07fc0b79ae6b69981084b6a6fa4e2ae85a754655
   1#include "../git-compat-util.h"
   2#include "win32.h"
   3#include <conio.h>
   4#include <wchar.h>
   5#include "../strbuf.h"
   6#include "../run-command.h"
   7#include "../cache.h"
   8
   9#define HCAST(type, handle) ((type)(intptr_t)handle)
  10
  11static const int delay[] = { 0, 1, 10, 20, 40 };
  12
  13int err_win_to_posix(DWORD winerr)
  14{
  15        int error = ENOSYS;
  16        switch(winerr) {
  17        case ERROR_ACCESS_DENIED: error = EACCES; break;
  18        case ERROR_ACCOUNT_DISABLED: error = EACCES; break;
  19        case ERROR_ACCOUNT_RESTRICTION: error = EACCES; break;
  20        case ERROR_ALREADY_ASSIGNED: error = EBUSY; break;
  21        case ERROR_ALREADY_EXISTS: error = EEXIST; break;
  22        case ERROR_ARITHMETIC_OVERFLOW: error = ERANGE; break;
  23        case ERROR_BAD_COMMAND: error = EIO; break;
  24        case ERROR_BAD_DEVICE: error = ENODEV; break;
  25        case ERROR_BAD_DRIVER_LEVEL: error = ENXIO; break;
  26        case ERROR_BAD_EXE_FORMAT: error = ENOEXEC; break;
  27        case ERROR_BAD_FORMAT: error = ENOEXEC; break;
  28        case ERROR_BAD_LENGTH: error = EINVAL; break;
  29        case ERROR_BAD_PATHNAME: error = ENOENT; break;
  30        case ERROR_BAD_PIPE: error = EPIPE; break;
  31        case ERROR_BAD_UNIT: error = ENODEV; break;
  32        case ERROR_BAD_USERNAME: error = EINVAL; break;
  33        case ERROR_BROKEN_PIPE: error = EPIPE; break;
  34        case ERROR_BUFFER_OVERFLOW: error = ENAMETOOLONG; break;
  35        case ERROR_BUSY: error = EBUSY; break;
  36        case ERROR_BUSY_DRIVE: error = EBUSY; break;
  37        case ERROR_CALL_NOT_IMPLEMENTED: error = ENOSYS; break;
  38        case ERROR_CANNOT_MAKE: error = EACCES; break;
  39        case ERROR_CANTOPEN: error = EIO; break;
  40        case ERROR_CANTREAD: error = EIO; break;
  41        case ERROR_CANTWRITE: error = EIO; break;
  42        case ERROR_CRC: error = EIO; break;
  43        case ERROR_CURRENT_DIRECTORY: error = EACCES; break;
  44        case ERROR_DEVICE_IN_USE: error = EBUSY; break;
  45        case ERROR_DEV_NOT_EXIST: error = ENODEV; break;
  46        case ERROR_DIRECTORY: error = EINVAL; break;
  47        case ERROR_DIR_NOT_EMPTY: error = ENOTEMPTY; break;
  48        case ERROR_DISK_CHANGE: error = EIO; break;
  49        case ERROR_DISK_FULL: error = ENOSPC; break;
  50        case ERROR_DRIVE_LOCKED: error = EBUSY; break;
  51        case ERROR_ENVVAR_NOT_FOUND: error = EINVAL; break;
  52        case ERROR_EXE_MARKED_INVALID: error = ENOEXEC; break;
  53        case ERROR_FILENAME_EXCED_RANGE: error = ENAMETOOLONG; break;
  54        case ERROR_FILE_EXISTS: error = EEXIST; break;
  55        case ERROR_FILE_INVALID: error = ENODEV; break;
  56        case ERROR_FILE_NOT_FOUND: error = ENOENT; break;
  57        case ERROR_GEN_FAILURE: error = EIO; break;
  58        case ERROR_HANDLE_DISK_FULL: error = ENOSPC; break;
  59        case ERROR_INSUFFICIENT_BUFFER: error = ENOMEM; break;
  60        case ERROR_INVALID_ACCESS: error = EACCES; break;
  61        case ERROR_INVALID_ADDRESS: error = EFAULT; break;
  62        case ERROR_INVALID_BLOCK: error = EFAULT; break;
  63        case ERROR_INVALID_DATA: error = EINVAL; break;
  64        case ERROR_INVALID_DRIVE: error = ENODEV; break;
  65        case ERROR_INVALID_EXE_SIGNATURE: error = ENOEXEC; break;
  66        case ERROR_INVALID_FLAGS: error = EINVAL; break;
  67        case ERROR_INVALID_FUNCTION: error = ENOSYS; break;
  68        case ERROR_INVALID_HANDLE: error = EBADF; break;
  69        case ERROR_INVALID_LOGON_HOURS: error = EACCES; break;
  70        case ERROR_INVALID_NAME: error = EINVAL; break;
  71        case ERROR_INVALID_OWNER: error = EINVAL; break;
  72        case ERROR_INVALID_PARAMETER: error = EINVAL; break;
  73        case ERROR_INVALID_PASSWORD: error = EPERM; break;
  74        case ERROR_INVALID_PRIMARY_GROUP: error = EINVAL; break;
  75        case ERROR_INVALID_SIGNAL_NUMBER: error = EINVAL; break;
  76        case ERROR_INVALID_TARGET_HANDLE: error = EIO; break;
  77        case ERROR_INVALID_WORKSTATION: error = EACCES; break;
  78        case ERROR_IO_DEVICE: error = EIO; break;
  79        case ERROR_IO_INCOMPLETE: error = EINTR; break;
  80        case ERROR_LOCKED: error = EBUSY; break;
  81        case ERROR_LOCK_VIOLATION: error = EACCES; break;
  82        case ERROR_LOGON_FAILURE: error = EACCES; break;
  83        case ERROR_MAPPED_ALIGNMENT: error = EINVAL; break;
  84        case ERROR_META_EXPANSION_TOO_LONG: error = E2BIG; break;
  85        case ERROR_MORE_DATA: error = EPIPE; break;
  86        case ERROR_NEGATIVE_SEEK: error = ESPIPE; break;
  87        case ERROR_NOACCESS: error = EFAULT; break;
  88        case ERROR_NONE_MAPPED: error = EINVAL; break;
  89        case ERROR_NOT_ENOUGH_MEMORY: error = ENOMEM; break;
  90        case ERROR_NOT_READY: error = EAGAIN; break;
  91        case ERROR_NOT_SAME_DEVICE: error = EXDEV; break;
  92        case ERROR_NO_DATA: error = EPIPE; break;
  93        case ERROR_NO_MORE_SEARCH_HANDLES: error = EIO; break;
  94        case ERROR_NO_PROC_SLOTS: error = EAGAIN; break;
  95        case ERROR_NO_SUCH_PRIVILEGE: error = EACCES; break;
  96        case ERROR_OPEN_FAILED: error = EIO; break;
  97        case ERROR_OPEN_FILES: error = EBUSY; break;
  98        case ERROR_OPERATION_ABORTED: error = EINTR; break;
  99        case ERROR_OUTOFMEMORY: error = ENOMEM; break;
 100        case ERROR_PASSWORD_EXPIRED: error = EACCES; break;
 101        case ERROR_PATH_BUSY: error = EBUSY; break;
 102        case ERROR_PATH_NOT_FOUND: error = ENOENT; break;
 103        case ERROR_PIPE_BUSY: error = EBUSY; break;
 104        case ERROR_PIPE_CONNECTED: error = EPIPE; break;
 105        case ERROR_PIPE_LISTENING: error = EPIPE; break;
 106        case ERROR_PIPE_NOT_CONNECTED: error = EPIPE; break;
 107        case ERROR_PRIVILEGE_NOT_HELD: error = EACCES; break;
 108        case ERROR_READ_FAULT: error = EIO; break;
 109        case ERROR_SEEK: error = EIO; break;
 110        case ERROR_SEEK_ON_DEVICE: error = ESPIPE; break;
 111        case ERROR_SHARING_BUFFER_EXCEEDED: error = ENFILE; break;
 112        case ERROR_SHARING_VIOLATION: error = EACCES; break;
 113        case ERROR_STACK_OVERFLOW: error = ENOMEM; break;
 114        case ERROR_SWAPERROR: error = ENOENT; break;
 115        case ERROR_TOO_MANY_MODULES: error = EMFILE; break;
 116        case ERROR_TOO_MANY_OPEN_FILES: error = EMFILE; break;
 117        case ERROR_UNRECOGNIZED_MEDIA: error = ENXIO; break;
 118        case ERROR_UNRECOGNIZED_VOLUME: error = ENODEV; break;
 119        case ERROR_WAIT_NO_CHILDREN: error = ECHILD; break;
 120        case ERROR_WRITE_FAULT: error = EIO; break;
 121        case ERROR_WRITE_PROTECT: error = EROFS; break;
 122        }
 123        return error;
 124}
 125
 126static inline int is_file_in_use_error(DWORD errcode)
 127{
 128        switch (errcode) {
 129        case ERROR_SHARING_VIOLATION:
 130        case ERROR_ACCESS_DENIED:
 131                return 1;
 132        }
 133
 134        return 0;
 135}
 136
 137static int read_yes_no_answer(void)
 138{
 139        char answer[1024];
 140
 141        if (fgets(answer, sizeof(answer), stdin)) {
 142                size_t answer_len = strlen(answer);
 143                int got_full_line = 0, c;
 144
 145                /* remove the newline */
 146                if (answer_len >= 2 && answer[answer_len-2] == '\r') {
 147                        answer[answer_len-2] = '\0';
 148                        got_full_line = 1;
 149                } else if (answer_len >= 1 && answer[answer_len-1] == '\n') {
 150                        answer[answer_len-1] = '\0';
 151                        got_full_line = 1;
 152                }
 153                /* flush the buffer in case we did not get the full line */
 154                if (!got_full_line)
 155                        while ((c = getchar()) != EOF && c != '\n')
 156                                ;
 157        } else
 158                /* we could not read, return the
 159                 * default answer which is no */
 160                return 0;
 161
 162        if (tolower(answer[0]) == 'y' && !answer[1])
 163                return 1;
 164        if (!strncasecmp(answer, "yes", sizeof(answer)))
 165                return 1;
 166        if (tolower(answer[0]) == 'n' && !answer[1])
 167                return 0;
 168        if (!strncasecmp(answer, "no", sizeof(answer)))
 169                return 0;
 170
 171        /* did not find an answer we understand */
 172        return -1;
 173}
 174
 175static int ask_yes_no_if_possible(const char *format, ...)
 176{
 177        char question[4096];
 178        const char *retry_hook[] = { NULL, NULL, NULL };
 179        va_list args;
 180
 181        va_start(args, format);
 182        vsnprintf(question, sizeof(question), format, args);
 183        va_end(args);
 184
 185        if ((retry_hook[0] = mingw_getenv("GIT_ASK_YESNO"))) {
 186                retry_hook[1] = question;
 187                return !run_command_v_opt(retry_hook, 0);
 188        }
 189
 190        if (!isatty(_fileno(stdin)) || !isatty(_fileno(stderr)))
 191                return 0;
 192
 193        while (1) {
 194                int answer;
 195                fprintf(stderr, "%s (y/n) ", question);
 196
 197                if ((answer = read_yes_no_answer()) >= 0)
 198                        return answer;
 199
 200                fprintf(stderr, "Sorry, I did not understand your answer. "
 201                                "Please type 'y' or 'n'\n");
 202        }
 203}
 204
 205int mingw_unlink(const char *pathname)
 206{
 207        int ret, tries = 0;
 208        wchar_t wpathname[MAX_PATH];
 209        if (xutftowcs_path(wpathname, pathname) < 0)
 210                return -1;
 211
 212        /* read-only files cannot be removed */
 213        _wchmod(wpathname, 0666);
 214        while ((ret = _wunlink(wpathname)) == -1 && tries < ARRAY_SIZE(delay)) {
 215                if (!is_file_in_use_error(GetLastError()))
 216                        break;
 217                /*
 218                 * We assume that some other process had the source or
 219                 * destination file open at the wrong moment and retry.
