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scan.l revision 1.14.2.1
      1       1.1       cgd %{
      2  1.14.2.1   minoura /* $NetBSD: scan.l,v 1.14.2.1 2000/06/23 16:40:19 minoura Exp $ */
      3       1.2       cgd 
      4       1.1       cgd /*
      5       1.9       cgd  * Copyright (c) 1996 Christopher G. Demetriou.  All Rights Reserved.
      6       1.1       cgd  * Copyright (c) 1994, 1995 Jochen Pohl
      7       1.1       cgd  * All Rights Reserved.
      8       1.1       cgd  *
      9       1.1       cgd  * Redistribution and use in source and binary forms, with or without
     10       1.1       cgd  * modification, are permitted provided that the following conditions
     11       1.1       cgd  * are met:
     12       1.1       cgd  * 1. Redistributions of source code must retain the above copyright
     13       1.1       cgd  *    notice, this list of conditions and the following disclaimer.
     14       1.1       cgd  * 2. Redistributions in binary form must reproduce the above copyright
     15       1.1       cgd  *    notice, this list of conditions and the following disclaimer in the
     16       1.1       cgd  *    documentation and/or other materials provided with the distribution.
     17       1.1       cgd  * 3. All advertising materials mentioning features or use of this software
     18       1.1       cgd  *    must display the following acknowledgement:
     19       1.1       cgd  *      This product includes software developed by Jochen Pohl for
     20       1.1       cgd  *      The NetBSD Project.
     21       1.1       cgd  * 4. The name of the author may not be used to endorse or promote products
     22       1.1       cgd  *    derived from this software without specific prior written permission.
     23       1.1       cgd  *
     24       1.1       cgd  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
     25       1.1       cgd  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
     26       1.1       cgd  * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
     27       1.1       cgd  * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
     28       1.1       cgd  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
     29       1.1       cgd  * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
     30       1.1       cgd  * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
     31       1.1       cgd  * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
     32       1.1       cgd  * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
     33       1.1       cgd  * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
     34       1.1       cgd  */
     35       1.1       cgd 
     36      1.11  christos #include <sys/cdefs.h>
     37       1.1       cgd #ifndef lint
     38  1.14.2.1   minoura __RCSID("$NetBSD: scan.l,v 1.14.2.1 2000/06/23 16:40:19 minoura Exp $");
     39       1.1       cgd #endif
     40       1.1       cgd 
     41       1.1       cgd #include <stdlib.h>
     42       1.1       cgd #include <string.h>
     43       1.1       cgd #include <limits.h>
     44       1.1       cgd #include <float.h>
     45       1.1       cgd #include <ctype.h>
     46       1.1       cgd #include <errno.h>
     47       1.1       cgd #include <math.h>
     48       1.1       cgd #include <err.h>
     49       1.1       cgd 
     50       1.1       cgd #include "lint1.h"
     51      1.12        tv #include "cgram.h"
     52       1.1       cgd 
     53       1.1       cgd #define CHAR_MASK	(~(~0 << CHAR_BIT))
     54      1.11  christos #define YY_NO_UNPUT
     55       1.1       cgd 
     56       1.1       cgd /* Current position (its also updated when an included file is parsed) */
     57       1.9       cgd pos_t	curr_pos = { 1, "", 0 };
     58       1.1       cgd 
     59       1.1       cgd /*
     60       1.1       cgd  * Current position in C source (not updated when an included file is
     61       1.1       cgd  * parsed).
     62       1.1       cgd  */
     63       1.9       cgd pos_t	csrc_pos = { 1, "", 0 };
     64       1.1       cgd 
     65       1.1       cgd static	void	incline __P((void));
     66       1.1       cgd static	void	badchar __P((int));
     67       1.1       cgd static	sbuf_t	*allocsb __P((void));
     68       1.1       cgd static	void	freesb __P((sbuf_t *));
     69       1.1       cgd static	int	inpc __P((void));
     70       1.1       cgd static	int	hash __P((const char *));
     71       1.1       cgd static	sym_t	*search __P((sbuf_t *));
     72       1.1       cgd static	int	name __P((void));
     73       1.1       cgd static	int	keyw __P((sym_t *));
     74       1.1       cgd static	int	icon __P((int));
     75       1.1       cgd static	int	fcon __P((void));
     76       1.1       cgd static	int	operator __P((int, op_t));
     77       1.1       cgd static	int	ccon __P((void));
     78       1.1       cgd static	int	wccon __P((void));
     79       1.1       cgd static	int	getescc __P((int));
     80       1.1       cgd static	void	directive __P((void));
     81       1.1       cgd static	void	comment __P((void));
     82       1.1       cgd static	int	string __P((void));
     83       1.1       cgd static	int	wcstrg __P((void));
     84       1.1       cgd 
     85       1.1       cgd %}
     86       1.1       cgd 
     87       1.1       cgd L	[_A-Za-z]
     88       1.1       cgd D	[0-9]
     89       1.1       cgd NZD	[1-9]
     90       1.1       cgd OD	[0-7]
     91       1.1       cgd HD	[0-9A-Fa-f]
     92       1.1       cgd EX	([eE][+-]?[0-9]+)
     93       1.1       cgd 
     94       1.1       cgd %%
     95       1.1       cgd 
     96       1.1       cgd {L}({L}|{D})*		 	return (name());
     97       1.1       cgd 0{OD}*[lLuU]*			return (icon(8));
     98       1.1       cgd {NZD}{D}*[lLuU]*		return (icon(10));
     99       1.1       cgd 0[xX]{HD}+[lLuU]*		return (icon(16));
    100       1.1       cgd {D}+\.{D}*{EX}?[fFlL]?		|
    101       1.1       cgd {D}+{EX}[fFlL]?			|
    102       1.1       cgd \.{D}+{EX}?[fFlL]?		return (fcon());
    103       1.1       cgd "="				return (operator(T_ASSIGN, ASSIGN));
    104       1.1       cgd "*="				return (operator(T_OPASS, MULASS));
    105       1.1       cgd "/="				return (operator(T_OPASS, DIVASS));
    106       1.1       cgd "%="				return (operator(T_OPASS, MODASS));
    107       1.1       cgd "+="				return (operator(T_OPASS, ADDASS));
    108       1.1       cgd "-="				return (operator(T_OPASS, SUBASS));
    109       1.1       cgd "<<="				return (operator(T_OPASS, SHLASS));
    110       1.1       cgd ">>="				return (operator(T_OPASS, SHRASS));
    111       1.1       cgd "&="				return (operator(T_OPASS, ANDASS));
    112       1.1       cgd "^="				return (operator(T_OPASS, XORASS));
    113       1.1       cgd "|="				return (operator(T_OPASS, ORASS));
    114       1.1       cgd "||"				return (operator(T_LOGOR, LOGOR));
    115       1.1       cgd "&&"				return (operator(T_LOGAND, LOGAND));
    116       1.1       cgd "|"				return (operator(T_OR, OR));
    117       1.1       cgd "&"				return (operator(T_AND, AND));
    118       1.1       cgd "^"				return (operator(T_XOR, XOR));
    119       1.1       cgd "=="				return (operator(T_EQOP, EQ));
    120       1.1       cgd "!="				return (operator(T_EQOP, NE));
    121       1.1       cgd "<"				return (operator(T_RELOP, LT));
    122       1.1       cgd ">"				return (operator(T_RELOP, GT));
    123       1.1       cgd "<="				return (operator(T_RELOP, LE));
    124       1.1       cgd ">="				return (operator(T_RELOP, GE));
    125       1.1       cgd "<<"				return (operator(T_SHFTOP, SHL));
    126       1.1       cgd ">>"				return (operator(T_SHFTOP, SHR));
    127       1.1       cgd "++"				return (operator(T_INCDEC, INC));
    128       1.1       cgd "--"				return (operator(T_INCDEC, DEC));
    129       1.1       cgd "->"				return (operator(T_STROP, ARROW));
    130       1.1       cgd "."				return (operator(T_STROP, POINT));
    131       1.1       cgd "+"				return (operator(T_ADDOP, PLUS));
    132       1.1       cgd "-"				return (operator(T_ADDOP, MINUS));
    133       1.1       cgd "*"				return (operator(T_MULT, MULT));
    134       1.1       cgd "/"				return (operator(T_DIVOP, DIV));
    135       1.1       cgd "%"				return (operator(T_DIVOP, MOD));
    136       1.1       cgd "!"				return (operator(T_UNOP, NOT));
    137       1.1       cgd "~"				return (operator(T_UNOP, COMPL));
    138       1.1       cgd "\""				return (string());
    139       1.1       cgd "L\""				return (wcstrg());
    140       1.1       cgd ";"				return (T_SEMI);
    141       1.1       cgd "{"				return (T_LBRACE);
    142       1.1       cgd "}"				return (T_RBRACE);
    143       1.1       cgd ","				return (T_COMMA);
    144       1.1       cgd ":"				return (T_COLON);
    145       1.1       cgd "?"				return (T_QUEST);
    146       1.1       cgd "["				return (T_LBRACK);
    147       1.1       cgd "]"				return (T_RBRACK);
    148       1.1       cgd "("				return (T_LPARN);
    149       1.1       cgd ")"				return (T_RPARN);
    150       1.1       cgd "..."				return (T_ELLIPSE);
    151       1.1       cgd "'"				return (ccon());
    152       1.1       cgd "L'"				return (wccon());
    153       1.1       cgd ^#.*$				directive();
    154       1.1       cgd \n				incline();
    155       1.1       cgd \t|" "|\f|\v			;
    156       1.1       cgd "/*"				comment();
    157       1.1       cgd .				badchar(yytext[0]);
    158       1.1       cgd 
    159       1.1       cgd %%
    160       1.1       cgd 
    161       1.1       cgd static void
    162       1.1       cgd incline()
    163       1.1       cgd {
    164       1.1       cgd 	curr_pos.p_line++;
    165       1.9       cgd 	curr_pos.p_uniq = 0;
    166       1.9       cgd 	if (curr_pos.p_file == csrc_pos.p_file) {
    167       1.1       cgd 		csrc_pos.p_line++;
    168       1.9       cgd 		csrc_pos.p_uniq = 0;
    169       1.9       cgd 	}
    170       1.1       cgd }
    171       1.1       cgd 
    172       1.1       cgd static void
    173       1.1       cgd badchar(c)
    174       1.1       cgd 	int	c;
    175       1.1       cgd {
    176       1.1       cgd 	/* unknown character \%o */
    177       1.1       cgd 	error(250, c);
    178       1.1       cgd }
    179       1.1       cgd 
    180       1.1       cgd /*
    181       1.1       cgd  * Keywords.
