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MIPS: MIPS32r1: Optimization of function WebPRescalerExportRow. [2/6]
Change-Id: I420e646deefac5df9a8dcec3b02da8dff02b1167
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@ -92,14 +92,66 @@ void WebPRescalerImportRow(WebPRescaler* const wrk,
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uint8_t* WebPRescalerExportRow(WebPRescaler* const wrk) {
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uint8_t* WebPRescalerExportRow(WebPRescaler* const wrk) {
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if (wrk->y_accum <= 0) {
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if (wrk->y_accum <= 0) {
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int x_out;
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int x_out = 0;
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uint8_t* const dst = wrk->dst;
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uint8_t* const dst = wrk->dst;
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int32_t* const irow = wrk->irow;
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int32_t* const irow = wrk->irow;
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const int32_t* const frow = wrk->frow;
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const int32_t* const frow = wrk->frow;
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const int yscale = wrk->fy_scale * (-wrk->y_accum);
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const int yscale = wrk->fy_scale * (-wrk->y_accum);
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const int x_out_max = wrk->dst_width * wrk->num_channels;
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const int x_out_max = wrk->dst_width * wrk->num_channels;
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for (x_out = 0; x_out < x_out_max; ++x_out) {
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#if defined(__mips__)
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// if wrk->fxy_scale can fit into 32 bits use optimized code,
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// otherwise use C code
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if ((wrk->fxy_scale >> 32) == 0) {
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int temp0, temp1, temp3, temp4, temp5, temp6, temp7, loop_end;
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const int temp2 = (int)(wrk->fxy_scale);
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const int temp8 = x_out_max << 2;
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uint8_t* dst_t = (uint8_t*)dst;
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int32_t* irow_t = (int32_t*)irow;
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const int32_t* frow_t = (const int32_t*)frow;
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__asm__ volatile(
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"addiu %[temp6], $zero, -256 \n\t"
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"addiu %[temp7], $zero, 255 \n\t"
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"li %[temp3], 0x10000 \n\t"
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"li %[temp4], 0x8000 \n\t"
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"addu %[loop_end], %[frow_t], %[temp8] \n\t"
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"1: \n\t"
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"lw %[temp0], 0(%[frow_t]) \n\t"
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"mult %[temp3], %[temp4] \n\t"
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"addiu %[frow_t], %[frow_t], 4 \n\t"
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"sll %[temp0], %[temp0], 2 \n\t"
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"madd %[temp0], %[yscale] \n\t"
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"mfhi %[temp1] \n\t"
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"lw %[temp0], 0(%[irow_t]) \n\t"
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"addiu %[dst_t], %[dst_t], 1 \n\t"
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"addiu %[irow_t], %[irow_t], 4 \n\t"
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"subu %[temp0], %[temp0], %[temp1] \n\t"
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"mult %[temp3], %[temp4] \n\t"
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"sll %[temp0], %[temp0], 2 \n\t"
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"madd %[temp0], %[temp2] \n\t"
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"mfhi %[temp5] \n\t"
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"sw %[temp1], -4(%[irow_t]) \n\t"
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"and %[temp0], %[temp5], %[temp6] \n\t"
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"slti %[temp1], %[temp5], 0 \n\t"
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"beqz %[temp0], 2f \n\t"
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"xor %[temp5], %[temp5], %[temp5] \n\t"
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"movz %[temp5], %[temp7], %[temp1] \n\t"
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"2: \n\t"
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"sb %[temp5], -1(%[dst_t]) \n\t"
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"bne %[frow_t], %[loop_end], 1b \n\t"
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: [temp0]"=&r"(temp0), [temp1]"=&r"(temp1), [temp3]"=&r"(temp3),
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[temp4]"=&r"(temp4), [temp5]"=&r"(temp5), [temp6]"=&r"(temp6),
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[temp7]"=&r"(temp7), [frow_t]"+r"(frow_t), [irow_t]"+r"(irow_t),
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[dst_t]"+r"(dst_t), [loop_end]"=&r"(loop_end)
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: [temp2]"r"(temp2), [yscale]"r"(yscale), [temp8]"r"(temp8)
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: "memory", "hi", "lo"
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);
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x_out = x_out_max;
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}
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#endif // __mips__
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for (; x_out < x_out_max; ++x_out) {
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const int frac = (int)MULT_FIX(frow[x_out], yscale);
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const int frac = (int)MULT_FIX(frow[x_out], yscale);
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const int v = (int)MULT_FIX(irow[x_out] - frac, wrk->fxy_scale);
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const int v = (int)MULT_FIX(irow[x_out] - frac, wrk->fxy_scale);
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dst[x_out] = (!(v & ~0xff)) ? v : (v < 0) ? 0 : 255;
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dst[x_out] = (!(v & ~0xff)) ? v : (v < 0) ? 0 : 255;
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