ecf3e862ea
git-svn-id: svn://kolibrios.org@6148 a494cfbc-eb01-0410-851d-a64ba20cac60
413 lines
22 KiB
C
413 lines
22 KiB
C
/*
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* Copyright (c) 2012
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* MIPS Technologies, Inc., California.
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*
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* Redistribution and use in source and binary forms, with or without
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* modification, are permitted provided that the following conditions
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* are met:
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* 1. Redistributions of source code must retain the above copyright
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* notice, this list of conditions and the following disclaimer.
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* 2. Redistributions in binary form must reproduce the above copyright
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* notice, this list of conditions and the following disclaimer in the
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* documentation and/or other materials provided with the distribution.
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* 3. Neither the name of the MIPS Technologies, Inc., nor the names of its
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* contributors may be used to endorse or promote products derived from
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* this software without specific prior written permission.
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*
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* THIS SOFTWARE IS PROVIDED BY THE MIPS TECHNOLOGIES, INC. ``AS IS'' AND
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* ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
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* IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
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* ARE DISCLAIMED. IN NO EVENT SHALL THE MIPS TECHNOLOGIES, INC. BE LIABLE
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* FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
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* DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
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* OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
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* HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
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* LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
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* OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
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* SUCH DAMAGE.
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*
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* Authors: Branimir Vasic (bvasic@mips.com)
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* Nedeljko Babic (nbabic@mips.com)
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*
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* Various AC-3 DSP Utils optimized for MIPS
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*
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* This file is part of FFmpeg.
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*
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* FFmpeg is free software; you can redistribute it and/or
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* modify it under the terms of the GNU Lesser General Public
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* License as published by the Free Software Foundation; either
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* version 2.1 of the License, or (at your option) any later version.
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*
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* FFmpeg is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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* Lesser General Public License for more details.
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*
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* You should have received a copy of the GNU Lesser General Public
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* License along with FFmpeg; if not, write to the Free Software
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* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
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*/
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/**
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* @file
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* Reference: libavcodec/ac3dsp.c
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*/
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#include "config.h"
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#include "libavcodec/ac3dsp.h"
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#include "libavcodec/ac3.h"
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#if HAVE_INLINE_ASM
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#if HAVE_MIPSDSPR1
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static void ac3_bit_alloc_calc_bap_mips(int16_t *mask, int16_t *psd,
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int start, int end,
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int snr_offset, int floor,
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const uint8_t *bap_tab, uint8_t *bap)
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{
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int band, band_end, cond;
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int m, address1, address2;
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int16_t *psd1, *psd_end;
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uint8_t *bap1;
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if (snr_offset == -960) {
