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posix: Sync regex with gnulib
It sync with gnulib commit 6cfb4302b3e1da14d706198b693558290e9b00f4 and contains the fixes: https://git.savannah.gnu.org/cgit/gnulib.git/commit/?id=32915b2a8a43825720755113bdffe9f67a591748 https://git.savannah.gnu.org/cgit/gnulib.git/commit/?id=48f07576b8cd935b48e1050551f45ab1a79b9f01 https://git.savannah.gnu.org/cgit/gnulib.git/commit/?id=5e407aba1f775d51b25481cb55f324c9868f62d7 https://git.savannah.gnu.org/cgit/gnulib.git/commit/?id=4e02b30c761c76d04057fa5f6bba71401f9310cd https://git.savannah.gnu.org/cgit/gnulib.git/commit/?id=79f8ee4e389f8cb1339f8abed9a7d29816e2a2d4 Checked on x86_64-linux-gnu and i686-linux-gnu.
This commit is contained in:
parent
4ecd584908
commit
2a0356e119
@ -1,2 +1,4 @@
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/* Gnulib <verify.h>, simplified by assuming GCC 4.6 or later. */
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#define verify(R) _Static_assert (R, "verify (" #R ")")
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#define assume(R) ((R) ? (void) 0 : __builtin_unreachable ())
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@ -1436,7 +1436,7 @@ link_nfa_nodes (void *extra, bin_tree_t *node)
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break;
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case END_OF_RE:
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assert (node->next == NULL);
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DEBUG_ASSERT (node->next == NULL);
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break;
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case OP_DUP_ASTERISK:
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@ -1452,8 +1452,8 @@ link_nfa_nodes (void *extra, bin_tree_t *node)
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right = node->right->first->node_idx;
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else
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right = node->next->node_idx;
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assert (left > -1);
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assert (right > -1);
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DEBUG_ASSERT (left > -1);
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DEBUG_ASSERT (right > -1);
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err = re_node_set_init_2 (dfa->edests + idx, left, right);
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}
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break;
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@ -1471,7 +1471,7 @@ link_nfa_nodes (void *extra, bin_tree_t *node)
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break;
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default:
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assert (!IS_EPSILON_NODE (node->token.type));
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DEBUG_ASSERT (!IS_EPSILON_NODE (node->token.type));
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dfa->nexts[idx] = node->next->node_idx;
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break;
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}
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@ -1653,9 +1653,7 @@ calc_eclosure (re_dfa_t *dfa)
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{
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Idx node_idx;
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bool incomplete;
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#ifdef DEBUG
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assert (dfa->nodes_len > 0);
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#endif
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DEBUG_ASSERT (dfa->nodes_len > 0);
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incomplete = false;
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/* For each nodes, calculate epsilon closure. */
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for (node_idx = 0; ; ++node_idx)
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@ -1670,9 +1668,7 @@ calc_eclosure (re_dfa_t *dfa)
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node_idx = 0;
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}
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#ifdef DEBUG
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assert (dfa->eclosures[node_idx].nelem != -1);
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#endif
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DEBUG_ASSERT (dfa->eclosures[node_idx].nelem != -1);
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/* If we have already calculated, skip it. */
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if (dfa->eclosures[node_idx].nelem != 0)
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@ -2442,9 +2438,7 @@ parse_expression (re_string_t *regexp, regex_t *preg, re_token_t *token,
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default:
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/* Must not happen? */
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#ifdef DEBUG
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assert (0);
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#endif
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DEBUG_ASSERT (false);
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return NULL;
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}
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fetch_token (token, regexp, syntax);
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@ -3306,7 +3300,7 @@ parse_bracket_exp (re_string_t *regexp, re_dfa_t *dfa, re_token_t *token,
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goto parse_bracket_exp_free_return;
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break;
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default:
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assert (0);
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DEBUG_ASSERT (false);
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break;
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}
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}
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@ -3662,7 +3656,6 @@ build_charclass_op (re_dfa_t *dfa, RE_TRANSLATE_TYPE trans,
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Idx alloc = 0;
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#endif /* not RE_ENABLE_I18N */
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reg_errcode_t ret;
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re_token_t br_token;
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bin_tree_t *tree;
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sbcset = (re_bitset_ptr_t) calloc (sizeof (bitset_t), 1);
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@ -3713,11 +3706,7 @@ build_charclass_op (re_dfa_t *dfa, RE_TRANSLATE_TYPE trans,
