mirror of
https://gitlab.freedesktop.org/pipewire/pipewire.git
synced 2025-10-29 05:40:27 -04:00
This provides access to GNU C library-style endian and byteswap functions. Windows doesn't provide pre-processor defines for endianness, but all current Windows architectures (X32, X64, ARM) are little-endian.
478 lines
15 KiB
C
478 lines
15 KiB
C
/* Spa */
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/* SPDX-FileCopyrightText: Copyright © 2019 Wim Taymans */
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/* SPDX-License-Identifier: MIT */
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#include <math.h>
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#include <spa/utils/defs.h>
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#include <spa/utils/endian.h>
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#include <spa/utils/string.h>
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#define f32_round(a) lrintf(a)
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#define ITOF(type,v,scale,offs) \
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(((type)(v)) * (1.0f / (scale)) - (offs))
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#define FTOI(type,v,scale,offs,noise,min,max) \
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(type)f32_round(SPA_CLAMPF((v) * (scale) + (offs) + (noise), min, max))
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#define FMT_OPS_MAX_ALIGN 32
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#define U8_MIN 0u
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#define U8_MAX 255u
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#define U8_SCALE 128.f
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#define U8_OFFS 128.f
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#define U8_TO_F32(v) ITOF(uint8_t, v, U8_SCALE, 1.0f)
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#define F32_TO_U8_D(v,d) FTOI(uint8_t, v, U8_SCALE, U8_OFFS, d, U8_MIN, U8_MAX)
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#define F32_TO_U8(v) F32_TO_U8_D(v, 0.0f)
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#define S8_MIN -128
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#define S8_MAX 127
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#define S8_SCALE 128.0f
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#define S8_TO_F32(v) ITOF(int8_t, v, S8_SCALE, 0.0f)
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#define F32_TO_S8_D(v,d) FTOI(int8_t, v, S8_SCALE, 0.0f, d, S8_MIN, S8_MAX)
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#define F32_TO_S8(v) F32_TO_S8_D(v, 0.0f);
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#define U16_MIN 0u
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#define U16_MAX 65535u
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#define U16_SCALE 32768.f
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#define U16_OFFS 32768.f
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#define U16_TO_F32(v) ITOF(uint16_t, v, U16_SCALE, 1.0f)
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#define U16S_TO_F32(v) U16_TO_F32(bswap_16(v))
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#define F32_TO_U16_D(v,d) FTOI(uint16_t, v, U16_SCALE, U16_OFFS, d, U16_MIN, U16_MAX)
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#define F32_TO_U16(v) F32_TO_U16_D(v, 0.0f);
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#define F32_TO_U16S_D(v,d) bswap_16(F32_TO_U16_D(v,d))
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#define F32_TO_U16S(v) bswap_16(F32_TO_U16(v))
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#define S16_MIN -32768
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#define S16_MAX 32767
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#define S16_SCALE 32768.0f
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#define S16_TO_F32(v) ITOF(int16_t, v, S16_SCALE, 0.0f)
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#define S16S_TO_F32(v) S16_TO_F32(bswap_16(v))
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#define F32_TO_S16_D(v,d) FTOI(int16_t, v, S16_SCALE, 0.0f, d, S16_MIN, S16_MAX)
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#define F32_TO_S16(v) F32_TO_S16_D(v, 0.0f)
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#define F32_TO_S16S_D(v,d) bswap_16(F32_TO_S16_D(v,d))
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#define F32_TO_S16S(v) bswap_16(F32_TO_S16(v))
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#define U24_MIN 0u
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#define U24_MAX 16777215u
