645 lines
16 KiB
C
645 lines
16 KiB
C
/* Python interpreter main program */
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#include "Python.h"
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#include "osdefs.h"
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#include "import.h"
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#ifdef __VMS
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#include <unixlib.h>
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#endif
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#if defined(MS_WINDOWS) || defined(__CYGWIN__)
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#include <windows.h>
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#ifdef HAVE_FCNTL_H
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#include <fcntl.h>
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#define PATH_MAX MAXPATHLEN
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#endif
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#endif
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#ifdef _MSC_VER
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#include <crtdbg.h>
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#endif
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#if (defined(PYOS_OS2) && !defined(PYCC_GCC)) || defined(MS_WINDOWS)
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#define PYTHONHOMEHELP "<prefix>\\lib"
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#else
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#if defined(PYOS_OS2) && defined(PYCC_GCC)
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#define PYTHONHOMEHELP "<prefix>/Lib"
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#else
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#define PYTHONHOMEHELP "<prefix>/pythonX.X"
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#endif
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#endif
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#include "pygetopt.h"
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#define COPYRIGHT \
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"Type \"help\", \"copyright\", \"credits\" or \"license\" " \
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"for more information."
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#ifdef __cplusplus
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extern "C" {
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#endif
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/* For Py_GetArgcArgv(); set by main() */
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static wchar_t **orig_argv;
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static int orig_argc;
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/* command line options */
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#define BASE_OPTS L"bBc:dEhiJm:OStuvVW:xX?"
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#define PROGRAM_OPTS BASE_OPTS
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/* Short usage message (with %s for argv0) */
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static char *usage_line =
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"usage: %ls [option] ... [-c cmd | -m mod | file | -] [arg] ...\n";
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/* Long usage message, split into parts < 512 bytes */
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static char *usage_1 = "\
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Options and arguments (and corresponding environment variables):\n\
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-b : issue warnings about str(bytes_instance), str(buffer_instance)\n\
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and comparing bytes/buffer with str. (-bb: issue errors)\n\
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-B : don't write .py[co] files on import; also PYTHONDONTWRITEBYTECODE=x\n\
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-c cmd : program passed in as string (terminates option list)\n\
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-d : debug output from parser; also PYTHONDEBUG=x\n\
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-E : ignore PYTHON* environment variables (such as PYTHONPATH)\n\
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-h : print this help message and exit (also --help)\n\
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";
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static char *usage_2 = "\
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-i : inspect interactively after running script; forces a prompt even\n\
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if stdin does not appear to be a terminal; also PYTHONINSPECT=x\n\
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-m mod : run library module as a script (terminates option list)\n\
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-O : optimize generated bytecode slightly; also PYTHONOPTIMIZE=x\n\
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-OO : remove doc-strings in addition to the -O optimizations\n\
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-S : don't imply 'import site' on initialization\n\
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-t : issue warnings about inconsistent tab usage (-tt: issue errors)\n\
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";
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static char *usage_3 = "\
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-u : unbuffered binary stdout and stderr; also PYTHONUNBUFFERED=x\n\
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see man page for details on internal buffering relating to '-u'\n\
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-v : verbose (trace import statements); also PYTHONVERBOSE=x\n\
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can be supplied multiple times to increase verbosity\n\
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-V : print the Python version number and exit (also --version)\n\
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-W arg : warning control; arg is action:message:category:module:lineno\n\
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-x : skip first line of source, allowing use of non-Unix forms of #!cmd\n\
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";
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static char *usage_4 = "\
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file : program read from script file\n\
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- : program read from stdin (default; interactive mode if a tty)\n\
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arg ...: arguments passed to program in sys.argv[1:]\n\n\
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Other environment variables:\n\
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PYTHONSTARTUP: file executed on interactive startup (no default)\n\
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PYTHONPATH : '%c'-separated list of directories prefixed to the\n\
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default module search path. The result is sys.path.\n\
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";
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static char *usage_5 = "\
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PYTHONHOME : alternate <prefix> directory (or <prefix>%c<exec_prefix>).\n\
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The default module search path uses %s.\n\
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PYTHONCASEOK : ignore case in 'import' statements (Windows).\n\
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";
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#ifndef MS_WINDOWS
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static FILE*
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_wfopen(const wchar_t *path, const wchar_t *mode)
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{
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char cpath[PATH_MAX];
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char cmode[10];
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size_t r;
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r = wcstombs(cpath, path, PATH_MAX);
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if (r == (size_t)-1 || r >= PATH_MAX) {
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errno = EINVAL;
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return NULL;
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}
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r = wcstombs(cmode, mode, 10);
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if (r == (size_t)-1 || r >= 10) {
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errno = EINVAL;
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return NULL;
