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ecma-globals.h
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2278 lines (1984 loc) · 74.5 KB
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/* Copyright JS Foundation and other contributors, http://js.foundation
*
* Licensed under the Apache License, Version 2.0 (the "License");
* you may not use this file except in compliance with the License.
* You may obtain a copy of the License at
*
* http://www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing, software
* distributed under the License is distributed on an "AS IS" BASIS
* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
* See the License for the specific language governing permissions and
* limitations under the License.
*/
#ifndef ECMA_GLOBALS_H
#define ECMA_GLOBALS_H
#include "ecma-errors.h"
#include "config.h"
#include "jmem.h"
#include "jrt.h"
#include "lit-magic-strings.h"
/** \addtogroup ecma ECMA
* @{
*
* \addtogroup ecmatypes ECMA types
* @{
*
* \addtogroup compressedpointer Compressed pointer
* @{
*/
/**
* The NULL value for compressed pointers
*/
#define ECMA_NULL_POINTER JMEM_CP_NULL
#if defined(JMEM_CAN_STORE_POINTER_VALUE_DIRECTLY)
/**
* JMEM_ALIGNMENT_LOG aligned pointers can be stored directly in ecma_value_t
*/
#define ECMA_VALUE_CAN_STORE_UINTPTR_VALUE_DIRECTLY
#endif /* JMEM_CAN_STORE_POINTER_VALUE_DIRECTLY */
/**
* @}
*/
/**
* JerryScript status flags.
*/
typedef enum
{
ECMA_STATUS_API_ENABLED = (1u << 0), /**< api available */
ECMA_STATUS_DIRECT_EVAL = (1u << 1), /**< eval is called directly */
#if JERRY_PROPERTY_HASHMAP
ECMA_STATUS_HIGH_PRESSURE_GC = (1u << 2), /**< last gc was under high pressure */
#endif /* JERRY_PROPERTY_HASHMAP */
ECMA_STATUS_EXCEPTION = (1u << 3), /**< last exception is a normal exception */
ECMA_STATUS_ABORT = (1u << 4), /**< last exception is an abort */
ECMA_STATUS_ERROR_UPDATE = (1u << 5), /**< the error_object_created_callback_p is called */
#if JERRY_VM_THROW
ECMA_STATUS_ERROR_THROWN = (1u << 6), /**< the vm_throw_callback_p is called */
#endif /* JERRY_VM_THROW */
} ecma_status_flag_t;
/**
* Type of ecma value
*/
typedef enum
{
ECMA_TYPE_DIRECT = 0, /**< directly encoded value, a 28 bit signed integer or a simple value */
ECMA_TYPE_STRING = 1, /**< pointer to description of a string */
ECMA_TYPE_FLOAT = 2, /**< pointer to a 64 or 32 bit floating point number */
ECMA_TYPE_OBJECT = 3, /**< pointer to description of an object */
ECMA_TYPE_SYMBOL = 4, /**< pointer to description of a symbol */
ECMA_TYPE_DIRECT_STRING = 5, /**< directly encoded string values */
ECMA_TYPE_BIGINT = 6, /**< pointer to a bigint primitive */
ECMA_TYPE_ERROR = 7, /**< pointer to description of an error reference (only supported by C API) */
ECMA_TYPE_SNAPSHOT_OFFSET = ECMA_TYPE_ERROR, /**< offset to a snapshot number/string */
ECMA_TYPE___MAX = ECMA_TYPE_ERROR /** highest value for ecma types */
} ecma_type_t;
/**
* Option flags for parser_parse_script and internal flags for global_status_flags in parser context.
*/
typedef enum
{
ECMA_PARSE_NO_OPTS = 0, /**< no options passed */
ECMA_PARSE_STRICT_MODE = (1u << 0), /**< enable strict mode, must be same as PARSER_IS_STRICT */
ECMA_PARSE_MODULE = (1u << 1), /**< module is parsed */
ECMA_PARSE_EVAL = (1u << 2), /**< eval is called */
ECMA_PARSE_DIRECT_EVAL = (1u << 3), /**< eval is called directly (ECMA-262 v5, 15.1.2.1.1) */
ECMA_PARSE_CLASS_CONSTRUCTOR = (1u << 4), /**< a class constructor is being parsed */
/* These five status flags must be in this order. The first four are also parser status flags.
* See PARSER_SAVE_STATUS_FLAGS / PARSER_RESTORE_STATUS_FLAGS. */
ECMA_PARSE_ALLOW_SUPER = (1u << 5), /**< allow super property access */
ECMA_PARSE_ALLOW_SUPER_CALL = (1u << 6), /**< allow super constructor call */
ECMA_PARSE_FUNCTION_IS_PARSING_ARGS = (1u << 7), /**< set when parsing function arguments */
ECMA_PARSE_INSIDE_CLASS_FIELD = (1u << 8), /**< a class field is being parsed */
ECMA_PARSE_ALLOW_NEW_TARGET = (1u << 9), /**< allow new.target access */
ECMA_PARSE_FUNCTION_CONTEXT = (1u << 10), /**< function context is present (ECMA_PARSE_DIRECT_EVAL must be set) */
ECMA_PARSE_HAS_SOURCE_VALUE = (1u << 11), /**< source_p points to a value list
* and the first value is the source code */
ECMA_PARSE_HAS_ARGUMENT_LIST_VALUE = (1u << 12), /**< source_p points to a value list
* and the second value is the argument list */
ECMA_PARSE_GENERATOR_FUNCTION = (1u << 13), /**< generator function is parsed */
ECMA_PARSE_ASYNC_FUNCTION = (1u << 14), /**< async function is parsed */
/* These flags are internally used by the parser. */
ECMA_PARSE_INTERNAL_FREE_SOURCE = (1u << 15), /**< free source_p data */
ECMA_PARSE_INTERNAL_FREE_ARG_LIST = (1u << 16), /**< free arg_list_p data */
ECMA_PARSE_INTERNAL_PRE_SCANNING = (1u << 17), /**< the parser is in pre-scanning mode */
#if JERRY_MODULE_SYSTEM
ECMA_PARSE_INTERNAL_HAS_IMPORT_META = (1u << 18), /**< module has import.meta expression */
#endif /* JERRY_MODULE_SYSTEM */
#if JERRY_FUNCTION_TO_STRING
ECMA_PARSE_INTERNAL_HAS_4_BYTE_MARKER = (1u << 19), /**< source has 4 byte marker */
#endif /* JERRY_FUNCTION_TO_STRING */
#ifndef JERRY_NDEBUG
/**
* This flag represents an error in for in/of statements, which cannot be set
* if the parsing is completed successfully.