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#define U24_SCALE 8388608.f
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#define U24_OFFS 8388608.f
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#define U24_TO_F32(v) ITOF(uint32_t, u24_to_u32(v), U24_SCALE, 1.0f)
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#define F32_TO_U24_D(v,d) u32_to_u24(FTOI(uint32_t, v, U24_SCALE, U24_OFFS, d, U24_MIN, U24_MAX))
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#define F32_TO_U24(v) F32_TO_U24_D(v, 0.0f)
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#define S24_MIN -8388608
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#define S24_MAX 8388607
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#define S24_SCALE 8388608.0f
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#define S24_TO_F32(v) ITOF(int32_t, s24_to_s32(v), S24_SCALE, 0.0f)
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#define S24S_TO_F32(v) S24_TO_F32(bswap_s24(v))
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#define F32_TO_S24_D(v,d) s32_to_s24(FTOI(int32_t, v, S24_SCALE, 0.0f, d, S24_MIN, S24_MAX))
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#define F32_TO_S24(v) F32_TO_S24_D(v, 0.0f)
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#define F32_TO_S24S(v) bswap_s24(F32_TO_S24(v))
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#define U24_32_TO_U32(v) (((uint32_t)(v)) << 8)
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#define U24_32_TO_F32(v) U32_TO_F32(U24_32_TO_U32(v))
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#define U24_32S_TO_F32(v) U24_32_TO_F32(bswap_32(v))
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#define F32_TO_U24_32_D(v,d) FTOI(uint32_t, v, U24_SCALE, U24_OFFS, d, U24_MIN, U24_MAX)
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#define F32_TO_U24_32(v) F32_TO_U24_32_D(v, 0.0f)
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#define F32_TO_U24_32S(v) bswap_32(F32_TO_U24_32(v))
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#define F32_TO_U24_32S_D(v,d) bswap_32(F32_TO_U24_32_D(v,d))
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#define U32_TO_U24_32(v) (((uint32_t)(v)) >> 8)
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#define S25_MIN -16777216
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#define S25_MAX 16777215
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#define S25_SCALE 16777216.0f
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#define S25_32_TO_F32(v) ITOF(int32_t, v, S25_SCALE, 0.0f)
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#define S25_32S_TO_F32(v) S25_32_TO_F32(bswap_32(v))
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#define F32_TO_S25_32_D(v,d) FTOI(int32_t, v, S25_SCALE, 0.0f, d, S25_MIN, S25_MAX)
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#define F32_TO_S25_32(v) F32_TO_S25_32_D(v, 0.0f)
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#define F32_TO_S25_32S(v) bswap_32(F32_TO_S25_32(v))
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#define F32_TO_S25_32S_D(v,d) bswap_32(F32_TO_S25_32_D(v,d))
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#define S25_32_TO_S32(v) ((int32_t)(((uint32_t)(v)) << 7))
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#define S32_TO_S25_32(v) (((int32_t)(v)) >> 7)
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#define U32_MIN 0u
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#define U32_MAX 4294967295u
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#define U32_SCALE 2147483648.f
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#define U32_OFFS 2147483648.f
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#define U32_TO_F32(v) ITOF(uint32_t, U32_TO_U24_32(v), U24_SCALE, 1.0f)
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#define F32_TO_U32(v) U24_32_TO_U32(F32_TO_U24_32(v))
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#define F32_TO_U32_D(v,d) U24_32_TO_U32(F32_TO_U24_32_D(v,d))
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#define S24_32_TO_S32(v) ((int32_t)(((uint32_t)(v)) << 8))
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#define S24_32_TO_F32(v) S32_TO_F32(S24_32_TO_S32(v))
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#define S24_32S_TO_F32(v) S24_32_TO_F32(bswap_32(v))
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#define F32_TO_S24_32_D(v,d) FTOI(int32_t, v, S24_SCALE, 0.0f, d, S24_MIN, S24_MAX)
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#define F32_TO_S24_32(v) F32_TO_S24_32_D(v, 0.0f)