    182       1.1       cgd  * During initialisation they are written to the symbol table.
    183       1.1       cgd  */
    184       1.1       cgd static	struct	kwtab {
    185       1.1       cgd 	const	char *kw_name;	/* keyword */
    186       1.1       cgd 	int	kw_token;	/* token returned by yylex() */
    187       1.1       cgd 	scl_t	kw_scl;		/* storage class if kw_token T_SCLASS */
    188       1.1       cgd 	tspec_t	kw_tspec;	/* type spec. if kw_token T_TYPE or T_SOU */
    189       1.1       cgd 	tqual_t	kw_tqual;	/* type qual. fi kw_token T_QUAL */
    190       1.5       jpo 	u_int	kw_stdc : 1;	/* STDC keyword */
    191       1.5       jpo 	u_int	kw_gcc : 1;	/* GCC keyword */
    192       1.1       cgd } kwtab[] = {
    193       1.6       jpo 	{ "asm",	T_ASM,		0,	0,	0,	  0, 1 },
    194       1.6       jpo 	{ "__asm",	T_ASM,		0,	0,	0,	  0, 0 },
    195       1.6       jpo 	{ "__asm__",	T_ASM,		0,	0,	0,	  0, 0 },
    196       1.5       jpo 	{ "auto",	T_SCLASS,	AUTO,	0,	0,	  0, 0 },
    197       1.5       jpo 	{ "break",	T_BREAK,	0,	0,	0,	  0, 0 },
    198       1.5       jpo 	{ "case",	T_CASE,		0,	0,	0,	  0, 0 },
    199       1.5       jpo 	{ "char",	T_TYPE,		0,	CHAR,	0,	  0, 0 },
    200       1.5       jpo 	{ "const",	T_QUAL,		0,	0,	CONST,	  1, 0 },
    201       1.5       jpo 	{ "__const__",	T_QUAL,		0,	0,	CONST,	  0, 0 },
    202       1.5       jpo 	{ "__const",	T_QUAL,		0,	0,	CONST,	  0, 0 },
    203       1.5       jpo 	{ "continue",	T_CONTINUE,	0,	0,	0,	  0, 0 },
    204       1.5       jpo 	{ "default",	T_DEFAULT,	0,	0,	0,	  0, 0 },
    205       1.5       jpo 	{ "do",		T_DO,		0,	0,	0,	  0, 0 },
    206       1.5       jpo 	{ "double",	T_TYPE,		0,	DOUBLE,	0,	  0, 0 },
    207       1.5       jpo 	{ "else",	T_ELSE,		0,	0,	0,	  0, 0 },
    208       1.5       jpo 	{ "enum",	T_ENUM,		0,	0,	0,	  0, 0 },
    209       1.5       jpo 	{ "extern",	T_SCLASS,	EXTERN,	0,	0,	  0, 0 },
    210       1.5       jpo 	{ "float",	T_TYPE,		0,	FLOAT,	0,	  0, 0 },
    211       1.5       jpo 	{ "for",	T_FOR,		0,	0,	0,	  0, 0 },
    212       1.5       jpo 	{ "goto",	T_GOTO,		0,	0,	0,	  0, 0 },
    213       1.5       jpo 	{ "if",		T_IF,		0,	0,	0,	  0, 0 },
    214       1.5       jpo 	{ "inline",	T_SCLASS,	INLINE,	0,	0,	  0, 1 },
    215       1.5       jpo 	{ "__inline__",	T_SCLASS,	INLINE,	0,	0,	  0, 0 },
    216       1.5       jpo 	{ "__inline",	T_SCLASS,	INLINE,	0,	0,	  0, 0 },
    217       1.5       jpo 	{ "int",	T_TYPE,		0,	INT,	0,	  0, 0 },
    218      1.10       cgd 	{ "__symbolrename", T_SYMBOLRENAME, 0,	0,	0,	  0, 0 },
    219       1.5       jpo 	{ "long",	T_TYPE,		0,	LONG,	0,	  0, 0 },
    220       1.5       jpo 	{ "register",	T_SCLASS,	REG,	0,	0,	  0, 0 },
    221       1.5       jpo 	{ "return",	T_RETURN,	0,	0,	0,	  0, 0 },
    222       1.5       jpo 	{ "short",	T_TYPE,		0,	SHORT,	0,	  0, 0 },
    223       1.5       jpo 	{ "signed",	T_TYPE,		0,	SIGNED,	0,	  1, 0 },
    224       1.5       jpo 	{ "__signed__",	T_TYPE,		0,	SIGNED,	0,	  0, 0 },
    225       1.5       jpo 	{ "__signed",	T_TYPE,		0,	SIGNED,	0,	  0, 0 },
    226       1.5       jpo 	{ "sizeof",	T_SIZEOF,	0,	0,	0,	  0, 0 },
    227       1.5       jpo 	{ "static",	T_SCLASS,	STATIC,	0,	0,	  0, 0 },
    228       1.5       jpo 	{ "struct",	T_SOU,		0,	STRUCT,	0,	  0, 0 },
    229       1.5       jpo 	{ "switch",	T_SWITCH,	0,	0,	0,	  0, 0 },
    230       1.5       jpo 	{ "typedef",	T_SCLASS,	TYPEDEF, 0,	0,	  0, 0 },
    231       1.5       jpo 	{ "union",	T_SOU,		0,	UNION,	0,	  0, 0 },
    232       1.5       jpo 	{ "unsigned",	T_TYPE,		0,	UNSIGN,	0,	  0, 0 },
    233       1.5       jpo 	{ "void",	T_TYPE,		0,	VOID,	0,	  0, 0 },
    234       1.5       jpo 	{ "volatile",	T_QUAL,		0,	0,	VOLATILE, 1, 0 },
    235       1.5       jpo 	{ "__volatile__", T_QUAL,	0,	0,	VOLATILE, 0, 0 },
    236       1.5       jpo 	{ "__volatile",	T_QUAL,		0,	0,	VOLATILE, 0, 0 },
    237       1.5       jpo 	{ "while",	T_WHILE,	0,	0,	0,	  0, 0 },
    238       1.5       jpo 	{ NULL,		0,		0,	0,	0,	  0, 0 }
    239       1.1       cgd };
    240       1.1       cgd 
    241       1.1       cgd /* Symbol table */
    242       1.1       cgd static	sym_t	*symtab[HSHSIZ1];
    243       1.1       cgd 
    244       1.1       cgd /* bit i of the entry with index i is set */
    245       1.1       cgd u_quad_t qbmasks[sizeof(u_quad_t) * CHAR_BIT];
    246       1.1       cgd 
    247       1.1       cgd /* least significant i bits are set in the entry with index i */
    248       1.1       cgd u_quad_t qlmasks[sizeof(u_quad_t) * CHAR_BIT + 1];
    249       1.1       cgd 
    250       1.1       cgd /* least significant i bits are not set in the entry with index i */
    251       1.1       cgd u_quad_t qumasks[sizeof(u_quad_t) * CHAR_BIT + 1];
    252       1.1       cgd 
    253       1.1       cgd /* free list for sbuf structures */
    254       1.1       cgd static	sbuf_t	 *sbfrlst;
    255       1.1       cgd 
    256       1.1       cgd /* Typ of next expected symbol */
    257       1.1       cgd symt_t	symtyp;
    258       1.1       cgd 
    259       1.1       cgd 
    260       1.1       cgd /*
    261       1.1       cgd  * All keywords are written to the symbol table. This saves us looking
    262       1.1       cgd  * in a extra table for each name we found.
    263       1.1       cgd  */
    264       1.1       cgd void
    265       1.1       cgd initscan()
    266       1.1       cgd {
    267       1.1       cgd 	struct	kwtab *kw;
    268       1.1       cgd 	sym_t	*sym;
    269       1.1       cgd 	int	h, i;
    270       1.1       cgd 	u_quad_t uq;
    271       1.1       cgd 
    272       1.1       cgd 	for (kw = kwtab; kw->kw_name != NULL; kw++) {
    273       1.5       jpo 		if (kw->kw_stdc && tflag)
    274       1.5       jpo 			continue;
    275       1.5       jpo 		if (kw->kw_gcc && !gflag)
    276       1.5       jpo 			continue;
    277       1.1       cgd 		sym = getblk(sizeof (sym_t));
    278       1.1       cgd 		sym->s_name = kw->kw_name;
    279       1.1       cgd 		sym->s_keyw = 1;
    280       1.1       cgd 		sym->s_value.v_quad = kw->kw_token;
    281       1.1       cgd 		if (kw->kw_token == T_TYPE || kw->kw_token == T_SOU) {
    282       1.1       cgd 			sym->s_tspec = kw->kw_tspec;
    283       1.1       cgd 		} else if (kw->kw_token == T_SCLASS) {
    284       1.1       cgd 			sym->s_scl = kw->kw_scl;
    285       1.1       cgd 		} else if (kw->kw_token == T_QUAL) {
    286       1.1       cgd 			sym->s_tqual = kw->kw_tqual;
    287       1.1       cgd 		}
    288       1.1       cgd 		h = hash(sym->s_name);
    289       1.1       cgd 		if ((sym->s_link = symtab[h]) != NULL)
    290       1.1       cgd 			symtab[h]->s_rlink = &sym->s_link;
    291       1.1       cgd 		(symtab[h] = sym)->s_rlink = &symtab[h];
    292       1.1       cgd 	}
    293       1.1       cgd 
    294       1.1       cgd 	/* initialize bit-masks for quads */
    295       1.1       cgd 	for (i = 0; i < sizeof (u_quad_t) * CHAR_BIT; i++) {
    296       1.1       cgd 		qbmasks[i] = (u_quad_t)1 << i;
    297       1.1       cgd 		uq = ~(u_quad_t)0 << i;
    298       1.1       cgd 		qumasks[i] = uq;
    299       1.1       cgd 		qlmasks[i] = ~uq;
    300       1.1       cgd 	}
    301       1.1       cgd 	qumasks[i] = 0;
    302       1.1       cgd 	qlmasks[i] = ~(u_quad_t)0;
    303       1.1       cgd }
    304       1.1       cgd 
    305       1.1       cgd /*
    306       1.1       cgd  * Get a free sbuf structure, if possible from the free list
    307       1.1       cgd  */
    308       1.1       cgd static sbuf_t *
    309       1.1       cgd allocsb()
    310       1.1       cgd {
    311       1.1       cgd 	sbuf_t	*sb;
    312       1.1       cgd 
    313       1.1       cgd 	if ((sb = sbfrlst) != NULL) {
    314       1.1       cgd 		sbfrlst = sb->sb_nxt;
    315       1.1       cgd 	} else {
    316       1.1       cgd 		sb = xmalloc(sizeof (sbuf_t));
    317       1.1       cgd 	}
    318       1.1       cgd 	(void)memset(sb, 0, sizeof (sb));
    319       1.1       cgd 	return (sb);
    320       1.1       cgd }
    321       1.1       cgd 
    322       1.1       cgd /*
    323       1.1       cgd  * Put a sbuf structure to the free list
    324       1.1       cgd  */
    325       1.1       cgd static void
    326       1.1       cgd freesb(sb)
    327       1.1       cgd 	sbuf_t	*sb;
    328       1.1       cgd {
    329       1.1       cgd 	sb->sb_nxt = sbfrlst;
    330       1.1       cgd 	sbfrlst = sb;
    331       1.1       cgd }
    332       1.1       cgd 
    333       1.1       cgd /*
    334       1.1       cgd  * Read a character and ensure that it is positive (except EOF).