*/
ECMA_PARSE_INTERNAL_FOR_IN_OFF_CONTEXT_ERROR = (1u << 30),
#endif /* !JERRY_NDEBUG */
} ecma_parse_opts_t;
/**
* Description of an ecma value
*
* Bit-field structure: type (3) | value (29)
*/
typedef uint32_t ecma_value_t;
/**
* Type for directly encoded integer numbers in JerryScript.
*/
typedef int32_t ecma_integer_value_t;
/**
* Mask for ecma types in ecma_value_t
*/
#define ECMA_VALUE_TYPE_MASK 0x7u
/**
* Shift for value part in ecma_value_t
*/
#define ECMA_VALUE_SHIFT 3
/**
* Mask for directly encoded values
*/
#define ECMA_DIRECT_TYPE_MASK ((1u << ECMA_VALUE_SHIFT) | ECMA_VALUE_TYPE_MASK)
/**
* Ecma integer value type
*/
#define ECMA_DIRECT_TYPE_INTEGER_VALUE ((0u << ECMA_VALUE_SHIFT) | ECMA_TYPE_DIRECT)
/**
* Ecma simple value type
*/
#define ECMA_DIRECT_TYPE_SIMPLE_VALUE ((1u << ECMA_VALUE_SHIFT) | ECMA_TYPE_DIRECT)
/**
* Shift for directly encoded values in ecma_value_t
*/
#define ECMA_DIRECT_SHIFT 4
/**
* ECMA make simple value
*/
#define ECMA_MAKE_VALUE(value) ((((ecma_value_t) (value)) << ECMA_DIRECT_SHIFT) | ECMA_DIRECT_TYPE_SIMPLE_VALUE)
/**
* Simple ecma values
*/
enum
{
/**
* Empty value is implementation defined value, used for representing:
* - empty (uninitialized) values
* - immutable binding values
* - special register or stack values for vm
*/
ECMA_VALUE_EMPTY = ECMA_MAKE_VALUE (0), /**< uninitialized value */
ECMA_VALUE_ERROR = ECMA_MAKE_VALUE (1), /**< an error is currently thrown */
ECMA_VALUE_FALSE = ECMA_MAKE_VALUE (2), /**< boolean false */
ECMA_VALUE_TRUE = ECMA_MAKE_VALUE (3), /**< boolean true */
ECMA_VALUE_UNDEFINED = ECMA_MAKE_VALUE (4), /**< undefined value */
ECMA_VALUE_NULL = ECMA_MAKE_VALUE (5), /**< null value */
ECMA_VALUE_UNINITIALIZED = ECMA_MAKE_VALUE (6), /**< a special value for uninitialized let/const declarations */
ECMA_VALUE_NOT_FOUND = ECMA_MAKE_VALUE (7), /**< a special value returned by
* ecma_op_object_find */
/* Values for controlling the VM */
ECMA_VALUE_ARRAY_HOLE = ECMA_MAKE_VALUE (8), /**< array hole, used for
* initialization of an array literal */
ECMA_VALUE_REGISTER_REF = ECMA_MAKE_VALUE (9), /**< register reference,
* a special "base" value for vm */
ECMA_VALUE_RELEASE_LEX_ENV = ECMA_MAKE_VALUE (10), /**< if this error remains on the stack when an exception occurs
the top lexical environment of the VM frame should be popped */
ECMA_VALUE_SPREAD_ELEMENT = ECMA_MAKE_VALUE (11), /**< a special value for spread elements in array initialization
* or function call argument list */
/* Other values */
ECMA_VALUE_ARGUMENT_NO_TRACK = ECMA_MAKE_VALUE (12), /**< represents not-tracked arguments formal parameter */
ECMA_VALUE_SYNC_ITERATOR = ECMA_MAKE_VALUE (13), /**< option for ecma_op_get_iterator: sync iterator is requested */
ECMA_VALUE_ASYNC_ITERATOR = ECMA_MAKE_VALUE (14), /**< option for ecma_op_get_iterator: async iterator is requested */
#if JERRY_BUILTIN_GLOBAL_THIS
ECMA_VALUE_GLOBAL_THIS = ECMA_MAKE_VALUE (15), /**< globalThis built-in */
#endif /* JERRY_BUILTIN_GLOBAL_THIS */
};
#if !JERRY_NUMBER_TYPE_FLOAT64
/**
* Maximum integer number for an ecma value
*/
#define ECMA_INTEGER_NUMBER_MAX 0x7fffff
/**
* Maximum integer number for an ecma value (shifted left with ECMA_DIRECT_SHIFT)
*/
#define ECMA_INTEGER_NUMBER_MAX_SHIFTED 0x7fffff0
#else /* JERRY_NUMBER_TYPE_FLOAT64 */
/**
* Maximum integer number for an ecma value
*/
#define ECMA_INTEGER_NUMBER_MAX 0x7ffffff
/**
* Maximum integer number for an ecma value (shifted left with ECMA_DIRECT_SHIFT)
*/
#define ECMA_INTEGER_NUMBER_MAX_SHIFTED 0x7ffffff0
#endif /* !JERRY_NUMBER_TYPE_FLOAT64 */
#if !JERRY_NUMBER_TYPE_FLOAT64
/**
* Minimum integer number for an ecma value
*/
#define ECMA_INTEGER_NUMBER_MIN -0x7fffff
/**
* Minimum integer number for an ecma value (shifted left with ECMA_DIRECT_SHIFT)
*/
#define ECMA_INTEGER_NUMBER_MIN_SHIFTED -0x7fffff0
#else /* JERRY_NUMBER_TYPE_FLOAT64 */
/**
* Minimum integer number for an ecma value
*/
#define ECMA_INTEGER_NUMBER_MIN -0x8000000
/**
* Minimum integer number for an ecma value (shifted left with ECMA_DIRECT_SHIFT)
*/
#define ECMA_INTEGER_NUMBER_MIN_SHIFTED (-0x7fffffff - 1) /* -0x80000000 */
#endif /* !JERRY_NUMBER_TYPE_FLOAT64 */
#if ECMA_DIRECT_SHIFT != 4
#error "Please update ECMA_INTEGER_NUMBER_MIN/MAX_SHIFTED according to the new value of ECMA_DIRECT_SHIFT."
