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- (defined(__alpha) || defined(__alpha__) || \
- defined(__mips) || defined(__mips__))
- typedef struct {
- uint16_t val;
- } __attribute__((packed)) unaligned_uint16_t;
- typedef struct {
- uint32_t val;
- } __attribute__((packed)) unaligned_uint32_t;
- UNALIGNED_OK static inline uint16_t
- EXTRACT_16BITS(const void *p)
- {
- return ((uint16_t)ntohs(((const unaligned_uint16_t *)(p))->val));
- }
- UNALIGNED_OK static inline uint32_t
- EXTRACT_32BITS(const void *p)
- {
- return ((uint32_t)ntohl(((const unaligned_uint32_t *)(p))->val));
- }
- UNALIGNED_OK static inline uint64_t
- EXTRACT_64BITS(const void *p)
- {
- return ((uint64_t)(((uint64_t)ntohl(((const unaligned_uint32_t *)(p) + 0)->val)) << 32 |
- ((uint64_t)ntohl(((const unaligned_uint32_t *)(p) + 1)->val)) << 0));
- }
- #else /* have to do it a byte at a time */
- /*
- * This isn't a GCC-compatible compiler, we don't have __attribute__,
- * or we do but we don't know of any better way with this instruction
- * set to do unaligned loads, so do unaligned loads of big-endian
- * quantities the hard way - fetch the bytes one at a time and
- * assemble them.
- */
- #define EXTRACT_16BITS(p) \
- ((uint16_t)(((uint16_t)(*((const uint8_t *)(p) + 0)) << 8) | \
- ((uint16_t)(*((const uint8_t *)(p) + 1)) << 0)))
- #define EXTRACT_32BITS(p) \
- ((uint32_t)(((uint32_t)(*((const uint8_t *)(p) + 0)) << 24) | \
- ((uint32_t)(*((const uint8_t *)(p) + 1)) << 16) | \
- ((uint32_t)(*((const uint8_t *)(p) + 2)) << 8) | \
- ((uint32_t)(*((const uint8_t *)(p) + 3)) << 0)))
- #define EXTRACT_64BITS(p) \
- ((uint64_t)(((uint64_t)(*((const uint8_t *)(p) + 0)) << 56) | \
- ((uint64_t)(*((const uint8_t *)(p) + 1)) << 48) | \
- ((uint64_t)(*((const uint8_t *)(p) + 2)) << 40) | \
- ((uint64_t)(*((const uint8_t *)(p) + 3)) << 32) | \
- ((uint64_t)(*((const uint8_t *)(p) + 4)) << 24) | \
- ((uint64_t)(*((const uint8_t *)(p) + 5)) << 16) | \
- ((uint64_t)(*((const uint8_t *)(p) + 6)) << 8) | \
- ((uint64_t)(*((const uint8_t *)(p) + 7)) << 0)))
- #endif /* must special-case unaligned accesses */
- #else /* LBL_ALIGN */
- /*
- * The processor natively handles unaligned loads, so we can just
- * cast the pointer and fetch through it.
- */
- static inline uint16_t UNALIGNED_OK
- EXTRACT_16BITS(const void *p)
- {
- return ((uint16_t)ntohs(*(const uint16_t *)(p)));
- }
- static inline uint32_t UNALIGNED_OK
- EXTRACT_32BITS(const void *p)
- {
- return ((uint32_t)ntohl(*(const uint32_t *)(p)));
- }
- static inline uint64_t UNALIGNED_OK
- EXTRACT_64BITS(const void *p)
- {
- return ((uint64_t)(((uint64_t)ntohl(*((const uint32_t *)(p) + 0))) << 32 |
- ((uint64_t)ntohl(*((const uint32_t *)(p) + 1))) << 0));
- }
- #endif /* LBL_ALIGN */
- #define EXTRACT_24BITS(p) \
- ((uint32_t)(((uint32_t)(*((const uint8_t *)(p) + 0)) << 16) | \
- ((uint32_t)(*((const uint8_t *)(p) + 1)) << 8) | \
- ((uint32_t)(*((const uint8_t *)(p) + 2)) << 0)))
- #define EXTRACT_40BITS(p) \
- ((uint64_t)(((uint64_t)(*((const uint8_t *)(p) + 0)) << 32) | \
- ((uint64_t)(*((const uint8_t *)(p) + 1)) << 24) | \
- ((uint64_t)(*((const uint8_t *)(p) + 2)) << 16) | \
- ((uint64_t)(*((const uint8_t *)(p) + 3)) << 8) | \
- ((uint64_t)(*((const uint8_t *)(p) + 4)) << 0)))
- #define EXTRACT_48BITS(p) \
- ((uint64_t)(((uint64_t)(*((const uint8_t *)(p) + 0)) << 40) | \
- ((uint64_t)(*((const uint8_t *)(p) + 1)) << 32) | \
- ((uint64_t)(*((const uint8_t *)(p) + 2)) << 24) | \
- ((uint64_t)(*((const uint8_t *)(p) + 3)) << 16) | \
- ((uint64_t)(*((const uint8_t *)(p) + 4)) << 8) | \
- ((uint64_t)(*((const uint8_t *)(p) + 5)) << 0)))
- #define EXTRACT_56BITS(p) \
- ((uint64_t)(((uint64_t)(*((const uint8_t *)(p) + 0)) << 48) | \
- ((uint64_t)(*((const uint8_t *)(p) + 1)) << 40) | \
- ((uint64_t)(*((const uint8_t *)(p) + 2)) << 32) | \
- ((uint64_t)(*((const uint8_t *)(p) + 3)) << 24) | \
- ((uint64_t)(*((const uint8_t *)(p) + 4)) << 16) | \
- ((uint64_t)(*((const uint8_t *)(p) + 5)) << 8) | \
- ((uint64_t)(*((const uint8_t *)(p) + 6)) << 0)))
- /*
- * Macros to extract possibly-unaligned little-endian integral values.