    335       1.1       cgd  * Increment line count(s) if necessary.
    336       1.1       cgd  */
    337       1.1       cgd static int
    338       1.1       cgd inpc()
    339       1.1       cgd {
    340       1.1       cgd 	int	c;
    341       1.1       cgd 
    342       1.1       cgd 	if ((c = input()) != EOF && (c &= CHAR_MASK) == '\n')
    343       1.1       cgd 		incline();
    344       1.1       cgd 	return (c);
    345       1.1       cgd }
    346       1.1       cgd 
    347       1.1       cgd static int
    348       1.1       cgd hash(s)
    349       1.1       cgd 	const	char *s;
    350       1.1       cgd {
    351       1.1       cgd 	u_int	v;
    352       1.1       cgd 	const	u_char *us;
    353       1.1       cgd 
    354       1.1       cgd 	v = 0;
    355       1.1       cgd 	for (us = (const u_char *)s; *us != '\0'; us++) {
    356       1.1       cgd 		v = (v << sizeof (v)) + *us;
    357       1.1       cgd 		v ^= v >> (sizeof (v) * CHAR_BIT - sizeof (v));
    358       1.1       cgd 	}
    359       1.1       cgd 	return (v % HSHSIZ1);
    360       1.1       cgd }
    361       1.1       cgd 
    362       1.1       cgd /*
    363       1.1       cgd  * Lex has found a letter followed by zero or more letters or digits.
    364       1.1       cgd  * It looks for a symbol in the symbol table with the same name. This
    365       1.1       cgd  * symbol must either be a keyword or a symbol of the type required by
    366       1.1       cgd  * symtyp (label, member, tag, ...).
    367       1.1       cgd  *
    368       1.1       cgd  * If it is a keyword, the token is returned. In some cases it is described
    369       1.1       cgd  * more deeply by data written to yylval.
    370       1.1       cgd  *
    371       1.1       cgd  * If it is a symbol, T_NAME is returned and the pointer to a sbuf struct
    372       1.1       cgd  * is stored in yylval. This struct contains the name of the symbol, it's
    373       1.1       cgd  * length and hash value. If there is already a symbol of the same name
    374       1.1       cgd  * and type in the symbol table, the sbuf struct also contains a pointer
    375       1.1       cgd  * to the symbol table entry.
    376       1.1       cgd  */
    377       1.1       cgd static int
    378       1.1       cgd name()
    379       1.1       cgd {
    380       1.1       cgd 	char	*s;
    381       1.1       cgd 	sbuf_t	*sb;
    382       1.1       cgd 	sym_t	*sym;
    383       1.1       cgd 	int	tok;
    384       1.1       cgd 
    385       1.1       cgd 	sb = allocsb();
    386       1.1       cgd 	sb->sb_name = yytext;
    387       1.1       cgd 	sb->sb_len = yyleng;
    388       1.1       cgd 	sb->sb_hash = hash(yytext);
    389       1.1       cgd 
    390       1.1       cgd 	if ((sym = search(sb)) != NULL && sym->s_keyw) {
    391       1.1       cgd 		freesb(sb);
    392       1.1       cgd 		return (keyw(sym));
    393       1.1       cgd 	}
    394       1.1       cgd 
    395       1.1       cgd 	sb->sb_sym = sym;
    396       1.1       cgd 
    397       1.1       cgd 	if (sym != NULL) {
    398       1.1       cgd 		if (blklev < sym->s_blklev)
    399       1.1       cgd 			lerror("name() 1");
    400       1.1       cgd 		sb->sb_name = sym->s_name;
    401       1.1       cgd 		sb->sb_len = strlen(sym->s_name);
    402       1.1       cgd 		tok = sym->s_scl == TYPEDEF ? T_TYPENAME : T_NAME;
    403       1.1       cgd 	} else {
    404       1.1       cgd 		s = getblk(yyleng + 1);
    405       1.1       cgd 		(void)memcpy(s, yytext, yyleng + 1);
    406       1.1       cgd 		sb->sb_name = s;
    407       1.1       cgd 		sb->sb_len = yyleng;
    408       1.1       cgd 		tok = T_NAME;
    409       1.1       cgd 	}
    410       1.1       cgd 
    411       1.1       cgd 	yylval.y_sb = sb;
    412       1.1       cgd 	return (tok);
    413       1.1       cgd }
    414       1.1       cgd 
    415       1.1       cgd static sym_t *
    416       1.1       cgd search(sb)
    417       1.1       cgd 	sbuf_t	*sb;
    418       1.1       cgd {
    419       1.1       cgd 	sym_t	*sym;
    420       1.1       cgd 
    421       1.1       cgd 	for (sym = symtab[sb->sb_hash]; sym != NULL; sym = sym->s_link) {
    422       1.1       cgd 		if (strcmp(sym->s_name, sb->sb_name) == 0) {
    423       1.1       cgd 			if (sym->s_keyw || sym->s_kind == symtyp)
    424       1.1       cgd 				return (sym);
    425       1.1       cgd 		}
    426       1.1       cgd 	}
    427       1.1       cgd 
    428       1.1       cgd 	return (NULL);
    429       1.1       cgd }
    430       1.1       cgd 
    431       1.1       cgd static int
    432       1.1       cgd keyw(sym)
    433       1.1       cgd 	sym_t	*sym;
    434       1.1       cgd {
    435       1.1       cgd 	int	t;
    436       1.1       cgd 
    437       1.1       cgd 	if ((t = (int)sym->s_value.v_quad) == T_SCLASS) {
    438       1.1       cgd 		yylval.y_scl = sym->s_scl;
    439       1.1       cgd 	} else if (t == T_TYPE || t == T_SOU) {
    440       1.1       cgd 		yylval.y_tspec = sym->s_tspec;
    441       1.1       cgd 	} else if (t == T_QUAL) {
    442       1.1       cgd 		yylval.y_tqual = sym->s_tqual;
    443       1.1       cgd 	}
    444       1.1       cgd 	return (t);
    445       1.1       cgd }
    446       1.1       cgd 
    447       1.1       cgd /*
    448       1.1       cgd  * Convert a string representing an integer into internal representation.
    449       1.1       cgd  * The value is returned in yylval. icon() (and yylex()) returns T_CON.
    450       1.1       cgd  */
    451       1.1       cgd static int
    452       1.1       cgd icon(base)
    453       1.1       cgd 	int	base;
    454       1.1       cgd {
    455       1.1       cgd 	int	l_suffix, u_suffix;
    456       1.1       cgd 	int	len;
    457       1.1       cgd 	const	char *cp;
    458       1.1       cgd 	char	c, *eptr;
    459       1.1       cgd 	tspec_t	typ;
    460      1.11  christos 	u_long	ul = 0;
    461      1.11  christos 	u_quad_t uq = 0;
    462       1.1       cgd 	int	ansiu;
    463       1.1       cgd 	static	tspec_t contypes[2][3] = {
    464       1.1       cgd 		{ INT,  LONG,  QUAD },
    465       1.1       cgd 		{ UINT, ULONG, UQUAD }
    466       1.1       cgd 	};
    467       1.1       cgd 
    468       1.1       cgd 	cp = yytext;
    469       1.1       cgd 	len = yyleng;
    470       1.1       cgd 
    471       1.1       cgd 	/* skip 0x */
    472       1.1       cgd 	if (base == 16) {
    473       1.1       cgd 		cp += 2;
    474       1.1       cgd 		len -= 2;
    475       1.1       cgd 	}
    476       1.1       cgd 
    477       1.1       cgd 	/* read suffixes */
    478       1.1       cgd 	l_suffix = u_suffix = 0;
    479       1.1       cgd 	for ( ; ; ) {
    480       1.1       cgd 		if ((c = cp[len - 1]) == 'l' || c == 'L') {
    481       1.1       cgd 			l_suffix++;
    482       1.1       cgd 		} else if (c == 'u' || c == 'U') {
    483       1.1       cgd 			u_suffix++;
    484       1.1       cgd 		} else {
    485       1.1       cgd 			break;
    486       1.1       cgd 		}
    487       1.1       cgd 		len--;
    488       1.1       cgd 	}
    489       1.1       cgd 	if (l_suffix > 2 || u_suffix > 1) {
    490       1.1       cgd 		/* malformed integer constant */
    491       1.1       cgd 		warning(251);
    492       1.1       cgd 		if (l_suffix > 2)
    493       1.1       cgd 			l_suffix = 2;
    494       1.1       cgd 		if (u_suffix > 1)
    495       1.1       cgd 			u_suffix = 1;
    496       1.1       cgd 	}
    497       1.1       cgd 	if (tflag && u_suffix != 0) {
    498       1.1       cgd 		/* suffix U is illegal in traditional C */
    499       1.1       cgd 		warning(97);
    500       1.1       cgd 	}
    501       1.1       cgd 	typ = contypes[u_suffix][l_suffix];
    502       1.1       cgd 
    503       1.1       cgd 	errno = 0;
    504       1.1       cgd 	if (l_suffix < 2) {
    505       1.1       cgd 		ul = strtoul(cp, &eptr, base);
    506       1.1       cgd 	} else {
    507       1.1       cgd 		uq = strtouq(cp, &eptr, base);
    508       1.1       cgd 	}
    509       1.1       cgd 	if (eptr != cp + len)
    510       1.1       cgd 		lerror("icon() 1");
    511       1.1       cgd 	if (errno != 0)
    512       1.1       cgd 		/* integer constant out of range */
    513       1.1       cgd 		warning(252);
    514       1.1       cgd 
    515       1.1       cgd 	/*
    516       1.1       cgd          * If the value is to big for the current type, we must choose
    517       1.1       cgd 	 * another type.