#endif /* ECMA_DIRECT_SHIFT != 4 */
/**
* Checks whether the integer number is in the integer number range.
*/
#define ECMA_IS_INTEGER_NUMBER(num) (ECMA_INTEGER_NUMBER_MIN <= (num) && (num) <= ECMA_INTEGER_NUMBER_MAX)
/**
* Maximum integer number, which if squared, still fits in ecma_integer_value_t
*/
#if !JERRY_NUMBER_TYPE_FLOAT64
#define ECMA_INTEGER_MULTIPLY_MAX 0xb50
#else /* JERRY_NUMBER_TYPE_FLOAT64 */
#define ECMA_INTEGER_MULTIPLY_MAX 0x2d41
#endif /* !JERRY_NUMBER_TYPE_FLOAT64 */
/**
* Checks whether the error flag is set.
*/
#define ECMA_IS_VALUE_ERROR(value) (JERRY_UNLIKELY ((value) == ECMA_VALUE_ERROR))
/**
* Callback which tells whether the ECMAScript execution should be stopped.
*/
typedef ecma_value_t (*ecma_vm_exec_stop_callback_t) (void *user_p);
/**
* Forward definition of jerry_call_info_t.
*/
struct jerry_call_info_t;
/**
* Type of an external function handler.
*/
typedef ecma_value_t (*ecma_native_handler_t) (const struct jerry_call_info_t *call_info_p,
const ecma_value_t args_p[],
const uint32_t args_count);
/**
* Representation of native pointer data.
*/
typedef struct
{
void *native_p; /**< points to the data of the object */
jerry_object_native_info_t *native_info_p; /**< native info */
} ecma_native_pointer_t;
/**
* Representation of native pointer data chain.
*/
typedef struct ecma_native_pointer_chain_t
{
ecma_native_pointer_t data; /**< pointer data */
struct ecma_native_pointer_chain_t *next_p; /**< next in the list */
} ecma_native_pointer_chain_t;
/**
* Representation for class constructor environment record.
*/
typedef struct
{
ecma_value_t this_binding; /**< this binding */
ecma_value_t function_object; /**< function object */
} ecma_environment_record_t;
/**
* Property list:
* The property list of an object is a chain list of various items.
* The type of each item is stored in the first byte of the item.
*
* The most common item is the property pair, which contains two
* ecmascript properties. It is also important, that after the
* first property pair, only property pair items are allowed.
*
* Example for other items is property name hash map, or array of items.
*/
/**
* Property name listing options.
*/
typedef enum
{
ECMA_LIST_NO_OPTS = (0), /**< no options are provided */
ECMA_LIST_ARRAY_INDICES = (1 << 0), /**< exclude properties with names
* that are not indices */
ECMA_LIST_ENUMERABLE = (1 << 1), /**< exclude non-enumerable properties */
ECMA_LIST_PROTOTYPE = (1 << 2), /**< list properties from prototype chain */
ECMA_LIST_SYMBOLS = (1 << 3), /**< list symbol properties */
ECMA_LIST_SYMBOLS_ONLY = (1 << 4), /**< list symbol properties only */
ECMA_LIST_CONVERT_FAST_ARRAYS = (1 << 5), /**< after listing the properties convert
* the fast access mode array back to normal array */
} ecma_list_properties_options_t;
/**
* Enumerable property name listing options.
*/
typedef enum
{
ECMA_ENUMERABLE_PROPERTY_KEYS, /**< List only property names */
ECMA_ENUMERABLE_PROPERTY_VALUES, /**< List only property values */
ECMA_ENUMERABLE_PROPERTY_ENTRIES, /**< List both propery names and values */
ECMA_ENUMERABLE_PROPERTY__COUNT /**< Number of enumerable property listing types */
} ecma_enumerable_property_names_options_t;
/**
* List enumerable properties and include the prototype chain.
