2012-10-19 13:41:03 +08:00
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/* -*- Mode: C++; tab-width: 8; indent-tabs-mode: nil; c-basic-offset: 4 -*-
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*
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* This Source Code Form is subject to the terms of the Mozilla Public
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* License, v. 2.0. If a copy of the MPL was not distributed with this
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* file, You can obtain one at http://mozilla.org/MPL/2.0/. */
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#ifndef jsatom_h___
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#define jsatom_h___
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#include <stddef.h>
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#include "jsversion.h"
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#include "jsalloc.h"
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#include "jsapi.h"
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#include "jsprvtd.h"
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#include "jspubtd.h"
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#include "jslock.h"
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#include "gc/Barrier.h"
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#include "js/HashTable.h"
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2012-10-31 11:03:42 +08:00
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#include "mozilla/HashFunctions.h"
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2012-10-19 13:41:03 +08:00
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struct JSIdArray {
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int length;
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js::HeapId vector[1]; /* actually, length jsid words */
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};
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/* Engine-internal extensions of jsid */
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static JS_ALWAYS_INLINE jsid
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JSID_FROM_BITS(size_t bits)
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{
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jsid id;
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JSID_BITS(id) = bits;
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return id;
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}
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/*
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* Must not be used on atoms that are representable as integer jsids.
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* Prefer NameToId or AtomToId over this function:
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*
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* A PropertyName is an atom that does not contain an integer in the range
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* [0, UINT32_MAX]. However, jsid can only hold an integer in the range
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* [0, JSID_INT_MAX] (where JSID_INT_MAX == 2^31-1). Thus, for the range of
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* integers (JSID_INT_MAX, UINT32_MAX], to represent as a jsid 'id', it must be
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* the case JSID_IS_ATOM(id) and !JSID_TO_ATOM(id)->isPropertyName(). In most
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* cases when creating a jsid, code does not have to care about this corner
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* case because:
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*
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* - When given an arbitrary JSAtom*, AtomToId must be used, which checks for
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* integer atoms representable as integer jsids, and does this conversion.
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*
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* - When given a PropertyName*, NameToId can be used which which does not need
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* to do any dynamic checks.
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*
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* Thus, it is only the rare third case which needs this function, which
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* handles any JSAtom* that is known not to be representable with an int jsid.
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*/
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static JS_ALWAYS_INLINE jsid
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NON_INTEGER_ATOM_TO_JSID(JSAtom *atom)
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{
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JS_ASSERT(((size_t)atom & 0x7) == 0);
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jsid id = JSID_FROM_BITS((size_t)atom);
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JS_ASSERT(id == INTERNED_STRING_TO_JSID(NULL, (JSString*)atom));
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return id;
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}
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/* All strings stored in jsids are atomized, but are not necessarily property names. */
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static JS_ALWAYS_INLINE JSBool
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JSID_IS_ATOM(jsid id)
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{
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return JSID_IS_STRING(id);
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}
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static JS_ALWAYS_INLINE JSBool
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JSID_IS_ATOM(jsid id, JSAtom *atom)
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{
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return id == JSID_FROM_BITS((size_t)atom);
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}
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static JS_ALWAYS_INLINE JSAtom *
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JSID_TO_ATOM(jsid id)
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{
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return (JSAtom *)JSID_TO_STRING(id);
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}
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2012-10-31 11:03:42 +08:00
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JS_STATIC_ASSERT(sizeof(js::HashNumber) == 4);
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2012-10-19 13:41:03 +08:00
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JS_STATIC_ASSERT(sizeof(jsid) == JS_BYTES_PER_WORD);
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namespace js {
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2012-10-31 11:03:42 +08:00
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static JS_ALWAYS_INLINE js::HashNumber
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2012-10-19 13:41:03 +08:00
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HashId(jsid id)
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{
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2012-10-31 11:03:42 +08:00
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return HashGeneric(JSID_BITS(id));
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}
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static JS_ALWAYS_INLINE Value
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IdToValue(jsid id)
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{
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if (JSID_IS_STRING(id))
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return StringValue(JSID_TO_STRING(id));
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if (JS_LIKELY(JSID_IS_INT(id)))
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return Int32Value(JSID_TO_INT(id));
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if (JS_LIKELY(JSID_IS_OBJECT(id)))
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return ObjectValue(*JSID_TO_OBJECT(id));
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JS_ASSERT(JSID_IS_DEFAULT_XML_NAMESPACE(id) || JSID_IS_VOID(id));
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return UndefinedValue();
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}
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static JS_ALWAYS_INLINE jsval
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IdToJsval(jsid id)
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{
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return IdToValue(id);
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}
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template<>
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struct DefaultHasher<jsid>
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{
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typedef jsid Lookup;
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static HashNumber hash(const Lookup &l) {
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return HashNumber(JSID_BITS(l));
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}
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static bool match(const jsid &id, const Lookup &l) {
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return id == l;
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}
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};
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}
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/*
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* Return a printable, lossless char[] representation of a string-type atom.
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* The lifetime of the result matches the lifetime of bytes.
