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/* Python interpreter top-level routines, including init/exit */

#include "Python.h"

#include "Python-ast.h"
#undef Yield /* undefine macro conflicting with winbase.h */
#include "grammar.h"
#include "node.h"
#include "token.h"
#include "parsetok.h"
#include "errcode.h"
#include "code.h"
#include "symtable.h"
#include "ast.h"
#include "marshal.h"
#include "osdefs.h"
#include <locale.h>

#ifdef HAVE_SIGNAL_H
#include <signal.h>
#endif

#ifdef MS_WINDOWS
#include "malloc.h" /* for alloca */
#endif

#ifdef HAVE_LANGINFO_H
#include <langinfo.h>
#endif

#ifdef MS_WINDOWS
#undef BYTE
#include "windows.h"
#endif

_Py_IDENTIFIER(builtins);
_Py_IDENTIFIER(excepthook);
_Py_IDENTIFIER(flush);
_Py_IDENTIFIER(last_traceback);
_Py_IDENTIFIER(last_type);
_Py_IDENTIFIER(last_value);
_Py_IDENTIFIER(ps1);
_Py_IDENTIFIER(ps2);
_Py_IDENTIFIER(stdin);
_Py_IDENTIFIER(stdout);
_Py_IDENTIFIER(stderr);
_Py_static_string(PyId_string, "<string>");

#ifdef __cplusplus
extern "C" {
#endif

extern grammar _PyParser_Grammar; /* From graminit.c */

/* Forward */
static void flush_io(void);
static PyObject *run_mod(mod_ty, PyObject *, PyObject *, PyObject *,
                          PyCompilerFlags *, PyArena *);
static PyObject *run_pyc_file(FILE *, const char *, PyObject *, PyObject *,
                              PyCompilerFlags *);
static void err_input(perrdetail *);
static void err_free(perrdetail *);

/* Parse input from a file and execute it */

int
PyRun_AnyFileExFlags(FILE *fp, const char *filename, int closeit,
                     PyCompilerFlags *flags)
{
    if (filename == NULL)
        filename = "???";
    if (Py_FdIsInteractive(fp, filename)) {
        int err = PyRun_InteractiveLoopFlags(fp, filename, flags);
        if (closeit)
            fclose(fp);
        return err;
    }
    else
        return PyRun_SimpleFileExFlags(fp, filename, closeit, flags);
}

int
PyRun_InteractiveLoopFlags(FILE *fp, const char *filename_str, PyCompilerFlags *flags)
{
    PyObject *filename, *v;
    int ret, err;
    PyCompilerFlags local_flags;

    filename = PyUnicode_DecodeFSDefault(filename_str);
    if (filename == NULL) {
        PyErr_Print();
        return -1;
    }

    if (flags == NULL) {
        flags = &local_flags;
        local_flags.cf_flags = 0;
    }
    v = _PySys_GetObjectId(&PyId_ps1);
    if (v == NULL) {
        _PySys_SetObjectId(&PyId_ps1, v = PyUnicode_FromString(">>> "));
        Py_XDECREF(v);
    }
    v = _PySys_GetObjectId(&PyId_ps2);
    if (v == NULL) {
        _PySys_SetObjectId(&PyId_ps2, v = PyUnicode_FromString("... "));
        Py_XDECREF(v);
    }
    err = -1;
    for (;;) {
        ret = PyRun_InteractiveOneObject(fp, filename, flags);
        _PY_DEBUG_PRINT_TOTAL_REFS();
        if (ret == E_EOF) {
            err = 0;
            break;
        }
        /*
        if (ret == E_NOMEM)
            break;
        */
    }
    Py_DECREF(filename);
    return err;
}

/* compute parser flags based on compiler flags */
static int PARSER_FLAGS(PyCompilerFlags *flags)
{
    int parser_flags = 0;
    if (!flags)
        return 0;
    if (flags->cf_flags & PyCF_DONT_IMPLY_DEDENT)
        parser_flags |= PyPARSE_DONT_IMPLY_DEDENT;
    if (flags->cf_flags & PyCF_IGNORE_COOKIE)
        parser_flags |= PyPARSE_IGNORE_COOKIE;
    if (flags->cf_flags & CO_FUTURE_BARRY_AS_BDFL)
        parser_flags |= PyPARSE_BARRY_AS_BDFL;
    return parser_flags;
}

#if 0
/* Keep an example of flags with future keyword support. */
#define PARSER_FLAGS(flags) \
    ((flags) ? ((((flags)->cf_flags & PyCF_DONT_IMPLY_DEDENT) ? \
                  PyPARSE_DONT_IMPLY_DEDENT : 0) \
                | ((flags)->cf_flags & CO_FUTURE_WITH_STATEMENT ? \
                   PyPARSE_WITH_IS_KEYWORD : 0)) : 0)
#endif

int
PyRun_InteractiveOneObject(FILE *fp, PyObject *filename, PyCompilerFlags *flags)
{
    PyObject *m, *d, *v, *w, *oenc = NULL, *mod_name;
    mod_ty mod;
    PyArena *arena;
    char *ps1 = "", *ps2 = "", *enc = NULL;
    int errcode = 0;
    _Py_IDENTIFIER(encoding);
    _Py_IDENTIFIER(__main__);

    mod_name = _PyUnicode_FromId(&PyId___main__); /* borrowed */
    if (mod_name == NULL) {
        PyErr_Print();
        return -1;
    }

    if (fp == stdin) {
        /* Fetch encoding from sys.stdin if possible. */
        v = _PySys_GetObjectId(&PyId_stdin);
        if (v && v != Py_None) {
            oenc = _PyObject_GetAttrId(v, &PyId_encoding);
            if (oenc)
                enc = _PyUnicode_AsString(oenc);
            if (!enc)
                PyErr_Clear();
        }
    }
    v = _PySys_GetObjectId(&PyId_ps1);
    if (v != NULL) {
        v = PyObject_Str(v);
        if (v == NULL)
            PyErr_Clear();
        else if (PyUnicode_Check(v)) {
            ps1 = _PyUnicode_AsString(v);
            if (ps1 == NULL) {
                PyErr_Clear();
                ps1 = "";
            }
        }
    }
    w = _PySys_GetObjectId(&PyId_ps2);
    if (w != NULL) {
        w = PyObject_Str(w);
        if (w == NULL)
            PyErr_Clear();
        else if (PyUnicode_Check(w)) {
            ps2 = _PyUnicode_AsString(w);
            if (ps2 == NULL) {
                PyErr_Clear();
                ps2 = "";
            }
        }
    }
    arena = PyArena_New();
    if (arena == NULL) {
        Py_XDECREF(v);
        Py_XDECREF(w);
        Py_XDECREF(oenc);
        return -1;
    }
    mod = PyParser_ASTFromFileObject(fp, filename, enc,
                                     Py_single_input, ps1, ps2,
                                     flags, &errcode, arena);
    Py_XDECREF(v);
    Py_XDECREF(w);
    Py_XDECREF(oenc);
    if (mod == NULL) {
        PyArena_Free(arena);
        if (errcode == E_EOF) {
            PyErr_Clear();
            return E_EOF;
        }
        PyErr_Print();
        return -1;
    }
    m = PyImport_AddModuleObject(mod_name);
    if (m == NULL) {
        PyArena_Free(arena);
        return -1;
    }
    d = PyModule_GetDict(m);
    v = run_mod(mod, filename, d, d, flags, arena);
    PyArena_Free(arena);
    if (v == NULL) {
        PyErr_Print();
        flush_io();
        return -1;
    }
    Py_DECREF(v);
    flush_io();
    return 0;
}

int
PyRun_InteractiveOneFlags(FILE *fp, const char *filename_str, PyCompilerFlags *flags)
{
    PyObject *filename;
    int res;

    filename = PyUnicode_DecodeFSDefault(filename_str);
    if (filename == NULL) {
        PyErr_Print();
        return -1;
    }
    res = PyRun_InteractiveOneObject(fp, filename, flags);
    Py_DECREF(filename);
    return res;
}


/* Check whether a file maybe a pyc file: Look at the extension,
   the file type, and, if we may close it, at the first few bytes. */

static int
maybe_pyc_file(FILE *fp, const char* filename, const char* ext, int closeit)
{
    if (strcmp(ext, ".pyc") == 0)
        return 1;

    /* Only look into the file if we are allowed to close it, since
       it then should also be seekable. */
    if (closeit) {
        /* Read only two bytes of the magic. If the file was opened in
           text mode, the bytes 3 and 4 of the magic (\r\n) might not
           be read as they are on disk. */
        unsigned int halfmagic = PyImport_GetMagicNumber() & 0xFFFF;
        unsigned char buf[2];
        /* Mess:  In case of -x, the stream is NOT at its start now,
           and ungetc() was used to push back the first newline,
           which makes the current stream position formally undefined,
           and a x-platform nightmare.
           Unfortunately, we have no direct way to know whether -x
           was specified.  So we use a terrible hack:  if the current
           stream position is not 0, we assume -x was specified, and
           give up.  Bug 132850 on SourceForge spells out the
           hopelessness of trying anything else (fseek and ftell
           don't work predictably x-platform for text-mode files).
        */
        int ispyc = 0;
        if (ftell(fp) == 0) {
            if (fread(buf, 1, 2, fp) == 2 &&
                ((unsigned int)buf[1]<<8 | buf[0]) == halfmagic)
                ispyc = 1;
            rewind(fp);
        }
        return ispyc;
    }
    return 0;
}

static int
set_main_loader(PyObject *d, const char *filename, const char *loader_name)
{
    PyInterpreterState *interp;
    PyThreadState *tstate;
    PyObject *filename_obj, *bootstrap, *loader_type = NULL, *loader;
    int result = 0;

    filename_obj = PyUnicode_DecodeFSDefault(filename);
    if (filename_obj == NULL)
        return -1;
    /* Get current thread state and interpreter pointer */
    tstate = PyThreadState_GET();
    interp = tstate->interp;
    bootstrap = PyObject_GetAttrString(interp->importlib,
                                       "_bootstrap_external");
    if (bootstrap != NULL) {
        loader_type = PyObject_GetAttrString(bootstrap, loader_name);
        Py_DECREF(bootstrap);
    }
    if (loader_type == NULL) {
        Py_DECREF(filename_obj);
        return -1;
    }
    loader = PyObject_CallFunction(loader_type, "sN", "__main__", filename_obj);
    Py_DECREF(loader_type);
    if (loader == NULL) {
        return -1;
    }
    if (PyDict_SetItemString(d, "__loader__", loader) < 0) {
        result = -1;
    }
    Py_DECREF(loader);
    return result;
}

int
PyRun_SimpleFileExFlags(FILE *fp, const char *filename, int closeit,
                        PyCompilerFlags *flags)
{
    PyObject *m, *d, *v;
    const char *ext;
    int set_file_name = 0, ret = -1;
    size_t len;

    m = PyImport_AddModule("__main__");
    if (m == NULL)
        return -1;
    Py_INCREF(m);
    d = PyModule_GetDict(m);
    if (PyDict_GetItemString(d, "__file__") == NULL) {
        PyObject *f;
        f = PyUnicode_DecodeFSDefault(filename);
        if (f == NULL)
            goto done;
        if (PyDict_SetItemString(d, "__file__", f) < 0) {
            Py_DECREF(f);
            goto done;
        }
        if (PyDict_SetItemString(d, "__cached__", Py_None) < 0) {
            Py_DECREF(f);
            goto done;
        }
        set_file_name = 1;
        Py_DECREF(f);
    }
    len = strlen(filename);
    ext = filename + len - (len > 4 ? 4 : 0);
    if (maybe_pyc_file(fp, filename, ext, closeit)) {
        FILE *pyc_fp;
        /* Try to run a pyc file. First, re-open in binary */
        if (closeit)
            fclose(fp);
        if ((pyc_fp = _Py_fopen(filename, "rb")) == NULL) {
            fprintf(stderr, "python: Can't reopen .pyc file\n");
            goto done;
        }

        if (set_main_loader(d, filename, "SourcelessFileLoader") < 0) {
            fprintf(stderr, "python: failed to set __main__.__loader__\n");
            ret = -1;
            fclose(pyc_fp);
            goto done;
        }
        v = run_pyc_file(pyc_fp, filename, d, d, flags);
        fclose(pyc_fp);
    } else {
        /* When running from stdin, leave __main__.__loader__ alone */
        if (strcmp(filename, "<stdin>") != 0 &&
            set_main_loader(d, filename, "SourceFileLoader") < 0) {
            fprintf(stderr, "python: failed to set __main__.__loader__\n");
            ret = -1;
            goto done;
        }
        v = PyRun_FileExFlags(fp, filename, Py_file_input, d, d,
                              closeit, flags);
    }
    flush_io();
    if (v == NULL) {
        PyErr_Print();
        goto done;
    }
    Py_DECREF(v);
    ret = 0;
  done:
    if (set_file_name && PyDict_DelItemString(d, "__file__"))
        PyErr_Clear();
    Py_DECREF(m);
    return ret;
}

int
PyRun_SimpleStringFlags(const char *command, PyCompilerFlags *flags)
{
    PyObject *m, *d, *v;
    m = PyImport_AddModule("__main__");
    if (m == NULL)
        return -1;
    d = PyModule_GetDict(m);
    v = PyRun_StringFlags(command, Py_file_input, d, d, flags);
    if (v == NULL) {
        PyErr_Print();
        return -1;
    }
    Py_DECREF(v);
    return 0;
}

static int
parse_syntax_error(PyObject *err, PyObject **message, PyObject **filename,
                   int *lineno, int *offset, PyObject **text)
{
    int hold;
    PyObject *v;
    _Py_IDENTIFIER(msg);
    _Py_IDENTIFIER(filename);
    _Py_IDENTIFIER(lineno);
    _Py_IDENTIFIER(offset);
    _Py_IDENTIFIER(text);

