#ifndef _KVI_BYTEORDER_H_ #define _KVI_BYTEORDER_H_ //============================================================================= // // File : KviByteOrder.h // Creation date : Mon Dec 25 2006 19:56:16 CEST by Szymon Stefanek // Based on file : kvi_bswap.h // Creation date : Fri Mar 19 1999 03:15:21 CEST by Szymon Stefanek // // This file is part of the KVIrc IRC client distribution // Copyright (C) 1999-2010 Szymon Stefanek (pragma at kvirc dot net) // // This program is FREE software. You can redistribute it and/or // modify it under the terms of the GNU General Public License // as published by the Free Software Foundation; either version 2 // of the License, or (at your option) any later version. // // This program is distributed in the HOPE that it will be USEFUL, // but WITHOUT ANY WARRANTY; without even the implied warranty of // MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. // See the GNU General Public License for more details. // // You should have received a copy of the GNU General Public License // along with this program. If not, write to the Free Software Foundation, // Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301, USA. // //============================================================================= #include "kvi_settings.h" #include "kvi_inttypes.h" namespace KviByteOrder { /** * \brief Swaps the endianness of a kvi_u64_t * * \param i the original value * \return kvi_u64_t */ inline kvi_u64_t swap64(kvi_u64_t i) { // abcdefgh to hgfedcba return ((i << 56) | /* h to a */ ((i & 0xff00) << 40) | /* g to b */ ((i & 0xff0000) << 24) | /* f to c */ ((i & 0xff000000) << 8) | /* e to d */ ((i >> 8) & 0xff000000) | /* d to e */ ((i >> 24) & 0xff0000) | /* c to f */ ((i >> 40) & 0xff00) | /* b to g */ (i >> 56)); /* a to h */ } /** * \brief Swaps the endianness of a kvi_u32_t * * \param i the original value * \return kvi_u32_t */ inline kvi_u32_t swap32(kvi_u32_t i) { // abcd to dcba return ((i << 24) | ((i & 0xff00) << 8) | ((i >> 8) & 0xff00) | (i >> 24)); } /** * \brief Swaps the endianness of a kvi_u16_t * * \param i the original value * \return kvi_u16_t */ inline kvi_u16_t swap16(kvi_u16_t i) { // ab to ba return ((i << 8) | (i >> 8)); } // // Byte Orders Reminder // Number 0xaabbccdd // Little Endian Stores 0xdd 0xcc 0xbb 0xaa // Big Endian Stores 0xaa 0xbb 0xcc 0xdd // Perverse Middle Endian 0xbb 0xaa 0xdd 0xcc or another braindamaged combination (unsupported) // Network Byte Order is Big Endian // Intel Stuff uses Little Endian // PPC is Big Endian // Universal binaries on MacOSX use both Big and Little Endian // #ifdef BIG_ENDIAN_MACHINE_BYTE_ORDER inline kvi_u16_t localCpuToLittleEndian16(kvi_u16_t u) { return swap16(u); } inline kvi_u32_t localCpuToLittleEndian32(kvi_u32_t u) { return swap32(u); } inline kvi_u64_t localCpuToLittleEndian64(kvi_u64_t u) { return swap64(u); } inline kvi_u16_t littleEndianToLocalCpu16(kvi_u16_t u) { return swap16(u); } inline kvi_u32_t littleEndianToLocalCpu32(kvi_u32_t u) { return swap32(u); } inline kvi_u64_t littleEndianToLocalCpu64(kvi_u64_t u) { return swap64(u); } inline kvi_u16_t localCpuToBigEndian16(kvi_u16_t u) { return u; } inline kvi_u32_t localCpuToBigEndian32(kvi_u32_t u) { return u; } inline kvi_u64_t localCpuToBigEndian64(kvi_u64_t u) { return u; } inline kvi_u16_t bigEndianToLocalCpu16(kvi_u16_t u) { return u; } inline kvi_u32_t bigEndianToLocalCpu32(kvi_u32_t u) { return u; } inline kvi_u64_t bigEndianToLocalCpu64(kvi_u64_t u) { return u; } inline kvi_u16_t localCpuToNetworkByteOrder16(kvi_u16_t u) { return u; } inline kvi_u32_t localCpuToNetworkByteOrder32(kvi_u32_t u) { return u; } inline kvi_u64_t localCpuToNetworkByteOrder64(kvi_u64_t u) { return u; } inline kvi_u16_t networkByteOrderToLocalCpu16(kvi_u16_t u) { return u; } inline kvi_u32_t networkByteOrderToLocalCpu32(kvi_u32_t u) { return u; } inline kvi_u64_t networkByteOrderToLocalCpu64(kvi_u64_t u) { return u; } #else //!BIG_ENDIAN_MACHINE_BYTE_ORDER // We ASSUME that the local cpu is little endian.. if it isn't.. well :) #define LOCAL_CPU_LITTLE_ENDIAN 1 inline kvi_u16_t localCpuToLittleEndian16(kvi_u16_t u) { return u; } inline kvi_u32_t localCpuToLittleEndian32(kvi_u32_t u) { return u; } inline kvi_u64_t localCpuToLittleEndian64(kvi_u64_t u) { return u; } inline kvi_u16_t littleEndianToLocalCpu16(kvi_u16_t u) { return u; } inline kvi_u32_t littleEndianToLocalCpu32(kvi_u32_t u) { return u; } inline kvi_u64_t littleEndianToLocalCpu64(kvi_u64_t u) { return u; } inline kvi_u16_t localCpuToBigEndian16(kvi_u16_t u) { return swap16(u); } inline kvi_u32_t localCpuToBigEndian32(kvi_u32_t u) { return swap32(u); } inline kvi_u64_t localCpuToBigEndian64(kvi_u64_t u) { return swap64(u); } inline kvi_u16_t bigEndianToLocalCpu16(kvi_u16_t u) { return swap16(u); } inline kvi_u32_t bigEndianToLocalCpu32(kvi_u32_t u) { return swap32(u); } inline kvi_u64_t bigEndianToLocalCpu64(kvi_u64_t u) { return swap64(u); } inline kvi_u16_t localCpuToNetworkByteOrder16(kvi_u16_t u) { return swap16(u); } inline kvi_u32_t localCpuToNetworkByteOrder32(kvi_u32_t u) { return swap32(u); } inline kvi_u64_t localCpuToNetworkByteOrder64(kvi_u64_t u) { return swap64(u); } inline kvi_u16_t networkByteOrderToLocalCpu16(kvi_u16_t u) { return swap16(u); } inline kvi_u32_t networkByteOrderToLocalCpu32(kvi_u32_t u) { return swap32(u); } inline kvi_u64_t networkByteOrderToLocalCpu64(kvi_u64_t u) { return swap64(u); } #endif //!BIG_ENDIAN_MACHINE_BYTE_ORDER } // namespace KviByteOrder #endif // !_KVI_BYTEORDER_H_