    518       1.1       cgd 	 */
    519       1.1       cgd 	ansiu = 0;
    520       1.1       cgd 	switch (typ) {
    521       1.1       cgd 	case INT:
    522       1.1       cgd 		if (ul <= INT_MAX) {
    523       1.1       cgd 			/* ok */
    524       1.1       cgd 		} else if (ul <= (unsigned)UINT_MAX && base != 10) {
    525       1.1       cgd 			typ = UINT;
    526       1.1       cgd 		} else if (ul <= LONG_MAX) {
    527       1.1       cgd 			typ = LONG;
    528       1.1       cgd 		} else {
    529       1.1       cgd 			typ = ULONG;
    530       1.1       cgd 		}
    531       1.1       cgd 		if (typ == UINT || typ == ULONG) {
    532       1.1       cgd 			if (tflag) {
    533       1.1       cgd 				typ = LONG;
    534       1.1       cgd 			} else if (!sflag) {
    535       1.1       cgd 				/*
    536       1.1       cgd 				 * Remember that the constant is unsigned
    537       1.1       cgd 				 * only in ANSI C
    538       1.1       cgd 				 */
    539       1.1       cgd 				ansiu = 1;
    540       1.1       cgd 			}
    541       1.1       cgd 		}
    542       1.1       cgd 		break;
    543       1.1       cgd 	case UINT:
    544       1.1       cgd 		if (ul > (u_int)UINT_MAX)
    545       1.1       cgd 			typ = ULONG;
    546       1.1       cgd 		break;
    547       1.1       cgd 	case LONG:
    548       1.1       cgd 		if (ul > LONG_MAX && !tflag) {
    549       1.1       cgd 			typ = ULONG;
    550       1.1       cgd 			if (!sflag)
    551       1.1       cgd 				ansiu = 1;
    552       1.1       cgd 		}
    553       1.1       cgd 		break;
    554       1.1       cgd 	case QUAD:
    555       1.1       cgd 		if (uq > QUAD_MAX && !tflag) {
    556       1.1       cgd 			typ = UQUAD;
    557       1.1       cgd 			if (!sflag)
    558       1.1       cgd 				ansiu = 1;
    559       1.1       cgd 		}
    560       1.1       cgd 		break;
    561       1.1       cgd 		/* LINTED (enumeration values not handled in switch) */
    562      1.11  christos 	case STRUCT:
    563      1.11  christos 	case VOID:
    564      1.11  christos 	case LDOUBLE:
    565      1.11  christos 	case FUNC:
    566      1.11  christos 	case ARRAY:
    567      1.11  christos 	case PTR:
    568      1.11  christos 	case ENUM:
    569      1.11  christos 	case UNION:
    570      1.11  christos 	case SIGNED:
    571      1.11  christos 	case NOTSPEC:
    572      1.11  christos 	case DOUBLE:
    573      1.11  christos 	case FLOAT:
    574      1.11  christos 	case UQUAD:
    575      1.11  christos 	case ULONG:
    576      1.11  christos 	case USHORT:
    577      1.11  christos 	case SHORT:
    578      1.11  christos 	case UCHAR:
    579      1.11  christos 	case SCHAR:
    580      1.11  christos 	case CHAR:
    581      1.11  christos 	case UNSIGN:
    582      1.11  christos 		break;
    583       1.1       cgd 	}
    584       1.1       cgd 
    585       1.1       cgd 	if (typ != QUAD && typ != UQUAD) {
    586       1.1       cgd 		if (isutyp(typ)) {
    587       1.1       cgd 			uq = ul;
    588       1.1       cgd 		} else {
    589       1.1       cgd 			uq = (quad_t)(long)ul;
    590       1.1       cgd 		}
    591       1.1       cgd 	}
    592       1.1       cgd 
    593       1.1       cgd 	uq = (u_quad_t)xsign((quad_t)uq, typ, -1);
    594       1.1       cgd 
    595       1.1       cgd 	(yylval.y_val = xcalloc(1, sizeof (val_t)))->v_tspec = typ;
    596       1.1       cgd 	yylval.y_val->v_ansiu = ansiu;
    597       1.1       cgd 	yylval.y_val->v_quad = (quad_t)uq;
    598       1.1       cgd 
    599       1.1       cgd 	return (T_CON);
    600       1.1       cgd }
    601       1.1       cgd 
    602       1.1       cgd /*
    603       1.1       cgd  * Returns 1 if t is a signed type and the value is negative.
    604       1.1       cgd  *
    605       1.1       cgd  * len is the number of significant bits. If len is -1, len is set
    606       1.1       cgd  * to the width of type t.
    607       1.1       cgd  */
    608       1.1       cgd int
    609       1.1       cgd sign(q, t, len)
    610       1.1       cgd 	quad_t	q;
    611       1.1       cgd 	tspec_t	t;
    612       1.1       cgd 	int	len;
    613       1.1       cgd {
    614       1.1       cgd 	if (t == PTR || isutyp(t))
    615       1.1       cgd 		return (0);
    616       1.1       cgd 	return (msb(q, t, len));
    617       1.1       cgd }
    618       1.1       cgd 
    619       1.1       cgd int
    620       1.1       cgd msb(q, t, len)
    621       1.1       cgd 	quad_t	q;
    622       1.1       cgd 	tspec_t	t;
    623       1.1       cgd 	int	len;
    624       1.1       cgd {
    625       1.1       cgd 	if (len <= 0)
    626       1.1       cgd 		len = size(t);
    627       1.1       cgd 	return ((q & qbmasks[len - 1]) != 0);
    628       1.1       cgd }
    629       1.1       cgd 
    630       1.1       cgd /*
    631       1.1       cgd  * Extends the sign of q.
    632       1.1       cgd  */
    633       1.1       cgd quad_t
    634       1.1       cgd xsign(q, t, len)
    635       1.1       cgd 	quad_t	q;
    636       1.1       cgd 	tspec_t	t;
    637       1.1       cgd 	int	len;
    638       1.1       cgd {
    639       1.1       cgd 	if (len <= 0)
    640       1.1       cgd 		len = size(t);
    641       1.1       cgd 
    642       1.1       cgd 	if (t == PTR || isutyp(t) || !sign(q, t, len)) {
    643       1.1       cgd 		q &= qlmasks[len];
    644       1.1       cgd 	} else {
    645       1.1       cgd 		q |= qumasks[len];
    646       1.1       cgd 	}
    647       1.1       cgd 	return (q);
    648       1.1       cgd }
    649       1.1       cgd 
    650       1.1       cgd /*
    651       1.1       cgd  * Convert a string representing a floating point value into its interal
    652       1.1       cgd  * representation. Type and value are returned in yylval. fcon()
    653       1.1       cgd  * (and yylex()) returns T_CON.
    654       1.1       cgd  * XXX Currently it is not possible to convert constants of type
    655       1.1       cgd  * long double which are greater then DBL_MAX.
    656       1.1       cgd  */
    657       1.1       cgd static int
    658       1.1       cgd fcon()
    659       1.1       cgd {
    660       1.1       cgd 	const	char *cp;
    661       1.1       cgd 	int	len;
    662       1.1       cgd 	tspec_t typ;
    663       1.1       cgd 	char	c, *eptr;
    664       1.1       cgd 	double	d;
    665      1.11  christos 	float	f = 0;
    666       1.1       cgd 
    667       1.1       cgd 	cp = yytext;
    668       1.1       cgd 	len = yyleng;
    669       1.1       cgd 
    670       1.1       cgd 	if ((c = cp[len - 1]) == 'f' || c == 'F') {
    671       1.1       cgd 		typ = FLOAT;
    672       1.1       cgd 		len--;
    673       1.1       cgd 	} else if (c == 'l' || c == 'L') {
    674       1.1       cgd 		typ = LDOUBLE;
    675       1.1       cgd 		len--;
    676       1.1       cgd 	} else {
    677       1.1       cgd 		typ = DOUBLE;
    678       1.1       cgd 	}
    679       1.1       cgd 
    680       1.1       cgd 	if (tflag && typ != DOUBLE) {
    681       1.1       cgd 		/* suffixes F and L are illegal in traditional C */
    682       1.1       cgd 		warning(98);
    683       1.1       cgd 	}
    684       1.1       cgd 
    685       1.1       cgd 	errno = 0;
    686       1.1       cgd 	d = strtod(cp, &eptr);
    687       1.1       cgd 	if (eptr != cp + len)
    688       1.1       cgd 		lerror("fcon() 1");
    689       1.1       cgd 	if (errno != 0)
    690       1.1       cgd 		/* floating-point constant out of range */
    691       1.1       cgd 		warning(248);
    692       1.1       cgd 
    693       1.1       cgd 	if (typ == FLOAT) {
    694       1.1       cgd 		f = (float)d;
    695       1.1       cgd 		if (isinf(f)) {
    696       1.1       cgd 			/* floating-point constant out of range */
    697       1.1       cgd 			warning(248);
    698       1.1       cgd 			f = f > 0 ? FLT_MAX : -FLT_MAX;
    699       1.1       cgd 		}
    700       1.1       cgd 	}
    701       1.1       cgd 
    702       1.1       cgd 	(yylval.y_val = xcalloc(1, sizeof (val_t)))->v_tspec = typ;
    703       1.1       cgd 	if (typ == FLOAT) {
    704       1.1       cgd 		yylval.y_val->v_ldbl = f;
    705       1.1       cgd 	} else {
    706       1.1       cgd 		yylval.y_val->v_ldbl = d;
    707       1.1       cgd 	}
    708       1.1       cgd 
    709       1.1       cgd 	return (T_CON);
    710       1.1       cgd }
    711       1.1       cgd 
    712       1.1       cgd static int
    713       1.1       cgd operator(t, o)
    714       1.1       cgd 	int	t;
    715       1.1       cgd 	op_t	o;
    716       1.1       cgd {
    717       1.1       cgd 	yylval.y_op = o;
    718       1.1       cgd 	return (t);
    719       1.1       cgd }
    720       1.1       cgd 
    721       1.1       cgd /*
    722       1.1       cgd  * Called if lex found a leading \'.
