test/test_pcm: add pcm_volume tests
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@ -1316,6 +1316,7 @@ test_test_pcm_SOURCES = \
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test/test_pcm_dither.c \
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test/test_pcm_pack.c \
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test/test_pcm_channels.c \
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test/test_pcm_volume.c \
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test/test_pcm_all.h \
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test/test_pcm_main.c
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test_test_pcm_LDADD = \
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@ -38,4 +38,19 @@ test_pcm_channels_16(void);
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void
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test_pcm_channels_32(void);
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void
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test_pcm_volume_8(void);
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void
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test_pcm_volume_16(void);
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void
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test_pcm_volume_24(void);
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void
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test_pcm_volume_32(void);
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void
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test_pcm_volume_float(void);
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#endif
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@ -32,5 +32,11 @@ main(int argc, char **argv)
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g_test_add_func("/pcm/channels/16", test_pcm_channels_16);
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g_test_add_func("/pcm/channels/32", test_pcm_channels_32);
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g_test_add_func("/pcm/volume/8", test_pcm_volume_8);
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g_test_add_func("/pcm/volume/16", test_pcm_volume_16);
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g_test_add_func("/pcm/volume/24", test_pcm_volume_24);
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g_test_add_func("/pcm/volume/32", test_pcm_volume_32);
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g_test_add_func("/pcm/volume/float", test_pcm_volume_float);
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g_test_run();
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}
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@ -0,0 +1,190 @@
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/*
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* Copyright (C) 2003-2012 The Music Player Daemon Project
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* http://www.musicpd.org
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*
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* This program is free software; you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation; either version 2 of the License, or
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* (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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#include "test_pcm_all.h"
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#include "pcm_volume.h"
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#include <glib.h>
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#include <string.h>
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void
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test_pcm_volume_8(void)
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{
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enum { N = 256 };
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static const int8_t zero[N];
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int8_t src[N];
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for (unsigned i = 0; i < N; ++i)
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src[i] = g_random_int();
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int8_t dest[N];
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memcpy(dest, src, sizeof(src));
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g_assert_cmpint(pcm_volume(dest, sizeof(dest), SAMPLE_FORMAT_S8,
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0), ==, true);
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g_assert_cmpint(memcmp(dest, zero, sizeof(zero)), ==, 0);
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memcpy(dest, src, sizeof(src));
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g_assert_cmpint(pcm_volume(dest, sizeof(dest), SAMPLE_FORMAT_S8,
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PCM_VOLUME_1), ==, true);
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g_assert_cmpint(memcmp(dest, src, sizeof(src)), ==, 0);
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memcpy(dest, src, sizeof(src));
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g_assert_cmpint(pcm_volume(dest, sizeof(dest), SAMPLE_FORMAT_S8,
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PCM_VOLUME_1 / 2), ==, true);
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for (unsigned i = 0; i < N; ++i) {
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g_assert_cmpint(dest[i], >=, (src[i] - 1) / 2);
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g_assert_cmpint(dest[i], <=, src[i] / 2 + 1);
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}
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}
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void
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test_pcm_volume_16(void)
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{
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enum { N = 256 };
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static const int16_t zero[N];
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int16_t src[N];
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for (unsigned i = 0; i < N; ++i)
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src[i] = g_random_int();
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int16_t dest[N];
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memcpy(dest, src, sizeof(src));
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g_assert_cmpint(pcm_volume(dest, sizeof(dest), SAMPLE_FORMAT_S16,
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0), ==, true);
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g_assert_cmpint(memcmp(dest, zero, sizeof(zero)), ==, 0);
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memcpy(dest, src, sizeof(src));
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g_assert_cmpint(pcm_volume(dest, sizeof(dest), SAMPLE_FORMAT_S16,
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PCM_VOLUME_1), ==, true);
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g_assert_cmpint(memcmp(dest, src, sizeof(src)), ==, 0);
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memcpy(dest, src, sizeof(src));
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g_assert_cmpint(pcm_volume(dest, sizeof(dest), SAMPLE_FORMAT_S16,
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PCM_VOLUME_1 / 2), ==, true);
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for (unsigned i = 0; i < N; ++i) {
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g_assert_cmpint(dest[i], >=, (src[i] - 1) / 2);
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g_assert_cmpint(dest[i], <=, src[i] / 2 + 1);
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}
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}
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/**
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* Generate a random 24 bit PCM sample.