*/
#define ECMA_LIST_ENUMERABLE_PROTOTYPE (ECMA_LIST_ENUMERABLE | ECMA_LIST_PROTOTYPE)
/**
* Property flag list. Several flags are alias
*/
typedef enum
{
ECMA_PROPERTY_FLAG_CONFIGURABLE = (1u << 0), /**< property is configurable */
ECMA_PROPERTY_FLAG_ENUMERABLE = (1u << 1), /**< property is enumerable */
ECMA_PROPERTY_FLAG_WRITABLE = (1u << 2), /**< property is writable */
ECMA_PROPERTY_FLAG_SINGLE_EXTERNAL = (1u << 2), /**< only one external pointer is assigned to this object */
ECMA_PROPERTY_FLAG_DELETED = (1u << 3), /**< property is deleted */
ECMA_PROPERTY_FLAG_BUILT_IN = (1u << 3), /**< property is defined by the ECMAScript standard */
ECMA_FAST_ARRAY_FLAG = (1u << 3), /**< array is fast array */
ECMA_PROPERTY_FLAG_LCACHED = (1u << 4), /**< property is lcached */
ECMA_ARRAY_TEMPLATE_LITERAL = (1u << 4), /**< array is a template literal constructed by the parser */
ECMA_PROPERTY_FLAG_DATA = (1u << 5), /**< property contains data */
/* The last two bits contains an ECMA_DIRECT_STRING value. */
} ecma_property_flags_t;
/**
* Property flags configurable, enumerable, writable.
*/
#define ECMA_PROPERTY_CONFIGURABLE_ENUMERABLE_WRITABLE \
(ECMA_PROPERTY_FLAG_CONFIGURABLE | ECMA_PROPERTY_FLAG_ENUMERABLE | ECMA_PROPERTY_FLAG_WRITABLE)
/**
* Property flags configurable, enumerable.
*/
#define ECMA_PROPERTY_CONFIGURABLE_ENUMERABLE (ECMA_PROPERTY_FLAG_CONFIGURABLE | ECMA_PROPERTY_FLAG_ENUMERABLE)
/**
* Property flags configurable, enumerable.
*/
#define ECMA_PROPERTY_CONFIGURABLE_WRITABLE (ECMA_PROPERTY_FLAG_CONFIGURABLE | ECMA_PROPERTY_FLAG_WRITABLE)
/**
* Property flag built-in.
*/
#define ECMA_PROPERTY_BUILT_IN_FIXED (ECMA_PROPERTY_FLAG_BUILT_IN)
/**
* Property flags enumerable, writable.
*/
#define ECMA_PROPERTY_ENUMERABLE_WRITABLE (ECMA_PROPERTY_FLAG_ENUMERABLE | ECMA_PROPERTY_FLAG_WRITABLE)
/**
* Property flags built-in, configurable.
*/
#define ECMA_PROPERTY_BUILT_IN_CONFIGURABLE (ECMA_PROPERTY_FLAG_BUILT_IN | ECMA_PROPERTY_FLAG_CONFIGURABLE)
/**
* Property flags built-in, configurable, enumerable.
*/
#define ECMA_PROPERTY_BUILT_IN_CONFIGURABLE_ENUMERABLE \
(ECMA_PROPERTY_FLAG_BUILT_IN | ECMA_PROPERTY_CONFIGURABLE_ENUMERABLE)
/**
* Property flags built-in, configurable, writable.
*/
#define ECMA_PROPERTY_BUILT_IN_CONFIGURABLE_WRITABLE (ECMA_PROPERTY_FLAG_BUILT_IN | ECMA_PROPERTY_CONFIGURABLE_WRITABLE)
/**
* Property flags built-in, writable.
*/
#define ECMA_PROPERTY_BUILT_IN_WRITABLE (ECMA_PROPERTY_FLAG_BUILT_IN | ECMA_PROPERTY_FLAG_WRITABLE)
/**
* Property flags built-in, configurable, enumerable, writable.
*/
#define ECMA_PROPERTY_BUILT_IN_CONFIGURABLE_ENUMERABLE_WRITABLE \
(ECMA_PROPERTY_FLAG_BUILT_IN | ECMA_PROPERTY_CONFIGURABLE_ENUMERABLE_WRITABLE)
/**
* No attributes can be changed for this property.
*/
#define ECMA_PROPERTY_FIXED 0
/**
* Default flag of length property.
*/
#define ECMA_PROPERTY_FLAG_DEFAULT_LENGTH ECMA_PROPERTY_FLAG_CONFIGURABLE
/**
* Shift for property name part.
*/
#define ECMA_PROPERTY_NAME_TYPE_SHIFT 6
/**
* Type of hash-map property.
*/
#define ECMA_PROPERTY_TYPE_HASHMAP (ECMA_DIRECT_STRING_SPECIAL << ECMA_PROPERTY_NAME_TYPE_SHIFT)
/**
* Type of deleted property.
*/
#define ECMA_PROPERTY_TYPE_DELETED \
(ECMA_PROPERTY_FLAG_DELETED | (ECMA_DIRECT_STRING_SPECIAL << ECMA_PROPERTY_NAME_TYPE_SHIFT))
/**
* Type of property not found.
*/
#define ECMA_PROPERTY_TYPE_NOT_FOUND ECMA_PROPERTY_TYPE_HASHMAP
/**
* Type of property not found and no more searching in the proto chain.
*/
#define ECMA_PROPERTY_TYPE_NOT_FOUND_AND_STOP ECMA_PROPERTY_TYPE_DELETED
/**
* Type of property not found and an exception is thrown.
*/
#define ECMA_PROPERTY_TYPE_NOT_FOUND_AND_THROW \
(ECMA_PROPERTY_FLAG_LCACHED | (ECMA_DIRECT_STRING_SPECIAL << ECMA_PROPERTY_NAME_TYPE_SHIFT))
/**
* Checks whether a property is not found.
*/
#define ECMA_PROPERTY_IS_FOUND(property) \
(((property) & (ECMA_PROPERTY_FLAG_DATA | (ECMA_DIRECT_STRING_SPECIAL << ECMA_PROPERTY_NAME_TYPE_SHIFT))) \
!= (ECMA_DIRECT_STRING_SPECIAL << ECMA_PROPERTY_NAME_TYPE_SHIFT))
/**
* Abstract property representation.
*
* A property is a type_and_flags byte and an ecma_value_t value pair.
