355 lines
10 KiB
C
355 lines
10 KiB
C
/* test_libFLAC - Unit tester for libFLAC
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* Copyright (C) 2000-2009 Josh Coalson
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* Copyright (C) 2011-2025 Xiph.Org Foundation
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*
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* This program is free software; you can redistribute it and/or
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* modify it under the terms of the GNU General Public License
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* as published by the Free Software Foundation; either version 2
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* of the License, or (at your option) any later version.
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*
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* This program 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
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License along
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* with this program; if not, write to the Free Software Foundation, Inc.,
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* 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
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*/
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#ifdef HAVE_CONFIG_H
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# include <config.h>
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#endif
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#include "FLAC/assert.h"
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#include "share/compat.h"
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#include "private/bitreader.h" /* from the libFLAC private include area */
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#include "bitreader.h"
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#include <stdio.h>
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#include <string.h> /* for memcpy() */
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/*
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* WATCHOUT! Since FLAC__BitReader is a private structure, we use a copy of
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* the definition here to get at the internals. Make sure this is kept up
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* to date with what is in ../libFLAC/bitreader.c
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*/
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#if (ENABLE_64_BIT_WORDS == 0)
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typedef FLAC__uint32 brword;
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#define FLAC__BYTES_PER_WORD 4
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#define FLAC__BITS_PER_WORD 32
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#else
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typedef FLAC__uint64 brword;
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#define FLAC__BYTES_PER_WORD 8
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#define FLAC__BITS_PER_WORD 64
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#endif
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struct FLAC__BitReader {
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/* any partially-consumed word at the head will stay right-justified as bits are consumed from the left */
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/* any incomplete word at the tail will be left-justified, and bytes from the read callback are added on the right */
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brword *buffer;
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uint32_t capacity; /* in words */
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uint32_t words; /* # of completed words in buffer */
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uint32_t bytes; /* # of bytes in incomplete word at buffer[words] */
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uint32_t consumed_words; /* #words ... */
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uint32_t consumed_bits; /* ... + (#bits of head word) already consumed from the front of buffer */
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uint32_t read_crc16; /* the running frame CRC */
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uint32_t crc16_offset; /* the number of words in the current buffer that should not be CRC'd */
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uint32_t crc16_align; /* the number of bits in the current consumed word that should not be CRC'd */
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FLAC__bool read_limit_set; /* whether reads are limited */
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uint32_t read_limit; /* the remaining size of what can be read */
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uint32_t last_seen_framesync; /* the location of the last seen framesync, if it is in the buffer, in bits from front of buffer */
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FLAC__BitReaderReadCallback read_callback;
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void *client_data;
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};
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static FLAC__bool read_callback(FLAC__byte buffer[], size_t *bytes, void *data);
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static void FLAC__bitreader_dump(const FLAC__BitReader *br, FILE *out)
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{
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uint32_t i, j;
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if(br == 0) {
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fprintf(out, "bitreader is NULL\n");
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}
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else {
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fprintf(out, "bitreader: capacity=%u words=%u bytes=%u consumed: words=%u, bits=%u\n", br->capacity, br->words, br->bytes, br->consumed_words, br->consumed_bits);
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for(i = 0; i < br->words; i++) {
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fprintf(out, "%08X: ", i);
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for(j = 0; j < FLAC__BITS_PER_WORD; j++)
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if(i < br->consumed_words || (i == br->consumed_words && j < br->consumed_bits))
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fprintf(out, ".");
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else
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fprintf(out, "%01d", br->buffer[i] & ((brword)1 << (FLAC__BITS_PER_WORD-j-1)) ? 1:0);
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fprintf(out, "\n");
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}
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if(br->bytes > 0) {
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fprintf(out, "%08X: ", i);
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for(j = 0; j < br->bytes*8; j++)
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if(i < br->consumed_words || (i == br->consumed_words && j < br->consumed_bits))
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fprintf(out, ".");
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else
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fprintf(out, "%01d", br->buffer[i] & ((brword)1 << (br->bytes*8-j-1)) ? 1:0);
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fprintf(out, "\n");
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}
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}
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}
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FLAC__bool test_bitreader(void)
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{
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FLAC__BitReader *br;
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FLAC__bool ok;
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uint32_t i;
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uint32_t words, bits; /* what we think br->consumed_words and br->consumed_bits should be */
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FLAC__uint16 crc,expected_crcs[4] = { 0x5e4c, 0x7f6b, 0x2272, 0x42bf };
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FLAC__byte data[32];
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FLAC__uint32 val_uint32;
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FLAC__uint64 val_uint64;
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for (i = 0; i < 32; i++)
