зеркало из https://github.com/mozilla/pjs.git
825 строки
22 KiB
C
825 строки
22 KiB
C
/* -*- Mode: C; tab-width: 8; indent-tabs-mode: nil; c-basic-offset: 4 -*-
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*
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* The contents of this file are subject to the Netscape Public
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* License Version 1.1 (the "License"); you may not use this file
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* except in compliance with the License. You may obtain a copy of
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* the License at http://www.mozilla.org/NPL/
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*
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* Software distributed under the License is distributed on an "AS
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* IS" basis, WITHOUT WARRANTY OF ANY KIND, either express oqr
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* implied. See the License for the specific language governing
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* rights and limitations under the License.
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*
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* The Original Code is Mozilla Communicator client code, released
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* March 31, 1998.
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*
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* The Initial Developer of the Original Code is Netscape
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* Communications Corporation. Portions created by Netscape are
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* Copyright (C) 1998 Netscape Communications Corporation. All
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* Rights Reserved.
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*
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* Contributor(s):
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*
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* Alternatively, the contents of this file may be used under the
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* terms of the GNU Public License (the "GPL"), in which case the
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* provisions of the GPL are applicable instead of those above.
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* If you wish to allow use of your version of this file only
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* under the terms of the GPL and not to allow others to use your
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* version of this file under the NPL, indicate your decision by
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* deleting the provisions above and replace them with the notice
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* and other provisions required by the GPL. If you do not delete
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* the provisions above, a recipient may use your version of this
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* file under either the NPL or the GPL.
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*/
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/*
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* JS atom table.
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*/
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#include "jsstddef.h"
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#include <stdlib.h>
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#include <string.h>
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#include "jstypes.h"
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#include "jsutil.h" /* Added by JSIFY */
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#include "jshash.h" /* Added by JSIFY */
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#include "jsprf.h"
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#include "jsapi.h"
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#include "jsatom.h"
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#include "jscntxt.h"
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#include "jsgc.h"
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#include "jslock.h"
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#include "jsnum.h"
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#include "jsopcode.h"
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#include "jsstr.h"
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extern const char js_Error_str[]; /* trivial, from jsexn.h */
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/*
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* Keep this in sync with jspubtd.h -- an assertion below will insist that
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* its length match the JSType enum's JSTYPE_LIMIT limit value.
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*/
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const char *js_type_str[] = {
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"undefined",
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"object",
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"function",
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"string",
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"number",
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"boolean",
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};
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const char *js_boolean_str[] = {
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js_false_str,
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js_true_str
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};
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const char js_Arguments_str[] = "Arguments";
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const char js_Array_str[] = "Array";
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const char js_Boolean_str[] = "Boolean";
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const char js_Call_str[] = "Call";
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const char js_Date_str[] = "Date";
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const char js_Function_str[] = "Function";
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const char js_Math_str[] = "Math";
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const char js_Number_str[] = "Number";
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const char js_Object_str[] = "Object";
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const char js_RegExp_str[] = "RegExp";
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const char js_Script_str[] = "Script";
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const char js_String_str[] = "String";
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const char js_anonymous_str[] = "anonymous";
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const char js_arguments_str[] = "arguments";
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const char js_arity_str[] = "arity";
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const char js_callee_str[] = "callee";
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const char js_caller_str[] = "caller";
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const char js_class_prototype_str[] = "prototype";