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#endif
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/* Build a tree for simple bracket. */
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#if defined GCC_LINT || defined lint
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memset (&br_token, 0, sizeof br_token);
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#endif
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br_token.type = SIMPLE_BRACKET;
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br_token.opr.sbcset = sbcset;
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re_token_t br_token = { .type = SIMPLE_BRACKET, .opr.sbcset = sbcset };
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tree = create_token_tree (dfa, NULL, NULL, &br_token);
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if (__glibc_unlikely (tree == NULL))
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goto build_word_op_espace;
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@ -3808,11 +3797,7 @@ static bin_tree_t *
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create_tree (re_dfa_t *dfa, bin_tree_t *left, bin_tree_t *right,
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re_token_type_t type)
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{
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re_token_t t;
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#if defined GCC_LINT || defined lint
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memset (&t, 0, sizeof t);
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#endif
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t.type = type;
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re_token_t t = { .type = type };
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return create_token_tree (dfa, left, right, &t);
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}
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@ -212,7 +212,7 @@ build_wcs_buffer (re_string_t *pstr)
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{
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#ifdef _LIBC
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unsigned char buf[MB_LEN_MAX];
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assert (MB_LEN_MAX >= pstr->mb_cur_max);
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DEBUG_ASSERT (MB_LEN_MAX >= pstr->mb_cur_max);
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#else
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unsigned char buf[64];
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#endif
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@ -285,7 +285,7 @@ build_wcs_upper_buffer (re_string_t *pstr)
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size_t mbclen;
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#ifdef _LIBC
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char buf[MB_LEN_MAX];
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assert (MB_LEN_MAX >= pstr->mb_cur_max);
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DEBUG_ASSERT (pstr->mb_cur_max <= MB_LEN_MAX);
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#else
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char buf[64];
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#endif
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@ -685,9 +685,7 @@ re_string_reconstruct (re_string_t *pstr, Idx idx, int eflags)
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pstr->valid_len - offset);
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pstr->valid_len -= offset;
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pstr->valid_raw_len -= offset;
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#if defined DEBUG && DEBUG
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assert (pstr->valid_len > 0);
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#endif
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DEBUG_ASSERT (pstr->valid_len > 0);
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}
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}
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else
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@ -941,10 +939,7 @@ re_string_context_at (const re_string_t *input, Idx idx, int eflags)
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Idx wc_idx = idx;
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while(input->wcs[wc_idx] == WEOF)
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{
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#if defined DEBUG && DEBUG
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/* It must not happen. */
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assert (wc_idx >= 0);
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#endif
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DEBUG_ASSERT (wc_idx >= 0);
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--wc_idx;
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if (wc_idx < 0)
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return input->tip_context;
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@ -20,7 +20,6 @@
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#ifndef _REGEX_INTERNAL_H
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#define _REGEX_INTERNAL_H 1
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#include <assert.h>
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#include <ctype.h>
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#include <stdio.h>
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#include <stdlib.h>
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@ -34,6 +33,14 @@
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#include <stdint.h>
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#include <intprops.h>
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#include <verify.h>
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#if defined DEBUG && DEBUG != 0
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# include <assert.h>
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# define DEBUG_ASSERT(x) assert (x)
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#else
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# define DEBUG_ASSERT(x) assume (x)
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#endif
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#ifdef _LIBC
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# include <libc-lock.h>
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@ -44,22 +51,7 @@
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# define lock_unlock(lock) __libc_lock_unlock (lock)
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#elif defined GNULIB_LOCK && !defined USE_UNLOCKED_IO
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# include "glthread/lock.h"
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/* Use gl_lock_define if empty macro arguments are known to work.