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data[i] = i * 8 + 7;
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printf("\n+++ libFLAC unit test: bitreader\n\n");
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/*
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* test new -> delete
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*/
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printf("testing new... ");
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br = FLAC__bitreader_new();
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if(0 == br) {
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printf("FAILED, returned NULL\n");
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return false;
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}
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printf("OK\n");
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printf("testing delete... ");
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FLAC__bitreader_delete(br);
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printf("OK\n");
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/*
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* test new -> init -> delete
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*/
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printf("testing new... ");
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br = FLAC__bitreader_new();
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if(0 == br) {
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printf("FAILED, returned NULL\n");
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return false;
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}
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printf("OK\n");
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printf("testing init... ");
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if(!FLAC__bitreader_init(br, read_callback, data)) {
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printf("FAILED, returned false\n");
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return false;
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}
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printf("OK\n");
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printf("testing delete... ");
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FLAC__bitreader_delete(br);
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printf("OK\n");
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/*
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* test new -> init -> clear -> delete
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*/
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printf("testing new... ");
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br = FLAC__bitreader_new();
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if(0 == br) {
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printf("FAILED, returned NULL\n");
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return false;
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}
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printf("OK\n");
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printf("testing init... ");
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if(!FLAC__bitreader_init(br, read_callback, data)) {
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printf("FAILED, returned false\n");
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return false;
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}
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printf("OK\n");
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printf("testing clear... ");
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if(!FLAC__bitreader_clear(br)) {
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printf("FAILED, returned false\n");
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return false;
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}
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printf("OK\n");
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printf("testing delete... ");
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FLAC__bitreader_delete(br);
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printf("OK\n");
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/*
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* test normal usage
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*/
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printf("testing new... ");
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br = FLAC__bitreader_new();
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if(0 == br) {
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printf("FAILED, returned NULL\n");
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return false;
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}
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printf("OK\n");
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printf("testing init... ");
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if(!FLAC__bitreader_init(br, read_callback, data)) {
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printf("FAILED, returned false\n");
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return false;
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}
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printf("OK\n");
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printf("testing clear... ");
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if(!FLAC__bitreader_clear(br)) {
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printf("FAILED, returned false\n");
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return false;
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}
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printf("OK\n");
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words = bits = 0;
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printf("capacity = %u\n", br->capacity);
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printf("testing raw reads... ");
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ok =
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FLAC__bitreader_read_raw_uint32(br, &val_uint32, 1) &&
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FLAC__bitreader_read_raw_uint32(br, &val_uint32, 2) &&
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FLAC__bitreader_read_raw_uint32(br, &val_uint32, 5) &&
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FLAC__bitreader_read_raw_uint32(br, &val_uint32, 8) &&
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FLAC__bitreader_read_raw_uint32(br, &val_uint32, 10) &&
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FLAC__bitreader_read_raw_uint32(br, &val_uint32, 4) &&
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FLAC__bitreader_read_raw_uint32(br, &val_uint32, 32) &&
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FLAC__bitreader_read_raw_uint32(br, &val_uint32, 4) &&
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FLAC__bitreader_read_raw_uint32(br, &val_uint32, 2) &&
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FLAC__bitreader_read_raw_uint32(br, &val_uint32, 8) &&
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FLAC__bitreader_read_raw_uint64(br, &val_uint64, 64) &&
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FLAC__bitreader_read_raw_uint32(br, &val_uint32, 12)
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;
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if(!ok) {
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printf("FAILED\n");
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FLAC__bitreader_dump(br, stdout);
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return false;
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}
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/* we read 152 bits (=19 bytes) from the bitreader */
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words = 152 / FLAC__BITS_PER_WORD;
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bits = 152 - words*FLAC__BITS_PER_WORD;
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if(br->consumed_words != words) {
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printf("FAILED word count %u != %u\n", br->consumed_words, words);
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FLAC__bitreader_dump(br, stdout);
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return false;
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}