* This pair is represented by a single pointer in JerryScript. Although
* a packed struct would only consume sizeof(ecma_value_t)+1 memory
* bytes, accessing such structure is inefficient from the CPU viewpoint
* because the value is not naturally aligned. To improve performance,
* two type bytes and values are packed together. The memory layout is
* the following:
*
* [type 1, type 2, unused byte 1, unused byte 2][value 1][value 2]
*
* The unused two bytes are used to store a compressed pointer for the
* next property pair.
*
* The advantage of this layout is that the value reference can be computed
* from the property address. However, property pointers cannot be compressed
* anymore.
*/
typedef uint8_t ecma_property_t; /**< ecma_property_types_t (3 bit) and ecma_property_flags_t */
/**
* Number of items in a property pair.
*/
#define ECMA_PROPERTY_PAIR_ITEM_COUNT 2
/**
* Property header for all items in a property list.
*/
typedef struct
{
#if JERRY_CPOINTER_32_BIT
jmem_cpointer_t next_property_cp; /**< next cpointer */
#endif /* JERRY_CPOINTER_32_BIT */
ecma_property_t types[ECMA_PROPERTY_PAIR_ITEM_COUNT]; /**< two property type slot. The first represent
* the type of this property (e.g. property pair) */
#if JERRY_CPOINTER_32_BIT
uint16_t padding; /**< an unused value */
#else /* !JERRY_CPOINTER_32_BIT */
jmem_cpointer_t next_property_cp; /**< next cpointer */
#endif /* JERRY_CPOINTER_32_BIT */
} ecma_property_header_t;
/**
* Pair of pointers - to property's getter and setter
*/
typedef struct
{
jmem_cpointer_t getter_cp; /**< compressed pointer to getter object */
jmem_cpointer_t setter_cp; /**< compressed pointer to setter object */
} ecma_getter_setter_pointers_t;
/**
* Property data.
*/
typedef union
{
ecma_value_t value; /**< value of a property */
#if JERRY_CPOINTER_32_BIT
jmem_cpointer_t getter_setter_pair_cp; /**< cpointer to getter setter pair */
#else /* !JERRY_CPOINTER_32_BIT */
ecma_getter_setter_pointers_t getter_setter_pair; /**< getter setter pair */
#endif /* JERRY_CPOINTER_32_BIT */
} ecma_property_value_t;
/**
* Property pair.
*/
typedef struct
{
ecma_property_header_t header; /**< header of the property */
ecma_property_value_t values[ECMA_PROPERTY_PAIR_ITEM_COUNT]; /**< property value slots */
jmem_cpointer_t names_cp[ECMA_PROPERTY_PAIR_ITEM_COUNT]; /**< property name slots */
} ecma_property_pair_t;
/**
* Get property name type.
*/
#define ECMA_PROPERTY_GET_NAME_TYPE(property) ((property) >> ECMA_PROPERTY_NAME_TYPE_SHIFT)
/**
* Returns true if the property pointer is a property pair.
*/
#define ECMA_PROPERTY_IS_PROPERTY_PAIR(property_header_p) ((property_header_p)->types[0] != ECMA_PROPERTY_TYPE_HASHMAP)
/**
* Property value of all internal properties
*/
#define ECMA_PROPERTY_INTERNAL (ECMA_PROPERTY_FLAG_DATA | (ECMA_DIRECT_STRING_SPECIAL << ECMA_PROPERTY_NAME_TYPE_SHIFT))
/**
* Checks whether a property is internal property
*/
#define ECMA_PROPERTY_IS_INTERNAL(property) ((property) >= ECMA_PROPERTY_INTERNAL)
/**
* Checks whether a property is raw data or accessor property
*/
#define ECMA_PROPERTY_IS_RAW(property) ((property) < (ECMA_DIRECT_STRING_SPECIAL << ECMA_PROPERTY_NAME_TYPE_SHIFT))
/**
* Checks whether a property is raw data property (should only be used in assertions)
*/
#define ECMA_PROPERTY_IS_RAW_DATA(property) \
(((property) &ECMA_PROPERTY_FLAG_DATA) && (property) < ECMA_PROPERTY_INTERNAL)
/**
* Create internal property.
*/
#define ECMA_CREATE_INTERNAL_PROPERTY(object_p, name_p, property_p, property_value_p) \
do \
{ \
(property_value_p) = ecma_create_named_data_property ((object_p), (name_p), 0, &(property_p)); \
JERRY_ASSERT (*(property_p) == ECMA_PROPERTY_INTERNAL); \
} while (0)
/**
* Property type of all virtual properties
*/
#define ECMA_PROPERTY_VIRTUAL ECMA_PROPERTY_INTERNAL
/**
* Checks whether a property is virtual property
*/
#define ECMA_PROPERTY_IS_VIRTUAL(property) ECMA_PROPERTY_IS_INTERNAL (property)
/**
* Returns true if the property is named property.
*/
#define ECMA_PROPERTY_IS_NAMED_PROPERTY(property) \
((property) < ECMA_PROPERTY_TYPE_HASHMAP || (property) >= ECMA_PROPERTY_INTERNAL)
/**
* Add the offset part to a property for computing its property data pointer.
*/
#define ECMA_PROPERTY_VALUE_ADD_OFFSET(property_p) \
((uintptr_t) ((((uint8_t *) (property_p)) + (sizeof (ecma_property_value_t) * 2 - 1))))
/**
* Align the property for computing its property data pointer.
*/
#define ECMA_PROPERTY_VALUE_DATA_PTR(property_p) \
(ECMA_PROPERTY_VALUE_ADD_OFFSET (property_p) & ~(sizeof (ecma_property_value_t) - 1))
/**
* Compute the property data pointer of a property.
* The property must be part of a property pair.
