286 lines
7.1 KiB
C
286 lines
7.1 KiB
C
/* Grafx2 - The Ultimate 256-color bitmap paint program
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Copyright 2008 Yves Rizoud
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Copyright 2007 Adrien Destugues
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Copyright 1996-2001 Sunset Design (Guillaume Dorme & Karl Maritaud)
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Grafx2 is free software; you can redistribute it and/or
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modify it under the terms of the GNU General Public License
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as published by the Free Software Foundation; version 2
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of the License.
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Grafx2 is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with Grafx2; if not, see <http://www.gnu.org/licenses/> or
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write to the Free Software Foundation, Inc.,
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59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
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*/
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// Fonctions de lecture/ecriture file, gèrent les systèmes big-endian et
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// little-endian.
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#include <SDL_endian.h>
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#include <string.h>
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#include <sys/stat.h>
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#include <errno.h>
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#if defined(__amigaos4__)
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#include <proto/dos.h>
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#include <dirent.h>
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#elif defined(__WIN32__)
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#include <dirent.h>
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#include <windows.h>
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#else
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#include <dirent.h>
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#endif
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#include "struct.h"
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#include "io.h"
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word Endian_magic16(word x)
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{
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#if SDL_BYTEORDER == SDL_LIL_ENDIAN
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return x;
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#else
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return SDL_Swap16(x);
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#endif
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}
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dword Endian_magic32(dword x)
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{
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#if SDL_BYTEORDER == SDL_LIL_ENDIAN
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return x;
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#else
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return SDL_Swap32(x);
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#endif
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}
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// Lit un octet
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// Renvoie -1 si OK, 0 en cas d'erreur
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int Read_byte(FILE *file, byte *dest)
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{
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return fread(dest, 1, 1, file) == 1;
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}
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// Ecrit un octet
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// Renvoie -1 si OK, 0 en cas d'erreur
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int Write_byte(FILE *file, byte b)
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{
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return fwrite(&b, 1, 1, file) == 1;
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}
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// Lit des octets
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// Renvoie -1 si OK, 0 en cas d'erreur
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int Read_bytes(FILE *file, void *dest, size_t size)
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{
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return fread(dest, 1, size, file) == size;
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}
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// Ecrit des octets
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// Renvoie -1 si OK, 0 en cas d'erreur
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int Write_bytes(FILE *file, void *src, size_t size)
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{
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return fwrite(src, 1, size, file) == size;
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}
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// Lit un word (little-endian)
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// Renvoie -1 si OK, 0 en cas d'erreur
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int Read_word_le(FILE *file, word *dest)
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{
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if (fread(dest, 1, sizeof(word), file) != sizeof(word))
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return 0;
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#if SDL_BYTEORDER != SDL_LIL_ENDIAN
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*dest = SDL_Swap16(*dest);
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#endif
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return -1;
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}
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// Ecrit un word (little-endian)
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// Renvoie -1 si OK, 0 en cas d'erreur
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int Write_word_le(FILE *file, word w)
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{
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#if SDL_BYTEORDER != SDL_LIL_ENDIAN
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w = SDL_Swap16(w);
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#endif
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return fwrite(&w, 1, sizeof(word), file) == sizeof(word);
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}
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// Lit un word (big-endian)
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// Renvoie -1 si OK, 0 en cas d'erreur
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int Read_word_be(FILE *file, word *dest)
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{
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if (fread(dest, 1, sizeof(word), file) != sizeof(word))
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return 0;
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#if SDL_BYTEORDER != SDL_BIG_ENDIAN
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*dest = SDL_Swap16(*dest);
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#endif
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return -1;
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}
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// Ecrit un word (big-endian)
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// Renvoie -1 si OK, 0 en cas d'erreur
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int Write_word_be(FILE *file, word w)
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{
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#if SDL_BYTEORDER != SDL_BIG_ENDIAN
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w = SDL_Swap16(w);
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#endif
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return fwrite(&w, 1, sizeof(word), file) == sizeof(word);
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}
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// Lit un dword (little-endian)
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// Renvoie -1 si OK, 0 en cas d'erreur
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int Read_dword_le(FILE *file, dword *dest)
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{
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if (fread(dest, 1, sizeof(dword), file) != sizeof(dword))
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return 0;
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#if SDL_BYTEORDER != SDL_LIL_ENDIAN
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*dest = SDL_Swap32(*dest);
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#endif
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return -1;
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}
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// Ecrit un dword (little-endian)
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// Renvoie -1 si OK, 0 en cas d'erreur
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int Write_dword_le(FILE *file, dword dw)
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{
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#if SDL_BYTEORDER != SDL_LIL_ENDIAN
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dw = SDL_Swap32(dw);
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#endif
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return fwrite(&dw, 1, sizeof(dword), file) == sizeof(dword);
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}
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// Lit un dword (big-endian)
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// Renvoie -1 si OK, 0 en cas d'erreur
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int Read_dword_be(FILE *file, dword *dest)
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{
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if (fread(dest, 1, sizeof(dword), file) != sizeof(dword))
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return 0;
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#if SDL_BYTEORDER != SDL_BIG_ENDIAN
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*dest = SDL_Swap32(*dest);
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#endif
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return -1;
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}
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// Ecrit un dword (big-endian)
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// Renvoie -1 si OK, 0 en cas d'erreur
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int Write_dword_be(FILE *file, dword dw)
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{
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#if SDL_BYTEORDER != SDL_BIG_ENDIAN
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dw = SDL_Swap32(dw);
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#endif
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return fwrite(&dw, 1, sizeof(dword), file) == sizeof(dword);
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}
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// Détermine la position du dernier '/' ou '\\' dans une chaine,
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// typiquement pour séparer le nom de file d'un chemin.