    *message = NULL;
    *filename = NULL;

    /* new style errors.  `err' is an instance */
    *message = _PyObject_GetAttrId(err, &PyId_msg);
    if (!*message)
        goto finally;

    v = _PyObject_GetAttrId(err, &PyId_filename);
    if (!v)
        goto finally;
    if (v == Py_None) {
        Py_DECREF(v);
        *filename = _PyUnicode_FromId(&PyId_string);
        if (*filename == NULL)
            goto finally;
        Py_INCREF(*filename);
    }
    else {
        *filename = v;
    }

    v = _PyObject_GetAttrId(err, &PyId_lineno);
    if (!v)
        goto finally;
    hold = _PyLong_AsInt(v);
    Py_DECREF(v);
    if (hold < 0 && PyErr_Occurred())
        goto finally;
    *lineno = hold;

    v = _PyObject_GetAttrId(err, &PyId_offset);
    if (!v)
        goto finally;
    if (v == Py_None) {
        *offset = -1;
        Py_DECREF(v);
    } else {
        hold = _PyLong_AsInt(v);
        Py_DECREF(v);
        if (hold < 0 && PyErr_Occurred())
            goto finally;
        *offset = hold;
    }

    v = _PyObject_GetAttrId(err, &PyId_text);
    if (!v)
        goto finally;
    if (v == Py_None) {
        Py_DECREF(v);
        *text = NULL;
    }
    else {
        *text = v;
    }
    return 1;

finally:
    Py_XDECREF(*message);
    Py_XDECREF(*filename);
    return 0;
}

void
PyErr_Print(void)
{
    PyErr_PrintEx(1);
}

static void
print_error_text(PyObject *f, int offset, PyObject *text_obj)
{
    char *text;
    char *nl;

    text = _PyUnicode_AsString(text_obj);
    if (text == NULL)
        return;

    if (offset >= 0) {
        if (offset > 0 && (size_t)offset == strlen(text) && text[offset - 1] == '\n')
            offset--;
        for (;;) {
            nl = strchr(text, '\n');
            if (nl == NULL || nl-text >= offset)
                break;
            offset -= (int)(nl+1-text);
            text = nl+1;
        }
        while (*text == ' ' || *text == '\t') {
            text++;
            offset--;
        }
    }
    PyFile_WriteString("    ", f);
    PyFile_WriteString(text, f);
    if (*text == '\0' || text[strlen(text)-1] != '\n')
        PyFile_WriteString("\n", f);
    if (offset == -1)
        return;
    PyFile_WriteString("    ", f);
    while (--offset > 0)
        PyFile_WriteString(" ", f);
    PyFile_WriteString("^\n", f);
}

static void
handle_system_exit(void)
{
    PyObject *exception, *value, *tb;
    int exitcode = 0;

    if (Py_InspectFlag)
        /* Don't exit if -i flag was given. This flag is set to 0
         * when entering interactive mode for inspecting. */
        return;

    PyErr_Fetch(&exception, &value, &tb);
    fflush(stdout);
    if (value == NULL || value == Py_None)
        goto done;
    if (PyExceptionInstance_Check(value)) {
        /* The error code should be in the `code' attribute. */
        _Py_IDENTIFIER(code);
        PyObject *code = _PyObject_GetAttrId(value, &PyId_code);
        if (code) {
            Py_DECREF(value);
            value = code;
            if (value == Py_None)
                goto done;
        }
        /* If we failed to dig out the 'code' attribute,
           just let the else clause below print the error. */
    }
    if (PyLong_Check(value))
        exitcode = (int)PyLong_AsLong(value);
    else {
        PyObject *sys_stderr = _PySys_GetObjectId(&PyId_stderr);
        /* We clear the exception here to avoid triggering the assertion
         * in PyObject_Str that ensures it won't silently lose exception
         * details.
         */
        PyErr_Clear();
        if (sys_stderr != NULL && sys_stderr != Py_None) {
            PyFile_WriteObject(value, sys_stderr, Py_PRINT_RAW);
        } else {
            PyObject_Print(value, stderr, Py_PRINT_RAW);
            fflush(stderr);
        }
        PySys_WriteStderr("\n");
        exitcode = 1;
    }
 done:
    /* Restore and clear the exception info, in order to properly decref
     * the exception, value, and traceback.      If we just exit instead,
     * these leak, which confuses PYTHONDUMPREFS output, and may prevent
     * some finalizers from running.
     */
    PyErr_Restore(exception, value, tb);
    PyErr_Clear();
    Py_Exit(exitcode);
    /* NOTREACHED */
}

void
PyErr_PrintEx(int set_sys_last_vars)
{
    PyObject *exception, *v, *tb, *hook;

    if (PyErr_ExceptionMatches(PyExc_SystemExit)) {
        handle_system_exit();
    }
    PyErr_Fetch(&exception, &v, &tb);
    if (exception == NULL)
        return;
    PyErr_NormalizeException(&exception, &v, &tb);
    if (tb == NULL) {
        tb = Py_None;
        Py_INCREF(tb);
    }
    PyException_SetTraceback(v, tb);
    if (exception == NULL)
        return;
    /* Now we know v != NULL too */
    if (set_sys_last_vars) {
        _PySys_SetObjectId(&PyId_last_type, exception);
        _PySys_SetObjectId(&PyId_last_value, v);
        _PySys_SetObjectId(&PyId_last_traceback, tb);
    }
    hook = _PySys_GetObjectId(&PyId_excepthook);
    if (hook) {
        PyObject* stack[3];
        PyObject *result;

        stack[0] = exception;
        stack[1] = v;
        stack[2] = tb;
        result = _PyObject_FastCall(hook, stack, 3);
        if (result == NULL) {
            PyObject *exception2, *v2, *tb2;
            if (PyErr_ExceptionMatches(PyExc_SystemExit)) {
                handle_system_exit();
            }
            PyErr_Fetch(&exception2, &v2, &tb2);
            PyErr_NormalizeException(&exception2, &v2, &tb2);
            /* It should not be possible for exception2 or v2
               to be NULL. However PyErr_Display() can't
               tolerate NULLs, so just be safe. */
            if (exception2 == NULL) {
                exception2 = Py_None;
                Py_INCREF(exception2);
            }
            if (v2 == NULL) {
                v2 = Py_None;
                Py_INCREF(v2);
            }
            fflush(stdout);
            PySys_WriteStderr("Error in sys.excepthook:\n");
            PyErr_Display(exception2, v2, tb2);
            PySys_WriteStderr("\nOriginal exception was:\n");
            PyErr_Display(exception, v, tb);
            Py_DECREF(exception2);
            Py_DECREF(v2);
            Py_XDECREF(tb2);
        }
        Py_XDECREF(result);
    } else {
        PySys_WriteStderr("sys.excepthook is missing\n");
        PyErr_Display(exception, v, tb);
    }
    Py_XDECREF(exception);
    Py_XDECREF(v);
    Py_XDECREF(tb);
}

static void
print_exception(PyObject *f, PyObject *value)
{
    int err = 0;
    PyObject *type, *tb;
    _Py_IDENTIFIER(print_file_and_line);

    if (!PyExceptionInstance_Check(value)) {
        err = PyFile_WriteString("TypeError: print_exception(): Exception expected for value, ", f);
        err += PyFile_WriteString(Py_TYPE(value)->tp_name, f);
        err += PyFile_WriteString(" found\n", f);
        if (err)
            PyErr_Clear();
        return;
    }

    Py_INCREF(value);
    fflush(stdout);
    type = (PyObject *) Py_TYPE(value);
    tb = PyException_GetTraceback(value);
    if (tb && tb != Py_None)
        err = PyTraceBack_Print(tb, f);
    if (err == 0 &&
        _PyObject_HasAttrId(value, &PyId_print_file_and_line))
    {
        PyObject *message, *filename, *text;
        int lineno, offset;
        if (!parse_syntax_error(value, &message, &filename,
                                &lineno, &offset, &text))
            PyErr_Clear();
        else {
            PyObject *line;

            Py_DECREF(value);
            value = message;

            line = PyUnicode_FromFormat("  File \"%U\", line %d\n",
                                          filename, lineno);
            Py_DECREF(filename);
            if (line != NULL) {
                PyFile_WriteObject(line, f, Py_PRINT_RAW);
                Py_DECREF(line);
            }

            if (text != NULL) {
                print_error_text(f, offset, text);
                Py_DECREF(text);
            }

            /* Can't be bothered to check all those
               PyFile_WriteString() calls */
            if (PyErr_Occurred())
                err = -1;
        }
    }
    if (err) {
        /* Don't do anything else */
    }
    else {
        PyObject* moduleName;
        char* className;
        _Py_IDENTIFIER(__module__);
        assert(PyExceptionClass_Check(type));
        className = PyExceptionClass_Name(type);
        if (className != NULL) {
            char *dot = strrchr(className, '.');
            if (dot != NULL)
                className = dot+1;
        }

        moduleName = _PyObject_GetAttrId(type, &PyId___module__);
        if (moduleName == NULL || !PyUnicode_Check(moduleName))
        {
            Py_XDECREF(moduleName);
            err = PyFile_WriteString("<unknown>", f);
        }
        else {
            if (_PyUnicode_CompareWithId(moduleName, &PyId_builtins) != 0)
            {
                err = PyFile_WriteObject(moduleName, f, Py_PRINT_RAW);
                err += PyFile_WriteString(".", f);
            }
            Py_DECREF(moduleName);
        }
        if (err == 0) {
            if (className == NULL)
                      err = PyFile_WriteString("<unknown>", f);
            else
                      err = PyFile_WriteString(className, f);
        }
    }
    if (err == 0 && (value != Py_None)) {
        PyObject *s = PyObject_Str(value);
        /* only print colon if the str() of the
           object is not the empty string
        */
        if (s == NULL) {
            PyErr_Clear();
            err = -1;
            PyFile_WriteString(": <exception str() failed>", f);
        }
        else if (!PyUnicode_Check(s) ||
            PyUnicode_GetLength(s) != 0)
            err = PyFile_WriteString(": ", f);
        if (err == 0)
          err = PyFile_WriteObject(s, f, Py_PRINT_RAW);
        Py_XDECREF(s);
    }
    /* try to write a newline in any case */
    if (err < 0) {
        PyErr_Clear();
    }
    err += PyFile_WriteString("\n", f);
    Py_XDECREF(tb);
    Py_DECREF(value);
    /* If an error happened here, don't show it.
       XXX This is wrong, but too many callers rely on this behavior. */
    if (err != 0)
        PyErr_Clear();
}

static const char cause_message[] =
    "\nThe above exception was the direct cause "
    "of the following exception:\n\n";

