mirror of https://github.com/ipxe/ipxe.git
[libc] Rewrite byte-swapping code
Signed-off-by: Michael Brown <mcb30@ipxe.org>pull/34/head
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8ab4b00442
commit
01d16d821f
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@ -1,8 +0,0 @@
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#ifndef ETHERBOOT_BITS_ENDIAN_H
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#define ETHERBOOT_BITS_ENDIAN_H
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FILE_LICENCE ( GPL2_OR_LATER );
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#define __BYTE_ORDER __LITTLE_ENDIAN
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#endif /* ETHERBOOT_BITS_ENDIAN_H */
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@ -0,0 +1,8 @@
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#ifndef _BITS_ENDIAN_H
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#define _BITS_ENDIAN_H
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FILE_LICENCE ( GPL2_OR_LATER_OR_UBDL );
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#define __BYTE_ORDER __LITTLE_ENDIAN
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#endif /* _BITS_ENDIAN_H */
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@ -1,6 +0,0 @@
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#ifndef ETHERBOOT_BITS_ENDIAN_H
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#define ETHERBOOT_BITS_ENDIAN_H
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#define __BYTE_ORDER __LITTLE_ENDIAN
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#endif /* ETHERBOOT_BITS_ENDIAN_H */
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@ -601,9 +601,9 @@ static int eepro_probe ( struct nic *nic, struct isa_device *isa ) {
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l_eepro = 0;
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name = "Intel 82595-based LAN card";
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}
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station_addr.saddr[0] = swap16(station_addr.saddr[0]);
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station_addr.saddr[1] = swap16(station_addr.saddr[1]);
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station_addr.saddr[2] = swap16(station_addr.saddr[2]);
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station_addr.saddr[0] = bswap_16(station_addr.saddr[0]);
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station_addr.saddr[1] = bswap_16(station_addr.saddr[1]);
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station_addr.saddr[2] = bswap_16(station_addr.saddr[2]);
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for (i = 0; i < ETH_ALEN; i++) {
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nic->node_addr[i] = station_addr.caddr[i];
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}
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@ -1,35 +0,0 @@
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#ifndef ETHERBOOT_BIG_BSWAP_H
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#define ETHERBOOT_BIG_BSWAP_H
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#define htonll(x) (x)
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#define ntohll(x) (x)
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#define ntohl(x) (x)
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#define htonl(x) (x)
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#define ntohs(x) (x)
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#define htons(x) (x)
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#define cpu_to_le64(x) __bswap_64(x)
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#define cpu_to_le32(x) __bswap_32(x)
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#define cpu_to_le16(x) __bswap_16(x)
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#define cpu_to_be64(x) (x)
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#define cpu_to_be32(x) (x)
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#define cpu_to_be16(x) (x)
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#define le64_to_cpu(x) __bswap_64(x)
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#define le32_to_cpu(x) __bswap_32(x)
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#define le16_to_cpu(x) __bswap_16(x)
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#define be64_to_cpu(x) (x)
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#define be32_to_cpu(x) (x)
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#define be16_to_cpu(x) (x)
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#define cpu_to_le64s(x) __bswap_64s(x)
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#define cpu_to_le32s(x) __bswap_32s(x)
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#define cpu_to_le16s(x) __bswap_16s(x)
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#define cpu_to_be64s(x) do {} while (0)
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#define cpu_to_be32s(x) do {} while (0)
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#define cpu_to_be16s(x) do {} while (0)
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#define le64_to_cpus(x) __bswap_64s(x)
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#define le32_to_cpus(x) __bswap_32s(x)
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#define le16_to_cpus(x) __bswap_16s(x)
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#define be64_to_cpus(x) do {} while (0)
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#define be32_to_cpus(x) do {} while (0)
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#define be16_to_cpus(x) do {} while (0)
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#endif /* ETHERBOOT_BIG_BSWAP_H */
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@ -1,59 +1,138 @@
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#ifndef ETHERBOOT_BYTESWAP_H
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#define ETHERBOOT_BYTESWAP_H
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#ifndef BYTESWAP_H
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#define BYTESWAP_H
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FILE_LICENCE ( GPL2_OR_LATER );
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FILE_LICENCE ( GPL2_OR_LATER_OR_UBDL );
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#include "endian.h"
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#include "bits/byteswap.h"
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#include <stdint.h>
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#include <endian.h>
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#include <bits/byteswap.h>
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#define __bswap_constant_16(x) \
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((uint16_t)((((uint16_t)(x) & 0x00ff) << 8) | \
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(((uint16_t)(x) & 0xff00) >> 8)))
