mirror of
https://github.com/git/git.git
synced 2024-11-24 18:33:43 +08:00
ba26f296f9
On Windows, we have spawnv() variants to run a child process instead of fork()/exec(). In order to attach pipe ends to stdin, stdout, and stderr, we have to use this idiom: save1 = dup(1); dup2(pipe[1], 1); spawnv(); dup2(save1, 1); close(pipe[1]); assuming that the descriptors created by pipe() are not inheritable. Signed-off-by: Johannes Sixt <johannes.sixt@telecom.at>
536 lines
11 KiB
C
536 lines
11 KiB
C
#include "../git-compat-util.h"
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unsigned int _CRT_fmode = _O_BINARY;
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#undef open
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int mingw_open (const char *filename, int oflags, ...)
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{
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va_list args;
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unsigned mode;
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va_start(args, oflags);
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mode = va_arg(args, int);
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va_end(args);
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if (!strcmp(filename, "/dev/null"))
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filename = "nul";
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int fd = open(filename, oflags, mode);
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if (fd < 0 && (oflags & O_CREAT) && errno == EACCES) {
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DWORD attrs = GetFileAttributes(filename);
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if (attrs != INVALID_FILE_ATTRIBUTES && (attrs & FILE_ATTRIBUTE_DIRECTORY))
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errno = EISDIR;
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}
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return fd;
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}
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unsigned int sleep (unsigned int seconds)
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{
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Sleep(seconds*1000);
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return 0;
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}
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int mkstemp(char *template)
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{
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char *filename = mktemp(template);
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if (filename == NULL)
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return -1;
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return open(filename, O_RDWR | O_CREAT, 0600);
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}
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int gettimeofday(struct timeval *tv, void *tz)
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{
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SYSTEMTIME st;
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struct tm tm;
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GetSystemTime(&st);
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tm.tm_year = st.wYear-1900;
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tm.tm_mon = st.wMonth-1;
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tm.tm_mday = st.wDay;
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tm.tm_hour = st.wHour;
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tm.tm_min = st.wMinute;
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tm.tm_sec = st.wSecond;
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tv->tv_sec = tm_to_time_t(&tm);
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if (tv->tv_sec < 0)
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return -1;
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tv->tv_usec = st.wMilliseconds*1000;
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return 0;
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}
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int pipe(int filedes[2])
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{
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int fd;
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HANDLE h[2], parent;
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if (_pipe(filedes, 8192, 0) < 0)
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return -1;
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parent = GetCurrentProcess();
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if (!DuplicateHandle (parent, (HANDLE)_get_osfhandle(filedes[0]),
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parent, &h[0], 0, FALSE, DUPLICATE_SAME_ACCESS)) {
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close(filedes[0]);
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close(filedes[1]);
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return -1;
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}
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if (!DuplicateHandle (parent, (HANDLE)_get_osfhandle(filedes[1]),
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parent, &h[1], 0, FALSE, DUPLICATE_SAME_ACCESS)) {
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close(filedes[0]);
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close(filedes[1]);
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CloseHandle(h[0]);
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return -1;
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}
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fd = _open_osfhandle((int)h[0], O_NOINHERIT);
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if (fd < 0) {
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close(filedes[0]);
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close(filedes[1]);
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CloseHandle(h[0]);
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CloseHandle(h[1]);
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return -1;
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}
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close(filedes[0]);
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filedes[0] = fd;
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fd = _open_osfhandle((int)h[1], O_NOINHERIT);
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if (fd < 0) {
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close(filedes[0]);
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close(filedes[1]);
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CloseHandle(h[1]);
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return -1;
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}
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close(filedes[1]);
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filedes[1] = fd;
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return 0;
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}
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int poll(struct pollfd *ufds, unsigned int nfds, int timeout)
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{
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return -1;
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}
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struct tm *gmtime_r(const time_t *timep, struct tm *result)
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{
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/* gmtime() in MSVCRT.DLL is thread-safe, but not reentrant */
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memcpy(result, gmtime(timep), sizeof(struct tm));
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return result;
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}