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memset(bap, 0, AC3_MAX_COEFS);
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return;
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}
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psd1 = &psd[start];
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bap1 = &bap[start];
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band = ff_ac3_bin_to_band_tab[start];
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do {
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m = (FFMAX(mask[band] - snr_offset - floor, 0) & 0x1FE0) + floor;
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band_end = ff_ac3_band_start_tab[++band];
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band_end = FFMIN(band_end, end);
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psd_end = psd + band_end - 1;
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__asm__ volatile (
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"slt %[cond], %[psd1], %[psd_end] \n\t"
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"beqz %[cond], 1f \n\t"
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"2: \n\t"
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"lh %[address1], 0(%[psd1]) \n\t"
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"lh %[address2], 2(%[psd1]) \n\t"
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"addiu %[psd1], %[psd1], 4 \n\t"
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"subu %[address1], %[address1], %[m] \n\t"
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"sra %[address1], %[address1], 5 \n\t"
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"addiu %[address1], %[address1], -32 \n\t"
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"shll_s.w %[address1], %[address1], 26 \n\t"
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"subu %[address2], %[address2], %[m] \n\t"
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"sra %[address2], %[address2], 5 \n\t"
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"sra %[address1], %[address1], 26 \n\t"
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"addiu %[address1], %[address1], 32 \n\t"
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"lbux %[address1], %[address1](%[bap_tab]) \n\t"
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"addiu %[address2], %[address2], -32 \n\t"
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"shll_s.w %[address2], %[address2], 26 \n\t"
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"sb %[address1], 0(%[bap1]) \n\t"
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"slt %[cond], %[psd1], %[psd_end] \n\t"
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"sra %[address2], %[address2], 26 \n\t"
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"addiu %[address2], %[address2], 32 \n\t"
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"lbux %[address2], %[address2](%[bap_tab]) \n\t"
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"sb %[address2], 1(%[bap1]) \n\t"
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"addiu %[bap1], %[bap1], 2 \n\t"
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"bnez %[cond], 2b \n\t"
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"addiu %[psd_end], %[psd_end], 2 \n\t"
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"slt %[cond], %[psd1], %[psd_end] \n\t"
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"beqz %[cond], 3f \n\t"
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"1: \n\t"
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"lh %[address1], 0(%[psd1]) \n\t"
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"addiu %[psd1], %[psd1], 2 \n\t"
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"subu %[address1], %[address1], %[m] \n\t"
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"sra %[address1], %[address1], 5 \n\t"
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"addiu %[address1], %[address1], -32 \n\t"
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"shll_s.w %[address1], %[address1], 26 \n\t"
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"sra %[address1], %[address1], 26 \n\t"
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"addiu %[address1], %[address1], 32 \n\t"
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"lbux %[address1], %[address1](%[bap_tab]) \n\t"
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"sb %[address1], 0(%[bap1]) \n\t"
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"addiu %[bap1], %[bap1], 1 \n\t"
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"3: \n\t"
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: [address1]"=&r"(address1), [address2]"=&r"(address2),
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[cond]"=&r"(cond), [bap1]"+r"(bap1),
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[psd1]"+r"(psd1), [psd_end]"+r"(psd_end)
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: [m]"r"(m), [bap_tab]"r"(bap_tab)
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: "memory"
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);
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} while (end > band_end);
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}
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static void ac3_update_bap_counts_mips(uint16_t mant_cnt[16], uint8_t *bap,
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int len)
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{
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int temp0, temp1, temp2, temp3, temp4, temp5, temp6, temp7;
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__asm__ volatile (
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"andi %[temp3], %[len], 3 \n\t"
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"addu %[temp2], %[bap], %[len] \n\t"
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"addu %[temp4], %[bap], %[temp3] \n\t"
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"beq %[temp2], %[temp4], 4f \n\t"
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"1: \n\t"
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"lbu %[temp0], -1(%[temp2]) \n\t"
