📄 lex.c
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#line 571 "lex.c"
/* Macros after this point can all be overridden by user definitions in
* section 1.
*/
#ifndef YY_SKIP_YYWRAP
#ifdef __cplusplus
extern "C" int yywrap YY_PROTO(( void ));
#else
extern int yywrap YY_PROTO(( void ));
#endif
#endif
#ifndef YY_NO_UNPUT
static void yyunput YY_PROTO(( int c, char *buf_ptr ));
#endif
#ifndef yytext_ptr
static void yy_flex_strncpy YY_PROTO(( char *, yyconst char *, int ));
#endif
#ifndef YY_NO_INPUT
#ifdef __cplusplus
static int yyinput YY_PROTO(( void ));
#else
static int input YY_PROTO(( void ));
#endif
#endif
#if YY_STACK_USED
static int yy_start_stack_ptr = 0;
static int yy_start_stack_depth = 0;
static int *yy_start_stack = 0;
#ifndef YY_NO_PUSH_STATE
static void yy_push_state YY_PROTO(( int new_state ));
#endif
#ifndef YY_NO_POP_STATE
static void yy_pop_state YY_PROTO(( void ));
#endif
#ifndef YY_NO_TOP_STATE
static int yy_top_state YY_PROTO(( void ));
#endif
#else
#define YY_NO_PUSH_STATE 1
#define YY_NO_POP_STATE 1
#define YY_NO_TOP_STATE 1
#endif
#ifdef YY_MALLOC_DECL
YY_MALLOC_DECL
#else
#if __STDC__
#ifndef __cplusplus
#include <stdlib.h>
#endif
#else
/* Just try to get by without declaring the routines. This will fail
* miserably on non-ANSI systems for which sizeof(size_t) != sizeof(int)
* or sizeof(void*) != sizeof(int).
*/
#endif
#endif
/* Amount of stuff to slurp up with each read. */
#ifndef YY_READ_BUF_SIZE
#define YY_READ_BUF_SIZE 8192
#endif
/* Copy whatever the last rule matched to the standard output. */
#ifndef ECHO
/* This used to be an fputs(), but since the string might contain NUL's,
* we now use fwrite().
*/
#define ECHO (void) fwrite( yytext, yyleng, 1, yyout )
#endif
/* Gets input and stuffs it into "buf". number of characters read, or YY_NULL,
* is returned in "result".
*/
#ifndef YY_INPUT
#define YY_INPUT(buf,result,max_size) \
if ( yy_current_buffer->yy_is_interactive ) \
{ \
int c = '*', n; \
for ( n = 0; n < max_size && \
(c = getc( yyin )) != EOF && c != '\n'; ++n ) \
buf[n] = (char) c; \
if ( c == '\n' ) \
buf[n++] = (char) c; \
if ( c == EOF && ferror( yyin ) ) \
YY_FATAL_ERROR( "input in flex scanner failed" ); \
result = n; \
} \
else if ( ((result = fread( buf, 1, max_size, yyin )) == 0) \
&& ferror( yyin ) ) \
YY_FATAL_ERROR( "input in flex scanner failed" );
#endif
/* No semi-colon after return; correct usage is to write "yyterminate();" -
* we don't want an extra ';' after the "return" because that will cause
* some compilers to complain about unreachable statements.
*/
#ifndef yyterminate
#define yyterminate() return YY_NULL
#endif
/* Number of entries by which start-condition stack grows. */
#ifndef YY_START_STACK_INCR
#define YY_START_STACK_INCR 25
#endif
/* Report a fatal error. */
#ifndef YY_FATAL_ERROR
#define YY_FATAL_ERROR(msg) yy_fatal_error( msg )
#endif
/* Default declaration of generated scanner - a define so the user can
* easily add parameters.
*/
#ifndef YY_DECL
#define YY_DECL int yylex YY_PROTO(( void ))
#endif
/* Code executed at the beginning of each rule, after yytext and yyleng
* have been set up.
*/
#ifndef YY_USER_ACTION
#define YY_USER_ACTION
#endif
/* Code executed at the end of each rule. */
#ifndef YY_BREAK
#define YY_BREAK break;
#endif
#define YY_RULE_SETUP \
YY_USER_ACTION
YY_DECL
{
register yy_state_type yy_current_state;
register char *yy_cp, *yy_bp;
register int yy_act;
#line 50 "lex.l"
#line 720 "lex.c"
if ( yy_init )
{
yy_init = 0;
#ifdef YY_USER_INIT
YY_USER_INIT;
#endif
if ( ! yy_start )
yy_start = 1; /* first start state */
if ( ! yyin )
yyin = stdin;
if ( ! yyout )
yyout = stdout;
if ( ! yy_current_buffer )
yy_current_buffer =
yy_create_buffer( yyin, YY_BUF_SIZE );
yy_load_buffer_state();
}
while ( 1 ) /* loops until end-of-file is reached */
{
yy_cp = yy_c_buf_p;
/* Support of yytext. */
*yy_cp = yy_hold_char;
/* yy_bp points to the position in yy_ch_buf of the start of
* the current run.