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const char js_constructor_str[] = "constructor";
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const char js_count_str[] = "__count__";
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const char js_eval_str[] = "eval";
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const char js_getter_str[] = "getter";
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const char js_get_str[] = "get";
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const char js_index_str[] = "index";
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const char js_input_str[] = "input";
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const char js_length_str[] = "length";
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const char js_name_str[] = "name";
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const char js_parent_str[] = "__parent__";
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const char js_proto_str[] = "__proto__";
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const char js_setter_str[] = "setter";
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const char js_set_str[] = "set";
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const char js_toSource_str[] = "toSource";
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const char js_toString_str[] = "toString";
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const char js_toLocaleString_str[] = "toLocaleString";
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const char js_valueOf_str[] = "valueOf";
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#define HASH_OBJECT(o) ((JSHashNumber)(o) >> JSVAL_TAGBITS)
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#define HASH_INT(i) ((JSHashNumber)(i))
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#define HASH_DOUBLE(dp) ((JSHashNumber)(((uint32*)(dp))[0] ^ ((uint32*)(dp))[1]))
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#define HASH_BOOLEAN(b) ((JSHashNumber)(b))
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JS_STATIC_DLL_CALLBACK(JSHashNumber)
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js_hash_atom_key(const void *key)
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{
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jsval v;
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jsdouble *dp;
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/* Order JSVAL_IS_* tests by likelihood of success. */
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v = (jsval)key;
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if (JSVAL_IS_STRING(v))
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return js_HashString(JSVAL_TO_STRING(v));
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if (JSVAL_IS_INT(v))
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return HASH_INT(JSVAL_TO_INT(v));
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if (JSVAL_IS_DOUBLE(v)) {
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dp = JSVAL_TO_DOUBLE(v);
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return HASH_DOUBLE(dp);
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}
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if (JSVAL_IS_OBJECT(v))
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return HASH_OBJECT(JSVAL_TO_OBJECT(v));
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if (JSVAL_IS_BOOLEAN(v))
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return HASH_BOOLEAN(JSVAL_TO_BOOLEAN(v));
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return (JSHashNumber)v;
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}
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JS_STATIC_DLL_CALLBACK(intN)
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js_compare_atom_keys(const void *k1, const void *k2)
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{
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jsval v1, v2;
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v1 = (jsval)k1, v2 = (jsval)k2;
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if (JSVAL_IS_STRING(v1) && JSVAL_IS_STRING(v2))
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return !js_CompareStrings(JSVAL_TO_STRING(v1), JSVAL_TO_STRING(v2));
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if (JSVAL_IS_DOUBLE(v1) && JSVAL_IS_DOUBLE(v2)) {
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double d1 = *JSVAL_TO_DOUBLE(v1);
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double d2 = *JSVAL_TO_DOUBLE(v2);
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if (JSDOUBLE_IS_NaN(d1))
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return JSDOUBLE_IS_NaN(d2);
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#ifdef XP_PC
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/* XXX MSVC miscompiles such that (NaN == 0) */
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if (JSDOUBLE_IS_NaN(d2))
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return JS_FALSE;
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#endif
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return d1 == d2;
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}
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return v1 == v2;
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}
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JS_STATIC_DLL_CALLBACK(int)
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js_compare_stub(const void *v1, const void *v2)
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{
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return 1;
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}
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JS_STATIC_DLL_CALLBACK(void *)
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js_alloc_atom_space(void *priv, size_t size)
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{
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return malloc(size);
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}
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JS_STATIC_DLL_CALLBACK(void)
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js_free_atom_space(void *priv, void *item)
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{
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free(item);
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}
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JS_STATIC_DLL_CALLBACK(JSHashEntry *)
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js_alloc_atom(void *priv, const void *key)
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{
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JSAtomState *state = (JSAtomState *) priv;
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JSAtom *atom;
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atom = (JSAtom *) malloc(sizeof(JSAtom));
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if (!atom)
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return NULL;
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#ifdef JS_THREADSAFE
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state->tablegen++;
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#endif
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atom->entry.key = key;
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atom->entry.value = NULL;
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atom->flags = 0;
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atom->kwindex = -1;