 220                 * In order to give the other process a higher chance to
 221                 * complete its operation, we give up our time slice now.
 222                 * If we have to retry again, we do sleep a bit.
 223                 */
 224                Sleep(delay[tries]);
 225                tries++;
 226        }
 227        while (ret == -1 && is_file_in_use_error(GetLastError()) &&
 228               ask_yes_no_if_possible("Unlink of file '%s' failed. "
 229                        "Should I try again?", pathname))
 230               ret = _wunlink(wpathname);
 231        return ret;
 232}
 233
 234static int is_dir_empty(const wchar_t *wpath)
 235{
 236        WIN32_FIND_DATAW findbuf;
 237        HANDLE handle;
 238        wchar_t wbuf[MAX_PATH + 2];
 239        wcscpy(wbuf, wpath);
 240        wcscat(wbuf, L"\\*");
 241        handle = FindFirstFileW(wbuf, &findbuf);
 242        if (handle == INVALID_HANDLE_VALUE)
 243                return GetLastError() == ERROR_NO_MORE_FILES;
 244
 245        while (!wcscmp(findbuf.cFileName, L".") ||
 246                        !wcscmp(findbuf.cFileName, L".."))
 247                if (!FindNextFileW(handle, &findbuf)) {
 248                        DWORD err = GetLastError();
 249                        FindClose(handle);
 250                        return err == ERROR_NO_MORE_FILES;
 251                }
 252        FindClose(handle);
 253        return 0;
 254}
 255
 256int mingw_rmdir(const char *pathname)
 257{
 258        int ret, tries = 0;
 259        wchar_t wpathname[MAX_PATH];
 260        if (xutftowcs_path(wpathname, pathname) < 0)
 261                return -1;
 262
 263        while ((ret = _wrmdir(wpathname)) == -1 && tries < ARRAY_SIZE(delay)) {
 264                if (!is_file_in_use_error(GetLastError()))
 265                        errno = err_win_to_posix(GetLastError());
 266                if (errno != EACCES)
 267                        break;
 268                if (!is_dir_empty(wpathname)) {
 269                        errno = ENOTEMPTY;
 270                        break;
 271                }
 272                /*
 273                 * We assume that some other process had the source or
 274                 * destination file open at the wrong moment and retry.
 275                 * In order to give the other process a higher chance to
 276                 * complete its operation, we give up our time slice now.
 277                 * If we have to retry again, we do sleep a bit.
 278                 */
 279                Sleep(delay[tries]);
 280                tries++;
 281        }
 282        while (ret == -1 && errno == EACCES && is_file_in_use_error(GetLastError()) &&
 283               ask_yes_no_if_possible("Deletion of directory '%s' failed. "
 284                        "Should I try again?", pathname))
 285               ret = _wrmdir(wpathname);
 286        return ret;
 287}
 288
 289static inline int needs_hiding(const char *path)
 290{
 291        const char *basename;
 292
 293        if (hide_dotfiles == HIDE_DOTFILES_FALSE)
 294                return 0;
 295
 296        /* We cannot use basename(), as it would remove trailing slashes */
 297        mingw_skip_dos_drive_prefix((char **)&path);
 298        if (!*path)
 299                return 0;
 300
 301        for (basename = path; *path; path++)
 302                if (is_dir_sep(*path)) {
 303                        do {
 304                                path++;
 305                        } while (is_dir_sep(*path));
 306                        /* ignore trailing slashes */
 307                        if (*path)
 308                                basename = path;
 309                }
 310
 311        if (hide_dotfiles == HIDE_DOTFILES_TRUE)
 312                return *basename == '.';
 313
 314        assert(hide_dotfiles == HIDE_DOTFILES_DOTGITONLY);
 315        return !strncasecmp(".git", basename, 4) &&
 316                (!basename[4] || is_dir_sep(basename[4]));
 317}
 318
 319static int set_hidden_flag(const wchar_t *path, int set)
 320{
 321        DWORD original = GetFileAttributesW(path), modified;
 322        if (set)
 323                modified = original | FILE_ATTRIBUTE_HIDDEN;
 324        else
 325                modified = original & ~FILE_ATTRIBUTE_HIDDEN;
 326        if (original == modified || SetFileAttributesW(path, modified))
 327                return 0;
 328        errno = err_win_to_posix(GetLastError());
 329        return -1;
 330}
 331
 332int mingw_mkdir(const char *path, int mode)
 333{
 334        int ret;
 335        wchar_t wpath[MAX_PATH];
 336        if (xutftowcs_path(wpath, path) < 0)
 337                return -1;
 338        ret = _wmkdir(wpath);
 339        if (!ret && needs_hiding(path))
 340                return set_hidden_flag(wpath, 1);
 341        return ret;
 342}
 343
 344/*
 345 * Calling CreateFile() using FILE_APPEND_DATA and without FILE_WRITE_DATA
 346 * is documented in [1] as opening a writable file handle in append mode.
 347 * (It is believed that) this is atomic since it is maintained by the
 348 * kernel unlike the O_APPEND flag which is racily maintained by the CRT.
 349 *
 350 * [1] https://docs.microsoft.com/en-us/windows/desktop/fileio/file-access-rights-constants
 351 *
 352 * This trick does not appear to work for named pipes.  Instead it creates
 353 * a named pipe client handle that cannot be written to.  Callers should
 354 * just use the regular _wopen() for them.  (And since client handle gets
 355 * bound to a unique server handle, it isn't really an issue.)
 356 */
 357static int mingw_open_append(wchar_t const *wfilename, int oflags, ...)
 358{
 359        HANDLE handle;
 360        int fd;
 361        DWORD create = (oflags & O_CREAT) ? OPEN_ALWAYS : OPEN_EXISTING;
 362
 363        /* only these flags are supported */
 364        if ((oflags & ~O_CREAT) != (O_WRONLY | O_APPEND))
 365                return errno = ENOSYS, -1;
 366
 367        /*
 368         * FILE_SHARE_WRITE is required to permit child processes
 369         * to append to the file.
 370         */
 371        handle = CreateFileW(wfilename, FILE_APPEND_DATA,
 372                        FILE_SHARE_WRITE | FILE_SHARE_READ,
 373                        NULL, create, FILE_ATTRIBUTE_NORMAL, NULL);
 374        if (handle == INVALID_HANDLE_VALUE)
 375                return errno = err_win_to_posix(GetLastError()), -1;
 376
 377        /*
 378         * No O_APPEND here, because the CRT uses it only to reset the
 379         * file pointer to EOF before each write(); but that is not
 380         * necessary (and may lead to races) for a file created with
 381         * FILE_APPEND_DATA.
 382         */
 383        fd = _open_osfhandle((intptr_t)handle, O_BINARY);
 384        if (fd < 0)
 385                CloseHandle(handle);
 386        return fd;
 387}
 388
 389/*
 390 * Does the pathname map to the local named pipe filesystem?
 391 * That is, does it have a "//./pipe/" prefix?
 392 */
 393static int is_local_named_pipe_path(const char *filename)
 394{
 395        return (is_dir_sep(filename[0]) &&
 396                is_dir_sep(filename[1]) &&
 397                filename[2] == '.'  &&
 398                is_dir_sep(filename[3]) &&
 399                !strncasecmp(filename+4, "pipe", 4) &&
 400                is_dir_sep(filename[8]) &&
 401                filename[9]);
 402}
 403
 404int mingw_open (const char *filename, int oflags, ...)
 405{
 406        typedef int (*open_fn_t)(wchar_t const *wfilename, int oflags, ...);
 407        va_list args;
 408        unsigned mode;
 409        int fd;
 410        wchar_t wfilename[MAX_PATH];
 411        open_fn_t open_fn;
 412
 413        va_start(args, oflags);
 414        mode = va_arg(args, int);
 415        va_end(args);
 416
 417        if (filename && !strcmp(filename, "/dev/null"))
 418                filename = "nul";
 419
 420        if ((oflags & O_APPEND) && !is_local_named_pipe_path(filename))
 421                open_fn = mingw_open_append;
 422        else
 423                open_fn = _wopen;
 424
 425        if (xutftowcs_path(wfilename, filename) < 0)
 426                return -1;
 427        fd = open_fn(wfilename, oflags, mode);
 428
 429        if (fd < 0 && (oflags & O_ACCMODE) != O_RDONLY && errno == EACCES) {
 430                DWORD attrs = GetFileAttributesW(wfilename);
 431                if (attrs != INVALID_FILE_ATTRIBUTES && (attrs & FILE_ATTRIBUTE_DIRECTORY))
 432                        errno = EISDIR;
 433        }
 434        if ((oflags & O_CREAT) && needs_hiding(filename)) {
 435                /*
 436                 * Internally, _wopen() uses the CreateFile() API which errors
 437                 * out with an ERROR_ACCESS_DENIED if CREATE_ALWAYS was
 438                 * specified and an already existing file's attributes do not
 439                 * match *exactly*. As there is no mode or flag we can set that
 440                 * would correspond to FILE_ATTRIBUTE_HIDDEN, let's just try
 441                 * again *without* the O_CREAT flag (that corresponds to the
 442                 * CREATE_ALWAYS flag of CreateFile()).
 443                 */
 444                if (fd < 0 && errno == EACCES)
 445                        fd = open_fn(wfilename, oflags & ~O_CREAT, mode);
 446                if (fd >= 0 && set_hidden_flag(wfilename, 1))
 447                        warning("could not mark '%s' as hidden.", filename);
 448        }
 449        return fd;
 450}
 451
 452static BOOL WINAPI ctrl_ignore(DWORD type)
 453{
 454        return TRUE;
 455}
 456
 457#undef fgetc
 458int mingw_fgetc(FILE *stream)
 459{
 460        int ch;
 461        if (!isatty(_fileno(stream)))
 462                return fgetc(stream);
 463
 464        SetConsoleCtrlHandler(ctrl_ignore, TRUE);
 465        while (1) {
 466                ch = fgetc(stream);
 467                if (ch != EOF || GetLastError() != ERROR_OPERATION_ABORTED)
 468                        break;
 469
 470                /* Ctrl+C was pressed, simulate SIGINT and retry */
 471                mingw_raise(SIGINT);
 472        }
 473        SetConsoleCtrlHandler(ctrl_ignore, FALSE);
 474        return ch;
 475}
 476
 477#undef fopen
 478FILE *mingw_fopen (const char *filename, const char *otype)
 479{
 480        int hide = needs_hiding(filename);
 481        FILE *file;
 482        wchar_t wfilename[MAX_PATH], wotype[4];
 483        if (filename && !strcmp(filename, "/dev/null"))
 484                filename = "nul";
 485        if (xutftowcs_path(wfilename, filename) < 0 ||
 486                xutftowcs(wotype, otype, ARRAY_SIZE(wotype)) < 0)
 487                return NULL;
 488        if (hide && !access(filename, F_OK) && set_hidden_flag(wfilename, 0)) {
 489                error("could not unhide %s", filename);
 490                return NULL;
 491        }
 492        file = _wfopen(wfilename, wotype);
 493        if (!file && GetLastError() == ERROR_INVALID_NAME)
 494                errno = ENOENT;
 495        if (file && hide && set_hidden_flag(wfilename, 1))
 496                warning("could not mark '%s' as hidden.", filename);
 497        return file;
 498}
 499
 500FILE *mingw_freopen (const char *filename, const char *otype, FILE *stream)
 501{
 502        int hide = needs_hiding(filename);
 503        FILE *file;
 504        wchar_t wfilename[MAX_PATH], wotype[4];
 505        if (filename && !strcmp(filename, "/dev/null"))
 506                filename = "nul";
 507        if (xutftowcs_path(wfilename, filename) < 0 ||
 508                xutftowcs(wotype, otype, ARRAY_SIZE(wotype)) < 0)
 509                return NULL;
 510        if (hide && !access(filename, F_OK) && set_hidden_flag(wfilename, 0)) {
 511                error("could not unhide %s", filename);
 512                return NULL;
 513        }
 514        file = _wfreopen(wfilename, wotype, stream);
 515        if (file && hide && set_hidden_flag(wfilename, 1))
 516                warning("could not mark '%s' as hidden.", filename);
 517        return file;
 518}
 519
 520#undef fflush
 521int mingw_fflush(FILE *stream)
 522{
 523        int ret = fflush(stream);
 524
 525        /*
 526         * write() is used behind the scenes of stdio output functions.
