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https://github.com/asterisk/asterisk.git
synced 2025-09-29 18:19:30 +00:00
Merge "vector: Additional enhancements and fixes"
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@@ -389,6 +389,28 @@ int __ast_test_status_update(const char *file, const char *func, int line, struc
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} \
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} while(0)
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/*!
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* \brief Check a test condition, report error and goto cleanup label if failed.
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*
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* \since 13.4.0
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*
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* This macro evaluates \a condition. If the condition evaluates to true (non-zero),
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* nothing happens. If it evaluates to false (zero), then the failure is printed
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* using \ref ast_test_status_update, the variable \a rc_variable is set to AST_TEST_FAIL,
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* and a goto to \a cleanup_label is executed.
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*
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* \param test Currently executing test
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* \param condition Boolean condition to check.
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* \param rc_variable Variable to receive AST_TEST_FAIL.
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* \param cleanup_label The label to go to on failure.
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*/
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#define ast_test_validate_cleanup(test, condition, rc_variable, cleanup_label) ({ \
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if (!(condition)) { \
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ast_test_status_update((test), "%s: %s\n", "Condition failed", #condition); \
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rc_variable = AST_TEST_FAIL; \
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goto cleanup_label; \
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} \
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})
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#endif /* TEST_FRAMEWORK */
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#endif /* _AST_TEST_H */
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@@ -122,6 +122,19 @@
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(vec)->current = 0; \
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} while (0)
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/*!
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* \brief Deallocates this vector pointer.
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*
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* If any code to free the elements of this vector need to be run, that should
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* be done prior to this call.
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*
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* \param vec Pointer to a malloc'd vector structure.
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*/
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#define AST_VECTOR_PTR_FREE(vec) do { \
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AST_VECTOR_FREE(vec); \
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ast_free(vec); \
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} while (0)
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/*!
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* \brief Deallocates this locked vector
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*
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@@ -135,6 +148,44 @@
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ast_rwlock_destroy(&(vec)->lock); \
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} while(0)
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/*!
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* \brief Deallocates this locked vector pointer.
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*
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* If any code to free the elements of this vector need to be run, that should
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* be done prior to this call.
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*
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* \param vec Pointer to a malloc'd vector structure.
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*/
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#define AST_VECTOR_RW_PTR_FREE(vec) do { \
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AST_VECTOR_RW_FREE(vec); \
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ast_free(vec); \
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} while(0)
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/*!
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* \internal
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*/
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#define __make_room(idx, vec) ({ \
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int res = 0; \
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do { \
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if ((idx) >= (vec)->max) { \
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size_t new_max = ((idx) + 1) * 2; \
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typeof((vec)->elems) new_elems = ast_calloc(1, \
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new_max * sizeof(*new_elems)); \
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if (new_elems) { \
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memcpy(new_elems, (vec)->elems, \
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(vec)->current * sizeof(*new_elems)); \
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ast_free((vec)->elems); \
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(vec)->elems = new_elems; \
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(vec)->max = new_max; \
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} else { \
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res = -1; \
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break; \
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} \
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} \
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} while(0); \
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res; \
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})
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/*!
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* \brief Append an element to a vector, growing the vector if needed.
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*
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@@ -145,23 +196,15 @@
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* \return Non-zero on failure.
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*/
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#define AST_VECTOR_APPEND(vec, elem) ({ \
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int res = 0; \
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do { \
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if ((vec)->current + 1 > (vec)->max) { \
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size_t new_max = (vec)->max ? 2 * (vec)->max : 1; \
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typeof((vec)->elems) new_elems = ast_realloc( \
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(vec)->elems, new_max * sizeof(*new_elems)); \
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if (new_elems) { \
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(vec)->elems = new_elems; \
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(vec)->max = new_max; \
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} else { \
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res = -1; \
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break; \
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} \
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} \
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int res = 0; \
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do { \
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if (__make_room((vec)->current, vec) != 0) { \
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res = -1; \
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break; \
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} \
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(vec)->elems[(vec)->current++] = (elem); \
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} while (0); \
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res; \
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} while (0); \
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res; \
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})
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/*!