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atom->number = state->number++;
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return &atom->entry;
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}
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JS_STATIC_DLL_CALLBACK(void)
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js_free_atom(void *priv, JSHashEntry *he, uintN flag)
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{
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if (flag != HT_FREE_ENTRY)
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return;
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#ifdef JS_THREADSAFE
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((JSAtomState *)priv)->tablegen++;
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#endif
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free(he);
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}
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static JSHashAllocOps atom_alloc_ops = {
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js_alloc_atom_space, js_free_atom_space,
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js_alloc_atom, js_free_atom
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};
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#define JS_ATOM_HASH_SIZE 1024
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JSBool
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js_InitAtomState(JSContext *cx, JSAtomState *state)
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{
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uintN i;
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memset(state, 0, sizeof *state);
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state->runtime = cx->runtime;
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state->table = JS_NewHashTable(JS_ATOM_HASH_SIZE, js_hash_atom_key,
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js_compare_atom_keys, js_compare_stub,
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&atom_alloc_ops, state);
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if (!state->table) {
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JS_ReportOutOfMemory(cx);
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return JS_FALSE;
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}
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#ifdef JS_THREADSAFE
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js_NewLock(&state->lock);
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state->tablegen = 0;
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#endif
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#define FROB(lval,str) \
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JS_BEGIN_MACRO \
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if (!(state->lval = js_Atomize(cx, str, strlen(str), ATOM_PINNED))) \
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goto bad; \
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JS_END_MACRO
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JS_ASSERT(sizeof js_type_str / sizeof js_type_str[0] == JSTYPE_LIMIT);
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for (i = 0; i < JSTYPE_LIMIT; i++)
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FROB(typeAtoms[i], js_type_str[i]);
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FROB(booleanAtoms[0], js_false_str);
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FROB(booleanAtoms[1], js_true_str);
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FROB(nullAtom, js_null_str);
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FROB(ArgumentsAtom, js_Arguments_str);
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FROB(ArrayAtom, js_Array_str);
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FROB(BooleanAtom, js_Boolean_str);
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FROB(CallAtom, js_Call_str);
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FROB(DateAtom, js_Date_str);
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FROB(ErrorAtom, js_Error_str);
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FROB(FunctionAtom, js_Function_str);
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FROB(MathAtom, js_Math_str);
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FROB(NumberAtom, js_Number_str);
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FROB(ObjectAtom, js_Object_str);
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FROB(RegExpAtom, js_RegExp_str);
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FROB(ScriptAtom, js_Script_str);
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FROB(StringAtom, js_String_str);
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FROB(anonymousAtom, js_anonymous_str);
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FROB(argumentsAtom, js_arguments_str);
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FROB(arityAtom, js_arity_str);
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FROB(calleeAtom, js_callee_str);
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FROB(callerAtom, js_caller_str);
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FROB(classPrototypeAtom, js_class_prototype_str);
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FROB(constructorAtom, js_constructor_str);
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FROB(countAtom, js_count_str);
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FROB(evalAtom, js_eval_str);
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FROB(getAtom, js_get_str);
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FROB(getterAtom, js_getter_str);
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FROB(indexAtom, js_index_str);
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FROB(inputAtom, js_input_str);
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FROB(lengthAtom, js_length_str);
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FROB(nameAtom, js_name_str);
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FROB(parentAtom, js_parent_str);
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FROB(protoAtom, js_proto_str);
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FROB(setAtom, js_set_str);
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FROB(setterAtom, js_setter_str);
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FROB(toSourceAtom, js_toSource_str);
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FROB(toStringAtom, js_toString_str);
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FROB(toLocaleStringAtom, js_toLocaleString_str);
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FROB(valueOfAtom, js_valueOf_str);
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#undef FROB
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return JS_TRUE;
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bad:
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js_FreeAtomState(cx, state);
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return JS_FALSE;
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}
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void
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js_FreeAtomState(JSContext *cx, JSAtomState *state)
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{
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state->runtime = NULL;
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JS_HashTableDestroy(state->table);