 527         * Since git code does not check for errors after each stdio write
 528         * operation, it can happen that write() is called by a later
 529         * stdio function even if an earlier write() call failed. In the
 530         * case of a pipe whose readable end was closed, only the first
 531         * call to write() reports EPIPE on Windows. Subsequent write()
 532         * calls report EINVAL. It is impossible to notice whether this
 533         * fflush invocation triggered such a case, therefore, we have to
 534         * catch all EINVAL errors whole-sale.
 535         */
 536        if (ret && errno == EINVAL)
 537                errno = EPIPE;
 538
 539        return ret;
 540}
 541
 542#undef write
 543ssize_t mingw_write(int fd, const void *buf, size_t len)
 544{
 545        ssize_t result = write(fd, buf, len);
 546
 547        if (result < 0 && errno == EINVAL && buf) {
 548                /* check if fd is a pipe */
 549                HANDLE h = (HANDLE) _get_osfhandle(fd);
 550                if (GetFileType(h) == FILE_TYPE_PIPE)
 551                        errno = EPIPE;
 552                else
 553                        errno = EINVAL;
 554        }
 555
 556        return result;
 557}
 558
 559int mingw_access(const char *filename, int mode)
 560{
 561        wchar_t wfilename[MAX_PATH];
 562        if (xutftowcs_path(wfilename, filename) < 0)
 563                return -1;
 564        /* X_OK is not supported by the MSVCRT version */
 565        return _waccess(wfilename, mode & ~X_OK);
 566}
 567
 568int mingw_chdir(const char *dirname)
 569{
 570        wchar_t wdirname[MAX_PATH];
 571        if (xutftowcs_path(wdirname, dirname) < 0)
 572                return -1;
 573        return _wchdir(wdirname);
 574}
 575
 576int mingw_chmod(const char *filename, int mode)
 577{
 578        wchar_t wfilename[MAX_PATH];
 579        if (xutftowcs_path(wfilename, filename) < 0)
 580                return -1;
 581        return _wchmod(wfilename, mode);
 582}
 583
 584/*
 585 * The unit of FILETIME is 100-nanoseconds since January 1, 1601, UTC.
 586 * Returns the 100-nanoseconds ("hekto nanoseconds") since the epoch.
 587 */
 588static inline long long filetime_to_hnsec(const FILETIME *ft)
 589{
 590        long long winTime = ((long long)ft->dwHighDateTime << 32) + ft->dwLowDateTime;
 591        /* Windows to Unix Epoch conversion */
 592        return winTime - 116444736000000000LL;
 593}
 594
 595static inline time_t filetime_to_time_t(const FILETIME *ft)
 596{
 597        return (time_t)(filetime_to_hnsec(ft) / 10000000);
 598}
 599
 600/**
 601 * Verifies that safe_create_leading_directories() would succeed.
 602 */
 603static int has_valid_directory_prefix(wchar_t *wfilename)
 604{
 605        int n = wcslen(wfilename);
 606
 607        while (n > 0) {
 608                wchar_t c = wfilename[--n];
 609                DWORD attributes;
 610
 611                if (!is_dir_sep(c))
 612                        continue;
 613
 614                wfilename[n] = L'\0';
 615                attributes = GetFileAttributesW(wfilename);
 616                wfilename[n] = c;
 617                if (attributes == FILE_ATTRIBUTE_DIRECTORY ||
 618                                attributes == FILE_ATTRIBUTE_DEVICE)
 619                        return 1;
 620                if (attributes == INVALID_FILE_ATTRIBUTES)
 621                        switch (GetLastError()) {
 622                        case ERROR_PATH_NOT_FOUND:
 623                                continue;
 624                        case ERROR_FILE_NOT_FOUND:
 625                                /* This implies parent directory exists. */
 626                                return 1;
 627                        }
 628                return 0;
 629        }
 630        return 1;
 631}
 632
 633/* We keep the do_lstat code in a separate function to avoid recursion.
 634 * When a path ends with a slash, the stat will fail with ENOENT. In
 635 * this case, we strip the trailing slashes and stat again.
 636 *
 637 * If follow is true then act like stat() and report on the link
 638 * target. Otherwise report on the link itself.
 639 */
 640static int do_lstat(int follow, const char *file_name, struct stat *buf)
 641{
 642        WIN32_FILE_ATTRIBUTE_DATA fdata;
 643        wchar_t wfilename[MAX_PATH];
 644        if (xutftowcs_path(wfilename, file_name) < 0)
 645                return -1;
 646
 647        if (GetFileAttributesExW(wfilename, GetFileExInfoStandard, &fdata)) {
 648                buf->st_ino = 0;
 649                buf->st_gid = 0;
 650                buf->st_uid = 0;
 651                buf->st_nlink = 1;
 652                buf->st_mode = file_attr_to_st_mode(fdata.dwFileAttributes);
 653                buf->st_size = fdata.nFileSizeLow |
 654                        (((off_t)fdata.nFileSizeHigh)<<32);
 655                buf->st_dev = buf->st_rdev = 0; /* not used by Git */
 656                buf->st_atime = filetime_to_time_t(&(fdata.ftLastAccessTime));
 657                buf->st_mtime = filetime_to_time_t(&(fdata.ftLastWriteTime));
 658                buf->st_ctime = filetime_to_time_t(&(fdata.ftCreationTime));
 659                if (fdata.dwFileAttributes & FILE_ATTRIBUTE_REPARSE_POINT) {
 660                        WIN32_FIND_DATAW findbuf;
 661                        HANDLE handle = FindFirstFileW(wfilename, &findbuf);
 662                        if (handle != INVALID_HANDLE_VALUE) {
 663                                if ((findbuf.dwFileAttributes & FILE_ATTRIBUTE_REPARSE_POINT) &&
 664                                                (findbuf.dwReserved0 == IO_REPARSE_TAG_SYMLINK)) {
 665                                        if (follow) {
 666                                                char buffer[MAXIMUM_REPARSE_DATA_BUFFER_SIZE];
 667                                                buf->st_size = readlink(file_name, buffer, MAXIMUM_REPARSE_DATA_BUFFER_SIZE);
 668                                        } else {
 669                                                buf->st_mode = S_IFLNK;
 670                                        }
 671                                        buf->st_mode |= S_IREAD;
 672                                        if (!(findbuf.dwFileAttributes & FILE_ATTRIBUTE_READONLY))
 673                                                buf->st_mode |= S_IWRITE;
 674                                }
 675                                FindClose(handle);
 676                        }
 677                }
 678                return 0;
 679        }
 680        switch (GetLastError()) {
 681        case ERROR_ACCESS_DENIED:
 682        case ERROR_SHARING_VIOLATION:
 683        case ERROR_LOCK_VIOLATION:
 684        case ERROR_SHARING_BUFFER_EXCEEDED:
 685                errno = EACCES;
 686                break;
 687        case ERROR_BUFFER_OVERFLOW:
 688                errno = ENAMETOOLONG;
 689                break;
 690        case ERROR_NOT_ENOUGH_MEMORY:
 691                errno = ENOMEM;
 692                break;
 693        case ERROR_PATH_NOT_FOUND:
 694                if (!has_valid_directory_prefix(wfilename)) {
 695                        errno = ENOTDIR;
 696                        break;
 697                }
 698                /* fallthru */
 699        default:
 700                errno = ENOENT;
 701                break;
 702        }
 703        return -1;
 704}
 705
 706/* We provide our own lstat/fstat functions, since the provided
 707 * lstat/fstat functions are so slow. These stat functions are
 708 * tailored for Git's usage (read: fast), and are not meant to be
 709 * complete. Note that Git stat()s are redirected to mingw_lstat()
 710 * too, since Windows doesn't really handle symlinks that well.