static const char context_message[] =
    "\nDuring handling of the above exception, "
    "another exception occurred:\n\n";

static void
print_exception_recursive(PyObject *f, PyObject *value, PyObject *seen)
{
    int err = 0, res;
    PyObject *cause, *context;

    if (seen != NULL) {
        /* Exception chaining */
        if (PySet_Add(seen, value) == -1)
            PyErr_Clear();
        else if (PyExceptionInstance_Check(value)) {
            cause = PyException_GetCause(value);
            context = PyException_GetContext(value);
            if (cause) {
                res = PySet_Contains(seen, cause);
                if (res == -1)
                    PyErr_Clear();
                if (res == 0) {
                    print_exception_recursive(
                        f, cause, seen);
                    err |= PyFile_WriteString(
                        cause_message, f);
                }
            }
            else if (context &&
                !((PyBaseExceptionObject *)value)->suppress_context) {
                res = PySet_Contains(seen, context);
                if (res == -1)
                    PyErr_Clear();
                if (res == 0) {
                    print_exception_recursive(
                        f, context, seen);
                    err |= PyFile_WriteString(
                        context_message, f);
                }
            }
            Py_XDECREF(context);
            Py_XDECREF(cause);
        }
    }
    print_exception(f, value);
    if (err != 0)
        PyErr_Clear();
}

void
PyErr_Display(PyObject *exception, PyObject *value, PyObject *tb)
{
    PyObject *seen;
    PyObject *f = _PySys_GetObjectId(&PyId_stderr);
    if (PyExceptionInstance_Check(value)
        && tb != NULL && PyTraceBack_Check(tb)) {
        /* Put the traceback on the exception, otherwise it won't get
           displayed.  See issue #18776. */
        PyObject *cur_tb = PyException_GetTraceback(value);
        if (cur_tb == NULL)
            PyException_SetTraceback(value, tb);
        else
            Py_DECREF(cur_tb);
    }
    if (f == Py_None) {
        /* pass */
    }
    else if (f == NULL) {
        _PyObject_Dump(value);
        fprintf(stderr, "lost sys.stderr\n");
    }
    else {
        /* We choose to ignore seen being possibly NULL, and report
           at least the main exception (it could be a MemoryError).
        */
        seen = PySet_New(NULL);
        if (seen == NULL)
            PyErr_Clear();
        print_exception_recursive(f, value, seen);
        Py_XDECREF(seen);
    }
}

PyObject *
PyRun_StringFlags(const char *str, int start, PyObject *globals,
                  PyObject *locals, PyCompilerFlags *flags)
{
    PyObject *ret = NULL;
    mod_ty mod;
    PyArena *arena;
    PyObject *filename;

    filename = _PyUnicode_FromId(&PyId_string); /* borrowed */
    if (filename == NULL)
        return NULL;

    arena = PyArena_New();
    if (arena == NULL)
        return NULL;

    mod = PyParser_ASTFromStringObject(str, filename, start, flags, arena);
    if (mod != NULL)
        ret = run_mod(mod, filename, globals, locals, flags, arena);
    PyArena_Free(arena);
    return ret;
}

PyObject *
PyRun_FileExFlags(FILE *fp, const char *filename_str, int start, PyObject *globals,
                  PyObject *locals, int closeit, PyCompilerFlags *flags)
{
    PyObject *ret = NULL;
    mod_ty mod;
    PyArena *arena = NULL;
    PyObject *filename;

    filename = PyUnicode_DecodeFSDefault(filename_str);
    if (filename == NULL)
        goto exit;

    arena = PyArena_New();
    if (arena == NULL)
        goto exit;

    mod = PyParser_ASTFromFileObject(fp, filename, NULL, start, 0, 0,
                                     flags, NULL, arena);
    if (closeit)
        fclose(fp);
    if (mod == NULL) {
        goto exit;
    }
    ret = run_mod(mod, filename, globals, locals, flags, arena);

exit:
    Py_XDECREF(filename);
    if (arena != NULL)
        PyArena_Free(arena);
    return ret;
}

static void
flush_io(void)
{
    PyObject *f, *r;
    PyObject *type, *value, *traceback;

    /* Save the current exception */
    PyErr_Fetch(&type, &value, &traceback);

    f = _PySys_GetObjectId(&PyId_stderr);
    if (f != NULL) {
        r = _PyObject_CallMethodId(f, &PyId_flush, NULL);
        if (r)
            Py_DECREF(r);
        else
            PyErr_Clear();
    }
    f = _PySys_GetObjectId(&PyId_stdout);
    if (f != NULL) {
        r = _PyObject_CallMethodId(f, &PyId_flush, NULL);
        if (r)
            Py_DECREF(r);
        else
            PyErr_Clear();
    }

    PyErr_Restore(type, value, traceback);
}

static PyObject *
run_mod(mod_ty mod, PyObject *filename, PyObject *globals, PyObject *locals,
            PyCompilerFlags *flags, PyArena *arena)
{
    PyCodeObject *co;
    PyObject *v;
    co = PyAST_CompileObject(mod, filename, flags, -1, arena);
    if (co == NULL)
        return NULL;
    v = PyEval_EvalCode((PyObject*)co, globals, locals);
    Py_DECREF(co);
    return v;
}

static PyObject *
run_pyc_file(FILE *fp, const char *filename, PyObject *globals,
             PyObject *locals, PyCompilerFlags *flags)
{
    PyCodeObject *co;
    PyObject *v;
    long magic;
    long PyImport_GetMagicNumber(void);

    magic = PyMarshal_ReadLongFromFile(fp);
    if (magic != PyImport_GetMagicNumber()) {
        if (!PyErr_Occurred())
            PyErr_SetString(PyExc_RuntimeError,
                       "Bad magic number in .pyc file");
        return NULL;
    }
    /* Skip mtime and size */
    (void) PyMarshal_ReadLongFromFile(fp);
    (void) PyMarshal_ReadLongFromFile(fp);
    if (PyErr_Occurred())
        return NULL;

    v = PyMarshal_ReadLastObjectFromFile(fp);
    if (v == NULL || !PyCode_Check(v)) {
        Py_XDECREF(v);
        PyErr_SetString(PyExc_RuntimeError,
                   "Bad code object in .pyc file");
        return NULL;
    }
    co = (PyCodeObject *)v;
    v = PyEval_EvalCode((PyObject*)co, globals, locals);
    if (v && flags)
        flags->cf_flags |= (co->co_flags & PyCF_MASK);
    Py_DECREF(co);
    return v;
}

PyObject *
Py_CompileStringObject(const char *str, PyObject *filename, int start,
                       PyCompilerFlags *flags, int optimize)
{
    PyCodeObject *co;
    mod_ty mod;
    PyArena *arena = PyArena_New();
    if (arena == NULL)
        return NULL;

    mod = PyParser_ASTFromStringObject(str, filename, start, flags, arena);
    if (mod == NULL) {
        PyArena_Free(arena);
        return NULL;
    }
    if (flags && (flags->cf_flags & PyCF_ONLY_AST)) {
        PyObject *result = PyAST_mod2obj(mod);
        PyArena_Free(arena);
        return result;
    }
    co = PyAST_CompileObject(mod, filename, flags, optimize, arena);
    PyArena_Free(arena);
    return (PyObject *)co;
}

PyObject *
Py_CompileStringExFlags(const char *str, const char *filename_str, int start,
                        PyCompilerFlags *flags, int optimize)
{
    PyObject *filename, *co;
    filename = PyUnicode_DecodeFSDefault(filename_str);
    if (filename == NULL)
        return NULL;
    co = Py_CompileStringObject(str, filename, start, flags, optimize);
    Py_DECREF(filename);
    return co;
}

/* For use in Py_LIMITED_API */
#undef Py_CompileString
PyObject *
PyCompileString(const char *str, const char *filename, int start)
{
    return Py_CompileStringFlags(str, filename, start, NULL);
}

struct symtable *
Py_SymtableStringObject(const char *str, PyObject *filename, int start)
{
    struct symtable *st;
    mod_ty mod;
    PyCompilerFlags flags;
    PyArena *arena;

    arena = PyArena_New();
    if (arena == NULL)
        return NULL;

    flags.cf_flags = 0;
    mod = PyParser_ASTFromStringObject(str, filename, start, &flags, arena);
    if (mod == NULL) {
        PyArena_Free(arena);
        return NULL;
    }
    st = PySymtable_BuildObject(mod, filename, 0);
    PyArena_Free(arena);
    return st;
}

struct symtable *
Py_SymtableString(const char *str, const char *filename_str, int start)
{
    PyObject *filename;
    struct symtable *st;

    filename = PyUnicode_DecodeFSDefault(filename_str);
    if (filename == NULL)
        return NULL;
    st = Py_SymtableStringObject(str, filename, start);
    Py_DECREF(filename);
    return st;
}

/* Preferred access to parser is through AST. */
mod_ty
PyParser_ASTFromStringObject(const char *s, PyObject *filename, int start,
                             PyCompilerFlags *flags, PyArena *arena)
{
    mod_ty mod;
    PyCompilerFlags localflags;
    perrdetail err;
    int iflags = PARSER_FLAGS(flags);

    node *n = PyParser_ParseStringObject(s, filename,
                                         &_PyParser_Grammar, start, &err,
                                         &iflags);
    if (flags == NULL) {
        localflags.cf_flags = 0;
        flags = &localflags;
    }
    if (n) {
        flags->cf_flags |= iflags & PyCF_MASK;
        mod = PyAST_FromNodeObject(n, flags, filename, arena);
        PyNode_Free(n);
    }
    else {
        err_input(&err);
        mod = NULL;
    }
    err_free(&err);
    return mod;
}

mod_ty
PyParser_ASTFromString(const char *s, const char *filename_str, int start,
                       PyCompilerFlags *flags, PyArena *arena)
{
    PyObject *filename;
    mod_ty mod;
    filename = PyUnicode_DecodeFSDefault(filename_str);
    if (filename == NULL)
        return NULL;
    mod = PyParser_ASTFromStringObject(s, filename, start, flags, arena);
    Py_DECREF(filename);
    return mod;
}

mod_ty
PyParser_ASTFromFileObject(FILE *fp, PyObject *filename, const char* enc,
                           int start, const char *ps1,
                           const char *ps2, PyCompilerFlags *flags, int *errcode,
                           PyArena *arena)
{
    mod_ty mod;
    PyCompilerFlags localflags;
    perrdetail err;
    int iflags = PARSER_FLAGS(flags);

    node *n = PyParser_ParseFileObject(fp, filename, enc,
                                       &_PyParser_Grammar,
                                       start, ps1, ps2, &err, &iflags);
    if (flags == NULL) {
        localflags.cf_flags = 0;
        flags = &localflags;
    }
    if (n) {
        flags->cf_flags |= iflags & PyCF_MASK;
        mod = PyAST_FromNodeObject(n, flags, filename, arena);
        PyNode_Free(n);
    }
    else {
        err_input(&err);
        if (errcode)
            *errcode = err.error;
        mod = NULL;
    }
    err_free(&err);
    return mod;
}

mod_ty
PyParser_ASTFromFile(FILE *fp, const char *filename_str, const char* enc,
                     int start, const char *ps1,
                     const char *ps2, PyCompilerFlags *flags, int *errcode,
                     PyArena *arena)
{
    mod_ty mod;
    PyObject *filename;
    filename = PyUnicode_DecodeFSDefault(filename_str);
    if (filename == NULL)
        return NULL;
    mod = PyParser_ASTFromFileObject(fp, filename, enc, start, ps1, ps2,
                                     flags, errcode, arena);
    Py_DECREF(filename);
    return mod;
}

/* Simplified interface to parsefile -- return node or set exception */

node *
PyParser_SimpleParseFileFlags(FILE *fp, const char *filename, int start, int flags)
{
    perrdetail err;
    node *n = PyParser_ParseFileFlags(fp, filename, NULL,
                                      &_PyParser_Grammar,
                                      start, NULL, NULL, &err, flags);
    if (n == NULL)
        err_input(&err);
    err_free(&err);

    return n;
}

/* Simplified interface to parsestring -- return node or set exception */

node *
PyParser_SimpleParseStringFlags(const char *str, int start, int flags)
{
    perrdetail err;
    node *n = PyParser_ParseStringFlags(str, &_PyParser_Grammar,
                                        start, &err, flags);
    if (n == NULL)
        err_input(&err);
    err_free(&err);
    return n;
}

node *
PyParser_SimpleParseStringFlagsFilename(const char *str, const char *filename,
                                        int start, int flags)
{
    perrdetail err;
    node *n = PyParser_ParseStringFlagsFilename(str, filename,
                            &_PyParser_Grammar, start, &err, flags);
    if (n == NULL)
        err_input(&err);
    err_free(&err);
    return n;
}

node *
PyParser_SimpleParseStringFilename(const char *str, const char *filename, int start)
{
    return PyParser_SimpleParseStringFlagsFilename(str, filename, start, 0);
}

