5b558592f5
1. vp8_short_idct4x4llm_mmi 2. vp8_short_inv_walsh4x4_mmi 3. vp8_dc_only_idct_add_mmi Change-Id: I616923681e79d78607a4988608fc39df77b093f4
329 lines
17 KiB
C
329 lines
17 KiB
C
/*
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* Copyright (c) 2017 The WebM project authors. All Rights Reserved.
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*
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* Use of this source code is governed by a BSD-style license
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* that can be found in the LICENSE file in the root of the source
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* tree. An additional intellectual property rights grant can be found
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* in the file PATENTS. All contributing project authors may
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* be found in the AUTHORS file in the root of the source tree.
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*/
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#include "./vp8_rtcd.h"
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#include "vpx_ports/mem.h"
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#include "vpx_ports/asmdefs_mmi.h"
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#define TRANSPOSE_4H \
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"xor %[ftmp0], %[ftmp0], %[ftmp0] \n\t" \
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MMI_LI(%[tmp0], 0x93) \
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"mtc1 %[tmp0], %[ftmp10] \n\t" \
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"punpcklhw %[ftmp5], %[ftmp1], %[ftmp0] \n\t" \
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"punpcklhw %[ftmp9], %[ftmp2], %[ftmp0] \n\t" \
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"pshufh %[ftmp9], %[ftmp9], %[ftmp10] \n\t" \
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"or %[ftmp5], %[ftmp5], %[ftmp9] \n\t" \
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"punpckhhw %[ftmp6], %[ftmp1], %[ftmp0] \n\t" \
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"punpckhhw %[ftmp9], %[ftmp2], %[ftmp0] \n\t" \
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"pshufh %[ftmp9], %[ftmp9], %[ftmp10] \n\t" \
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"or %[ftmp6], %[ftmp6], %[ftmp9] \n\t" \
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"punpcklhw %[ftmp7], %[ftmp3], %[ftmp0] \n\t" \
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"punpcklhw %[ftmp9], %[ftmp4], %[ftmp0] \n\t" \
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"pshufh %[ftmp9], %[ftmp9], %[ftmp10] \n\t" \
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"or %[ftmp7], %[ftmp7], %[ftmp9] \n\t" \
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"punpckhhw %[ftmp8], %[ftmp3], %[ftmp0] \n\t" \
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"punpckhhw %[ftmp9], %[ftmp4], %[ftmp0] \n\t" \
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"pshufh %[ftmp9], %[ftmp9], %[ftmp10] \n\t" \
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"or %[ftmp8], %[ftmp8], %[ftmp9] \n\t" \
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"punpcklwd %[ftmp1], %[ftmp5], %[ftmp7] \n\t" \
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"punpckhwd %[ftmp2], %[ftmp5], %[ftmp7] \n\t" \
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"punpcklwd %[ftmp3], %[ftmp6], %[ftmp8] \n\t" \
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"punpckhwd %[ftmp4], %[ftmp6], %[ftmp8] \n\t"
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void vp8_short_idct4x4llm_mmi(int16_t *input, unsigned char *pred_ptr,
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int pred_stride, unsigned char *dst_ptr,
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int dst_stride) {
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double ftmp[12];
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uint32_t tmp[0];
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DECLARE_ALIGNED(8, const uint64_t, ff_ph_04) = { 0x0004000400040004ULL };
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DECLARE_ALIGNED(8, const uint64_t, ff_ph_4e7b) = { 0x4e7b4e7b4e7b4e7bULL };
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DECLARE_ALIGNED(8, const uint64_t, ff_ph_22a3) = { 0x22a322a322a322a3ULL };