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Otherwise, fall back on less-portable substitutes. */
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# if ((defined __GNUC__ && !defined __STRICT_ANSI__) \
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|| (defined __STDC_VERSION__ && 199901L <= __STDC_VERSION__))
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# define lock_define(name) gl_lock_define (, name)
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# elif USE_POSIX_THREADS
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# define lock_define(name) pthread_mutex_t name;
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# elif USE_PTH_THREADS
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# define lock_define(name) pth_mutex_t name;
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# elif USE_SOLARIS_THREADS
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# define lock_define(name) mutex_t name;
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# elif USE_WINDOWS_THREADS
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# define lock_define(name) gl_lock_t name;
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# else
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# define lock_define(name)
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# endif
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# define lock_define(name) gl_lock_define (, name)
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# define lock_init(lock) glthread_lock_init (&(lock))
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# define lock_fini(lock) glthread_lock_destroy (&(lock))
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# define lock_lock(lock) glthread_lock_lock (&(lock))
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@ -618,11 +610,7 @@ typedef struct
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{
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/* The string object corresponding to the input string. */
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re_string_t input;
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#if defined _LIBC || (defined __STDC_VERSION__ && __STDC_VERSION__ >= 199901L)
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const re_dfa_t *const dfa;
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#else
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const re_dfa_t *dfa;
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#endif
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/* EFLAGS of the argument of regexec. */
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int eflags;
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/* Where the matching ends. */
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@ -443,7 +443,7 @@ re_search_stub (struct re_pattern_buffer *bufp, const char *string, Idx length,
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{
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if (ret_len)
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{
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assert (pmatch[0].rm_so == start);
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DEBUG_ASSERT (pmatch[0].rm_so == start);
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rval = pmatch[0].rm_eo - start;
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}
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else
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@ -502,9 +502,9 @@ re_copy_regs (struct re_registers *regs, regmatch_t *pmatch, Idx nregs,
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}
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else
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{
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assert (regs_allocated == REGS_FIXED);
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DEBUG_ASSERT (regs_allocated == REGS_FIXED);
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/* This function may not be called with REGS_FIXED and nregs too big. */
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assert (regs->num_regs >= nregs);
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DEBUG_ASSERT (nregs <= regs->num_regs);
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rval = REGS_FIXED;
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}
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@ -597,21 +597,12 @@ re_search_internal (const regex_t *preg, const char *string, Idx length,
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Idx extra_nmatch;
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bool sb;
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int ch;
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#if defined _LIBC || (defined __STDC_VERSION__ && __STDC_VERSION__ >= 199901L)
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re_match_context_t mctx = { .dfa = dfa };
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#else
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re_match_context_t mctx;
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#endif
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char *fastmap = ((preg->fastmap != NULL && preg->fastmap_accurate
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&& start != last_start && !preg->can_be_null)
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? preg->fastmap : NULL);
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RE_TRANSLATE_TYPE t = preg->translate;
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#if !(defined _LIBC || (defined __STDC_VERSION__ && __STDC_VERSION__ >= 199901L))
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memset (&mctx, '\0', sizeof (re_match_context_t));
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mctx.dfa = dfa;
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#endif
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extra_nmatch = (nmatch > preg->re_nsub) ? nmatch - (preg->re_nsub + 1) : 0;
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nmatch -= extra_nmatch;
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@ -622,10 +613,8 @@ re_search_internal (const regex_t *preg, const char *string, Idx length,
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|| dfa->init_state_begbuf == NULL))
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return REG_NOMATCH;
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#ifdef DEBUG
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/* We assume front-end functions already check them. */