/* May want to move a more generalized form of this to parsetok.c or
   even parser modules. */

void
PyParser_ClearError(perrdetail *err)
{
    err_free(err);
}

void
PyParser_SetError(perrdetail *err)
{
    err_input(err);
}

static void
err_free(perrdetail *err)
{
    Py_CLEAR(err->filename);
}

/* Set the error appropriate to the given input error code (see errcode.h) */

static void
err_input(perrdetail *err)
{
    PyObject *v, *w, *errtype, *errtext;
    PyObject *msg_obj = NULL;
    char *msg = NULL;
    int offset = err->offset;

    errtype = PyExc_SyntaxError;
    switch (err->error) {
    case E_ERROR:
        return;
    case E_SYNTAX:
        errtype = PyExc_IndentationError;
        if (err->expected == INDENT)
            msg = "expected an indented block";
        else if (err->token == INDENT)
            msg = "unexpected indent";
        else if (err->token == DEDENT)
            msg = "unexpected unindent";
        else {
            errtype = PyExc_SyntaxError;
            msg = "invalid syntax";
        }
        break;
    case E_TOKEN:
        msg = "invalid token";
        break;
    case E_EOFS:
        msg = "EOF while scanning triple-quoted string literal";
        break;
    case E_EOLS:
        msg = "EOL while scanning string literal";
        break;
    case E_INTR:
        if (!PyErr_Occurred())
            PyErr_SetNone(PyExc_KeyboardInterrupt);
        goto cleanup;
    case E_NOMEM:
        PyErr_NoMemory();
        goto cleanup;
    case E_EOF:
        msg = "unexpected EOF while parsing";
        break;
    case E_TABSPACE:
        errtype = PyExc_TabError;
        msg = "inconsistent use of tabs and spaces in indentation";
        break;
    case E_OVERFLOW:
        msg = "expression too long";
        break;
    case E_DEDENT:
        errtype = PyExc_IndentationError;
        msg = "unindent does not match any outer indentation level";
        break;
    case E_TOODEEP:
        errtype = PyExc_IndentationError;
        msg = "too many levels of indentation";
        break;
    case E_DECODE: {
        PyObject *type, *value, *tb;
        PyErr_Fetch(&type, &value, &tb);
        msg = "unknown decode error";
        if (value != NULL)
            msg_obj = PyObject_Str(value);
        Py_XDECREF(type);
        Py_XDECREF(value);
        Py_XDECREF(tb);
        break;
    }
    case E_LINECONT:
        msg = "unexpected character after line continuation character";
        break;

    case E_IDENTIFIER:
        msg = "invalid character in identifier";
        break;
    case E_BADSINGLE:
        msg = "multiple statements found while compiling a single statement";
        break;
    default:
        fprintf(stderr, "error=%d\n", err->error);
        msg = "unknown parsing error";
        break;
    }
    /* err->text may not be UTF-8 in case of decoding errors.
       Explicitly convert to an object. */
    if (!err->text) {
        errtext = Py_None;
        Py_INCREF(Py_None);
    } else {
        errtext = PyUnicode_DecodeUTF8(err->text, err->offset,
                                       "replace");
        if (errtext != NULL) {
            Py_ssize_t len = strlen(err->text);
            offset = (int)PyUnicode_GET_LENGTH(errtext);
            if (len != err->offset) {
                Py_DECREF(errtext);
                errtext = PyUnicode_DecodeUTF8(err->text, len,
                                               "replace");
            }
        }
    }
    v = Py_BuildValue("(OiiN)", err->filename,
                      err->lineno, offset, errtext);
    if (v != NULL) {
        if (msg_obj)
            w = Py_BuildValue("(OO)", msg_obj, v);
        else
            w = Py_BuildValue("(sO)", msg, v);
    } else
        w = NULL;
    Py_XDECREF(v);
    PyErr_SetObject(errtype, w);
    Py_XDECREF(w);
cleanup:
    Py_XDECREF(msg_obj);
    if (err->text != NULL) {
        PyObject_FREE(err->text);
        err->text = NULL;
    }
}


#if defined(USE_STACKCHECK)
#if defined(WIN32) && defined(_MSC_VER)

/* Stack checking for Microsoft C */

#include <malloc.h>
#include <excpt.h>

/*
 * Return non-zero when we run out of memory on the stack; zero otherwise.
 */
int
PyOS_CheckStack(void)
{
    __try {
        /* alloca throws a stack overflow exception if there's
           not enough space left on the stack */
        alloca(PYOS_STACK_MARGIN * sizeof(void*));
        return 0;
    } __except (GetExceptionCode() == STATUS_STACK_OVERFLOW ?
                    EXCEPTION_EXECUTE_HANDLER :
            EXCEPTION_CONTINUE_SEARCH) {
        int errcode = _resetstkoflw();
        if (errcode == 0)
        {
            Py_FatalError("Could not reset the stack!");
        }
    }
    return 1;
}

#endif /* WIN32 && _MSC_VER */

/* Alternate implementations can be added here... */

#endif /* USE_STACKCHECK */

/* Deprecated C API functions still provided for binary compatibility */

#undef PyParser_SimpleParseFile
PyAPI_FUNC(node *)
PyParser_SimpleParseFile(FILE *fp, const char *filename, int start)
{
    return PyParser_SimpleParseFileFlags(fp, filename, start, 0);
}

#undef PyParser_SimpleParseString
PyAPI_FUNC(node *)
PyParser_SimpleParseString(const char *str, int start)
{
    return PyParser_SimpleParseStringFlags(str, start, 0);
}

#undef PyRun_AnyFile
PyAPI_FUNC(int)
PyRun_AnyFile(FILE *fp, const char *name)
{
    return PyRun_AnyFileExFlags(fp, name, 0, NULL);
}

#undef PyRun_AnyFileEx
PyAPI_FUNC(int)
PyRun_AnyFileEx(FILE *fp, const char *name, int closeit)
{
    return PyRun_AnyFileExFlags(fp, name, closeit, NULL);
}

#undef PyRun_AnyFileFlags
PyAPI_FUNC(int)
PyRun_AnyFileFlags(FILE *fp, const char *name, PyCompilerFlags *flags)
{
    return PyRun_AnyFileExFlags(fp, name, 0, flags);
}

#undef PyRun_File
PyAPI_FUNC(PyObject *)
PyRun_File(FILE *fp, const char *p, int s, PyObject *g, PyObject *l)
{
    return PyRun_FileExFlags(fp, p, s, g, l, 0, NULL);
}

#undef PyRun_FileEx
PyAPI_FUNC(PyObject *)
PyRun_FileEx(FILE *fp, const char *p, int s, PyObject *g, PyObject *l, int c)
{
    return PyRun_FileExFlags(fp, p, s, g, l, c, NULL);
}

#undef PyRun_FileFlags
PyAPI_FUNC(PyObject *)
PyRun_FileFlags(FILE *fp, const char *p, int s, PyObject *g, PyObject *l,
                PyCompilerFlags *flags)
{
    return PyRun_FileExFlags(fp, p, s, g, l, 0, flags);
}

#undef PyRun_SimpleFile
PyAPI_FUNC(int)
PyRun_SimpleFile(FILE *f, const char *p)
{
    return PyRun_SimpleFileExFlags(f, p, 0, NULL);
}

#undef PyRun_SimpleFileEx
PyAPI_FUNC(int)
PyRun_SimpleFileEx(FILE *f, const char *p, int c)
{
    return PyRun_SimpleFileExFlags(f, p, c, NULL);
}


#undef PyRun_String
PyAPI_FUNC(PyObject *)
PyRun_String(const char *str, int s, PyObject *g, PyObject *l)
{
    return PyRun_StringFlags(str, s, g, l, NULL);
}

#undef PyRun_SimpleString
PyAPI_FUNC(int)
PyRun_SimpleString(const char *s)
{
    return PyRun_SimpleStringFlags(s, NULL);
}

#undef Py_CompileString
PyAPI_FUNC(PyObject *)
Py_CompileString(const char *str, const char *p, int s)
{
    return Py_CompileStringExFlags(str, p, s, NULL, -1);
}

#undef Py_CompileStringFlags
PyAPI_FUNC(PyObject *)
Py_CompileStringFlags(const char *str, const char *p, int s,
                      PyCompilerFlags *flags)
{
    return Py_CompileStringExFlags(str, p, s, flags, -1);
}

#undef PyRun_InteractiveOne
PyAPI_FUNC(int)
PyRun_InteractiveOne(FILE *f, const char *p)
{
    return PyRun_InteractiveOneFlags(f, p, NULL);
}

#undef PyRun_InteractiveLoop
PyAPI_FUNC(int)
PyRun_InteractiveLoop(FILE *f, const char *p)
{
    return PyRun_InteractiveLoopFlags(f, p, NULL);
}