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}
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return fopen(cpath, cmode);
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}
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#endif
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static int
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usage(int exitcode, wchar_t* program)
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{
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FILE *f = exitcode ? stderr : stdout;
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fprintf(f, usage_line, program);
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if (exitcode)
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fprintf(f, "Try `python -h' for more information.\n");
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else {
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fprintf(f, usage_1);
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fprintf(f, usage_2);
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fprintf(f, usage_3);
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fprintf(f, usage_4, DELIM);
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fprintf(f, usage_5, DELIM, PYTHONHOMEHELP);
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}
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#if defined(__VMS)
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if (exitcode == 0) {
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/* suppress 'error' message */
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return 1;
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}
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else {
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/* STS$M_INHIB_MSG + SS$_ABORT */
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return 0x1000002c;
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}
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#else
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return exitcode;
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#endif
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/*NOTREACHED*/
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}
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static void RunStartupFile(PyCompilerFlags *cf)
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{
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char *startup = Py_GETENV("PYTHONSTARTUP");
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if (startup != NULL && startup[0] != '\0') {
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FILE *fp = fopen(startup, "r");
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if (fp != NULL) {
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(void) PyRun_SimpleFileExFlags(fp, startup, 0, cf);
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PyErr_Clear();
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fclose(fp);
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} else {
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int save_errno;
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save_errno = errno;
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PySys_WriteStderr("Could not open PYTHONSTARTUP\n");
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errno = save_errno;
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PyErr_SetFromErrnoWithFilename(PyExc_IOError,
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startup);
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PyErr_Print();
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PyErr_Clear();
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}
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}
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}
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static int RunModule(char *module, int set_argv0)
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{
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PyObject *runpy, *runmodule, *runargs, *result;
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runpy = PyImport_ImportModule("runpy");
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if (runpy == NULL) {
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fprintf(stderr, "Could not import runpy module\n");
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return -1;
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}
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runmodule = PyObject_GetAttrString(runpy, "_run_module_as_main");
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if (runmodule == NULL) {
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fprintf(stderr, "Could not access runpy._run_module_as_main\n");
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Py_DECREF(runpy);
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return -1;
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}
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runargs = Py_BuildValue("(si)", module, set_argv0);
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if (runargs == NULL) {
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fprintf(stderr,
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"Could not create arguments for runpy._run_module_as_main\n");
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Py_DECREF(runpy);
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Py_DECREF(runmodule);
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return -1;
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}
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result = PyObject_Call(runmodule, runargs, NULL);
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if (result == NULL) {
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PyErr_Print();
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}
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Py_DECREF(runpy);
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Py_DECREF(runmodule);
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Py_DECREF(runargs);
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if (result == NULL) {
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return -1;
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}
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Py_DECREF(result);
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return 0;
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}
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static int RunMainFromImporter(wchar_t *filename)
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{
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PyObject *argv0 = NULL, *importer = NULL;
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if ((argv0 = PyUnicode_FromWideChar(filename,wcslen(filename))) &&
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(importer = PyImport_GetImporter(argv0)) &&
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(importer->ob_type != &PyNullImporter_Type))
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{
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/* argv0 is usable as an import source, so
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put it in sys.path[0] and import __main__ */
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PyObject *sys_path = NULL;
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if ((sys_path = PySys_GetObject("path")) &&
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!PyList_SetItem(sys_path, 0, argv0))
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{
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Py_INCREF(argv0);
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Py_DECREF(importer);
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sys_path = NULL;
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return RunModule("__main__", 0) != 0;
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}
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}
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Py_XDECREF(argv0);
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Py_XDECREF(importer);
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if (PyErr_Occurred()) {
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PyErr_Print();
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return 1;
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}
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else {
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return -1;
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}
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}
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/* Wait until threading._shutdown completes, provided
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the threading module was imported in the first place.