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"lbu %[temp5], -2(%[temp2]) \n\t"
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"lbu %[temp6], -3(%[temp2]) \n\t"
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"sll %[temp0], %[temp0], 1 \n\t"
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"addu %[temp0], %[mant_cnt], %[temp0] \n\t"
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"sll %[temp5], %[temp5], 1 \n\t"
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"addu %[temp5], %[mant_cnt], %[temp5] \n\t"
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"lhu %[temp1], 0(%[temp0]) \n\t"
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"sll %[temp6], %[temp6], 1 \n\t"
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"addu %[temp6], %[mant_cnt], %[temp6] \n\t"
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"addiu %[temp1], %[temp1], 1 \n\t"
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"sh %[temp1], 0(%[temp0]) \n\t"
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"lhu %[temp1], 0(%[temp5]) \n\t"
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"lbu %[temp7], -4(%[temp2]) \n\t"
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"addiu %[temp2], %[temp2], -4 \n\t"
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"addiu %[temp1], %[temp1], 1 \n\t"
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"sh %[temp1], 0(%[temp5]) \n\t"
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"lhu %[temp1], 0(%[temp6]) \n\t"
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"sll %[temp7], %[temp7], 1 \n\t"
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"addu %[temp7], %[mant_cnt], %[temp7] \n\t"
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"addiu %[temp1], %[temp1],1 \n\t"
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"sh %[temp1], 0(%[temp6]) \n\t"
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"lhu %[temp1], 0(%[temp7]) \n\t"
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"addiu %[temp1], %[temp1], 1 \n\t"
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"sh %[temp1], 0(%[temp7]) \n\t"
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"bne %[temp2], %[temp4], 1b \n\t"
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"4: \n\t"
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"beqz %[temp3], 2f \n\t"
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"3: \n\t"
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"addiu %[temp3], %[temp3], -1 \n\t"
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"lbu %[temp0], -1(%[temp2]) \n\t"
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"addiu %[temp2], %[temp2], -1 \n\t"
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"sll %[temp0], %[temp0], 1 \n\t"
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"addu %[temp0], %[mant_cnt], %[temp0] \n\t"
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"lhu %[temp1], 0(%[temp0]) \n\t"
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"addiu %[temp1], %[temp1], 1 \n\t"
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"sh %[temp1], 0(%[temp0]) \n\t"
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"bgtz %[temp3], 3b \n\t"
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"2: \n\t"
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: [temp0] "=&r" (temp0), [temp1] "=&r" (temp1),
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[temp2] "=&r" (temp2), [temp3] "=&r" (temp3),
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[temp4] "=&r" (temp4), [temp5] "=&r" (temp5),
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[temp6] "=&r" (temp6), [temp7] "=&r" (temp7)
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: [len] "r" (len), [bap] "r" (bap),
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[mant_cnt] "r" (mant_cnt)
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: "memory"
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);
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}
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#endif
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#if HAVE_MIPSFPU && HAVE_MIPS32R2
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static void float_to_fixed24_mips(int32_t *dst, const float *src, unsigned int len)
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{
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const float scale = 1 << 24;
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float src0, src1, src2, src3, src4, src5, src6, src7;
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int temp0, temp1, temp2, temp3, temp4, temp5, temp6, temp7;
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do {
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__asm__ volatile (
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"lwc1 %[src0], 0(%[src]) \n\t"
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"lwc1 %[src1], 4(%[src]) \n\t"
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"lwc1 %[src2], 8(%[src]) \n\t"
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"lwc1 %[src3], 12(%[src]) \n\t"
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"lwc1 %[src4], 16(%[src]) \n\t"
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"lwc1 %[src5], 20(%[src]) \n\t"
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"lwc1 %[src6], 24(%[src]) \n\t"
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"lwc1 %[src7], 28(%[src]) \n\t"
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"mul.s %[src0], %[src0], %[scale] \n\t"
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"mul.s %[src1], %[src1], %[scale] \n\t"
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"mul.s %[src2], %[src2], %[scale] \n\t"
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"mul.s %[src3], %[src3], %[scale] \n\t"
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"mul.s %[src4], %[src4], %[scale] \n\t"
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"mul.s %[src5], %[src5], %[scale] \n\t"
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"mul.s %[src6], %[src6], %[scale] \n\t"