#ifdef __cplusplus
}
#endif
/* The type of callback that this is. */ } ScriptLimitCallbackKey; /* * TIP#143 limit handler internal representation. */ struct LimitHandler { int flags; /* The state of this particular handler. */ Tcl_LimitHandlerProc *handlerProc; /* The handler callback. */ ClientData clientData; /* Opaque argument to the handler callback. */ Tcl_LimitHandlerDeleteProc *deleteProc; /* How to delete the clientData. */ LimitHandler *prevPtr; /* Previous item in linked list of * handlers. */ LimitHandler *nextPtr; /* Next item in linked list of handlers. */ }; /* * Values for the LimitHandler flags field. * LIMIT_HANDLER_ACTIVE - Whether the handler is currently being * processed; handlers are never to be entered reentrantly. * LIMIT_HANDLER_DELETED - Whether the handler has been deleted. This * should not normally be observed because when a handler is * deleted it is also spliced out of the list of handlers, but * even so we will be careful. */ #define LIMIT_HANDLER_ACTIVE 0x01 #define LIMIT_HANDLER_DELETED 0x02 /* * Prototypes for local static functions: */ static int AliasCreate(Tcl_Interp *interp, Tcl_Interp *slaveInterp, Tcl_Interp *masterInterp, Tcl_Obj *namePtr, Tcl_Obj *targetPtr, int objc, Tcl_Obj *const objv[]); static int AliasDelete(Tcl_Interp *interp, Tcl_Interp *slaveInterp, Tcl_Obj *namePtr); static int AliasDescribe(Tcl_Interp *interp, Tcl_Interp *slaveInterp, Tcl_Obj *objPtr); static int AliasList(Tcl_Interp *interp, Tcl_Interp *slaveInterp); static int AliasObjCmd(ClientData dummy, Tcl_Interp *currentInterp, int objc, Tcl_Obj *const objv[]); static int AliasNRCmd(ClientData dummy, Tcl_Interp *currentInterp, int objc, Tcl_Obj *const objv[]); static void AliasObjCmdDeleteProc(ClientData clientData); static Tcl_Interp * GetInterp(Tcl_Interp *interp, Tcl_Obj *pathPtr); static Tcl_Interp * GetInterp2(Tcl_Interp *interp, int objc, Tcl_Obj *const objv[]); static void InterpInfoDeleteProc(ClientData clientData, Tcl_Interp *interp); static int SlaveBgerror(Tcl_Interp *interp, Tcl_Interp *slaveInterp, int objc, Tcl_Obj *const objv[]); static Tcl_Interp * SlaveCreate(Tcl_Interp *interp, Tcl_Obj *pathPtr, int safe); static int SlaveDebugCmd(Tcl_Interp *interp, Tcl_Interp *slaveInterp, int objc, Tcl_Obj *const objv[]); static int SlaveEval(Tcl_Interp *interp, Tcl_Interp *slaveInterp, int objc, Tcl_Obj *const objv[]); static int SlaveExpose(Tcl_Interp *interp, Tcl_Interp *slaveInterp, int objc, Tcl_Obj *const objv[]); static int SlaveHide(Tcl_Interp *interp, Tcl_Interp *slaveInterp, int objc, Tcl_Obj *const objv[]); static int SlaveHidden(Tcl_Interp *interp, Tcl_Interp *slaveInterp); static int SlaveInvokeHidden(Tcl_Interp *interp, Tcl_Interp *slaveInterp, const char *namespaceName, int objc, Tcl_Obj *const objv[]); static int SlaveMarkTrusted(Tcl_Interp *interp, Tcl_Interp *slaveInterp); static int SlaveObjCmd(ClientData dummy, Tcl_Interp *interp, int objc, Tcl_Obj *const objv[]); static void SlaveObjCmdDeleteProc(ClientData clientData); static int SlaveRecursionLimit(Tcl_Interp *interp, Tcl_Interp *slaveInterp, int objc, Tcl_Obj *const objv[]); static int SlaveCommandLimitCmd(Tcl_Interp *interp, Tcl_Interp *slaveInterp, int consumedObjc, int objc, Tcl_Obj *const objv[]); static int SlaveTimeLimitCmd(Tcl_Interp *interp, Tcl_Interp *slaveInterp, int consumedObjc, int objc, Tcl_Obj *const objv[]); static void InheritLimitsFromMaster(Tcl_Interp *slaveInterp, Tcl_Interp *masterInterp); static void SetScriptLimitCallback(Tcl_Interp *interp, int type, Tcl_Interp *targetInterp, Tcl_Obj *scriptObj); static void CallScriptLimitCallback(ClientData clientData, Tcl_Interp *interp); static void DeleteScriptLimitCallback(ClientData clientData); static void RunLimitHandlers(LimitHandler *handlerPtr, Tcl_Interp *interp); static void TimeLimitCallback(ClientData clientData); /* NRE enabling */ static Tcl_NRPostProc NRPostInvokeHidden; static Tcl_ObjCmdProc NRInterpCmd; static Tcl_ObjCmdProc NRSlaveCmd; /* *---------------------------------------------------------------------- * * TclSetPreInitScript -- * * This routine is used to change the value of the internal variable, * tclPreInitScript. * * Results: * Returns the current value of tclPreInitScript. * * Side effects: * Changes the way Tcl_Init() routine behaves. * *---------------------------------------------------------------------- */ const char * TclSetPreInitScript( const char *string) /* Pointer to a script. */ { const char *prevString = tclPreInitScript; tclPreInitScript = string; return(prevString); } /* *---------------------------------------------------------------------- * * Tcl_Init -- * * This function is typically invoked by Tcl_AppInit functions to find * and source the "init.tcl" script, which should exist somewhere on the * Tcl library path. * * Results: * Returns a standard Tcl completion code and sets the interp's result if * there is an error. * * Side effects: * Depends on what's in the init.tcl script. * *---------------------------------------------------------------------- */ int Tcl_Init( Tcl_Interp *interp) /* Interpreter to initialize. */ { if (tclPreInitScript != NULL) { if (Tcl_EvalEx(interp, tclPreInitScript, -1, 0) == TCL_ERROR) { return TCL_ERROR; } } /* * In order to find init.tcl during initialization, the following script * is invoked by Tcl_Init(). It looks in several different directories: * * $tcl_library - can specify a primary location, if set, no * other locations will be checked. This is the * recommended way for a program that embeds * Tcl to specifically tell Tcl where to find * an init.tcl file. * * $env(TCL_LIBRARY) - highest priority so user can always override * the search path unless the application has * specified an exact directory above * * $tclDefaultLibrary - INTERNAL: This variable is set by Tcl on * those platforms where it can determine at * runtime the directory where it expects the * init.tcl file to be. After [tclInit] reads * and uses this value, it [unset]s it. * External users of Tcl should not make use of * the variable to customize [tclInit]. * * $tcl_libPath - OBSOLETE: This variable is no longer set by * Tcl itself, but [tclInit] examines it in * case some program that embeds Tcl is * customizing [tclInit] by setting this * variable to a list of directories in which * to search. * * [tcl::pkgconfig get scriptdir,runtime] * - the directory determined by configure to be * the place where Tcl's script library is to * be installed. * * The first directory on this path that contains a valid init.tcl script * will be set as the value of tcl_library. * * Note that this entire search mechanism can be bypassed by defining an * alternate tclInit command before calling Tcl_Init(). */ return Tcl_EvalEx(interp, "if {[namespace which -command tclInit] eq \"\"} {\n" " proc tclInit {} {\n" " global tcl_libPath tcl_library env tclDefaultLibrary\n" " rename tclInit {}\n" " if {[info exists tcl_library]} {\n" " set scripts {{set tcl_library}}\n" " } else {\n" " set scripts {}\n" " if {[info exists env(TCL_LIBRARY)] && ($env(TCL_LIBRARY) ne {})} {\n" " lappend scripts {set env(TCL_LIBRARY)}\n" " lappend scripts {\n" "if {[regexp ^tcl(.*)$ [file tail $env(TCL_LIBRARY)] -> tail] == 0} continue\n" "if {$tail eq [info tclversion]} continue\n" "file join [file dirname $env(TCL_LIBRARY)] tcl[info tclversion]}\n" " }\n" " if {[info exists tclDefaultLibrary]} {\n" " lappend scripts {set tclDefaultLibrary}\n" " } else {\n" " lappend scripts {::tcl::pkgconfig get scriptdir,runtime}\n" " }\n" " lappend scripts {\n" "set parentDir [file dirname [file dirname [info nameofexecutable]]]\n" "set grandParentDir [file dirname $parentDir]\n" "file join $parentDir lib tcl[info tclversion]} \\\n" " {file join $grandParentDir lib tcl[info tclversion]} \\\n" " {file join $parentDir library} \\\n" " {file join $grandParentDir library} \\\n" " {file join $grandParentDir tcl[info patchlevel] library} \\\n" " {\n" "file join [file dirname $grandParentDir] tcl[info patchlevel] library}\n" " if {[info exists tcl_libPath]\n" " && [catch {llength $tcl_libPath} len] == 0} {\n" " for {set i 0} {$i < $len} {incr i} {\n" " lappend scripts [list lindex \\$tcl_libPath $i]\n" " }\n" " }\n" " }\n" " set dirs {}\n" " set errors {}\n" " foreach script $scripts {\n" " lappend dirs [eval $script]\n" " set tcl_library [lindex $dirs end]\n" " set tclfile [file join $tcl_library init.tcl]\n" " if {[file exists $tclfile]} {\n" " if {[catch {uplevel #0 [list source $tclfile]} msg opts]} {\n" " append errors \"$tclfile: $msg\n\"\n" " append errors \"[dict get $opts -errorinfo]\n\"\n" " continue\n" " }\n" " unset -nocomplain tclDefaultLibrary\n" " return\n" " }\n" " }\n" " unset -nocomplain tclDefaultLibrary\n" " set msg \"Can't find a usable init.tcl in the following directories: \n\"\n" " append msg \" $dirs\n\n\"\n" " append msg \"$errors\n\n\"\n" " append msg \"This probably means that Tcl wasn't installed properly.\n\"\n" " error $msg\n" " }\n" "}\n" "tclInit", -1, 0); } /* *--------------------------------------------------------------------------- * * TclInterpInit -- * * Initializes the invoking interpreter for using the master, slave and * safe interp facilities. This is called from inside Tcl_CreateInterp(). * * Results: * Always returns TCL_OK for backwards compatibility. * * Side effects: * Adds the "interp" command to an interpreter and initializes the * interpInfoPtr field of the invoking interpreter. * *--------------------------------------------------------------------------- */ int TclInterpInit( Tcl_Interp *interp) /* Interpreter to initialize. */ { InterpInfo *interpInfoPtr; Master *masterPtr; Slave *slavePtr; interpInfoPtr = ckalloc(sizeof(InterpInfo)); ((Interp *) interp)->interpInfo = interpInfoPtr; masterPtr = &interpInfoPtr->master; Tcl_InitHashTable(&masterPtr->slaveTable, TCL_STRING_KEYS); masterPtr->targetsPtr = NULL; slavePtr = &interpInfoPtr->slave; slavePtr->masterInterp = NULL; slavePtr->slaveEntryPtr = NULL; slavePtr->slaveInterp = interp; slavePtr->interpCmd = NULL; Tcl_InitHashTable(&slavePtr->aliasTable, TCL_STRING_KEYS); Tcl_NRCreateCommand(interp, "interp", Tcl_InterpObjCmd, NRInterpCmd, NULL, NULL); Tcl_CallWhenDeleted(interp, InterpInfoDeleteProc, NULL); return TCL_OK; } /* *--------------------------------------------------------------------------- * * InterpInfoDeleteProc -- * * Invoked when an interpreter is being deleted. It releases all storage * used by the master/slave/safe interpreter facilities. * * Results: * None. * * Side effects: * Cleans up storage. Sets the interpInfoPtr field of the interp to NULL. * *--------------------------------------------------------------------------- */ static void InterpInfoDeleteProc( ClientData clientData, /* Ignored. */ Tcl_Interp *interp) /* Interp being deleted. All commands for * slave interps should already be deleted. */ { InterpInfo *interpInfoPtr; Slave *slavePtr; Master *masterPtr; Target *targetPtr; interpInfoPtr = (InterpInfo *) ((Interp *) interp)->interpInfo; /* * There shouldn't be any commands left. */ masterPtr = &interpInfoPtr->master; if (masterPtr->slaveTable.numEntries != 0) { Tcl_Panic("InterpInfoDeleteProc: still exist commands"); } Tcl_DeleteHashTable(&masterPtr->slaveTable); /* * Tell any interps that have aliases to this interp that they should * delete those aliases. If the other interp was already dead, it would * have removed the target record already. */ for (targetPtr = masterPtr->targetsPtr; targetPtr != NULL; ) { Target *tmpPtr = targetPtr->nextPtr; Tcl_DeleteCommandFromToken(targetPtr->slaveInterp, targetPtr->slaveCmd); targetPtr = tmpPtr; } slavePtr = &interpInfoPtr->slave; if (slavePtr->interpCmd != NULL) { /* * Tcl_DeleteInterp() was called on this interpreter, rather "interp * delete" or the equivalent deletion of the command in the master. * First ensure that the cleanup callback doesn't try to delete the * interp again. */ slavePtr->slaveInterp = NULL; Tcl_DeleteCommandFromToken(slavePtr->masterInterp, slavePtr->interpCmd); } /* * There shouldn't be any aliases left. */ if (slavePtr->aliasTable.numEntries != 0) { Tcl_Panic("InterpInfoDeleteProc: still exist aliases"); } Tcl_DeleteHashTable(&slavePtr->aliasTable); ckfree(interpInfoPtr); } /* *---------------------------------------------------------------------- * * Tcl_InterpObjCmd -- * * This function is invoked to process the "interp" Tcl command. See the * user documentation for details on what it does. * * Results: * A standard Tcl result. * * Side effects: * See the user documentation. * *---------------------------------------------------------------------- */ /* ARGSUSED */ int Tcl_InterpObjCmd( ClientData clientData, /* Unused. */ Tcl_Interp *interp, /* Current interpreter. */ int objc, /* Number of arguments. */ Tcl_Obj *const objv[]) /* Argument objects. */ { return Tcl_NRCallObjProc(interp, NRInterpCmd, clientData, objc, objv); } static int NRInterpCmd( ClientData clientData, /* Unused. */ Tcl_Interp *interp, /* Current interpreter. */ int objc, /* Number of arguments. */ Tcl_Obj *const objv[]) /* Argument objects. */ { Tcl_Interp *slaveInterp; int index; static const char *const options[] = { "alias", "aliases", "bgerror", "cancel", "create", "debug", "delete", "eval", "exists", "expose", "hide", "hidden", "issafe", "invokehidden", "limit", "marktrusted", "recursionlimit", "slaves", "share", "target", "transfer", NULL }; enum option { OPT_ALIAS, OPT_ALIASES, OPT_BGERROR, OPT_CANCEL, OPT_CREATE, OPT_DEBUG, OPT_DELETE, OPT_EVAL, OPT_EXISTS, OPT_EXPOSE, OPT_HIDE, OPT_HIDDEN, OPT_ISSAFE, OPT_INVOKEHID, OPT_LIMIT, OPT_MARKTRUSTED,OPT_RECLIMIT, OPT_SLAVES, OPT_SHARE, OPT_TARGET, OPT_TRANSFER }; if (objc < 2) { Tcl_WrongNumArgs(interp, 1, objv, "cmd ?arg ...?"); return TCL_ERROR; } if (Tcl_GetIndexFromObj(interp, objv[1], options, "option", 0, &index) != TCL_OK) { return TCL_ERROR; } switch ((enum option) index) { case OPT_ALIAS: { Tcl_Interp *masterInterp; if (objc < 4) { aliasArgs: Tcl_WrongNumArgs(interp, 2, objv, "slavePath slaveCmd ?masterPath masterCmd? ?arg ...?"); return TCL_ERROR; } slaveInterp = GetInterp(interp, objv[2]); if (slaveInterp == NULL) { return TCL_ERROR; } if (objc == 4) { return AliasDescribe(interp, slaveInterp, objv[3]); } if ((objc == 5) && (TclGetString(objv[4])[0] == '\0')) { return AliasDelete(interp, slaveInterp, objv[3]); } if (objc > 5) { masterInterp = GetInterp(interp, objv[4]); if (masterInterp == NULL) { return TCL_ERROR; } if (TclGetString(objv[5])[0] == '\0') { if (objc == 6) { return AliasDelete(interp, slaveInterp, objv[3]); } } else { return AliasCreate(interp, slaveInterp, masterInterp, objv[3], objv[5], objc - 6, objv + 6); } } goto aliasArgs; } case OPT_ALIASES: slaveInterp = GetInterp2(interp, objc, objv); if (slaveInterp == NULL) { return TCL_ERROR; } return AliasList(interp, slaveInterp); case OPT_BGERROR: if (objc != 3 && objc != 4) { Tcl_WrongNumArgs(interp, 2, objv, "path ?cmdPrefix?"); return TCL_ERROR; } slaveInterp = GetInterp(interp, objv[2]); if (slaveInterp == NULL) { return TCL_ERROR; } return SlaveBgerror(interp, slaveInterp, objc - 3, objv + 3); case OPT_CANCEL: { int i, flags; Tcl_Obj *resultObjPtr; static const char *const cancelOptions[] = { "-unwind", "--", NULL }; enum option { OPT_UNWIND, OPT_LAST }; flags = 0; for (i = 2; i < objc; i++) { if (TclGetString(objv[i])[0] != '-') { break; } if (Tcl_GetIndexFromObj(interp, objv[i], cancelOptions, "option", 0, &index) != TCL_OK) { return TCL_ERROR; } switch ((enum option) index) { case OPT_UNWIND: /* * The evaluation stack in the target interp is to be unwound. */ flags |= TCL_CANCEL_UNWIND; break; case OPT_LAST: i++; goto endOfForLoop; } } endOfForLoop: if (i < objc - 2) { Tcl_WrongNumArgs(interp, 2, objv, "?-unwind? ?--? ?path? ?result?"); return TCL_ERROR; } /* * Did they specify a slave interp to cancel the script in progress * in? If not, use the current interp. */ if (i < objc) { slaveInterp = GetInterp(interp, objv[i]); if (slaveInterp == NULL) { return TCL_ERROR; } i++; } else { slaveInterp = interp; } if (i < objc) { resultObjPtr = objv[i]; /* * Tcl_CancelEval removes this reference. */ Tcl_IncrRefCount(resultObjPtr); i++; } else { resultObjPtr = NULL; } return Tcl_CancelEval(slaveInterp, resultObjPtr, 0, flags); } case OPT_CREATE: { int i, last, safe; Tcl_Obj *slavePtr; char buf[16 + TCL_INTEGER_SPACE]; static const char *const createOptions[] = { "-safe", "--", NULL }; enum option { OPT_SAFE, OPT_LAST }; safe = Tcl_IsSafe(interp); /* * Weird historical rules: "-safe" is accepted at the end, too. */ slavePtr = NULL; last = 0; for (i = 2; i < objc; i++) { if ((last == 0) && (Tcl_GetString(objv[i])[0] == '-')) { if (Tcl_GetIndexFromObj(interp, objv[i], createOptions, "option", 0, &index) != TCL_OK) { return TCL_ERROR; } if (index == OPT_SAFE) { safe = 1; continue; } i++; last = 1; } if (slavePtr != NULL) { Tcl_WrongNumArgs(interp, 2, objv, "?-safe? ?--? ?path?"); return TCL_ERROR; } if (i < objc) { slavePtr = objv[i]; } } buf[0] = '\0'; if (slavePtr == NULL) { /* * Create an anonymous interpreter -- we choose its name and the * name of the command. We check that the command name that we use * for the interpreter does not collide with an existing command * in the master interpreter. */ for (i = 0; ; i++) { Tcl_CmdInfo cmdInfo; sprintf(buf, "interp%d", i); if (Tcl_GetCommandInfo(interp, buf, &cmdInfo) == 0) { break; } } slavePtr = Tcl_NewStringObj(buf, -1); } if (SlaveCreate(interp, slavePtr, safe) == NULL) { if (buf[0] != '\0') { Tcl_DecrRefCount(slavePtr); } return TCL_ERROR; } Tcl_SetObjResult(interp, slavePtr); return TCL_OK; } case OPT_DEBUG: /* TIP #378 */ /* * Currently only -frame supported, otherwise ?-option ?value?? */ if (objc < 3 || objc > 5) { Tcl_WrongNumArgs(interp, 2, objv, "path ?-frame ?bool??"); return TCL_ERROR; } slaveInterp = GetInterp(interp, objv[2]); if (slaveInterp == NULL) { return TCL_ERROR; } return SlaveDebugCmd(interp, slaveInterp, objc - 3, objv + 3); case OPT_DELETE: { int i; InterpInfo *iiPtr; for (i = 2; i < objc; i++) { slaveInterp = GetInterp(interp, objv[i]); if (slaveInterp == NULL) { return TCL_ERROR; } else if (slaveInterp == interp) { Tcl_SetObjResult(interp, Tcl_NewStringObj( "cannot delete the current interpreter", -1)); Tcl_SetErrorCode(interp, "TCL", "OPERATION", "INTERP", "DELETESELF", NULL); return TCL_ERROR; } iiPtr = (InterpInfo *) ((Interp *) slaveInterp)->interpInfo; Tcl_DeleteCommandFromToken(iiPtr->slave.masterInterp, iiPtr->slave.interpCmd); } return TCL_OK; } case OPT_EVAL: if (objc < 4) { Tcl_WrongNumArgs(interp, 2, objv, "path arg ?arg ...?"); return TCL_ERROR; } slaveInterp = GetInterp(interp, objv[2]); if (slaveInterp == NULL) { return TCL_ERROR; } return SlaveEval(interp, slaveInterp, objc - 3, objv + 3); case OPT_EXISTS: { int exists = 1; slaveInterp = GetInterp2(interp, objc, objv); if (slaveInterp == NULL) { if (objc > 3) { return TCL_ERROR; } Tcl_ResetResult(interp); exists = 0; } Tcl_SetObjResult(interp, Tcl_NewBooleanObj(exists)); return TCL_OK; } case OPT_EXPOSE: if ((objc < 4) || (objc > 5)) { Tcl_WrongNumArgs(interp, 2, objv, "path hiddenCmdName ?cmdName?"); return TCL_ERROR; } slaveInterp = GetInterp(interp, objv[2]); if (slaveInterp == NULL) { return TCL_ERROR; } return SlaveExpose(interp, slaveInterp, objc - 3, objv + 3); case OPT_HIDE: if ((objc < 4) || (objc > 5)) { Tcl_WrongNumArgs(interp, 2, objv, "path cmdName ?hiddenCmdName?"); return TCL_ERROR; } slaveInterp = GetInterp(interp, objv[2]); if (slaveInterp == NULL) { return TCL_ERROR; } return SlaveHide(interp, slaveInterp, objc - 3, objv + 3); case OPT_HIDDEN: slaveInterp = GetInterp2(interp, objc, objv); if (slaveInterp == NULL) { return TCL_ERROR; } return SlaveHidden(interp, slaveInterp); case OPT_ISSAFE: slaveInterp = GetInterp2(interp, objc, objv); if (slaveInterp == NULL) { return TCL_ERROR; } Tcl_SetObjResult(interp, Tcl_NewBooleanObj(Tcl_IsSafe(slaveInterp))); return TCL_OK; case OPT_INVOKEHID: { int i; const char *namespaceName; static const char *const hiddenOptions[] = { "-global", "-namespace", "--", NULL }; enum hiddenOption { OPT_GLOBAL, OPT_NAMESPACE, OPT_LAST }; namespaceName = NULL; for (i = 3; i < objc; i++) { if (TclGetString(objv[i])[0] != '-') { break; } if (Tcl_GetIndexFromObj(interp, objv[i], hiddenOptions, "option", 0, &index) != TCL_OK) { return TCL_ERROR; } if (index == OPT_GLOBAL) { namespaceName = "::"; } else if (index == OPT_NAMESPACE) { if (++i == objc) { /* There must be more arguments. */ break; } else { namespaceName = TclGetString(objv[i]); } } else { i++; break; } } if (objc - i < 1) { Tcl_WrongNumArgs(interp, 2, objv, "path ?-namespace ns? ?-global? ?--? cmd ?arg ..?"); return TCL_ERROR; } slaveInterp = GetInterp(interp, objv[2]); if (slaveInterp == NULL) { return TCL_ERROR; } return SlaveInvokeHidden(interp, slaveInterp, namespaceName, objc - i, objv + i); } case OPT_LIMIT: { static const char *const limitTypes[] = { "commands", "time", NULL }; enum LimitTypes { LIMIT_TYPE_COMMANDS, LIMIT_TYPE_TIME }; int limitType; if (objc < 4) { Tcl_WrongNumArgs(interp, 2, objv, "path limitType ?