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The shutdown routine will wait until all non-daemon
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"threading" threads have completed. */
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#include "abstract.h"
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static void
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WaitForThreadShutdown(void)
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{
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#ifdef WITH_THREAD
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PyObject *result;
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PyThreadState *tstate = PyThreadState_GET();
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PyObject *threading = PyMapping_GetItemString(tstate->interp->modules,
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"threading");
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if (threading == NULL) {
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/* threading not imported */
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PyErr_Clear();
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return;
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}
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result = PyObject_CallMethod(threading, "_shutdown", "");
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if (result == NULL)
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PyErr_WriteUnraisable(threading);
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else
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Py_DECREF(result);
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Py_DECREF(threading);
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#endif
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}
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/* Main program */
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int
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Py_Main(int argc, wchar_t **argv)
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{
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int c;
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int sts;
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char *command = NULL;
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wchar_t *filename = NULL;
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char *module = NULL;
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FILE *fp = stdin;
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char *p;
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int unbuffered = 0;
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int skipfirstline = 0;
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int stdin_is_interactive = 0;
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int help = 0;
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int version = 0;
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int saw_unbuffered_flag = 0;
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PyCompilerFlags cf;
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cf.cf_flags = 0;
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orig_argc = argc; /* For Py_GetArgcArgv() */
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orig_argv = argv;
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PySys_ResetWarnOptions();
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while ((c = _PyOS_GetOpt(argc, argv, PROGRAM_OPTS)) != EOF) {
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if (c == 'c') {
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size_t r1 = wcslen(_PyOS_optarg) + 2;
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size_t r2;
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/* -c is the last option; following arguments
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that look like options are left for the
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command to interpret. */
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command = (char *)malloc(r1);
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if (command == NULL)
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Py_FatalError(
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"not enough memory to copy -c argument");
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r2 = wcstombs(command, _PyOS_optarg, r1);
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if (r2 > r1-2)
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Py_FatalError(
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"not enough memory to copy -c argument");
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strcat(command, "\n");
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break;
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}
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if (c == 'm') {
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/* -m is the last option; following arguments
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that look like options are left for the
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module to interpret. */
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size_t r1 = wcslen(_PyOS_optarg) + 1;
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size_t r2;
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module = (char *)malloc(r1);
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if (module == NULL)
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Py_FatalError(
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"not enough memory to copy -m argument");
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r2 = wcstombs(module, _PyOS_optarg, r1);
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if (r2 >= r1)
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Py_FatalError(
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"not enough memory to copy -m argument");
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break;
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}
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switch (c) {
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case 'b':
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Py_BytesWarningFlag++;
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break;
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case 'd':
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Py_DebugFlag++;
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break;
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case 'i':
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Py_InspectFlag++;
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Py_InteractiveFlag++;
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break;
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/* case 'J': reserved for Jython */
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case 'O':
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Py_OptimizeFlag++;
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break;
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case 'B':
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Py_DontWriteBytecodeFlag++;
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break;
