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df38348381
* cpperror.c: Fix formatting. * cppexp.c: Likewise. * cppfiles.c: Likewise. * cpphash.c: Likewise. * cpphash.h: Likewise. * cppinit.c: Likewise. * cpplex.c: Likewise. * cpplib.c: Likewise. * cppmacro.c: Likewise. * cppmain.c: Likewise. * cppspec.c: Likewise. From-SVN: r53751
836 lines
23 KiB
C
836 lines
23 KiB
C
/* Parse C expressions for cpplib.
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Copyright (C) 1987, 1992, 1994, 1995, 1997, 1998, 1999, 2000, 2001,
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2002 Free Software Foundation.
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Contributed by Per Bothner, 1994.
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This program is free software; you can redistribute it and/or modify it
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under the terms of the GNU General Public License as published by the
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Free Software Foundation; either version 2, or (at your option) any
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later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program; if not, write to the Free Software
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Foundation, 59 Temple Place - Suite 330,
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Boston, MA 02111-1307, USA. */
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#include "config.h"
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#include "system.h"
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#include "cpplib.h"
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#include "cpphash.h"
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/* Yield nonzero if adding two numbers with A's and B's signs can yield a
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number with SUM's sign, where A, B, and SUM are all C integers. */
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#define possible_sum_sign(a, b, sum) ((((a) ^ (b)) | ~ ((a) ^ (sum))) < 0)
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static void integer_overflow PARAMS ((cpp_reader *));
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static HOST_WIDEST_INT left_shift PARAMS ((cpp_reader *, HOST_WIDEST_INT,
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unsigned int,
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unsigned HOST_WIDEST_INT));
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static HOST_WIDEST_INT right_shift PARAMS ((cpp_reader *, HOST_WIDEST_INT,
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unsigned int,
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unsigned HOST_WIDEST_INT));
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static struct op parse_number PARAMS ((cpp_reader *, const cpp_token *));
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static struct op parse_defined PARAMS ((cpp_reader *));
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static struct op eval_token PARAMS ((cpp_reader *, const cpp_token *));
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static struct op *reduce PARAMS ((cpp_reader *, struct op *, enum cpp_ttype));
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struct op
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{
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enum cpp_ttype op;
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uchar unsignedp; /* True if value should be treated as unsigned. */
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HOST_WIDEST_INT value; /* The value logically "right" of op. */
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};
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/* Token type abuse. There is no "error" token, but we can't get
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comments in #if, so we can abuse that token type. Similarly,
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create unary plus and minus operators. */
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#define CPP_ERROR CPP_COMMENT
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#define CPP_UPLUS (CPP_LAST_CPP_OP + 1)
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#define CPP_UMINUS (CPP_LAST_CPP_OP + 2)
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/* With -O2, gcc appears to produce nice code, moving the error
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message load and subsequent jump completely out of the main path. */
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#define SYNTAX_ERROR(msgid) \
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do { cpp_error (pfile, DL_ERROR, msgid); goto syntax_error; } while(0)
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#define SYNTAX_ERROR2(msgid, arg) \
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do { cpp_error (pfile, DL_ERROR, msgid, arg); goto syntax_error; } while(0)
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struct suffix
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{
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const unsigned char s[4];
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const unsigned char u;
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const unsigned char l;
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};
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static const struct suffix vsuf_1[] = {
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{ "u", 1, 0 }, { "U", 1, 0 },
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{ "l", 0, 1 }, { "L", 0, 1 }
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};
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static const struct suffix vsuf_2[] = {
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{ "ul", 1, 1 }, { "UL", 1, 1 }, { "uL", 1, 1 }, { "Ul", 1, 1 },
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{ "lu", 1, 1 }, { "LU", 1, 1 }, { "Lu", 1, 1 }, { "lU", 1, 1 },
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{ "ll", 0, 2 }, { "LL", 0, 2 }
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};
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static const struct suffix vsuf_3[] = {
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{ "ull", 1, 2 }, { "ULL", 1, 2 }, { "uLL", 1, 2 }, { "Ull", 1, 2 },
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{ "llu", 1, 2 }, { "LLU", 1, 2 }, { "LLu", 1, 2 }, { "llU", 1, 2 }
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};
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/* Parse and convert what is presumably an integer in TOK. Accepts
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decimal, hex, or octal with or without size suffixes. Returned op
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is CPP_ERROR on error, otherwise it is a CPP_NUMBER. */
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static struct op
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parse_number (pfile, tok)
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cpp_reader *pfile;
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const cpp_token *tok;