*/
#define ECMA_PROPERTY_VALUE_PTR(property_p) ((ecma_property_value_t *) ECMA_PROPERTY_VALUE_DATA_PTR (property_p))
/**
* Property reference. It contains the value pointer
* for real, and the value itself for virtual properties.
*/
typedef union
{
ecma_property_value_t *value_p; /**< property value pointer for real properties */
ecma_value_t virtual_value; /**< property value for virtual properties */
} ecma_property_ref_t;
/**
* Extended property reference, which also contains the
* property descriptor pointer for real properties.
*/
typedef struct
{
ecma_property_ref_t property_ref; /**< property reference */
ecma_property_t *property_p; /**< property descriptor pointer for real properties */
} ecma_extended_property_ref_t;
/**
* Option flags for ecma_op_object_get_property.
*/
typedef enum
{
ECMA_PROPERTY_GET_NO_OPTIONS = 0, /**< no option flags for ecma_op_object_get_property */
ECMA_PROPERTY_GET_VALUE = 1u << 0, /**< fill virtual_value field for virtual properties */
ECMA_PROPERTY_GET_EXT_REFERENCE = 1u << 1, /**< get extended reference to the property */
} ecma_property_get_option_bits_t;
/**
* Internal object types.
*/
typedef enum
{
ECMA_OBJECT_TYPE_GENERAL = 0, /**< all objects that are not belongs to the sub-types below */
ECMA_OBJECT_TYPE_BUILT_IN_GENERAL = 1, /**< built-in general object */
ECMA_OBJECT_TYPE_CLASS = 2, /**< Objects with class property */
ECMA_OBJECT_TYPE_BUILT_IN_CLASS = 3, /**< built-in object with class property */
ECMA_OBJECT_TYPE_ARRAY = 4, /**< Array object (15.4) */
ECMA_OBJECT_TYPE_BUILT_IN_ARRAY = 5, /**< Built-in array object */
ECMA_OBJECT_TYPE_PROXY = 6, /**< Proxy object ECMAScript v6 26.2 */
/* Note: these 4 types must be in this order. See IsCallable operation. */
ECMA_OBJECT_TYPE_FUNCTION = 7, /**< Function objects (15.3), created through 13.2 routine */
ECMA_OBJECT_TYPE_BUILT_IN_FUNCTION = 8, /**< Native built-in function object */
ECMA_OBJECT_TYPE_BOUND_FUNCTION = 9, /**< Function objects (15.3), created through 15.3.4.5 routine */
ECMA_OBJECT_TYPE_CONSTRUCTOR_FUNCTION = 10, /**< implicit class constructor function */
ECMA_OBJECT_TYPE_NATIVE_FUNCTION = 11, /**< Native function object */
ECMA_OBJECT_TYPE__MAX /**< maximum value */
} ecma_object_type_t;
/**
* Base object types without built-in flag.
*
* Note:
* only these types can be checked with ecma_get_object_base_type.
*/
typedef enum
{
ECMA_OBJECT_BASE_TYPE_GENERAL = ECMA_OBJECT_TYPE_GENERAL, /**< generic objects */
ECMA_OBJECT_BASE_TYPE_CLASS = ECMA_OBJECT_TYPE_CLASS, /**< Objects with class property */
ECMA_OBJECT_BASE_TYPE_ARRAY = ECMA_OBJECT_TYPE_ARRAY, /**< Array object (15.4) */
} ecma_object_base_type_t;
/**
* Types of objects with class property.
*
* Note:
* when this type is changed, both ecma_class_object_magic_string_id
* and jerry_class_object_type must be updated as well
*/
typedef enum
{
/* These objects require custom property resolving. */
ECMA_OBJECT_CLASS_STRING, /**< String Object (ECMAScript v5.1, 4.3.18) */
ECMA_OBJECT_CLASS_ARGUMENTS, /**< Arguments object (10.6) */
#if JERRY_BUILTIN_TYPEDARRAY
ECMA_OBJECT_CLASS_TYPEDARRAY, /**< TypedArray which does NOT need extra space to store length and offset */
#endif /* JERRY_BUILTIN_TYPEDARRAY */
#if JERRY_MODULE_SYSTEM
ECMA_OBJECT_CLASS_MODULE_NAMESPACE, /**< Module Namespace (ECMAScript v11, 9.4.6) */
#endif /* JERRY_MODULE_SYSTEM */
/* These objects are marked by Garbage Collector. */
ECMA_OBJECT_CLASS_GENERATOR, /**< Generator object (ECMAScript v6, 25.2) */
ECMA_OBJECT_CLASS_ASYNC_GENERATOR, /**< Async generator object (ECMAScript v11, 25.3) */
ECMA_OBJECT_CLASS_ARRAY_ITERATOR, /**< Array iterator object (ECMAScript v6, 22.1.5.1) */
ECMA_OBJECT_CLASS_SET_ITERATOR, /**< Set iterator object (ECMAScript v6, 23.2.5.1) */
ECMA_OBJECT_CLASS_MAP_ITERATOR, /**< Map iterator object (ECMAScript v6, 23.1.5.1) */
#if JERRY_BUILTIN_REGEXP
ECMA_OBJECT_CLASS_REGEXP_STRING_ITERATOR, /** RegExp string iterator object (ECMAScript v11, 21.2.7) */
