mirror of
https://github.com/jerryscript-project/jerryscript.git
synced 2025-12-15 16:29:21 +00:00
Fixed doc comments issues:
* Fixed mistyped param doc comments (`/**<` is OK, `/** <` is not).
* Put special characters (e.g., pipe, backslash, etc.) in quotes, as they can
confuse doxygen and it will print lots of various warnings. For the sake of
completeness and consistent style, also quote some special characters in
re-bytecode.h
* Added missing `@{`s, removed extra `@}`s.
* Turned `/*` comments to `/**<` doc comments.
Ensured same style for doc groups everywhere:
* Where `\addtogroup`, `@{`, and `@}` doxygen commands are used, the order to be
followed is: license, `#ifndef` guards (in headers), includes, `\addtogroup`
and `@{`, main code content, `@}`, `#endif` guards (in headers).
* Multiple `\addtogroup`s or multiple `@}`s should be in the same doc comment.
* First `\addtogroup` should be on the very first line of a doc comment, i.e.,
`/** \addtogroup`.
JerryScript-DCO-1.0-Signed-off-by: Akos Kiss akiss@inf.u-szeged.hu
375 lines
12 KiB
C
375 lines
12 KiB
C
/* Copyright 2014-2016 Samsung Electronics Co., Ltd.
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* Copyright 2016 University of Szeged.
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*
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* Licensed under the Apache License, Version 2.0 (the "License");
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* you may not use this file except in compliance with the License.
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* You may obtain a copy of the License at
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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*/
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#include "ecma-alloc.h"
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#include "ecma-globals.h"
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#include "ecma-helpers.h"
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#include "jrt.h"
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/** \addtogroup ecma ECMA
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* @{
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*
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* \addtogroup ecmahelpers Helpers for operations with ECMA data types
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* @{
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*/
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/**
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* Allocate a collection of ecma values.
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*
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* @return pointer to the collection's header
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*/
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ecma_collection_header_t *
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ecma_new_values_collection (const ecma_value_t values_buffer[], /**< ecma values */
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ecma_length_t values_number, /**< number of ecma values */
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bool do_ref_if_object) /**< if the value is object value,
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increase reference counter of the object */
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{
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JERRY_ASSERT (values_buffer != NULL || values_number == 0);
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const size_t values_in_chunk = JERRY_SIZE_OF_STRUCT_MEMBER (ecma_collection_chunk_t, data) / sizeof (ecma_value_t);
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ecma_collection_header_t *header_p = ecma_alloc_collection_header ();
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header_p->unit_number = values_number;
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mem_cpointer_t *next_chunk_cp_p = &header_p->first_chunk_cp;
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ecma_collection_chunk_t *last_chunk_p = NULL;
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ecma_value_t *cur_value_buf_iter_p = NULL;
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ecma_value_t *cur_value_buf_end_p = NULL;
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for (ecma_length_t value_index = 0;
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value_index < values_number;
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value_index++)
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{
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if (cur_value_buf_iter_p == cur_value_buf_end_p)
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{
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ecma_collection_chunk_t *chunk_p = ecma_alloc_collection_chunk ();
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ECMA_SET_POINTER (*next_chunk_cp_p, chunk_p);
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next_chunk_cp_p = &chunk_p->next_chunk_cp;
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cur_value_buf_iter_p = (ecma_value_t *) chunk_p->data;
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cur_value_buf_end_p = cur_value_buf_iter_p + values_in_chunk;
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last_chunk_p = chunk_p;
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}
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JERRY_ASSERT (cur_value_buf_iter_p + 1 <= cur_value_buf_end_p);
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if (do_ref_if_object)
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{
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*cur_value_buf_iter_p++ = ecma_copy_value (values_buffer[value_index]);
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}
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else
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{
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*cur_value_buf_iter_p++ = ecma_copy_value_if_not_object (values_buffer[value_index]);
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}
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}
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*next_chunk_cp_p = ECMA_NULL_POINTER;
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ECMA_SET_POINTER (header_p->last_chunk_cp, last_chunk_p);
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return header_p;
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} /* ecma_new_values_collection */
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/**
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* Free the collection of ecma values.
