#line 1 "src/compiler/glsl/glcpp/glcpp-lex.c" #line 3 "src/compiler/glsl/glcpp/glcpp-lex.c" #define YY_INT_ALIGNED short int /* A lexical scanner generated by flex */ #define FLEX_SCANNER #define YY_FLEX_MAJOR_VERSION 2 #define YY_FLEX_MINOR_VERSION 6 #define YY_FLEX_SUBMINOR_VERSION 4 #if YY_FLEX_SUBMINOR_VERSION > 0 #define FLEX_BETA #endif #ifdef yy_create_buffer #define glcpp__create_buffer_ALREADY_DEFINED #else #define yy_create_buffer glcpp__create_buffer #endif #ifdef yy_delete_buffer #define glcpp__delete_buffer_ALREADY_DEFINED #else #define yy_delete_buffer glcpp__delete_buffer #endif #ifdef yy_scan_buffer #define glcpp__scan_buffer_ALREADY_DEFINED #else #define yy_scan_buffer glcpp__scan_buffer #endif #ifdef yy_scan_string #define glcpp__scan_string_ALREADY_DEFINED #else #define yy_scan_string glcpp__scan_string #endif #ifdef yy_scan_bytes #define glcpp__scan_bytes_ALREADY_DEFINED #else #define yy_scan_bytes glcpp__scan_bytes #endif #ifdef yy_init_buffer #define glcpp__init_buffer_ALREADY_DEFINED #else #define yy_init_buffer glcpp__init_buffer #endif #ifdef yy_flush_buffer #define glcpp__flush_buffer_ALREADY_DEFINED #else #define yy_flush_buffer glcpp__flush_buffer #endif #ifdef yy_load_buffer_state #define glcpp__load_buffer_state_ALREADY_DEFINED #else #define yy_load_buffer_state glcpp__load_buffer_state #endif #ifdef yy_switch_to_buffer #define glcpp__switch_to_buffer_ALREADY_DEFINED #else #define yy_switch_to_buffer glcpp__switch_to_buffer #endif #ifdef yypush_buffer_state #define glcpp_push_buffer_state_ALREADY_DEFINED #else #define yypush_buffer_state glcpp_push_buffer_state #endif #ifdef yypop_buffer_state #define glcpp_pop_buffer_state_ALREADY_DEFINED #else #define yypop_buffer_state glcpp_pop_buffer_state #endif #ifdef yyensure_buffer_stack #define glcpp_ensure_buffer_stack_ALREADY_DEFINED #else #define yyensure_buffer_stack glcpp_ensure_buffer_stack #endif #ifdef yylex #define glcpp_lex_ALREADY_DEFINED #else #define yylex glcpp_lex #endif #ifdef yyrestart #define glcpp_restart_ALREADY_DEFINED #else #define yyrestart glcpp_restart #endif #ifdef yylex_init #define glcpp_lex_init_ALREADY_DEFINED #else #define yylex_init glcpp_lex_init #endif #ifdef yylex_init_extra #define glcpp_lex_init_extra_ALREADY_DEFINED #else #define yylex_init_extra glcpp_lex_init_extra #endif #ifdef yylex_destroy #define glcpp_lex_destroy_ALREADY_DEFINED #else #define yylex_destroy glcpp_lex_destroy #endif #ifdef yyget_debug #define glcpp_get_debug_ALREADY_DEFINED #else #define yyget_debug glcpp_get_debug #endif #ifdef yyset_debug #define glcpp_set_debug_ALREADY_DEFINED #else #define yyset_debug glcpp_set_debug #endif #ifdef yyget_extra #define glcpp_get_extra_ALREADY_DEFINED #else #define yyget_extra glcpp_get_extra #endif #ifdef yyset_extra #define glcpp_set_extra_ALREADY_DEFINED #else #define yyset_extra glcpp_set_extra #endif #ifdef yyget_in #define