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if(br->consumed_bits != bits) {
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printf("FAILED bit count %u != %u\n", br->consumed_bits, bits);
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FLAC__bitreader_dump(br, stdout);
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return false;
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}
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crc = FLAC__bitreader_get_read_crc16(br);
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if(crc != expected_crcs[0]) {
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printf("FAILED reported CRC 0x%04x does not match expected 0x%04x\n", crc, expected_crcs[0]);
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FLAC__bitreader_dump(br, stdout);
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return false;
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}
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printf("OK\n");
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FLAC__bitreader_dump(br, stdout);
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printf("testing CRC reset... ");
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FLAC__bitreader_clear(br);
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FLAC__bitreader_reset_read_crc16(br, 0xFFFF);
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crc = FLAC__bitreader_get_read_crc16(br);
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if(crc != 0xFFFF) {
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printf("FAILED reported CRC 0x%04x does not match expected 0xFFFF\n", crc);
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FLAC__bitreader_dump(br, stdout);
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return false;
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}
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FLAC__bitreader_reset_read_crc16(br, 0);
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crc = FLAC__bitreader_get_read_crc16(br);
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if(crc != 0) {
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printf("FAILED reported CRC 0x%04x does not match expected 0x0000\n", crc);
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FLAC__bitreader_dump(br, stdout);
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return false;
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}
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FLAC__bitreader_read_raw_uint32(br, &val_uint32, 16);
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FLAC__bitreader_reset_read_crc16(br, 0);
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FLAC__bitreader_read_raw_uint32(br, &val_uint32, 32);
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crc = FLAC__bitreader_get_read_crc16(br);
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if(crc != expected_crcs[1]) {
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printf("FAILED reported CRC 0x%04x does not match expected 0x%04x\n", crc, expected_crcs[1]);
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FLAC__bitreader_dump(br, stdout);
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return false;
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}
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printf("OK\n");
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printf("testing unaligned < 32 bit reads... ");
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FLAC__bitreader_clear(br);
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FLAC__bitreader_skip_bits_no_crc(br, 8);
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FLAC__bitreader_reset_read_crc16(br, 0);
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ok =
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FLAC__bitreader_read_raw_uint32(br, &val_uint32, 1) &&
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FLAC__bitreader_read_raw_uint32(br, &val_uint32, 2) &&
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FLAC__bitreader_read_raw_uint32(br, &val_uint32, 5) &&
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FLAC__bitreader_read_raw_uint32(br, &val_uint32, 8)
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;
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if(!ok) {
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printf("FAILED\n");
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FLAC__bitreader_dump(br, stdout);
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return false;
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}
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crc = FLAC__bitreader_get_read_crc16(br);
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if(crc != expected_crcs[2]) {
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printf("FAILED reported CRC 0x%04x does not match expected 0x%04x\n", crc, expected_crcs[2]);
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FLAC__bitreader_dump(br, stdout);
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return false;
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}
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printf("OK\n");
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FLAC__bitreader_dump(br, stdout);
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printf("testing unaligned < 64 bit reads... ");
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FLAC__bitreader_clear(br);
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FLAC__bitreader_skip_bits_no_crc(br, 8);
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FLAC__bitreader_reset_read_crc16(br, 0);
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ok =
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FLAC__bitreader_read_raw_uint32(br, &val_uint32, 1) &&
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FLAC__bitreader_read_raw_uint32(br, &val_uint32, 2) &&
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FLAC__bitreader_read_raw_uint32(br, &val_uint32, 5) &&
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FLAC__bitreader_read_raw_uint32(br, &val_uint32, 8) &&
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FLAC__bitreader_read_raw_uint32(br, &val_uint32, 32)
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;
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if(!ok) {
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printf("FAILED\n");
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FLAC__bitreader_dump(br, stdout);
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return false;
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}
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crc = FLAC__bitreader_get_read_crc16(br);
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if(crc != expected_crcs[3]) {
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printf("FAILED reported CRC 0x%04x does not match expected 0x%04x\n", crc, expected_crcs[3]);
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FLAC__bitreader_dump(br, stdout);
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return false;
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}
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printf("OK\n");
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FLAC__bitreader_dump(br, stdout);
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printf("testing free... ");
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FLAC__bitreader_free(br);
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printf("OK\n");
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printf("testing delete... ");
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FLAC__bitreader_delete(br);
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printf("OK\n");
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printf("\nPASSED!\n");
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return true;
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}
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/*----------------------------------------------------------------------------*/
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static FLAC__bool read_callback(FLAC__byte buffer[], size_t *bytes, void *data)
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{
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if (*bytes > 32)
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*bytes = 32;
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memcpy(buffer, data, *bytes);
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return true;
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}
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