 711 */
 712static int do_stat_internal(int follow, const char *file_name, struct stat *buf)
 713{
 714        int namelen;
 715        char alt_name[PATH_MAX];
 716
 717        if (!do_lstat(follow, file_name, buf))
 718                return 0;
 719
 720        /* if file_name ended in a '/', Windows returned ENOENT;
 721         * try again without trailing slashes
 722         */
 723        if (errno != ENOENT)
 724                return -1;
 725
 726        namelen = strlen(file_name);
 727        if (namelen && file_name[namelen-1] != '/')
 728                return -1;
 729        while (namelen && file_name[namelen-1] == '/')
 730                --namelen;
 731        if (!namelen || namelen >= PATH_MAX)
 732                return -1;
 733
 734        memcpy(alt_name, file_name, namelen);
 735        alt_name[namelen] = 0;
 736        return do_lstat(follow, alt_name, buf);
 737}
 738
 739static int get_file_info_by_handle(HANDLE hnd, struct stat *buf)
 740{
 741        BY_HANDLE_FILE_INFORMATION fdata;
 742
 743        if (!GetFileInformationByHandle(hnd, &fdata)) {
 744                errno = err_win_to_posix(GetLastError());
 745                return -1;
 746        }
 747
 748        buf->st_ino = 0;
 749        buf->st_gid = 0;
 750        buf->st_uid = 0;
 751        buf->st_nlink = 1;
 752        buf->st_mode = file_attr_to_st_mode(fdata.dwFileAttributes);
 753        buf->st_size = fdata.nFileSizeLow |
 754                (((off_t)fdata.nFileSizeHigh)<<32);
 755        buf->st_dev = buf->st_rdev = 0; /* not used by Git */
 756        buf->st_atime = filetime_to_time_t(&(fdata.ftLastAccessTime));
 757        buf->st_mtime = filetime_to_time_t(&(fdata.ftLastWriteTime));
 758        buf->st_ctime = filetime_to_time_t(&(fdata.ftCreationTime));
 759        return 0;
 760}
 761
 762int mingw_lstat(const char *file_name, struct stat *buf)
 763{
 764        return do_stat_internal(0, file_name, buf);
 765}
 766int mingw_stat(const char *file_name, struct stat *buf)
 767{
 768        return do_stat_internal(1, file_name, buf);
 769}
 770
 771int mingw_fstat(int fd, struct stat *buf)
 772{
 773        HANDLE fh = (HANDLE)_get_osfhandle(fd);
 774        DWORD avail, type = GetFileType(fh) & ~FILE_TYPE_REMOTE;
 775
 776        switch (type) {
 777        case FILE_TYPE_DISK:
 778                return get_file_info_by_handle(fh, buf);
 779
 780        case FILE_TYPE_CHAR:
 781        case FILE_TYPE_PIPE:
 782                /* initialize stat fields */
 783                memset(buf, 0, sizeof(*buf));
 784                buf->st_nlink = 1;
 785
 786                if (type == FILE_TYPE_CHAR) {
 787                        buf->st_mode = _S_IFCHR;
 788                } else {
 789                        buf->st_mode = _S_IFIFO;
 790                        if (PeekNamedPipe(fh, NULL, 0, NULL, &avail, NULL))
 791                                buf->st_size = avail;
 792                }
 793                return 0;
 794
 795        default:
 796                errno = EBADF;
 797                return -1;
 798        }
 799}
 800
 801static inline void time_t_to_filetime(time_t t, FILETIME *ft)
 802{
 803        long long winTime = t * 10000000LL + 116444736000000000LL;
 804        ft->dwLowDateTime = winTime;
 805        ft->dwHighDateTime = winTime >> 32;
 806}
 807
 808int mingw_utime (const char *file_name, const struct utimbuf *times)
 809{
 810        FILETIME mft, aft;
 811        int fh, rc;
 812        DWORD attrs;
 813        wchar_t wfilename[MAX_PATH];
 814        if (xutftowcs_path(wfilename, file_name) < 0)
 815                return -1;
 816
 817        /* must have write permission */
 818        attrs = GetFileAttributesW(wfilename);
 819        if (attrs != INVALID_FILE_ATTRIBUTES &&
 820            (attrs & FILE_ATTRIBUTE_READONLY)) {
 821                /* ignore errors here; open() will report them */
 822                SetFileAttributesW(wfilename, attrs & ~FILE_ATTRIBUTE_READONLY);
 823        }
 824
 825        if ((fh = _wopen(wfilename, O_RDWR | O_BINARY)) < 0) {
 826                rc = -1;
 827                goto revert_attrs;
 828        }
 829
 830        if (times) {
 831                time_t_to_filetime(times->modtime, &mft);
 832                time_t_to_filetime(times->actime, &aft);
 833        } else {
 834                GetSystemTimeAsFileTime(&mft);
 835                aft = mft;
 836        }
 837        if (!SetFileTime((HANDLE)_get_osfhandle(fh), NULL, &aft, &mft)) {
 838                errno = EINVAL;
 839                rc = -1;
 840        } else
 841                rc = 0;
 842        close(fh);
 843
 844revert_attrs:
 845        if (attrs != INVALID_FILE_ATTRIBUTES &&
 846            (attrs & FILE_ATTRIBUTE_READONLY)) {
 847                /* ignore errors again */
 848                SetFileAttributesW(wfilename, attrs);
 849        }
 850        return rc;
 851}
 852
 853#undef strftime
 854size_t mingw_strftime(char *s, size_t max,
 855                      const char *format, const struct tm *tm)
 856{
 857        size_t ret = strftime(s, max, format, tm);
 858
 859        if (!ret && errno == EINVAL)
 860                die("invalid strftime format: '%s'", format);
 861        return ret;
 862}
 863
 864unsigned int sleep (unsigned int seconds)
 865{
 866        Sleep(seconds*1000);
 867        return 0;
 868}
 869
 870char *mingw_mktemp(char *template)
 871{
 872        wchar_t wtemplate[MAX_PATH];
 873        if (xutftowcs_path(wtemplate, template) < 0)
 874                return NULL;
 875        if (!_wmktemp(wtemplate))
 876                return NULL;
 877        if (xwcstoutf(template, wtemplate, strlen(template) + 1) < 0)
 878                return NULL;
 879        return template;
 880}
 881
 882int mkstemp(char *template)
 883{
 884        char *filename = mktemp(template);
 885        if (filename == NULL)
 886                return -1;
 887        return open(filename, O_RDWR | O_CREAT, 0600);
 888}
 889
 890int gettimeofday(struct timeval *tv, void *tz)
 891{
 892        FILETIME ft;
 893        long long hnsec;
 894
 895        GetSystemTimeAsFileTime(&ft);
 896        hnsec = filetime_to_hnsec(&ft);
 897        tv->tv_sec = hnsec / 10000000;
 898        tv->tv_usec = (hnsec % 10000000) / 10;
 899        return 0;
 900}
 901
 902int pipe(int filedes[2])
 903{
 904        HANDLE h[2];
 905
 906        /* this creates non-inheritable handles */
 907        if (!CreatePipe(&h[0], &h[1], NULL, 8192)) {
 908                errno = err_win_to_posix(GetLastError());
 909                return -1;
 910        }
 911        filedes[0] = _open_osfhandle(HCAST(int, h[0]), O_NOINHERIT);
 912        if (filedes[0] < 0) {
 913                CloseHandle(h[0]);
 914                CloseHandle(h[1]);
 915                return -1;
 916        }
 917        filedes[1] = _open_osfhandle(HCAST(int, h[1]), O_NOINHERIT);
 918        if (filedes[1] < 0) {
 919                close(filedes[0]);
 920                CloseHandle(h[1]);
 921                return -1;
 922        }
 923        return 0;
 924}
 925
 926struct tm *gmtime_r(const time_t *timep, struct tm *result)
 927{
 928        /* gmtime() in MSVCRT.DLL is thread-safe, but not reentrant */
 929        memcpy(result, gmtime(timep), sizeof(struct tm));
 930        return result;
 931}
 932
 933struct tm *localtime_r(const time_t *timep, struct tm *result)
 934{
 935        /* localtime() in MSVCRT.DLL is thread-safe, but not reentrant */
 936        memcpy(result, localtime(timep), sizeof(struct tm));
 937        return result;
 938}
 939
 940char *mingw_getcwd(char *pointer, int len)
 941{
 942        wchar_t wpointer[MAX_PATH];
 943        if (!_wgetcwd(wpointer, ARRAY_SIZE(wpointer)))
 944                return NULL;
 945        if (xwcstoutf(pointer, wpointer, len) < 0)
 946                return NULL;
 947        convert_slashes(pointer);
 948        return pointer;
 949}
 950
 951/*
 952 * See http://msdn2.microsoft.com/en-us/library/17w5ykft(vs.71).aspx
 953 * (Parsing C++ Command-Line Arguments)
 954 */
 955static const char *quote_arg(const char *arg)
 956{
 957        /* count chars to quote */
 958        int len = 0, n = 0;
 959        int force_quotes = 0;
 960        char *q, *d;
 961        const char *p = arg;
 962        if (!*p) force_quotes = 1;
 963        while (*p) {
 964                if (isspace(*p) || *p == '*' || *p == '?' || *p == '{' || *p == '\'')
 965                        force_quotes = 1;
 966                else if (*p == '"')
 967                        n++;
 968                else if (*p == '\\') {
 969                        int count = 0;
 970                        while (*p == '\\') {
 971                                count++;
 972                                p++;
 973                                len++;
 974                        }
 975                        if (*p == '"')
 976                                n += count*2 + 1;
 977                        continue;
 978                }
 979                len++;
 980                p++;
 981        }
 982        if (!force_quotes && n == 0)
 983                return arg;
 984
 985        /* insert \ where necessary */
 986        d = q = xmalloc(st_add3(len, n, 3));
 987        *d++ = '"';
 988        while (*arg) {
 989                if (*arg == '"')
 990                        *d++ = '\\';
 991                else if (*arg == '\\') {
 992                        int count = 0;
 993                        while (*arg == '\\') {
 994                                count++;
 995                                *d++ = *arg++;
 996                        }
 997                        if (*arg == '"') {
 998                                while (count-- > 0)
 999                                        *d++ = '\\';
1000                                *d++ = '\\';
1001                        }
1002                }
1003                *d++ = *arg++;
1004        }
1005        *d++ = '"';
1006        *d++ = 0;
1007        return q;
1008}
1009
1010static const char *parse_interpreter(const char *cmd)
1011{
1012        static char buf[100];
1013        char *p, *opt;
1014        int n, fd;
1015
1016        /* don't even try a .exe */
1017        n = strlen(cmd);
1018        if (n >= 4 && !strcasecmp(cmd+n-4, ".exe"))
1019                return NULL;
1020
1021        fd = open(cmd, O_RDONLY);
1022        if (fd < 0)
1023                return NULL;
1024        n = read(fd, buf, sizeof(buf)-1);
1025        close(fd);
1026        if (n < 4)      /* at least '#!/x' and not error */
1027                return NULL;
1028
1029        if (buf[0] != '#' || buf[1] != '!')
1030                return NULL;
1031        buf[n] = '\0';
1032        p = buf + strcspn(buf, "\r\n");
1033        if (!*p)
1034                return NULL;
1035
1036        *p = '\0';
1037        if (!(p = strrchr(buf+2, '/')) && !(p = strrchr(buf+2, '\\')))
1038                return NULL;
1039        /* strip options */
1040        if ((opt = strchr(p+1, ' ')))
1041                *opt = '\0';
1042        return p+1;
1043}
1044
1045/*
1046 * exe_only means that we only want to detect .exe files, but not scripts
1047 * (which do not have an extension)
1048 */
1049static char *lookup_prog(const char *dir, int dirlen, const char *cmd,
1050                         int isexe, int exe_only)
1051{
1052        char path[MAX_PATH];
1053        snprintf(path, sizeof(path), "%.*s\\%s.exe", dirlen, dir, cmd);
1054
1055        if (!isexe && access(path, F_OK) == 0)
1056                return xstrdup(path);
1057        path[strlen(path)-4] = '\0';
1058        if ((!exe_only || isexe) && access(path, F_OK) == 0)
1059                if (!(GetFileAttributes(path) & FILE_ATTRIBUTE_DIRECTORY))
1060                        return xstrdup(path);
1061        return NULL;
1062}
1063
1064/*
1065 * Determines the absolute path of cmd using the split path in path.
1066 * If cmd contains a slash or backslash, no lookup is performed.
1067 */
1068static char *path_lookup(const char *cmd, int exe_only)
1069{
1070        const char *path;
1071        char *prog = NULL;
1072        int len = strlen(cmd);
1073        int isexe = len >= 4 && !strcasecmp(cmd+len-4, ".exe");
1074
1075        if (strchr(cmd, '/') || strchr(cmd, '\\'))
1076                return xstrdup(cmd);
1077
1078        path = mingw_getenv("PATH");
1079        if (!path)
1080                return NULL;
1081
1082        while (!prog) {
1083                const char *sep = strchrnul(path, ';');
1084                int dirlen = sep - path;
1085                if (dirlen)
1086                        prog = lookup_prog(path, dirlen, cmd, isexe, exe_only);
1087                if (!*sep)
1088                        break;
1089                path = sep + 1;
1090        }
1091
1092        return prog;
1093}
1094
1095static int do_putenv(char **env, const char *name, int size, int free_old);
1096
1097/* used number of elements of environ array, including terminating NULL */
1098static int environ_size = 0;
1099/* allocated size of environ array, in bytes */
1100static int environ_alloc = 0;
1101
1102/*
1103 * Create environment block suitable for CreateProcess. Merges current
1104 * process environment and the supplied environment changes.