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state->table = NULL;
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state->number = 0;
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#ifdef JS_THREADSAFE
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js_DestroyLock(&state->lock);
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#endif
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}
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typedef struct MarkArgs {
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JSGCThingMarker mark;
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void *data;
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} MarkArgs;
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JS_STATIC_DLL_CALLBACK(intN)
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js_atom_marker(JSHashEntry *he, intN i, void *arg)
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{
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JSAtom *atom;
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jsval key;
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MarkArgs *args;
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atom = (JSAtom *)he;
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if (atom->flags & ATOM_PINNED) {
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atom->flags |= ATOM_MARK;
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key = ATOM_KEY(atom);
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if (JSVAL_IS_GCTHING(key)) {
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args = (MarkArgs *) arg;
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args->mark(JSVAL_TO_GCTHING(key), args->data);
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}
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}
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return HT_ENUMERATE_NEXT;
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}
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void
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js_MarkAtomState(JSAtomState *state, JSGCThingMarker mark, void *data)
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{
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MarkArgs args;
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args.mark = mark;
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args.data = data;
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JS_HashTableEnumerateEntries(state->table, js_atom_marker, &args);
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}
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JS_STATIC_DLL_CALLBACK(intN)
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js_atom_sweeper(JSHashEntry *he, intN i, void *arg)
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{
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JSAtom *atom;
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uintN gcflags;
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atom = (JSAtom *)he;
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if (atom->flags & ATOM_MARK) {
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atom->flags &= ~ATOM_MARK;
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return HT_ENUMERATE_NEXT;
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}
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gcflags = (uintN)arg;
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if (gcflags & GC_KEEP_ATOMS)
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return HT_ENUMERATE_NEXT;
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JS_ASSERT((atom->flags & ATOM_PINNED) == 0);
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atom->entry.key = NULL;
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atom->flags = 0;
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return HT_ENUMERATE_REMOVE;
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}
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void
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js_SweepAtomState(JSAtomState *state, uintN gcflags)
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{
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JS_HashTableEnumerateEntries(state->table, js_atom_sweeper, (void*)gcflags);
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}
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JS_STATIC_DLL_CALLBACK(intN)
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js_atom_unpinner(JSHashEntry *he, intN i, void *arg)
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{
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JSAtom *atom;
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atom = (JSAtom *)he;
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atom->flags &= ~ATOM_PINNED;
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return HT_ENUMERATE_NEXT;
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}
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void
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js_UnpinPinnedAtoms(JSAtomState *state)
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{
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JS_HashTableEnumerateEntries(state->table, js_atom_unpinner, NULL);
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}
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static JSAtom *
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js_AtomizeHashedKey(JSContext *cx, jsval key, JSHashNumber keyHash, uintN flags)
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{
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JSAtomState *state;
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JSHashTable *table;
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JSHashEntry *he, **hep;
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JSAtom *atom;
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state = &cx->runtime->atomState;
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JS_LOCK(&state->lock, cx);
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table = state->table;
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hep = JS_HashTableRawLookup(table, keyHash, (void *)key);
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if ((he = *hep) == NULL) {
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he = JS_HashTableRawAdd(table, hep, keyHash, (void *)key, NULL);
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if (!he) {
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JS_ReportOutOfMemory(cx);
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atom = NULL;
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goto out;
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}
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}
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atom = (JSAtom *)he;
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atom->flags |= flags;
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out:
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JS_UNLOCK(&state->lock,cx);
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return atom;
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}
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JSAtom *
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js_AtomizeObject(JSContext *cx, JSObject *obj, uintN flags)
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{
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jsval key;
