519 lines
15 KiB
C++
519 lines
15 KiB
C++
#include "../precomp.hpp"
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#include "THGeneral.h"
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#include "THDiskFile.h"
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#include "THFilePrivate.h"
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namespace TH
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{
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typedef struct THDiskFile__
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{
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THFile file;
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FILE *handle;
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int isNativeEncoding;
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int longSize;
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} THDiskFile;
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static int THDiskFile_isOpened(THFile *self)
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{
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THDiskFile *dfself = (THDiskFile*)self;
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return (dfself->handle != NULL);
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}
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/* workaround mac osx lion ***insane*** fread bug */
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#ifdef __APPLE__
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static size_t fread__(void *ptr, size_t size, size_t nitems, FILE *stream)
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{
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size_t nread = 0;
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while(!feof(stream) && !ferror(stream) && (nread < nitems))
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nread += fread((char*)ptr+nread*size, size, std::min<size_t>(2147483648UL/size, nitems-nread), stream);
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return nread;
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}
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#else
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#define fread__ fread
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#endif
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#define READ_WRITE_METHODS(TYPE, TYPEC, ASCII_READ_ELEM, ASCII_WRITE_ELEM) \
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static long THDiskFile_read##TYPEC(THFile *self, TYPE *data, long n) \
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{ \
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THDiskFile *dfself = (THDiskFile*)(self); \
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long nread = 0L; \
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\
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THArgCheck(dfself->handle != NULL, 1, "attempt to use a closed file"); \
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THArgCheck(dfself->file.isReadable, 1, "attempt to read in a write-only file"); \
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\
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if(dfself->file.isBinary) \
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{ \
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nread = fread__(data, sizeof(TYPE), n, dfself->handle); \
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if(!dfself->isNativeEncoding && (sizeof(TYPE) > 1) && (nread > 0)) \
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THDiskFile_reverseMemory(data, data, sizeof(TYPE), nread); \
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} \
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else \
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{ \
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long i; \
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for(i = 0; i < n; i++) \
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{ \
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ASCII_READ_ELEM; /* increment here result and break if wrong */ \
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} \
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if(dfself->file.isAutoSpacing && (n > 0)) \
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{ \
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int c = fgetc(dfself->handle); \
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if( (c != '\n') && (c != EOF) ) \
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ungetc(c, dfself->handle); \
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} \
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} \
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\
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if(nread != n) \
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{ \
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dfself->file.hasError = 1; /* shouldn't we put hasError to 0 all the time ? */ \
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if(!dfself->file.isQuiet) \
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THError("read error: read %d blocks instead of %d", nread, n); \
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} \
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\
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return nread; \
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}
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static int THDiskFile_mode(const char *mode, int *isReadable, int *isWritable)
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{
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*isReadable = 0;
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*isWritable = 0;
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if(strlen(mode) == 1)
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{
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if(*mode == 'r')
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{
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*isReadable = 1;
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return 1;
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}
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else if(*mode == 'w')
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{
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*isWritable = 1;
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return 1;
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}
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}
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else if(strlen(mode) == 2)
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{
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if(mode[0] == 'r' && mode[1] == 'w')
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{
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*isReadable = 1;
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*isWritable = 1;
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return 1;
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}
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}
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return 0;
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}
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static void THDiskFile_seek(THFile *self, long position)
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{
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THDiskFile *dfself = (THDiskFile*)(self);
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THArgCheck(dfself->handle != NULL, 1, "attempt to use a closed file");
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#if defined(_WIN64)
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if(_fseeki64(dfself->handle, (__int64)position, SEEK_SET) < 0)
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#elif defined(_WIN32)
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if(fseek(dfself->handle, (long)position, SEEK_SET) < 0)
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#else
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if(fseeko(dfself->handle, (off_t)position, SEEK_SET) < 0)
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#endif
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{
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dfself->file.hasError = 1;
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if(!dfself->file.isQuiet)
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THError("unable to seek at position %d", position);
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}
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}
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static void THDiskFile_seekEnd(THFile *self)
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{
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THDiskFile *dfself = (THDiskFile*)(self);