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*/
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extern const char *
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js_AtomToPrintableString(JSContext *cx, JSAtom *atom, JSAutoByteString *bytes);
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namespace js {
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/* Compute a hash function from chars/length. */
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inline uint32_t
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HashChars(const jschar *chars, size_t length)
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{
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uint32_t h = 0;
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for (; length; chars++, length--)
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h = JS_ROTATE_LEFT32(h, 4) ^ *chars;
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return h;
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}
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class AtomStateEntry
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{
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uintptr_t bits;
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static const uintptr_t NO_TAG_MASK = uintptr_t(-1) - 1;
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public:
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AtomStateEntry() : bits(0) {}
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AtomStateEntry(const AtomStateEntry &other) : bits(other.bits) {}
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AtomStateEntry(JSAtom *ptr, bool tagged)
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: bits(uintptr_t(ptr) | uintptr_t(tagged))
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{
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JS_ASSERT((uintptr_t(ptr) & 0x1) == 0);
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}
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bool isTagged() const {
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return bits & 0x1;
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}
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/*
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* Non-branching code sequence. Note that the const_cast is safe because
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* the hash function doesn't consider the tag to be a portion of the key.
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*/
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void setTagged(bool enabled) const {
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const_cast<AtomStateEntry *>(this)->bits |= uintptr_t(enabled);
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}
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JSAtom *asPtr() const;
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};
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struct AtomHasher
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{
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struct Lookup
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{
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const jschar *chars;
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size_t length;
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const JSAtom *atom; /* Optional. */
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Lookup(const jschar *chars, size_t length) : chars(chars), length(length), atom(NULL) {}
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inline Lookup(const JSAtom *atom);
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};
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static HashNumber hash(const Lookup &l) { return HashChars(l.chars, l.length); }
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static inline bool match(const AtomStateEntry &entry, const Lookup &lookup);
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};
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typedef HashSet<AtomStateEntry, AtomHasher, SystemAllocPolicy> AtomSet;
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/*
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* On encodings:
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*
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* - Some string functions have an optional FlationCoding argument that allow
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* the caller to force CESU-8 encoding handling.
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* - Functions that don't take a FlationCoding base their NormalEncoding
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* behavior on the js_CStringsAreUTF8 value. NormalEncoding is either raw
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* (simple zero-extension) or UTF-8 depending on js_CStringsAreUTF8.
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* - Functions that explicitly state their encoding do not use the
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* js_CStringsAreUTF8 value.
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*
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* CESU-8 (Compatibility Encoding Scheme for UTF-16: 8-bit) is a variant of
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* UTF-8 that allows us to store any wide character string as a narrow
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* character string. For strings containing mostly ascii, it saves space.
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* http://www.unicode.org/reports/tr26/
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*/
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enum FlationCoding
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{
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NormalEncoding,
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CESU8Encoding
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};
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class PropertyName;
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} /* namespace js */
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struct JSAtomState
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{
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js::AtomSet atoms;
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/*
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* From this point until the end of struct definition the struct must
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* contain only js::PropertyName fields. We use this to access the storage
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* occupied by the common atoms in js_FinishCommonAtoms.
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*
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* js_common_atom_names defined in jsatom.cpp contains C strings for atoms
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* in the order of atom fields here. Therefore you must update that array
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* if you change member order here.
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*/
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/* The rt->emptyString atom, see jsstr.c's js_InitRuntimeStringState. */
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js::PropertyName *emptyAtom;
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/*
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* Literal value and type names.
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* NB: booleanAtoms must come right before typeAtoms!
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*/
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js::PropertyName *booleanAtoms[2];
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js::PropertyName *typeAtoms[JSTYPE_LIMIT];
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js::PropertyName *nullAtom;
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/* Standard class constructor or prototype names. */
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js::PropertyName *classAtoms[JSProto_LIMIT];
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/* Various built-in or commonly-used atoms, pinned on first context. */
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#define DEFINE_ATOM(id, text) js::PropertyName *id##Atom;
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#define DEFINE_PROTOTYPE_ATOM(id) js::PropertyName *id##Atom;
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#define DEFINE_KEYWORD_ATOM(id) js::PropertyName *id##Atom;
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#include "jsatom.tbl"
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#undef DEFINE_ATOM
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#undef DEFINE_PROTOTYPE_ATOM
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#undef DEFINE_KEYWORD_ATOM
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static const size_t commonAtomsOffset;
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void junkAtoms() {
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#ifdef DEBUG
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memset(commonAtomsStart(), JS_FREE_PATTERN, sizeof(*this) - commonAtomsOffset);
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#endif
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}
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JSAtom **commonAtomsStart() {
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return reinterpret_cast<JSAtom **>(&emptyAtom);
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}
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void checkStaticInvariants();
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};
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extern bool
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AtomIsInterned(JSContext *cx, JSAtom *atom);
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#define ATOM(name) js::HandlePropertyName::fromMarkedLocation(&cx->runtime->atomState.name##Atom)
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#define COMMON_ATOM_INDEX(name) \
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((offsetof(JSAtomState, name##Atom) - JSAtomState::commonAtomsOffset) \
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/ sizeof(JSAtom*))
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#define COMMON_TYPE_ATOM_INDEX(type) \
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((offsetof(JSAtomState, typeAtoms[type]) - JSAtomState::commonAtomsOffset)\
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/ sizeof(JSAtom*))
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#define NAME_OFFSET(name) offsetof(JSAtomState, name##Atom)
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#define OFFSET_TO_NAME(rt,off) (*(js::PropertyName **)((char*)&(rt)->atomState + (off)))
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#define CLASS_NAME_OFFSET(name) offsetof(JSAtomState, classAtoms[JSProto_##name])
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#define CLASS_NAME(cx,name) ((cx)->runtime->atomState.classAtoms[JSProto_##name])
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extern const char *const js_common_atom_names[];
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extern const size_t js_common_atom_count;
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/*
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* Macros to access C strings for JSType and boolean literals.