    723       1.1       cgd  */
    724       1.1       cgd static int
    725       1.1       cgd ccon()
    726       1.1       cgd {
    727       1.1       cgd 	int	n, val, c;
    728       1.1       cgd 	char	cv;
    729       1.1       cgd 
    730       1.1       cgd 	n = 0;
    731       1.1       cgd 	val = 0;
    732       1.1       cgd 	while ((c = getescc('\'')) >= 0) {
    733       1.1       cgd 		val = (val << CHAR_BIT) + c;
    734       1.1       cgd 		n++;
    735       1.1       cgd 	}
    736       1.1       cgd 	if (c == -2) {
    737       1.1       cgd 		/* unterminated character constant */
    738       1.1       cgd 		error(253);
    739       1.1       cgd 	} else {
    740       1.1       cgd 		if (n > sizeof (int) || (n > 1 && (pflag || hflag))) {
    741       1.1       cgd 			/* too many characters in character constant */
    742       1.1       cgd 			error(71);
    743       1.1       cgd 		} else if (n > 1) {
    744       1.1       cgd 			/* multi-character character constant */
    745       1.1       cgd 			warning(294);
    746       1.1       cgd 		} else if (n == 0) {
    747       1.1       cgd 			/* empty character constant */
    748       1.1       cgd 			error(73);
    749       1.1       cgd 		}
    750       1.1       cgd 	}
    751       1.1       cgd 	if (n == 1) {
    752       1.1       cgd 		cv = (char)val;
    753       1.1       cgd 		val = cv;
    754       1.1       cgd 	}
    755       1.1       cgd 
    756       1.1       cgd 	yylval.y_val = xcalloc(1, sizeof (val_t));
    757       1.1       cgd 	yylval.y_val->v_tspec = INT;
    758       1.1       cgd 	yylval.y_val->v_quad = val;
    759       1.1       cgd 
    760       1.1       cgd 	return (T_CON);
    761       1.1       cgd }
    762       1.1       cgd 
    763       1.1       cgd /*
    764       1.1       cgd  * Called if lex found a leading L\'
    765       1.1       cgd  */
    766       1.1       cgd static int
    767       1.1       cgd wccon()
    768       1.1       cgd {
    769       1.8       jpo 	static	char buf[MB_LEN_MAX + 1];
    770       1.1       cgd 	int	i, c;
    771       1.1       cgd 	wchar_t	wc;
    772       1.1       cgd 
    773       1.1       cgd 	i = 0;
    774       1.1       cgd 	while ((c = getescc('\'')) >= 0) {
    775       1.1       cgd 		if (i < MB_CUR_MAX)
    776       1.1       cgd 			buf[i] = (char)c;
    777       1.1       cgd 		i++;
    778       1.1       cgd 	}
    779       1.1       cgd 
    780       1.1       cgd 	wc = 0;
    781       1.1       cgd 
    782       1.1       cgd 	if (c == -2) {
    783       1.1       cgd 		/* unterminated character constant */
    784       1.1       cgd 		error(253);
    785       1.1       cgd 	} else if (c == 0) {
    786       1.1       cgd 		/* empty character constant */
    787       1.1       cgd 		error(73);
    788       1.1       cgd 	} else {
    789       1.1       cgd 		if (i > MB_CUR_MAX) {
    790       1.1       cgd 			i = MB_CUR_MAX;
    791       1.1       cgd 			/* too many characters in character constant */
    792       1.1       cgd 			error(71);
    793       1.1       cgd 		} else {
    794       1.1       cgd 			buf[i] = '\0';
    795       1.1       cgd 			(void)mbtowc(NULL, NULL, 0);
    796       1.1       cgd 			if (mbtowc(&wc, buf, MB_CUR_MAX) < 0)
    797       1.1       cgd 				/* invalid multibyte character */
    798       1.1       cgd 				error(291);
    799       1.1       cgd 		}
    800       1.1       cgd 	}
    801       1.1       cgd 
    802       1.1       cgd 	yylval.y_val = xcalloc(1, sizeof (val_t));
    803       1.1       cgd 	yylval.y_val->v_tspec = WCHAR;
    804       1.1       cgd 	yylval.y_val->v_quad = wc;
    805       1.1       cgd 
    806       1.1       cgd 	return (T_CON);
    807       1.1       cgd }
    808       1.1       cgd 
    809       1.1       cgd /*
    810       1.1       cgd  * Read a character which is part of a character constant or of a string
    811       1.1       cgd  * and handle escapes.
    812       1.1       cgd  *
    813       1.1       cgd  * The Argument is the character which delimits the character constant or
    814       1.1       cgd  * string.
    815       1.1       cgd  *
    816       1.1       cgd  * Returns -1 if the end of the character constant or string is reached,
    817       1.1       cgd  * -2 if the EOF is reached, and the charachter otherwise.
    818       1.1       cgd  */
    819       1.1       cgd static int
    820       1.1       cgd getescc(d)
    821       1.1       cgd 	int	d;
    822       1.1       cgd {
    823       1.1       cgd 	static	int pbc = -1;
    824       1.1       cgd 	int	n, c, v;
    825       1.1       cgd 
    826       1.1       cgd 	if (pbc == -1) {
    827       1.1       cgd 		c = inpc();
    828       1.1       cgd 	} else {
    829       1.1       cgd 		c = pbc;
    830       1.1       cgd 		pbc = -1;
    831       1.1       cgd 	}
    832       1.1       cgd 	if (c == d)
    833       1.1       cgd 		return (-1);
    834       1.1       cgd 	switch (c) {
    835       1.1       cgd 	case '\n':
    836       1.1       cgd 		/* newline in string or char constant */
    837       1.1       cgd 		error(254);
    838       1.1       cgd 		return (-2);
    839       1.1       cgd 	case EOF:
    840       1.1       cgd 		return (-2);
    841       1.1       cgd 	case '\\':
    842       1.1       cgd 		switch (c = inpc()) {
    843       1.1       cgd 		case '"':
    844       1.1       cgd 			if (tflag && d == '\'')
    845       1.1       cgd 				/* \" inside character constant undef. ... */
    846       1.1       cgd 				warning(262);
    847       1.1       cgd 			return ('"');
    848       1.1       cgd 		case '\'':
    849       1.1       cgd 			return ('\'');
    850       1.1       cgd 		case '?':
    851       1.1       cgd 			if (tflag)
    852       1.1       cgd 				/* \? undefined in traditional C */
    853       1.1       cgd 				warning(263);
    854       1.1       cgd 			return ('?');
    855       1.1       cgd 		case '\\':
    856       1.1       cgd 			return ('\\');
    857       1.1       cgd 		case 'a':
    858       1.1       cgd 			if (tflag)
    859       1.1       cgd 				/* \a undefined in traditional C */
    860       1.1       cgd 				warning(81);
    861       1.1       cgd #ifdef __STDC__
    862       1.1       cgd 			return ('\a');
    863       1.1       cgd #else
    864       1.1       cgd 			return ('\007');
    865       1.1       cgd #endif
    866       1.1       cgd 		case 'b':
    867       1.1       cgd 			return ('\b');
    868       1.1       cgd 		case 'f':
    869       1.1       cgd 			return ('\f');
    870       1.1       cgd 		case 'n':
    871       1.1       cgd 			return ('\n');
    872       1.1       cgd 		case 'r':
    873       1.1       cgd 			return ('\r');
    874       1.1       cgd 		case 't':
    875       1.1       cgd 			return ('\t');
    876       1.1       cgd 		case 'v':
    877       1.1       cgd 			if (tflag)
    878       1.1       cgd 				/* \v undefined in traditional C */
    879       1.1       cgd 				warning(264);
    880       1.1       cgd #ifdef __STDC__
    881       1.1       cgd 			return ('\v');
    882       1.1       cgd #else
    883       1.1       cgd 			return ('\013');
    884       1.1       cgd #endif
    885       1.1       cgd 		case '8': case '9':
    886       1.1       cgd 			/* bad octal digit %c */
    887       1.1       cgd 			warning(77, c);
    888       1.1       cgd 			/* FALLTHROUGH */
    889       1.1       cgd 		case '0': case '1': case '2': case '3':
    890       1.1       cgd 		case '4': case '5': case '6': case '7':
    891       1.1       cgd 			n = 3;
    892       1.1       cgd 			v = 0;
    893       1.1       cgd 			do {
    894       1.1       cgd 				v = (v << 3) + (c - '0');
    895       1.1       cgd 				c = inpc();
    896       1.1       cgd 			} while (--n && isdigit(c) && (tflag || c <= '7'));
    897       1.1       cgd 			if (tflag && n > 0 && isdigit(c))
    898       1.1       cgd 				/* bad octal digit %c */
    899       1.1       cgd 				warning(77, c);
    900       1.1       cgd 			pbc = c;
    901       1.1       cgd 			if (v > UCHAR_MAX) {
    902       1.1       cgd 				/* character escape does not fit in char. */
    903       1.1       cgd 				warning(76);
    904       1.1       cgd 				v &= CHAR_MASK;
    905       1.1       cgd 			}
    906       1.1       cgd 			return (v);
    907       1.1       cgd 		case 'x':
    908       1.1       cgd 			if (tflag)
    909       1.1       cgd 				/* \x undefined in traditional C */
    910       1.1       cgd 				warning(82);
    911       1.1       cgd 			v = 0;
    912       1.1       cgd 			n = 0;
    913       1.1       cgd 			while ((c = inpc()) >= 0 && isxdigit(c)) {
    914       1.1       cgd 				c = isdigit(c) ?