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assert (0 <= last_start && last_start <= length);
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#endif
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DEBUG_ASSERT (0 <= last_start && last_start <= length);
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/* If initial states with non-begbuf contexts have no elements,
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the regex must be anchored. If preg->newline_anchor is set,
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@ -677,8 +666,6 @@ re_search_internal (const regex_t *preg, const char *string, Idx length,
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goto free_return;
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}
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}
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else
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mctx.state_log = NULL;
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match_first = start;
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mctx.input.tip_context = (eflags & REG_NOTBOL) ? CONTEXT_BEGBUF
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@ -838,10 +825,8 @@ re_search_internal (const regex_t *preg, const char *string, Idx length,
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match_ctx_clean (&mctx);
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}
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#ifdef DEBUG
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assert (match_last != -1);
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assert (err == REG_NOERROR);
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#endif
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DEBUG_ASSERT (match_last != -1);
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DEBUG_ASSERT (err == REG_NOERROR);
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/* Set pmatch[] if we need. */
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if (nmatch > 0)
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@ -886,7 +871,7 @@ re_search_internal (const regex_t *preg, const char *string, Idx length,
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: mctx.input.offsets[pmatch[reg_idx].rm_eo]);
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}
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#else
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assert (mctx.input.offsets_needed == 0);
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DEBUG_ASSERT (mctx.input.offsets_needed == 0);
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#endif
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pmatch[reg_idx].rm_so += match_first;
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pmatch[reg_idx].rm_eo += match_first;
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@ -926,9 +911,7 @@ prune_impossible_nodes (re_match_context_t *mctx)
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re_dfastate_t **sifted_states;
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re_dfastate_t **lim_states = NULL;
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re_sift_context_t sctx;
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#ifdef DEBUG
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assert (mctx->state_log != NULL);
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#endif
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DEBUG_ASSERT (mctx->state_log != NULL);
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match_last = mctx->match_last;
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halt_node = mctx->last_node;
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@ -1074,7 +1057,7 @@ check_matching (re_match_context_t *mctx, bool fl_longest_match,
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/* An initial state must not be NULL (invalid). */
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if (__glibc_unlikely (cur_state == NULL))
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{
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assert (err == REG_ESPACE);
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DEBUG_ASSERT (err == REG_ESPACE);
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return -2;
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}
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@ -1129,7 +1112,7 @@ check_matching (re_match_context_t *mctx, bool fl_longest_match,
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err = extend_buffers (mctx, next_char_idx + 1);
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if (__glibc_unlikely (err != REG_NOERROR))
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{
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assert (err == REG_ESPACE);
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DEBUG_ASSERT (err == REG_ESPACE);
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return -2;
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}
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}
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@ -1212,9 +1195,7 @@ check_halt_state_context (const re_match_context_t *mctx,
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{
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Idx i;
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unsigned int context;
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#ifdef DEBUG
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assert (state->halt);
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#endif
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DEBUG_ASSERT (state->halt);
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context = re_string_context_at (&mctx->input, idx, mctx->eflags);
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for (i = 0; i < state->nodes.nelem; ++i)
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if (check_halt_node_context (mctx->dfa, state->nodes.elems[i], context))
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@ -1362,7 +1343,7 @@ pop_fail_stack (struct re_fail_stack_t *fs, Idx *pidx, Idx nregs,
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regmatch_t *regs, re_node_set *eps_via_nodes)
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{
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Idx num = --fs->num;
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assert (num >= 0);
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DEBUG_ASSERT (num >= 0);
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*pidx = fs->stack[num].idx;