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__asm__ volatile (
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MMI_LI(%[tmp0], 0x02)
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"mtc1 %[tmp0], %[ftmp11] \n\t"
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"xor %[ftmp0], %[ftmp0], %[ftmp0] \n\t"
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"gsldlc1 %[ftmp1], 0x07(%[ip]) \n\t"
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"gsldrc1 %[ftmp1], 0x00(%[ip]) \n\t"
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"gsldlc1 %[ftmp2], 0x0f(%[ip]) \n\t"
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"gsldrc1 %[ftmp2], 0x08(%[ip]) \n\t"
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"gsldlc1 %[ftmp3], 0x17(%[ip]) \n\t"
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"gsldrc1 %[ftmp3], 0x10(%[ip]) \n\t"
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"gsldlc1 %[ftmp4], 0x1f(%[ip]) \n\t"
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"gsldrc1 %[ftmp4], 0x18(%[ip]) \n\t"
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// ip[0...3] + ip[8...11]
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"paddh %[ftmp5], %[ftmp1], %[ftmp3] \n\t"
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// ip[0...3] - ip[8...11]
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"psubh %[ftmp6], %[ftmp1], %[ftmp3] \n\t"
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// (ip[12...15] * sinpi8sqrt2) >> 16
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"psllh %[ftmp9], %[ftmp4], %[ftmp11] \n\t"
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"pmulhh %[ftmp7], %[ftmp9], %[ff_ph_22a3] \n\t"
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// (ip[ 4... 7] * sinpi8sqrt2) >> 16
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"psllh %[ftmp9], %[ftmp2], %[ftmp11] \n\t"
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"pmulhh %[ftmp8], %[ftmp9], %[ff_ph_22a3] \n\t"
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// ip[ 4... 7] + ((ip[ 4... 7] * cospi8sqrt2minus1) >> 16)
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"pmulhh %[ftmp9], %[ftmp2], %[ff_ph_4e7b] \n\t"
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"paddh %[ftmp9], %[ftmp9], %[ftmp2] \n\t"
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// ip[12...15] + ((ip[12...15] * cospi8sqrt2minus1) >> 16)
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"pmulhh %[ftmp10], %[ftmp4], %[ff_ph_4e7b] \n\t"
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"paddh %[ftmp10], %[ftmp10], %[ftmp4] \n\t"
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"paddh %[ftmp1], %[ftmp5], %[ftmp7] \n\t"
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"paddh %[ftmp1], %[ftmp1], %[ftmp9] \n\t"
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"paddh %[ftmp2], %[ftmp6], %[ftmp8] \n\t"
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"psubh %[ftmp2], %[ftmp2], %[ftmp10] \n\t"
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"psubh %[ftmp3], %[ftmp6], %[ftmp8] \n\t"
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"paddh %[ftmp3], %[ftmp3], %[ftmp10] \n\t"
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"psubh %[ftmp4], %[ftmp5], %[ftmp7] \n\t"
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"psubh %[ftmp4], %[ftmp4], %[ftmp9] \n\t"
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TRANSPOSE_4H
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// a
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"paddh %[ftmp5], %[ftmp1], %[ftmp3] \n\t"
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// b
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"psubh %[ftmp6], %[ftmp1], %[ftmp3] \n\t"
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// c
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"psllh %[ftmp9], %[ftmp2], %[ftmp11] \n\t"
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"pmulhh %[ftmp9], %[ftmp9], %[ff_ph_22a3] \n\t"
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"psubh %[ftmp7], %[ftmp9], %[ftmp4] \n\t"
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"pmulhh %[ftmp10], %[ftmp4], %[ff_ph_4e7b] \n\t"
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"psubh %[ftmp7], %[ftmp7], %[ftmp10] \n\t"
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// d