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JSHashNumber keyHash;
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/* XXX must be set in the following order or MSVC1.52 will crash */
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keyHash = HASH_OBJECT(obj);
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key = OBJECT_TO_JSVAL(obj);
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return js_AtomizeHashedKey(cx, key, keyHash, flags);
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}
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JSAtom *
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js_AtomizeBoolean(JSContext *cx, JSBool b, uintN flags)
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{
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jsval key;
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JSHashNumber keyHash;
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key = BOOLEAN_TO_JSVAL(b);
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keyHash = HASH_BOOLEAN(b);
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return js_AtomizeHashedKey(cx, key, keyHash, flags);
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}
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JSAtom *
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js_AtomizeInt(JSContext *cx, jsint i, uintN flags)
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{
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jsval key;
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JSHashNumber keyHash;
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key = INT_TO_JSVAL(i);
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keyHash = HASH_INT(i);
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return js_AtomizeHashedKey(cx, key, keyHash, flags);
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}
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/* Worst-case alignment grain and aligning macro for 2x-sized buffer. */
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#define ALIGNMENT(t) JS_MAX(JSVAL_ALIGN, sizeof(t))
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#define ALIGN(b,t) ((t*) &(b)[ALIGNMENT(t) - (jsuword)(b) % ALIGNMENT(t)])
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JSAtom *
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js_AtomizeDouble(JSContext *cx, jsdouble d, uintN flags)
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{
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jsdouble *dp;
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JSHashNumber keyHash;
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jsval key;
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JSAtomState *state;
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JSHashTable *table;
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JSHashEntry *he, **hep;
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JSAtom *atom;
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char buf[2 * ALIGNMENT(double)];
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dp = ALIGN(buf, double);
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*dp = d;
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keyHash = HASH_DOUBLE(dp);
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key = DOUBLE_TO_JSVAL(dp);
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state = &cx->runtime->atomState;
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JS_LOCK(&state->lock, cx);
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table = state->table;
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hep = JS_HashTableRawLookup(table, keyHash, (void *)key);
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if ((he = *hep) == NULL) {
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#ifdef JS_THREADSAFE
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uint32 gen = state->tablegen;
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#endif
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JS_UNLOCK(&state->lock,cx);
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if (!js_NewDoubleValue(cx, d, &key))
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return NULL;
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JS_LOCK(&state->lock, cx);
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#ifdef JS_THREADSAFE
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if (state->tablegen != gen) {
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hep = JS_HashTableRawLookup(table, keyHash, (void *)key);
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if ((he = *hep) != NULL) {
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atom = (JSAtom *)he;
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goto out;
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}
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}
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#endif
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he = JS_HashTableRawAdd(table, hep, keyHash, (void *)key, NULL);
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if (!he) {
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JS_ReportOutOfMemory(cx);
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atom = NULL;
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goto out;
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}
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}
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|
|
atom = (JSAtom *)he;
|
|
atom->flags |= flags;
|
|
out:
|
|
JS_UNLOCK(&state->lock,cx);
|
|
return atom;
|
|
}
|
|
|
|
JSAtom *
|
|
js_AtomizeString(JSContext *cx, JSString *str, uintN flags)
|
|
{
|
|
JSHashNumber keyHash;
|
|
jsval key;
|
|
JSAtomState *state;
|
|
JSHashTable *table;
|
|
JSHashEntry *he, **hep;
|
|
JSAtom *atom;
|
|
|
|
keyHash = js_HashString(str);
|
|
key = STRING_TO_JSVAL(str);
|
|
state = &cx->runtime->atomState;
|
|
JS_LOCK(&state->lock, cx);
|
|
table = state->table;
|
|
hep = JS_HashTableRawLookup(table, keyHash, (void *)key);
|
|
if ((he = *hep) == NULL) {
|
|
if (flags & ATOM_TMPSTR) {
|
|
#ifdef JS_THREADSAFE
|
|
uint32 gen = state->tablegen;
|
|
#endif
|
|
JS_UNLOCK(&state->lock, cx);
|
|
str = (flags & ATOM_NOCOPY)
|
|
? js_NewString(cx, str->chars, str->length, 0)
|
|
: js_NewStringCopyN(cx, str->chars, str->length, 0);
|
|
if (!str)
|
|
return NULL;
|
|
key = STRING_TO_JSVAL(str);
|
|
JS_LOCK(&state->lock, cx);
|
|
#ifdef JS_THREADSAFE
|
|
if (state->tablegen != gen) {
|
|
hep = JS_HashTableRawLookup(table, keyHash, (void *)key);
|
|
if ((he = *hep) != NULL) {
|
|
atom = (JSAtom *)he;
|
|
if (flags & ATOM_NOCOPY)
|
|
str->chars = NULL;
|
|
goto out;
|
|
}
|
|
}
|
|
#endif
|
|
}
|
|
he = JS_HashTableRawAdd(table, hep, keyHash, (void *)key, NULL);
|
|
if (!he) {
|
|
JS_ReportOutOfMemory(cx);
|
|
atom = NULL;
|
|
goto out;
|
|
}
|
|
}
|
|
|
|
atom = (JSAtom *)he;
|
|
atom->flags |= flags & ATOM_PINNED;
|
|
out:
|
|
JS_UNLOCK(&state->lock,cx);
|
|
return atom;
|
|
}
|
|
|
|
JS_FRIEND_API(JSAtom *)
|
|
js_Atomize(JSContext *cx, const char *bytes, size_t length, uintN flags)
|
|
{
|
|
jschar *chars;
|
|
JSString *str;
|
|
JSAtom *atom;
|
|
char buf[2 * ALIGNMENT(JSString)];
|
|
|
|
/*
|
|
* Avoiding the malloc in js_InflateString on shorter strings saves us
|
|
* over 20,000 malloc calls on mozilla browser startup. This compares to
|
|
* only 131 calls where the string is longer than a 31 char (net) buffer.
