ptr, iSKIP, C_00000000, C_7fffffff, C_7fffffff, C_00000001);
|
||||
OP(icode, ptr, iMAC0, dst, C_00000000, src, vol);
|
||||
OP(icode, ptr, iMAC1, dst, dst, src, vol);
|
||||
}
|
||||
|
||||
#define VOLUME(icode, ptr, dst, src, vol) \
|
||||
@ -1766,7 +1759,7 @@ static void _volume_out(struct snd_emu10k1_fx8010_code *icode, u32 *ptr, u32 dst
|
||||
#define VOLUME_ADDIN(icode, ptr, dst, src, vol) \
|
||||
_volume_add(icode, ptr, GPR(dst), EXTIN(src), GPR(vol))
|
||||
#define VOLUME_OUT(icode, ptr, dst, src, vol) \
|
||||
_volume_out(icode, ptr, EXTOUT(dst), GPR(src), GPR(vol))
|
||||
_volume(icode, ptr, EXTOUT(dst), GPR(src), GPR(vol))
|
||||
#define _SWITCH(icode, ptr, dst, src, sw) \
|
||||
OP((icode), ptr, iMACINT0, dst, C_00000000, src, sw);
|
||||
#define SWITCH(icode, ptr, dst, src, sw) \
|
||||
|
Loading…
Reference in New Issue
Block a user