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[PATCH] pmac: Improve sleep code of tumbler driver
This patch improves the behaviour of the "tumbler/snapper" driver used on newer PowerMacs during sleep. It properly set the HW mutes to shut down amplifiers and does an analog shutdown of the codec. That might improve power consumption during sleep on a number of machines. Signed-off-by: Benjamin Herrenschmidt <benh@kernel.crashing.org> Signed-off-by: Andrew Morton <akpm@osdl.org> Signed-off-by: Linus Torvalds <torvalds@osdl.org>
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@ -94,12 +94,17 @@ typedef struct pmac_tumbler_t {
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pmac_gpio_t hp_detect;
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int headphone_irq;
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unsigned int master_vol[2];
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unsigned int save_master_switch[2];
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unsigned int master_switch[2];
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unsigned int mono_vol[VOL_IDX_LAST_MONO];
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unsigned int mix_vol[VOL_IDX_LAST_MIX][2]; /* stereo volumes for tas3004 */
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int drc_range;
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int drc_enable;
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int capture_source;
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int anded_reset;
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int auto_mute_notify;
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int reset_on_sleep;
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u8 acs;
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} pmac_tumbler_t;
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@ -654,7 +659,8 @@ static int snapper_put_mix(snd_kcontrol_t *kcontrol, snd_ctl_elem_value_t *ucont
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/*
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* mute switches
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* mute switches. FIXME: Turn that into software mute when both outputs are muted
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* to avoid codec reset on ibook M7
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*/
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enum { TUMBLER_MUTE_HP, TUMBLER_MUTE_AMP };
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@ -696,8 +702,11 @@ static int snapper_set_capture_source(pmac_tumbler_t *mix)
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{
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if (! mix->i2c.client)
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return -ENODEV;
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return i2c_smbus_write_byte_data(mix->i2c.client, TAS_REG_ACS,
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mix->capture_source ? 2 : 0);
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if (mix->capture_source)
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mix->acs = mix->acs |= 2;
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else
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mix->acs &= ~2;
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return i2c_smbus_write_byte_data(mix->i2c.client, TAS_REG_ACS, mix->acs);
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}
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static int snapper_info_capture_source(snd_kcontrol_t *kcontrol, snd_ctl_elem_info_t *uinfo)
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@ -855,8 +864,7 @@ static void check_mute(pmac_t *chip, pmac_gpio_t *gp, int val, int do_notify, sn
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static struct work_struct device_change;
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static void
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device_change_handler(void *self)
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static void device_change_handler(void *self)
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{
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pmac_t *chip = (pmac_t*) self;
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pmac_tumbler_t *mix;
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@ -865,6 +873,33 @@ device_change_handler(void *self)
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return;
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mix = chip->mixer_data;
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snd_assert(mix, return);
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if (tumbler_detect_headphone(chip)) {
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/* mute speaker */
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check_mute(chip, &mix->hp_mute, 0, mix->auto_mute_notify,
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chip->master_sw_ctl);
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if (mix->anded_reset)
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big_mdelay(10);
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check_mute(chip, &mix->amp_mute, 1, mix->auto_mute_notify,
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chip->speaker_sw_ctl);
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mix->drc_enable = 0;
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} else {
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/* unmute speaker */
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check_mute(chip, &mix->amp_mute, 0, mix->auto_mute_notify,
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chip->speaker_sw_ctl);
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if (mix->anded_reset)
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big_mdelay(10);
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check_mute(chip, &mix->hp_mute, 1, mix->auto_mute_notify,
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chip->master_sw_ctl);
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mix->drc_enable = 1;
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}
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if (mix->auto_mute_notify) {
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snd_ctl_notify(chip->card, SNDRV_CTL_EVENT_MASK_VALUE,
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&chip->hp_detect_ctl->id);
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snd_ctl_notify(chip->card, SNDRV_CTL_EVENT_MASK_VALUE,
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&chip->drc_sw_ctl->id);
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}
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/* first set the DRC so the speaker do not explode -ReneR */
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if (chip->model == PMAC_TUMBLER)
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@ -879,31 +914,11 @@ device_change_handler(void *self)
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static void tumbler_update_automute(pmac_t *chip, int do_notify)
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{
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if (chip->auto_mute) {
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pmac_tumbler_t *mix = chip->mixer_data;
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pmac_tumbler_t *mix;
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mix = chip->mixer_data;
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snd_assert(mix, return);
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if (tumbler_detect_headphone(chip)) {
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/* mute speaker */
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check_mute(chip, &mix->amp_mute, 1, do_notify, chip->speaker_sw_ctl);
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check_mute(chip, &mix->hp_mute, 0, do_notify, chip->master_sw_ctl);
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mix->drc_enable = 0;
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} else {
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/* unmute speaker */
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check_mute(chip, &mix->amp_mute, 0, do_notify, chip->speaker_sw_ctl);
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check_mute(chip, &mix->hp_mute, 1, do_notify, chip->master_sw_ctl);
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mix->drc_enable = 1;
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}
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if (do_notify) {
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snd_ctl_notify(chip->card, SNDRV_CTL_EVENT_MASK_VALUE,
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&chip->hp_detect_ctl->id);
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snd_ctl_notify(chip->card, SNDRV_CTL_EVENT_MASK_VALUE,
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&chip->drc_sw_ctl->id);