|
|
* The vast majority of atomized strings are already in the hashtable. So
|
|
* js_AtomizeString rarely has to copy the temp string we make.
|
|
*/
|
|
#define ATOMIZE_BUF_MAX 32
|
|
jschar inflated[ATOMIZE_BUF_MAX];
|
|
|
|
if (length < ATOMIZE_BUF_MAX) {
|
|
js_InflateStringToBuffer(inflated, bytes, length);
|
|
chars = inflated;
|
|
} else {
|
|
chars = js_InflateString(cx, bytes, length);
|
|
if (!chars)
|
|
return NULL;
|
|
flags |= ATOM_NOCOPY;
|
|
}
|
|
|
|
str = ALIGN(buf, JSString);
|
|
|
|
str->chars = chars;
|
|
str->length = length;
|
|
atom = js_AtomizeString(cx, str, ATOM_TMPSTR | flags);
|
|
if (chars != inflated && (!atom || ATOM_TO_STRING(atom)->chars != chars))
|
|
JS_free(cx, chars);
|
|
return atom;
|
|
}
|
|
|
|
JS_FRIEND_API(JSAtom *)
|
|
js_AtomizeChars(JSContext *cx, const jschar *chars, size_t length, uintN flags)
|
|
{
|
|
JSString *str;
|
|
char buf[2 * ALIGNMENT(JSString)];
|
|
|
|
str = ALIGN(buf, JSString);
|
|
str->chars = (jschar *)chars;
|
|
str->length = length;
|
|
return js_AtomizeString(cx, str, ATOM_TMPSTR | flags);
|
|
}
|
|
|
|
JSAtom *
|
|
js_AtomizeValue(JSContext *cx, jsval value, uintN flags)
|
|
{
|
|
if (JSVAL_IS_STRING(value))
|
|
return js_AtomizeString(cx, JSVAL_TO_STRING(value), flags);
|
|
if (JSVAL_IS_INT(value))
|
|
return js_AtomizeInt(cx, JSVAL_TO_INT(value), flags);
|
|
if (JSVAL_IS_DOUBLE(value))
|
|
return js_AtomizeDouble(cx, *JSVAL_TO_DOUBLE(value), flags);
|
|
if (JSVAL_IS_OBJECT(value))
|
|
return js_AtomizeObject(cx, JSVAL_TO_OBJECT(value), flags);
|
|
if (JSVAL_IS_BOOLEAN(value))
|
|
return js_AtomizeBoolean(cx, JSVAL_TO_BOOLEAN(value), flags);
|
|
return js_AtomizeHashedKey(cx, value, (JSHashNumber)value, flags);
|
|
}
|
|
|
|
JSAtom *
|
|
js_ValueToStringAtom(JSContext *cx, jsval v)
|
|
{
|
|
JSString *str;
|
|
|
|
str = js_ValueToString(cx, v);
|
|
if (!str)
|
|
return NULL;
|
|
return js_AtomizeString(cx, str, 0);
|
|
}
|
|
|
|
JS_STATIC_DLL_CALLBACK(JSHashNumber)
|
|
js_hash_atom_ptr(const void *key)
|
|
{
|
|
const JSAtom *atom = key;
|
|
return atom->number;
|
|
}
|
|
|
|
JS_STATIC_DLL_CALLBACK(void *)
|
|
js_alloc_temp_space(void *priv, size_t size)
|
|
{
|
|
JSContext *cx = priv;
|
|
void *space;
|
|
|
|
JS_ARENA_ALLOCATE(space, &cx->tempPool, size);
