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  /external/sonivox/arm-hybrid-22k/lib_src/
eas_wt_IPC_frame.h 74 EAS_I16 gainLeft; /* left channel gain */
75 EAS_I16 gainRight; /* right channel gain */
78 EAS_I16 gain; /* current voice gain */ member in struct:s_wt_config_tag
  /external/sonivox/arm-wt-22k/lib_src/
eas_pan.c 7 * Calculates left and right gain multipliers based on a pan value from -63 to +63
41 * Assign the left and right gain values corresponding to the given pan value.
55 * pGainLeft linear gain multiplier for left channel (15-bit fraction)
56 * pGainRight linear gain multiplier for left channel (15-bit fraction)
eas_pan.h 7 * Calculates left and right gain multipliers based on a pan value from -63 to +63
43 * Assign the left and right gain values corresponding to the given pan value.
57 * pGainLeft linear gain multiplier for left channel (15-bit fraction)
58 * pGainRight linear gain multiplier for left channel (15-bit fraction)
eas_wt_IPC_frame.h 74 EAS_I16 gainLeft; /* left channel gain */
75 EAS_I16 gainRight; /* right channel gain */
78 EAS_I16 gain; /* current voice gain */ member in struct:s_wt_config_tag
  /external/valgrind/main/helgrind/tests/
filter_stderr 32 -e "/^Use --history-level=approx or =none to gain increased speed, at$/d" \
  /external/webrtc/src/modules/audio_coding/codecs/isac/fix/source/
pitch_estimator.h 41 WebRtc_Word16 gain,
pitch_gain_tables.h 24 /********************* Pitch Filter Gain Coefficient Tables ************************/
pitch_filter.c 51 WebRtc_Word16 gain,
83 const WebRtc_Word16 Gain = 21299; // 1.3 in Q14
98 // Get old lag and gain value from memory.
108 gainsQ12[k], Gain, 14);
267 // Gain should be half the correlation.
  /external/webrtc/src/modules/audio_coding/codecs/isac/main/source/
lpc_analysis.h 38 double* gain,
lpc_gain_swb_tables.h 14 * This file declares tables used for entropy coding of LPC Gain
pitch_gain_tables.h 24 /********************* Pitch Filter Gain Coefficient Tables ************************/
  /frameworks/av/media/libeffects/lvm/lib/SpectrumAnalyzer/src/
LVPSA_QPD.h 52 /* Apply downsampling, post gain, quasi peak filtering and write the levels values */
LVPSA_Tables.c 128 * Gain table
130 const LVM_INT16 LVPSA_GainTable[] = { 364, /* -15dB gain */
145 2048, /* 0dB gain */
160 11576}; /* +15dB gain */
  /frameworks/av/media/libeffects/lvm/lib/StereoWidening/src/
LVCS_StereoEnhancer.h 56 LVM_UINT16 MidGain; /* Middle gain in mobile speaker mode */
  /frameworks/av/media/libstagefright/codecs/amrwbenc/inc/
acelp.h 373 * gain prototypes *
376 Word16 G_pitch( /* (o) Q14 : Gain of pitch lag saturated to 1.2 */
379 Word16 g_coeff[], /* : Correlations need for gain quantization. */
395 Word16 * gain_pit, /* (i/o)Q14:Pitch gain. */
396 Word32 * gain_cod, /* (o) Q16 :Code gain. */
409 Word16 * gain_pit, /* (o) Q14 :Pitch gain. */
410 Word32 * gain_cod, /* (o) Q16 :Code gain. */
479 Word16 gain, /* (i) Q14 : adaptive codebook gain */
485 Word16 gain_pit, /* (i) Q14 : gain of pitch *
    [all...]
  /prebuilts/gcc/linux-x86/host/i686-linux-glibc2.7-4.4.3/sysroot/usr/include/linux/
ixjuser.h 164 * The gain values range from 0 to 15 indicating +6dB to -24dB in 2dB
318 * table indexes are used in a cadence the frequency and gain variables will
469 * The input volume controls use gain with 32 levels from +12dB to -50dB
576 * The DAA Analog GAIN sets 2 parameters at one time, the receive gain (AGRR),
577 * and the transmit gain (AGX). OR together the components and pass them
583 #define AGRR00DB 0x00 /* Analog gain in receive direction 0dB */
584 #define AGRR3_5DB 0x10 /* Analog gain in receive direction 3.5dB */
585 #define AGRR06DB 0x30 /* Analog gain in receive direction 6dB */
587 #define AGX00DB 0x00 /* Analog gain in transmit direction 0dB *
    [all...]