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"psllh %[ftmp9], %[ftmp4], %[ftmp11] \n\t"
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"pmulhh %[ftmp9], %[ftmp9], %[ff_ph_22a3] \n\t"
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"paddh %[ftmp8], %[ftmp9], %[ftmp2] \n\t"
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"pmulhh %[ftmp10], %[ftmp2], %[ff_ph_4e7b] \n\t"
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"paddh %[ftmp8], %[ftmp8], %[ftmp10] \n\t"
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MMI_LI(%[tmp0], 0x03)
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"mtc1 %[tmp0], %[ftmp11] \n\t"
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// a + d
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"paddh %[ftmp1], %[ftmp5], %[ftmp8] \n\t"
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"paddh %[ftmp1], %[ftmp1], %[ff_ph_04] \n\t"
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"psrah %[ftmp1], %[ftmp1], %[ftmp11] \n\t"
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// b + c
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"paddh %[ftmp2], %[ftmp6], %[ftmp7] \n\t"
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"paddh %[ftmp2], %[ftmp2], %[ff_ph_04] \n\t"
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"psrah %[ftmp2], %[ftmp2], %[ftmp11] \n\t"
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// b - c
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"psubh %[ftmp3], %[ftmp6], %[ftmp7] \n\t"
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"paddh %[ftmp3], %[ftmp3], %[ff_ph_04] \n\t"
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"psrah %[ftmp3], %[ftmp3], %[ftmp11] \n\t"
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// a - d
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"psubh %[ftmp4], %[ftmp5], %[ftmp8] \n\t"
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"paddh %[ftmp4], %[ftmp4], %[ff_ph_04] \n\t"
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"psrah %[ftmp4], %[ftmp4], %[ftmp11] \n\t"
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TRANSPOSE_4H
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#if _MIPS_SIM == _ABIO32
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"ulw %[tmp0], 0x00(%[pred_prt]) \n\t"
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"mtc1 %[tmp0], %[ftmp5] \n\t"
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#else
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"gslwlc1 %[ftmp5], 0x03(%[pred_ptr]) \n\t"
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"gslwrc1 %[ftmp5], 0x00(%[pred_ptr]) \n\t"
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#endif
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"punpcklbh %[ftmp5], %[ftmp5], %[ftmp0] \n\t"
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"paddh %[ftmp1], %[ftmp1], %[ftmp5] \n\t"
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"packushb %[ftmp1], %[ftmp1], %[ftmp0] \n\t"
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"gsswlc1 %[ftmp1], 0x03(%[dst_ptr]) \n\t"
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"gsswrc1 %[ftmp1], 0x00(%[dst_ptr]) \n\t"
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MMI_ADDU(%[pred_ptr], %[pred_ptr], %[pred_stride])
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MMI_ADDU(%[dst_ptr], %[dst_ptr], %[dst_stride])
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#if _MIPS_SIM == _ABIO32
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"ulw %[tmp0], 0x00(%[pred_prt]) \n\t"
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"mtc1 %[tmp0], %[ftmp6] \n\t"
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#else
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"gslwlc1 %[ftmp6], 0x03(%[pred_ptr]) \n\t"
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"gslwrc1 %[ftmp6], 0x00(%[pred_ptr]) \n\t"
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#endif
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"punpcklbh %[ftmp6], %[ftmp6], %[ftmp0] \n\t"
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"paddh %[ftmp2], %[ftmp2], %[ftmp6] \n\t"
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"packushb %[ftmp2], %[ftmp2], %[ftmp0] \n\t"
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"gsswlc1 %[ftmp2], 0x03(%[dst_ptr]) \n\t"