|
|
if (!space)
|
|
JS_ReportOutOfMemory(cx);
|
|
return space;
|
|
}
|
|
|
|
JS_STATIC_DLL_CALLBACK(void)
|
|
js_free_temp_space(void *priv, void *item)
|
|
{
|
|
}
|
|
|
|
JS_STATIC_DLL_CALLBACK(JSHashEntry *)
|
|
js_alloc_temp_entry(void *priv, const void *key)
|
|
{
|
|
JSContext *cx = priv;
|
|
JSAtomListElement *ale;
|
|
|
|
JS_ARENA_ALLOCATE_TYPE(ale, JSAtomListElement, &cx->tempPool);
|
|
if (!ale) {
|
|
JS_ReportOutOfMemory(cx);
|
|
return NULL;
|
|
}
|
|
return &ale->entry;
|
|
}
|
|
|
|
JS_STATIC_DLL_CALLBACK(void)
|
|
js_free_temp_entry(void *priv, JSHashEntry *he, uintN flag)
|
|
{
|
|
}
|
|
|
|
static JSHashAllocOps temp_alloc_ops = {
|
|
js_alloc_temp_space, js_free_temp_space,
|
|
js_alloc_temp_entry, js_free_temp_entry
|
|
};
|
|
|
|
JSAtomListElement *
|
|
js_IndexAtom(JSContext *cx, JSAtom *atom, JSAtomList *al)
|
|
{
|
|
JSAtomListElement *ale, *ale2, *next;
|
|
JSHashEntry **hep;
|
|
|
|
ATOM_LIST_LOOKUP(ale, hep, al, atom);
|
|
if (!ale) {
|
|
if (al->count <= 5) {
|
|
/* Few enough for linear search, no hash table needed. */
|
|
JS_ASSERT(!al->table);
|
|
ale = (JSAtomListElement *)js_alloc_temp_entry(cx, atom);
|
|
if (!ale)
|
|
return NULL;
|
|
ALE_SET_ATOM(ale, atom);
|
|
ALE_SET_NEXT(ale, al->list);
|
|
al->list = ale;
|
|
} else {
|
|
/* We want to hash. Have we already made a hash table? */
|
|
if (!al->table) {
|
|
/* No hash table yet, so hep had better be null! */
|
|
JS_ASSERT(!hep);
|
|
al->table = JS_NewHashTable(8, js_hash_atom_ptr,
|
|
JS_CompareValues, JS_CompareValues,
|
|
&temp_alloc_ops, cx);
|
|
if (!al->table)
|
|
return NULL;
|
|
|
|
/* Insert each ale on al->list into the new hash table. */
|
|
for (ale2 = al->list; ale2; ale2 = next) {
|
|
next = ALE_NEXT(ale2);
|
|
ale2->entry.keyHash = ALE_ATOM(ale2)->number;
|
|
hep = JS_HashTableRawLookup(al->table, ale2->entry.keyHash,
|
|
ale2->entry.key);
|
|
ALE_SET_NEXT(ale2, *hep);
|
|
*hep = &ale2->entry;
|
|
}
|
|
al->list = NULL;
|
|
|
|
/* Set hep for insertion of atom's ale, immediately below. */
|
|
hep = JS_HashTableRawLookup(al->table, atom->number, atom);
|
|
}
|
|
|
|
/* Finally, add an entry for atom into the hash bucket at hep. */
|
|
ale = (JSAtomListElement *)
|
|
JS_HashTableRawAdd(al->table, hep, atom->number, atom, NULL);
