Index: webrtc/modules/audio_processing/aec/aec_core_mips.c |
diff --git a/webrtc/modules/audio_processing/aec/aec_core_mips.c b/webrtc/modules/audio_processing/aec/aec_core_mips.c |
index 035a4b76af300852817eb6de5f8fba86e93e76ab..4fbc6137e2d19d318c5517c457e484cd617ce25f 100644 |
--- a/webrtc/modules/audio_processing/aec/aec_core_mips.c |
+++ b/webrtc/modules/audio_processing/aec/aec_core_mips.c |
@@ -44,7 +44,7 @@ void WebRtcAec_ComfortNoise_mips(AecCore* aec, |
float randTemp, randTemp2, randTemp3, randTemp4; |
int32_t tmp1s, tmp2s, tmp3s, tmp4s; |
- for (i = 0; i < PART_LEN; i+=4) { |
+ for (i = 0; i < PART_LEN; i += 4) { |
__asm __volatile ( |
".set push \n\t" |
".set noreorder \n\t" |
@@ -75,14 +75,14 @@ void WebRtcAec_ComfortNoise_mips(AecCore* aec, |
: "memory" |
); |
- u[i+1][0] = cosf(randTemp); |
- u[i+1][1] = sinf(randTemp); |
- u[i+2][0] = cosf(randTemp2); |
- u[i+2][1] = sinf(randTemp2); |
- u[i+3][0] = cosf(randTemp3); |
- u[i+3][1] = sinf(randTemp3); |
- u[i+4][0] = cosf(randTemp4); |
- u[i+4][1] = sinf(randTemp4); |
+ u[i + 1][0] = cosf(randTemp); |
+ u[i + 1][1] = sinf(randTemp); |
+ u[i + 2][0] = cosf(randTemp2); |
+ u[i + 2][1] = sinf(randTemp2); |
+ u[i + 3][0] = cosf(randTemp3); |
+ u[i + 3][1] = sinf(randTemp3); |
+ u[i + 4][0] = cosf(randTemp4); |
+ u[i + 4][1] = sinf(randTemp4); |
} |
// Reject LF noise |
@@ -92,7 +92,7 @@ void WebRtcAec_ComfortNoise_mips(AecCore* aec, |
u[0][0] = 0; |
u[0][1] = 0; |
- for (i = 1; i < PART_LEN1; i+=4) { |
+ for (i = 1; i < PART_LEN1; i += 4) { |
__asm __volatile ( |
".set push \n\t" |
".set noreorder \n\t" |
@@ -264,7 +264,7 @@ void WebRtcAec_ComfortNoise_mips(AecCore* aec, |
lambda -= PART_LEN; |
tmp = sqrtf(WEBRTC_SPL_MAX(1 - lambda[PART_LEN] * lambda[PART_LEN], 0)); |
- //tmp = 1 - lambda[i]; |
+ // tmp = 1 - lambda[i]; |
efw[0][PART_LEN] += tmp * u[PART_LEN][0]; |
efw[1][PART_LEN] += tmp * u[PART_LEN][1]; |
@@ -333,8 +333,8 @@ void WebRtcAec_FilterFar_mips( |
int xPos = (i + x_fft_buf_block_pos) * PART_LEN1; |
int pos = i * PART_LEN1; |
// Check for wrap |
- if (i + x_fft_buf_block_pos >= num_partitions) { |
- xPos -= num_partitions * (PART_LEN1); |
+ if (i + x_fft_buf_block_pos >= num_partitions) { |
+ xPos -= num_partitions * (PART_LEN1); |
} |
float* yf0 = y_fft[0]; |
float* yf1 = y_fft[1]; |
@@ -448,7 +448,7 @@ void WebRtcAec_FilterAdaptation_mips( |
float fft[PART_LEN2]; |
int i; |
for (i = 0; i < num_partitions; i++) { |
- int xPos = (i + x_fft_buf_block_pos)*(PART_LEN1); |
+ int xPos = (i + x_fft_buf_block_pos) * (PART_LEN1); |
int pos; |
// Check for wrap |
if (i + x_fft_buf_block_pos >= num_partitions) { |
@@ -462,7 +462,7 @@ void WebRtcAec_FilterAdaptation_mips( |
float* bIm = e_fft[1]; |
float* fft_tmp; |
- float f0, f1, f2, f3, f4, f5, f6 ,f7, f8, f9, f10, f11, f12; |
+ float f0, f1, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12; |
int len = PART_LEN >> 1; |
__asm __volatile ( |