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struct tm *localtime_r(const time_t *timep, struct tm *result)
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{
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/* localtime() in MSVCRT.DLL is thread-safe, but not reentrant */
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memcpy(result, localtime(timep), sizeof(struct tm));
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return result;
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}
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#undef getcwd
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char *mingw_getcwd(char *pointer, int len)
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{
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int i;
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char *ret = getcwd(pointer, len);
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if (!ret)
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return ret;
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for (i = 0; pointer[i]; i++)
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if (pointer[i] == '\\')
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pointer[i] = '/';
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return ret;
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}
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static const char *parse_interpreter(const char *cmd)
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{
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static char buf[100];
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char *p, *opt;
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int n, fd;
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/* don't even try a .exe */
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n = strlen(cmd);
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if (n >= 4 && !strcasecmp(cmd+n-4, ".exe"))
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return NULL;
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fd = open(cmd, O_RDONLY);
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if (fd < 0)
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return NULL;
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n = read(fd, buf, sizeof(buf)-1);
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close(fd);
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if (n < 4) /* at least '#!/x' and not error */
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return NULL;
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if (buf[0] != '#' || buf[1] != '!')
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return NULL;
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buf[n] = '\0';
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p = strchr(buf, '\n');
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if (!p)
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return NULL;
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*p = '\0';
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if (!(p = strrchr(buf+2, '/')) && !(p = strrchr(buf+2, '\\')))
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return NULL;
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/* strip options */
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if ((opt = strchr(p+1, ' ')))
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*opt = '\0';
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return p+1;
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}
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/*
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* Splits the PATH into parts.
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*/
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static char **get_path_split(void)
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{
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char *p, **path, *envpath = getenv("PATH");
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int i, n = 0;
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if (!envpath || !*envpath)
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return NULL;
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envpath = xstrdup(envpath);
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p = envpath;
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while (p) {
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char *dir = p;
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p = strchr(p, ';');
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if (p) *p++ = '\0';
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if (*dir) { /* not earlier, catches series of ; */
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++n;
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}
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}
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if (!n)
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return NULL;
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path = xmalloc((n+1)*sizeof(char*));
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p = envpath;
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i = 0;
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do {
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if (*p)
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path[i++] = xstrdup(p);
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p = p+strlen(p)+1;
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} while (i < n);
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path[i] = NULL;
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free(envpath);
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return path;
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}
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static void free_path_split(char **path)
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{
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if (!path)
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return;
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char **p = path;
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while (*p)
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free(*p++);
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free(path);
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}
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/*
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* exe_only means that we only want to detect .exe files, but not scripts
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* (which do not have an extension)
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*/
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static char *lookup_prog(const char *dir, const char *cmd, int isexe, int exe_only)
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{
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char path[MAX_PATH];
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snprintf(path, sizeof(path), "%s/%s.exe", dir, cmd);
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if (!isexe && access(path, F_OK) == 0)
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return xstrdup(path);
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path[strlen(path)-4] = '\0';
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if ((!exe_only || isexe) && access(path, F_OK) == 0)
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return xstrdup(path);
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return NULL;
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}
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/*
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* Determines the absolute path of cmd using the the split path in path.
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* If cmd contains a slash or backslash, no lookup is performed.