    915       1.1       cgd 					c - '0' : toupper(c) - 'A' + 10;
    916       1.1       cgd 				v = (v << 4) + c;
    917       1.1       cgd 				if (n >= 0) {
    918       1.1       cgd 					if ((v & ~CHAR_MASK) != 0) {
    919       1.1       cgd 						/* overflow in hex escape */
    920       1.1       cgd 						warning(75);
    921       1.1       cgd 						n = -1;
    922       1.1       cgd 					} else {
    923       1.1       cgd 						n++;
    924       1.1       cgd 					}
    925       1.1       cgd 				}
    926       1.1       cgd 			}
    927       1.1       cgd 			pbc = c;
    928       1.1       cgd 			if (n == 0) {
    929       1.1       cgd 				/* no hex digits follow \x */
    930       1.1       cgd 				error(74);
    931       1.1       cgd 			} if (n == -1) {
    932       1.1       cgd 				v &= CHAR_MASK;
    933       1.1       cgd 			}
    934       1.1       cgd 			return (v);
    935       1.1       cgd 		case '\n':
    936       1.1       cgd 			return (getescc(d));
    937       1.1       cgd 		case EOF:
    938       1.1       cgd 			return (-2);
    939       1.1       cgd 		default:
    940       1.1       cgd 			if (isprint(c)) {
    941       1.1       cgd 				/* dubious escape \%c */
    942       1.1       cgd 				warning(79, c);
    943       1.1       cgd 			} else {
    944       1.1       cgd 				/* dubious escape \%o */
    945       1.1       cgd 				warning(80, c);
    946       1.1       cgd 			}
    947       1.1       cgd 		}
    948       1.1       cgd 	}
    949       1.1       cgd 	return (c);
    950       1.1       cgd }
    951       1.1       cgd 
    952       1.1       cgd /*
    953       1.1       cgd  * Called for preprocessor directives. Currently implemented are:
    954       1.1       cgd  *	# lineno
    955       1.1       cgd  *	# lineno "filename"
    956       1.1       cgd  */
    957       1.1       cgd static void
    958       1.1       cgd directive()
    959       1.1       cgd {
    960       1.1       cgd 	const	char *cp, *fn;
    961       1.1       cgd 	char	c, *eptr;
    962       1.1       cgd 	size_t	fnl;
    963       1.1       cgd 	long	ln;
    964       1.1       cgd 	static	int first = 1;
    965       1.1       cgd 
    966       1.1       cgd 	/* Go to first non-whitespace after # */
    967       1.1       cgd 	for (cp = yytext + 1; (c = *cp) == ' ' || c == '\t'; cp++) ;
    968       1.1       cgd 
    969      1.13  christos 	if (!isdigit((unsigned char)c)) {
    970       1.1       cgd 	error:
    971       1.1       cgd 		/* undefined or invalid # directive */
    972       1.1       cgd 		warning(255);
    973       1.1       cgd 		return;
    974       1.1       cgd 	}
    975       1.1       cgd 	ln = strtol(--cp, &eptr, 10);
    976       1.1       cgd 	if (cp == eptr)
    977       1.1       cgd 		goto error;
    978       1.1       cgd 	if ((c = *(cp = eptr)) != ' ' && c != '\t' && c != '\0')
    979       1.1       cgd 		goto error;
    980       1.1       cgd 	while ((c = *cp++) == ' ' || c == '\t') ;
    981       1.1       cgd 	if (c != '\0') {
    982       1.1       cgd 		if (c != '"')
    983       1.1       cgd 			goto error;
    984       1.1       cgd 		fn = cp;
    985       1.1       cgd 		while ((c = *cp) != '"' && c != '\0')
    986       1.1       cgd 			cp++;
    987       1.1       cgd 		if (c != '"')
    988       1.1       cgd 			goto error;
    989       1.1       cgd 		if ((fnl = cp++ - fn) > PATH_MAX)
    990       1.1       cgd 			goto error;
    991       1.1       cgd 		while ((c = *cp++) == ' ' || c == '\t') ;
    992       1.1       cgd #if 0
    993       1.1       cgd 		if (c != '\0')
    994       1.1       cgd 			warning("extra character(s) after directive");
    995       1.1       cgd #endif
    996       1.9       cgd 
    997       1.9       cgd 		/* empty string means stdin */
    998       1.9       cgd 		if (fnl == 0) {
    999       1.9       cgd 			fn = "{standard input}";
   1000       1.9       cgd 			fnl = 16;			/* strlen (fn) */
   1001       1.9       cgd 		}
   1002       1.1       cgd 		curr_pos.p_file = fnnalloc(fn, fnl);
   1003       1.1       cgd 		/*
   1004       1.1       cgd 		 * If this is the first directive, the name is the name
   1005       1.1       cgd 		 * of the C source file as specified at the command line.
   1006       1.1       cgd 		 * It is written to the output file.
   1007       1.1       cgd 		 */
   1008       1.1       cgd 		if (first) {
   1009       1.1       cgd 			csrc_pos.p_file = curr_pos.p_file;
   1010       1.1       cgd 			outsrc(curr_pos.p_file);
   1011       1.1       cgd 			first = 0;
   1012       1.1       cgd 		}
   1013       1.1       cgd 	}
   1014       1.1       cgd 	curr_pos.p_line = (int)ln - 1;
   1015       1.9       cgd 	curr_pos.p_uniq = 0;
   1016       1.9       cgd 	if (curr_pos.p_file == csrc_pos.p_file) {
   1017       1.1       cgd 		csrc_pos.p_line = (int)ln - 1;
   1018       1.9       cgd 		csrc_pos.p_uniq = 0;
   1019       1.9       cgd 	}
   1020       1.1       cgd }
   1021       1.1       cgd 
   1022       1.1       cgd /*
   1023       1.1       cgd  * Handle lint comments. Following comments are currently understood:
   1024       1.1       cgd  *	ARGSUSEDn
   1025       1.1       cgd  *	CONSTCOND CONSTANTCOND CONSTANTCONDITION
   1026       1.1       cgd  *	FALLTHRU FALLTHROUGH
   1027       1.1       cgd  *	LINTLIBRARY
   1028       1.1       cgd  *	LINTED NOSTRICT
   1029       1.7       jpo  *	LONGLONG
   1030       1.1       cgd  *	NOTREACHED
   1031       1.1       cgd  *	PRINTFLIKEn
   1032       1.1       cgd  *	PROTOLIB
   1033       1.1       cgd  *	SCANFLIKEn
   1034       1.1       cgd  *	VARARGSn
   1035       1.1       cgd  * If one of this comments is recognized, the arguments, if any, are
   1036       1.1       cgd  * parsed and a function which handles this comment is called.
   1037       1.1       cgd  */
   1038       1.1       cgd static void
   1039       1.1       cgd comment()
   1040       1.1       cgd {
   1041       1.1       cgd 	int	c, lc;
   1042       1.1       cgd 	static struct {
   1043       1.1       cgd 		const	char *keywd;
   1044       1.1       cgd 		int	arg;
   1045       1.1       cgd 		void	(*func) __P((int));
   1046       1.1       cgd 	} keywtab[] = {
   1047       1.1       cgd 		{ "ARGSUSED",		1,	argsused	},
   1048       1.1       cgd 		{ "CONSTCOND",		0,	constcond	},
   1049       1.1       cgd 		{ "CONSTANTCOND",	0,	constcond	},
   1050       1.1       cgd 		{ "CONSTANTCONDITION",	0,	constcond	},
   1051       1.1       cgd 		{ "FALLTHRU",		0,	fallthru	},
   1052       1.1       cgd 		{ "FALLTHROUGH",	0,	fallthru	},
   1053       1.1       cgd 		{ "LINTLIBRARY",	0,	lintlib		},
   1054       1.1       cgd 		{ "LINTED",		0,	linted		},
   1055       1.7       jpo 		{ "LONGLONG",		0,	longlong	},
   1056       1.1       cgd 		{ "NOSTRICT",		0,	linted		},
   1057       1.1       cgd 		{ "NOTREACHED",		0,	notreach	},
   1058       1.1       cgd 		{ "PRINTFLIKE",		1,	printflike	},
   1059       1.1       cgd 		{ "PROTOLIB",		1,	protolib	},
   1060       1.1       cgd 		{ "SCANFLIKE",		1,	scanflike	},
   1061       1.1       cgd 		{ "VARARGS",		1,	varargs		},
   1062       1.1       cgd 	};
   1063       1.1       cgd 	char	keywd[32];
   1064       1.1       cgd 	char	arg[32];
   1065       1.1       cgd 	int	l, i, a;
   1066       1.1       cgd 	int	eoc;
   1067       1.1       cgd 
   1068       1.1       cgd 	eoc = 0;
   1069       1.1       cgd 
   1070       1.1       cgd 	/* Skip white spaces after the start of the comment */
   1071       1.1       cgd 	while ((c = inpc()) != EOF && isspace(c)) ;
   1072       1.1       cgd 
   1073       1.1       cgd 	/* Read the potential keyword to keywd */
   1074       1.1       cgd 	l = 0;
   1075       1.1       cgd 	while (c != EOF && isupper(c) && l < sizeof (keywd) - 1) {
   1076       1.1       cgd 		keywd[l++] = (char)c;
   1077       1.1       cgd 		c = inpc();
   1078       1.1       cgd 	}
   1079       1.1       cgd 	keywd[l] = '\0';
   1080       1.1       cgd 
   1081       1.1       cgd 	/* look for the keyword */
   1082       1.1       cgd 	for (i = 0; i < sizeof (keywtab) / sizeof (keywtab[0]); i++) {
   1083       1.1       cgd 		if (strcmp(keywtab[i].keywd, keywd) == 0)
   1084       1.1       cgd 			break;
   1085       1.1       cgd 	}
   1086       1.1       cgd 	if (i == sizeof (keywtab) / sizeof (keywtab[0]))
   1087       1.1       cgd 		goto skip_rest;
   1088       1.1       cgd 
   1089       1.1       cgd 	/* skip white spaces after the keyword */
   1090       1.1       cgd 	while (c != EOF && isspace(c))
   1091       1.1       cgd 		c = inpc();
   1092       1.1       cgd 
   1093       1.1       cgd 	/* read the argument, if the keyword accepts one and there is one */
   1094       1.1       cgd 	l = 0;
   1095       1.1       cgd 	if (keywtab[i].arg) {
   1096       1.1       cgd 		while (c != EOF && isdigit(c) && l < sizeof (arg) - 1) {
   1097       1.1       cgd 			arg[l++] = (char)c;
   1098       1.1       cgd 			c = inpc();
   1099       1.1       cgd 		}
   1100       1.1       cgd 	}
   1101       1.1       cgd 	arg[l] = '\0';
   1102       1.1       cgd 	a = l != 0 ? atoi(arg) : -1;
   1103       1.1       cgd 
   1104       1.1       cgd 	/* skip white spaces after the argument */
   1105       1.1       cgd 	while (c != EOF && isspace(c))
   1106       1.1       cgd 		c = inpc();
   1107       1.1       cgd 
   1108       1.1       cgd 	if (c != '*' || (c = inpc()) != '/') {
   1109       1.1       cgd 		if (keywtab[i].func != linted)
   1110       1.1       cgd 			/* extra characters in lint comment */
   1111       1.1       cgd 			warning(257);
   1112       1.1       cgd 	} else {
   1113       1.1       cgd 		/*
   1114       1.1       cgd 		 * remember that we have already found the end of the
   1115       1.1       cgd 		 * comment
   1116       1.1       cgd 		 */
   1117       1.1       cgd 		eoc = 1;
   1118       1.1       cgd 	}
   1119       1.1       cgd 
   1120       1.1       cgd 	if (keywtab[i].func != NULL)
   1121       1.1       cgd 		(*keywtab[i].func)(a);
   1122       1.1       cgd 
   1123       1.1       cgd  skip_rest:
   1124       1.1       cgd 	while (!eoc) {
   1125       1.1       cgd 		lc = c;
   1126       1.1       cgd 		if ((c = inpc()) == EOF) {
   1127       1.1       cgd 			/* unterminated comment */
   1128       1.1       cgd 			error(256);
   1129       1.1       cgd 			break;
   1130       1.1       cgd 		}
   1131       1.1       cgd 		if (lc == '*' && c == '/')
   1132       1.1       cgd 			eoc = 1;
   1133       1.1       cgd 	}
   1134       1.7       jpo }
   1135       1.7       jpo 
   1136       1.7       jpo /*
   1137       1.7       jpo  * Clear flags for lint comments LINTED, LONGLONG and CONSTCOND.