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"gsswrc1 %[ftmp2], 0x00(%[dst_ptr]) \n\t"
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MMI_ADDU(%[pred_ptr], %[pred_ptr], %[pred_stride])
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MMI_ADDU(%[dst_ptr], %[dst_ptr], %[dst_stride])
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#if _MIPS_SIM == _ABIO32
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"ulw %[tmp0], 0x00(%[pred_prt]) \n\t"
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"mtc1 %[tmp0], %[ftmp7] \n\t"
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#else
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"gslwlc1 %[ftmp7], 0x03(%[pred_ptr]) \n\t"
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"gslwrc1 %[ftmp7], 0x00(%[pred_ptr]) \n\t"
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#endif
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"punpcklbh %[ftmp7], %[ftmp7], %[ftmp0] \n\t"
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"paddh %[ftmp3], %[ftmp3], %[ftmp7] \n\t"
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"packushb %[ftmp3], %[ftmp3], %[ftmp0] \n\t"
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"gsswlc1 %[ftmp3], 0x03(%[dst_ptr]) \n\t"
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"gsswrc1 %[ftmp3], 0x00(%[dst_ptr]) \n\t"
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MMI_ADDU(%[pred_ptr], %[pred_ptr], %[pred_stride])
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MMI_ADDU(%[dst_ptr], %[dst_ptr], %[dst_stride])
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#if _MIPS_SIM == _ABIO32
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"ulw %[tmp0], 0x00(%[pred_prt]) \n\t"
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"mtc1 %[tmp0], %[ftmp8] \n\t"
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#else
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"gslwlc1 %[ftmp8], 0x03(%[pred_ptr]) \n\t"
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"gslwrc1 %[ftmp8], 0x00(%[pred_ptr]) \n\t"
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#endif
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"punpcklbh %[ftmp8], %[ftmp8], %[ftmp0] \n\t"
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"paddh %[ftmp4], %[ftmp4], %[ftmp8] \n\t"
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"packushb %[ftmp4], %[ftmp4], %[ftmp0] \n\t"
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"gsswlc1 %[ftmp4], 0x03(%[dst_ptr]) \n\t"
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"gsswrc1 %[ftmp4], 0x00(%[dst_ptr]) \n\t"
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: [ftmp0]"=&f"(ftmp[0]), [ftmp1]"=&f"(ftmp[1]), [ftmp2]"=&f"(ftmp[2]),
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[ftmp3]"=&f"(ftmp[3]), [ftmp4]"=&f"(ftmp[4]), [ftmp5]"=&f"(ftmp[5]),
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[ftmp6]"=&f"(ftmp[6]), [ftmp7]"=&f"(ftmp[7]), [ftmp8]"=&f"(ftmp[8]),
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[ftmp9]"=&f"(ftmp[9]), [ftmp10]"=&f"(ftmp[10]),
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[ftmp11]"=&f"(ftmp[11]), [tmp0]"=&r"(tmp[0]),
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[pred_ptr]"+&r"(pred_ptr), [dst_ptr]"+&r"(dst_ptr)
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: [ip]"r"(input), [ff_ph_22a3]"f"(ff_ph_22a3),
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[ff_ph_4e7b]"f"(ff_ph_4e7b), [ff_ph_04]"f"(ff_ph_04),
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[pred_stride]"r"((mips_reg)pred_stride),
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[dst_stride]"r"((mips_reg)dst_stride)
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: "memory"
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);
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}
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void vp8_dc_only_idct_add_mmi(int16_t input_dc, unsigned char *pred_ptr,
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int pred_stride, unsigned char *dst_ptr,
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int dst_stride) {
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int a1 = ((input_dc + 4) >> 3);
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double ftmp[5];
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int low32;