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*/
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static char *path_lookup(const char *cmd, char **path, int exe_only)
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{
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char *prog = NULL;
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int len = strlen(cmd);
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int isexe = len >= 4 && !strcasecmp(cmd+len-4, ".exe");
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if (strchr(cmd, '/') || strchr(cmd, '\\'))
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prog = xstrdup(cmd);
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while (!prog && *path)
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prog = lookup_prog(*path++, cmd, isexe, exe_only);
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return prog;
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}
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static int try_shell_exec(const char *cmd, char *const *argv, char **env)
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{
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const char *interpr = parse_interpreter(cmd);
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char **path;
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char *prog;
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int pid = 0;
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if (!interpr)
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return 0;
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path = get_path_split();
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prog = path_lookup(interpr, path, 1);
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if (prog) {
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int argc = 0;
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const char **argv2;
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while (argv[argc]) argc++;
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argv2 = xmalloc(sizeof(*argv) * (argc+2));
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argv2[0] = (char *)interpr;
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argv2[1] = (char *)cmd; /* full path to the script file */
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memcpy(&argv2[2], &argv[1], sizeof(*argv) * argc);
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pid = spawnve(_P_NOWAIT, prog, argv2, (const char **)env);
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if (pid >= 0) {
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int status;
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if (waitpid(pid, &status, 0) < 0)
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status = 255;
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exit(status);
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}
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pid = 1; /* indicate that we tried but failed */
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free(prog);
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free(argv2);
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}
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free_path_split(path);
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return pid;
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}
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static void mingw_execve(const char *cmd, char *const *argv, char *const *env)
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{
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/* check if git_command is a shell script */
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if (!try_shell_exec(cmd, argv, (char **)env)) {
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int pid, status;
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pid = spawnve(_P_NOWAIT, cmd, (const char **)argv, (const char **)env);
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if (pid < 0)
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return;
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if (waitpid(pid, &status, 0) < 0)
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status = 255;
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exit(status);
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}
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}
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void mingw_execvp(const char *cmd, char *const *argv)
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{
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char **path = get_path_split();
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char *prog = path_lookup(cmd, path, 0);
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if (prog) {
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mingw_execve(prog, argv, environ);
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free(prog);
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} else
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errno = ENOENT;
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free_path_split(path);
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}
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char **copy_environ()
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{
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char **env;
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int i = 0;
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while (environ[i])
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i++;
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env = xmalloc((i+1)*sizeof(*env));
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for (i = 0; environ[i]; i++)
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env[i] = xstrdup(environ[i]);
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env[i] = NULL;
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return env;
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}
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void free_environ(char **env)
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{
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int i;
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for (i = 0; env[i]; i++)
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free(env[i]);
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free(env);
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}
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static int lookup_env(char **env, const char *name, size_t nmln)
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{
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int i;
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for (i = 0; env[i]; i++) {
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if (0 == strncmp(env[i], name, nmln)
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&& '=' == env[i][nmln])
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/* matches */
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return i;
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}
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return -1;
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}
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/*
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* If name contains '=', then sets the variable, otherwise it unsets it
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*/
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char **env_setenv(char **env, const char *name)
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{
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char *eq = strchrnul(name, '=');
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int i = lookup_env(env, name, eq-name);
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if (i < 0) {
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if (*eq) {
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for (i = 0; env[i]; i++)
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;
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env = xrealloc(env, (i+2)*sizeof(*env));
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env[i] = xstrdup(name);
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env[i+1] = NULL;
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}
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}
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else {
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free(env[i]);
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if (*eq)
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env[i] = xstrdup(name);
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else
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for (; env[i]; i++)
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env[i] = env[i+1];
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}
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return env;
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}
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#undef rename
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int mingw_rename(const char *pold, const char *pnew)
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{
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/*
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* Try native rename() first to get errno right.
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* It is based on MoveFile(), which cannot overwrite existing files.
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*/
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if (!rename(pold, pnew))
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return 0;
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if (errno != EEXIST)
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return -1;
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if (MoveFileEx(pold, pnew, MOVEFILE_REPLACE_EXISTING))
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return 0;
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/* TODO: translate more errors */
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if (GetLastError() == ERROR_ACCESS_DENIED) {
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DWORD attrs = GetFileAttributes(pnew);
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if (attrs != INVALID_FILE_ATTRIBUTES && (attrs & FILE_ATTRIBUTE_DIRECTORY)) {
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errno = EISDIR;
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return -1;
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}
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}
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errno = EACCES;
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return -1;
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}
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struct passwd *getpwuid(int uid)
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{
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static char user_name[100];
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static struct passwd p;
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DWORD len = sizeof(user_name);
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if (!GetUserName(user_name, &len))
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return NULL;
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p.pw_name = user_name;
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p.pw_gecos = "unknown";
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p.pw_dir = NULL;
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return &p;
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}
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static HANDLE timer_event;
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static HANDLE timer_thread;
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static int timer_interval;
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static int one_shot;
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static sig_handler_t timer_fn = SIG_DFL;
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/* The timer works like this:
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* The thread, ticktack(), is a trivial routine that most of the time
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* only waits to receive the signal to terminate. The main thread tells
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* the thread to terminate by setting the timer_event to the signalled
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* state.
