Merge "Allocate 16-byte aligned diff buffer" into experimental
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6fdd4d26de
@ -69,7 +69,7 @@ void vp9_ht_dequant_idct_add_c(TX_TYPE tx_type, int16_t *input,
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uint8_t *pred, uint8_t *dest,
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int pitch, int stride, int eob) {
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int i;
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int16_t output[16];
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DECLARE_ALIGNED_ARRAY(16, int16_t, output, 16);
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for (i = 0; i < 16; i++)
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input[i] *= dq[i];
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@ -83,7 +83,7 @@ void vp9_ht_dequant_idct_add_8x8_c(TX_TYPE tx_type, int16_t *input,
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const int16_t *dq,
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uint8_t *pred, uint8_t *dest,
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int pitch, int stride, int eob) {
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int16_t output[64];
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DECLARE_ALIGNED_ARRAY(16, int16_t, output, 64);
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if (eob == 0) {
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// All 0 DCT coefficients
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@ -104,7 +104,7 @@ void vp9_ht_dequant_idct_add_8x8_c(TX_TYPE tx_type, int16_t *input,
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void vp9_dequant_idct_add_c(int16_t *input, const int16_t *dq, uint8_t *pred,
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uint8_t *dest, int pitch, int stride, int eob) {
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int i;
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int16_t output[16];
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DECLARE_ALIGNED_ARRAY(16, int16_t, output, 16);
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if (eob > 1) {
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for (i = 0; i < 16; i++)
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@ -125,7 +125,7 @@ void vp9_dequant_idct_add_c(int16_t *input, const int16_t *dq, uint8_t *pred,
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void vp9_dequant_dc_idct_add_c(int16_t *input, const int16_t *dq, uint8_t *pred,
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uint8_t *dest, int pitch, int stride, int dc) {
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int i;
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int16_t output[16];
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DECLARE_ALIGNED_ARRAY(16, int16_t, output, 16);
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input[0] = dc;
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@ -142,7 +142,7 @@ void vp9_dequant_idct_add_lossless_c(int16_t *input, const int16_t *dq,
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uint8_t *pred, uint8_t *dest,
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int pitch, int stride, int eob) {
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int i;
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int16_t output[16];
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DECLARE_ALIGNED_ARRAY(16, int16_t, output, 16);
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if (eob > 1) {
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for (i = 0; i < 16; i++)
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@ -164,7 +164,7 @@ void vp9_dequant_dc_idct_add_lossless_c(int16_t *input, const int16_t *dq,
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uint8_t *dest,
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int pitch, int stride, int dc) {
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int i;
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int16_t output[16];
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DECLARE_ALIGNED_ARRAY(16, int16_t, output, 16);
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input[0] = dc;
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@ -179,8 +179,7 @@ void vp9_dequant_dc_idct_add_lossless_c(int16_t *input, const int16_t *dq,
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void vp9_dequant_idct_add_8x8_c(int16_t *input, const int16_t *dq,
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uint8_t *pred, uint8_t *dest, int pitch,
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int stride, int eob) {
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int16_t output[64];
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DECLARE_ALIGNED_ARRAY(16, int16_t, output, 64);
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// If dc is 1, then input[0] is the reconstructed value, do not need
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// dequantization. Also, when dc is 1, dc is counted in eobs, namely eobs >=1.
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@ -241,7 +240,7 @@ void vp9_ht_dequant_idct_add_16x16_c(TX_TYPE tx_type, int16_t *input,
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const int16_t *dq, uint8_t *pred,
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uint8_t *dest, int pitch, int stride,
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int eob) {
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int16_t output[256];
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DECLARE_ALIGNED_ARRAY(16, int16_t, output, 256);
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if (eob == 0) {
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// All 0 DCT coefficients
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@ -270,7 +269,7 @@ void vp9_ht_dequant_idct_add_16x16_c(TX_TYPE tx_type, int16_t *input,
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void vp9_dequant_idct_add_16x16_c(int16_t *input, const int16_t *dq,
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uint8_t *pred, uint8_t *dest, int pitch,
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int stride, int eob) {
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int16_t output[256];
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DECLARE_ALIGNED_ARRAY(16, int16_t, output, 256);
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/* The calculation can be simplified if there are not many non-zero dct
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* coefficients. Use eobs to separate different cases. */
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@ -330,7 +329,7 @@ void vp9_dequant_idct_add_16x16_c(int16_t *input, const int16_t *dq,
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void vp9_dequant_idct_add_32x32_c(int16_t *input, const int16_t *dq,
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uint8_t *pred, uint8_t *dest, int pitch,
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int stride, int eob) {
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int16_t output[1024];
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DECLARE_ALIGNED_ARRAY(16, int16_t, output, 1024);
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if (eob) {
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input[0] = input[0] * dq[0] / 2;
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@ -67,14 +67,14 @@ void vp9_add_residual_8x8_sse2(const int16_t *diff, const uint8_t *pred,
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const __m128i zero = _mm_setzero_si128();
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// Diff data
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const __m128i d0 = _mm_loadu_si128((const __m128i *)(diff + 0 * width));
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const __m128i d1 = _mm_loadu_si128((const __m128i *)(diff + 1 * width));
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const __m128i d2 = _mm_loadu_si128((const __m128i *)(diff + 2 * width));
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const __m128i d3 = _mm_loadu_si128((const __m128i *)(diff + 3 * width));
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const __m128i d4 = _mm_loadu_si128((const __m128i *)(diff + 4 * width));
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const __m128i d5 = _mm_loadu_si128((const __m128i *)(diff + 5 * width));
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const __m128i d6 = _mm_loadu_si128((const __m128i *)(diff + 6 * width));
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const __m128i d7 = _mm_loadu_si128((const __m128i *)(diff + 7 * width));
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const __m128i d0 = _mm_load_si128((const __m128i *)(diff + 0 * width));
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const __m128i d1 = _mm_load_si128((const __m128i *)(diff + 1 * width));
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const __m128i d2 = _mm_load_si128((const __m128i *)(diff + 2 * width));
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const __m128i d3 = _mm_load_si128((const __m128i *)(diff + 3 * width));
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const __m128i d4 = _mm_load_si128((const __m128i *)(diff + 4 * width));
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const __m128i d5 = _mm_load_si128((const __m128i *)(diff + 5 * width));
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const __m128i d6 = _mm_load_si128((const __m128i *)(diff + 6 * width));
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const __m128i d7 = _mm_load_si128((const __m128i *)(diff + 7 * width));
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// Prediction data.
