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Update code to v1.0.14 (10)
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124
android/extern/libjpeg-turbo/simd/mips64/jquanti-mmi.c
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124
android/extern/libjpeg-turbo/simd/mips64/jquanti-mmi.c
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/*
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* Loongson MMI optimizations for libjpeg-turbo
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*
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* Copyright (C) 2016-2017, Loongson Technology Corporation Limited, BeiJing.
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* All Rights Reserved.
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* Authors: ZhuChen <zhuchen@loongson.cn>
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* CaiWanwei <caiwanwei@loongson.cn>
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* SunZhangzhi <sunzhangzhi-cq@loongson.cn>
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* Copyright (C) 2018-2019, D. R. Commander. All Rights Reserved.
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*
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* Based on the x86 SIMD extension for IJG JPEG library
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* Copyright (C) 1999-2006, MIYASAKA Masaru.
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*
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* This software is provided 'as-is', without any express or implied
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* warranty. In no event will the authors be held liable for any damages
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* arising from the use of this software.
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*
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* Permission is granted to anyone to use this software for any purpose,
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* including commercial applications, and to alter it and redistribute it
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* freely, subject to the following restrictions:
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*
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* 1. The origin of this software must not be misrepresented; you must not
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* claim that you wrote the original software. If you use this software
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* in a product, an acknowledgment in the product documentation would be
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* appreciated but is not required.
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* 2. Altered source versions must be plainly marked as such, and must not be
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* misrepresented as being the original software.
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* 3. This notice may not be removed or altered from any source distribution.
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*/
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/* INTEGER QUANTIZATION AND SAMPLE CONVERSION */
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#include "jsimd_mmi.h"
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#define DO_QUANT() { \
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__m64 rowl, rowh, rowls, rowhs, rowlsave, rowhsave; \
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__m64 corrl, corrh, recipl, reciph, scalel, scaleh; \
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\
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rowl = _mm_load_si64((__m64 *)&workspace[0]); \
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rowh = _mm_load_si64((__m64 *)&workspace[4]); \
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\
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/* Branch-less absolute value */ \
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rowls = _mm_srai_pi16(rowl, (WORD_BIT - 1)); /* -1 if value < 0, */ \
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/* 0 otherwise */ \
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rowhs = _mm_srai_pi16(rowh, (WORD_BIT - 1)); \
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\
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rowl = _mm_xor_si64(rowl, rowls); /* val = -val */ \
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rowh = _mm_xor_si64(rowh, rowhs); \
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rowl = _mm_sub_pi16(rowl, rowls); \
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rowh = _mm_sub_pi16(rowh, rowhs); \
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\
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corrl = _mm_load_si64((__m64 *)&divisors[DCTSIZE2 * 1]); /* correction */ \
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corrh = _mm_load_si64((__m64 *)&divisors[DCTSIZE2 * 1 + 4]); \
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\
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rowlsave = rowl = _mm_add_pi16(rowl, corrl); /* correction + roundfactor */ \
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rowhsave = rowh = _mm_add_pi16(rowh, corrh); \
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\
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recipl = _mm_load_si64((__m64 *)&divisors[DCTSIZE2 * 0]); /* reciprocal */ \
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reciph = _mm_load_si64((__m64 *)&divisors[DCTSIZE2 * 0 + 4]); \
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\
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rowl = _mm_mulhi_pi16(rowl, recipl); \
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rowh = _mm_mulhi_pi16(rowh, reciph); \
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\
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/* reciprocal is always negative (MSB=1), so we always need to add the */ \
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/* initial value (input value is never negative as we inverted it at the */ \
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/* start of this routine) */ \
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rowlsave = rowl = _mm_add_pi16(rowl, rowlsave); \
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rowhsave = rowh = _mm_add_pi16(rowh, rowhsave); \
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\
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scalel = _mm_load_si64((__m64 *)&divisors[DCTSIZE2 * 2]); /* scale */ \
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scaleh = _mm_load_si64((__m64 *)&divisors[DCTSIZE2 * 2 + 4]); \
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\
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rowl = _mm_mulhi_pi16(rowl, scalel); \
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rowh = _mm_mulhi_pi16(rowh, scaleh); \
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\
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/* determine if scale is negative */ \
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scalel = _mm_srai_pi16(scalel, (WORD_BIT - 1)); \
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scaleh = _mm_srai_pi16(scaleh, (WORD_BIT - 1)); \
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\
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/* and add input if it is */ \
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scalel = _mm_and_si64(scalel, rowlsave); \
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scaleh = _mm_and_si64(scaleh, rowhsave); \
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rowl = _mm_add_pi16(rowl, scalel); \
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rowh = _mm_add_pi16(rowh, scaleh); \
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\
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/* then check if negative input */ \
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rowlsave = _mm_srai_pi16(rowlsave, (WORD_BIT - 1)); \
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rowhsave = _mm_srai_pi16(rowhsave, (WORD_BIT - 1)); \
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\
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/* and add scale if it is */ \
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rowlsave = _mm_and_si64(rowlsave, scalel); \
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rowhsave = _mm_and_si64(rowhsave, scaleh); \
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rowl = _mm_add_pi16(rowl, rowlsave); \
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rowh = _mm_add_pi16(rowh, rowhsave); \
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\
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rowl = _mm_xor_si64(rowl, rowls); /* val = -val */ \
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rowh = _mm_xor_si64(rowh, rowhs); \
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rowl = _mm_sub_pi16(rowl, rowls); \
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rowh = _mm_sub_pi16(rowh, rowhs); \
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\
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_mm_store_si64((__m64 *)&output_ptr[0], rowl); \
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_mm_store_si64((__m64 *)&output_ptr[4], rowh); \
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\
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workspace += DCTSIZE; \
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divisors += DCTSIZE; \
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output_ptr += DCTSIZE; \
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}
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void jsimd_quantize_mmi(JCOEFPTR coef_block, DCTELEM *divisors,
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DCTELEM *workspace)
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{
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JCOEFPTR output_ptr = coef_block;
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DO_QUANT()
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DO_QUANT()
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DO_QUANT()
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DO_QUANT()
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DO_QUANT()
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DO_QUANT()
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DO_QUANT()
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DO_QUANT()
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}
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