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{
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struct op op;
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const uchar *start = tok->val.str.text;
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const uchar *end = start + tok->val.str.len;
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const uchar *p = start;
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int c = 0, i, nsuff;
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unsigned HOST_WIDEST_INT n = 0, nd, MAX_over_base;
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int base = 10;
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int overflow = 0;
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int digit, largest_digit = 0;
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const struct suffix *sufftab;
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op.unsignedp = 0;
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if (p[0] == '0')
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{
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if (end - start >= 3 && (p[1] == 'x' || p[1] == 'X'))
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{
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p += 2;
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base = 16;
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}
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else
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{
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p += 1;
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base = 8;
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}
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}
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/* Some buggy compilers (e.g. MPW C) seem to need both casts. */
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MAX_over_base = (((unsigned HOST_WIDEST_INT) -1)
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/ ((unsigned HOST_WIDEST_INT) base));
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for(; p < end; p++)
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{
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c = *p;
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if (ISDIGIT (c)
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|| (base == 16 && ISXDIGIT (c)))
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digit = hex_value (c);
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else
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break;
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if (largest_digit < digit)
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largest_digit = digit;
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nd = n * base + digit;
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overflow |= MAX_over_base < n || nd < n;
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n = nd;
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}
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if (p < end)
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{
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/* Check for a floating point constant. Note that float constants
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with an exponent or suffix but no decimal point are technically
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invalid (C99 6.4.4.2) but accepted elsewhere. */
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if ((c == '.' || c == 'F' || c == 'f')
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|| (base == 10 && (c == 'E' || c == 'e')
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&& p+1 < end && (p[1] == '+' || p[1] == '-'))
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|| (base == 16 && (c == 'P' || c == 'p')
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&& p+1 < end && (p[1] == '+' || p[1] == '-')))
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SYNTAX_ERROR ("floating point numbers are not valid in #if");
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/* Determine the suffix. l means long, and u means unsigned.
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See the suffix tables, above. */
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switch (end - p)
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{
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case 1: sufftab = vsuf_1; nsuff = ARRAY_SIZE (vsuf_1); break;
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case 2: sufftab = vsuf_2; nsuff = ARRAY_SIZE (vsuf_2); break;
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case 3: sufftab = vsuf_3; nsuff = ARRAY_SIZE (vsuf_3); break;
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default: goto invalid_suffix;
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}
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for (i = 0; i < nsuff; i++)
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if (memcmp (p, sufftab[i].s, end - p) == 0)
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break;
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if (i == nsuff)
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goto invalid_suffix;
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op.unsignedp = sufftab[i].u;
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if (CPP_WTRADITIONAL (pfile)
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&& sufftab[i].u
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&& ! cpp_sys_macro_p (pfile))
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cpp_error (pfile, DL_WARNING, "traditional C rejects the `U' suffix");
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if (sufftab[i].l == 2 && CPP_OPTION (pfile, pedantic)
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&& ! CPP_OPTION (pfile, c99))
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cpp_error (pfile, DL_PEDWARN,
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"too many 'l' suffixes in integer constant");
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}
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if (base <= largest_digit)
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cpp_error (pfile, DL_PEDWARN,
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"integer constant contains digits beyond the radix");
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if (overflow)
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cpp_error (pfile, DL_PEDWARN, "integer constant out of range");
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/* If too big to be signed, consider it unsigned. */
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else if ((HOST_WIDEST_INT) n < 0 && ! op.unsignedp)
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{
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if (base == 10)
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cpp_error (pfile, DL_WARNING,
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"integer constant is so large that it is unsigned");