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* But ticktack() interrupts the wait state after the timer's interval
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* length to call the signal handler.
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*/
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static __stdcall unsigned ticktack(void *dummy)
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{
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while (WaitForSingleObject(timer_event, timer_interval) == WAIT_TIMEOUT) {
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if (timer_fn == SIG_DFL)
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die("Alarm");
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if (timer_fn != SIG_IGN)
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timer_fn(SIGALRM);
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if (one_shot)
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break;
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}
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return 0;
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}
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static int start_timer_thread(void)
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{
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timer_event = CreateEvent(NULL, FALSE, FALSE, NULL);
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if (timer_event) {
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timer_thread = (HANDLE) _beginthreadex(NULL, 0, ticktack, NULL, 0, NULL);
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if (!timer_thread )
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return errno = ENOMEM,
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error("cannot start timer thread");
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} else
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return errno = ENOMEM,
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error("cannot allocate resources for timer");
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return 0;
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}
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static void stop_timer_thread(void)
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{
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if (timer_event)
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SetEvent(timer_event); /* tell thread to terminate */
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if (timer_thread) {
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int rc = WaitForSingleObject(timer_thread, 1000);
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if (rc == WAIT_TIMEOUT)
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error("timer thread did not terminate timely");
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else if (rc != WAIT_OBJECT_0)
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error("waiting for timer thread failed: %lu",
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GetLastError());
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CloseHandle(timer_thread);
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}
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if (timer_event)
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CloseHandle(timer_event);
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timer_event = NULL;
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timer_thread = NULL;
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}
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static inline int is_timeval_eq(const struct timeval *i1, const struct timeval *i2)
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{
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return i1->tv_sec == i2->tv_sec && i1->tv_usec == i2->tv_usec;
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}
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int setitimer(int type, struct itimerval *in, struct itimerval *out)
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{
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static const struct timeval zero;
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static int atexit_done;
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if (out != NULL)
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return errno = EINVAL,
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error("setitimer param 3 != NULL not implemented");
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if (!is_timeval_eq(&in->it_interval, &zero) &&
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!is_timeval_eq(&in->it_interval, &in->it_value))
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return errno = EINVAL,
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error("setitimer: it_interval must be zero or eq it_value");
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if (timer_thread)
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stop_timer_thread();
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if (is_timeval_eq(&in->it_value, &zero) &&
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is_timeval_eq(&in->it_interval, &zero))
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return 0;
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timer_interval = in->it_value.tv_sec * 1000 + in->it_value.tv_usec / 1000;
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one_shot = is_timeval_eq(&in->it_interval, &zero);
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if (!atexit_done) {
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atexit(stop_timer_thread);
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atexit_done = 1;
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}
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return start_timer_thread();
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}
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int sigaction(int sig, struct sigaction *in, struct sigaction *out)
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{
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if (sig != SIGALRM)
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return errno = EINVAL,
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error("sigaction only implemented for SIGALRM");
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if (out != NULL)
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return errno = EINVAL,
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error("sigaction: param 3 != NULL not implemented");
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timer_fn = in->sa_handler;
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return 0;
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}
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#undef signal
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sig_handler_t mingw_signal(int sig, sig_handler_t handler)
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{
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if (sig != SIGALRM)
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return signal(sig, handler);
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sig_handler_t old = timer_fn;
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timer_fn = handler;
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return old;
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}
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