-option value ...?"); return TCL_ERROR; } slaveInterp = GetInterp(interp, objv[2]); if (slaveInterp == NULL) { return TCL_ERROR; } if (Tcl_GetIndexFromObj(interp, objv[3], limitTypes, "limit type", 0, &limitType) != TCL_OK) { return TCL_ERROR; } switch ((enum LimitTypes) limitType) { case LIMIT_TYPE_COMMANDS: return SlaveCommandLimitCmd(interp, slaveInterp, 4, objc,objv); case LIMIT_TYPE_TIME: return SlaveTimeLimitCmd(interp, slaveInterp, 4, objc, objv); } } case OPT_MARKTRUSTED: if (objc != 3) { Tcl_WrongNumArgs(interp, 2, objv, "path"); return TCL_ERROR; } slaveInterp = GetInterp(interp, objv[2]); if (slaveInterp == NULL) { return TCL_ERROR; } return SlaveMarkTrusted(interp, slaveInterp); case OPT_RECLIMIT: if (objc != 3 && objc != 4) { Tcl_WrongNumArgs(interp, 2, objv, "path ?newlimit?"); return TCL_ERROR; } slaveInterp = GetInterp(interp, objv[2]); if (slaveInterp == NULL) { return TCL_ERROR; } return SlaveRecursionLimit(interp, slaveInterp, objc - 3, objv + 3); case OPT_SLAVES: { InterpInfo *iiPtr; Tcl_Obj *resultPtr; Tcl_HashEntry *hPtr; Tcl_HashSearch hashSearch; char *string; slaveInterp = GetInterp2(interp, objc, objv); if (slaveInterp == NULL) { return TCL_ERROR; } iiPtr = (InterpInfo *) ((Interp *) slaveInterp)->interpInfo; resultPtr = Tcl_NewObj(); hPtr = Tcl_FirstHashEntry(&iiPtr->master.slaveTable, &hashSearch); for ( ; hPtr != NULL; hPtr = Tcl_NextHashEntry(&hashSearch)) { string = Tcl_GetHashKey(&iiPtr->master.slaveTable, hPtr); Tcl_ListObjAppendElement(NULL, resultPtr, Tcl_NewStringObj(string, -1)); } Tcl_SetObjResult(interp, resultPtr); return TCL_OK; } case OPT_TRANSFER: case OPT_SHARE: { Tcl_Interp *masterInterp; /* The master of the slave. */ Tcl_Channel chan; if (objc != 5) { Tcl_WrongNumArgs(interp, 2, objv, "srcPath channelId destPath"); return TCL_ERROR; } masterInterp = GetInterp(interp, objv[2]); if (masterInterp == NULL) { return TCL_ERROR; } chan = Tcl_GetChannel(masterInterp, TclGetString(objv[3]), NULL); if (chan == NULL) { Tcl_TransferResult(masterInterp, TCL_OK, interp); return TCL_ERROR; } slaveInterp = GetInterp(interp, objv[4]); if (slaveInterp == NULL) { return TCL_ERROR; } Tcl_RegisterChannel(slaveInterp, chan); if (index == OPT_TRANSFER) { /* * When transferring, as opposed to sharing, we must unhitch the * channel from the interpreter where it started. */ if (Tcl_UnregisterChannel(masterInterp, chan) != TCL_OK) { Tcl_TransferResult(masterInterp, TCL_OK, interp); return TCL_ERROR; } } return TCL_OK; } case OPT_TARGET: { InterpInfo *iiPtr; Tcl_HashEntry *hPtr; Alias *aliasPtr; const char *aliasName; if (objc != 4) { Tcl_WrongNumArgs(interp, 2, objv, "path alias"); return TCL_ERROR; } slaveInterp = GetInterp(interp, objv[2]); if (slaveInterp == NULL) { return TCL_ERROR; } aliasName = TclGetString(objv[3]); iiPtr = (InterpInfo *) ((Interp *) slaveInterp)->interpInfo; hPtr = Tcl_FindHashEntry(&iiPtr->slave.aliasTable, aliasName); if (hPtr == NULL) { Tcl_SetObjResult(interp, Tcl_ObjPrintf( "alias \"%s\" in path \"%s\" not found", aliasName, Tcl_GetString(objv[2]))); Tcl_SetErrorCode(interp, "TCL", "LOOKUP", "ALIAS", aliasName, NULL); return TCL_ERROR; } aliasPtr = Tcl_GetHashValue(hPtr); if (Tcl_GetInterpPath(interp, aliasPtr->targetInterp) != TCL_OK) { Tcl_SetObjResult(interp, Tcl_ObjPrintf( "target interpreter for alias \"%s\" in path \"%s\" is " "not my descendant", aliasName, Tcl_GetString(objv[2]))); Tcl_SetErrorCode(interp, "TCL", "OPERATION", "INTERP", "TARGETSHROUDED", NULL); return TCL_ERROR; } return TCL_OK; } } return TCL_OK; } /* *--------------------------------------------------------------------------- * * GetInterp2 -- * * Helper function for Tcl_InterpObjCmd() to convert the interp name * potentially specified on the command line to an Tcl_Interp. * * Results: * The return value is the interp specified on the command line, or the * interp argument itself if no interp was specified on the command line. * If the interp could not be found or the wrong number of arguments was * specified on the command line, the return value is NULL and an error * message is left in the interp's result. * * Side effects: * None. * *--------------------------------------------------------------------------- */ static Tcl_Interp * GetInterp2( Tcl_Interp *interp, /* Default interp if no interp was specified * on the command line. */ int objc, /* Number of arguments. */ Tcl_Obj *const objv[]) /* Argument objects. */ { if (objc == 2) { return interp; } else if (objc == 3) { return GetInterp(interp, objv[2]); } else { Tcl_WrongNumArgs(interp, 2, objv, "?path?"); return NULL; } } /* *---------------------------------------------------------------------- * * Tcl_CreateAlias -- * * Creates an alias between two interpreters. * * Results: * A standard Tcl result. * * Side effects: * Creates a new alias, manipulates the result field of slaveInterp. * *---------------------------------------------------------------------- */ int Tcl_CreateAlias( Tcl_Interp *slaveInterp, /* Interpreter for source command. */ const char *slaveCmd, /* Command to install in slave. */ Tcl_Interp *targetInterp, /* Interpreter for target command. */ const char *targetCmd, /* Name of target command. */ int argc, /* How many additional arguments? */ const char *const *argv) /* These are the additional args. */ { Tcl_Obj *slaveObjPtr, *targetObjPtr; Tcl_Obj **objv; int i; int result; objv = TclStackAlloc(slaveInterp, (unsigned) sizeof(Tcl_Obj *) * argc); for (i = 0; i < argc; i++) { objv[i] = Tcl_NewStringObj(argv[i], -1); Tcl_IncrRefCount(objv[i]); } slaveObjPtr = Tcl_NewStringObj(slaveCmd, -1); Tcl_IncrRefCount(slaveObjPtr); targetObjPtr = Tcl_NewStringObj(targetCmd, -1); Tcl_IncrRefCount(targetObjPtr); result = AliasCreate(slaveInterp, slaveInterp, targetInterp, slaveObjPtr, targetObjPtr, argc, objv); for (i = 0; i < argc; i++) { Tcl_DecrRefCount(objv[i]); } TclStackFree(slaveInterp, objv); Tcl_DecrRefCount(targetObjPtr); Tcl_DecrRefCount(slaveObjPtr); return result; } /* *---------------------------------------------------------------------- * * Tcl_CreateAliasObj -- * * Object version: Creates an alias between two interpreters. * * Results: * A standard Tcl result. * * Side effects: * Creates a new alias. * *---------------------------------------------------------------------- */ int Tcl_CreateAliasObj( Tcl_Interp *slaveInterp, /* Interpreter for source command. */ const char *slaveCmd, /* Command to install in slave. */ Tcl_Interp *targetInterp, /* Interpreter for target command. */ const char *targetCmd, /* Name of target command. */ int objc, /* How many additional arguments? */ Tcl_Obj *const objv[]) /* Argument vector. */ { Tcl_Obj *slaveObjPtr, *targetObjPtr; int result; slaveObjPtr = Tcl_NewStringObj(slaveCmd, -1); Tcl_IncrRefCount(slaveObjPtr); targetObjPtr = Tcl_NewStringObj(targetCmd, -1); Tcl_IncrRefCount(targetObjPtr); result = AliasCreate(slaveInterp, slaveInterp, targetInterp, slaveObjPtr, targetObjPtr, objc, objv); Tcl_DecrRefCount(slaveObjPtr); Tcl_DecrRefCount(targetObjPtr); return result; } /* *---------------------------------------------------------------------- * * Tcl_GetAlias -- * * Gets information about an alias. * * Results: * A standard Tcl result. * * Side effects: * None. * *---------------------------------------------------------------------- */ int Tcl_GetAlias( Tcl_Interp *interp, /* Interp to start search from. */ const char *aliasName, /* Name of alias to find. */ Tcl_Interp **targetInterpPtr, /* (Return) target interpreter. */ const char **targetNamePtr, /* (Return) name of target command. */ int *argcPtr, /* (Return) count of addnl args. */ const char ***argvPtr) /* (Return) additional arguments. */ { InterpInfo *iiPtr = (InterpInfo *) ((Interp *) interp)->interpInfo; Tcl_HashEntry *hPtr; Alias *aliasPtr; int i, objc; Tcl_Obj **objv; hPtr = Tcl_FindHashEntry(&iiPtr->slave.aliasTable, aliasName); if (hPtr == NULL) { Tcl_SetObjResult(interp, Tcl_ObjPrintf( "alias \"%s\" not found", aliasName)); Tcl_SetErrorCode(interp, "TCL", "LOOKUP", "ALIAS", aliasName, NULL); return TCL_ERROR; } aliasPtr = Tcl_GetHashValue(hPtr); objc = aliasPtr->objc; objv = &aliasPtr->objPtr; if (targetInterpPtr != NULL) { *targetInterpPtr = aliasPtr->targetInterp; } if (targetNamePtr != NULL) { *targetNamePtr = TclGetString(objv[0]); } if (argcPtr != NULL) { *argcPtr = objc - 1; } if (argvPtr != NULL) { *argvPtr = (const char **) ckalloc(sizeof(const char *) * (objc - 1)); for (i = 1; i < objc; i++) { (*argvPtr)[i - 1] = TclGetString(objv[i]); } } return TCL_OK; } /* *---------------------------------------------------------------------- * * Tcl_GetAliasObj -- * * Object version: Gets information about an alias. * * Results: * A standard Tcl result. * * Side effects: * None. * *---------------------------------------------------------------------- */ int Tcl_GetAliasObj( Tcl_Interp *interp, /* Interp to start search from. */ const char *aliasName, /* Name of alias to find. */ Tcl_Interp **targetInterpPtr, /* (Return) target interpreter. */ const char **targetNamePtr, /* (Return) name of target command. */ int *objcPtr, /* (Return) count of addnl args. */ Tcl_Obj ***objvPtr) /* (Return) additional args. */ { InterpInfo *iiPtr = (InterpInfo *) ((Interp *) interp)->interpInfo; Tcl_HashEntry *hPtr; Alias *aliasPtr; int objc; Tcl_Obj **objv; hPtr = Tcl_FindHashEntry(&iiPtr->slave.aliasTable, aliasName); if (hPtr == NULL) { Tcl_SetObjResult(interp, Tcl_ObjPrintf( "alias \"%s\" not found", aliasName)); Tcl_SetErrorCode(interp, "TCL", "LOOKUP", "ALIAS", aliasName, NULL); return TCL_ERROR; } aliasPtr = Tcl_GetHashValue(hPtr); objc = aliasPtr->objc; objv = &aliasPtr->objPtr; if (targetInterpPtr != NULL) { *targetInterpPtr = aliasPtr->targetInterp; } if (targetNamePtr != NULL) { *targetNamePtr = TclGetString(objv[0]); } if (objcPtr != NULL) { *objcPtr = objc - 1; } if (objvPtr != NULL) { *objvPtr = objv + 1; } return TCL_OK; } /* *---------------------------------------------------------------------- * * TclPreventAliasLoop -- * * When defining an alias or renaming a command, prevent an alias loop * from being formed. * * Results: * A standard Tcl object result. * * Side effects: * If TCL_ERROR is returned, the function also stores an error message in * the interpreter's result object. * * NOTE: * This function is public internal (instead of being static to this * file) because it is also used from TclRenameCommand. * *---------------------------------------------------------------------- */ int TclPreventAliasLoop( Tcl_Interp *interp, /* Interp in which to report errors. */ Tcl_Interp *cmdInterp, /* Interp in which the command is being * defined. */ Tcl_Command cmd) /* Tcl command we are attempting to define. */ { Command *cmdPtr = (Command *) cmd; Alias *aliasPtr, *nextAliasPtr; Tcl_Command aliasCmd; Command *aliasCmdPtr; /* * If we are not creating or renaming an alias, then it is always OK to * create or rename the command. */ if (cmdPtr->objProc != AliasObjCmd) { return TCL_OK; } /* * OK, we are dealing with an alias, so traverse the chain of aliases. If * we encounter the alias we are defining (or renaming to) any in the * chain then we have a loop. */ aliasPtr = cmdPtr->objClientData; nextAliasPtr = aliasPtr; while (1) { Tcl_Obj *cmdNamePtr; /* * If the target of the next alias in the chain is the same as the * source alias, we have a loop. */ if (Tcl_InterpDeleted(nextAliasPtr->targetInterp)) { /* * The slave interpreter can be deleted while creating the alias. * [Bug #641195] */ Tcl_SetObjResult(interp, Tcl_ObjPrintf( "cannot define or rename alias \"%s\": interpreter deleted", Tcl_GetCommandName(cmdInterp, cmd))); return TCL_ERROR; } cmdNamePtr = nextAliasPtr->objPtr; aliasCmd = Tcl_FindCommand(nextAliasPtr->targetInterp, TclGetString(cmdNamePtr), Tcl_GetGlobalNamespace(nextAliasPtr->targetInterp), /*flags*/ 