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op.unsignedp = 1;
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}
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op.value = n;
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op.op = CPP_NUMBER;
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return op;
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invalid_suffix:
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cpp_error (pfile, DL_ERROR, "invalid suffix '%.*s' on integer constant",
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(int) (end - p), p);
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syntax_error:
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op.op = CPP_ERROR;
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return op;
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}
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/* Handle meeting "defined" in a preprocessor expression. */
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static struct op
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parse_defined (pfile)
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cpp_reader *pfile;
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{
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int paren = 0;
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cpp_hashnode *node = 0;
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const cpp_token *token;
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struct op op;
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cpp_context *initial_context = pfile->context;
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/* Don't expand macros. */
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pfile->state.prevent_expansion++;
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token = cpp_get_token (pfile);
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if (token->type == CPP_OPEN_PAREN)
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{
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paren = 1;
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token = cpp_get_token (pfile);
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}
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if (token->type == CPP_NAME)
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{
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node = token->val.node;
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if (paren && cpp_get_token (pfile)->type != CPP_CLOSE_PAREN)
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{
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cpp_error (pfile, DL_ERROR, "missing ')' after \"defined\"");
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node = 0;
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}
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}
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else
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{
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cpp_error (pfile, DL_ERROR,
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"operator \"defined\" requires an identifier");
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if (token->flags & NAMED_OP)
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{
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cpp_token op;
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op.flags = 0;
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op.type = token->type;
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cpp_error (pfile, DL_ERROR,
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"(\"%s\" is an alternative token for \"%s\" in C++)",
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cpp_token_as_text (pfile, token),
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cpp_token_as_text (pfile, &op));
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}
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}
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if (!node)
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op.op = CPP_ERROR;
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else
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{
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if (pfile->context != initial_context)
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cpp_error (pfile, DL_WARNING,
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"this use of \"defined\" may not be portable");
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op.value = node->type == NT_MACRO;
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op.unsignedp = 0;
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op.op = CPP_NUMBER;
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/* A possible controlling macro of the form #if !defined ().
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_cpp_parse_expr checks there was no other junk on the line. */
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pfile->mi_ind_cmacro = node;
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}
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pfile->state.prevent_expansion--;
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return op;
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}
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/* Convert a token into a CPP_NUMBER (an interpreted preprocessing
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number or character constant, or the result of the "defined" or "#"
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operators), or CPP_ERROR on error. */
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static struct op
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eval_token (pfile, token)
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cpp_reader *pfile;
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const cpp_token *token;
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{
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unsigned int temp;
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int unsignedp = 0;
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struct op op;
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op.op = CPP_NUMBER;
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switch (token->type)
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{
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case CPP_NUMBER:
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return parse_number (pfile, token);
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case CPP_WCHAR:
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case CPP_CHAR:
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{
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cppchar_t result = cpp_interpret_charconst (pfile, token,
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&temp, &unsignedp);
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op.value = result;
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/* Sign-extend the result if necessary. */