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}
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/* finally we need to schedule an update of the mixer values
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(master and DRC are enough for now) -ReneR */
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mix->auto_mute_notify = do_notify;
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schedule_work(&device_change);
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}
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}
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#endif /* PMAC_SUPPORT_AUTOMUTE */
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@ -1002,15 +1017,53 @@ static void tumbler_reset_audio(pmac_t *chip)
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{
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pmac_tumbler_t *mix = chip->mixer_data;
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write_audio_gpio(&mix->audio_reset, 0);
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big_mdelay(200);
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write_audio_gpio(&mix->audio_reset, 1);
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big_mdelay(100);
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write_audio_gpio(&mix->audio_reset, 0);
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big_mdelay(100);
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if (mix->anded_reset) {
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write_audio_gpio(&mix->hp_mute, 0);
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write_audio_gpio(&mix->amp_mute, 0);
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big_mdelay(200);
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write_audio_gpio(&mix->hp_mute, 1);
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write_audio_gpio(&mix->amp_mute, 1);
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big_mdelay(100);
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write_audio_gpio(&mix->hp_mute, 0);
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write_audio_gpio(&mix->amp_mute, 0);
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big_mdelay(100);
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} else {
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write_audio_gpio(&mix->audio_reset, 0);
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big_mdelay(200);
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write_audio_gpio(&mix->audio_reset, 1);
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big_mdelay(100);
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write_audio_gpio(&mix->audio_reset, 0);
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big_mdelay(100);
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}
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}
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#ifdef CONFIG_PMAC_PBOOK
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/* suspend mixer */
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static void tumbler_suspend(pmac_t *chip)
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{
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pmac_tumbler_t *mix = chip->mixer_data;
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if (mix->headphone_irq >= 0)
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disable_irq(mix->headphone_irq);
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mix->save_master_switch[0] = mix->master_switch[0];
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mix->save_master_switch[1] = mix->master_switch[1];
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mix->master_switch[0] = mix->master_switch[1] = 0;
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tumbler_set_master_volume(mix);
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if (!mix->anded_reset) {
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write_audio_gpio(&mix->amp_mute, 1);
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write_audio_gpio(&mix->hp_mute, 1);
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}
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if (chip->model == PMAC_SNAPPER) {
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mix->acs |= 1;
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i2c_smbus_write_byte_data(mix->i2c.client, TAS_REG_ACS, mix->acs);
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}
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if (mix->anded_reset) {
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write_audio_gpio(&mix->amp_mute, 1);
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write_audio_gpio(&mix->hp_mute, 1);
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} else
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write_audio_gpio(&mix->audio_reset, 1);
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}
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/* resume mixer */
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static void tumbler_resume(pmac_t *chip)
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{
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@ -1018,6 +1071,9 @@ static void tumbler_resume(pmac_t *chip)
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snd_assert(mix, return);
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mix->acs &= ~1;
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mix->master_switch[0] = mix->save_master_switch[0];
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mix->master_switch[1] = mix->save_master_switch[1];
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tumbler_reset_audio(chip);
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if (mix->i2c.client && mix->i2c.init_client) {
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if (mix->i2c.init_client(&mix->i2c) < 0)
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@ -1041,6 +1097,8 @@ static void tumbler_resume(pmac_t *chip)
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tumbler_set_master_volume(mix);
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if (chip->update_automute)
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chip->update_automute(chip, 0);
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if (mix->headphone_irq >= 0)
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enable_irq(mix->headphone_irq);
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}
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#endif
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@ -1103,7 +1161,7 @@ int __init snd_pmac_tumbler_init(pmac_t *chip)
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int i, err;
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pmac_tumbler_t *mix;
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u32 *paddr;
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struct device_node *tas_node;
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struct device_node *tas_node, *np;
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char *chipname;
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#ifdef CONFIG_KMOD
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@ -1119,7 +1177,18 @@ int __init snd_pmac_tumbler_init(pmac_t *chip)
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chip->mixer_data = mix;
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chip->mixer_free = tumbler_cleanup;
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mix->anded_reset = 0;
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mix->reset_on_sleep = 1;
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for (np = chip->node->child; np; np = np->sibling) {
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if (!strcmp(np->name, "sound")) {
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if (get_property(np, "has-anded-reset", NULL))
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mix->anded_reset = 1;
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if (get_property(np, "layout-id", NULL))
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mix->reset_on_sleep = 0;
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break;
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}
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}
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if ((err = tumbler_init(chip)) < 0)
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return err;
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@ -1178,6 +1247,7 @@ int __init snd_pmac_tumbler_init(pmac_t *chip)
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return err;
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#ifdef CONFIG_PMAC_PBOOK
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chip->suspend = tumbler_suspend;
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chip->resume = tumbler_resume;
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#endif
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