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/**
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* Byte-swap a 16-bit constant
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*
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* @v value Constant value
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* @ret swapped Byte-swapped value
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*/
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#define __bswap_constant_16( value ) \
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( ( ( (value) & 0x00ff ) << 8 ) | \
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( ( (value) & 0xff00 ) >> 8 ) )
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#define __bswap_constant_32(x) \
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((uint32_t)((((uint32_t)(x) & 0x000000ffU) << 24) | \
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(((uint32_t)(x) & 0x0000ff00U) << 8) | \
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(((uint32_t)(x) & 0x00ff0000U) >> 8) | \
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(((uint32_t)(x) & 0xff000000U) >> 24)))
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/**
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* Byte-swap a 32-bit constant
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*
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* @v value Constant value
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* @ret swapped Byte-swapped value
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*/
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#define __bswap_constant_32( value ) \
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( ( ( (value) & 0x000000ffUL ) << 24 ) | \
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( ( (value) & 0x0000ff00UL ) << 8 ) | \
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( ( (value) & 0x00ff0000UL ) >> 8 ) | \
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( ( (value) & 0xff000000UL ) >> 24 ) )
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#define __bswap_constant_64(x) \
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((uint64_t)((((uint64_t)(x) & 0x00000000000000ffULL) << 56) | \
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(((uint64_t)(x) & 0x000000000000ff00ULL) << 40) | \
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(((uint64_t)(x) & 0x0000000000ff0000ULL) << 24) | \
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(((uint64_t)(x) & 0x00000000ff000000ULL) << 8) | \
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(((uint64_t)(x) & 0x000000ff00000000ULL) >> 8) | \
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(((uint64_t)(x) & 0x0000ff0000000000ULL) >> 24) | \
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(((uint64_t)(x) & 0x00ff000000000000ULL) >> 40) | \
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(((uint64_t)(x) & 0xff00000000000000ULL) >> 56)))
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/**
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* Byte-swap a 64-bit constant
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*
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* @v value Constant value
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* @ret swapped Byte-swapped value
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*/
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#define __bswap_constant_64( value ) \
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( ( ( (value) & 0x00000000000000ffULL ) << 56 ) | \
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( ( (value) & 0x000000000000ff00ULL ) << 40 ) | \
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( ( (value) & 0x0000000000ff0000ULL ) << 24 ) | \
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( ( (value) & 0x00000000ff000000ULL ) << 8 ) | \
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( ( (value) & 0x000000ff00000000ULL ) >> 8 ) | \
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( ( (value) & 0x0000ff0000000000ULL ) >> 24 ) | \
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( ( (value) & 0x00ff000000000000ULL ) >> 40 ) | \
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( ( (value) & 0xff00000000000000ULL ) >> 56 ) )
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#define __bswap_16(x) \
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((uint16_t)(__builtin_constant_p(x) ? \
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__bswap_constant_16(x) : \
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__bswap_variable_16(x)))
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/**
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* Byte-swap a 16-bit value
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*
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* @v value Value
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* @ret swapped Byte-swapped value
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*/
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#define __bswap_16( value ) \
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( __builtin_constant_p (value) ? \
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( ( uint16_t ) __bswap_constant_16 ( ( uint16_t ) (value) ) ) \
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: __bswap_variable_16 (value) )
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#define bswap_16( value ) __bswap_16 (value)
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#define __bswap_32(x) \
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((uint32_t)(__builtin_constant_p(x) ? \
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__bswap_constant_32(x) : \
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__bswap_variable_32(x)))
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/**
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* Byte-swap a 32-bit value
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*
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* @v value Value
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* @ret swapped Byte-swapped value
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*/
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#define __bswap_32( value ) \
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( __builtin_constant_p (value) ? \
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( ( uint32_t ) __bswap_constant_32 ( ( uint32_t ) (value) ) ) \
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: __bswap_variable_32 (value) )
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#define bswap_32( value ) __bswap_32 (value)
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#define __bswap_64(x) \
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((uint64_t)(__builtin_constant_p(x) ? \