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if (!unsignedp && (cppchar_signed_t) result < 0
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&& sizeof (HOST_WIDEST_INT) > sizeof (cppchar_t))
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op.value |= ~(((unsigned HOST_WIDEST_INT) 1 << BITS_PER_CPPCHAR_T)
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- 1);
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}
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break;
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case CPP_NAME:
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if (token->val.node == pfile->spec_nodes.n_defined)
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return parse_defined (pfile);
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else if (CPP_OPTION (pfile, cplusplus)
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&& (token->val.node == pfile->spec_nodes.n_true
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|| token->val.node == pfile->spec_nodes.n_false))
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{
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op.value = (token->val.node == pfile->spec_nodes.n_true);
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/* Warn about use of true or false in #if when pedantic
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and stdbool.h has not been included. */
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if (CPP_PEDANTIC (pfile)
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&& ! cpp_defined (pfile, DSC("__bool_true_false_are_defined")))
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cpp_error (pfile, DL_PEDWARN,
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"ISO C++ does not permit \"%s\" in #if",
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NODE_NAME (token->val.node));
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}
|
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else
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{
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op.value = 0;
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if (CPP_OPTION (pfile, warn_undef) && !pfile->state.skip_eval)
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cpp_error (pfile, DL_WARNING, "\"%s\" is not defined",
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NODE_NAME (token->val.node));
|
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}
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break;
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default: /* CPP_HASH */
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if (_cpp_test_assertion (pfile, &temp))
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op.op = CPP_ERROR;
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op.value = temp;
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}
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op.unsignedp = unsignedp;
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return op;
|
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}
|
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|
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/* Warn if appropriate on overflow. */
|
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static void
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integer_overflow (pfile)
|
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cpp_reader *pfile;
|
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{
|
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if (CPP_PEDANTIC (pfile))
|
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cpp_error (pfile, DL_PEDWARN,
|
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"integer overflow in preprocessor expression");
|
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}
|
||
|
||
/* Handle shifting A left by B bits. UNSIGNEDP is non-zero if A is
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unsigned. */
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static HOST_WIDEST_INT
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left_shift (pfile, a, unsignedp, b)
|
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cpp_reader *pfile;
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HOST_WIDEST_INT a;
|
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unsigned int unsignedp;
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unsigned HOST_WIDEST_INT b;
|
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{
|
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if (b >= HOST_BITS_PER_WIDEST_INT)
|
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{
|
||
if (! unsignedp && a != 0)
|
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integer_overflow (pfile);
|
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return 0;
|
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}
|
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else if (unsignedp)
|
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return (unsigned HOST_WIDEST_INT) a << b;
|
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else
|
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{
|
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HOST_WIDEST_INT l = a << b;
|
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if (l >> b != a)
|
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integer_overflow (pfile);
|
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return l;
|
||
}
|
||
}
|
||
|
||
/* Handle shifting A right by B bits. UNSIGNEDP is non-zero if A is
|
||
unsigned. */
|
||
static HOST_WIDEST_INT
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right_shift (pfile, a, unsignedp, b)
|
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cpp_reader *pfile ATTRIBUTE_UNUSED;
|
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HOST_WIDEST_INT a;
|
||
unsigned int unsignedp;
|
||
unsigned HOST_WIDEST_INT b;
|
||
{
|
||
if (b >= HOST_BITS_PER_WIDEST_INT)
|
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return unsignedp ? 0 : a >> (HOST_BITS_PER_WIDEST_INT - 1);
|
||
else if (unsignedp)
|
||
return (unsigned HOST_WIDEST_INT) a >> b;
|
||
else
|
||
return a >> b;
|
||
}
|
||
|
||
/* Operator precedence and flags table.
|
||
|
||
After an operator is returned from the lexer, if it has priority less
|
||
than the operator on the top of the stack, we reduce the stack by one
|
||
operator and repeat the test. Since equal priorities do not reduce,
|
||
this is naturally right-associative.
|
||
|
||
We handle left-associative operators by decrementing the priority of
|
||
just-lexed operators by one, but retaining the priority of operators
|
||
already on the stack.
|
||
|
||
The remaining cases are '(' and ')'. We handle '(' by skipping the
|
||
reduction phase completely. ')' is given lower priority than
|
||
everything else, including '(', effectively forcing a reduction of the
|
||
parenthesised expression. If there is a matching '(', the routine
|
||
reduce() exits immediately. If the normal exit route sees a ')', then
|
||
there cannot have been a matching '(' and an error message is output.