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THArgCheck(dfself->handle != NULL, 1, "attempt to use a closed file");
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#if defined(_WIN64)
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if(_fseeki64(dfself->handle, 0L, SEEK_END) < 0)
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#elif defined(_WIN32)
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if(fseek(dfself->handle, 0L, SEEK_END) < 0)
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#else
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if(fseeko(dfself->handle, 0L, SEEK_END) < 0)
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#endif
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{
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dfself->file.hasError = 1;
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if(!dfself->file.isQuiet)
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THError("unable to seek at end of file");
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}
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}
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static long THDiskFile_position(THFile *self)
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{
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THDiskFile *dfself = (THDiskFile*)(self);
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THArgCheck(dfself->handle != NULL, 1, "attempt to use a closed file");
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#if defined(_WIN64)
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__int64 offset = _ftelli64(dfself->handle);
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#elif defined(_WIN32)
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long offset = ftell(dfself->handle);
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#else
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off_t offset = ftello(dfself->handle);
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#endif
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if (offset > -1)
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return (long)offset;
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else if(!dfself->file.isQuiet)
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THError("unable to obtain disk file offset (maybe a long overflow occurred)");
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return 0;
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}
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static void THDiskFile_close(THFile *self)
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{
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THDiskFile *dfself = (THDiskFile*)(self);
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THArgCheck(dfself->handle != NULL, 1, "attempt to use a closed file");
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fclose(dfself->handle);
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dfself->handle = NULL;
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}
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/* Little and Big Endian */
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static void THDiskFile_reverseMemory(void *dst, const void *src, long blockSize, long numBlocks)
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{
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if(blockSize != 1)
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{
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long halfBlockSize = blockSize/2;
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char *charSrc = (char*)src;
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char *charDst = (char*)dst;
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long b, i;
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for(b = 0; b < numBlocks; b++)
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{
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for(i = 0; i < halfBlockSize; i++)
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{
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char z = charSrc[i];
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charDst[i] = charSrc[blockSize-1-i];
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charDst[blockSize-1-i] = z;
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}
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charSrc += blockSize;
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charDst += blockSize;
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}
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}
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}
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int THDiskFile_isLittleEndianCPU(void)
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{
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int x = 7;
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char *ptr = (char *)&x;
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if(ptr[0] == 0)
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return 0;
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else
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return 1;
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}
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int THDiskFile_isBigEndianCPU(void)
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{
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return(!THDiskFile_isLittleEndianCPU());
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}
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void THDiskFile_nativeEndianEncoding(THFile *self)
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{
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THDiskFile *dfself = (THDiskFile*)(self);
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THArgCheck(dfself->handle != NULL, 1, "attempt to use a closed file");
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dfself->isNativeEncoding = 1;
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}
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void THDiskFile_littleEndianEncoding(THFile *self)
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{
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THDiskFile *dfself = (THDiskFile*)(self);
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THArgCheck(dfself->handle != NULL, 1, "attempt to use a closed file");
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dfself->isNativeEncoding = THDiskFile_isLittleEndianCPU();
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}
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void THDiskFile_bigEndianEncoding(THFile *self)
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{
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THDiskFile *dfself = (THDiskFile*)(self);
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THArgCheck(dfself->handle != NULL, 1, "attempt to use a closed file");
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dfself->isNativeEncoding = !THDiskFile_isLittleEndianCPU();
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}
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/* End of Little and Big Endian Stuff */
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void THDiskFile_longSize(THFile *self, int size)
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{
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THDiskFile *dfself = (THDiskFile*)(self);
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THArgCheck(dfself->handle != NULL, 1, "attempt to use a closed file");
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THArgCheck(size == 0 || size == 4 || size == 8, 1, "Invalid long size specified");
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dfself->longSize = size;
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}
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void THDiskFile_noBuffer(THFile *self)
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{
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THDiskFile *dfself = (THDiskFile*)(self);
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THArgCheck(dfself->handle != NULL, 1, "attempt to use a closed file");
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if (setvbuf(dfself->handle, NULL, _IONBF, 0)) {
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THError("error: cannot disable buffer");
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}
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}
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static void THDiskFile_free(THFile *self)
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{
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THDiskFile *dfself = (THDiskFile*)(self);
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if(dfself->handle)