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#define F32_TO_S24_32S(v) bswap_32(F32_TO_S24_32(v))
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#define F32_TO_S24_32S_D(v,d) bswap_32(F32_TO_S24_32_D(v,d))
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#define S32_TO_S24_32(v) (((int32_t)(v)) >> 8)
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#define S32_MIN -2147483648
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#define S32_MAX 2147483647
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#define S32_SCALE_I2F 2147483648.0f
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#define S32_TO_F32(v) ITOF(int32_t, v, S32_SCALE_I2F, 0.0f)
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#define S32S_TO_F32(v) S32_TO_F32(bswap_32(v))
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#define S32_MIN_F2I ((int32_t)(((uint32_t)(S25_MIN)) << 7))
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#define S32_MAX_F2I ((S25_MAX) << 7)
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#define S32_SCALE_F2I (-((float)(S32_MIN_F2I)))
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#define F32_TO_S32_D(v,d) FTOI(int32_t, v, S32_SCALE_F2I, 0.0f, d, S32_MIN_F2I, S32_MAX_F2I)
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#define F32_TO_S32(v) F32_TO_S32_D(v, 0.0f)
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#define F32_TO_S32S(v) bswap_32(F32_TO_S32(v))
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#define F32_TO_S32S_D(v,d) bswap_32(F32_TO_S32_D(v,d))
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typedef struct {
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#if __BYTE_ORDER == __LITTLE_ENDIAN
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uint8_t v3;
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uint8_t v2;
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uint8_t v1;
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#else
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uint8_t v1;
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uint8_t v2;
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uint8_t v3;
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#endif
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} __attribute__ ((packed)) uint24_t;
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typedef struct {
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#if __BYTE_ORDER == __LITTLE_ENDIAN
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uint8_t v3;
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uint8_t v2;
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int8_t v1;
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#else
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int8_t v1;
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uint8_t v2;
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uint8_t v3;
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#endif
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} __attribute__ ((packed)) int24_t;
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static inline uint32_t u24_to_u32(uint24_t src)
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{
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return ((uint32_t)src.v1 << 16) | ((uint32_t)src.v2 << 8) | (uint32_t)src.v3;
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}
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#define U32_TO_U24(s) (uint24_t) { .v1 = (uint8_t)(((uint32_t)s) >> 16), \
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.v2 = (uint8_t)(((uint32_t)s) >> 8), .v3 = (uint8_t)((uint32_t)s) }
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static inline uint24_t u32_to_u24(uint32_t src)
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{
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return U32_TO_U24(src);
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}
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static inline int32_t s24_to_s32(int24_t src)
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{
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return ((uint32_t)((int32_t)src.v1 & 0xFFFF) << 16) | ((uint32_t)src.v2 << 8) | (uint32_t)src.v3;
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}
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#define S32_TO_S24(s) (int24_t) { .v1 = (int8_t)(((int32_t)s) >> 16), \
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.v2 = (uint8_t)(((uint32_t)s) >> 8), .v3 = (uint8_t)((uint32_t)s) }
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static inline int24_t s32_to_s24(int32_t src)
