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Fix push parsing memory leak reported by Brandon Lucia at
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2073d769 1/* Type definitions for nondeterministic finite state machine for Bison.
784573d1 2
75ad86ee 3 Copyright (C) 1984, 1989, 2000, 2001, 2002, 2003, 2004, 2007 Free
779e7ceb 4 Software Foundation, Inc.
d0fb370f 5
a70083a3 6 This file is part of Bison, the GNU Compiler Compiler.
d0fb370f 7
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8 Bison is free software; you can redistribute it and/or modify
9 it under the terms of the GNU General Public License as published by
10 the Free Software Foundation; either version 2, or (at your option)
11 any later version.
d0fb370f 12
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13 Bison is distributed in the hope that it will be useful,
14 but WITHOUT ANY WARRANTY; without even the implied warranty of
15 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
16 GNU General Public License for more details.
d0fb370f 17
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18 You should have received a copy of the GNU General Public License
19 along with Bison; see the file COPYING. If not, write to
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20 the Free Software Foundation, Inc., 51 Franklin Street, Fifth Floor,
21 Boston, MA 02110-1301, USA. */
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22
23
24/* These type definitions are used to represent a nondeterministic
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25 finite state machine that parses the specified grammar. This
26 information is generated by the function generate_states in the
27 file LR0.
28
29 Each state of the machine is described by a set of items --
30 particular positions in particular rules -- that are the possible
31 places where parsing could continue when the machine is in this
32 state. These symbols at these items are the allowable inputs that
33 can follow now.
34
9801d40c 35 A core represents one state. States are numbered in the NUMBER
a70083a3 36 field. When generate_states is finished, the starting state is
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37 state 0 and NSTATES is the number of states. (FIXME: This sentence
38 is no longer true: A transition to a state whose state number is
39 NSTATES indicates termination.) All the cores are chained together
40 and FIRST_STATE points to the first one (state 0).
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41
42 For each state there is a particular symbol which must have been
43 the last thing accepted to reach that state. It is the
9801d40c 44 ACCESSING_SYMBOL of the core.
a70083a3 45
5123689b 46 Each core contains a vector of NITEMS items which are the indices
b09f4f48 47 in the RITEM vector of the items that are selected in this state.
a70083a3 48
742e4900 49 The two types of actions are shifts/gotos (push the lookahead token
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50 and read another/goto to the state designated by a nterm) and
51 reductions (combine the last n things on the stack via a rule,
52 replace them with the symbol that the rule derives, and leave the
742e4900 53 lookahead token alone). When the states are generated, these
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54 actions are represented in two other lists.
55
784573d1 56 Each transition structure describes the possible transitions out
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57 of one state, the state whose number is in the number field. Each
58 contains a vector of numbers of the states that transitions can go
59 to. The accessing_symbol fields of those states' cores say what
60 kind of input leads to them.
61
62 A transition to state zero should be ignored: conflict resolution
63 deletes transitions by having them point to zero.
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64
65 Each reductions structure describes the possible reductions at the
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66 state whose number is in the number field. rules is an array of
67 num rules. lookahead_tokens is an array of bitsets, one per rule.
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68
69 Conflict resolution can decide that certain tokens in certain
70 states should explicitly be errors (for implementing %nonassoc).
71 For each state, the tokens that are errors for this reason are
8b752b00 72 recorded in an errs structure, which holds the token numbers.
a70083a3 73
8b752b00 74 There is at least one goto transition present in state zero. It
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75 leads to a next-to-final state whose accessing_symbol is the
76 grammar's start symbol. The next-to-final state has one shift to
77 the final state, whose accessing_symbol is zero (end of input).
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78 The final state has one shift, which goes to the termination state.
79 The reason for the extra state at the end is to placate the
80 parser's strategy of making all decisions one token ahead of its
81 actions. */
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82
83#ifndef STATE_H_
84# define STATE_H_
85
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86# include <bitset.h>
87
88# include "gram.h"
89# include "symtab.h"
aa2aab3c 90
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91
92/*-------------------.
93| Numbering states. |
94`-------------------*/
95
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96typedef int state_number;
97# define STATE_NUMBER_MAXIMUM INT_MAX
d57650a5 98
784573d1 99/* Be ready to map a state_number to an int. */
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100static inline int
101state_number_as_int (state_number s)
102{
103 return s;
104}
d57650a5 105
640748ee 106
784573d1 107typedef struct state state;
640748ee 108
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109/*--------------.