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__asm__ volatile (
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"xor %[ftmp0], %[ftmp0], %[ftmp0] \n\t"
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"pshufh %[a1], %[a1], %[ftmp0] \n\t"
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"ulw %[low32], 0x00(%[pred_ptr]) \n\t"
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"mtc1 %[low32], %[ftmp1] \n\t"
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"punpcklbh %[ftmp2], %[ftmp1], %[ftmp0] \n\t"
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"paddsh %[ftmp2], %[ftmp2], %[a1] \n\t"
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"packushb %[ftmp1], %[ftmp2], %[ftmp0] \n\t"
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"gsswlc1 %[ftmp1], 0x03(%[dst_ptr]) \n\t"
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"gsswrc1 %[ftmp1], 0x00(%[dst_ptr]) \n\t"
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MMI_ADDU(%[pred_ptr], %[pred_ptr], %[pred_stride])
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MMI_ADDU(%[dst_ptr], %[dst_ptr], %[dst_stride])
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"ulw %[low32], 0x00(%[pred_ptr]) \n\t"
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"mtc1 %[low32], %[ftmp1] \n\t"
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"punpcklbh %[ftmp2], %[ftmp1], %[ftmp0] \n\t"
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"paddsh %[ftmp2], %[ftmp2], %[a1] \n\t"
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"packushb %[ftmp1], %[ftmp2], %[ftmp0] \n\t"
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"gsswlc1 %[ftmp1], 0x03(%[dst_ptr]) \n\t"
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"gsswrc1 %[ftmp1], 0x00(%[dst_ptr]) \n\t"
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MMI_ADDU(%[pred_ptr], %[pred_ptr], %[pred_stride])
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MMI_ADDU(%[dst_ptr], %[dst_ptr], %[dst_stride])
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"ulw %[low32], 0x00(%[pred_ptr]) \n\t"
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"mtc1 %[low32], %[ftmp1] \n\t"
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"punpcklbh %[ftmp2], %[ftmp1], %[ftmp0] \n\t"
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"paddsh %[ftmp2], %[ftmp2], %[a1] \n\t"
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"packushb %[ftmp1], %[ftmp2], %[ftmp0] \n\t"
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"gsswlc1 %[ftmp1], 0x03(%[dst_ptr]) \n\t"
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"gsswrc1 %[ftmp1], 0x00(%[dst_ptr]) \n\t"
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MMI_ADDU(%[pred_ptr], %[pred_ptr], %[pred_stride])
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MMI_ADDU(%[dst_ptr], %[dst_ptr], %[dst_stride])
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"ulw %[low32], 0x00(%[pred_ptr]) \n\t"
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"mtc1 %[low32], %[ftmp1] \n\t"
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"punpcklbh %[ftmp2], %[ftmp1], %[ftmp0] \n\t"
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"paddsh %[ftmp2], %[ftmp2], %[a1] \n\t"
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"packushb %[ftmp1], %[ftmp2], %[ftmp0] \n\t"
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"gsswlc1 %[ftmp1], 0x03(%[dst_ptr]) \n\t"
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"gsswrc1 %[ftmp1], 0x00(%[dst_ptr]) \n\t"
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: [ftmp0]"=&f"(ftmp[0]), [ftmp1]"=&f"(ftmp[1]), [ftmp2]"=&f"(ftmp[2]),
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[ftmp3]"=&f"(ftmp[3]), [ftmp4]"=&f"(ftmp[4]), [low32]"=&r"(low32),
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[dst_ptr]"+&r"(dst_ptr), [pred_ptr]"+&r"(pred_ptr)
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: [dst_stride]"r"((mips_reg)dst_stride),
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[pred_stride]"r"((mips_reg)pred_stride), [a1]"f"(a1)
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: "memory"
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);
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}
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void vp8_short_inv_walsh4x4_mmi(int16_t *input, int16_t *mb_dqcoeff) {