1105 */
1106static wchar_t *make_environment_block(char **deltaenv)
1107{
1108        wchar_t *wenvblk = NULL;
1109        char **tmpenv;
1110        int i = 0, size = environ_size, wenvsz = 0, wenvpos = 0;
1111
1112        while (deltaenv && deltaenv[i])
1113                i++;
1114
1115        /* copy the environment, leaving space for changes */
1116        ALLOC_ARRAY(tmpenv, size + i);
1117        memcpy(tmpenv, environ, size * sizeof(char*));
1118
1119        /* merge supplied environment changes into the temporary environment */
1120        for (i = 0; deltaenv && deltaenv[i]; i++)
1121                size = do_putenv(tmpenv, deltaenv[i], size, 0);
1122
1123        /* create environment block from temporary environment */
1124        for (i = 0; tmpenv[i]; i++) {
1125                size = 2 * strlen(tmpenv[i]) + 2; /* +2 for final \0 */
1126                ALLOC_GROW(wenvblk, (wenvpos + size) * sizeof(wchar_t), wenvsz);
1127                wenvpos += xutftowcs(&wenvblk[wenvpos], tmpenv[i], size) + 1;
1128        }
1129        /* add final \0 terminator */
1130        wenvblk[wenvpos] = 0;
1131        free(tmpenv);
1132        return wenvblk;
1133}
1134
1135struct pinfo_t {
1136        struct pinfo_t *next;
1137        pid_t pid;
1138        HANDLE proc;
1139};
1140static struct pinfo_t *pinfo = NULL;
1141CRITICAL_SECTION pinfo_cs;
1142
1143static pid_t mingw_spawnve_fd(const char *cmd, const char **argv, char **deltaenv,
1144                              const char *dir,
1145                              int prepend_cmd, int fhin, int fhout, int fherr)
1146{
1147        STARTUPINFOW si;
1148        PROCESS_INFORMATION pi;
1149        struct strbuf args;
1150        wchar_t wcmd[MAX_PATH], wdir[MAX_PATH], *wargs, *wenvblk = NULL;
1151        unsigned flags = CREATE_UNICODE_ENVIRONMENT;
1152        BOOL ret;
1153
1154        /* Determine whether or not we are associated to a console */
1155        HANDLE cons = CreateFile("CONOUT$", GENERIC_WRITE,
1156                        FILE_SHARE_WRITE, NULL, OPEN_EXISTING,
1157                        FILE_ATTRIBUTE_NORMAL, NULL);
1158        if (cons == INVALID_HANDLE_VALUE) {
1159                /* There is no console associated with this process.
1160                 * Since the child is a console process, Windows
1161                 * would normally create a console window. But
1162                 * since we'll be redirecting std streams, we do
1163                 * not need the console.
1164                 * It is necessary to use DETACHED_PROCESS
1165                 * instead of CREATE_NO_WINDOW to make ssh
1166                 * recognize that it has no console.
1167                 */
1168                flags |= DETACHED_PROCESS;
1169        } else {
1170                /* There is already a console. If we specified
1171                 * DETACHED_PROCESS here, too, Windows would
1172                 * disassociate the child from the console.
1173                 * The same is true for CREATE_NO_WINDOW.
1174                 * Go figure!
1175                 */
1176                CloseHandle(cons);
1177        }
1178        memset(&si, 0, sizeof(si));
1179        si.cb = sizeof(si);
1180        si.dwFlags = STARTF_USESTDHANDLES;
1181        si.hStdInput = winansi_get_osfhandle(fhin);
1182        si.hStdOutput = winansi_get_osfhandle(fhout);
1183        si.hStdError = winansi_get_osfhandle(fherr);
1184
1185        if (xutftowcs_path(wcmd, cmd) < 0)
1186                return -1;
1187        if (dir && xutftowcs_path(wdir, dir) < 0)
1188                return -1;
1189
1190        /* concatenate argv, quoting args as we go */
1191        strbuf_init(&args, 0);
1192        if (prepend_cmd) {
1193                char *quoted = (char *)quote_arg(cmd);
1194                strbuf_addstr(&args, quoted);
1195                if (quoted != cmd)
1196                        free(quoted);
1197        }
1198        for (; *argv; argv++) {
1199                char *quoted = (char *)quote_arg(*argv);
1200                if (*args.buf)
1201                        strbuf_addch(&args, ' ');
1202                strbuf_addstr(&args, quoted);
1203                if (quoted != *argv)
1204                        free(quoted);
1205        }
1206
1207        ALLOC_ARRAY(wargs, st_add(st_mult(2, args.len), 1));
1208        xutftowcs(wargs, args.buf, 2 * args.len + 1);
1209        strbuf_release(&args);
1210
1211        wenvblk = make_environment_block(deltaenv);
1212
1213        memset(&pi, 0, sizeof(pi));
1214        ret = CreateProcessW(wcmd, wargs, NULL, NULL, TRUE, flags,
1215                wenvblk, dir ? wdir : NULL, &si, &pi);
1216
1217        free(wenvblk);
1218        free(wargs);
1219
1220        if (!ret) {
1221                errno = ENOENT;
1222                return -1;
1223        }
1224        CloseHandle(pi.hThread);
1225
1226        /*
1227         * The process ID is the human-readable identifier of the process
1228         * that we want to present in log and error messages. The handle
1229         * is not useful for this purpose. But we cannot close it, either,
1230         * because it is not possible to turn a process ID into a process
1231         * handle after the process terminated.
1232         * Keep the handle in a list for waitpid.
1233         */
1234        EnterCriticalSection(&pinfo_cs);
1235        {
1236                struct pinfo_t *info = xmalloc(sizeof(struct pinfo_t));
1237                info->pid = pi.dwProcessId;
1238                info->proc = pi.hProcess;
1239                info->next = pinfo;
1240                pinfo = info;
1241        }
1242        LeaveCriticalSection(&pinfo_cs);
1243
1244        return (pid_t)pi.dwProcessId;
1245}
1246
1247static pid_t mingw_spawnv(const char *cmd, const char **argv, int prepend_cmd)
1248{
1249        return mingw_spawnve_fd(cmd, argv, NULL, NULL, prepend_cmd, 0, 1, 2);
1250}
1251
1252pid_t mingw_spawnvpe(const char *cmd, const char **argv, char **deltaenv,
1253                     const char *dir,
1254                     int fhin, int fhout, int fherr)
1255{
1256        pid_t pid;
1257        char *prog = path_lookup(cmd, 0);
1258
1259        if (!prog) {
1260                errno = ENOENT;
1261                pid = -1;
1262        }
1263        else {
1264                const char *interpr = parse_interpreter(prog);
1265
1266                if (interpr) {
1267                        const char *argv0 = argv[0];
1268                        char *iprog = path_lookup(interpr, 1);
1269                        argv[0] = prog;
1270                        if (!iprog) {
1271                                errno = ENOENT;
1272                                pid = -1;
1273                        }
1274                        else {
1275                                pid = mingw_spawnve_fd(iprog, argv, deltaenv, dir, 1,
1276                                                       fhin, fhout, fherr);
1277                                free(iprog);
1278                        }
1279                        argv[0] = argv0;
1280                }
1281                else
1282                        pid = mingw_spawnve_fd(prog, argv, deltaenv, dir, 0,
1283                                               fhin, fhout, fherr);
1284                free(prog);
1285        }
1286        return pid;
1287}
1288
1289static int try_shell_exec(const char *cmd, char *const *argv)
1290{
1291        const char *interpr = parse_interpreter(cmd);
1292        char *prog;
1293        int pid = 0;
1294
1295        if (!interpr)
1296                return 0;
1297        prog = path_lookup(interpr, 1);
1298        if (prog) {
1299                int argc = 0;
1300                const char **argv2;
1301                while (argv[argc]) argc++;
1302                ALLOC_ARRAY(argv2, argc + 1);
1303                argv2[0] = (char *)cmd; /* full path to the script file */
1304                memcpy(&argv2[1], &argv[1], sizeof(*argv) * argc);
1305                pid = mingw_spawnv(prog, argv2, 1);
1306                if (pid >= 0) {
1307                        int status;
1308                        if (waitpid(pid, &status, 0) < 0)
1309                                status = 255;
1310                        exit(status);
1311                }
1312                pid = 1;        /* indicate that we tried but failed */
1313                free(prog);
1314                free(argv2);
1315        }
1316        return pid;
1317}
1318
1319int mingw_execv(const char *cmd, char *const *argv)
1320{
1321        /* check if git_command is a shell script */
1322        if (!try_shell_exec(cmd, argv)) {
1323                int pid, status;
1324
1325                pid = mingw_spawnv(cmd, (const char **)argv, 0);
1326                if (pid < 0)
1327                        return -1;
1328                if (waitpid(pid, &status, 0) < 0)
1329                        status = 255;
1330                exit(status);
1331        }
1332        return -1;
1333}
1334
1335int mingw_execvp(const char *cmd, char *const *argv)
1336{
1337        char *prog = path_lookup(cmd, 0);
1338
1339        if (prog) {
1340                mingw_execv(prog, argv);
1341                free(prog);
1342        } else
1343                errno = ENOENT;
1344
1345        return -1;
1346}
1347
1348int mingw_kill(pid_t pid, int sig)
1349{
1350        if (pid > 0 && sig == SIGTERM) {
1351                HANDLE h = OpenProcess(PROCESS_TERMINATE, FALSE, pid);
1352
1353                if (TerminateProcess(h, -1)) {
1354                        CloseHandle(h);
1355                        return 0;
1356                }
1357
1358                errno = err_win_to_posix(GetLastError());
1359                CloseHandle(h);
1360                return -1;
1361        } else if (pid > 0 && sig == 0) {
1362                HANDLE h = OpenProcess(PROCESS_QUERY_INFORMATION, FALSE, pid);
1363                if (h) {
1364                        CloseHandle(h);
1365                        return 0;
1366                }
1367        }
1368
1369        errno = EINVAL;
1370        return -1;
1371}
1372
1373/*
1374 * Compare environment entries by key (i.e. stopping at '=' or '\0').
1375 */
1376static int compareenv(const void *v1, const void *v2)
1377{
1378        const char *e1 = *(const char**)v1;
1379        const char *e2 = *(const char**)v2;
1380
1381        for (;;) {
1382                int c1 = *e1++;
1383                int c2 = *e2++;
1384                c1 = (c1 == '=') ? 0 : tolower(c1);
1385                c2 = (c2 == '=') ? 0 : tolower(c2);
1386                if (c1 > c2)
1387                        return 1;
1388                if (c1 < c2)
1389                        return -1;
1390                if (c1 == 0)
1391                        return 0;
1392        }
1393}
1394
1395static int bsearchenv(char **env, const char *name, size_t size)
1396{
1397        unsigned low = 0, high = size;
1398        while (low < high) {
1399                unsigned mid = low + ((high - low) >> 1);
1400                int cmp = compareenv(&env[mid], &name);
1401                if (cmp < 0)
1402                        low = mid + 1;
1403                else if (cmp > 0)
1404                        high = mid;
1405                else
1406                        return mid;
1407        }
1408        return ~low; /* not found, return 1's complement of insert position */
1409}
1410
1411/*
1412 * If name contains '=', then sets the variable, otherwise it unsets it
1413 * Size includes the terminating NULL. Env must have room for size + 1 entries
1414 * (in case of insert). Returns the new size. Optionally frees removed entries.
1415 */
1416static int do_putenv(char **env, const char *name, int size, int free_old)
1417{
1418        int i = bsearchenv(env, name, size - 1);
1419
1420        /* optionally free removed / replaced entry */
1421        if (i >= 0 && free_old)
1422                free(env[i]);
1423
1424        if (strchr(name, '=')) {
1425                /* if new value ('key=value') is specified, insert or replace entry */
1426                if (i < 0) {
1427                        i = ~i;
1428                        memmove(&env[i + 1], &env[i], (size - i) * sizeof(char*));
1429                        size++;
1430                }
1431                env[i] = (char*) name;
1432        } else if (i >= 0) {
1433                /* otherwise ('key') remove existing entry */
1434                size--;
1435                memmove(&env[i], &env[i + 1], (size - i) * sizeof(char*));
1436        }
1437        return size;
1438}
1439
1440char *mingw_getenv(const char *name)
1441{
1442        char *value;
1443        int pos = bsearchenv(environ, name, environ_size - 1);
1444        if (pos < 0)
1445                return NULL;
1446        value = strchr(environ[pos], '=');
1447        return value ? &value[1] : NULL;
1448}
1449
1450int mingw_putenv(const char *namevalue)
1451{
1452        ALLOC_GROW(environ, (environ_size + 1) * sizeof(char*), environ_alloc);
1453        environ_size = do_putenv(environ, namevalue, environ_size, 1);
1454        return 0;
1455}
1456
1457/*
1458 * Note, this isn't a complete replacement for getaddrinfo. It assumes
1459 * that service contains a numerical port, or that it is null. It
1460 * does a simple search using gethostbyname, and returns one IPv4 host
1461 * if one was found.