#endif /* JERRY_BUILTIN_REGEXP */
#if JERRY_MODULE_SYSTEM
ECMA_OBJECT_CLASS_MODULE, /**< Module (ECMAScript v6, 15.2) */
#endif /* JERRY_MODULE_SYSTEM */
ECMA_OBJECT_CLASS_PROMISE, /**< Promise (ECMAScript v6, 25.4) */
ECMA_OBJECT_CLASS_PROMISE_CAPABILITY, /**< Promise capability (ECMAScript v6, 25.4.1.1) */
ECMA_OBJECT_CLASS_ASYNC_FROM_SYNC_ITERATOR, /**< AsyncFromSyncIterator (ECMAScript v11, 25.1.4) */
#if JERRY_BUILTIN_DATAVIEW
ECMA_OBJECT_CLASS_DATAVIEW, /**< DataView (ECMAScript v6, 24.2) */
#endif /* JERRY_BUILTIN_DATAVIEW */
#if JERRY_BUILTIN_CONTAINER
ECMA_OBJECT_CLASS_CONTAINER, /**< Container (Map, WeakMap, Set, WeakSet) */
#endif /* JERRY_BUILTIN_CONTAINER */
/* Normal objects. */
ECMA_OBJECT_CLASS_BOOLEAN, /**< Boolean Object (ECMAScript v5.1, 4.3.15) */
ECMA_OBJECT_CLASS_NUMBER, /**< Number Object (ECMAScript v5.1, 4.3.21) */
ECMA_OBJECT_CLASS_ERROR, /**< Error Object (ECMAScript v5.1, 15.11) */
ECMA_OBJECT_CLASS_INTERNAL_OBJECT, /**< object for internal properties */
#if JERRY_PARSER
ECMA_OBJECT_CLASS_SCRIPT, /**< Compiled ECMAScript byte code */
#endif /* JERRY_PARSER */
#if JERRY_BUILTIN_DATE
ECMA_OBJECT_CLASS_DATE, /**< Date Object (ECMAScript v5.1, 15.9) */
#endif /* JERRY_BUILTIN_DATE */
#if JERRY_BUILTIN_REGEXP
ECMA_OBJECT_CLASS_REGEXP, /**< RegExp Object (ECMAScript v5.1, 15.10) */
#endif /* JERRY_BUILTIN_REGEXP */
ECMA_OBJECT_CLASS_SYMBOL, /**< Symbol object (ECMAScript v6, 4.3.27) */
ECMA_OBJECT_CLASS_STRING_ITERATOR, /**< String iterator object (ECMAScript v6, 22.1.5.1) */
#if JERRY_BUILTIN_TYPEDARRAY
ECMA_OBJECT_CLASS_ARRAY_BUFFER, /**< Array Buffer (ECMAScript v6, 24.1) */
#endif /* JERRY_BUILTIN_TYPEDARRAY */
#if JERRY_BUILTIN_SHAREDARRAYBUFFER
ECMA_OBJECT_CLASS_SHARED_ARRAY_BUFFER, /**< Shared Array Buffer (ECMAScript v11 24.2) */
#endif /* JERRY_BUILTIN_SHAREDARRAYBUFFER */
#if JERRY_BUILTIN_BIGINT
ECMA_OBJECT_CLASS_BIGINT, /**< Bigint (ECMAScript v11, 4.3.27) */
#endif /* JERRY_BUILTIN_BIGINT */
#if JERRY_BUILTIN_WEAKREF
ECMA_OBJECT_CLASS_WEAKREF, /**< WeakRef (Not standardized yet) */
#endif /* JERRY_BUILTIN_WEAKREF */
ECMA_OBJECT_CLASS__MAX /**< maximum value */
} ecma_object_class_type_t;
/**
* Types of lexical environments.
*/
typedef enum
{
/* Types between 0 - 12 are ecma_object_type_t. */
ECMA_LEXICAL_ENVIRONMENT_DECLARATIVE = 13, /**< declarative lexical environment */
ECMA_LEXICAL_ENVIRONMENT_CLASS = 14, /**< lexical environment with class */
ECMA_LEXICAL_ENVIRONMENT_THIS_OBJECT_BOUND = 15, /**< object-bound lexical environment */
ECMA_LEXICAL_ENVIRONMENT_TYPE_START = ECMA_LEXICAL_ENVIRONMENT_DECLARATIVE, /**< first lexical
* environment type */
ECMA_LEXICAL_ENVIRONMENT_TYPE__MAX = ECMA_LEXICAL_ENVIRONMENT_THIS_OBJECT_BOUND /**< maximum value */
} ecma_lexical_environment_type_t;
/**
* Types of array iterators.
*/
typedef enum
{
ECMA_ITERATOR_KEYS, /**< keys iterator */
ECMA_ITERATOR_VALUES, /**< values iterator */
ECMA_ITERATOR_ENTRIES, /**< entries iterator */
ECMA_ITERATOR__COUNT, /**< number of iterator kinds */
} ecma_iterator_kind_t;
/**
* Offset for JERRY_CONTEXT (status_flags) top 8 bits.
*/
#define ECMA_LOCAL_PARSE_OPTS_OFFSET ((sizeof (uint32_t) - sizeof (uint8_t)) * JERRY_BITSINBYTE)
/**
* Set JERRY_CONTEXT (status_flags) top 8 bits to the specified 'opts'.
*/
#define ECMA_SET_LOCAL_PARSE_OPTS(opts) \
do \
{ \
JERRY_CONTEXT (status_flags) |= ((uint32_t) opts << ECMA_LOCAL_PARSE_OPTS_OFFSET) | ECMA_STATUS_DIRECT_EVAL; \
} while (0)
/**
* Get JERRY_CONTEXT (status_flags) top 8 bits.
*/
#define ECMA_GET_LOCAL_PARSE_OPTS() \
(JERRY_CONTEXT (status_flags) >> (ECMA_LOCAL_PARSE_OPTS_OFFSET - JERRY_LOG2 (ECMA_PARSE_ALLOW_SUPER)))
/**
* Clear JERRY_CONTEXT (status_flags) top 8 bits.
*/
#define ECMA_CLEAR_LOCAL_PARSE_OPTS() \
do \
{ \
JERRY_CONTEXT (status_flags) &= ((1 << ECMA_LOCAL_PARSE_OPTS_OFFSET) - 1); \
} while (0)
/**
* Ecma object type mask for getting the object type.