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case 'S':
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Py_NoSiteFlag++;
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break;
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case 'E':
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Py_IgnoreEnvironmentFlag++;
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break;
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case 't':
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Py_TabcheckFlag++;
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break;
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case 'u':
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unbuffered++;
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saw_unbuffered_flag = 1;
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break;
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case 'v':
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Py_VerboseFlag++;
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break;
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case 'x':
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skipfirstline = 1;
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break;
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/* case 'X': reserved for non-standard arguments */
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case 'h':
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case '?':
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help++;
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break;
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case 'V':
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version++;
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break;
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case 'W':
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PySys_AddWarnOption(_PyOS_optarg);
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break;
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/* This space reserved for other options */
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default:
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return usage(2, argv[0]);
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/*NOTREACHED*/
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}
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}
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if (help)
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return usage(0, argv[0]);
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if (version) {
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fprintf(stderr, "Python %s\n", PY_VERSION);
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return 0;
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}
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if (!Py_InspectFlag &&
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(p = Py_GETENV("PYTHONINSPECT")) && *p != '\0')
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Py_InspectFlag = 1;
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if (!saw_unbuffered_flag &&
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(p = Py_GETENV("PYTHONUNBUFFERED")) && *p != '\0')
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unbuffered = 1;
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if (command == NULL && module == NULL && _PyOS_optind < argc &&
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wcscmp(argv[_PyOS_optind], L"-") != 0)
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{
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#ifdef __VMS
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filename = decc$translate_vms(argv[_PyOS_optind]);
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if (filename == (char *)0 || filename == (char *)-1)
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filename = argv[_PyOS_optind];
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#else
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filename = argv[_PyOS_optind];
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#endif
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}
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stdin_is_interactive = Py_FdIsInteractive(stdin, (char *)0);
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if (unbuffered) {
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#if defined(MS_WINDOWS) || defined(__CYGWIN__)
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_setmode(fileno(stdin), O_BINARY);
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_setmode(fileno(stdout), O_BINARY);
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#endif
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#ifdef HAVE_SETVBUF
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setvbuf(stdin, (char *)NULL, _IONBF, BUFSIZ);
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setvbuf(stdout, (char *)NULL, _IONBF, BUFSIZ);
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setvbuf(stderr, (char *)NULL, _IONBF, BUFSIZ);
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#else /* !HAVE_SETVBUF */
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setbuf(stdin, (char *)NULL);
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setbuf(stdout, (char *)NULL);
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setbuf(stderr, (char *)NULL);
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#endif /* !HAVE_SETVBUF */
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}
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else if (Py_InteractiveFlag) {
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#ifdef MS_WINDOWS
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/* Doesn't have to have line-buffered -- use unbuffered */
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/* Any set[v]buf(stdin, ...) screws up Tkinter :-( */
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setvbuf(stdout, (char *)NULL, _IONBF, BUFSIZ);
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#else /* !MS_WINDOWS */
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#ifdef HAVE_SETVBUF
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setvbuf(stdin, (char *)NULL, _IOLBF, BUFSIZ);
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setvbuf(stdout, (char *)NULL, _IOLBF, BUFSIZ);
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#endif /* HAVE_SETVBUF */
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#endif /* !MS_WINDOWS */
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/* Leave stderr alone - it should be unbuffered anyway. */
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}
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#ifdef __VMS
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else {
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setvbuf (stdout, (char *)NULL, _IOLBF, BUFSIZ);
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}
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#endif /* __VMS */
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#ifdef __APPLE__
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/* On MacOS X, when the Python interpreter is embedded in an
