Merge "Fix overflow issue in 32x32 idct NEON intrinsics"
This commit is contained in:
commit
d9a9a4ffea
@ -612,50 +612,50 @@ static void idct32_16_neon(const int16_t *const input, uint8_t *const output,
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s7[24] = add_multiply_shift_and_narrow_s16(s6[23], s6[24], cospi_16_64);
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// final stage
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out[0] = vaddq_s16(s7[0], s6[31]);
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out[1] = vaddq_s16(s7[1], s6[30]);
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out[2] = vaddq_s16(s7[2], s6[29]);
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out[3] = vaddq_s16(s7[3], s6[28]);
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out[4] = vaddq_s16(s7[4], s7[27]);
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out[5] = vaddq_s16(s7[5], s7[26]);
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out[6] = vaddq_s16(s7[6], s7[25]);
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out[7] = vaddq_s16(s7[7], s7[24]);
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out[0] = final_add(s7[0], s6[31]);
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out[1] = final_add(s7[1], s6[30]);
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out[2] = final_add(s7[2], s6[29]);
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out[3] = final_add(s7[3], s6[28]);
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out[4] = final_add(s7[4], s7[27]);
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out[5] = final_add(s7[5], s7[26]);
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out[6] = final_add(s7[6], s7[25]);
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out[7] = final_add(s7[7], s7[24]);
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add_and_store_u8_s16(out[0], out[1], out[2], out[3], out[4], out[5], out[6],
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out[7], output, stride);
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out[0] = vaddq_s16(s7[8], s7[23]);
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out[1] = vaddq_s16(s7[9], s7[22]);
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out[2] = vaddq_s16(s7[10], s7[21]);
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out[3] = vaddq_s16(s7[11], s7[20]);
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out[4] = vaddq_s16(s7[12], s6[19]);
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out[5] = vaddq_s16(s7[13], s6[18]);
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out[6] = vaddq_s16(s7[14], s6[17]);
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out[7] = vaddq_s16(s7[15], s6[16]);
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out[0] = final_add(s7[8], s7[23]);
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out[1] = final_add(s7[9], s7[22]);
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out[2] = final_add(s7[10], s7[21]);
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out[3] = final_add(s7[11], s7[20]);
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out[4] = final_add(s7[12], s6[19]);
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out[5] = final_add(s7[13], s6[18]);
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out[6] = final_add(s7[14], s6[17]);
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out[7] = final_add(s7[15], s6[16]);
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add_and_store_u8_s16(out[0], out[1], out[2], out[3], out[4], out[5], out[6],
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out[7], output + (8 * stride), stride);
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out[0] = vsubq_s16(s7[15], s6[16]);
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out[1] = vsubq_s16(s7[14], s6[17]);
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out[2] = vsubq_s16(s7[13], s6[18]);
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out[3] = vsubq_s16(s7[12], s6[19]);
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out[4] = vsubq_s16(s7[11], s7[20]);
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out[5] = vsubq_s16(s7[10], s7[21]);
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out[6] = vsubq_s16(s7[9], s7[22]);
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out[7] = vsubq_s16(s7[8], s7[23]);
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out[0] = final_sub(s7[15], s6[16]);
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out[1] = final_sub(s7[14], s6[17]);
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out[2] = final_sub(s7[13], s6[18]);
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out[3] = final_sub(s7[12], s6[19]);
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out[4] = final_sub(s7[11], s7[20]);
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out[5] = final_sub(s7[10], s7[21]);
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out[6] = final_sub(s7[9], s7[22]);
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out[7] = final_sub(s7[8], s7[23]);
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add_and_store_u8_s16(out[0], out[1], out[2], out[3], out[4], out[5], out[6],
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out[7], output + (16 * stride), stride);
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out[0] = vsubq_s16(s7[7], s7[24]);
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out[1] = vsubq_s16(s7[6], s7[25]);
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out[2] = vsubq_s16(s7[5], s7[26]);
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out[3] = vsubq_s16(s7[4], s7[27]);
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out[4] = vsubq_s16(s7[3], s6[28]);
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out[5] = vsubq_s16(s7[2], s6[29]);
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out[6] = vsubq_s16(s7[1], s6[30]);
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out[7] = vsubq_s16(s7[0], s6[31]);
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out[0] = final_sub(s7[7], s7[24]);
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out[1] = final_sub(s7[6], s7[25]);