   1138       1.7       jpo  * clrwflgs() is called after function definitions and global and
   1139       1.7       jpo  * local declarations and definitions. It is also called between
   1140       1.7       jpo  * the controlling expression and the body of control statements
   1141       1.7       jpo  * (if, switch, for, while).
   1142       1.7       jpo  */
   1143       1.7       jpo void
   1144       1.7       jpo clrwflgs()
   1145       1.7       jpo {
   1146       1.7       jpo 	nowarn = 0;
   1147       1.7       jpo 	quadflg = 0;
   1148       1.7       jpo 	ccflg = 0;
   1149       1.1       cgd }
   1150       1.1       cgd 
   1151       1.1       cgd /*
   1152       1.1       cgd  * Strings are stored in a dynamically alloceted buffer and passed
   1153       1.1       cgd  * in yylval.y_xstrg to the parser. The parser or the routines called
   1154       1.1       cgd  * by the parser are responsible for freeing this buffer.
   1155       1.1       cgd  */
   1156       1.1       cgd static int
   1157       1.1       cgd string()
   1158       1.1       cgd {
   1159       1.1       cgd 	u_char	*s;
   1160       1.1       cgd 	int	c;
   1161       1.1       cgd 	size_t	len, max;
   1162       1.1       cgd 	strg_t	*strg;
   1163       1.1       cgd 
   1164       1.1       cgd 	s = xmalloc(max = 64);
   1165       1.1       cgd 
   1166       1.1       cgd 	len = 0;
   1167       1.1       cgd 	while ((c = getescc('"')) >= 0) {
   1168       1.1       cgd 		/* +1 to reserve space for a trailing NUL character */
   1169       1.1       cgd 		if (len + 1 == max)
   1170       1.1       cgd 			s = xrealloc(s, max *= 2);
   1171       1.1       cgd 		s[len++] = (char)c;
   1172       1.1       cgd 	}
   1173       1.1       cgd 	s[len] = '\0';
   1174       1.1       cgd 	if (c == -2)
   1175       1.1       cgd 		/* unterminated string constant */
   1176       1.1       cgd 		error(258);
   1177       1.1       cgd 
   1178       1.1       cgd 	strg = xcalloc(1, sizeof (strg_t));
   1179       1.1       cgd 	strg->st_tspec = CHAR;
   1180       1.1       cgd 	strg->st_len = len;
   1181       1.1       cgd 	strg->st_cp = s;
   1182       1.1       cgd 
   1183       1.1       cgd 	yylval.y_strg = strg;
   1184       1.1       cgd 	return (T_STRING);
   1185       1.1       cgd }
   1186       1.1       cgd 
   1187       1.1       cgd static int
   1188       1.1       cgd wcstrg()
   1189       1.1       cgd {
   1190       1.1       cgd 	char	*s;
   1191       1.1       cgd 	int	c, i, n, wi;
   1192       1.1       cgd 	size_t	len, max, wlen;
   1193       1.1       cgd 	wchar_t	*ws;
   1194       1.1       cgd 	strg_t	*strg;
   1195       1.1       cgd 
   1196       1.1       cgd 	s = xmalloc(max = 64);
   1197       1.1       cgd 	len = 0;
   1198       1.1       cgd 	while ((c = getescc('"')) >= 0) {
   1199       1.1       cgd 		/* +1 to save space for a trailing NUL character */
   1200       1.1       cgd 		if (len + 1 >= max)
   1201       1.1       cgd 			s = xrealloc(s, max *= 2);
   1202       1.1       cgd 		s[len++] = (char)c;
   1203       1.1       cgd 	}
   1204       1.1       cgd 	s[len] = '\0';
   1205       1.1       cgd 	if (c == -2)
   1206       1.1       cgd 		/* unterminated string constant */
   1207       1.1       cgd 		error(258);
   1208       1.1       cgd 
   1209       1.1       cgd 	/* get length of wide character string */
   1210       1.1       cgd 	(void)mblen(NULL, 0);
   1211       1.1       cgd 	for (i = 0, wlen = 0; i < len; i += n, wlen++) {
   1212       1.1       cgd 		if ((n = mblen(&s[i], MB_CUR_MAX)) == -1) {
   1213       1.1       cgd 			/* invalid multibyte character */
   1214       1.1       cgd 			error(291);
   1215       1.1       cgd 			break;
   1216       1.1       cgd 		}
   1217       1.1       cgd 		if (n == 0)
   1218       1.1       cgd 			n = 1;
   1219       1.1       cgd 	}
   1220       1.1       cgd 
   1221       1.1       cgd 	ws = xmalloc((wlen + 1) * sizeof (wchar_t));
   1222       1.1       cgd 
   1223       1.1       cgd 	/* convert from multibyte to wide char */
   1224       1.1       cgd 	(void)mbtowc(NULL, NULL, 0);
   1225       1.1       cgd 	for (i = 0, wi = 0; i < len; i += n, wi++) {
   1226       1.1       cgd 		if ((n = mbtowc(&ws[wi], &s[i], MB_CUR_MAX)) == -1)
   1227       1.1       cgd 			break;
   1228       1.1       cgd 		if (n == 0)
   1229       1.1       cgd 			n = 1;
   1230       1.1       cgd 	}
   1231       1.1       cgd 	ws[wi] = 0;
   1232       1.1       cgd 	free(s);
   1233       1.1       cgd 
   1234       1.1       cgd 	strg = xcalloc(1, sizeof (strg_t));
   1235       1.1       cgd 	strg->st_tspec = WCHAR;
   1236       1.1       cgd 	strg->st_len = wlen;
   1237       1.1       cgd 	strg->st_wcp = ws;
   1238       1.1       cgd 
   1239       1.1       cgd 	yylval.y_strg = strg;
   1240       1.1       cgd 	return (T_STRING);
   1241       1.1       cgd }
   1242       1.1       cgd 
   1243       1.1       cgd /*
   1244       1.1       cgd  * As noted above the scanner does not create new symbol table entries
   1245       1.1       cgd  * for symbols it cannot find in the symbol table. This is to avoid
   1246       1.1       cgd  * putting undeclared symbols into the symbol table if a syntax error
   1247       1.1       cgd  * occurs.
   1248       1.1       cgd  *
   1249       1.1       cgd  * getsym() is called as soon as it is probably ok to put the symbol to
   1250       1.1       cgd  * the symbol table. This does not mean that it is not possible that
   1251       1.1       cgd  * symbols are put to the symbol table which are than not completely
   1252       1.1       cgd  * declared due to syntax errors. To avoid too many problems in this
   1253       1.1       cgd  * case symbols get type int in getsym().
   1254       1.1       cgd  *
   1255       1.1       cgd  * XXX calls to getsym() should be delayed until decl1*() is called
   1256       1.1       cgd  */
   1257       1.1       cgd sym_t *
   1258       1.1       cgd getsym(sb)
   1259       1.1       cgd 	sbuf_t	*sb;
   1260       1.1       cgd {
   1261       1.1       cgd 	dinfo_t	*di;
   1262       1.1       cgd 	char	*s;
   1263       1.1       cgd 	sym_t	*sym;
   1264       1.1       cgd 
   1265       1.1       cgd 	sym = sb->sb_sym;
   1266       1.1       cgd 
   1267       1.1       cgd 	/*
   1268       1.1       cgd 	 * During member declaration it is possible that name() looked
   1269       1.1       cgd 	 * for symbols of type FVFT, although it should have looked for
   1270       1.1       cgd 	 * symbols of type FTAG. Same can happen for labels. Both cases
   1271       1.1       cgd 	 * are compensated here.