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{
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return S32_TO_S24(src);
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}
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static inline uint24_t bswap_u24(uint24_t src)
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{
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return (uint24_t) { .v1 = src.v3, .v2 = src.v2, .v3 = src.v1 };
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}
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static inline int24_t bswap_s24(int24_t src)
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{
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return (int24_t) { .v1 = src.v3, .v2 = src.v2, .v3 = src.v1 };
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}
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#define F32_TO_F32S(v) \
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bswap_32((union { uint32_t i; float f; }){ .f = (v) }.i)
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#define F32S_TO_F32(v) \
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((union { uint32_t i; float f; }){ .i = bswap_32(v) }.f)
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#define F64_TO_F64S(v) \
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bswap_32((union { uint64_t i; double d; }){ .d = (v) }.i)
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#define F64S_TO_F64(v) \
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((union { uint64_t i; double d; }){ .i = bswap_32(v) }.d)
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#define NS_MAX 8
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#define NS_MASK (NS_MAX-1)
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struct shaper {
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float e[NS_MAX * 2];
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uint32_t idx;
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float r;
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};
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struct convert {
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uint32_t noise_bits;
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#define DITHER_METHOD_NONE 0
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#define DITHER_METHOD_RECTANGULAR 1
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#define DITHER_METHOD_TRIANGULAR 2
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#define DITHER_METHOD_TRIANGULAR_HF 3
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#define DITHER_METHOD_WANNAMAKER_3 4
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#define DITHER_METHOD_LIPSHITZ 5
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uint32_t method;
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uint32_t src_fmt;
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uint32_t dst_fmt;
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uint32_t n_channels;
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uint32_t rate;
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uint32_t cpu_flags;
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const char *func_name;
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unsigned int is_passthrough:1;
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float scale;
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uint32_t *random;
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int32_t *prev;
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#define NOISE_METHOD_NONE 0
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#define NOISE_METHOD_RECTANGULAR 1
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#define NOISE_METHOD_TRIANGULAR 2
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#define NOISE_METHOD_TRIANGULAR_HF 3
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#define NOISE_METHOD_PATTERN 4
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uint32_t noise_method;
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float *noise;
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uint32_t noise_size;
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const float *ns;
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uint32_t n_ns;
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struct shaper shaper[64];
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void (*update_noise) (struct convert *conv, float *noise, uint32_t n_samples);