|
||
|
||
The parser assumes all shifted operators require a left operand unless
|
||
the flag NO_L_OPERAND is set. These semantics are automatic; any
|
||
extra semantics need to be handled with operator-specific code. */
|
||
|
||
/* Flags. */
|
||
#define NO_L_OPERAND (1 << 0)
|
||
#define LEFT_ASSOC (1 << 1)
|
||
|
||
/* Operator to priority map. Must be in the same order as the first
|
||
N entries of enum cpp_ttype. */
|
||
static const struct operator
|
||
{
|
||
uchar prio;
|
||
uchar flags;
|
||
} optab[] =
|
||
{
|
||
/* EQ */ {0, 0}, /* Shouldn't happen. */
|
||
/* NOT */ {16, NO_L_OPERAND},
|
||
/* GREATER */ {12, LEFT_ASSOC},
|
||
/* LESS */ {12, LEFT_ASSOC},
|
||
/* PLUS */ {14, LEFT_ASSOC},
|
||
/* MINUS */ {14, LEFT_ASSOC},
|
||
/* MULT */ {15, LEFT_ASSOC},
|
||
/* DIV */ {15, LEFT_ASSOC},
|
||
/* MOD */ {15, LEFT_ASSOC},
|
||
/* AND */ {9, LEFT_ASSOC},
|
||
/* OR */ {7, LEFT_ASSOC},
|
||
/* XOR */ {8, LEFT_ASSOC},
|
||
/* RSHIFT */ {13, LEFT_ASSOC},
|
||
/* LSHIFT */ {13, LEFT_ASSOC},
|
||
/* MIN */ {10, LEFT_ASSOC}, /* C++ specific */
|
||
/* MAX */ {10, LEFT_ASSOC}, /* extensions */
|
||
|
||
/* COMPL */ {16, NO_L_OPERAND},
|
||
/* AND_AND */ {6, LEFT_ASSOC},
|
||
/* OR_OR */ {5, LEFT_ASSOC},
|
||
/* QUERY */ {3, 0},
|
||
/* COLON */ {4, LEFT_ASSOC},
|
||
/* COMMA */ {2, LEFT_ASSOC},
|
||
/* OPEN_PAREN */ {1, NO_L_OPERAND},
|
||
/* CLOSE_PAREN */ {0, 0},
|
||
/* EOF */ {0, 0},
|
||
/* EQ_EQ */ {11, LEFT_ASSOC},
|
||
/* NOT_EQ */ {11, LEFT_ASSOC},
|
||
/* GREATER_EQ */ {12, LEFT_ASSOC},
|
||
/* LESS_EQ */ {12, LEFT_ASSOC},
|
||
/* UPLUS */ {16, NO_L_OPERAND},
|
||
/* UMINUS */ {16, NO_L_OPERAND}
|
||
};
|
||
|
||
#define COMPARE(OP) \
|
||
top->unsignedp = 0; \
|
||
top->value = (unsigned1 | unsigned2) \
|
||
? (unsigned HOST_WIDEST_INT) v1 OP (unsigned HOST_WIDEST_INT) v2 \
|
||
: (v1 OP v2)
|
||
#define EQUALITY(OP) \
|
||
top->value = v1 OP v2; \
|
||
top->unsignedp = 0;
|
||
#define BITWISE(OP) \
|
||
top->value = v1 OP v2; \
|
||
top->unsignedp = unsigned1 | unsigned2;
|
||
#define MINMAX(OP) \
|
||
top->value = (v1 OP v2) ? v1 : v2; \
|
||
top->unsignedp = unsigned1 | unsigned2;
|
||
#define UNARY(OP) \
|
||
top->value = OP v2; \
|
||
top->unsignedp = unsigned2;
|
||
#define SHIFT(PSH, MSH) \
|
||
if (pfile->state.skip_eval) \
|
||
break; \
|
||
top->unsignedp = unsigned1; \
|
||
if (v2 < 0 && ! unsigned2) \
|
||
top->value = MSH (pfile, v1, unsigned1, -v2); \
|
||
else \
|
||
top->value = PSH (pfile, v1, unsigned1, v2);
|
||
|
||
/* Parse and evaluate a C expression, reading from PFILE.
|
||
Returns the truth value of the expression.
|
||
|
||
The implementation is an operator precedence parser, i.e. a
|
||
bottom-up parser, using a stack for not-yet-reduced tokens.
|
||
|
||
The stack base is op_stack, and the current stack pointer is 'top'.