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fclose(dfself->handle);
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THFree(dfself);
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}
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/* Note that we do a trick */
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READ_WRITE_METHODS(unsigned char, Byte,
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nread = fread(data, 1, n, dfself->handle); break,
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nwrite = fwrite(data, 1, n, dfself->handle); break)
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READ_WRITE_METHODS(char, Char,
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nread = fread(data, 1, n, dfself->handle); break,
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nwrite = fwrite(data, 1, n, dfself->handle); break)
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READ_WRITE_METHODS(short, Short,
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int ret = fscanf(dfself->handle, "%hd", &data[i]); if(ret <= 0) break; else nread++,
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int ret = fprintf(dfself->handle, "%hd", data[i]); if(ret <= 0) break; else nwrite++)
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READ_WRITE_METHODS(int, Int,
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int ret = fscanf(dfself->handle, "%d\n\r", &data[i]); if(ret <= 0) break; else nread++,
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int ret = fprintf(dfself->handle, "%d", data[i]); if(ret <= 0) break; else nwrite++)
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/*READ_WRITE_METHODS(long, Long,
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int ret = fscanf(dfself->handle, "%ld", &data[i]); if(ret <= 0) break; else nread++,
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int ret = fprintf(dfself->handle, "%ld", data[i]); if(ret <= 0) break; else nwrite++)*/
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READ_WRITE_METHODS(float, Float,
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int ret = fscanf(dfself->handle, "%g", &data[i]); if(ret <= 0) break; else nread++,
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int ret = fprintf(dfself->handle, "%.9g", data[i]); if(ret <= 0) break; else nwrite++)
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READ_WRITE_METHODS(double, Double,
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int ret = fscanf(dfself->handle, "%lg", &data[i]); if(ret <= 0) break; else nread++,
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int ret = fprintf(dfself->handle, "%.17g", data[i]); if(ret <= 0) break; else nwrite++)
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/* For Long we need to rewrite everything, because of the special management of longSize */
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static long THDiskFile_readLong(THFile *self, int64 *data, long n)
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{
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THDiskFile *dfself = (THDiskFile*)(self);
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long nread = 0L;
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THArgCheck(dfself->handle != NULL, 1, "attempt to use a closed file");
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THArgCheck(dfself->file.isReadable, 1, "attempt to read in a write-only file");
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if(dfself->file.isBinary)
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{
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if(dfself->longSize == 0 || dfself->longSize == sizeof(int64))
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{
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nread = fread__(data, sizeof(int64), n, dfself->handle);
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if(!dfself->isNativeEncoding && (sizeof(int64) > 1) && (nread > 0))
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THDiskFile_reverseMemory(data, data, sizeof(int64), nread);
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} else if(dfself->longSize == 4)
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{
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nread = fread__(data, 4, n, dfself->handle);
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if(!dfself->isNativeEncoding && (nread > 0))
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THDiskFile_reverseMemory(data, data, 4, nread);
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long i;
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for(i = nread; i > 0; i--)
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data[i-1] = ((int *)data)[i-1];
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}
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else /* if(dfself->longSize == 8) */
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{
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int big_endian = !THDiskFile_isLittleEndianCPU();
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int32_t *buffer = (int32_t*)THAlloc(8*n);
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if (!buffer)
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THError("can not allocate buffer");
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nread = fread__(buffer, 8, n, dfself->handle);
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long i;
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for(i = nread; i > 0; i--)
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data[i-1] = buffer[2*(i-1) + big_endian];
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THFree(buffer);
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if(!dfself->isNativeEncoding && (nread > 0))
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THDiskFile_reverseMemory(data, data, 4, nread);
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}
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}
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else
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{
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long i;
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for(i = 0; i < n; i++)
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{
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long d;
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int ret = fscanf(dfself->handle, "%ld", &d); if(ret <= 0) break; else nread++;
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data[i] = d;
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}
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if(dfself->file.isAutoSpacing && (n > 0))
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{
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int c = fgetc(dfself->handle);
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if( (c != '\n') && (c != EOF) )
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ungetc(c, dfself->handle);
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}
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}
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if(nread != n)
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{
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dfself->file.hasError = 1; /* shouldn't we put hasError to 0 all the time ? */
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if(!dfself->file.isQuiet)
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THError("read error: read %d blocks instead of %d", nread, n);
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}
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return nread;
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}
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static long THDiskFile_readString(THFile *self, const char *format, char **str_)
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{
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THDiskFile *dfself = (THDiskFile*)(self);
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THArgCheck(dfself->handle != NULL, 1, "attempt to use a closed file");
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THArgCheck(dfself->file.isReadable, 1, "attempt to read in a write-only file");
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THArgCheck((strlen(format) >= 2 ? (format[0] == '*') && (format[1] == 'a' || format[1] == 'l') : 0), 2, "format must be '*a' or '*l'");
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/* note: the string won't survive long, as it is copied into lua */
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/* so 1024 is not that big... */
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#define TBRS_BSZ 1024L
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if(format[1] == 'a')
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{
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char *p = (char*)THAlloc(TBRS_BSZ);