glcpp_get_in_ALREADY_DEFINED #else #define yyget_in glcpp_get_in #endif #ifdef yyset_in #define glcpp_set_in_ALREADY_DEFINED #else #define yyset_in glcpp_set_in #endif #ifdef yyget_out #define glcpp_get_out_ALREADY_DEFINED #else #define yyget_out glcpp_get_out #endif #ifdef yyset_out #define glcpp_set_out_ALREADY_DEFINED #else #define yyset_out glcpp_set_out #endif #ifdef yyget_leng #define glcpp_get_leng_ALREADY_DEFINED #else #define yyget_leng glcpp_get_leng #endif #ifdef yyget_text #define glcpp_get_text_ALREADY_DEFINED #else #define yyget_text glcpp_get_text #endif #ifdef yyget_lineno #define glcpp_get_lineno_ALREADY_DEFINED #else #define yyget_lineno glcpp_get_lineno #endif #ifdef yyset_lineno #define glcpp_set_lineno_ALREADY_DEFINED #else #define yyset_lineno glcpp_set_lineno #endif #ifdef yyget_column #define glcpp_get_column_ALREADY_DEFINED #else #define yyget_column glcpp_get_column #endif #ifdef yyset_column #define glcpp_set_column_ALREADY_DEFINED #else #define yyset_column glcpp_set_column #endif #ifdef yywrap #define glcpp_wrap_ALREADY_DEFINED #else #define yywrap glcpp_wrap #endif #ifdef yyget_lval #define glcpp_get_lval_ALREADY_DEFINED #else #define yyget_lval glcpp_get_lval #endif #ifdef yyset_lval #define glcpp_set_lval_ALREADY_DEFINED #else #define yyset_lval glcpp_set_lval #endif #ifdef yyget_lloc #define glcpp_get_lloc_ALREADY_DEFINED #else #define yyget_lloc glcpp_get_lloc #endif #ifdef yyset_lloc #define glcpp_set_lloc_ALREADY_DEFINED #else #define yyset_lloc glcpp_set_lloc #endif #ifdef yyalloc #define glcpp_alloc_ALREADY_DEFINED #else #define yyalloc glcpp_alloc #endif #ifdef yyrealloc #define glcpp_realloc_ALREADY_DEFINED #else #define yyrealloc glcpp_realloc #endif #ifdef yyfree #define glcpp_free_ALREADY_DEFINED #else #define yyfree glcpp_free #endif /* First, we deal with platform-specific or compiler-specific issues. */ /* begin standard C headers. */ #ifdef _LIBC #include "namespace.h" #endif #include #include #include #include /* end standard C headers. */ /* $NetBSD: glcpp-lex.c,v 1.1.1.1 2021/07/11 20:36:33 mrg Exp $ */ /* flex integer type definitions */ #ifndef FLEXINT_H #define FLEXINT_H /* C99 systems have . Non-C99 systems may or may not. */ #if defined (__STDC_VERSION__) && __STDC_VERSION__ >= 199901L /* C99 says to define __STDC_LIMIT_MACROS before including stdint.h, * if you want the limit (max/min) macros for int types. */ #ifndef __STDC_LIMIT_MACROS #define __STDC_LIMIT_MACROS 1 #endif #include typedef int8_t flex_int8_t; typedef uint8_t flex_uint8_t; typedef int16_t flex_int16_t; typedef uint16_t flex_uint16_t; typedef int32_t flex_int32_t; typedef uint32_t flex_uint32_t; #else typedef signed char flex_int8_t; typedef short int flex_int16_t; typedef int flex_int32_t; typedef unsigned char flex_uint8_t; typedef unsigned short int flex_uint16_t; typedef unsigned int flex_uint32_t; /* Limits of integral types. */ #ifndef INT8_MIN #define INT8_MIN (-128) #endif #ifndef INT16_MIN #define INT16_MIN (-32767-1) #endif #ifndef INT32_MIN #define INT32_MIN (-2147483647-1) #endif #ifndef INT8_MAX #define INT8_MAX (127) #endif #ifndef INT16_MAX #define INT16_MAX (32767) #endif #ifndef INT32_MAX #define INT32_MAX (2147483647) #endif #ifndef UINT8_MAX #define UINT8_MAX (255U) #endif #ifndef UINT16_MAX #define UINT16_MAX (65535U) #endif #ifndef UINT32_MAX #define UINT32_MAX (4294967295U) #endif #ifndef SIZE_MAX #define SIZE_MAX (~(size_t)0) #endif #endif /* ! C99 */ #endif /* ! FLEXINT_H */ /* begin standard C++ headers. */ /* TODO: this is always defined, so inline it */ #define yyconst const #if defined(__GNUC__) && __GNUC__ >= 3 #define yynoreturn __attribute__((__noreturn__)) #else #define yynoreturn #endif /* Returned upon end-of-file. */ #define YY_NULL 0 /* Promotes a possibly negative, possibly signed char to an * integer in range [0..255] for use as an array index. */ #define YY_SC_TO_UI(c) ((YY_CHAR) (c)) /* An opaque pointer. */ #ifndef YY_TYPEDEF_YY_SCANNER_T #define YY_TYPEDEF_YY_SCANNER_T typedef void* yyscan_t; #endif /* For convenience, these vars (plus the bison vars far below) are macros in the reentrant scanner. */ #define yyin yyg->yyin_r #define yyout yyg->yyout_r #define yyextra yyg->yyextra_r #define yyleng yyg->yyleng_r #define yytext yyg->yytext_r #define yylineno (YY_CURRENT_BUFFER_LVALUE->yy_bs_lineno) #define yycolumn (YY_CURRENT_BUFFER_LVALUE->yy_bs_column) #define yy_flex_debug yyg->yy_flex_debug_r /* Enter a start condition. This macro really ought to take a parameter, * but we do it the disgusting crufty way forced on us by the ()-less * definition of BEGIN. */ #define BEGIN yyg->yy_start = 1 + 2 * /* Translate the current start state into a value that can be later handed * to BEGIN to return to the state. The YYSTATE alias is for lex * compatibility. */ #define YY_START ((yyg->yy_start - 1) / 2) #define YYSTATE YY_START /* Action number for EOF rule of a given start state. */ #define YY_STATE_EOF(state) (YY_END_OF_BUFFER + state + 1) /* Special action meaning "start processing a new file". */ #define YY_NEW_FILE yyrestart( yyin , yyscanner ) #define YY_END_OF_BUFFER_CHAR 0 /* Size of default input buffer. */ #ifndef YY_BUF_SIZE #ifdef __ia64__ /* On IA-64, the buffer size is 16k, not 8k. * Moreover, YY_BUF_SIZE is 2*YY_READ_BUF_SIZE in the general case. * Ditto for the __ia64__ case accordingly. */ #define YY_BUF_SIZE 32768 #else #define YY_BUF_SIZE 16384 #endif /* __ia64__ */ #endif /* The state buf must be large enough to hold one state per character in the main buffer. */ #define YY_STATE_BUF_SIZE ((YY_BUF_SIZE + 2) * sizeof(yy_state_type)) #ifndef YY_TYPEDEF_YY_BUFFER_STATE #define YY_TYPEDEF_YY_BUFFER_STATE typedef struct yy_buffer_state *YY_BUFFER_STATE; #endif #ifndef YY_TYPEDEF_YY_SIZE_T #define YY_TYPEDEF_YY_SIZE_T typedef size_t