static JSBool array_slice(JSContext *cx, JSObject *obj, uintN argc, jsval *argv, jsval *rval) { JSObject *nobj; jsuint length, begin, end, slot; jsdouble d; jsid id, id2; jsval v; nobj = js_NewArrayObject(cx, 0, NULL); if (!nobj) return JS_FALSE; if (!js_GetLengthProperty(cx, obj, &length)) return JS_FALSE; begin = 0; end = length; if (argc > 0) { if (!js_ValueToNumber(cx, argv[0], &d)) return JS_FALSE; d = js_DoubleToInteger(d); if (d < 0) { d += length; if (d < 0) d = 0; } else if (d > length) { d = length; } begin = (jsuint)d; if (argc > 1) { if (!js_ValueToNumber(cx, argv[1], &d)) return JS_FALSE; d = js_DoubleToInteger(d); if (d < 0) { d += length; if (d < 0) d = 0; } else if (d > length) { d = length; } end = (jsuint)d; } } for (slot = begin; slot < end; slot++) { if (!IndexToId(cx, slot, &id)) return JS_FALSE; if (!IndexToId(cx, slot - begin, &id2)) return JS_FALSE; if (!OBJ_GET_PROPERTY(cx, obj, id, &v)) return JS_FALSE; if (!OBJ_SET_PROPERTY(cx, nobj, id2, &v)) return JS_FALSE; } *rval = OBJECT_TO_JSVAL(nobj); return JS_TRUE; }
/* * Python-esque sequence operations. */ static JSBool array_concat(JSContext *cx, JSObject *obj, uintN argc, jsval *argv, jsval *rval) { JSObject *nobj, *aobj; jsuint length, alength, slot; uintN i; jsval v; jsid id, id2; /* Treat obj as the first argument; see ECMA 15.4.4.4. */ --argv; JS_ASSERT(obj == JSVAL_TO_OBJECT(argv[0])); /* Create a new Array object and store it in the rval local root. */ nobj = js_NewArrayObject(cx, 0, NULL); if (!nobj) return JS_FALSE; *rval = OBJECT_TO_JSVAL(nobj); /* Loop over [0, argc] to concat args into nobj, expanding all Arrays. */ length = 0; for (i = 0; i <= argc; i++) { v = argv[i]; if (JSVAL_IS_OBJECT(v)) { aobj = JSVAL_TO_OBJECT(v); if (aobj && OBJ_GET_CLASS(cx, aobj) == &js_ArrayClass) { if (!OBJ_GET_PROPERTY(cx, aobj, (jsid)cx->runtime->atomState.lengthAtom, &v)) { return JS_FALSE; } if (!ValueIsLength(cx, v, &alength)) return JS_FALSE; for (slot = 0; slot < alength; slot++) { if (!IndexToId(cx, slot, &id)) return JS_FALSE; if (!IndexToId(cx, length + slot, &id2)) return JS_FALSE; if (!OBJ_GET_PROPERTY(cx, aobj, id, &v)) return JS_FALSE; if (!OBJ_SET_PROPERTY(cx, nobj, id2, &v)) return JS_FALSE; } length += alength; continue; } } if (!IndexToId(cx, length, &id)) return JS_FALSE; if (!OBJ_SET_PROPERTY(cx, nobj, id, &v)) return JS_FALSE; length++; } return JS_TRUE; }
static JSBool OpenArray(JSContext *cx, JSONParser *jp) { // Add an array to an existing array or object JSObject *arr = js_NewArrayObject(cx, 0, NULL); if (!arr) return JS_FALSE; return PushObject(cx, jp, arr); }
static JSBool NewKeyValuePair(JSContext *cx, jsid key, jsval val, jsval *rval) { jsval vec[2]; JSTempValueRooter tvr; JSObject *aobj; vec[0] = ID_TO_VALUE(key); vec[1] = val; JS_PUSH_TEMP_ROOT(cx, 2, vec, &tvr); aobj = js_NewArrayObject(cx, 2, vec); *rval = OBJECT_TO_JSVAL(aobj); JS_POP_TEMP_ROOT(cx, &tvr); return aobj != NULL; }
JSONParser * js_BeginJSONParse(JSContext *cx, jsval *rootVal) { if (!cx) return NULL; JSObject *arr = js_NewArrayObject(cx, 0, NULL); if (!arr) return NULL; JSONParser *jp = (JSONParser*) JS_malloc(cx, sizeof(JSONParser)); if (!jp) return NULL; jp->buffer = NULL; jp->objectStack = arr; if (!js_AddRoot(cx, &jp->objectStack, "JSON parse stack")) goto bad; jp->hexChar = 0; jp->numHex = 0; jp->statep = jp->stateStack; *jp->statep = JSON_PARSE_STATE_INIT; jp->rootVal = rootVal; jp->objectKey = (JSStringBuffer*) JS_malloc(cx, sizeof(JSStringBuffer)); if (!jp->objectKey) goto bad; js_InitStringBuffer(jp->objectKey); jp->buffer = (JSStringBuffer*) JS_malloc(cx, sizeof(JSStringBuffer)); if (!jp->buffer) goto bad; js_InitStringBuffer(jp->buffer); return jp; bad: JS_free(cx, jp->buffer); JS_free(cx, jp); return NULL; }