1462 */
1463static int WSAAPI getaddrinfo_stub(const char *node, const char *service,
1464                                   const struct addrinfo *hints,
1465                                   struct addrinfo **res)
1466{
1467        struct hostent *h = NULL;
1468        struct addrinfo *ai;
1469        struct sockaddr_in *sin;
1470
1471        if (node) {
1472                h = gethostbyname(node);
1473                if (!h)
1474                        return WSAGetLastError();
1475        }
1476
1477        ai = xmalloc(sizeof(struct addrinfo));
1478        *res = ai;
1479        ai->ai_flags = 0;
1480        ai->ai_family = AF_INET;
1481        ai->ai_socktype = hints ? hints->ai_socktype : 0;
1482        switch (ai->ai_socktype) {
1483        case SOCK_STREAM:
1484                ai->ai_protocol = IPPROTO_TCP;
1485                break;
1486        case SOCK_DGRAM:
1487                ai->ai_protocol = IPPROTO_UDP;
1488                break;
1489        default:
1490                ai->ai_protocol = 0;
1491                break;
1492        }
1493        ai->ai_addrlen = sizeof(struct sockaddr_in);
1494        if (hints && (hints->ai_flags & AI_CANONNAME))
1495                ai->ai_canonname = h ? xstrdup(h->h_name) : NULL;
1496        else
1497                ai->ai_canonname = NULL;
1498
1499        sin = xcalloc(1, ai->ai_addrlen);
1500        sin->sin_family = AF_INET;
1501        /* Note: getaddrinfo is supposed to allow service to be a string,
1502         * which should be looked up using getservbyname. This is
1503         * currently not implemented */
1504        if (service)
1505                sin->sin_port = htons(atoi(service));
1506        if (h)
1507                sin->sin_addr = *(struct in_addr *)h->h_addr;
1508        else if (hints && (hints->ai_flags & AI_PASSIVE))
1509                sin->sin_addr.s_addr = INADDR_ANY;
1510        else
1511                sin->sin_addr.s_addr = INADDR_LOOPBACK;
1512        ai->ai_addr = (struct sockaddr *)sin;
1513        ai->ai_next = NULL;
1514        return 0;
1515}
1516
1517static void WSAAPI freeaddrinfo_stub(struct addrinfo *res)
1518{
1519        free(res->ai_canonname);
1520        free(res->ai_addr);
1521        free(res);
1522}
1523
1524static int WSAAPI getnameinfo_stub(const struct sockaddr *sa, socklen_t salen,
1525                                   char *host, DWORD hostlen,
1526                                   char *serv, DWORD servlen, int flags)
1527{
1528        const struct sockaddr_in *sin = (const struct sockaddr_in *)sa;
1529        if (sa->sa_family != AF_INET)
1530                return EAI_FAMILY;
1531        if (!host && !serv)
1532                return EAI_NONAME;
1533
1534        if (host && hostlen > 0) {
1535                struct hostent *ent = NULL;
1536                if (!(flags & NI_NUMERICHOST))
1537                        ent = gethostbyaddr((const char *)&sin->sin_addr,
1538                                            sizeof(sin->sin_addr), AF_INET);
1539
1540                if (ent)
1541                        snprintf(host, hostlen, "%s", ent->h_name);
1542                else if (flags & NI_NAMEREQD)
1543                        return EAI_NONAME;
1544                else
1545                        snprintf(host, hostlen, "%s", inet_ntoa(sin->sin_addr));
1546        }
1547
1548        if (serv && servlen > 0) {
1549                struct servent *ent = NULL;
1550                if (!(flags & NI_NUMERICSERV))
1551                        ent = getservbyport(sin->sin_port,
1552                                            flags & NI_DGRAM ? "udp" : "tcp");
1553
1554                if (ent)
1555                        snprintf(serv, servlen, "%s", ent->s_name);
1556                else
1557                        snprintf(serv, servlen, "%d", ntohs(sin->sin_port));
1558        }
1559
1560        return 0;
1561}
1562
1563static HMODULE ipv6_dll = NULL;
1564static void (WSAAPI *ipv6_freeaddrinfo)(struct addrinfo *res);
1565static int (WSAAPI *ipv6_getaddrinfo)(const char *node, const char *service,
1566                                      const struct addrinfo *hints,
1567                                      struct addrinfo **res);
1568static int (WSAAPI *ipv6_getnameinfo)(const struct sockaddr *sa, socklen_t salen,
1569                                      char *host, DWORD hostlen,
1570                                      char *serv, DWORD servlen, int flags);
1571/*
1572 * gai_strerror is an inline function in the ws2tcpip.h header, so we
1573 * don't need to try to load that one dynamically.
1574 */
1575
1576static void socket_cleanup(void)
1577{
1578        WSACleanup();
1579        if (ipv6_dll)
1580                FreeLibrary(ipv6_dll);
1581        ipv6_dll = NULL;
1582        ipv6_freeaddrinfo = freeaddrinfo_stub;
1583        ipv6_getaddrinfo = getaddrinfo_stub;
1584        ipv6_getnameinfo = getnameinfo_stub;
1585}
1586
1587static void ensure_socket_initialization(void)
1588{
1589        WSADATA wsa;
1590        static int initialized = 0;
1591        const char *libraries[] = { "ws2_32.dll", "wship6.dll", NULL };
1592        const char **name;
1593
1594        if (initialized)
1595                return;
1596
1597        if (WSAStartup(MAKEWORD(2,2), &wsa))
1598                die("unable to initialize winsock subsystem, error %d",
1599                        WSAGetLastError());
1600
1601        for (name = libraries; *name; name++) {
1602                ipv6_dll = LoadLibrary(*name);
1603                if (!ipv6_dll)
1604                        continue;
1605
1606                ipv6_freeaddrinfo = (void (WSAAPI *)(struct addrinfo *))
1607                        GetProcAddress(ipv6_dll, "freeaddrinfo");
1608                ipv6_getaddrinfo = (int (WSAAPI *)(const char *, const char *,
1609                                                   const struct addrinfo *,
1610                                                   struct addrinfo **))
1611                        GetProcAddress(ipv6_dll, "getaddrinfo");
1612                ipv6_getnameinfo = (int (WSAAPI *)(const struct sockaddr *,
1613                                                   socklen_t, char *, DWORD,
1614                                                   char *, DWORD, int))
1615                        GetProcAddress(ipv6_dll, "getnameinfo");
1616                if (!ipv6_freeaddrinfo || !ipv6_getaddrinfo || !ipv6_getnameinfo) {
1617                        FreeLibrary(ipv6_dll);
1618                        ipv6_dll = NULL;
1619                } else
1620                        break;
1621        }
1622        if (!ipv6_freeaddrinfo || !ipv6_getaddrinfo || !ipv6_getnameinfo) {
1623                ipv6_freeaddrinfo = freeaddrinfo_stub;
1624                ipv6_getaddrinfo = getaddrinfo_stub;
1625                ipv6_getnameinfo = getnameinfo_stub;
1626        }
1627
1628        atexit(socket_cleanup);
1629        initialized = 1;
1630}
1631
1632#undef gethostname
1633int mingw_gethostname(char *name, int namelen)
1634{
1635    ensure_socket_initialization();
1636    return gethostname(name, namelen);
1637}
1638
1639#undef gethostbyname
1640struct hostent *mingw_gethostbyname(const char *host)
1641{
1642        ensure_socket_initialization();
1643        return gethostbyname(host);
1644}
1645
1646void mingw_freeaddrinfo(struct addrinfo *res)
1647{
1648        ipv6_freeaddrinfo(res);
1649}
1650
1651int mingw_getaddrinfo(const char *node, const char *service,
1652                      const struct addrinfo *hints, struct addrinfo **res)
1653{
1654        ensure_socket_initialization();
1655        return ipv6_getaddrinfo(node, service, hints, res);
1656}
1657
1658int mingw_getnameinfo(const struct sockaddr *sa, socklen_t salen,
1659                      char *host, DWORD hostlen, char *serv, DWORD servlen,
1660                      int flags)
1661{
1662        ensure_socket_initialization();
1663        return ipv6_getnameinfo(sa, salen, host, hostlen, serv, servlen, flags);
1664}
1665
1666int mingw_socket(int domain, int type, int protocol)
1667{
1668        int sockfd;
1669        SOCKET s;
1670
1671        ensure_socket_initialization();
1672        s = WSASocket(domain, type, protocol, NULL, 0, 0);
1673        if (s == INVALID_SOCKET) {
1674                /*
1675                 * WSAGetLastError() values are regular BSD error codes
1676                 * biased by WSABASEERR.
1677                 * However, strerror() does not know about networking
1678                 * specific errors, which are values beginning at 38 or so.
1679                 * Therefore, we choose to leave the biased error code
1680                 * in errno so that _if_ someone looks up the code somewhere,
1681                 * then it is at least the number that are usually listed.
1682                 */
1683                errno = WSAGetLastError();
1684                return -1;
1685        }
1686        /* convert into a file descriptor */
1687        if ((sockfd = _open_osfhandle(s, O_RDWR|O_BINARY)) < 0) {
1688                closesocket(s);
1689                return error("unable to make a socket file descriptor: %s",
1690                        strerror(errno));
1691        }
1692        return sockfd;
1693}
1694
1695#undef connect
1696int mingw_connect(int sockfd, struct sockaddr *sa, size_t sz)
1697{
1698        SOCKET s = (SOCKET)_get_osfhandle(sockfd);
1699        return connect(s, sa, sz);
1700}
1701
1702#undef bind
1703int mingw_bind(int sockfd, struct sockaddr *sa, size_t sz)
1704{
1705        SOCKET s = (SOCKET)_get_osfhandle(sockfd);
1706        return bind(s, sa, sz);
1707}
1708
1709#undef setsockopt
1710int mingw_setsockopt(int sockfd, int lvl, int optname, void *optval, int optlen)
1711{
1712        SOCKET s = (SOCKET)_get_osfhandle(sockfd);
1713        return setsockopt(s, lvl, optname, (const char*)optval, optlen);
1714}
1715
1716#undef shutdown
1717int mingw_shutdown(int sockfd, int how)
1718{
1719        SOCKET s = (SOCKET)_get_osfhandle(sockfd);
1720        return shutdown(s, how);
1721}
1722
1723#undef listen
1724int mingw_listen(int sockfd, int backlog)
1725{
1726        SOCKET s = (SOCKET)_get_osfhandle(sockfd);
1727        return listen(s, backlog);
1728}
1729
1730#undef accept
1731int mingw_accept(int sockfd1, struct sockaddr *sa, socklen_t *sz)
1732{
1733        int sockfd2;
1734
1735        SOCKET s1 = (SOCKET)_get_osfhandle(sockfd1);
1736        SOCKET s2 = accept(s1, sa, sz);
1737
1738        /* convert into a file descriptor */
1739        if ((sockfd2 = _open_osfhandle(s2, O_RDWR|O_BINARY)) < 0) {
1740                int err = errno;
1741                closesocket(s2);
1742                return error("unable to make a socket file descriptor: %s",
1743                        strerror(err));
1744        }
1745        return sockfd2;
1746}
1747
1748#undef rename
1749int mingw_rename(const char *pold, const char *pnew)
1750{
1751        DWORD attrs, gle;
1752        int tries = 0;
1753        wchar_t wpold[MAX_PATH], wpnew[MAX_PATH];
1754        if (xutftowcs_path(wpold, pold) < 0 || xutftowcs_path(wpnew, pnew) < 0)
1755                return -1;
1756
1757        /*
1758         * Try native rename() first to get errno right.