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"mul.s %[src7], %[src7], %[scale] \n\t"
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"cvt.w.s %[src0], %[src0] \n\t"
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"cvt.w.s %[src1], %[src1] \n\t"
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"cvt.w.s %[src2], %[src2] \n\t"
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"cvt.w.s %[src3], %[src3] \n\t"
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"cvt.w.s %[src4], %[src4] \n\t"
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"cvt.w.s %[src5], %[src5] \n\t"
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"cvt.w.s %[src6], %[src6] \n\t"
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"cvt.w.s %[src7], %[src7] \n\t"
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"mfc1 %[temp0], %[src0] \n\t"
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"mfc1 %[temp1], %[src1] \n\t"
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"mfc1 %[temp2], %[src2] \n\t"
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"mfc1 %[temp3], %[src3] \n\t"
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"mfc1 %[temp4], %[src4] \n\t"
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"mfc1 %[temp5], %[src5] \n\t"
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"mfc1 %[temp6], %[src6] \n\t"
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"mfc1 %[temp7], %[src7] \n\t"
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"sw %[temp0], 0(%[dst]) \n\t"
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"sw %[temp1], 4(%[dst]) \n\t"
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"sw %[temp2], 8(%[dst]) \n\t"
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"sw %[temp3], 12(%[dst]) \n\t"
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"sw %[temp4], 16(%[dst]) \n\t"
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"sw %[temp5], 20(%[dst]) \n\t"
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"sw %[temp6], 24(%[dst]) \n\t"
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"sw %[temp7], 28(%[dst]) \n\t"
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: [dst] "+r" (dst), [src] "+r" (src),
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[src0] "=&f" (src0), [src1] "=&f" (src1),
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[src2] "=&f" (src2), [src3] "=&f" (src3),
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[src4] "=&f" (src4), [src5] "=&f" (src5),
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[src6] "=&f" (src6), [src7] "=&f" (src7),
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[temp0] "=r" (temp0), [temp1] "=r" (temp1),
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[temp2] "=r" (temp2), [temp3] "=r" (temp3),
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[temp4] "=r" (temp4), [temp5] "=r" (temp5),
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[temp6] "=r" (temp6), [temp7] "=r" (temp7)
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: [scale] "f" (scale)
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: "memory"
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);
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src = src + 8;
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dst = dst + 8;
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len -= 8;
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} while (len > 0);
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}
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static void ac3_downmix_mips(float **samples, float (*matrix)[2],
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int out_ch, int in_ch, int len)
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{
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int i, j, i1, i2, i3;
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float v0, v1, v2, v3;
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float v4, v5, v6, v7;
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float samples0, samples1, samples2, samples3, matrix_j, matrix_j2;
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float *samples_p,*matrix_p, **samples_x, **samples_end, **samples_sw;
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__asm__ volatile(
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".set push \n\t"
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".set noreorder \n\t"
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"li %[i1], 2 \n\t"
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"sll %[len], 2 \n\t"
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"move %[i], $zero \n\t"
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"sll %[j], %[in_ch], 2 \n\t"
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"bne %[out_ch], %[i1], 3f \n\t" // if (out_ch == 2)
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" li %[i2], 1 \n\t"
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"2: \n\t" // start of the for loop (for (i = 0; i < len; i+=4))
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"move %[matrix_p], %[matrix] \n\t"
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"move %[samples_x], %[samples] \n\t"
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"mtc1 $zero, %[v0] \n\t"
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"mtc1 $zero, %[v1] \n\t"
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"mtc1 $zero, %[v2] \n\t"
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"mtc1 $zero, %[v3] \n\t"
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"mtc1 $zero, %[v4] \n\t"
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"mtc1 $zero, %[v5] \n\t"
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"mtc1 $zero, %[v6] \n\t"
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"mtc1 $zero, %[v7] \n\t"
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"addiu %[i1], %[i], 4 \n\t"
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"addiu %[i2], %[i], 8 \n\t"
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"lw %[samples_p], 0(%[samples_x]) \n\t"
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"addiu %[i3], %[i], 12 \n\t"