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// Attention, sous Windows, il faut s'attendre aux deux car
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// par exemple un programme lancé sous GDB aura comme argv[0]:
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// d:\Data\C\GFX2\grafx2/grafx2.exe
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char * Find_last_slash(const char * str)
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{
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const char * position = NULL;
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for (; *str != '\0'; str++)
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if (*str == PATH_SEPARATOR[0]
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#ifdef __WIN32__
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|| *str == '/'
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#endif
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)
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position = str;
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return (char *)position;
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}
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// Récupère la partie "nom de file seul" d'un chemin
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void Extract_filename(char *dest, const char *source)
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{
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const char * position = Find_last_slash(source);
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if (position)
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strcpy(dest,position+1);
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else
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strcpy(dest,source);
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}
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// Récupère la partie "répertoire+/" d'un chemin.
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void Extract_path(char *dest, const char *source)
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{
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char * position=NULL;
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realpath(source,dest);
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position = Find_last_slash(dest);
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if (position)
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*(position+1) = '\0';
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else
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strcat(dest, PATH_SEPARATOR);
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}
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int File_exists(char * fname)
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// Détermine si un file passé en paramètre existe ou non dans le
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// répertoire courant.
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{
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struct stat buf;
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int result;
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result=stat(fname,&buf);
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if (result!=0)
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return(errno!=ENOENT);
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else
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return 1;
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}
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int Directory_exists(char * directory)
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// Détermine si un répertoire passé en paramètre existe ou non dans le
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// répertoire courant.
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{
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DIR* entry; // Structure de lecture des éléments
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if (strcmp(directory,PARENT_DIR)==0)
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return 1;
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else
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{
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// On va chercher si le répertoire existe à l'aide d'un Opendir. S'il
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// renvoie NULL c'est que le répertoire n'est pas accessible...
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entry=opendir(directory);
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if (entry==NULL)
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return 0;
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else
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{
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closedir(entry);
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return 1;
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}
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}
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}
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// Taille de fichier, en octets
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int File_length(const char * fname)
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{
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struct stat infos_fichier;
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if (stat(fname,&infos_fichier))
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return 0;
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return infos_fichier.st_size;
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}
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int File_length_file(FILE * file)
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{
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struct stat infos_fichier;
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if (fstat(fileno(file),&infos_fichier))
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return 0;
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return infos_fichier.st_size;
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}
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void For_each_file(const char * directory_name, void Callback(const char *))
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{
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// Pour scan de répertoire
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DIR* Repertoire_Courant; //Répertoire courant
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struct dirent* entry; // Structure de lecture des éléments
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char filename_complet[MAX_PATH_CHARACTERS];
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int filename_position;
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strcpy(filename_complet, directory_name);
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Repertoire_Courant=opendir(directory_name);
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if(Repertoire_Courant == NULL) return; // Répertoire invalide ...
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strcat(filename_complet, PATH_SEPARATOR);
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filename_position = strlen(filename_complet);
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while ((entry=readdir(Repertoire_Courant)))
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{
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struct stat Infos_enreg;
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strcpy(&filename_complet[filename_position], entry->d_name);
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stat(filename_complet,&Infos_enreg);
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if (S_ISREG(Infos_enreg.st_mode))
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{
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Callback(filename_complet);
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}
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}
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closedir(Repertoire_Courant);
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}
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