yy_size_t; #endif #define EOB_ACT_CONTINUE_SCAN 0 #define EOB_ACT_END_OF_FILE 1 #define EOB_ACT_LAST_MATCH 2 #define YY_LESS_LINENO(n) #define YY_LINENO_REWIND_TO(ptr) /* Return all but the first "n" matched characters back to the input stream. */ #define yyless(n) \ do \ { \ /* Undo effects of setting up yytext. */ \ int yyless_macro_arg = (n); \ YY_LESS_LINENO(yyless_macro_arg);\ *yy_cp = yyg->yy_hold_char; \ YY_RESTORE_YY_MORE_OFFSET \ yyg->yy_c_buf_p = yy_cp = yy_bp + yyless_macro_arg - YY_MORE_ADJ; \ YY_DO_BEFORE_ACTION; /* set up yytext again */ \ } \ while ( 0 ) #define unput(c) yyunput( c, yyg->yytext_ptr , yyscanner ) #ifndef YY_STRUCT_YY_BUFFER_STATE #define YY_STRUCT_YY_BUFFER_STATE struct yy_buffer_state { FILE *yy_input_file; char *yy_ch_buf; /* input buffer */ char *yy_buf_pos; /* current position in input buffer */ /* Size of input buffer in bytes, not including room for EOB * characters. */ size_t yy_buf_size; /* Number of characters read into yy_ch_buf, not including EOB * characters. */ size_t yy_n_chars; /* Whether we "own" the buffer - i.e., we know we created it, * and can realloc() it to grow it, and should free() it to * delete it. */ int yy_is_our_buffer; /* Whether this is an "interactive" input source; if so, and * if we're using stdio for input, then we want to use getc() * instead of fread(), to make sure we stop fetching input after * each newline. */ int yy_is_interactive; /* Whether we're considered to be at the beginning of a line. * If so, '^' rules will be active on the next match, otherwise * not. */ int yy_at_bol; int yy_bs_lineno; /**< The line count. */ int yy_bs_column; /**< The column count. */ /* Whether to try to fill the input buffer when we reach the * end of it. */ int yy_fill_buffer; int yy_buffer_status; #define YY_BUFFER_NEW 0 #define YY_BUFFER_NORMAL 1 /* When an EOF's been seen but there's still some text to process * then we mark the buffer as YY_EOF_PENDING, to indicate that we * shouldn't try reading from the input source any more. We might * still have a bunch of tokens to match, though, because of * possible backing-up. * * When we actually see the EOF, we change the status to "new" * (via yyrestart()), so that the user can continue scanning by * just pointing yyin at a new input file. */ #define YY_BUFFER_EOF_PENDING 2 }; #endif /* !YY_STRUCT_YY_BUFFER_STATE */ /* We provide macros for accessing buffer states in case in the * future we want to put the buffer states in a more general * "scanner state". * * Returns the top of the stack, or NULL. */ #define YY_CURRENT_BUFFER ( yyg->yy_buffer_stack \ ? yyg->yy_buffer_stack[yyg->yy_buffer_stack_top] \ : NULL) /* Same as previous macro, but useful when we know that the buffer stack is not * NULL or when we need an lvalue. For internal use only. */ #define YY_CURRENT_BUFFER_LVALUE yyg->yy_buffer_stack[yyg->yy_buffer_stack_top] void yyrestart ( FILE *input_file , yyscan_t yyscanner ); void yy_switch_to_buffer ( YY_BUFFER_STATE new_buffer , yyscan_t yyscanner ); YY_BUFFER_STATE yy_create_buffer ( FILE *file, yy_size_t size , yyscan_t yyscanner ); void yy_delete_buffer ( YY_BUFFER_STATE b , yyscan_t yyscanner ); void yy_flush_buffer ( YY_BUFFER_STATE b , yyscan_t yyscanner ); void yypush_buffer_state ( YY_BUFFER_STATE new_buffer , yyscan_t yyscanner ); void yypop_buffer_state ( yyscan_t yyscanner ); static void yyensure_buffer_stack ( yyscan_t yyscanner ); static void yy_load_buffer_state ( yyscan_t yyscanner ); static void yy_init_buffer ( YY_BUFFER_STATE b, FILE *file , yyscan_t yyscanner ); #define YY_FLUSH_BUFFER yy_flush_buffer( YY_CURRENT_BUFFER , yyscanner) YY_BUFFER_STATE yy_scan_buffer ( char *base, yy_size_t size , yyscan_t yyscanner ); YY_BUFFER_STATE yy_scan_string ( const char *yy_str , yyscan_t yyscanner ); YY_BUFFER_STATE yy_scan_bytes ( const char *bytes, yy_size_t len , yyscan_t yyscanner ); void *yyalloc ( yy_size_t , yyscan_t yyscanner ); void *yyrealloc ( void *, yy_size_t , yyscan_t yyscanner ); void yyfree ( void * , yyscan_t yyscanner ); #define yy_new_buffer yy_create_buffer #define yy_set_interactive(is_interactive) \ { \ if ( ! YY_CURRENT_BUFFER ){ \ yyensure_buffer_stack (yyscanner); \ YY_CURRENT_BUFFER_LVALUE = \ yy_create_buffer( yyin, YY_BUF_SIZE , yyscanner); \ } \ YY_CURRENT_BUFFER_LVALUE->yy_is_interactive = is_interactive; \ } #define yy_set_bol(at_bol) \ { \ if ( ! YY_CURRENT_BUFFER ){\ yyensure_buffer_stack (yyscanner); \ YY_CURRENT_BUFFER_LVALUE = \ yy_create_buffer( yyin, YY_BUF_SIZE , yyscanner); \ } \ YY_CURRENT_BUFFER_LVALUE->yy_at_bol = at_bol; \ } #define YY_AT_BOL() (YY_CURRENT_BUFFER_LVALUE->yy_at_bol) /* Begin user sect3 */ #define glcpp_wrap(yyscanner) (/*CONSTCOND*/1) #define YY_SKIP_YYWRAP typedef flex_uint8_t YY_CHAR; typedef int yy_state_type; #define yytext_ptr yytext_r static yy_state_type yy_get_previous_state ( yyscan_t yyscanner ); static yy_state_type yy_try_NUL_trans ( yy_state_type current_state , yyscan_t yyscanner); static int yy_get_next_buffer ( yyscan_t yyscanner ); static void yynoreturn yy_fatal_error ( const char* msg , yyscan_t yyscanner ); /* Done after the current pattern has been matched and before the * corresponding action - sets up yytext. */ #define YY_DO_BEFORE_ACTION \ yyg->yytext_ptr = yy_bp; \ yyleng = (yy_size_t)(yy_cp - yy_bp); \ yyg->yy_hold_char = *yy_cp; \ *yy_cp = '\0'; \ yyg->yy_c_buf_p = yy_cp; #define YY_NUM_RULES 52 #define YY_END_OF_BUFFER 53 /* This struct is not used in this scanner, but its presence is necessary. */ struct yy_trans_info { flex_int32_t yy_verify; flex_int32_t yy_nxt; }; static const flex_int16_t yy_accept[174] = { 0, 0, 0, 3, 3, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 53, 48, 49, 50, 50, 47, 8, 47, 47, 47, 47, 47, 47, 31, 30, 47, 47, 47, 45, 45, 47, 3, 4, 4, 5, 29, 27, 51, 26, 51, 