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void (*process) (struct convert *conv, void * SPA_RESTRICT dst[], const void * SPA_RESTRICT src[],
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uint32_t n_samples);
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void (*free) (struct convert *conv);
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void *data;
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};
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int convert_init(struct convert *conv);
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static const struct dither_method_info {
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uint32_t method;
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const char *label;
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const char *description;
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} dither_method_info[] = {
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[DITHER_METHOD_NONE] = { DITHER_METHOD_NONE,
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"none", "Disabled", },
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[DITHER_METHOD_RECTANGULAR] = { DITHER_METHOD_RECTANGULAR,
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"rectangular", "Rectangular dithering", },
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[DITHER_METHOD_TRIANGULAR] = { DITHER_METHOD_TRIANGULAR,
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"triangular", "Triangular dithering", },
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[DITHER_METHOD_TRIANGULAR_HF] = { DITHER_METHOD_TRIANGULAR_HF,
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"triangular-hf", "Sloped Triangular dithering", },
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[DITHER_METHOD_WANNAMAKER_3] = { DITHER_METHOD_WANNAMAKER_3,
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"wannamaker3", "Wannamaker 3 dithering", },
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[DITHER_METHOD_LIPSHITZ] = { DITHER_METHOD_LIPSHITZ,
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"shaped5", "Lipshitz 5 dithering", },
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};
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static inline uint32_t dither_method_from_label(const char *label)
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{
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SPA_FOR_EACH_ELEMENT_VAR(dither_method_info, i) {
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if (spa_streq(i->label, label))
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return i->method;
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}
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return DITHER_METHOD_NONE;
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}
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#define convert_update_noise(conv,...) (conv)->update_noise(conv, __VA_ARGS__)
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#define convert_process(conv,...) (conv)->process(conv, __VA_ARGS__)
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#define convert_free(conv) (conv)->free(conv)
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#define DEFINE_NOISE_FUNCTION(name,arch) \
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void conv_noise_##name##_##arch(struct convert *conv, float *noise, \
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uint32_t n_samples)
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DEFINE_NOISE_FUNCTION(none, c);
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DEFINE_NOISE_FUNCTION(rect, c);
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DEFINE_NOISE_FUNCTION(tri, c);
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DEFINE_NOISE_FUNCTION(tri_hf, c);
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DEFINE_NOISE_FUNCTION(pattern, c);
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#if defined(HAVE_SSE2)
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DEFINE_NOISE_FUNCTION(rect, sse2);
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DEFINE_NOISE_FUNCTION(tri, sse2);
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DEFINE_NOISE_FUNCTION(tri_hf, sse2);
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#endif
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#undef DEFINE_NOISE_FUNCTION
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#define DEFINE_FUNCTION(name,arch) \
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void conv_##name##_##arch(struct convert *conv, void * SPA_RESTRICT dst[], \
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const void * SPA_RESTRICT src[], uint32_t n_samples)