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@@ -180,30 +223,19 @@
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* index means you can not use the UNORDERED assortment of macros. These macros alter the ordering
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* of the vector itself.
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*/
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#define AST_VECTOR_REPLACE(vec, idx, elem) ({ \
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int res = 0; \
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do { \
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if (((idx) + 1) > (vec)->max) { \
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size_t new_max = ((idx) + 1) * 2; \
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typeof((vec)->elems) new_elems = ast_calloc(1, \
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new_max * sizeof(*new_elems)); \
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if (new_elems) { \
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memcpy(new_elems, (vec)->elems, \
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(vec)->current * sizeof(*new_elems)); \
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ast_free((vec)->elems); \
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(vec)->elems = new_elems; \
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(vec)->max = new_max; \
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} else { \
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res = -1; \
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break; \
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} \
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} \
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(vec)->elems[(idx)] = (elem); \
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if (((idx) + 1) > (vec)->current) { \
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(vec)->current = (idx) + 1; \
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} \
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} while(0); \
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res; \
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#define AST_VECTOR_REPLACE(vec, idx, elem) ({ \
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int res = 0; \
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do { \
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if (__make_room((idx), vec) != 0) { \
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res = -1; \
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break; \
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} \
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(vec)->elems[(idx)] = (elem); \
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if (((idx) + 1) > (vec)->current) { \
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(vec)->current = (idx) + 1; \
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} \
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} while(0); \
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res; \
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})
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/*!
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@@ -226,22 +258,16 @@
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int res = 0; \
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size_t __move; \
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do { \
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if ((vec)->current + 1 > (vec)->max) { \
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size_t new_max = (vec)->max ? 2 * (vec)->max : 1; \
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typeof((vec)->elems) new_elems = ast_realloc( \
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(vec)->elems, new_max * sizeof(*new_elems)); \
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if (new_elems) { \
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(vec)->elems = new_elems; \
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(vec)->max = new_max; \
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} else { \
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res = -1; \
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break; \
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} \
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if (__make_room(((idx) > (vec)->current ? (idx) : (vec)->current), vec) != 0) { \
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res = -1; \
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break; \
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} \
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if ((vec)->current > 0 && (idx) < (vec)->current) { \
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__move = ((vec)->current - (idx)) * sizeof(typeof((vec)->elems[0])); \
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memmove(&(vec)->elems[(idx) + 1], &(vec)->elems[(idx)], __move); \
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} \
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__move = ((vec)->current - 1) * sizeof(typeof((vec)->elems[0])); \
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memmove(&(vec)->elems[(idx) + 1], &(vec)->elems[(idx)], __move); \
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(vec)->elems[(idx)] = (elem); \
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(vec)->current++; \
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(vec)->current = ((idx) > (vec)->current ? (idx) : (vec)->current) + 1; \
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} while (0); \
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res; \
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})
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@@ -441,25 +467,127 @@
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})
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/*!
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* \brief Execute a callback on every element in a vector
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* \brief Default callback for AST_VECTOR_CALLBACK()
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*
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* \param elem Element to compare against
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* \param value Value to compare with the vector element.
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*
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* \return CMP_MATCH always.
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*/
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#define AST_VECTOR_MATCH_ALL(element) (CMP_MATCH)
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/*!
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* \brief Execute a callback on every element in a vector returning the first matched
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*
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* \param vec Vector to operate on.