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*/
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void
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ecma_free_values_collection (ecma_collection_header_t *header_p, /**< collection's header */
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bool do_deref_if_object) /**< if the value is object value,
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decrement reference counter of the object */
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{
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JERRY_ASSERT (header_p != NULL);
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const size_t values_in_chunk = JERRY_SIZE_OF_STRUCT_MEMBER (ecma_collection_chunk_t, data) / sizeof (ecma_value_t);
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ecma_collection_chunk_t *chunk_p = ECMA_GET_POINTER (ecma_collection_chunk_t,
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header_p->first_chunk_cp);
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ecma_length_t value_index = 0;
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while (chunk_p != NULL)
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{
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JERRY_ASSERT (value_index < header_p->unit_number);
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ecma_value_t *cur_value_buf_iter_p = (ecma_value_t *) chunk_p->data;
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ecma_value_t *cur_value_buf_end_p = cur_value_buf_iter_p + values_in_chunk;
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while (cur_value_buf_iter_p != cur_value_buf_end_p
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&& value_index < header_p->unit_number)
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{
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JERRY_ASSERT (cur_value_buf_iter_p < cur_value_buf_end_p);
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if (do_deref_if_object)
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{
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ecma_free_value (*cur_value_buf_iter_p);
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}
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else
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{
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ecma_free_value_if_not_object (*cur_value_buf_iter_p);
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}
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cur_value_buf_iter_p++;
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value_index++;
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}
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ecma_collection_chunk_t *next_chunk_p = ECMA_GET_POINTER (ecma_collection_chunk_t,
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chunk_p->next_chunk_cp);
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ecma_dealloc_collection_chunk (chunk_p);
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chunk_p = next_chunk_p;
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}
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ecma_dealloc_collection_header (header_p);
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} /* ecma_free_values_collection */
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/**
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* Append new value to ecma values collection
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*/
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void
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ecma_append_to_values_collection (ecma_collection_header_t *header_p, /**< collection's header */
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ecma_value_t v, /**< ecma value to append */
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bool do_ref_if_object) /**< if the value is object value,
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increase reference counter of the object */
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{
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const size_t values_in_chunk = JERRY_SIZE_OF_STRUCT_MEMBER (ecma_collection_chunk_t, data) / sizeof (ecma_value_t);
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size_t values_number = header_p->unit_number;
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size_t pos_of_new_value_in_chunk = values_number % values_in_chunk;
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values_number++;
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if ((ecma_length_t) values_number == values_number)
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{
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header_p->unit_number = (ecma_length_t) values_number;
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}
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else
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{
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jerry_fatal (ERR_OUT_OF_MEMORY);
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}
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ecma_collection_chunk_t *chunk_p = ECMA_GET_POINTER (ecma_collection_chunk_t,
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header_p->last_chunk_cp);
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if (pos_of_new_value_in_chunk == 0)
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{
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/* all chunks are currently filled with values */
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chunk_p = ecma_alloc_collection_chunk ();
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chunk_p->next_chunk_cp = ECMA_NULL_POINTER;
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if (header_p->last_chunk_cp == ECMA_NULL_POINTER)
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{
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JERRY_ASSERT (header_p->first_chunk_cp == ECMA_NULL_POINTER);
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ECMA_SET_NON_NULL_POINTER (header_p->first_chunk_cp, chunk_p);
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}
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else
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{
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ecma_collection_chunk_t *last_chunk_p = ECMA_GET_NON_NULL_POINTER (ecma_collection_chunk_t,
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header_p->last_chunk_cp);
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JERRY_ASSERT (last_chunk_p->next_chunk_cp == ECMA_NULL_POINTER);
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ECMA_SET_NON_NULL_POINTER (last_chunk_p->next_chunk_cp, chunk_p);
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}
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ECMA_SET_NON_NULL_POINTER (header_p->last_chunk_cp, chunk_p);
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}
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else
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{
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/* last chunk can be appended with the new value */
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JERRY_ASSERT (chunk_p != NULL);
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}
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ecma_value_t *values_p = (ecma_value_t *) chunk_p->data;
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JERRY_ASSERT ((uint8_t *) (values_p + pos_of_new_value_in_chunk + 1) <= (uint8_t *) (chunk_p + 1));
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if (do_ref_if_object)
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{
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values_p[pos_of_new_value_in_chunk] = ecma_copy_value (v);
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}
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else
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{
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values_p[pos_of_new_value_in_chunk] = ecma_copy_value_if_not_object (v);
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}
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} /* ecma_append_to_values_collection */
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/**
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* Remove last element of the collection
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*
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* Warning:
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* the function invalidates all iterators that are configured to access the passed collection
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*/
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void
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ecma_remove_last_value_from_values_collection (ecma_collection_header_t *header_p) /**< collection's header */
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{
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JERRY_ASSERT (header_p != NULL && header_p->unit_number > 0);
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const size_t values_in_chunk = JERRY_SIZE_OF_STRUCT_MEMBER (ecma_collection_chunk_t, data) / sizeof (ecma_value_t);
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size_t values_number = header_p->unit_number;
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size_t pos_of_value_to_remove_in_chunk = (values_number - 1u) % values_in_chunk;
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ecma_collection_chunk_t *last_chunk_p = ECMA_GET_NON_NULL_POINTER (ecma_collection_chunk_t,
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header_p->last_chunk_cp);
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ecma_value_t *values_p = (ecma_value_t *) last_chunk_p->data;
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JERRY_ASSERT ((uint8_t *) (values_p + pos_of_value_to_remove_in_chunk + 1) <= (uint8_t *) (last_chunk_p + 1));
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ecma_value_t value_to_remove = values_p[pos_of_value_to_remove_in_chunk];
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ecma_free_value (value_to_remove);
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header_p->unit_number--;
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if (pos_of_value_to_remove_in_chunk == 0)
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{
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ecma_collection_chunk_t *chunk_to_remove_p = last_chunk_p;
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/* free last chunk */
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if (header_p->first_chunk_cp == header_p->last_chunk_cp)
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{
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header_p->first_chunk_cp = ECMA_NULL_POINTER;
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header_p->last_chunk_cp = ECMA_NULL_POINTER;
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}
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else
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{
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ecma_collection_chunk_t *chunk_iter_p = ECMA_GET_NON_NULL_POINTER (ecma_collection_chunk_t,
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header_p->first_chunk_cp);
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while (chunk_iter_p->next_chunk_cp != header_p->last_chunk_cp)
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{
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chunk_iter_p = ECMA_GET_NON_NULL_POINTER (ecma_collection_chunk_t,
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chunk_iter_p->next_chunk_cp);
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}
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ecma_collection_chunk_t *new_last_chunk_p = chunk_iter_p;
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JERRY_ASSERT (ECMA_GET_NON_NULL_POINTER (ecma_collection_chunk_t,
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new_last_chunk_p->next_chunk_cp) == chunk_to_remove_p);
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ECMA_SET_NON_NULL_POINTER (header_p->last_chunk_cp, new_last_chunk_p);
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new_last_chunk_p->next_chunk_cp = ECMA_NULL_POINTER;
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}
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ecma_dealloc_collection_chunk (chunk_to_remove_p);
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}
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} /* ecma_remove_last_value_from_values_collection */
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/**
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* Allocate a collection of ecma-strings.