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out[2] = final_sub(s7[5], s7[26]);
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out[3] = final_sub(s7[4], s7[27]);
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out[4] = final_sub(s7[3], s6[28]);
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out[5] = final_sub(s7[2], s6[29]);
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out[6] = final_sub(s7[1], s6[30]);
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out[7] = final_sub(s7[0], s6[31]);
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add_and_store_u8_s16(out[0], out[1], out[2], out[3], out[4], out[5], out[6],
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out[7], output + (24 * stride), stride);
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@ -451,50 +451,50 @@ static void idct32_8_neon(const int16_t *input, uint8_t *output, int stride) {
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s1[24] = add_multiply_shift_and_narrow_s16(s1[23], s3[24], cospi_16_64);
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// final stage
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out[0] = vaddq_s16(s1[0], s2[31]);
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out[1] = vaddq_s16(s1[1], s2[30]);
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out[2] = vaddq_s16(s1[2], s2[29]);
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out[3] = vaddq_s16(s1[3], s2[28]);
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out[4] = vaddq_s16(s1[4], s1[27]);
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out[5] = vaddq_s16(s1[5], s1[26]);
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out[6] = vaddq_s16(s1[6], s1[25]);
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out[7] = vaddq_s16(s1[7], s1[24]);
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out[0] = final_add(s1[0], s2[31]);
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out[1] = final_add(s1[1], s2[30]);
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out[2] = final_add(s1[2], s2[29]);
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out[3] = final_add(s1[3], s2[28]);
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out[4] = final_add(s1[4], s1[27]);
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out[5] = final_add(s1[5], s1[26]);
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out[6] = final_add(s1[6], s1[25]);
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out[7] = final_add(s1[7], s1[24]);
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add_and_store_u8_s16(out[0], out[1], out[2], out[3], out[4], out[5], out[6],
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out[7], output, stride);
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out[0] = vaddq_s16(s1[8], s2[23]);
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out[1] = vaddq_s16(s1[9], s2[22]);
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out[2] = vaddq_s16(s1[10], s1[21]);
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out[3] = vaddq_s16(s1[11], s1[20]);
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out[4] = vaddq_s16(s1[12], s2[19]);
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out[5] = vaddq_s16(s1[13], s2[18]);
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out[6] = vaddq_s16(s1[14], s1[17]);
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out[7] = vaddq_s16(s1[15], s1[16]);
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out[0] = final_add(s1[8], s2[23]);
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out[1] = final_add(s1[9], s2[22]);
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out[2] = final_add(s1[10], s1[21]);
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out[3] = final_add(s1[11], s1[20]);
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out[4] = final_add(s1[12], s2[19]);
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out[5] = final_add(s1[13], s2[18]);
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out[6] = final_add(s1[14], s1[17]);
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out[7] = final_add(s1[15], s1[16]);
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add_and_store_u8_s16(out[0], out[1], out[2], out[3], out[4], out[5], out[6],
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out[7], output + (8 * stride), stride);
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out[0] = vsubq_s16(s1[15], s1[16]);
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out[1] = vsubq_s16(s1[14], s1[17]);
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out[2] = vsubq_s16(s1[13], s2[18]);
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out[3] = vsubq_s16(s1[12], s2[19]);
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out[4] = vsubq_s16(s1[11], s1[20]);
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out[5] = vsubq_s16(s1[10], s1[21]);
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out[6] = vsubq_s16(s1[9], s2[22]);
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out[7] = vsubq_s16(s1[8], s2[23]);
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out[0] = final_sub(s1[15], s1[16]);
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out[1] = final_sub(s1[14], s1[17]);
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out[2] = final_sub(s1[13], s2[18]);
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out[3] = final_sub(s1[12], s2[19]);
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out[4] = final_sub(s1[11], s1[20]);
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out[5] = final_sub(s1[10], s1[21]);
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out[6] = final_sub(s1[9], s2[22]);
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out[7] = final_sub(s1[8], s2[23]);
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add_and_store_u8_s16(out[0], out[1], out[2], out[3], out[4], out[5], out[6],
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out[7], output + (16 * stride), stride);
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out[0] = vsubq_s16(s1[7], s1[24]);
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out[1] = vsubq_s16(s1[6], s1[25]);
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out[2] = vsubq_s16(s1[5], s1[26]);