1759         * It is based on MoveFile(), which cannot overwrite existing files.
1760         */
1761        if (!_wrename(wpold, wpnew))
1762                return 0;
1763        if (errno != EEXIST)
1764                return -1;
1765repeat:
1766        if (MoveFileExW(wpold, wpnew, MOVEFILE_REPLACE_EXISTING))
1767                return 0;
1768        /* TODO: translate more errors */
1769        gle = GetLastError();
1770        if (gle == ERROR_ACCESS_DENIED &&
1771            (attrs = GetFileAttributesW(wpnew)) != INVALID_FILE_ATTRIBUTES) {
1772                if (attrs & FILE_ATTRIBUTE_DIRECTORY) {
1773                        DWORD attrsold = GetFileAttributesW(wpold);
1774                        if (attrsold == INVALID_FILE_ATTRIBUTES ||
1775                            !(attrsold & FILE_ATTRIBUTE_DIRECTORY))
1776                                errno = EISDIR;
1777                        else if (!_wrmdir(wpnew))
1778                                goto repeat;
1779                        return -1;
1780                }
1781                if ((attrs & FILE_ATTRIBUTE_READONLY) &&
1782                    SetFileAttributesW(wpnew, attrs & ~FILE_ATTRIBUTE_READONLY)) {
1783                        if (MoveFileExW(wpold, wpnew, MOVEFILE_REPLACE_EXISTING))
1784                                return 0;
1785                        gle = GetLastError();
1786                        /* revert file attributes on failure */
1787                        SetFileAttributesW(wpnew, attrs);
1788                }
1789        }
1790        if (tries < ARRAY_SIZE(delay) && gle == ERROR_ACCESS_DENIED) {
1791                /*
1792                 * We assume that some other process had the source or
1793                 * destination file open at the wrong moment and retry.
1794                 * In order to give the other process a higher chance to
1795                 * complete its operation, we give up our time slice now.
1796                 * If we have to retry again, we do sleep a bit.
1797                 */
1798                Sleep(delay[tries]);
1799                tries++;
1800                goto repeat;
1801        }
1802        if (gle == ERROR_ACCESS_DENIED &&
1803               ask_yes_no_if_possible("Rename from '%s' to '%s' failed. "
1804                       "Should I try again?", pold, pnew))
1805                goto repeat;
1806
1807        errno = EACCES;
1808        return -1;
1809}
1810
1811/*
1812 * Note that this doesn't return the actual pagesize, but
1813 * the allocation granularity. If future Windows specific git code
1814 * needs the real getpagesize function, we need to find another solution.
1815 */
1816int mingw_getpagesize(void)
1817{
1818        SYSTEM_INFO si;
1819        GetSystemInfo(&si);
1820        return si.dwAllocationGranularity;
1821}
1822
1823struct passwd *getpwuid(int uid)
1824{
1825        static char user_name[100];
1826        static struct passwd p;
1827
1828        DWORD len = sizeof(user_name);
1829        if (!GetUserName(user_name, &len))
1830                return NULL;
1831        p.pw_name = user_name;
1832        p.pw_gecos = "unknown";
1833        p.pw_dir = NULL;
1834        return &p;
1835}
1836
1837static HANDLE timer_event;
1838static HANDLE timer_thread;
1839static int timer_interval;
1840static int one_shot;
1841static sig_handler_t timer_fn = SIG_DFL, sigint_fn = SIG_DFL;
1842
1843/* The timer works like this:
1844 * The thread, ticktack(), is a trivial routine that most of the time
1845 * only waits to receive the signal to terminate. The main thread tells
1846 * the thread to terminate by setting the timer_event to the signalled
1847 * state.
1848 * But ticktack() interrupts the wait state after the timer's interval
1849 * length to call the signal handler.
1850 */
1851
1852static unsigned __stdcall ticktack(void *dummy)
1853{
1854        while (WaitForSingleObject(timer_event, timer_interval) == WAIT_TIMEOUT) {
1855                mingw_raise(SIGALRM);
1856                if (one_shot)
1857                        break;
1858        }
1859        return 0;
1860}
1861
1862static int start_timer_thread(void)
1863{
1864        timer_event = CreateEvent(NULL, FALSE, FALSE, NULL);
1865        if (timer_event) {
1866                timer_thread = (HANDLE) _beginthreadex(NULL, 0, ticktack, NULL, 0, NULL);
1867                if (!timer_thread )
1868                        return errno = ENOMEM,
1869                                error("cannot start timer thread");
1870        } else
1871                return errno = ENOMEM,
1872                        error("cannot allocate resources for timer");
1873        return 0;
1874}
1875
1876static void stop_timer_thread(void)
1877{
1878        if (timer_event)
1879                SetEvent(timer_event);  /* tell thread to terminate */
1880        if (timer_thread) {
1881                int rc = WaitForSingleObject(timer_thread, 1000);
1882                if (rc == WAIT_TIMEOUT)
1883                        error("timer thread did not terminate timely");
1884                else if (rc != WAIT_OBJECT_0)
1885                        error("waiting for timer thread failed: %lu",
1886                              GetLastError());
1887                CloseHandle(timer_thread);
1888        }
1889        if (timer_event)
1890                CloseHandle(timer_event);
1891        timer_event = NULL;
1892        timer_thread = NULL;
1893}
1894
1895static inline int is_timeval_eq(const struct timeval *i1, const struct timeval *i2)
1896{
1897        return i1->tv_sec == i2->tv_sec && i1->tv_usec == i2->tv_usec;
1898}
1899
1900int setitimer(int type, struct itimerval *in, struct itimerval *out)
1901{
1902        static const struct timeval zero;
1903        static int atexit_done;
1904
1905        if (out != NULL)
1906                return errno = EINVAL,
1907                        error("setitimer param 3 != NULL not implemented");
1908        if (!is_timeval_eq(&in->it_interval, &zero) &&
1909            !is_timeval_eq(&in->it_interval, &in->it_value))
1910                return errno = EINVAL,
1911                        error("setitimer: it_interval must be zero or eq it_value");
1912
1913        if (timer_thread)
1914                stop_timer_thread();
1915
1916        if (is_timeval_eq(&in->it_value, &zero) &&
1917            is_timeval_eq(&in->it_interval, &zero))
1918                return 0;
1919
1920        timer_interval = in->it_value.tv_sec * 1000 + in->it_value.tv_usec / 1000;
1921        one_shot = is_timeval_eq(&in->it_interval, &zero);
1922        if (!atexit_done) {
1923                atexit(stop_timer_thread);
1924                atexit_done = 1;
1925        }
1926        return start_timer_thread();
1927}
1928
1929int sigaction(int sig, struct sigaction *in, struct sigaction *out)
1930{
1931        if (sig != SIGALRM)
1932                return errno = EINVAL,
1933                        error("sigaction only implemented for SIGALRM");
1934        if (out != NULL)
1935                return errno = EINVAL,
1936                        error("sigaction: param 3 != NULL not implemented");
1937
1938        timer_fn = in->sa_handler;
1939        return 0;
1940}
1941
1942#undef signal
1943sig_handler_t mingw_signal(int sig, sig_handler_t handler)
1944{
1945        sig_handler_t old;
1946
1947        switch (sig) {
1948        case SIGALRM:
1949                old = timer_fn;
1950                timer_fn = handler;
1951                break;
1952
1953        case SIGINT:
1954                old = sigint_fn;
1955                sigint_fn = handler;
1956                break;
1957
1958        default:
1959                return signal(sig, handler);
1960        }
1961
1962        return old;
1963}
1964
1965#undef raise
1966int mingw_raise(int sig)
1967{
1968        switch (sig) {
1969        case SIGALRM:
1970                if (timer_fn == SIG_DFL) {
1971                        if (isatty(STDERR_FILENO))
1972                                fputs("Alarm clock\n", stderr);
1973                        exit(128 + SIGALRM);
1974                } else if (timer_fn != SIG_IGN)
1975                        timer_fn(SIGALRM);
1976                return 0;
1977
1978        case SIGINT:
1979                if (sigint_fn == SIG_DFL)
1980                        exit(128 + SIGINT);
1981                else if (sigint_fn != SIG_IGN)
1982                        sigint_fn(SIGINT);
1983                return 0;
1984
1985        default:
1986                return raise(sig);
1987        }
1988}
1989
1990int link(const char *oldpath, const char *newpath)
1991{
1992        typedef BOOL (WINAPI *T)(LPCWSTR, LPCWSTR, LPSECURITY_ATTRIBUTES);
1993        static T create_hard_link = NULL;
1994        wchar_t woldpath[MAX_PATH], wnewpath[MAX_PATH];
1995        if (xutftowcs_path(woldpath, oldpath) < 0 ||
1996                xutftowcs_path(wnewpath, newpath) < 0)
1997                return -1;
1998
1999        if (!create_hard_link) {
2000                create_hard_link = (T) GetProcAddress(
2001                        GetModuleHandle("kernel32.dll"), "CreateHardLinkW");
2002                if (!create_hard_link)
2003                        create_hard_link = (T)-1;
2004        }
2005        if (create_hard_link == (T)-1) {
2006                errno = ENOSYS;
2007                return -1;
2008        }
2009        if (!create_hard_link(wnewpath, woldpath, NULL)) {
2010                errno = err_win_to_posix(GetLastError());
2011                return -1;
2012        }
2013        return 0;
2014}
2015
2016pid_t waitpid(pid_t pid, int *status, int options)
2017{
2018        HANDLE h = OpenProcess(SYNCHRONIZE | PROCESS_QUERY_INFORMATION,
2019            FALSE, pid);
2020        if (!h) {
2021                errno = ECHILD;
2022                return -1;
2023        }
2024
2025        if (pid > 0 && options & WNOHANG) {
2026                if (WAIT_OBJECT_0 != WaitForSingleObject(h, 0)) {
2027                        CloseHandle(h);
2028                        return 0;
2029                }
2030                options &= ~WNOHANG;
2031        }
2032
2033        if (options == 0) {
2034                struct pinfo_t **ppinfo;
2035                if (WaitForSingleObject(h, INFINITE) != WAIT_OBJECT_0) {
2036                        CloseHandle(h);
2037                        return 0;
2038                }
2039
2040                if (status)
2041                        GetExitCodeProcess(h, (LPDWORD)status);
2042
2043                EnterCriticalSection(&pinfo_cs);
2044
2045                ppinfo = &pinfo;
2046                while (*ppinfo) {
2047                        struct pinfo_t *info = *ppinfo;
2048                        if (info->pid == pid) {
2049                                CloseHandle(info->proc);
2050                                *ppinfo = info->next;
2051                                free(info);
2052                                break;
2053                        }
2054                        ppinfo = &info->next;
2055                }
2056
2057                LeaveCriticalSection(&pinfo_cs);
2058
2059                CloseHandle(h);
2060                return pid;
2061        }
2062        CloseHandle(h);
2063
2064        errno = EINVAL;
2065        return -1;
2066}
2067
2068int mingw_skip_dos_drive_prefix(char **path)
2069{
2070        int ret = has_dos_drive_prefix(*path);
2071        *path += ret;
2072        return ret;
2073}
2074
2075int mingw_offset_1st_component(const char *path)
2076{
2077        char *pos = (char *)path;
2078
2079        /* unc paths */
2080        if (!skip_dos_drive_prefix(&pos) &&
2081                        is_dir_sep(pos[0]) && is_dir_sep(pos[1])) {