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*
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* @return pointer to the collection's header
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*/
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ecma_collection_header_t *
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ecma_new_strings_collection (ecma_string_t *string_ptrs_buffer[], /**< pointers to ecma-strings */
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ecma_length_t strings_number) /**< number of ecma-strings */
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{
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JERRY_ASSERT (string_ptrs_buffer != NULL || strings_number == 0);
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ecma_collection_header_t *new_collection_p;
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new_collection_p = ecma_new_values_collection (NULL, 0, false);
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for (ecma_length_t string_index = 0;
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string_index < strings_number;
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string_index++)
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{
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ecma_append_to_values_collection (new_collection_p,
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ecma_make_string_value (string_ptrs_buffer[string_index]),
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false);
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}
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return new_collection_p;
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} /* ecma_new_strings_collection */
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/**
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* Initialize new collection iterator for the collection
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*/
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void
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ecma_collection_iterator_init (ecma_collection_iterator_t *iterator_p, /**< context of iterator */
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ecma_collection_header_t *collection_p) /**< header of collection */
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{
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iterator_p->header_p = collection_p;
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iterator_p->next_chunk_cp = (collection_p != NULL ? collection_p->first_chunk_cp : MEM_CP_NULL);
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iterator_p->current_index = 0;
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iterator_p->current_value_p = NULL;
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iterator_p->current_chunk_end_p = NULL;
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} /* ecma_collection_iterator_init */
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/**
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* Move collection iterator to next element if there is any.
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*
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* @return true - if iterator moved,
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* false - otherwise (current element is last element in the collection)
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*/
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bool
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ecma_collection_iterator_next (ecma_collection_iterator_t *iterator_p) /**< context of iterator */
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{
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if (iterator_p->header_p == NULL
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|| unlikely (iterator_p->header_p->unit_number == 0))
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{
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return false;
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}
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const size_t values_in_chunk = JERRY_SIZE_OF_STRUCT_MEMBER (ecma_collection_chunk_t, data) / sizeof (ecma_value_t);
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if (iterator_p->current_value_p == NULL)
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{
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JERRY_ASSERT (iterator_p->current_index == 0);
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ecma_collection_chunk_t *first_chunk_p = ECMA_GET_NON_NULL_POINTER (ecma_collection_chunk_t,
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iterator_p->header_p->first_chunk_cp);
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iterator_p->next_chunk_cp = first_chunk_p->next_chunk_cp;
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iterator_p->current_value_p = (ecma_value_t *) &first_chunk_p->data;
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iterator_p->current_chunk_end_p = (iterator_p->current_value_p + values_in_chunk);
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}
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else
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{
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if (iterator_p->current_index + 1 == iterator_p->header_p->unit_number)
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{
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return false;
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}
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JERRY_ASSERT (iterator_p->current_index + 1 < iterator_p->header_p->unit_number);
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iterator_p->current_index++;
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iterator_p->current_value_p++;
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}
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if (iterator_p->current_value_p == iterator_p->current_chunk_end_p)
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{
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ecma_collection_chunk_t *next_chunk_p = ECMA_GET_POINTER (ecma_collection_chunk_t,
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iterator_p->next_chunk_cp);
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JERRY_ASSERT (next_chunk_p != NULL);
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iterator_p->next_chunk_cp = next_chunk_p->next_chunk_cp;
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iterator_p->current_value_p = (ecma_value_t *) &next_chunk_p->data;
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iterator_p->current_chunk_end_p = iterator_p->current_value_p + values_in_chunk;
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}
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else
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{
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JERRY_ASSERT (iterator_p->current_value_p < iterator_p->current_chunk_end_p);
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}
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return true;
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} /* ecma_collection_iterator_next */
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/**
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* @}
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* @}
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*/
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