110| Transitions. |
111`--------------*/
aa2aab3c 112
784573d1 113typedef struct
a70083a3 114{
f6fbd3da 115 int num;
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116 state *states[1];
117} transitions;
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118
119
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120/* What is the symbol labelling the transition to
121 TRANSITIONS->states[Num]? Can be a token (amongst which the error
122 token), or non terminals in case of gotos. */
b608206e 123
8b752b00 124#define TRANSITION_SYMBOL(Transitions, Num) \
640748ee 125 (Transitions->states[Num]->accessing_symbol)
b608206e 126
8b752b00 127/* Is the TRANSITIONS->states[Num] a shift? (as opposed to gotos). */
aa2aab3c 128
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129#define TRANSITION_IS_SHIFT(Transitions, Num) \
130 (ISTOKEN (TRANSITION_SYMBOL (Transitions, Num)))
aa2aab3c 131
8b752b00 132/* Is the TRANSITIONS->states[Num] a goto?. */
aa2aab3c 133
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134#define TRANSITION_IS_GOTO(Transitions, Num) \
135 (!TRANSITION_IS_SHIFT (Transitions, Num))
aa2aab3c 136
8b752b00 137/* Is the TRANSITIONS->states[Num] labelled by the error token? */
aa2aab3c 138
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139#define TRANSITION_IS_ERROR(Transitions, Num) \
140 (TRANSITION_SYMBOL (Transitions, Num) == errtoken->number)
aa2aab3c 141
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142/* When resolving a SR conflicts, if the reduction wins, the shift is
143 disabled. */
144
8b752b00 145#define TRANSITION_DISABLE(Transitions, Num) \
640748ee 146 (Transitions->states[Num] = NULL)
9839bbe5 147
8b752b00 148#define TRANSITION_IS_DISABLED(Transitions, Num) \
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149 (Transitions->states[Num] == NULL)
150
151
152/* Iterate over each transition over a token (shifts). */
153#define FOR_EACH_SHIFT(Transitions, Iter) \
154 for (Iter = 0; \
155 Iter < Transitions->num \
156 && (TRANSITION_IS_DISABLED (Transitions, Iter) \
157 || TRANSITION_IS_SHIFT (Transitions, Iter)); \
158 ++Iter) \
159 if (!TRANSITION_IS_DISABLED (Transitions, Iter))
160
9839bbe5 161
a737b216 162/* Return the state such SHIFTS contain a shift/goto to it on SYM.
784573d1 163 Abort if none found. */
a737b216 164struct state *transitions_to (transitions *shifts, symbol_number sym);
ccaf65bc 165
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166
167/*-------.
168| Errs. |
169`-------*/
a70083a3 170
784573d1 171typedef struct
a70083a3 172{
f6fbd3da 173 int num;
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174 symbol *symbols[1];
175} errs;
a70083a3 176
784573d1 177errs *errs_new (int num, symbol **tokens);
f59c437a 178
a70083a3 179
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180/*-------------.
181| Reductions. |
182`-------------*/
a70083a3 183
784573d1 184typedef struct
a70083a3 185{
f6fbd3da 186 int num;
742e4900 187 bitset *lookahead_tokens;
6ce2d93a 188 /* Sorted ascendingly on rule number. */
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189 rule *rules[1];
190} reductions;
d0fb370f 191
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192
193
640748ee 194/*---------.
784573d1 195| states. |
640748ee 196`---------*/
f693ad14 197
784573d1 198struct state
f693ad14 199{
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200 state_number number;
201 symbol_number accessing_symbol;
202 transitions *transitions;
203 reductions *reductions;
204 errs *errs;
f693ad14 205
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206 /* If non-zero, then no lookahead sets on reduce actions are needed to
207 decide what to do in state S. */
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208 char consistent;
209
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210 /* If some conflicts were solved thanks to precedence/associativity,
211 a human readable description of the resolution. */
212 const char *solved_conflicts;
213
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214 /* Its items. Must be last, since ITEMS can be arbitrarily large. Sorted
215 ascendingly on item index in RITEM, which is sorted on rule number. */
f6fbd3da 216 size_t nitems;
784573d1 217 item_number items[1];
640748ee 218};
f693ad14 219
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220extern state_number nstates;
221extern state *final_state;
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222
223/* Create a new state with ACCESSING_SYMBOL for those items. */
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224state *state_new (symbol_number accessing_symbol,
225 size_t core_size, item_number *core);
f693ad14 226
8b752b00 227/* Set the transitions of STATE. */
784573d1 228void state_transitions_set (state *s, int num, state **trans);
32e1e0a4 229
8a731ca8 230/* Set the reductions of STATE. */
784573d1 231void state_reductions_set (state *s, int num, rule **reds);
8b752b00 232
784573d1 233int state_reduction_find (state *s, rule *r);
cd08e51e 234
8b752b00 235/* Set the errs of STATE. */
784573d1 236void state_errs_set (state *s, int num, symbol **errors);
8a731ca8 237
742e4900 238/* Print on OUT all the lookahead tokens such that this STATE wants to
784573d1 239 reduce R. */
742e4900 240void state_rule_lookahead_tokens_print (state *s, rule *r, FILE *out);
10e5b8bd 241
c7ca99d4 242/* Create/destroy the states hash table. */
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243void state_hash_new (void);
244void state_hash_free (void);
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245
246/* Find the state associated to the CORE, and return it. If it does
247 not exist yet, return NULL. */
784573d1 248state *state_hash_lookup (size_t core_size, item_number *core);
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249
250/* Insert STATE in the state hash table. */
784573d1 251void state_hash_insert (state *s);
c7ca99d4 252
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253/* Remove unreachable states, renumber remaining states, update NSTATES, and
254 write to OLD_TO_NEW a mapping of old state numbers to new state numbers such
255 that the old value of NSTATES is written as the new state number for removed
256 states. The size of OLD_TO_NEW must be the old value of NSTATES. */
257void state_remove_unreachable_states (state_number old_to_new[]);
258
c7ca99d4 259/* All the states, indexed by the state number. */
784573d1 260extern state **states;
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261
262/* Free all the states. */
d33cb3ae 263void states_free (void);
5967f0cf 264
a70083a3 265#endif /* !STATE_H_ */