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long total = TBRS_BSZ;
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long pos = 0L;
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for (;;)
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{
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if(total-pos == 0) /* we need more space! */
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{
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total += TBRS_BSZ;
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p = (char*)THRealloc(p, total);
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}
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if (p == NULL)
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THError("read error: failed to allocate buffer");
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pos += fread(p+pos, 1, total-pos, dfself->handle);
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if (pos < total) /* eof? */
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{
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if(pos == 0L)
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{
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THFree(p);
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dfself->file.hasError = 1;
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if(!dfself->file.isQuiet)
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THError("read error: read 0 blocks instead of 1");
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*str_ = NULL;
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return 0;
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}
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*str_ = p;
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return pos;
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}
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}
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}
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else
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{
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char *p = (char*)THAlloc(TBRS_BSZ);
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long total = TBRS_BSZ;
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long pos = 0L;
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long size;
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for (;;)
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{
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if(total-pos <= 1) /* we can only write '\0' in there! */
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{
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total += TBRS_BSZ;
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p = (char*)THRealloc(p, total);
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}
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if (p == NULL)
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THError("read error: failed to allocate buffer");
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if (fgets(p+pos, total-pos, dfself->handle) == NULL) /* eof? */
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{
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if(pos == 0L)
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{
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THFree(p);
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dfself->file.hasError = 1;
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if(!dfself->file.isQuiet)
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THError("read error: read 0 blocks instead of 1");
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*str_ = NULL;
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return 0;
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}
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*str_ = p;
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return pos;
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}
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size = strlen(p+pos);
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if (size == 0L || (p+pos)[size-1] != '\n')
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{
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pos += size;
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}
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else
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{
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pos += size-1L; /* do not include `eol' */
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*str_ = p;
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return pos;
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}
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}
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}
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*str_ = NULL;
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return 0;
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}
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THFile *THDiskFile_new(const std::string &name, const char *mode, int isQuiet)
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{
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static struct THFileVTable vtable = {
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THDiskFile_isOpened,
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THDiskFile_readByte,
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THDiskFile_readChar,
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THDiskFile_readShort,
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THDiskFile_readInt,
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THDiskFile_readLong,
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THDiskFile_readFloat,
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THDiskFile_readDouble,
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THDiskFile_readString,
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THDiskFile_seek,
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THDiskFile_seekEnd,
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THDiskFile_position,
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THDiskFile_close,
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THDiskFile_free
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};
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int isReadable;
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int isWritable;
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FILE *handle;
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THDiskFile *self;
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THArgCheck(THDiskFile_mode(mode, &isReadable, &isWritable), 2, "file mode should be 'r','w' or 'rw'");
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CV_Assert(isReadable && !isWritable);
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#ifdef _MSC_VER
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if (fopen_s(&handle, name.c_str(), "rb") != 0)
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handle = NULL;
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#else
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handle = fopen(name.c_str(),"rb");
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#endif
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if(!handle)
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{
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if(isQuiet)
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return 0;
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else
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THError("cannot open <%s> in mode %c%c", name.c_str(), (isReadable ? 'r' : ' '), (isWritable ? 'w' : ' '));
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}
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self = (THDiskFile*)THAlloc(sizeof(THDiskFile));
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if (!self)
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THError("cannot allocate memory for self");
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self->handle = handle;
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self->isNativeEncoding = 1;
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self->longSize = 0;
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self->file.vtable = &vtable;
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self->file.isQuiet = isQuiet;
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self->file.isReadable = isReadable;
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self->file.isWritable = isWritable;
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self->file.isBinary = 0;
|
|
self->file.isAutoSpacing = 1;
|
|
self->file.hasError = 0;
|
|
|
|
return (THFile*)self;
|
|
}
|
|
|
|
}
|