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#ifndef AVUTIL_AVR32_INTREADWRITE_H |
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#define AVUTIL_AVR32_INTREADWRITE_H |
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#include <stdint.h> |
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#include "config.h" |
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#include "libavutil/bswap.h" |
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#define AV_RL16 AV_RL16 |
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static av_always_inline uint16_t AV_RL16(const void *p) |
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{ |
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uint16_t v; |
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__asm__ ("ld.ub %0, %1 \n\t" |
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"ldins.b %0:l, %2 \n\t" |
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: "=&r"(v) |
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: "m"(*(const uint8_t*)p), "RKs12"(*((const uint8_t*)p+1))); |
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return v; |
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} |
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#define AV_RB16 AV_RB16 |
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static av_always_inline uint16_t AV_RB16(const void *p) |
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{ |
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uint16_t v; |
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__asm__ ("ld.ub %0, %2 \n\t" |
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"ldins.b %0:l, %1 \n\t" |
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: "=&r"(v) |
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: "RKs12"(*(const uint8_t*)p), "m"(*((const uint8_t*)p+1))); |
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return v; |
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} |
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#define AV_RB24 AV_RB24 |
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static av_always_inline uint32_t AV_RB24(const void *p) |
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{ |
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uint32_t v; |
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__asm__ ("ld.ub %0, %3 \n\t" |
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"ldins.b %0:l, %2 \n\t" |
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"ldins.b %0:u, %1 \n\t" |
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: "=&r"(v) |
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: "RKs12"(* (const uint8_t*)p), |
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"RKs12"(*((const uint8_t*)p+1)), |
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"m" (*((const uint8_t*)p+2))); |
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return v; |
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} |
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#define AV_RL24 AV_RL24 |
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static av_always_inline uint32_t AV_RL24(const void *p) |
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{ |
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uint32_t v; |
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__asm__ ("ld.ub %0, %1 \n\t" |
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"ldins.b %0:l, %2 \n\t" |
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"ldins.b %0:u, %3 \n\t" |
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: "=&r"(v) |
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: "m" (* (const uint8_t*)p), |
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"RKs12"(*((const uint8_t*)p+1)), |
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"RKs12"(*((const uint8_t*)p+2))); |
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return v; |
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} |
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#if ARCH_AVR32_AP |
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#define AV_RB32 AV_RB32 |
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static av_always_inline uint32_t AV_RB32(const void *p) |
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{ |
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uint32_t v; |
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__asm__ ("ld.w %0, %1" : "=r"(v) : "m"(*(const uint32_t*)p)); |
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return v; |
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} |
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#define AV_WB32 AV_WB32 |
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static av_always_inline void AV_WB32(void *p, uint32_t v) |
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{ |
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__asm__ ("st.w %0, %1" : "=m"(*(uint32_t*)p) : "r"(v)); |
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} |
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#define AV_RL32(p) av_bswap32(AV_RB32(p)) |
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#define AV_WL32(p, v) AV_WB32(p, av_bswap32(v)) |
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#define AV_WB64 AV_WB64 |
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static av_always_inline void AV_WB64(void *p, uint64_t v) |
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{ |
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union { uint64_t v; uint32_t hl[2]; } vv = { v }; |
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AV_WB32(p, vv.hl[0]); |
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AV_WB32((uint32_t*)p+1, vv.hl[1]); |
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} |
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#define AV_WL64 AV_WL64 |
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static av_always_inline void AV_WL64(void *p, uint64_t v) |
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{ |
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union { uint64_t v; uint32_t hl[2]; } vv = { v }; |
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AV_WL32(p, vv.hl[1]); |
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AV_WL32((uint32_t*)p+1, vv.hl[0]); |
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} |
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#else |
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#define AV_RB32 AV_RB32 |
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static av_always_inline uint32_t AV_RB32(const void *p) |
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{ |
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uint32_t v; |
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__asm__ ("ld.ub %0, %4 \n\t" |
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"ldins.b %0:l, %3 \n\t" |
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"ldins.b %0:u, %2 \n\t" |
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"ldins.b %0:t, %1 \n\t" |
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: "=&r"(v) |
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: "RKs12"(* (const uint8_t*)p), |
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"RKs12"(*((const uint8_t*)p+1)), |
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"RKs12"(*((const uint8_t*)p+2)), |
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"m" (*((const uint8_t*)p+3))); |
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return v; |
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} |
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#define AV_RL32 AV_RL32 |
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static av_always_inline uint32_t AV_RL32(const void *p) |
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{ |
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uint32_t v; |
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__asm__ ("ld.ub %0, %1 \n\t" |
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"ldins.b %0:l, %2 \n\t" |
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"ldins.b %0:u, %3 \n\t" |
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"ldins.b %0:t, %4 \n\t" |
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: "=&r"(v) |
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: "m" (* (const uint8_t*)p), |
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"RKs12"(*((const uint8_t*)p+1)), |
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"RKs12"(*((const uint8_t*)p+2)), |
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"RKs12"(*((const uint8_t*)p+3))); |
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return v; |
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} |
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#endif |
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#define AV_RB64 AV_RB64 |
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static av_always_inline uint64_t AV_RB64(const void *p) |
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{ |
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union { uint64_t v; uint32_t hl[2]; } v; |
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v.hl[0] = AV_RB32(p); |
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v.hl[1] = AV_RB32((const uint32_t*)p+1); |
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return v.v; |
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} |
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#define AV_RL64 AV_RL64 |
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static av_always_inline uint64_t AV_RL64(const void *p) |
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{ |
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union { uint64_t v; uint32_t hl[2]; } v; |
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v.hl[1] = AV_RL32(p); |
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v.hl[0] = AV_RL32((const uint32_t*)p+1); |
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return v.v; |
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} |
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#endif |
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