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out[3] = vsubq_s16(s1[4], s1[27]);
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out[4] = vsubq_s16(s1[3], s2[28]);
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out[5] = vsubq_s16(s1[2], s2[29]);
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out[6] = vsubq_s16(s1[1], s2[30]);
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out[7] = vsubq_s16(s1[0], s2[31]);
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out[0] = final_sub(s1[7], s1[24]);
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out[1] = final_sub(s1[6], s1[25]);
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out[2] = final_sub(s1[5], s1[26]);
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out[3] = final_sub(s1[4], s1[27]);
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out[4] = final_sub(s1[3], s2[28]);
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out[5] = final_sub(s1[2], s2[29]);
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out[6] = final_sub(s1[1], s2[30]);
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out[7] = final_sub(s1[0], s2[31]);
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add_and_store_u8_s16(out[0], out[1], out[2], out[3], out[4], out[5], out[6],
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out[7], output + (24 * stride), stride);
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@ -339,10 +339,10 @@ static INLINE void idct32_bands_end_2nd_pass(const int16_t *const out,
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dest3 -= str2;
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load_from_output(out, 30, 31, &q[0], &q[1]);
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q[4] = vaddq_s16(q[2], q[1]);
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q[5] = vaddq_s16(q[3], q[0]);
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q[6] = vsubq_s16(q[3], q[0]);
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q[7] = vsubq_s16(q[2], q[1]);
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q[4] = final_add(q[2], q[1]);
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q[5] = final_add(q[3], q[0]);
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q[6] = final_sub(q[3], q[0]);
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q[7] = final_sub(q[2], q[1]);
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store_combine_extreme_results(dest0, dest1, stride, q[4], q[5], q[6], q[7]);
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dest0 += str2;
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dest1 -= str2;
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@ -354,19 +354,19 @@ static INLINE void idct32_bands_end_2nd_pass(const int16_t *const out,
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q[5] = vsubq_s16(q[10], q[1]);
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load_from_output(out, 18, 19, &q[0], &q[1]);
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q[8] = vaddq_s16(q[4], q[1]);
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q[9] = vaddq_s16(q[5], q[0]);
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q[6] = vsubq_s16(q[5], q[0]);
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q[7] = vsubq_s16(q[4], q[1]);
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q[8] = final_add(q[4], q[1]);
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q[9] = final_add(q[5], q[0]);
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q[6] = final_sub(q[5], q[0]);
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q[7] = final_sub(q[4], q[1]);
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store_combine_center_results(dest2, dest3, stride, q[6], q[7], q[8], q[9]);
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dest2 += str2;
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dest3 -= str2;
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load_from_output(out, 28, 29, &q[0], &q[1]);
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q[4] = vaddq_s16(q[2], q[1]);
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q[5] = vaddq_s16(q[3], q[0]);
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q[6] = vsubq_s16(q[3], q[0]);
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q[7] = vsubq_s16(q[2], q[1]);
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q[4] = final_add(q[2], q[1]);
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q[5] = final_add(q[3], q[0]);
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q[6] = final_sub(q[3], q[0]);
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q[7] = final_sub(q[2], q[1]);
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store_combine_extreme_results(dest0, dest1, stride, q[4], q[5], q[6], q[7]);
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dest0 += str2;
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dest1 -= str2;
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@ -378,19 +378,19 @@ static INLINE void idct32_bands_end_2nd_pass(const int16_t *const out,
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q[5] = vsubq_s16(q[12], q[1]);
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load_from_output(out, 20, 21, &q[0], &q[1]);
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q[8] = vaddq_s16(q[4], q[1]);
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q[9] = vaddq_s16(q[5], q[0]);
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q[6] = vsubq_s16(q[5], q[0]);
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q[7] = vsubq_s16(q[4], q[1]);
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q[8] = final_add(q[4], q[1]);
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q[9] = final_add(q[5], q[0]);
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q[6] = final_sub(q[5], q[0]);
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q[7] = final_sub(q[4], q[1]);
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store_combine_center_results(dest2, dest3, stride, q[6], q[7], q[8], q[9]);
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dest2 += str2;
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dest3 -= str2;