0); if (aliasCmd == NULL) { return TCL_OK; } aliasCmdPtr = (Command *) aliasCmd; if (aliasCmdPtr == cmdPtr) { Tcl_SetObjResult(interp, Tcl_ObjPrintf( "cannot define or rename alias \"%s\": would create a loop", Tcl_GetCommandName(cmdInterp, cmd))); Tcl_SetErrorCode(interp, "TCL", "OPERATION", "INTERP", "ALIASLOOP", NULL); return TCL_ERROR; } /* * Otherwise, follow the chain one step further. See if the target * command is an alias - if so, follow the loop to its target command. * Otherwise we do not have a loop. */ if (aliasCmdPtr->objProc != AliasObjCmd) { return TCL_OK; } nextAliasPtr = aliasCmdPtr->objClientData; } /* NOTREACHED */ } /* *---------------------------------------------------------------------- * * AliasCreate -- * * Helper function to do the work to actually create an alias. * * Results: * A standard Tcl result. * * Side effects: * An alias command is created and entered into the alias table for the * slave interpreter. * *---------------------------------------------------------------------- */ static int AliasCreate( Tcl_Interp *interp, /* Interp for error reporting. */ Tcl_Interp *slaveInterp, /* Interp where alias cmd will live or from * which alias will be deleted. */ Tcl_Interp *masterInterp, /* Interp in which target command will be * invoked. */ Tcl_Obj *namePtr, /* Name of alias cmd. */ Tcl_Obj *targetNamePtr, /* Name of target cmd. */ int objc, /* Additional arguments to store */ Tcl_Obj *const objv[]) /* with alias. */ { Alias *aliasPtr; Tcl_HashEntry *hPtr; Target *targetPtr; Slave *slavePtr; Master *masterPtr; Tcl_Obj **prefv; int isNew, i; aliasPtr = ckalloc(sizeof(Alias) + objc * sizeof(Tcl_Obj *)); aliasPtr->token = namePtr; Tcl_IncrRefCount(aliasPtr->token); aliasPtr->targetInterp = masterInterp; aliasPtr->objc = objc + 1; prefv = &aliasPtr->objPtr; *prefv = targetNamePtr; Tcl_IncrRefCount(targetNamePtr); for (i = 0; i < objc; i++) { *(++prefv) = objv[i]; Tcl_IncrRefCount(objv[i]); } Tcl_Preserve(slaveInterp); Tcl_Preserve(masterInterp); if (slaveInterp == masterInterp) { aliasPtr->slaveCmd = Tcl_NRCreateCommand(slaveInterp, TclGetString(namePtr), AliasObjCmd, AliasNRCmd, aliasPtr, AliasObjCmdDeleteProc); } else { aliasPtr->slaveCmd = Tcl_CreateObjCommand(slaveInterp, TclGetString(namePtr), AliasObjCmd, aliasPtr, AliasObjCmdDeleteProc); } if (TclPreventAliasLoop(interp, slaveInterp, aliasPtr->slaveCmd) != TCL_OK) { /* * Found an alias loop! The last call to Tcl_CreateObjCommand made the * alias point to itself. Delete the command and its alias record. Be * careful to wipe out its client data first, so the command doesn't * try to delete itself. */ Command *cmdPtr; Tcl_DecrRefCount(aliasPtr->token); Tcl_DecrRefCount(targetNamePtr); for (i = 0; i < objc; i++) { Tcl_DecrRefCount(objv[i]); } cmdPtr = (Command *) aliasPtr->slaveCmd; cmdPtr->clientData = NULL; cmdPtr->deleteProc = NULL; cmdPtr->deleteData = NULL; Tcl_DeleteCommandFromToken(slaveInterp, aliasPtr->slaveCmd); ckfree(aliasPtr); /* * The result was already set by TclPreventAliasLoop. */ Tcl_Release(slaveInterp); Tcl_Release(masterInterp); return TCL_ERROR; } /* * Make an entry in the alias table. If it already exists, retry. */ slavePtr = &((InterpInfo *) ((Interp *) slaveInterp)->interpInfo)->slave; while (1) { Tcl_Obj *newToken; const char *string; string = TclGetString(aliasPtr->token); hPtr = Tcl_CreateHashEntry(&slavePtr->aliasTable, string, &isNew); if (isNew != 0) { break; } /* * The alias name cannot be used as unique token, it is already taken. * We can produce a unique token by prepending "::" repeatedly. This * algorithm is a stop-gap to try to maintain the command name as * token for most use cases, fearful of possible backwards compat * problems. A better algorithm would produce unique tokens that need * not be related to the command name. * * ATTENTION: the tests in interp.test and possibly safe.test depend * on the precise definition of these tokens. */ TclNewLiteralStringObj(newToken, "::"); Tcl_AppendObjToObj(newToken, aliasPtr->token); Tcl_DecrRefCount(aliasPtr->token); aliasPtr->token = newToken; Tcl_IncrRefCount(aliasPtr->token); } aliasPtr->aliasEntryPtr = hPtr; Tcl_SetHashValue(hPtr, aliasPtr); /* * Create the new command. We must do it after deleting any old command, * because the alias may be pointing at a renamed alias, as in: * * interp alias {} foo {} bar # Create an alias "foo" * rename foo zop # Now rename the alias * interp alias {} foo {} zop # Now recreate "foo"... */ targetPtr = ckalloc(sizeof(Target)); targetPtr->slaveCmd = aliasPtr->slaveCmd; targetPtr->slaveInterp = slaveInterp; masterPtr = &((InterpInfo*) ((Interp*) masterInterp)->interpInfo)->master; targetPtr->nextPtr = masterPtr->targetsPtr; targetPtr->prevPtr = NULL; if (masterPtr->targetsPtr != NULL) { masterPtr->targetsPtr->prevPtr = targetPtr; } masterPtr->targetsPtr = targetPtr; aliasPtr->targetPtr = targetPtr; Tcl_SetObjResult(interp, aliasPtr->token); Tcl_Release(slaveInterp); Tcl_Release(masterInterp); return TCL_OK; } /* *---------------------------------------------------------------------- * * AliasDelete -- * * Deletes the given alias from the slave interpreter given. * * Results: * A standard Tcl result. * * Side effects: * Deletes the alias from the slave interpreter. * *---------------------------------------------------------------------- */ static int AliasDelete( Tcl_Interp *interp, /* Interpreter for result & errors. */ Tcl_Interp *slaveInterp, /* Interpreter containing alias. */ Tcl_Obj *namePtr) /* Name of alias to delete. */ { Slave *slavePtr; Alias *aliasPtr; Tcl_HashEntry *hPtr; /* * If the alias has been renamed in the slave, the master can still use * the original name (with which it was created) to find the alias to * delete it. */ slavePtr = &((InterpInfo *) ((Interp *) slaveInterp)->interpInfo)->slave; hPtr = Tcl_FindHashEntry(&slavePtr->aliasTable, TclGetString(namePtr)); if (hPtr == NULL) { Tcl_SetObjResult(interp, Tcl_ObjPrintf( "alias \"%s\" not found", TclGetString(namePtr))); Tcl_SetErrorCode(interp, "TCL", "LOOKUP", "ALIAS", TclGetString(namePtr), NULL); return TCL_ERROR; } aliasPtr = Tcl_GetHashValue(hPtr); Tcl_DeleteCommandFromToken(slaveInterp, aliasPtr->slaveCmd); return TCL_OK; } /* *---------------------------------------------------------------------- * * AliasDescribe -- * * Sets the interpreter's result object to a Tcl list describing the * given alias in the given interpreter: its target command and the * additional arguments to prepend to any invocation of the alias. * * Results: * A standard Tcl result. * * Side effects: * None. * *---------------------------------------------------------------------- */ static int AliasDescribe( Tcl_Interp *interp, /* Interpreter for result & errors. */ Tcl_Interp *slaveInterp, /* Interpreter containing alias. */ Tcl_Obj *namePtr) /* Name of alias to describe. */ { Slave *slavePtr; Tcl_HashEntry *hPtr; Alias *aliasPtr; Tcl_Obj *prefixPtr; /* * If the alias has been renamed in the slave, the master can still use * the original name (with which it was created) to find the alias to * describe it. */ slavePtr = &((InterpInfo *) ((Interp *) slaveInterp)->interpInfo)->slave; hPtr = Tcl_FindHashEntry(&slavePtr->aliasTable, Tcl_GetString(namePtr)); if (hPtr == NULL) { return TCL_OK; } aliasPtr = Tcl_GetHashValue(hPtr); prefixPtr = Tcl_NewListObj(aliasPtr->objc, &aliasPtr->objPtr); Tcl_SetObjResult(interp, prefixPtr); return TCL_OK; } /* *---------------------------------------------------------------------- * * AliasList -- * * Computes a list of aliases defined in a slave interpreter. * * Results: * A standard Tcl result. * * Side effects: * None. * *---------------------------------------------------------------------- */ static int AliasList( Tcl_Interp *interp, /* Interp for data return. */ Tcl_Interp *slaveInterp) /* Interp whose aliases to compute. */ { Tcl_HashEntry *entryPtr; Tcl_HashSearch hashSearch; Tcl_Obj *resultPtr = Tcl_NewObj(); Alias *aliasPtr; Slave *slavePtr; slavePtr = &((InterpInfo *) ((Interp *) slaveInterp)->interpInfo)->slave; entryPtr = Tcl_FirstHashEntry(&slavePtr->aliasTable, &hashSearch); for ( ; entryPtr != NULL; entryPtr = Tcl_NextHashEntry(&hashSearch)) { aliasPtr = Tcl_GetHashValue(entryPtr); Tcl_ListObjAppendElement(NULL, resultPtr, aliasPtr->token); } Tcl_SetObjResult(interp, resultPtr); return TCL_OK; } /* *---------------------------------------------------------------------- * * AliasObjCmd -- * * This is the function that services invocations of aliases in a slave * interpreter. One such command exists for each alias. When invoked, * this function redirects the invocation to the target command in the * master interpreter as designated by the Alias record associated with * this command. * * Results: * A standard Tcl result. * * Side effects: * Causes forwarding of the invocation; all possible side effects may * occur as a result of invoking the command to which the invocation is * forwarded. * *---------------------------------------------------------------------- */ static int AliasNRCmd( ClientData clientData, /* Alias record. */ Tcl_Interp *interp, /* Current interpreter. */ int objc, /* Number of arguments. */ Tcl_Obj *const objv[]) /* Argument vector. */ { Alias *aliasPtr = clientData; int prefc, cmdc, i; Tcl_Obj **prefv, **cmdv; Tcl_Obj *listPtr; List *listRep; int flags = TCL_EVAL_INVOKE; /* * Append the arguments to the command prefix and invoke the command in * the target interp's global namespace. */ prefc = aliasPtr->objc; prefv = &aliasPtr->objPtr; cmdc = prefc + objc - 1; listPtr = Tcl_NewListObj(cmdc, NULL); listRep = listPtr->internalRep.twoPtrValue.ptr1; listRep->elemCount = cmdc; cmdv = &listRep->elements; prefv = &aliasPtr->objPtr; memcpy(cmdv, prefv, (size_t) (prefc * sizeof(Tcl_Obj *))); memcpy(cmdv+prefc, objv+1, (size_t) ((objc-1) * sizeof(Tcl_Obj *))); for (i=0; i<cmdc; i++) { Tcl_IncrRefCount(cmdv[i]); } /* * Use the ensemble rewriting machinery to ensure correct error messages: * only the source command should show, not the full target prefix. */ if (TclInitRewriteEnsemble(interp, 1, prefc, objv)) { TclNRAddCallback(interp, TclClearRootEnsemble, NULL, NULL, NULL, NULL); } TclSkipTailcall(interp); return Tcl_NREvalObj(interp, listPtr, flags); } static int AliasObjCmd( ClientData clientData, /* Alias record. */ Tcl_Interp *interp, /* Current interpreter. */ int objc, /* Number of arguments. */ Tcl_Obj *const objv[]) /* Argument vector. */ { #define ALIAS_CMDV_PREALLOC 10 Alias *aliasPtr = clientData; Tcl_Interp *targetInterp = aliasPtr->targetInterp; int result, prefc, cmdc, i; Tcl_Obj **prefv, **cmdv; Tcl_Obj *cmdArr[ALIAS_CMDV_PREALLOC]; Interp *tPtr = (Interp *) targetInterp; int isRootEnsemble; /* * Append the arguments to the command prefix and invoke the command in * the target interp's global namespace. */ prefc = aliasPtr->objc; prefv = &aliasPtr->objPtr; cmdc = prefc + objc - 1; if (cmdc <= ALIAS_CMDV_PREALLOC) { cmdv = cmdArr; } else {