  /prebuilts/gcc/linux-x86/host/i686-linux-glibc2.7-4.6/sysroot/usr/include/linux/
ixjuser.h 164 * The gain values range from 0 to 15 indicating +6dB to -24dB in 2dB
318 * table indexes are used in a cadence the frequency and gain variables will
469 * The input volume controls use gain with 32 levels from +12dB to -50dB
576 * The DAA Analog GAIN sets 2 parameters at one time, the receive gain (AGRR),
577 * and the transmit gain (AGX). OR together the components and pass them
583 #define AGRR00DB 0x00 /* Analog gain in receive direction 0dB */
584 #define AGRR3_5DB 0x10 /* Analog gain in receive direction 3.5dB */
585 #define AGRR06DB 0x30 /* Analog gain in receive direction 6dB */
587 #define AGX00DB 0x00 /* Analog gain in transmit direction 0dB *
    [all...]
  /prebuilts/gcc/linux-x86/host/x86_64-linux-glibc2.7-4.6/sysroot/usr/include/linux/
ixjuser.h 164 * The gain values range from 0 to 15 indicating +6dB to -24dB in 2dB
318 * table indexes are used in a cadence the frequency and gain variables will
469 * The input volume controls use gain with 32 levels from +12dB to -50dB
576 * The DAA Analog GAIN sets 2 parameters at one time, the receive gain (AGRR),
577 * and the transmit gain (AGX). OR together the components and pass them
583 #define AGRR00DB 0x00 /* Analog gain in receive direction 0dB */
584 #define AGRR3_5DB 0x10 /* Analog gain in receive direction 3.5dB */
585 #define AGRR06DB 0x30 /* Analog gain in receive direction 6dB */
587 #define AGX00DB 0x00 /* Analog gain in transmit direction 0dB *
    [all...]
  /system/media/audio_effects/include/audio_effects/
effect_agc.h 36 AGC_PARAM_COMP_GAIN, // gain in the compression range in millibel
effect_loudnessenhancer.h 37 LOUDNESS_ENHANCER_PARAM_TARGET_GAIN_MB = 0,// target gain expressed in mB
  /external/aac/libFDK/include/
mdct.h 167 * \brief add/multiply 2/N transform gain and MPEG4 part 3 defined output gain (see definition
169 * \param pGain pointer to the mantissa of a gain factor to be applied to IMDCT data.
170 * \param pExponent pointer to the exponent of a gain factor to be applied to IMDCT data.
171 * \param tl length of the IMDCT where the gain *pGain * (2 ^ *pExponent) will be applied to.
225 * \param gain factor to apply to output samples (if != 0).
240 FIXP_DBL gain );
  /frameworks/av/media/libstagefright/codecs/amrwbenc/src/
q_gain2.c 24 * An initial predicted gain, g_0, is first determined and the correction *
25 * factor alpha = gain / g_0 is quantized. *
26 * The pitch gain and the correction factor are vector quantized and the *
72 Word16 * gain_pit, /* (i/o)Q14: Pitch gain. */
73 Word32 * gain_cod, /* (o) Q16 : Code gain. */
100 size = size - 16; /* limit gain pitch to 1.0 */
112 j = j - 27; /* limit gain pitch to 1.0 */
313 *gain_pit = *p++; /* selected pitch gain in Q14 */
314 g_code = *p++; /* selected code gain in Q11 */
319 *gain_cod = L_tmp; /* gain of code in Q16 *
    [all...]
  /external/chromium_org/chrome/browser/extensions/api/audio/
audio_service_chromeos.cc 40 int gain) OVERRIDE;
148 int gain) {
163 } else if (device.is_input && gain != -1) {
164 cras_audio_handler_->SetVolumeGainPercentForDevice(device.id, gain);
193 info->gain = cras_audio_handler_->GetInputGainPercentForDevice(
  /external/chromium_org/third_party/opus/src/silk/float/
burg_modified_FLP.c 42 const silk_float minInvGain, /* I minimum inverse prediction gain */
120 /* Update inverse prediction gain */
123 /* Max prediction gain exceeded; set reflection coefficient such that max prediction gain is exactly hit */
145 /* Reached max prediction gain; set remaining coefficients to zero and exit loop */
  /external/speex/libspeex/
nb_celp.h 93 spx_word32_t *pi_gain; /**< Gain of LPC filter at theta=pi (fe/2) */
135 spx_word16_t last_ol_gain; /**< Open-loop gain for previous frame */
144 spx_word32_t *pi_gain; /**< Gain of LPC filter at theta=pi (fe/2) */
153 spx_word16_t last_pitch_gain; /**< Pitch gain of last correctly decoded frame */
154 spx_word16_t pitch_gain_buf[3]; /**< Pitch gain of last decoded frames */

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1 2 3 4 5 6 78 91011>>