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load_from_output(out, 26, 27, &q[0], &q[1]);
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q[4] = vaddq_s16(q[2], q[1]);
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q[5] = vaddq_s16(q[3], q[0]);
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q[6] = vsubq_s16(q[3], q[0]);
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q[7] = vsubq_s16(q[2], q[1]);
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q[4] = final_add(q[2], q[1]);
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q[5] = final_add(q[3], q[0]);
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q[6] = final_sub(q[3], q[0]);
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q[7] = final_sub(q[2], q[1]);
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store_combine_extreme_results(dest0, dest1, stride, q[4], q[5], q[6], q[7]);
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dest0 += str2;
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dest1 -= str2;
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@ -402,17 +402,17 @@ static INLINE void idct32_bands_end_2nd_pass(const int16_t *const out,
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q[5] = vsubq_s16(q[14], q[1]);
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load_from_output(out, 22, 23, &q[0], &q[1]);
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q[8] = vaddq_s16(q[4], q[1]);
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q[9] = vaddq_s16(q[5], q[0]);
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q[6] = vsubq_s16(q[5], q[0]);
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q[7] = vsubq_s16(q[4], q[1]);
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q[8] = final_add(q[4], q[1]);
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q[9] = final_add(q[5], q[0]);
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q[6] = final_sub(q[5], q[0]);
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q[7] = final_sub(q[4], q[1]);
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store_combine_center_results(dest2, dest3, stride, q[6], q[7], q[8], q[9]);
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load_from_output(out, 24, 25, &q[0], &q[1]);
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q[4] = vaddq_s16(q[2], q[1]);
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q[5] = vaddq_s16(q[3], q[0]);
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q[6] = vsubq_s16(q[3], q[0]);
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q[7] = vsubq_s16(q[2], q[1]);
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q[4] = final_add(q[2], q[1]);
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q[5] = final_add(q[3], q[0]);
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q[6] = final_sub(q[3], q[0]);
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q[7] = final_sub(q[2], q[1]);
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store_combine_extreme_results(dest0, dest1, stride, q[4], q[5], q[6], q[7]);
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}
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@ -656,10 +656,10 @@ void vpx_idct32x32_1024_add_neon(const tran_low_t *input, uint8_t *dest,
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q[4] = vsubq_s16(q[9], q[0]);
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q[5] = vsubq_s16(q[8], q[1]);
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load_from_output(out, 16, 17, &q[0], &q[1]);
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q[8] = vaddq_s16(q[4], q[1]);
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q[9] = vaddq_s16(q[5], q[0]);
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q[6] = vsubq_s16(q[5], q[0]);
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q[7] = vsubq_s16(q[4], q[1]);
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q[8] = final_add(q[4], q[1]);
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q[9] = final_add(q[5], q[0]);
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q[6] = final_sub(q[5], q[0]);
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q[7] = final_sub(q[4], q[1]);
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if (idct32_pass_loop == 0) {
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idct32_bands_end_1st_pass(out, q);
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@ -92,6 +92,24 @@ static INLINE void store_s16q_to_tran_low(tran_low_t *buf, const int16x8_t a) {
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#endif
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}
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//------------------------------------------------------------------------------
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// Use saturating add/sub to avoid overflow in 2nd pass in high bit-depth
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static INLINE int16x8_t final_add(const int16x8_t a, const int16x8_t b) {
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#if CONFIG_VP9_HIGHBITDEPTH
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return vqaddq_s16(a, b);
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#else
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return vaddq_s16(a, b);
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#endif
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}
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static INLINE int16x8_t final_sub(const int16x8_t a, const int16x8_t b) {
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#if CONFIG_VP9_HIGHBITDEPTH
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return vqsubq_s16(a, b);
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#else
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return vsubq_s16(a, b);
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#endif
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}
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//------------------------------------------------------------------------------
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// Multiply a by a_const. Saturate, shift and narrow by DCT_CONST_BITS.
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