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*/
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#define JS_BOOLEAN_STR(type) (js_common_atom_names[1 + (type)])
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#define JS_TYPE_STR(type) (js_common_atom_names[1 + 2 + (type)])
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/* Type names. */
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extern const char js_object_str[];
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extern const char js_undefined_str[];
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/* Well-known predefined C strings. */
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#define JS_PROTO(name,code,init) extern const char js_##name##_str[];
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#include "jsproto.tbl"
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#undef JS_PROTO
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#define DEFINE_ATOM(id, text) extern const char js_##id##_str[];
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#define DEFINE_PROTOTYPE_ATOM(id)
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#define DEFINE_KEYWORD_ATOM(id)
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#include "jsatom.tbl"
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#undef DEFINE_ATOM
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#undef DEFINE_PROTOTYPE_ATOM
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#undef DEFINE_KEYWORD_ATOM
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#if JS_HAS_GENERATORS
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extern const char js_close_str[];
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extern const char js_send_str[];
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#endif
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/* Constant strings that are not atomized. */
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extern const char js_getter_str[];
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extern const char js_setter_str[];
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2012-10-31 11:03:42 +08:00
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namespace js {
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2012-10-19 13:41:03 +08:00
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/*
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* Initialize atom state. Return true on success, false on failure to allocate
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* memory. The caller must zero rt->atomState before calling this function and
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* only call it after js_InitGC successfully returns.
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*/
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extern JSBool
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2012-10-31 11:03:42 +08:00
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InitAtomState(JSRuntime *rt);
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2012-10-19 13:41:03 +08:00
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/*
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* Free and clear atom state including any interned string atoms. This
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* function must be called before js_FinishGC.
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*/
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extern void
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2012-10-31 11:03:42 +08:00
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FinishAtomState(JSRuntime *rt);
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2012-10-19 13:41:03 +08:00
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/*
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* Atom tracing and garbage collection hooks.
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*/
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extern void
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2012-10-31 11:03:42 +08:00
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MarkAtomState(JSTracer *trc);
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2012-10-19 13:41:03 +08:00
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extern void
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SweepAtomState(JSRuntime *rt);
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extern bool
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InitCommonAtoms(JSContext *cx);
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extern void
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FinishCommonAtoms(JSRuntime *rt);
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/* N.B. must correspond to boolean tagging behavior. */
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enum InternBehavior
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{
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DoNotInternAtom = false,
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InternAtom = true
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};
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extern JSAtom *
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2012-10-31 11:03:42 +08:00
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Atomize(JSContext *cx, const char *bytes, size_t length,
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js::InternBehavior ib = js::DoNotInternAtom,
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js::FlationCoding fc = js::NormalEncoding);
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2012-10-19 13:41:03 +08:00
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extern JSAtom *
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2012-10-31 11:03:42 +08:00
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AtomizeChars(JSContext *cx, const jschar *chars, size_t length,
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js::InternBehavior ib = js::DoNotInternAtom);
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2012-10-19 13:41:03 +08:00
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extern JSAtom *
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2012-10-31 11:03:42 +08:00
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AtomizeString(JSContext *cx, JSString *str, js::InternBehavior ib = js::DoNotInternAtom);
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2012-10-19 13:41:03 +08:00
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inline JSAtom *
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ToAtom(JSContext *cx, const js::Value &v);
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bool
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InternNonIntElementId(JSContext *cx, JSObject *obj, const Value &idval,
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2012-10-31 11:03:42 +08:00
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jsid *idp, MutableHandleValue vp);
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2012-10-19 13:41:03 +08:00
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inline bool
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InternNonIntElementId(JSContext *cx, JSObject *obj, const Value &idval, jsid *idp)
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{
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2012-10-31 11:03:42 +08:00
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RootedValue dummy(cx);
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2012-10-19 13:41:03 +08:00
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return InternNonIntElementId(cx, obj, idval, idp, &dummy);
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}
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template<XDRMode mode>
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bool
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XDRAtom(XDRState<mode> *xdr, JSAtom **atomp);
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} /* namespace js */
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#endif /* jsatom_h___ */
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