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"addu %[samples_end], %[samples_x], %[j] \n\t"
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"move %[samples_sw], %[samples_p] \n\t"
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"1: \n\t" // start of the inner for loop (for (j = 0; j < in_ch; j++))
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"lwc1 %[matrix_j], 0(%[matrix_p]) \n\t"
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"lwc1 %[matrix_j2], 4(%[matrix_p]) \n\t"
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"lwxc1 %[samples0], %[i](%[samples_p]) \n\t"
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"lwxc1 %[samples1], %[i1](%[samples_p]) \n\t"
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"lwxc1 %[samples2], %[i2](%[samples_p]) \n\t"
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"lwxc1 %[samples3], %[i3](%[samples_p]) \n\t"
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"addiu %[matrix_p], 8 \n\t"
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"addiu %[samples_x], 4 \n\t"
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"madd.s %[v0], %[v0], %[samples0], %[matrix_j] \n\t"
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"madd.s %[v1], %[v1], %[samples1], %[matrix_j] \n\t"
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"madd.s %[v2], %[v2], %[samples2], %[matrix_j] \n\t"
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"madd.s %[v3], %[v3], %[samples3], %[matrix_j] \n\t"
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"madd.s %[v4], %[v4], %[samples0], %[matrix_j2]\n\t"
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"madd.s %[v5], %[v5], %[samples1], %[matrix_j2]\n\t"
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"madd.s %[v6], %[v6], %[samples2], %[matrix_j2]\n\t"
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"madd.s %[v7], %[v7], %[samples3], %[matrix_j2]\n\t"
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"bne %[samples_x], %[samples_end], 1b \n\t"
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" lw %[samples_p], 0(%[samples_x]) \n\t"
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"lw %[samples_p], 4(%[samples]) \n\t"
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"swxc1 %[v0], %[i](%[samples_sw]) \n\t"
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"swxc1 %[v1], %[i1](%[samples_sw]) \n\t"
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"swxc1 %[v2], %[i2](%[samples_sw]) \n\t"
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"swxc1 %[v3], %[i3](%[samples_sw]) \n\t"
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"swxc1 %[v4], %[i](%[samples_p]) \n\t"
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"addiu %[i], 16 \n\t"
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"swxc1 %[v5], %[i1](%[samples_p]) \n\t"
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"swxc1 %[v6], %[i2](%[samples_p]) \n\t"
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"bne %[i], %[len], 2b \n\t"
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" swxc1 %[v7], %[i3](%[samples_p]) \n\t"
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"3: \n\t"
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"bne %[out_ch], %[i2], 6f \n\t" // if (out_ch == 1)
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" nop \n\t"
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"5: \n\t" // start of the outer for loop (for (i = 0; i < len; i+=4))
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"move %[matrix_p], %[matrix] \n\t"
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"move %[samples_x], %[samples] \n\t"
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|
"mtc1 $zero, %[v0] \n\t"
|
|
"mtc1 $zero, %[v1] \n\t"
|
|
"mtc1 $zero, %[v2] \n\t"
|
|
"mtc1 $zero, %[v3] \n\t"
|
|
"addiu %[i1], %[i], 4 \n\t"
|
|
"addiu %[i2], %[i], 8 \n\t"
|
|
"lw %[samples_p], 0(%[samples_x]) \n\t"
|
|
"addiu %[i3], %[i], 12 \n\t"
|
|
"addu %[samples_end], %[samples_x], %[j] \n\t"
|
|
"move %[samples_sw], %[samples_p] \n\t"
|
|
|
|
"4: \n\t" // start of the inner for loop (for (j = 0; j < in_ch; j++))
|
|
"lwc1 %[matrix_j], 0(%[matrix_p]) \n\t"
|
|
"lwxc1 %[samples0], %[i](%[samples_p]) \n\t"
|
|
"lwxc1 %[samples1], %[i1](%[samples_p]) \n\t"
|
|
"lwxc1 %[samples2], %[i2](%[samples_p]) \n\t"
|
|
"lwxc1 %[samples3], %[i3](%[samples_p]) \n\t"
|
|
"addiu %[matrix_p], 8 \n\t"
|
|
"addiu %[samples_x], 4 \n\t"
|
|
"madd.s %[v0], %[v0], %[samples0], %[matrix_j] \n\t"
|
|
"madd.s %[v1], %[v1], %[samples1], %[matrix_j] \n\t"
|
|
"madd.s %[v2], %[v2], %[samples2], %[matrix_j] \n\t"
|
|
"madd.s %[v3], %[v3], %[samples3], %[matrix_j] \n\t"
|
|
"bne %[samples_x], %[samples_end], 4b \n\t"
|
|
" lw %[samples_p], 0(%[samples_x]) \n\t"
|
|
|
|
"swxc1 %[v0], %[i](%[samples_sw]) \n\t"
|
|
"addiu %[i], 16 \n\t"
|
|
"swxc1 %[v1], %[i1](%[samples_sw]) \n\t"
|
|
"swxc1 %[v2], %[i2](%[samples_sw]) \n\t"
|
|
"bne %[i], %[len], 5b \n\t"
|
|
" swxc1 %[v3], %[i3](%[samples_sw]) \n\t"
|
|
"6: \n\t"
|
|
|
|
".set pop"
|
|
:[samples_p]"=&r"(samples_p), [matrix_j]"=&f"(matrix_j), [matrix_j2]"=&f"(matrix_j2),
|
|
[samples0]"=&f"(samples0), [samples1]"=&f"(samples1),
|
|
[samples2]"=&f"(samples2), [samples3]"=&f"(samples3),
|
|
[v0]"=&f"(v0), [v1]"=&f"(v1), [v2]"=&f"(v2), [v3]"=&f"(v3),
|
|
[v4]"=&f"(v4), [v5]"=&f"(v5), [v6]"=&f"(v6), [v7]"=&f"(v7),
|
|
[samples_x]"=&r"(samples_x), [matrix_p]"=&r"(matrix_p),
|
|
[samples_end]"=&r"(samples_end), [samples_sw]"=&r"(samples_sw),
|
|
[i1]"=&r"(i1), [i2]"=&r"(i2), [i3]"=&r"(i3), [i]"=&r"(i),
|
|
[j]"=&r"(j), [len]"+r"(len)
|
|
:[samples]"r"(samples), [matrix]"r"(matrix),
|
|
[in_ch]"r"(in_ch), [out_ch]"r"(out_ch)
|
|
:"memory"
|
|
);
|
|
}
|
|
#endif
|
|
#endif /* HAVE_INLINE_ASM */
|
|
|
|
void ff_ac3dsp_init_mips(AC3DSPContext *c, int bit_exact) {
|
|
#if HAVE_INLINE_ASM
|
|
#if HAVE_MIPSDSPR1
|
|
c->bit_alloc_calc_bap = ac3_bit_alloc_calc_bap_mips;
|
|
c->update_bap_counts = ac3_update_bap_counts_mips;
|
|
#endif
|
|
#if HAVE_MIPSFPU && HAVE_MIPS32R2
|
|
c->float_to_fixed24 = float_to_fixed24_mips;
|
|
c->downmix = ac3_downmix_mips;
|
|
#endif
|
|
#endif
|
|
|
|
}
|