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__bswap_constant_64(x) : \
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__bswap_variable_64(x)))
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/**
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* Byte-swap a 64-bit value
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*
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* @v value Value
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* @ret swapped Byte-swapped value
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*/
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#define __bswap_64( value ) \
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( __builtin_constant_p (value) ? \
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( ( uint64_t ) __bswap_constant_64 ( ( uint64_t ) (value) ) ) \
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: __bswap_variable_64 (value) )
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#define bswap_64( value ) __bswap_64 (value)
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#if __BYTE_ORDER == __LITTLE_ENDIAN
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#include "little_bswap.h"
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#endif
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#if __BYTE_ORDER == __BIG_ENDIAN
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#include "big_bswap.h"
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#define __cpu_to_leNN( bits, value ) (value)
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#define __cpu_to_beNN( bits, value ) __bswap_ ## bits (value)
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#define __leNN_to_cpu( bits, value ) (value)
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#define __beNN_to_cpu( bits, value ) __bswap_ ## bits (value)
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#define __cpu_to_leNNs( bits, ptr ) do { } while ( 0 )
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#define __cpu_to_beNNs( bits, ptr ) __bswap_ ## bits ## s (ptr)
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#define __leNN_to_cpus( bits, ptr ) do { } while ( 0 )
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#define __beNN_to_cpus( bits, ptr ) __bswap_ ## bits ## s (ptr)
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#endif
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/* Make routines available to all */
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#define swap64(x) __bswap_64(x)
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#define swap32(x) __bswap_32(x)
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#define swap16(x) __bswap_16(x)
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#define bswap_64(x) __bswap_64(x)
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#define bswap_32(x) __bswap_32(x)
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#define bswap_16(x) __bswap_16(x)
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#endif /* ETHERBOOT_BYTESWAP_H */
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#if __BYTE_ORDER == __BIG_ENDIAN
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#define __cpu_to_leNN( bits, value ) __bswap_ ## bits (value)
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#define __cpu_to_beNN( bits, value ) (value)
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#define __leNN_to_cpu( bits, value ) __bswap_ ## bits (value)
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#define __beNN_to_cpu( bits, value ) (value)
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#define __cpu_to_leNNs( bits, ptr ) __bswap_ ## bits ## s (ptr)
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#define __cpu_to_beNNs( bits, ptr ) do { } while ( 0 )
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#define __leNN_to_cpus( bits, ptr ) __bswap_ ## bits ## s (ptr)
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#define __beNN_to_cpus( bits, ptr ) do { } while ( 0 )
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#endif
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#define cpu_to_le16( value ) __cpu_to_leNN ( 16, value )
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#define cpu_to_le32( value ) __cpu_to_leNN ( 32, value )
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#define cpu_to_le64( value ) __cpu_to_leNN ( 64, value )
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#define cpu_to_be16( value ) __cpu_to_beNN ( 16, value )
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#define cpu_to_be32( value ) __cpu_to_beNN ( 32, value )
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#define cpu_to_be64( value ) __cpu_to_beNN ( 64, value )
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#define le16_to_cpu( value ) __leNN_to_cpu ( 16, value )
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#define le32_to_cpu( value ) __leNN_to_cpu ( 32, value )
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#define le64_to_cpu( value ) __leNN_to_cpu ( 64, value )
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#define be16_to_cpu( value ) __beNN_to_cpu ( 16, value )
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#define be32_to_cpu( value ) __beNN_to_cpu ( 32, value )
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#define be64_to_cpu( value ) __beNN_to_cpu ( 64, value )
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#define cpu_to_le16s( ptr ) __cpu_to_leNNs ( 16, ptr )
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#define cpu_to_le32s( ptr ) __cpu_to_leNNs ( 32, ptr )
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#define cpu_to_le64s( ptr ) __cpu_to_leNNs ( 64, ptr )
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#define cpu_to_be16s( ptr ) __cpu_to_beNNs ( 16, ptr )
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#define cpu_to_be32s( ptr ) __cpu_to_beNNs ( 32, ptr )
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#define cpu_to_be64s( ptr ) __cpu_to_beNNs ( 64, ptr )
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#define le16_to_cpus( ptr ) __leNN_to_cpus ( 16, ptr )
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#define le32_to_cpus( ptr ) __leNN_to_cpus ( 32, ptr )
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#define le64_to_cpus( ptr ) __leNN_to_cpus ( 64, ptr )
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#define be16_to_cpus( ptr ) __beNN_to_cpus ( 16, ptr )
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#define be32_to_cpus( ptr ) __beNN_to_cpus ( 32, ptr )
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#define be64_to_cpus( ptr ) __beNN_to_cpus ( 64, ptr )
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#define htonll( value ) cpu_to_be64 (value)
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#define ntohll( value ) be64_to_cpu (value)
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#define htonl( value ) cpu_to_be32 (value)