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memcpy (regs, fs->stack[num].regs, sizeof (regmatch_t) * nregs);
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re_node_set_free (eps_via_nodes);
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@ -1389,10 +1370,8 @@ set_regs (const regex_t *preg, const re_match_context_t *mctx, size_t nmatch,
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regmatch_t *prev_idx_match;
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bool prev_idx_match_malloced = false;
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#ifdef DEBUG
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assert (nmatch > 1);
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assert (mctx->state_log != NULL);
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#endif
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DEBUG_ASSERT (nmatch > 1);
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DEBUG_ASSERT (mctx->state_log != NULL);
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if (fl_backtrack)
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{
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fs = &fs_body;
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@ -1578,9 +1557,7 @@ sift_states_backward (const re_match_context_t *mctx, re_sift_context_t *sctx)
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Idx str_idx = sctx->last_str_idx;
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re_node_set cur_dest;
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#ifdef DEBUG
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assert (mctx->state_log != NULL && mctx->state_log[str_idx] != NULL);
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#endif
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DEBUG_ASSERT (mctx->state_log != NULL && mctx->state_log[str_idx] != NULL);
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/* Build sifted state_log[str_idx]. It has the nodes which can epsilon
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transit to the last_node and the last_node itself. */
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@ -1648,11 +1625,8 @@ build_sifted_states (const re_match_context_t *mctx, re_sift_context_t *sctx,
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Idx prev_node = cur_src->elems[i];
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int naccepted = 0;
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bool ok;
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DEBUG_ASSERT (!IS_EPSILON_NODE (dfa->nodes[prev_node].type));
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#ifdef DEBUG
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re_token_type_t type = dfa->nodes[prev_node].type;
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assert (!IS_EPSILON_NODE (type));
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#endif
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#ifdef RE_ENABLE_I18N
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/* If the node may accept "multi byte". */
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if (dfa->nodes[prev_node].accept_mb)
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@ -2505,9 +2479,7 @@ transit_state_mb (re_match_context_t *mctx, re_dfastate_t *pstate)
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err = clean_state_log_if_needed (mctx, dest_idx);
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if (__glibc_unlikely (err != REG_NOERROR))
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return err;
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#ifdef DEBUG
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assert (dfa->nexts[cur_node_idx] != -1);
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#endif
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DEBUG_ASSERT (dfa->nexts[cur_node_idx] != -1);
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new_nodes = dfa->eclosures + dfa->nexts[cur_node_idx];
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dest_state = mctx->state_log[dest_idx];
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@ -2571,9 +2543,7 @@ transit_state_bkref (re_match_context_t *mctx, const re_node_set *nodes)
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/* And add the epsilon closures (which is 'new_dest_nodes') of
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the backreference to appropriate state_log. */
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#ifdef DEBUG
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assert (dfa->nexts[node_idx] != -1);
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#endif
|
||||
DEBUG_ASSERT (dfa->nexts[node_idx] != -1);
|
||||
for (; bkc_idx < mctx->nbkref_ents; ++bkc_idx)
|
||||
{
|
||||
Idx subexp_len;
|
||||
@ -3032,10 +3002,8 @@ check_arrival_add_next_nodes (re_match_context_t *mctx, Idx str_idx,
|
||||
{
|
||||
int naccepted = 0;
|
||||
Idx cur_node = cur_nodes->elems[cur_idx];
|
||||
#ifdef DEBUG
|
||||
re_token_type_t type = dfa->nodes[cur_node].type;
|
||||
assert (!IS_EPSILON_NODE (type));
|
||||
#endif
|
||||
DEBUG_ASSERT (!IS_EPSILON_NODE (dfa->nodes[cur_node].type));
|
||||
|
||||
#ifdef RE_ENABLE_I18N
|
||||
/* If the node may accept "multi byte". */
|
||||
if (dfa->nodes[cur_node].accept_mb)
|
||||
@ -3103,9 +3071,7 @@ check_arrival_expand_ecl (const re_dfa_t *dfa, re_node_set *cur_nodes,
|
||||
reg_errcode_t err;
|
||||
Idx idx, outside_node;
|
||||
re_node_set new_nodes;
|
||||
#ifdef DEBUG
|
||||
assert (cur_nodes->nelem);
|
||||
#endif
|
||||
DEBUG_ASSERT (cur_nodes->nelem);
|
||||
err = re_node_set_alloc (&new_nodes, cur_nodes->nelem);
|
||||
if (__glibc_unlikely (err != REG_NOERROR))
|
||||
return err;
|
||||
@ -3695,6 +3661,7 @@ group_nodes_into_DFAstates (const re_dfa_t *dfa, const re_dfastate_t *state,
|
||||
bitset_empty (accepts);
|
||||
}
|
||||
}
|
||||
assume (ndests <= SBC_MAX);
|
||||
return ndests;
|
||||
error_return:
|
||||
for (j = 0; j < ndests; ++j)
|
||||
@ -4272,10 +4239,8 @@ static reg_errcode_t
|
||||
__attribute_warn_unused_result__
|
||||
match_ctx_add_subtop (re_match_context_t *mctx, Idx node, Idx str_idx)
|
||||
{
|
||||
#ifdef DEBUG
|
||||
assert (mctx->sub_tops != NULL);
|
||||
assert (mctx->asub_tops > 0);
|
||||
#endif
|
||||
DEBUG_ASSERT (mctx->sub_tops != NULL);
|
||||
DEBUG_ASSERT (mctx->asub_tops > 0);
|
||||
if (__glibc_unlikely (mctx->nsub_tops == mctx->asub_tops))
|
||||
{
|
||||
Idx new_asub_tops = mctx->asub_tops * 2;
|
||||
|
Loading…
Reference in New Issue
Block a user