- * XXX - do loads on little-endian machines that support unaligned loads?
- */
- #define EXTRACT_LE_16BITS(p) \
- ((uint16_t)(((uint16_t)(*((const uint8_t *)(p) + 1)) << 8) | \
- ((uint16_t)(*((const uint8_t *)(p) + 0)) << 0)))
- #define EXTRACT_LE_32BITS(p) \
- ((uint32_t)(((uint32_t)(*((const uint8_t *)(p) + 3)) << 24) | \
- ((uint32_t)(*((const uint8_t *)(p) + 2)) << 16) | \
- ((uint32_t)(*((const uint8_t *)(p) + 1)) << 8) | \
- ((uint32_t)(*((const uint8_t *)(p) + 0)) << 0)))
- #define EXTRACT_LE_24BITS(p) \
- ((uint32_t)(((uint32_t)(*((const uint8_t *)(p) + 2)) << 16) | \
- ((uint32_t)(*((const uint8_t *)(p) + 1)) << 8) | \
- ((uint32_t)(*((const uint8_t *)(p) + 0)) << 0)))
- #define EXTRACT_LE_64BITS(p) \
- ((uint64_t)(((uint64_t)(*((const uint8_t *)(p) + 7)) << 56) | \
- ((uint64_t)(*((const uint8_t *)(p) + 6)) << 48) | \
- ((uint64_t)(*((const uint8_t *)(p) + 5)) << 40) | \
- ((uint64_t)(*((const uint8_t *)(p) + 4)) << 32) | \
- ((uint64_t)(*((const uint8_t *)(p) + 3)) << 24) | \
- ((uint64_t)(*((const uint8_t *)(p) + 2)) << 16) | \
- ((uint64_t)(*((const uint8_t *)(p) + 1)) << 8) | \
- ((uint64_t)(*((const uint8_t *)(p) + 0)) << 0)))
- /*
- * Macros to check the presence of the values in question.
- */
- #define ND_TTEST_8BITS(p) ND_TTEST2(*(p), 1)
- #define ND_TCHECK_8BITS(p) ND_TCHECK2(*(p), 1)
- #define ND_TTEST_16BITS(p) ND_TTEST2(*(p), 2)
- #define ND_TCHECK_16BITS(p) ND_TCHECK2(*(p), 2)
- #define ND_TTEST_24BITS(p) ND_TTEST2(*(p), 3)
- #define ND_TCHECK_24BITS(p) ND_TCHECK2(*(p), 3)
- #define ND_TTEST_32BITS(p) ND_TTEST2(*(p), 4)
- #define ND_TCHECK_32BITS(p) ND_TCHECK2(*(p), 4)
- #define ND_TTEST_40BITS(p) ND_TTEST2(*(p), 5)
- #define ND_TCHECK_40BITS(p) ND_TCHECK2(*(p), 5)
- #define ND_TTEST_48BITS(p) ND_TTEST2(*(p), 6)
- #define ND_TCHECK_48BITS(p) ND_TCHECK2(*(p), 6)
- #define ND_TTEST_56BITS(p) ND_TTEST2(*(p), 7)
- #define ND_TCHECK_56BITS(p) ND_TCHECK2(*(p), 7)
- #define ND_TTEST_64BITS(p) ND_TTEST2(*(p), 8)
- #define ND_TCHECK_64BITS(p) ND_TCHECK2(*(p), 8)
- #define ND_TTEST_128BITS(p) ND_TTEST2(*(p), 16)
- #define ND_TCHECK_128BITS(p) ND_TCHECK2(*(p), 16)
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