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* \param callback A callback that takes at least 1 argument (the element)
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* plus number of optional arguments
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* \param default_value A default value to return if no elements matched
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*
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* \return the first element matched before CMP_STOP was returned
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* or the end of the vector was reached. Otherwise, default_value
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*/
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#define AST_VECTOR_CALLBACK(vec, callback, default_value, ...) ({ \
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size_t idx; \
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typeof((vec)->elems[0]) res = default_value; \
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for (idx = 0; idx < (vec)->current; idx++) { \
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int rc = callback((vec)->elems[idx], ##__VA_ARGS__); \
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if (rc & CMP_MATCH) { \
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res = (vec)->elems[idx]; \
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break; \
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}\
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if (rc & CMP_STOP) { \
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break; \
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}\
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} \
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res; \
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})
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/*!
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* \brief Execute a callback on every element in a vector returning the matching
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* elements in a new vector
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*
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* \param vec Vector to operate on.
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* \param callback A callback that takes at least 1 argument (the element)
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* plus number of optional arguments
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*
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* \return the number of elements visited before the end of the vector
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* was reached or CMP_STOP was returned.
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* \return a vector containing the elements matched before CMP_STOP was returned
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* or the end of the vector was reached. The vector may be empty and could be NULL
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* if there was not enough memory to allocate it's control structure.
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*
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* \warning The returned vector must have AST_VECTOR_PTR_FREE()
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* called on it after you've finished with it.
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*
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* \note The type of the returned vector must be traceable to the original vector.
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*
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* The following will resut in "error: assignment from incompatible pointer type"
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* because these declare 2 different structures.
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*
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* \code
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* AST_VECTOR(, char *) vector_1;
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* AST_VECTOR(, char *) *vector_2;
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*
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* vector_2 = AST_VECTOR_CALLBACK_MULTIPLE(&vector_1, callback);
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* \endcode
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*
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* This will work because you're using the type of the first
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* to declare the second:
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*
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* \code
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* AST_VECTOR(mytype, char *) vector_1;
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* struct mytype *vector_2 = NULL;
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*
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* vector_2 = AST_VECTOR_CALLBACK_MULTIPLE(&vector_1, callback);
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* \endcode
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*
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* This will also work because you're declaring both vector_1 and
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* vector_2 from the same definition.
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*
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* \code
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* AST_VECTOR(, char *) vector_1, *vector_2 = NULL;
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*
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* vector_2 = AST_VECTOR_CALLBACK_MULTIPLE(&vector_1, callback);
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* \endcode
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*/
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#define AST_VECTOR_CALLBACK(vec, callback, ...) ({ \
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#define AST_VECTOR_CALLBACK_MULTIPLE(vec, callback, ...) ({ \
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size_t idx; \
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typeof((vec)) new_vec; \
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do { \
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new_vec = ast_malloc(sizeof(*new_vec)); \
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if (!new_vec) { \
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break; \
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} \
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if (AST_VECTOR_INIT(new_vec, AST_VECTOR_SIZE((vec))) != 0) { \
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ast_free(new_vec); \
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new_vec = NULL; \
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break; \
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} \
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for (idx = 0; idx < (vec)->current; idx++) { \
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int rc = callback((vec)->elems[idx], ##__VA_ARGS__); \
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if (rc & CMP_MATCH) { \
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AST_VECTOR_APPEND(new_vec, (vec)->elems[idx]); \
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} \
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if (rc & CMP_STOP) { \
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break; \
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}\
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} \
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} while(0); \
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new_vec; \
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})
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/*!
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* \brief Execute a callback on every element in a vector disregarding callback return
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*
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* \param vec Vector to operate on.
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* \param callback A callback that takes at least 1 argument (the element)
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* plus number of optional arguments
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*/
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#define AST_VECTOR_CALLBACK_VOID(vec, callback, ...) ({ \
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size_t idx; \
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for (idx = 0; idx < (vec)->current; idx++) { \
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int rc = callback((vec)->elems[idx], ##__VA_ARGS__); \
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if (rc == CMP_STOP) { \
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idx++; \
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break; \
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}\
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callback((vec)->elems[idx], ##__VA_ARGS__); \
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} \
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idx; \
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})
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/*!
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