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__m128i p0 = _mm_loadl_epi64((const __m128i *)(pred + 0 * pitch));
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@ -137,14 +137,14 @@ void vp9_add_residual_16x16_sse2(const int16_t *diff, const uint8_t *pred,
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__m128i p0, p1, p2, p3, p4, p5, p6, p7;
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do {
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d0 = _mm_loadu_si128((const __m128i *)(diff + 0 * width));
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d1 = _mm_loadu_si128((const __m128i *)(diff + 0 * width + 8));
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d2 = _mm_loadu_si128((const __m128i *)(diff + 1 * width));
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d3 = _mm_loadu_si128((const __m128i *)(diff + 1 * width + 8));
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d4 = _mm_loadu_si128((const __m128i *)(diff + 2 * width));
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d5 = _mm_loadu_si128((const __m128i *)(diff + 2 * width + 8));
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d6 = _mm_loadu_si128((const __m128i *)(diff + 3 * width));
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d7 = _mm_loadu_si128((const __m128i *)(diff + 3 * width + 8));
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d0 = _mm_load_si128((const __m128i *)(diff + 0 * width));
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d1 = _mm_load_si128((const __m128i *)(diff + 0 * width + 8));
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d2 = _mm_load_si128((const __m128i *)(diff + 1 * width));
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d3 = _mm_load_si128((const __m128i *)(diff + 1 * width + 8));
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d4 = _mm_load_si128((const __m128i *)(diff + 2 * width));
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d5 = _mm_load_si128((const __m128i *)(diff + 2 * width + 8));
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d6 = _mm_load_si128((const __m128i *)(diff + 3 * width));
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d7 = _mm_load_si128((const __m128i *)(diff + 3 * width + 8));
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// Prediction data.
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p1 = _mm_load_si128((const __m128i *)(pred + 0 * pitch));
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@ -197,14 +197,14 @@ void vp9_add_residual_32x32_sse2(const int16_t *diff, const uint8_t *pred,
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__m128i p0, p1, p2, p3, p4, p5, p6, p7;
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do {
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d0 = _mm_loadu_si128((const __m128i *)(diff + 0 * width));
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d1 = _mm_loadu_si128((const __m128i *)(diff + 0 * width + 8));
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d2 = _mm_loadu_si128((const __m128i *)(diff + 0 * width + 16));
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d3 = _mm_loadu_si128((const __m128i *)(diff + 0 * width + 24));
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d4 = _mm_loadu_si128((const __m128i *)(diff + 1 * width));
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d5 = _mm_loadu_si128((const __m128i *)(diff + 1 * width + 8));
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d6 = _mm_loadu_si128((const __m128i *)(diff + 1 * width + 16));
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d7 = _mm_loadu_si128((const __m128i *)(diff + 1 * width + 24));
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d0 = _mm_load_si128((const __m128i *)(diff + 0 * width));
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d1 = _mm_load_si128((const __m128i *)(diff + 0 * width + 8));
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d2 = _mm_load_si128((const __m128i *)(diff + 0 * width + 16));
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d3 = _mm_load_si128((const __m128i *)(diff + 0 * width + 24));
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d4 = _mm_load_si128((const __m128i *)(diff + 1 * width));
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d5 = _mm_load_si128((const __m128i *)(diff + 1 * width + 8));
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d6 = _mm_load_si128((const __m128i *)(diff + 1 * width + 16));
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d7 = _mm_load_si128((const __m128i *)(diff + 1 * width + 24));
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// Prediction data.
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p1 = _mm_load_si128((const __m128i *)(pred + 0 * pitch));
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