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*/
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static int32_t
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random24(void)
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{
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int32_t x = g_random_int() & 0xffffff;
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if (x & 0x800000)
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x |= 0xff000000;
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return x;
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}
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void
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test_pcm_volume_24(void)
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{
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enum { N = 256 };
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static const int32_t zero[N];
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int32_t src[N];
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for (unsigned i = 0; i < N; ++i)
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src[i] = random24();
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int32_t dest[N];
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memcpy(dest, src, sizeof(src));
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g_assert_cmpint(pcm_volume(dest, sizeof(dest), SAMPLE_FORMAT_S24_P32,
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0), ==, true);
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g_assert_cmpint(memcmp(dest, zero, sizeof(zero)), ==, 0);
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memcpy(dest, src, sizeof(src));
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g_assert_cmpint(pcm_volume(dest, sizeof(dest), SAMPLE_FORMAT_S24_P32,
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PCM_VOLUME_1), ==, true);
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g_assert_cmpint(memcmp(dest, src, sizeof(src)), ==, 0);
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memcpy(dest, src, sizeof(src));
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g_assert_cmpint(pcm_volume(dest, sizeof(dest), SAMPLE_FORMAT_S24_P32,
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PCM_VOLUME_1 / 2), ==, true);
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for (unsigned i = 0; i < N; ++i) {
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g_assert_cmpint(dest[i], >=, (src[i] - 1) / 2);
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g_assert_cmpint(dest[i], <=, src[i] / 2 + 1);
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}
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}
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void
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test_pcm_volume_32(void)
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{
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enum { N = 256 };
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static const int32_t zero[N];
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int32_t src[N];
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for (unsigned i = 0; i < N; ++i)
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src[i] = g_random_int();
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int32_t dest[N];
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memcpy(dest, src, sizeof(src));
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g_assert_cmpint(pcm_volume(dest, sizeof(dest), SAMPLE_FORMAT_S32,
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0), ==, true);
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g_assert_cmpint(memcmp(dest, zero, sizeof(zero)), ==, 0);
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memcpy(dest, src, sizeof(src));
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g_assert_cmpint(pcm_volume(dest, sizeof(dest), SAMPLE_FORMAT_S32,
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PCM_VOLUME_1), ==, true);
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g_assert_cmpint(memcmp(dest, src, sizeof(src)), ==, 0);
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memcpy(dest, src, sizeof(src));
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g_assert_cmpint(pcm_volume(dest, sizeof(dest), SAMPLE_FORMAT_S32,
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PCM_VOLUME_1 / 2), ==, true);
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for (unsigned i = 0; i < N; ++i) {
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g_assert_cmpint(dest[i], >=, (src[i] - 1) / 2);
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g_assert_cmpint(dest[i], <=, src[i] / 2 + 1);
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}
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}
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void
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test_pcm_volume_float(void)
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{
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enum { N = 256 };
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static const float zero[N];
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float src[N];
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for (unsigned i = 0; i < N; ++i)
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src[i] = g_random_double_range(-1.0, 1.0);
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float dest[N];
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memcpy(dest, src, sizeof(src));
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g_assert_cmpint(pcm_volume(dest, sizeof(dest), SAMPLE_FORMAT_FLOAT,
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0), ==, true);
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g_assert_cmpint(memcmp(dest, zero, sizeof(zero)), ==, 0);
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memcpy(dest, src, sizeof(src));
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g_assert_cmpint(pcm_volume(dest, sizeof(dest), SAMPLE_FORMAT_FLOAT,
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PCM_VOLUME_1), ==, true);
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g_assert_cmpint(memcmp(dest, src, sizeof(src)), ==, 0);
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memcpy(dest, src, sizeof(src));
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g_assert_cmpint(pcm_volume(dest, sizeof(dest), SAMPLE_FORMAT_FLOAT,
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PCM_VOLUME_1 / 2), ==, true);
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for (unsigned i = 0; i < N; ++i)
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g_assert_cmpfloat(dest[i], ==, src[i] / 2);
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}
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