static JSBool array_splice(JSContext *cx, JSObject *obj, uintN argc, jsval *argv, jsval *rval) { jsuint length, begin, end, count, delta, last; uintN i; jsdouble d; jsid id, id2; jsval v; JSObject *obj2; /* Nothing to do if no args. Otherwise lock and load length. */ if (argc == 0) return JS_TRUE; if (!js_GetLengthProperty(cx, obj, &length)) return JS_FALSE; /* Convert the first argument into a starting index. */ if (!js_ValueToNumber(cx, *argv, &d)) return JS_FALSE; d = js_DoubleToInteger(d); if (d < 0) { d += length; if (d < 0) d = 0; } else if (d > length) { d = length; } begin = (jsuint)d; /* d has been clamped to uint32 */ argc--; argv++; /* Convert the second argument from a count into a fencepost index. */ delta = length - begin; if (argc == 0) { count = delta; end = length; } else { if (!js_ValueToNumber(cx, *argv, &d)) return JS_FALSE; d = js_DoubleToInteger(d); if (d < 0) d = 0; else if (d > delta) d = delta; count = (jsuint)d; end = begin + count; argc--; argv++; } if (count == 1 && cx->version == JSVERSION_1_2) { /* * JS lacks "list context", whereby in Perl one turns the single * scalar that's spliced out into an array just by assigning it to * @single instead of $single, or by using it as Perl push's first * argument, for instance. * * JS1.2 emulated Perl too closely and returned a non-Array for * the single-splice-out case, requiring callers to test and wrap * in [] if necessary. So JS1.3, default, and other versions all * return an array of length 1 for uniformity. */ if (!IndexToId(cx, begin, &id)) return JS_FALSE; if (!OBJ_GET_PROPERTY(cx, obj, id, rval)) return JS_FALSE; } else { if (cx->version != JSVERSION_1_2 || count > 0) { /* * Create a new array value to return. Our ECMA v2 proposal specs * that splice always returns an array value, even when given no * arguments. We think this is best because it eliminates the need * for callers to do an extra test to handle the empty splice case. */ obj2 = js_NewArrayObject(cx, 0, NULL); if (!obj2) return JS_FALSE; *rval = OBJECT_TO_JSVAL(obj2); /* If there are elements to remove, put them into the return value. */ if (count > 0) { for (last = begin; last < end; last++) { if (!IndexToId(cx, last, &id)) return JS_FALSE; if (!IndexToId(cx, last - begin, &id2)) return JS_FALSE; if (!OBJ_GET_PROPERTY(cx, obj, id, &v)) return JS_FALSE; if (!OBJ_SET_PROPERTY(cx, obj2, id2, &v)) return JS_FALSE; } } } } /* Find the direction (up or down) to copy and make way for argv. */ if (argc > count) { delta = (jsuint)argc - count; last = length; /* (uint) end could be 0, so can't use vanilla >= test */ while (last-- > end) { if (!IndexToId(cx, last, &id)) return JS_FALSE; if (!IndexToId(cx, last + delta, &id2)) return JS_FALSE; if (!OBJ_GET_PROPERTY(cx, obj, id, &v)) return JS_FALSE; if (!OBJ_SET_PROPERTY(cx, obj, id2, &v)) return JS_FALSE; } length += delta; } else if (argc < count) { delta = count - (jsuint)argc; for (last = end; last < length; last++) { if (!IndexToId(cx, last, &id)) return JS_FALSE; if (!IndexToId(cx, last - delta, &id2)) return JS_FALSE; if (!OBJ_GET_PROPERTY(cx, obj, id, &v)) return JS_FALSE; if (!OBJ_SET_PROPERTY(cx, obj, id2, &v)) return JS_FALSE; } length -= delta; } /* Copy from argv into the hole to complete the splice. */ for (i = 0; i < argc; i++) { if (!IndexToId(cx, begin + i, &id)) return JS_FALSE; if (!OBJ_SET_PROPERTY(cx, obj, id, &argv[i])) return JS_FALSE; } /* Update length in case we deleted elements from the end. */ return js_SetLengthProperty(cx, obj, length); }