*/
#define ECMA_OBJECT_TYPE_MASK 0x00fu
/**
* Extensible object.
*/
#define ECMA_OBJECT_FLAG_EXTENSIBLE 0x10
/**
* Declarative lexical environments created for non-closure code blocks
*/
#define ECMA_OBJECT_FLAG_BLOCK ECMA_OBJECT_FLAG_EXTENSIBLE
/**
* Lexical environments with class has extra data
*/
#define ECMA_OBJECT_FLAG_LEXICAL_ENV_HAS_DATA ECMA_OBJECT_FLAG_EXTENSIBLE
/**
* Bitshift index for an ecma-object reference count field
*/
#define ECMA_OBJECT_REF_SHIFT 5
/**
* Value for increasing or decreasing the object reference counter.
*/
#define ECMA_OBJECT_REF_ONE (1u << ECMA_OBJECT_REF_SHIFT)
#if JERRY_CPOINTER_32_BIT
/**
* Type of the descriptor field of an object
*/
typedef uint32_t ecma_object_descriptor_t;
#else /* !JERRY_CPOINTER_32_BIT */
/**
* Type of the descriptor field of an object
*/
typedef uint16_t ecma_object_descriptor_t;
#endif /* JERRY_CPOINTER_32_BIT */
/**
* Bitmask for an ecma-object reference count field
*/
#define ECMA_OBJECT_REF_MASK ((ecma_object_descriptor_t) (~0u << ECMA_OBJECT_REF_SHIFT))
/**
* Represents non-visited white object
*/
#define ECMA_OBJECT_NON_VISITED ECMA_OBJECT_REF_MASK
/**
* Maximum value of the object reference counter (1022 / 67108862).
*/
#define ECMA_OBJECT_MAX_REF (ECMA_OBJECT_NON_VISITED - ECMA_OBJECT_REF_ONE)
/**
* Description of ECMA-object or lexical environment
* (depending on is_lexical_environment).
*/
typedef struct
{
/** type : 4 bit : ecma_object_type_t or ecma_lexical_environment_type_t
depending on ECMA_OBJECT_FLAG_BUILT_IN_OR_LEXICAL_ENV
flags : 2 bit : ECMA_OBJECT_FLAG_BUILT_IN_OR_LEXICAL_ENV,
ECMA_OBJECT_FLAG_EXTENSIBLE or ECMA_OBJECT_FLAG_BLOCK
refs : 10 / 26 bit (max 1022 / 67108862) */
ecma_object_descriptor_t type_flags_refs;
/** next in the object chain maintained by the garbage collector */
jmem_cpointer_t gc_next_cp;
/** compressed pointer to property list or bound object */
union
{
jmem_cpointer_t property_list_cp; /**< compressed pointer to object's
* or declerative lexical environments's property list */
jmem_cpointer_t bound_object_cp; /**< compressed pointer to lexical environments's the bound object */
jmem_cpointer_t home_object_cp; /**< compressed pointer to lexical environments's the home object */
} u1;
/** object prototype or outer reference */
union
{
jmem_cpointer_t prototype_cp; /**< compressed pointer to the object's prototype */
jmem_cpointer_t outer_reference_cp; /**< compressed pointer to the lexical environments's outer reference */
} u2;
} ecma_object_t;
/**
* Description of built-in properties of an object.
*/
typedef struct
{
uint8_t id; /**< built-in id */
uint8_t routine_id; /**< routine id for built-in functions */
/** built-in specific field */
union
{
uint8_t length_and_bitset_size; /**< length and bit set size for generic built-ins */
uint8_t routine_index; /**< property descriptor index for built-in routines */
} u;
/** extra built-in info */
union
{
uint8_t instantiated_bitset[1]; /**< instantiated property bit set for generic built-ins */
uint8_t routine_flags; /**< flags for built-in routines */
} u2;
#if JERRY_BUILTIN_REALMS
ecma_value_t realm_value; /**< realm value */
#else /* !JERRY_BUILTIN_REALMS */
uint32_t continue_instantiated_bitset[1]; /**< bit set for instantiated properties */
#endif /* JERRY_BUILTIN_REALMS */
} ecma_built_in_props_t;
/**
* Type of a built-in function handler.
*/
typedef ecma_value_t (*ecma_builtin_handler_t) (ecma_object_t *function_obj_p,
const ecma_value_t args_p[],
const uint32_t args_count);
#if JERRY_BUILTIN_REALMS
/**
* Number of bits available in the instantiated bitset without allocation
*/
#define ECMA_BUILTIN_INSTANTIATED_BITSET_MIN_SIZE (8)
#else /* !JERRY_BUILTIN_REALMS */
/**
* Number of bits available in the instantiated bitset without allocation
*/
#define ECMA_BUILTIN_INSTANTIATED_BITSET_MIN_SIZE (8 + 32)
#endif /* JERRY_BUILTIN_REALMS */
/**
* Builtin routine function object status flags
*/
typedef enum
{
ECMA_BUILTIN_ROUTINE_NO_OPTS = 0, /**< No options are provided */
ECMA_BUILTIN_ROUTINE_LENGTH_INITIALIZED = (1u << 0), /**< 'length' property has been initialized */
ECMA_BUILTIN_ROUTINE_NAME_INITIALIZED = (1u << 1), /**< 'name' property has been initialized */
ECMA_BUILTIN_ROUTINE_GETTER = (1u << 2), /**< this routine is getter */
ECMA_BUILTIN_ROUTINE_SETTER = (1u << 3), /**< this routine is setter */
} ecma_builtin_routine_flags_t;
/**
* Start position of bit set size in length_and_bitset_size field.
*/
#define ECMA_BUILT_IN_BITSET_SHIFT 5
/**
* Description of extended ECMA-object.
*