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application bundle, it gets executed by a bootstrapping script
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that does os.execve() with an argv[0] that's different from the
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actual Python executable. This is needed to keep the Finder happy,
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or rather, to work around Apple's overly strict requirements of
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the process name. However, we still need a usable sys.executable,
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so the actual executable path is passed in an environment variable.
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See Lib/plat-mac/bundlebuiler.py for details about the bootstrap
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script. */
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if ((p = Py_GETENV("PYTHONEXECUTABLE")) && *p != '\0')
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Py_SetProgramName(p);
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else
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Py_SetProgramName(argv[0]);
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#else
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Py_SetProgramName(argv[0]);
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#endif
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Py_Initialize();
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if (Py_VerboseFlag ||
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(command == NULL && filename == NULL && module == NULL && stdin_is_interactive)) {
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fprintf(stderr, "Python %s on %s\n",
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Py_GetVersion(), Py_GetPlatform());
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if (!Py_NoSiteFlag)
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fprintf(stderr, "%s\n", COPYRIGHT);
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}
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if (command != NULL) {
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/* Backup _PyOS_optind and force sys.argv[0] = '-c' */
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_PyOS_optind--;
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argv[_PyOS_optind] = L"-c";
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}
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if (module != NULL) {
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/* Backup _PyOS_optind and force sys.argv[0] = '-c'
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so that PySys_SetArgv correctly sets sys.path[0] to ''*/
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_PyOS_optind--;
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argv[_PyOS_optind] = L"-c";
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}
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PySys_SetArgv(argc-_PyOS_optind, argv+_PyOS_optind);
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if ((Py_InspectFlag || (command == NULL && filename == NULL && module == NULL)) &&
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isatty(fileno(stdin))) {
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PyObject *v;
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v = PyImport_ImportModule("readline");
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if (v == NULL)
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PyErr_Clear();
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else
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Py_DECREF(v);
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}
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if (command) {
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sts = PyRun_SimpleStringFlags(command, &cf) != 0;
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free(command);
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} else if (module) {
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sts = RunModule(module, 1);
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free(module);
|
|
}
|
|
else {
|
|
|
|
if (filename == NULL && stdin_is_interactive) {
|
|
Py_InspectFlag = 0; /* do exit on SystemExit */
|
|
RunStartupFile(&cf);
|
|
}
|
|
/* XXX */
|
|
|
|
sts = -1; /* keep track of whether we've already run __main__ */
|
|
|
|
if (filename != NULL) {
|
|
sts = RunMainFromImporter(filename);
|
|
}
|
|
|
|
if (sts==-1 && filename!=NULL) {
|
|
if ((fp = _wfopen(filename, L"r")) == NULL) {
|
|
fprintf(stderr, "%ls: can't open file '%ls': [Errno %d] %s\n",
|
|
argv[0], filename, errno, strerror(errno));
|
|
|
|
return 2;
|
|
}
|
|
else if (skipfirstline) {
|
|
int ch;
|
|
/* Push back first newline so line numbers
|
|
remain the same */
|
|
while ((ch = getc(fp)) != EOF) {
|
|
if (ch == '\n') {
|
|
(void)ungetc(ch, fp);
|
|
break;
|
|
}
|
|
}
|
|
}
|
|
{
|
|
/* XXX: does this work on Win/Win64? (see posix_fstat) */
|
|
struct stat sb;
|
|
if (fstat(fileno(fp), &sb) == 0 &&
|
|
S_ISDIR(sb.st_mode)) {
|
|
fprintf(stderr, "%ls: '%ls' is a directory, cannot continue\n", argv[0], filename);
|
|
fclose(fp);
|
|
return 1;
|
|
}
|
|
}
|
|
}
|
|
|
|
if (sts==-1) {
|
|
char cfilename[PATH_MAX];
|
|
char *p_cfilename = "<stdin>";
|
|
if (filename) {
|
|
size_t r = wcstombs(cfilename, filename, PATH_MAX);
|
|
p_cfilename = cfilename;
|
|
if (r == (size_t)-1 || r >= PATH_MAX)
|
|
p_cfilename = "<decoding error>";
|
|
}
|
|
sts = PyRun_AnyFileExFlags(
|
|
fp,
|
|
p_cfilename,
|
|
filename != NULL, &cf) != 0;
|
|
}
|
|
|
|
}
|
|
|
|
/* Check this environment variable at the end, to give programs the
|
|
* opportunity to set it from Python.
|
|
*/
|
|
if (!Py_InspectFlag &&
|
|
(p = Py_GETENV("PYTHONINSPECT")) && *p != '\0')
|
|
{
|
|
Py_InspectFlag = 1;
|
|
}
|
|
|
|
if (Py_InspectFlag && stdin_is_interactive &&
|
|
(filename != NULL || command != NULL || module != NULL)) {
|
|
Py_InspectFlag = 0;
|
|
/* XXX */
|
|
sts = PyRun_AnyFileFlags(stdin, "<stdin>", &cf) != 0;
|
|
}
|
|
|
|
WaitForThreadShutdown();
|
|
|
|
Py_Finalize();
|
|
|
|
#ifdef __INSURE__
|
|
/* Insure++ is a memory analysis tool that aids in discovering
|
|
* memory leaks and other memory problems. On Python exit, the
|
|
* interned string dictionaries are flagged as being in use at exit
|
|
* (which it is). Under normal circumstances, this is fine because
|
|
* the memory will be automatically reclaimed by the system. Under
|
|
* memory debugging, it's a huge source of useless noise, so we
|
|
* trade off slower shutdown for less distraction in the memory
|
|
* reports. -baw
|
|
*/
|
|
_Py_ReleaseInternedStrings();
|
|
_Py_ReleaseInternedUnicodeStrings();
|
|
#endif /* __INSURE__ */
|
|
|
|
return sts;
|
|
}
|
|
|
|
/* this is gonna seem *real weird*, but if you put some other code between
|
|
Py_Main() and Py_GetArgcArgv() you will need to adjust the test in the
|
|
while statement in Misc/gdbinit:ppystack */
|
|
|
|
/* Make the *original* argc/argv available to other modules.
|
|
This is rare, but it is needed by the secureware extension. */
|
|
|
|
void
|
|
Py_GetArgcArgv(int *argc, wchar_t ***argv)
|
|
{
|
|
*argc = orig_argc;
|
|
*argv = orig_argv;
|
|
}
|
|
|
|
#ifdef __cplusplus
|
|
}
|
|
#endif
|