|
|
if (!ale)
|
|
return NULL;
|
|
}
|
|
|
|
ALE_SET_INDEX(ale, al->count++);
|
|
}
|
|
return ale;
|
|
}
|
|
|
|
JS_FRIEND_API(JSAtom *)
|
|
js_GetAtom(JSContext *cx, JSAtomMap *map, jsatomid i)
|
|
{
|
|
JSAtom *atom;
|
|
static JSAtom dummy;
|
|
|
|
JS_ASSERT(map->vector && i < map->length);
|
|
if (!map->vector || i >= map->length) {
|
|
char numBuf[12];
|
|
JS_snprintf(numBuf, sizeof numBuf, "%lu", (unsigned long)i);
|
|
JS_ReportErrorNumber(cx, js_GetErrorMessage, NULL,
|
|
JSMSG_BAD_ATOMIC_NUMBER, numBuf);
|
|
return &dummy;
|
|
}
|
|
atom = map->vector[i];
|
|
JS_ASSERT(atom);
|
|
return atom;
|
|
}
|
|
|
|
JS_STATIC_DLL_CALLBACK(intN)
|
|
js_map_atom(JSHashEntry *he, intN i, void *arg)
|
|
{
|
|
JSAtomListElement *ale = (JSAtomListElement *)he;
|
|
JSAtom **vector = arg;
|
|
|
|
vector[ALE_INDEX(ale)] = ALE_ATOM(ale);
|
|
return HT_ENUMERATE_NEXT;
|
|
}
|
|
|
|
#ifdef DEBUG
|
|
jsrefcount js_atom_map_count;
|
|
jsrefcount js_atom_map_hash_table_count;
|
|
#endif
|
|
|
|
JS_FRIEND_API(JSBool)
|
|
js_InitAtomMap(JSContext *cx, JSAtomMap *map, JSAtomList *al)
|
|
{
|
|
JSAtom **vector;
|
|
JSAtomListElement *ale;
|
|
uint32 count;
|
|
|
|
#ifdef DEBUG
|
|
JS_ATOMIC_ADDREF(&js_atom_map_count, 1);
|
|
#endif
|
|
ale = al->list;
|
|
if (!ale && !al->table) {
|
|
map->vector = NULL;
|
|
map->length = 0;
|
|
return JS_TRUE;
|
|
}
|
|
|
|
count = al->count;
|
|
if (count >= ATOM_INDEX_LIMIT) {
|
|
JS_ReportErrorNumber(cx, js_GetErrorMessage, NULL,
|
|
JSMSG_TOO_MANY_LITERALS);
|
|
return JS_FALSE;
|
|
}
|
|
vector = (JSAtom **) JS_malloc(cx, (size_t) count * sizeof *vector);
|
|
if (!vector)
|
|
return JS_FALSE;
|
|
|
|
if (al->table) {
|
|
#ifdef DEBUG
|
|
JS_ATOMIC_ADDREF(&js_atom_map_hash_table_count, 1);
|
|
#endif
|
|
JS_HashTableEnumerateEntries(al->table, js_map_atom, vector);
|
|
} else {
|
|
do {
|
|
vector[ALE_INDEX(ale)] = ALE_ATOM(ale);
|
|
} while ((ale = ALE_NEXT(ale)) != NULL);
|
|
}
|
|
ATOM_LIST_INIT(al);
|
|
|
|
map->vector = vector;
|
|
map->length = (jsatomid)count;
|
|
return JS_TRUE;
|
|
}
|
|
|
|
JS_FRIEND_API(void)
|
|
js_FreeAtomMap(JSContext *cx, JSAtomMap *map)
|
|
{
|
|
if (map->vector) {
|
|
free(map->vector);
|
|
map->vector = NULL;
|
|
}
|
|
map->length = 0;
|
|
}
|