2082                /* skip server name */
2083                pos = strpbrk(pos + 2, "\\/");
2084                if (!pos)
2085                        return 0; /* Error: malformed unc path */
2086
2087                do {
2088                        pos++;
2089                } while (*pos && !is_dir_sep(*pos));
2090        }
2091
2092        return pos + is_dir_sep(*pos) - path;
2093}
2094
2095int xutftowcsn(wchar_t *wcs, const char *utfs, size_t wcslen, int utflen)
2096{
2097        int upos = 0, wpos = 0;
2098        const unsigned char *utf = (const unsigned char*) utfs;
2099        if (!utf || !wcs || wcslen < 1) {
2100                errno = EINVAL;
2101                return -1;
2102        }
2103        /* reserve space for \0 */
2104        wcslen--;
2105        if (utflen < 0)
2106                utflen = INT_MAX;
2107
2108        while (upos < utflen) {
2109                int c = utf[upos++] & 0xff;
2110                if (utflen == INT_MAX && c == 0)
2111                        break;
2112
2113                if (wpos >= wcslen) {
2114                        wcs[wpos] = 0;
2115                        errno = ERANGE;
2116                        return -1;
2117                }
2118
2119                if (c < 0x80) {
2120                        /* ASCII */
2121                        wcs[wpos++] = c;
2122                } else if (c >= 0xc2 && c < 0xe0 && upos < utflen &&
2123                                (utf[upos] & 0xc0) == 0x80) {
2124                        /* 2-byte utf-8 */
2125                        c = ((c & 0x1f) << 6);
2126                        c |= (utf[upos++] & 0x3f);
2127                        wcs[wpos++] = c;
2128                } else if (c >= 0xe0 && c < 0xf0 && upos + 1 < utflen &&
2129                                !(c == 0xe0 && utf[upos] < 0xa0) && /* over-long encoding */
2130                                (utf[upos] & 0xc0) == 0x80 &&
2131                                (utf[upos + 1] & 0xc0) == 0x80) {
2132                        /* 3-byte utf-8 */
2133                        c = ((c & 0x0f) << 12);
2134                        c |= ((utf[upos++] & 0x3f) << 6);
2135                        c |= (utf[upos++] & 0x3f);
2136                        wcs[wpos++] = c;
2137                } else if (c >= 0xf0 && c < 0xf5 && upos + 2 < utflen &&
2138                                wpos + 1 < wcslen &&
2139                                !(c == 0xf0 && utf[upos] < 0x90) && /* over-long encoding */
2140                                !(c == 0xf4 && utf[upos] >= 0x90) && /* > \u10ffff */
2141                                (utf[upos] & 0xc0) == 0x80 &&
2142                                (utf[upos + 1] & 0xc0) == 0x80 &&
2143                                (utf[upos + 2] & 0xc0) == 0x80) {
2144                        /* 4-byte utf-8: convert to \ud8xx \udcxx surrogate pair */
2145                        c = ((c & 0x07) << 18);
2146                        c |= ((utf[upos++] & 0x3f) << 12);
2147                        c |= ((utf[upos++] & 0x3f) << 6);
2148                        c |= (utf[upos++] & 0x3f);
2149                        c -= 0x10000;
2150                        wcs[wpos++] = 0xd800 | (c >> 10);
2151                        wcs[wpos++] = 0xdc00 | (c & 0x3ff);
2152                } else if (c >= 0xa0) {
2153                        /* invalid utf-8 byte, printable unicode char: convert 1:1 */
2154                        wcs[wpos++] = c;
2155                } else {
2156                        /* invalid utf-8 byte, non-printable unicode: convert to hex */
2157                        static const char *hex = "0123456789abcdef";
2158                        wcs[wpos++] = hex[c >> 4];
2159                        if (wpos < wcslen)
2160                                wcs[wpos++] = hex[c & 0x0f];
2161                }
2162        }
2163        wcs[wpos] = 0;
2164        return wpos;
2165}
2166
2167int xwcstoutf(char *utf, const wchar_t *wcs, size_t utflen)
2168{
2169        if (!wcs || !utf || utflen < 1) {
2170                errno = EINVAL;
2171                return -1;
2172        }
2173        utflen = WideCharToMultiByte(CP_UTF8, 0, wcs, -1, utf, utflen, NULL, NULL);
2174        if (utflen)
2175                return utflen - 1;
2176        errno = ERANGE;
2177        return -1;
2178}
2179
2180static void setup_windows_environment(void)
2181{
2182        char *tmp = getenv("TMPDIR");
2183
2184        /* on Windows it is TMP and TEMP */
2185        if (!tmp) {
2186                if (!(tmp = getenv("TMP")))
2187                        tmp = getenv("TEMP");
2188                if (tmp) {
2189                        setenv("TMPDIR", tmp, 1);
2190                        tmp = getenv("TMPDIR");
2191                }
2192        }
2193
2194        if (tmp) {
2195                /*
2196                 * Convert all dir separators to forward slashes,
2197                 * to help shell commands called from the Git
2198                 * executable (by not mistaking the dir separators
2199                 * for escape characters).
2200                 */
2201                convert_slashes(tmp);
2202        }
2203
2204        /* simulate TERM to enable auto-color (see color.c) */
2205        if (!getenv("TERM"))
2206                setenv("TERM", "cygwin", 1);
2207}
2208
2209/*
2210 * Disable MSVCRT command line wildcard expansion (__getmainargs called from
2211 * mingw startup code, see init.c in mingw runtime).
2212 */
2213int _CRT_glob = 0;
2214
2215typedef struct {
2216        int newmode;
2217} _startupinfo;
2218
2219extern int __wgetmainargs(int *argc, wchar_t ***argv, wchar_t ***env, int glob,
2220                _startupinfo *si);
2221
2222static NORETURN void die_startup(void)
2223{
2224        fputs("fatal: not enough memory for initialization", stderr);
2225        exit(128);
2226}
2227
2228static void *malloc_startup(size_t size)
2229{
2230        void *result = malloc(size);
2231        if (!result)
2232                die_startup();
2233        return result;
2234}
2235
2236static char *wcstoutfdup_startup(char *buffer, const wchar_t *wcs, size_t len)
2237{
2238        len = xwcstoutf(buffer, wcs, len) + 1;
2239        return memcpy(malloc_startup(len), buffer, len);
2240}
2241
2242static void maybe_redirect_std_handle(const wchar_t *key, DWORD std_id, int fd,
2243                                      DWORD desired_access, DWORD flags)
2244{
2245        DWORD create_flag = fd ? OPEN_ALWAYS : OPEN_EXISTING;
2246        wchar_t buf[MAX_PATH];
2247        DWORD max = ARRAY_SIZE(buf);
2248        HANDLE handle;
2249        DWORD ret = GetEnvironmentVariableW(key, buf, max);
2250
2251        if (!ret || ret >= max)
2252                return;
2253
2254        /* make sure this does not leak into child processes */
2255        SetEnvironmentVariableW(key, NULL);
2256        if (!wcscmp(buf, L"off")) {
2257                close(fd);
2258                handle = GetStdHandle(std_id);
2259                if (handle != INVALID_HANDLE_VALUE)
2260                        CloseHandle(handle);
2261                return;
2262        }
2263        if (std_id == STD_ERROR_HANDLE && !wcscmp(buf, L"2>&1")) {
2264                handle = GetStdHandle(STD_OUTPUT_HANDLE);
2265                if (handle == INVALID_HANDLE_VALUE) {
2266                        close(fd);
2267                        handle = GetStdHandle(std_id);
2268                        if (handle != INVALID_HANDLE_VALUE)
2269                                CloseHandle(handle);
2270                } else {
2271                        int new_fd = _open_osfhandle((intptr_t)handle, O_BINARY);
2272                        SetStdHandle(std_id, handle);
2273                        dup2(new_fd, fd);
2274                        /* do *not* close the new_fd: that would close stdout */
2275                }
2276                return;
2277        }
2278        handle = CreateFileW(buf, desired_access, 0, NULL, create_flag,
2279                             flags, NULL);
2280        if (handle != INVALID_HANDLE_VALUE) {
2281                int new_fd = _open_osfhandle((intptr_t)handle, O_BINARY);
2282                SetStdHandle(std_id, handle);
2283                dup2(new_fd, fd);
2284                close(new_fd);
2285        }
2286}
2287
2288static void maybe_redirect_std_handles(void)
2289{
2290        maybe_redirect_std_handle(L"GIT_REDIRECT_STDIN", STD_INPUT_HANDLE, 0,
2291                                  GENERIC_READ, FILE_ATTRIBUTE_NORMAL);
2292        maybe_redirect_std_handle(L"GIT_REDIRECT_STDOUT", STD_OUTPUT_HANDLE, 1,
2293                                  GENERIC_WRITE, FILE_ATTRIBUTE_NORMAL);
2294        maybe_redirect_std_handle(L"GIT_REDIRECT_STDERR", STD_ERROR_HANDLE, 2,
2295                                  GENERIC_WRITE, FILE_FLAG_NO_BUFFERING);
2296}
2297
2298void mingw_startup(void)
2299{
2300        int i, maxlen, argc;
2301        char *buffer;
2302        wchar_t **wenv, **wargv;
2303        _startupinfo si;
2304
2305        maybe_redirect_std_handles();
2306
2307        /* get wide char arguments and environment */
2308        si.newmode = 0;
2309        if (__wgetmainargs(&argc, &wargv, &wenv, _CRT_glob, &si) < 0)
2310                die_startup();
2311
2312        /* determine size of argv and environ conversion buffer */
2313        maxlen = wcslen(wargv[0]);
2314        for (i = 1; i < argc; i++)
2315                maxlen = max(maxlen, wcslen(wargv[i]));
2316        for (i = 0; wenv[i]; i++)
2317                maxlen = max(maxlen, wcslen(wenv[i]));
2318
2319        /*
2320         * nedmalloc can't free CRT memory, allocate resizable environment
2321         * list. Note that xmalloc / xmemdupz etc. call getenv, so we cannot
2322         * use it while initializing the environment itself.
2323         */
2324        environ_size = i + 1;
2325        environ_alloc = alloc_nr(environ_size * sizeof(char*));
2326        environ = malloc_startup(environ_alloc);
2327
2328        /* allocate buffer (wchar_t encodes to max 3 UTF-8 bytes) */
2329        maxlen = 3 * maxlen + 1;
2330        buffer = malloc_startup(maxlen);
2331
2332        /* convert command line arguments and environment to UTF-8 */
2333        for (i = 0; i < argc; i++)
2334                __argv[i] = wcstoutfdup_startup(buffer, wargv[i], maxlen);
2335        for (i = 0; wenv[i]; i++)
2336                environ[i] = wcstoutfdup_startup(buffer, wenv[i], maxlen);
2337        environ[i] = NULL;
2338        free(buffer);
2339
2340        /* sort environment for O(log n) getenv / putenv */
2341        qsort(environ, i, sizeof(char*), compareenv);
2342
2343        /* fix Windows specific environment settings */
2344        setup_windows_environment();
2345
2346        /* initialize critical section for waitpid pinfo_t list */
2347        InitializeCriticalSection(&pinfo_cs);
2348
2349        /* set up default file mode and file modes for stdin/out/err */
2350        _fmode = _O_BINARY;
2351        _setmode(_fileno(stdin), _O_BINARY);
2352        _setmode(_fileno(stdout), _O_BINARY);
2353        _setmode(_fileno(stderr), _O_BINARY);
2354
2355        /* initialize Unicode console */
2356        winansi_init();
2357}
2358
2359int uname(struct utsname *buf)
2360{
2361        unsigned v = (unsigned)GetVersion();
2362        memset(buf, 0, sizeof(*buf));
2363        xsnprintf(buf->sysname, sizeof(buf->sysname), "Windows");
2364        xsnprintf(buf->release, sizeof(buf->release),
2365                 "%u.%u", v & 0xff, (v >> 8) & 0xff);
2366        /* assuming NT variants only.. */
2367        xsnprintf(buf->version, sizeof(buf->version),
2368                  "%u", (v >> 16) & 0x7fff);
2369        return 0;
2370}