141 lines
3.7 KiB
C
141 lines
3.7 KiB
C
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#ifndef _SEC_AUDIO_SYSFS_H
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#define _SEC_AUDIO_SYSFS_H
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/*
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* 1 AMP project - mono(AMP_0)
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* 2 AMP project - L(AMP_0), R(AMP_1)
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* 3 AMP project - L(AMP_0), R(AMP_1), receiver(AMP_2)
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* 4 AMP project - FL(AMP_1), FR(AMP_2), RL(AMP_3), RR(AMP_4)
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*/
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enum amp_id {
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AMP_0,
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AMP_1,
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AMP_2,
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AMP_3,
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AMP_ID_MAX,
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};
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struct sec_audio_sysfs_data {
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struct class *audio_class;
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struct device *jack_dev;
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struct device *codec_dev;
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struct device *amp_dev;
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struct device *adsp_dev;
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bool no_earjack;
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int (*get_jack_state)(void);
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int (*get_key_state)(void);
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int (*set_jack_state)(int);
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int (*get_mic_adc)(void);
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int (*get_codec_id_state)(void);
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int (*set_force_enable_antenna)(int);
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int (*get_antenna_state)(void);
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/* bigdata */
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unsigned int num_amp;
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int (*get_amp_temperature_max)(enum amp_id);
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int (*get_amp_temperature_keep_max)(enum amp_id);
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int (*get_amp_temperature_overcount)(enum amp_id);
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int (*get_amp_excursion_max)(enum amp_id);
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int (*get_amp_excursion_overcount)(enum amp_id);
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int (*get_amp_curr_temperature)(enum amp_id);
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int (*set_amp_surface_temperature)(enum amp_id, int);
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};
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#if IS_ENABLED(CONFIG_SND_SOC_SAMSUNG_AUDIO)
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int audio_register_jack_select_cb(int (*set_jack) (int));
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int audio_register_jack_state_cb(int (*jack_status) (void));
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int audio_register_key_state_cb(int (*key_state) (void));
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int audio_register_mic_adc_cb(int (*mic_adc) (void));
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int audio_register_codec_id_state_cb(int (*codec_id_state) (void));
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int audio_register_force_enable_antenna_cb(int (*force_enable_antenna) (int));
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int audio_register_antenna_state_cb(int (*antenna_state) (void));
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/* bigdata */
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int audio_register_temperature_max_cb(int (*temperature_max) (enum amp_id));
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int audio_register_temperature_keep_max_cb(int (*temperature_keep_max) (enum amp_id));
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int audio_register_temperature_overcount_cb(int (*temperature_overcount) (enum amp_id));
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int audio_register_excursion_max_cb(int (*excursion_max) (enum amp_id));
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int audio_register_excursion_overcount_cb(int (*excursion_overcount) (enum amp_id));
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int audio_register_curr_temperature_cb(int (*curr_temperature) (enum amp_id));
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int audio_register_surface_temperature_cb(int (*surface_temperature) (enum amp_id, int temperature));
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void send_adsp_silent_reset_ev(void);
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#else
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inline int audio_register_jack_select_cb(int (*set_jack) (int))
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{
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return -EACCES;
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}
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inline int audio_register_jack_state_cb(int (*jack_status) (void))
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{
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return -EACCES;
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}
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inline int audio_register_key_state_cb(int (*key_state) (void))
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{
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return -EACCES;
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}
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inline int audio_register_mic_adc_cb(int (*mic_adc) (void))
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{
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return -EACCES;
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}
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inline int audio_register_codec_id_state_cb(int (*codec_id_state) (void))
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{
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return -EACCES;
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}
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inline int audio_register_force_enable_antenna_cb(int (*force_enable_antenna) (int))
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{
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return -EACCES;
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}
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inline int audio_register_antenna_state_cb(int (*antenna_state) (void))
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{
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return -EACCES;
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}
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inline int audio_register_temperature_max_cb(int (*temperature_max) (enum amp_id))
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{
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return -EACCES;
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}
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inline int audio_register_temperature_keep_max_cb(int (*temperature_keep_max) (enum amp_id))
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{
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return -EACCES;
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}
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inline int audio_register_temperature_overcount_cb(int (*temperature_overcount) (enum amp_id))
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{
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return -EACCES;
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}
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inline int audio_register_excursion_max_cb(int (*excursion_max) (enum amp_id))
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{
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return -EACCES;
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}
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inline int audio_register_excursion_overcount_cb(int (*excursion_overcount) (enum amp_id))
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{
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return -EACCES;
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}
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inline int audio_register_curr_temperature_cb(int (*curr_temperature) (enum amp_id))
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{
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return -EACCES;
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}
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inline int audio_register_surface_temperature_cb(int (*surface_temperature) (enum amp_id, int temperature))
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{
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return -EACCES;
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}
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inline void send_adsp_silent_reset_ev(void)
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{
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}
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#endif
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#endif /* _SEC_AUDIO_SYSFS_H */
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