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DEFINE_FUNCTION(copy8d, c);
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DEFINE_FUNCTION(copy8, c);
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DEFINE_FUNCTION(copy16d, c);
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DEFINE_FUNCTION(copy16, c);
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DEFINE_FUNCTION(copy24d, c);
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DEFINE_FUNCTION(copy24, c);
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DEFINE_FUNCTION(copy32d, c);
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DEFINE_FUNCTION(copy32, c);
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DEFINE_FUNCTION(copy64d, c);
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DEFINE_FUNCTION(copy64, c);
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DEFINE_FUNCTION(u8d_to_f32d, c);
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DEFINE_FUNCTION(u8_to_f32, c);
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DEFINE_FUNCTION(u8_to_f32d, c);
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DEFINE_FUNCTION(u8d_to_f32, c);
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DEFINE_FUNCTION(s8d_to_f32d, c);
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DEFINE_FUNCTION(s8_to_f32, c);
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DEFINE_FUNCTION(s8_to_f32d, c);
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DEFINE_FUNCTION(s8d_to_f32, c);
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DEFINE_FUNCTION(ulaw_to_f32d, c);
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DEFINE_FUNCTION(alaw_to_f32d, c);
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DEFINE_FUNCTION(u16_to_f32, c);
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DEFINE_FUNCTION(u16_to_f32d, c);
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DEFINE_FUNCTION(s16d_to_f32d, c);
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DEFINE_FUNCTION(s16_to_f32, c);
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DEFINE_FUNCTION(s16_to_f32d, c);
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DEFINE_FUNCTION(s16s_to_f32d, c);
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DEFINE_FUNCTION(s16d_to_f32, c);
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DEFINE_FUNCTION(u32_to_f32, c);
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DEFINE_FUNCTION(u32_to_f32d, c);
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DEFINE_FUNCTION(s32d_to_f32d, c);
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DEFINE_FUNCTION(s32_to_f32, c);
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DEFINE_FUNCTION(s32_to_f32d, c);
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DEFINE_FUNCTION(s32s_to_f32d, c);
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DEFINE_FUNCTION(s32d_to_f32, c);
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DEFINE_FUNCTION(u24_to_f32, c);
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DEFINE_FUNCTION(u24_to_f32d, c);
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DEFINE_FUNCTION(s24d_to_f32d, c);
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DEFINE_FUNCTION(s24_to_f32, c);
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DEFINE_FUNCTION(s24_to_f32d, c);
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DEFINE_FUNCTION(s24s_to_f32d, c);
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DEFINE_FUNCTION(s24d_to_f32, c);
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DEFINE_FUNCTION(u24_32_to_f32, c);
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DEFINE_FUNCTION(u24_32_to_f32d, c);
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DEFINE_FUNCTION(s24_32d_to_f32d, c);
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DEFINE_FUNCTION(s24_32_to_f32, c);
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DEFINE_FUNCTION(s24_32_to_f32d, c);
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DEFINE_FUNCTION(s24_32s_to_f32d, c);
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DEFINE_FUNCTION(s24_32d_to_f32, c);
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DEFINE_FUNCTION(f64d_to_f32d, c);
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DEFINE_FUNCTION(f64_to_f32, c);
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DEFINE_FUNCTION(f64_to_f32d, c);
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DEFINE_FUNCTION(f64s_to_f32d, c);
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DEFINE_FUNCTION(f64d_to_f32, c);