|
||
There is a stack element for each operator (only), and the most
|
||
recently pushed operator is 'top->op'. An operand (value) is
|
||
stored in the 'value' field of the stack element of the operator
|
||
that precedes it. */
|
||
bool
|
||
_cpp_parse_expr (pfile)
|
||
cpp_reader *pfile;
|
||
{
|
||
struct op *top = pfile->op_stack;
|
||
const cpp_token *token = NULL, *prev_token;
|
||
unsigned int lex_count;
|
||
bool saw_leading_not, want_value = true;
|
||
|
||
pfile->state.skip_eval = 0;
|
||
|
||
/* Set up detection of #if ! defined(). */
|
||
pfile->mi_ind_cmacro = 0;
|
||
saw_leading_not = false;
|
||
lex_count = 0;
|
||
|
||
/* Lowest priority operator prevents further reductions. */
|
||
top->op = CPP_EOF;
|
||
|
||
for (;;)
|
||
{
|
||
struct op op;
|
||
|
||
prev_token = token;
|
||
token = cpp_get_token (pfile);
|
||
lex_count++;
|
||
op.op = token->type;
|
||
|
||
switch (op.op)
|
||
{
|
||
/* These tokens convert into values. */
|
||
case CPP_NUMBER:
|
||
case CPP_CHAR:
|
||
case CPP_WCHAR:
|
||
case CPP_NAME:
|
||
case CPP_HASH:
|
||
if (!want_value)
|
||
SYNTAX_ERROR2 ("missing binary operator before token \"%s\"",
|
||
cpp_token_as_text (pfile, token));
|
||
want_value = false;
|
||
op = eval_token (pfile, token);
|
||
if (op.op == CPP_ERROR)
|
||
goto syntax_error;
|
||
top->value = op.value;
|
||
top->unsignedp = op.unsignedp;
|
||
continue;
|
||
|
||
case CPP_NOT:
|
||
saw_leading_not = lex_count == 1;
|
||
break;
|
||
case CPP_PLUS:
|
||
if (want_value)
|
||
op.op = CPP_UPLUS;
|
||
break;
|
||
case CPP_MINUS:
|
||
if (want_value)
|
||
op.op = CPP_UMINUS;
|
||
break;
|
||
case CPP_OTHER:
|
||
if (ISGRAPH (token->val.c))
|
||
SYNTAX_ERROR2 ("invalid character '%c' in #if", token->val.c);
|
||
else
|
||
SYNTAX_ERROR2 ("invalid character '\\%03o' in #if", token->val.c);
|
||
|
||
default:
|
||
if ((int) op.op <= (int) CPP_EQ || (int) op.op >= (int) CPP_PLUS_EQ)
|
||
SYNTAX_ERROR2 ("token \"%s\" is not valid in #if expressions",
|
||
cpp_token_as_text (pfile, token));
|
||
break;
|
||
}
|
||
|
||
/* Check we have a value or operator as appropriate. */
|
||
if (optab[op.op].flags & NO_L_OPERAND)
|
||
{
|
||
if (!want_value)
|
||
SYNTAX_ERROR2 ("missing binary operator before token \"%s\"",
|
||
cpp_token_as_text (pfile, token));
|
||
}
|
||
else if (want_value)
|
||
{
|
||
/* Ordering here is subtle and intended to favour the
|
||
missing parenthesis diagnostics over alternatives. */
|
||
if (op.op == CPP_CLOSE_PAREN)
|
||
{
|
||
if (top->op == CPP_OPEN_PAREN)
|
||
SYNTAX_ERROR ("void expression between '(' and ')'");
|
||
}
|
||
else if (top->op == CPP_EOF)
|
||
SYNTAX_ERROR ("#if with no expression");
|
||
if (top->op != CPP_EOF && top->op != CPP_OPEN_PAREN)
|
||
SYNTAX_ERROR2 ("operator '%s' has no right operand",
|
||
cpp_token_as_text (pfile, prev_token));
|
||
}
|
||
|
||
top = reduce (pfile, top, op.op);
|
||
if (!top)
|
||
goto syntax_error;
|
||
|
||
if (op.op == CPP_EOF)
|
||
break;
|
||
|
||
switch (op.op)
|
||
{
|
||
case CPP_CLOSE_PAREN:
|
||
continue;
|
||
case CPP_OR_OR:
|
||
if (top->value)
|
||
pfile->state.skip_eval++;
|
||
break;
|
||
case CPP_AND_AND:
|
||
case CPP_QUERY:
|
||
if (!top->value)
|
||
pfile->state.skip_eval++;
|
||
break;
|
||
case CPP_COLON:
|
||
if (top->op != CPP_QUERY)
|
||
SYNTAX_ERROR (" ':' without preceding '?'");
|
||
if (top[-1].value) /* Was '?' condition true? */
|
||
pfile->state.skip_eval++;
|
||
else
|
||
pfile->state.skip_eval--;
|
||
default:
|
||
break;
|
||
}
|
||
|
||
want_value = true;
|
||
|
||
/* Check for and handle stack overflow. */
|
||
if (++top == pfile->op_limit)
|
||
top = _cpp_expand_op_stack (pfile);
|
||
|
||
top->op = op.op;
|
||
}
|
||
|
||
/* The controlling macro expression is only valid if we called lex 3
|
||
times: <!> <defined expression> and <EOF>. push_conditional ()
|
||
checks that we are at top-of-file. */
|
||
if (pfile->mi_ind_cmacro && !(saw_leading_not && lex_count == 3))
|
||
pfile->mi_ind_cmacro = 0;
|
||
|
||
if (top != pfile->op_stack)
|
||
{
|
||
cpp_error (pfile, DL_ICE, "unbalanced stack in #if");
|
||
syntax_error:
|
||
return false; /* Return false on syntax error. */
|
||
}
|
||
|
||
return top->value != 0;
|
||
}
|
||
|
||
/* Reduce the operator / value stack if possible, in preparation for
|
||
pushing operator OP. Returns NULL on error, otherwise the top of
|
||
the stack. */
|
||
static struct op *
|
||
reduce (pfile, top, op)
|
||
cpp_reader *pfile;
|
||
struct op *top;
|
||
enum cpp_ttype op;
|
||
{
|
||
unsigned int prio;
|
||
|
||
if (op == CPP_OPEN_PAREN)
|
||
return top;
|
||
|
||
/* Decrement the priority of left-associative operators to force a
|
||
reduction with operators of otherwise equal priority. */
|
||
prio = optab[op].prio - ((optab[op].flags & LEFT_ASSOC) != 0);
|
||
while (prio < optab[top->op].prio)
|
||
{
|
||
HOST_WIDEST_INT v1, v2;
|
||
unsigned int unsigned1, unsigned2;
|
||
|
||
unsigned2 = top->unsignedp, v2 = top->value;
|
||
top--;
|
||
unsigned1 = top->unsignedp, v1 = top->value;
|
||
|
||
/* Now set top->value = (top[1].op)(v1, v2); */
|
||
switch (top[1].op)
|
||
{
|
||
default:
|
||
cpp_error (pfile, DL_ICE, "impossible operator '%u'", top[1].op);
|
||
return 0;
|
||
|
||
case CPP_NOT: UNARY(!); break;
|
||
case CPP_COMPL: UNARY(~); break;
|
||
case CPP_LESS: COMPARE(<); break;
|
||
case CPP_GREATER: COMPARE(>); break;
|
||
case CPP_LESS_EQ: COMPARE(<=); break;
|
||
case CPP_GREATER_EQ: COMPARE(>=); break;
|
||
case CPP_EQ_EQ: EQUALITY(==); break;
|
||
case CPP_NOT_EQ: EQUALITY(!=); break;
|
||
case CPP_AND: BITWISE(&); break;
|
||
case CPP_XOR: BITWISE(^); break;
|
||
case CPP_OR: BITWISE(|); break;
|
||
case CPP_LSHIFT: SHIFT(left_shift, right_shift); break;
|
||
case CPP_RSHIFT: SHIFT(right_shift, left_shift); break;
|
||
case CPP_MIN: MINMAX(<); break;
|
||
case CPP_MAX: MINMAX(>); break;
|
||
|
||
case CPP_UPLUS:
|
||
/* Can't use UNARY(+) because K+R C did not have unary
|
||
plus. Can't use UNARY() because some compilers object
|
||
to the empty argument. */
|
||
top->value = v2;
|
||
top->unsignedp = unsigned2;
|
||
if (CPP_WTRADITIONAL (pfile))
|
||
cpp_error (pfile, DL_WARNING,
|
||
"traditional C rejects the unary plus operator");
|
||
break;
|
||
case CPP_UMINUS:
|
||
UNARY(-);
|
||