*/
yy_bp = yy_cp;
yy_current_state = yy_start;
yy_match:
do
{
register YY_CHAR yy_c = yy_ec[YY_SC_TO_UI(*yy_cp)];
if ( yy_accept[yy_current_state] )
{
yy_last_accepting_state = yy_current_state;
yy_last_accepting_cpos = yy_cp;
}
while ( yy_chk[yy_base[yy_current_state] + yy_c] != yy_current_state )
{
yy_current_state = (int) yy_def[yy_current_state];
if ( yy_current_state >= 253 )
yy_c = yy_meta[(unsigned int) yy_c];
}
yy_current_state = yy_nxt[yy_base[yy_current_state] + (unsigned int) yy_c];
++yy_cp;
}
while ( yy_base[yy_current_state] != 378 );
yy_find_action:
yy_act = yy_accept[yy_current_state];
if ( yy_act == 0 )
{ /* have to back up */
yy_cp = yy_last_accepting_cpos;
yy_current_state = yy_last_accepting_state;
yy_act = yy_accept[yy_current_state];
}
YY_DO_BEFORE_ACTION;
do_action: /* This label is used only to access EOF actions. */
switch ( yy_act )
{ /* beginning of action switch */
case 0: /* must back up */
/* undo the effects of YY_DO_BEFORE_ACTION */
*yy_cp = yy_hold_char;
yy_cp = yy_last_accepting_cpos;
yy_current_state = yy_last_accepting_state;
goto yy_find_action;
case 1:
YY_RULE_SETUP
#line 51 "lex.l"
{return SHORT;}
YY_BREAK
case 2:
YY_RULE_SETUP
#line 52 "lex.l"
{return LONG;}
YY_BREAK
case 3:
YY_RULE_SETUP
#line 53 "lex.l"
{return UNSIGNED;}
YY_BREAK
case 4:
YY_RULE_SETUP
#line 54 "lex.l"
{return INT;}
YY_BREAK
case 5:
YY_RULE_SETUP
#line 55 "lex.l"
{return FLOAT;}
YY_BREAK
case 6:
YY_RULE_SETUP
#line 56 "lex.l"
{return DOUBLE;}
YY_BREAK
case 7:
YY_RULE_SETUP
#line 57 "lex.l"
{return CHAR;}
YY_BREAK
case 8:
YY_RULE_SETUP
#line 58 "lex.l"
{return BOOL;}
YY_BREAK
case 9:
YY_RULE_SETUP
#line 59 "lex.l"
{yylval.val.i = 1;return CBOOL;}
YY_BREAK
case 10:
YY_RULE_SETUP
#line 60 "lex.l"
{yylval.val.i = 0;return CBOOL;}
YY_BREAK
case 11:
YY_RULE_SETUP
#line 61 "lex.l"
{return VOID;}
YY_BREAK
case 12:
YY_RULE_SETUP
#line 62 "lex.l"
{return STRUCT;}
YY_BREAK
case 13:
YY_RULE_SETUP
#line 63 "lex.l"
{return UNION;}
YY_BREAK
case 14:
YY_RULE_SETUP
#line 64 "lex.l"
{return ENUM;}
YY_BREAK
case 15:
YY_RULE_SETUP
#line 65 "lex.l"
{return TYPEDEF;}
YY_BREAK
case 16:
YY_RULE_SETUP
#line 67 "lex.l"
{return STATIC;}
YY_BREAK
case 17:
YY_RULE_SETUP
#line 68 "lex.l"
{return EXTERN;}
YY_BREAK
case 18:
YY_RULE_SETUP
#line 69 "lex.l"
{return AUTO;}
YY_BREAK
case 19:
YY_RULE_SETUP
#line 70 "lex.l"
{return CONST;}
YY_BREAK
case 20:
YY_RULE_SETUP
#line 71 "lex.l"
{return REGISTER;}
YY_BREAK
case 21:
YY_RULE_SETUP
#line 72 "lex.l"
{return VOLATILE;}
YY_BREAK
case 22:
YY_RULE_SETUP
#line 73 "lex.l"
{return ELLIPSIS;}
YY_BREAK
case 23:
YY_RULE_SETUP
#line 75 "lex.l"
{return IF;}
YY_BREAK
case 24:
YY_RULE_SETUP
#line 76 "lex.l"
{return ELSE;}
YY_BREAK
case 25:
YY_RULE_SETUP
#line 77 "lex.l"
{return FOR;}
YY_BREAK
case 26:
YY_RULE_SETUP
#line 78 "lex.l"
{return WHILE;}
YY_BREAK
case 27:
YY_RULE_SETUP
#line 79 "lex.l"
{return DO;}
YY_BREAK
case 28:
YY_RULE_SETUP
#line 80 "lex.l"
{return SWITCH;}
YY_BREAK
case 29:
YY_RULE_SETUP
#line 81 "lex.l"
{return CASE;}
YY_BREAK
case 30:
YY_RULE_SETUP
#line 82 "lex.l"
{return DEFAULT;}
YY_BREAK
case 31:
YY_RULE_SETUP
#line 83 "lex.l"
{return GOTO;}
YY_BREAK
case 32:
YY_RULE_SETUP
#line 84 "lex.l"
{return CONTINUE;}
YY_BREAK
case 33:
YY_RULE_SETUP
#line 85 "lex.l"
{return BREAK;}
YY_BREAK
case 34:
YY_RULE_SETUP
#line 86 "lex.l"
{return RETURN;}
YY_BREAK
case 35:
YY_RULE_SETUP
#line 87 "lex.l"
{return ASM;}
YY_BREAK
case 36:
YY_RULE_SETUP
#line 89 "lex.l"
{return NTOMEM;}
YY_BREAK
case 37:
YY_RULE_SETUP
#line 90 "lex.l"
{return PTOMEM;}
YY_BREAK
case 38:
YY_RULE_SETUP
#line 91 "lex.l"
{return SIZEOF;}
YY_BREAK
case 39:
YY_RULE_SETUP
#line 92 "lex.l"
{return '&';}
YY_BREAK
case 40:
YY_RULE_SETUP
#line 93 "lex.l"
{return '|';}
YY_BREAK
case 41:
YY_RULE_SETUP
#line 94 "lex.l"
{return '^';}
YY_BREAK
case 42:
YY_RULE_SETUP
#line 95 "lex.l"
{return '~';}
YY_BREAK
case 43:
YY_RULE_SETUP
#line 96 "lex.l"
{return INCR;}
YY_BREAK
case 44:
YY_RULE_SETUP
#line 97 "lex.l"
{return DECR;}
YY_BREAK
case 45:
YY_RULE_SETUP
#line 99 "lex.l"
{return '+';}
YY_BREAK
case 46:
YY_RULE_SETUP
#line 100 "lex.l"
{return '-';}
YY_BREAK
case 47:
YY_RULE_SETUP
#line 101 "lex.l"
{return '*';}
YY_BREAK
case 48:
YY_RULE_SETUP
#line 102 "lex.l"
{return '/';}
YY_BREAK
case 49:
YY_RULE_SETUP
#line 103 "lex.l"
{return '%';}
YY_BREAK
case 50:
YY_RULE_SETUP
#line 104 "lex.l"
{return LSH;}
YY_BREAK
case 51:
YY_RULE_SETUP
#line 105 "lex.l"
{return RSH;}
YY_BREAK
case 52:
YY_RULE_SETUP
#line 106 "lex.l"
{return ASSIGN;}
YY_BREAK
case 53:
YY_RULE_SETUP
#line 107 "lex.l"
{return LES;}
YY_BREAK
case 54:
YY_RULE_SETUP
#line 108 "lex.l"
{return LEQ;}
YY_BREAK
case 55:
YY_RULE_SETUP
#line 109 "lex.l"
{return GTR;}
YY_BREAK
case 56:
YY_RULE_SETUP
#line 110 "lex.l"
{return GEQ;}
YY_BREAK
case 57:
YY_RULE_SETUP
#line 111 "lex.l"
{return EQ;}
YY_BREAK
case 58:
YY_RULE_SETUP
#line 112 "lex.l"
{return UEQ;}
YY_BREAK
case 59:
YY_RULE_SETUP
#line 113 "lex.l"
{return LAND;}
YY_BREAK
case 60:
YY_RULE_SETUP
#line 114 "lex.l"
{return LOR;}
YY_BREAK
case 61:
YY_RULE_SETUP
#line 115 "lex.l"
{return '!';}
YY_BREAK
case 62:
YY_RULE_SETUP
#line 116 "lex.l"
{return '?';}
YY_BREAK
case 63:
YY_RULE_SETUP
#line 117 "lex.l"
{return ':';}
YY_BREAK
case 64:
YY_RULE_SETUP
#line 118 "lex.l"
{return ';';}
YY_BREAK
case 65:
YY_RULE_SETUP
#line 119 "lex.l"
{return ',';}
YY_BREAK
case 66:
YY_RULE_SETUP
#line 120 "lex.l"
{return '(';}
YY_BREAK
case 67:
YY_RULE_SETUP
#line 121 "lex.l"
{return ')';}
YY_BREAK
case 68:
YY_RULE_SETUP
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