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DEFINE_FUNCTION(f32d_to_u8d, c);
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DEFINE_FUNCTION(f32d_to_u8d_noise, c);
|
|
DEFINE_FUNCTION(f32d_to_u8d_shaped, c);
|
|
DEFINE_FUNCTION(f32_to_u8, c);
|
|
DEFINE_FUNCTION(f32_to_u8d, c);
|
|
DEFINE_FUNCTION(f32d_to_u8, c);
|
|
DEFINE_FUNCTION(f32d_to_u8_noise, c);
|
|
DEFINE_FUNCTION(f32d_to_u8_shaped, c);
|
|
DEFINE_FUNCTION(f32d_to_s8d, c);
|
|
DEFINE_FUNCTION(f32d_to_s8d_noise, c);
|
|
DEFINE_FUNCTION(f32d_to_s8d_shaped, c);
|
|
DEFINE_FUNCTION(f32_to_s8, c);
|
|
DEFINE_FUNCTION(f32_to_s8d, c);
|
|
DEFINE_FUNCTION(f32d_to_s8, c);
|
|
DEFINE_FUNCTION(f32d_to_s8_noise, c);
|
|
DEFINE_FUNCTION(f32d_to_s8_shaped, c);
|
|
DEFINE_FUNCTION(f32d_to_alaw, c);
|
|
DEFINE_FUNCTION(f32d_to_ulaw, c);
|
|
DEFINE_FUNCTION(f32_to_u16, c);
|
|
DEFINE_FUNCTION(f32d_to_u16, c);
|
|
DEFINE_FUNCTION(f32d_to_s16d, c);
|
|
DEFINE_FUNCTION(f32d_to_s16d_noise, c);
|
|
DEFINE_FUNCTION(f32d_to_s16d_shaped, c);
|
|
DEFINE_FUNCTION(f32_to_s16, c);
|
|
DEFINE_FUNCTION(f32_to_s16d, c);
|
|
DEFINE_FUNCTION(f32d_to_s16, c);
|
|
DEFINE_FUNCTION(f32d_to_s16_noise, c);
|
|
DEFINE_FUNCTION(f32d_to_s16_shaped, c);
|
|
DEFINE_FUNCTION(f32d_to_s16s, c);
|
|
DEFINE_FUNCTION(f32d_to_s16s_noise, c);
|
|
DEFINE_FUNCTION(f32d_to_s16s_shaped, c);
|
|
DEFINE_FUNCTION(f32_to_u32, c);
|
|
DEFINE_FUNCTION(f32d_to_u32, c);
|
|
DEFINE_FUNCTION(f32d_to_s32d, c);
|
|
DEFINE_FUNCTION(f32d_to_s32d_noise, c);
|
|
DEFINE_FUNCTION(f32_to_s32, c);
|
|
DEFINE_FUNCTION(f32_to_s32d, c);
|
|
DEFINE_FUNCTION(f32d_to_s32, c);
|
|
DEFINE_FUNCTION(f32d_to_s32_noise, c);
|
|
DEFINE_FUNCTION(f32d_to_s32s, c);
|
|
DEFINE_FUNCTION(f32d_to_s32s_noise, c);
|
|
DEFINE_FUNCTION(f32_to_u24, c);
|
|
DEFINE_FUNCTION(f32d_to_u24, c);
|
|
DEFINE_FUNCTION(f32d_to_s24d, c);
|
|
DEFINE_FUNCTION(f32d_to_s24d_noise, c);
|
|
DEFINE_FUNCTION(f32_to_s24, c);
|
|
DEFINE_FUNCTION(f32_to_s24d, c);
|
|
DEFINE_FUNCTION(f32d_to_s24, c);
|
|
DEFINE_FUNCTION(f32d_to_s24_noise, c);
|
|
DEFINE_FUNCTION(f32d_to_s24s, c);
|
|
DEFINE_FUNCTION(f32d_to_s24s_noise, c);
|
|
DEFINE_FUNCTION(f32_to_u24_32, c);
|
|
DEFINE_FUNCTION(f32d_to_u24_32, c);
|
|
DEFINE_FUNCTION(f32d_to_s24_32d, c);
|
|
DEFINE_FUNCTION(f32d_to_s24_32d_noise, c);
|
|
DEFINE_FUNCTION(f32_to_s24_32, c);
|
|
DEFINE_FUNCTION(f32_to_s24_32d, c);
|
|
DEFINE_FUNCTION(f32d_to_s24_32, c);
|
|
DEFINE_FUNCTION(f32d_to_s24_32_noise, c);
|
|
DEFINE_FUNCTION(f32d_to_s24_32s, c);
|
|
DEFINE_FUNCTION(f32d_to_s24_32s_noise, c);
|
|
DEFINE_FUNCTION(f32d_to_f64d, c);
|
|
DEFINE_FUNCTION(f32_to_f64, c);
|
|
DEFINE_FUNCTION(f32_to_f64d, c);
|
|
DEFINE_FUNCTION(f32d_to_f64, c);
|
|
DEFINE_FUNCTION(f32d_to_f64s, c);
|
|
DEFINE_FUNCTION(8_to_8d, c);
|
|
DEFINE_FUNCTION(16_to_16d, c);
|
|
DEFINE_FUNCTION(24_to_24d, c);
|
|
DEFINE_FUNCTION(32_to_32d, c);
|
|
DEFINE_FUNCTION(32s_to_32d, c);
|
|
DEFINE_FUNCTION(64_to_64d, c);
|
|
DEFINE_FUNCTION(64s_to_64sd, c);
|
|
DEFINE_FUNCTION(8d_to_8, c);
|
|
DEFINE_FUNCTION(16d_to_16, c);
|
|
DEFINE_FUNCTION(24d_to_24, c);
|
|
DEFINE_FUNCTION(32d_to_32, c);
|
|
DEFINE_FUNCTION(32d_to_32s, c);
|
|
DEFINE_FUNCTION(64d_to_64, c);
|
|
DEFINE_FUNCTION(64sd_to_64s, c);
|
|
|
|
#if defined(HAVE_NEON)
|
|
DEFINE_FUNCTION(s16_to_f32d_2, neon);
|
|
DEFINE_FUNCTION(s16_to_f32d, neon);
|
|
DEFINE_FUNCTION(f32d_to_s16, neon);
|
|
#endif
|
|
#if defined(HAVE_SSE2)
|
|
DEFINE_FUNCTION(s16_to_f32d_2, sse2);
|
|
DEFINE_FUNCTION(s16_to_f32d, sse2);
|
|
DEFINE_FUNCTION(s24_to_f32d, sse2);
|
|
DEFINE_FUNCTION(s32_to_f32d, sse2);
|
|
DEFINE_FUNCTION(f32d_to_s32, sse2);
|
|
DEFINE_FUNCTION(f32d_to_s32_noise, sse2);
|
|
DEFINE_FUNCTION(f32_to_s16, sse2);
|
|
DEFINE_FUNCTION(f32d_to_s16_2, sse2);
|
|
DEFINE_FUNCTION(f32d_to_s16, sse2);
|
|
DEFINE_FUNCTION(f32d_to_s16_noise, sse2);
|
|
DEFINE_FUNCTION(f32d_to_s16d, sse2);
|
|
DEFINE_FUNCTION(f32d_to_s16d_noise, sse2);
|
|
DEFINE_FUNCTION(32_to_32d, sse2);
|
|
DEFINE_FUNCTION(32s_to_32d, sse2);
|
|
DEFINE_FUNCTION(32d_to_32, sse2);
|
|
DEFINE_FUNCTION(32d_to_32s, sse2);
|
|
#endif
|
|
#if defined(HAVE_SSSE3)
|
|
DEFINE_FUNCTION(s24_to_f32d, ssse3);
|
|
#endif
|
|
#if defined(HAVE_SSE41)
|
|
DEFINE_FUNCTION(s24_to_f32d, sse41);
|
|
#endif
|
|
#if defined(HAVE_AVX2)
|
|
DEFINE_FUNCTION(s16_to_f32d_2, avx2);
|
|
DEFINE_FUNCTION(s16_to_f32d, avx2);
|
|
DEFINE_FUNCTION(s24_to_f32d, avx2);
|
|
DEFINE_FUNCTION(s32_to_f32d, avx2);
|
|
DEFINE_FUNCTION(f32d_to_s32, avx2);
|
|
DEFINE_FUNCTION(f32d_to_s16_4, avx2);
|
|
DEFINE_FUNCTION(f32d_to_s16_2, avx2);
|
|
DEFINE_FUNCTION(f32d_to_s16, avx2);
|
|
#endif
|
|
|
|
#undef DEFINE_FUNCTION
|