if (!pfile->state.skip_eval && (top->value & v2) < 0 && !unsigned2)
|
||
integer_overflow (pfile);
|
||
break;
|
||
|
||
case CPP_PLUS:
|
||
top->value = v1 + v2;
|
||
top->unsignedp = unsigned1 | unsigned2;
|
||
if (! top->unsignedp && ! pfile->state.skip_eval
|
||
&& ! possible_sum_sign (v1, v2, top->value))
|
||
integer_overflow (pfile);
|
||
break;
|
||
case CPP_MINUS:
|
||
top->value = v1 - v2;
|
||
top->unsignedp = unsigned1 | unsigned2;
|
||
if (! top->unsignedp && ! pfile->state.skip_eval
|
||
&& ! possible_sum_sign (top->value, v2, v1))
|
||
integer_overflow (pfile);
|
||
break;
|
||
case CPP_MULT:
|
||
top->unsignedp = unsigned1 | unsigned2;
|
||
if (top->unsignedp)
|
||
top->value = (unsigned HOST_WIDEST_INT) v1 * v2;
|
||
else if (!pfile->state.skip_eval)
|
||
{
|
||
top->value = v1 * v2;
|
||
if (v1 && (top->value / v1 != v2
|
||
|| (top->value & v1 & v2) < 0))
|
||
integer_overflow (pfile);
|
||
}
|
||
break;
|
||
case CPP_DIV:
|
||
case CPP_MOD:
|
||
if (pfile->state.skip_eval)
|
||
break;
|
||
if (v2 == 0)
|
||
{
|
||
cpp_error (pfile, DL_ERROR, "division by zero in #if");
|
||
return 0;
|
||
}
|
||
top->unsignedp = unsigned1 | unsigned2;
|
||
if (top[1].op == CPP_DIV)
|
||
{
|
||
if (top->unsignedp)
|
||
top->value = (unsigned HOST_WIDEST_INT) v1 / v2;
|
||
else
|
||
{
|
||
top->value = v1 / v2;
|
||
if ((top->value & v1 & v2) < 0)
|
||
integer_overflow (pfile);
|
||
}
|
||
}
|
||
else
|
||
{
|
||
if (top->unsignedp)
|
||
top->value = (unsigned HOST_WIDEST_INT) v1 % v2;
|
||
else
|
||
top->value = v1 % v2;
|
||
}
|
||
break;
|
||
|
||
case CPP_OR_OR:
|
||
top->value = v1 || v2;
|
||
top->unsignedp = 0;
|
||
if (v1) pfile->state.skip_eval--;
|
||
break;
|
||
case CPP_AND_AND:
|
||
top->value = v1 && v2;
|
||
top->unsignedp = 0;
|
||
if (!v1) pfile->state.skip_eval--;
|
||
break;
|
||
case CPP_COMMA:
|
||
if (CPP_PEDANTIC (pfile))
|
||
cpp_error (pfile, DL_PEDWARN,
|
||
"comma operator in operand of #if");
|
||
top->value = v2;
|
||
top->unsignedp = unsigned2;
|
||
break;
|
||
case CPP_QUERY:
|
||
cpp_error (pfile, DL_ERROR, "'?' without following ':'");
|
||
return 0;
|
||
case CPP_COLON:
|
||
top--;
|
||
if (top->value) pfile->state.skip_eval--;
|
||
top->value = top->value ? v1 : v2;
|
||
top->unsignedp = unsigned1 | unsigned2;
|
||
break;
|
||
case CPP_OPEN_PAREN:
|
||
if (op != CPP_CLOSE_PAREN)
|
||
{
|
||
cpp_error (pfile, DL_ERROR, "missing ')' in expression");
|
||
return 0;
|
||
}
|
||
top->value = v2;
|
||
top->unsignedp = unsigned2;
|
||
return top;
|
||
}
|
||
}
|
||
|
||
if (op == CPP_CLOSE_PAREN)
|
||
{
|
||
cpp_error (pfile, DL_ERROR, "missing '(' in expression");
|
||
return 0;
|
||
}
|
||
|
||
return top;
|
||
}
|
||
|
||
/* Returns the position of the old top of stack after expansion. */
|
||
struct op *
|
||
_cpp_expand_op_stack (pfile)
|
||
cpp_reader *pfile;
|
||
{
|
||
size_t old_size = (size_t) (pfile->op_limit - pfile->op_stack);
|
||
size_t new_size = old_size * 2 + 20;
|
||
|
||
pfile->op_stack = (struct op *) xrealloc (pfile->op_stack,
|
||
new_size * sizeof (struct op));
|
||
pfile->op_limit = pfile->op_stack + new_size;
|
||
|
||
return pfile->op_stack + old_size;
|
||
}
|