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#define ntohl( value ) be32_to_cpu (value)
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#define htons( value ) cpu_to_be16 (value)
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#define ntohs( value ) be16_to_cpu (value)
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#endif /* BYTESWAP_H */
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#ifndef ETHERBOOT_ENDIAN_H
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#define ETHERBOOT_ENDIAN_H
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#ifndef _ENDIAN_H
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#define _ENDIAN_H
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FILE_LICENCE ( GPL2_OR_LATER );
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FILE_LICENCE ( GPL2_OR_LATER_OR_UBDL );
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/* Definitions for byte order, according to significance of bytes,
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from low addresses to high addresses. The value is what you get by
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putting '4' in the most significant byte, '3' in the second most
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significant byte, '2' in the second least significant byte, and '1'
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in the least significant byte, and then writing down one digit for
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each byte, starting with the byte at the lowest address at the left,
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and proceeding to the byte with the highest address at the right. */
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/** Constant representing little-endian byte order
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*
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* Little-endian systems should define BYTE_ORDER as LITTLE_ENDIAN.
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* This constant is intended to be used only at compile time.
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*/
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#define __LITTLE_ENDIAN 0x44332211UL
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#define __LITTLE_ENDIAN 1234
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#define __BIG_ENDIAN 4321
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#define __PDP_ENDIAN 3412
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/** Constant representing big-endian byte order
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*
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* Big-endian systems should define BYTE_ORDER as BIG_ENDIAN.
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* This constant is intended to be used only at compile time.
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*/
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#define __BIG_ENDIAN 0x11223344UL
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#include "bits/endian.h"
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#endif /* ETHERBOOT_ENDIAN_H */
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#endif /* _ENDIAN_H */
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#ifndef ETHERBOOT_LITTLE_BSWAP_H
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#define ETHERBOOT_LITTLE_BSWAP_H
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FILE_LICENCE ( GPL2_OR_LATER );
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#define htonll(x) __bswap_64(x)
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#define ntohll(x) __bswap_64(x)
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#define ntohl(x) __bswap_32(x)
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#define htonl(x) __bswap_32(x)
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#define ntohs(x) __bswap_16(x)
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#define htons(x) __bswap_16(x)
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#define cpu_to_le64(x) (x)
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#define cpu_to_le32(x) (x)
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#define cpu_to_le16(x) (x)
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#define cpu_to_be64(x) __bswap_64(x)
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#define cpu_to_be32(x) __bswap_32(x)
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#define cpu_to_be16(x) __bswap_16(x)
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#define le64_to_cpu(x) (x)
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#define le32_to_cpu(x) (x)
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#define le16_to_cpu(x) (x)
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#define be64_to_cpu(x) __bswap_64(x)
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#define be32_to_cpu(x) __bswap_32(x)
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#define be16_to_cpu(x) __bswap_16(x)
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#define cpu_to_le64s(x) do {} while (0)
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#define cpu_to_le32s(x) do {} while (0)
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#define cpu_to_le16s(x) do {} while (0)
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#define cpu_to_be64s(x) __bswap_64s(x)
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#define cpu_to_be32s(x) __bswap_32s(x)
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#define cpu_to_be16s(x) __bswap_16s(x)
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#define le64_to_cpus(x) do {} while (0)
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#define le32_to_cpus(x) do {} while (0)
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#define le16_to_cpus(x) do {} while (0)
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#define be64_to_cpus(x) __bswap_64s(x)
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#define be32_to_cpus(x) __bswap_32s(x)
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#define be16_to_cpus(x) __bswap_16s(x)
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#endif /* ETHERBOOT_LITTLE_BSWAP_H */
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@ -136,7 +136,7 @@ static const u16 Sbox[256] = {
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*/
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static inline u16 S ( u16 v )
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{
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return Sbox[v & 0xFF] ^ swap16 ( Sbox[v >> 8] );
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return Sbox[v & 0xFF] ^ bswap_16 ( Sbox[v >> 8] );
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}
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/**
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