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int i;
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int16_t output[16];
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double ftmp[12];
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uint32_t tmp[1];
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DECLARE_ALIGNED(8, const uint64_t, ff_ph_03) = { 0x0003000300030003ULL };
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__asm__ volatile (
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MMI_LI(%[tmp0], 0x03)
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"xor %[ftmp0], %[ftmp0], %[ftmp0] \n\t"
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"mtc1 %[tmp0], %[ftmp11] \n\t"
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"gsldlc1 %[ftmp1], 0x07(%[ip]) \n\t"
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"gsldrc1 %[ftmp1], 0x00(%[ip]) \n\t"
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"gsldlc1 %[ftmp2], 0x0f(%[ip]) \n\t"
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"gsldrc1 %[ftmp2], 0x08(%[ip]) \n\t"
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"gsldlc1 %[ftmp3], 0x17(%[ip]) \n\t"
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"gsldrc1 %[ftmp3], 0x10(%[ip]) \n\t"
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"gsldlc1 %[ftmp4], 0x1f(%[ip]) \n\t"
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"gsldrc1 %[ftmp4], 0x18(%[ip]) \n\t"
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"paddh %[ftmp5], %[ftmp1], %[ftmp2] \n\t"
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"psubh %[ftmp6], %[ftmp1], %[ftmp2] \n\t"
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"paddh %[ftmp7], %[ftmp3], %[ftmp4] \n\t"
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"psubh %[ftmp8], %[ftmp3], %[ftmp4] \n\t"
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"paddh %[ftmp1], %[ftmp5], %[ftmp7] \n\t"
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"psubh %[ftmp2], %[ftmp5], %[ftmp7] \n\t"
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"psubh %[ftmp3], %[ftmp6], %[ftmp8] \n\t"
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"paddh %[ftmp4], %[ftmp6], %[ftmp8] \n\t"
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TRANSPOSE_4H
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// a
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"paddh %[ftmp5], %[ftmp1], %[ftmp4] \n\t"
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// d
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"psubh %[ftmp6], %[ftmp1], %[ftmp4] \n\t"
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// b
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"paddh %[ftmp7], %[ftmp2], %[ftmp3] \n\t"
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// c
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"psubh %[ftmp8], %[ftmp2], %[ftmp3] \n\t"
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"paddh %[ftmp1], %[ftmp5], %[ftmp7] \n\t"
|
|
"paddh %[ftmp2], %[ftmp6], %[ftmp8] \n\t"
|
|
"psubh %[ftmp3], %[ftmp5], %[ftmp7] \n\t"
|
|
"psubh %[ftmp4], %[ftmp6], %[ftmp8] \n\t"
|
|
|
|
"paddh %[ftmp1], %[ftmp1], %[ff_ph_03] \n\t"
|
|
"psrah %[ftmp1], %[ftmp1], %[ftmp11] \n\t"
|
|
"paddh %[ftmp2], %[ftmp2], %[ff_ph_03] \n\t"
|
|
"psrah %[ftmp2], %[ftmp2], %[ftmp11] \n\t"
|
|
"paddh %[ftmp3], %[ftmp3], %[ff_ph_03] \n\t"
|
|
"psrah %[ftmp3], %[ftmp3], %[ftmp11] \n\t"
|
|
"paddh %[ftmp4], %[ftmp4], %[ff_ph_03] \n\t"
|
|
"psrah %[ftmp4], %[ftmp4], %[ftmp11] \n\t"
|
|
|
|
TRANSPOSE_4H
|
|
"gssdlc1 %[ftmp1], 0x07(%[op]) \n\t"
|
|
"gssdrc1 %[ftmp1], 0x00(%[op]) \n\t"
|
|
"gssdlc1 %[ftmp2], 0x0f(%[op]) \n\t"
|
|
"gssdrc1 %[ftmp2], 0x08(%[op]) \n\t"
|
|
"gssdlc1 %[ftmp3], 0x17(%[op]) \n\t"
|
|
"gssdrc1 %[ftmp3], 0x10(%[op]) \n\t"
|
|
"gssdlc1 %[ftmp4], 0x1f(%[op]) \n\t"
|
|
"gssdrc1 %[ftmp4], 0x18(%[op]) \n\t"
|
|
: [ftmp0]"=&f"(ftmp[0]), [ftmp1]"=&f"(ftmp[1]), [ftmp2]"=&f"(ftmp[2]),
|
|
[ftmp3]"=&f"(ftmp[3]), [ftmp4]"=&f"(ftmp[4]), [ftmp5]"=&f"(ftmp[5]),
|
|
[ftmp6]"=&f"(ftmp[6]), [ftmp7]"=&f"(ftmp[7]), [ftmp8]"=&f"(ftmp[8]),
|
|
[ftmp9]"=&f"(ftmp[9]), [ftmp10]"=&f"(ftmp[10]),
|
|
[ftmp11]"=&f"(ftmp[11]), [tmp0]"=&r"(tmp[0])
|
|
: [ip]"r"(input), [op]"r"(output), [ff_ph_03]"f"(ff_ph_03)
|
|
: "memory"
|
|
);
|
|
|
|
for (i = 0; i < 16; i++) {
|
|
mb_dqcoeff[i * 16] = output[i];
|
|
}
|
|
}
|