   1272       1.1       cgd 	 */
   1273       1.1       cgd 	if (symtyp == FMOS || symtyp == FLAB) {
   1274       1.1       cgd 		if (sym == NULL || sym->s_kind == FVFT)
   1275       1.1       cgd 			sym = search(sb);
   1276       1.1       cgd 	}
   1277       1.1       cgd 
   1278       1.1       cgd 	if (sym != NULL) {
   1279       1.1       cgd 		if (sym->s_kind != symtyp)
   1280       1.1       cgd 			lerror("storesym() 1");
   1281       1.1       cgd 		symtyp = FVFT;
   1282       1.1       cgd 		freesb(sb);
   1283       1.1       cgd 		return (sym);
   1284       1.1       cgd 	}
   1285       1.1       cgd 
   1286       1.1       cgd 	/* create a new symbol table entry */
   1287       1.1       cgd 
   1288       1.1       cgd 	/* labels must always be allocated at level 1 (outhermost block) */
   1289       1.1       cgd 	if (symtyp == FLAB) {
   1290       1.1       cgd 		sym = getlblk(1, sizeof (sym_t));
   1291       1.1       cgd 		s = getlblk(1, sb->sb_len + 1);
   1292       1.1       cgd 		(void)memcpy(s, sb->sb_name, sb->sb_len + 1);
   1293       1.1       cgd 		sym->s_name = s;
   1294       1.1       cgd 		sym->s_blklev = 1;
   1295       1.1       cgd 		di = dcs;
   1296       1.3       jpo 		while (di->d_nxt != NULL && di->d_nxt->d_nxt != NULL)
   1297       1.3       jpo 			di = di->d_nxt;
   1298       1.3       jpo 		if (di->d_ctx != AUTO)
   1299       1.1       cgd 			lerror("storesym() 2");
   1300       1.1       cgd 	} else {
   1301       1.1       cgd 		sym = getblk(sizeof (sym_t));
   1302       1.1       cgd 		sym->s_name = sb->sb_name;
   1303       1.1       cgd 		sym->s_blklev = blklev;
   1304       1.1       cgd 		di = dcs;
   1305       1.1       cgd 	}
   1306       1.1       cgd 
   1307       1.9       cgd 	UNIQUE_CURR_POS(sym->s_dpos);
   1308       1.1       cgd 	if ((sym->s_kind = symtyp) != FLAB)
   1309       1.1       cgd 		sym->s_type = gettyp(INT);
   1310       1.1       cgd 
   1311       1.1       cgd 	symtyp = FVFT;
   1312       1.1       cgd 
   1313       1.1       cgd 	if ((sym->s_link = symtab[sb->sb_hash]) != NULL)
   1314       1.1       cgd 		symtab[sb->sb_hash]->s_rlink = &sym->s_link;
   1315       1.1       cgd 	(symtab[sb->sb_hash] = sym)->s_rlink = &symtab[sb->sb_hash];
   1316       1.1       cgd 
   1317       1.3       jpo 	*di->d_ldlsym = sym;
   1318       1.3       jpo 	di->d_ldlsym = &sym->s_dlnxt;
   1319       1.1       cgd 
   1320       1.1       cgd 	freesb(sb);
   1321       1.1       cgd 	return (sym);
   1322       1.1       cgd }
   1323       1.1       cgd 
   1324       1.1       cgd /*
   1325       1.1       cgd  * Remove a symbol forever from the symbol table. s_blklev
   1326       1.1       cgd  * is set to -1 to avoid that the symbol will later be put
   1327       1.1       cgd  * back to the symbol table.
   1328       1.1       cgd  */
   1329       1.1       cgd void
   1330       1.1       cgd rmsym(sym)
   1331       1.1       cgd 	sym_t	*sym;
   1332       1.1       cgd {
   1333       1.1       cgd 	if ((*sym->s_rlink = sym->s_link) != NULL)
   1334       1.1       cgd 		sym->s_link->s_rlink = sym->s_rlink;
   1335       1.1       cgd 	sym->s_blklev = -1;
   1336       1.1       cgd 	sym->s_link = NULL;
   1337       1.1       cgd }
   1338       1.1       cgd 
   1339       1.1       cgd /*
   1340       1.1       cgd  * Remove a list of symbols declared at one level from the symbol
   1341       1.1       cgd  * table.
   1342       1.1       cgd  */
   1343       1.1       cgd void
   1344       1.1       cgd rmsyms(syms)
   1345       1.1       cgd 	sym_t	*syms;
   1346       1.1       cgd {
   1347       1.1       cgd 	sym_t	*sym;
   1348       1.1       cgd 
   1349       1.1       cgd 	for (sym = syms; sym != NULL; sym = sym->s_dlnxt) {
   1350       1.1       cgd 		if (sym->s_blklev != -1) {
   1351       1.1       cgd 			if ((*sym->s_rlink = sym->s_link) != NULL)
   1352       1.1       cgd 				sym->s_link->s_rlink = sym->s_rlink;
   1353       1.1       cgd 			sym->s_link = NULL;
   1354       1.1       cgd 			sym->s_rlink = NULL;
   1355       1.1       cgd 		}
   1356       1.1       cgd 	}
   1357       1.1       cgd }
   1358       1.1       cgd 
   1359       1.1       cgd /*
   1360       1.1       cgd  * Put a symbol into the symbol table
   1361       1.1       cgd  */
   1362       1.1       cgd void
   1363       1.1       cgd inssym(bl, sym)
   1364       1.1       cgd 	int	bl;
   1365       1.1       cgd 	sym_t	*sym;
   1366       1.1       cgd {
   1367       1.1       cgd 	int	h;
   1368       1.1       cgd 
   1369       1.1       cgd 	h = hash(sym->s_name);
   1370       1.1       cgd 	if ((sym->s_link = symtab[h]) != NULL)
   1371       1.1       cgd 		symtab[h]->s_rlink = &sym->s_link;
   1372       1.1       cgd 	(symtab[h] = sym)->s_rlink = &symtab[h];
   1373       1.1       cgd 	sym->s_blklev = bl;
   1374       1.1       cgd 	if (sym->s_link != NULL && sym->s_blklev < sym->s_link->s_blklev)
   1375       1.1       cgd 		lerror("inssym()");
   1376       1.1       cgd }
   1377       1.1       cgd 
   1378       1.1       cgd /*
   1379       1.1       cgd  * Called at level 0 after syntax errors
   1380       1.1       cgd  * Removes all symbols which are not declared at level 0 from the
   1381       1.1       cgd  * symbol table. Also frees all memory which is not associated with
   1382       1.1       cgd  * level 0.
   1383       1.1       cgd  */
   1384       1.1       cgd void
   1385       1.1       cgd cleanup()
   1386       1.1       cgd {
   1387       1.1       cgd 	sym_t	*sym, *nsym;
   1388       1.1       cgd 	int	i;
   1389       1.1       cgd 
   1390       1.1       cgd 	for (i = 0; i < HSHSIZ1; i++) {
   1391       1.1       cgd 		for (sym = symtab[i]; sym != NULL; sym = nsym) {
   1392       1.1       cgd 			nsym = sym->s_link;
   1393       1.1       cgd 			if (sym->s_blklev >= 1) {
   1394       1.1       cgd 				if ((*sym->s_rlink = nsym) != NULL)
   1395       1.1       cgd 					nsym->s_rlink = sym->s_rlink;
   1396       1.1       cgd 			}
   1397       1.1       cgd 		}
   1398       1.1       cgd 	}
   1399       1.1       cgd 
   1400       1.1       cgd 	for (i = mblklev; i > 0; i--)
   1401       1.1       cgd 		freelblk(i);
   1402       1.1       cgd }
   1403       1.1       cgd 
   1404       1.1       cgd /*
   1405       1.1       cgd  * Create a new symbol with the name of an existing symbol.
   1406       1.1       cgd  */
   1407       1.1       cgd sym_t *
   1408       1.1       cgd pushdown(sym)
   1409       1.1       cgd 	sym_t	*sym;
   1410       1.1       cgd {
   1411       1.1       cgd 	int	h;
   1412       1.1       cgd 	sym_t	*nsym;
   1413       1.1       cgd 
   1414       1.1       cgd 	h = hash(sym->s_name);
   1415       1.1       cgd 	nsym = getblk(sizeof (sym_t));
   1416       1.1       cgd 	if (sym->s_blklev > blklev)
   1417       1.1       cgd 		lerror("pushdown()");
   1418       1.1       cgd 	nsym->s_name = sym->s_name;
   1419       1.9       cgd 	UNIQUE_CURR_POS(nsym->s_dpos);
   1420       1.1       cgd 	nsym->s_kind = sym->s_kind;
   1421       1.1       cgd 	nsym->s_blklev = blklev;
   1422       1.1       cgd 
   1423       1.1       cgd 	if ((nsym->s_link = symtab[h]) != NULL)
   1424       1.1       cgd 		symtab[h]->s_rlink = &nsym->s_link;
   1425       1.1       cgd 	(symtab[h] = nsym)->s_rlink = &symtab[h];
   1426       1.1       cgd 
   1427       1.3       jpo 	*dcs->d_ldlsym = nsym;
   1428       1.3       jpo 	dcs->d_ldlsym = &nsym->s_dlnxt;
   1429       1.1       cgd 
   1430       1.1       cgd 	return (nsym);
   1431       1.6       jpo }
   1432       1.6       jpo 
   1433       1.6       jpo /*
   1434       1.6       jpo  * Free any dynamically allocated memory referenced by
   1435       1.6       jpo  * the value stack or yylval.
   1436       1.6       jpo  * The type of information in yylval is described by tok.
   1437       1.6       jpo  */
   1438       1.6       jpo void
   1439       1.6       jpo freeyyv(sp, tok)
   1440       1.6       jpo 	void	*sp;
   1441       1.6       jpo 	int	tok;
   1442       1.6       jpo {
   1443       1.6       jpo 	if (tok == T_NAME || tok == T_TYPENAME) {
   1444       1.6       jpo 		sbuf_t *sb = *(sbuf_t **)sp;
   1445       1.6       jpo 		freesb(sb);
   1446       1.6       jpo 	} else if (tok == T_CON) {
   1447       1.6       jpo 		val_t *val = *(val_t **)sp;
   1448       1.6       jpo 		free(val);
   1449       1.6       jpo 	} else if (tok == T_STRING) {
   1450       1.6       jpo 		strg_t *strg = *(strg_t **)sp;
   1451       1.6       jpo 		if (strg->st_tspec == CHAR) {
   1452       1.6       jpo 			free(strg->st_cp);
   1453       1.6       jpo 		} else if (strg->st_tspec == WCHAR) {
   1454       1.6       jpo 			free(strg->st_wcp);
   1455       1.6       jpo 		} else {
   1456       1.6       jpo 			lerror("fryylv() 1");
   1457       1.6       jpo 		}
   1458       1.6       jpo 		free(strg);
   1459       1.6       jpo 	}
   1460       1.1       cgd }
   1461