24, 23, 13, 13, 24, 24, 24, 24, 24, 24, 24, 24, 48, 50, 38, 43, 39, 41, 42, 46, 2, 1, 46, 31, 46, 31, 46, 30, 30, 33, 35, 37, 36, 34, 45, 45, 40, 3, 4, 4, 4, 5, 6, 6, 5, 7, 29, 27, 28, 1, 25, 26, 23, 13, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 1, 32, 32, 45, 4, 6, 28, 1, 0, 0, 0, 0, 0, 0, 16, 0, 0, 0, 0, 0, 0, 32, 45, 0, 0, 18, 0, 0, 0, 0, 0, 0, 0, 0, 0, 45, 0, 17, 19, 20, 0, 14, 0, 12, 0, 22, 0, 45, 21, 20, 0, 15, 11, 0, 44, 21, 0, 11, 11, 10, 0, 0, 9, 11, 0 } ; static const YY_CHAR yy_ec[256] = { 0, 1, 1, 1, 1, 1, 1, 1, 1, 2, 3, 2, 2, 4, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 2, 5, 1, 6, 1, 7, 8, 1, 9, 7, 10, 11, 7, 12, 13, 14, 15, 16, 16, 16, 16, 16, 16, 16, 17, 17, 1, 7, 18, 19, 20, 1, 1, 21, 21, 21, 21, 22, 21, 23, 23, 23, 23, 23, 23, 23, 23, 23, 24, 23, 23, 23, 23, 25, 23, 23, 26, 23, 23, 7, 1, 7, 7, 23, 1, 27, 21, 21, 28, 29, 30, 31, 23, 32, 23, 23, 33, 34, 35, 36, 37, 23, 38, 39, 40, 41, 42, 23, 43, 23, 23, 7, 44, 7, 7, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1 } ; static const YY_CHAR yy_meta[45] = { 0, 1, 2, 3, 3, 1, 1, 1, 1, 4, 5, 1, 1, 6, 1, 7, 7, 7, 1, 1, 1, 7, 7, 7, 7, 7, 7, 7, 8, 7, 7, 7, 7, 7, 7, 8, 7, 7, 7, 7, 7, 7, 7, 7, 1 } ; static const flex_int16_t yy_base[191] = { 0, 0, 0, 42, 44, 54, 0, 46, 96, 99, 140, 101, 103, 105, 107, 429, 427, 430, 423, 423, 406, 418, 430, 415, 411, 409, 99, 107, 168, 197, 100, 401, 103, 0, 390, 374, 121, 413, 413, 135, 0, 413, 116, 405, 430, 430, 411, 408, 408, 119, 381, 113, 379, 376, 369, 371, 376, 403, 430, 430, 430, 430, 430, 430, 128, 430, 0, 137, 163, 196, 123, 228, 0, 151, 430, 430, 430, 430, 430, 0, 373, 430, 167, 398, 398, 430, 192, 396, 396, 213, 430, 0, 396, 0, 395, 430, 374, 371, 430, 331, 121, 325, 314, 305, 163, 305, 312, 296, 285, 0, 160, 235, 278, 430, 430, 0, 273, 242, 243, 243, 239, 234, 240, 430, 239, 239, 237, 234, 235, 224, 164, 227, 226, 0, 430, 229, 216, 218, 222, 222, 246, 208, 211, 200, 202, 195, 430, 430, 0, 176, 430, 180, 201, 162, 430, 131, 136, 156, 0, 123, 430, 226, 112, 0, 135, 84, 183, 233, 430, 110, 18, 49, 196, 430, 276, 284, 292, 295, 297, 305, 313, 321, 329, 334, 342, 350, 358, 366, 374, 380, 388 } ; static const flex_int16_t yy_def[191] = { 0, 173, 1, 174, 174, 173, 5, 175, 175, 176, 176, 175, 175, 175, 175, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 177, 177, 173, 173, 173, 178, 178, 173, 179, 173, 173, 180, 181, 173, 182, 183, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 177, 173, 184, 177, 29, 177, 69, 69, 29, 69, 173, 173, 173, 173, 173, 178, 178, 173, 179, 173, 173, 173, 180, 173, 173, 180, 173, 181, 173, 185, 186, 173, 183, 173, 173, 173, 173, 173, 173, 173, 187, 173, 173, 173, 173, 184, 71, 71, 178, 173, 173, 185, 186, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 69, 178, 173, 188, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 178, 173, 173, 173, 189, 173, 173, 173, 173, 173, 173, 173, 178, 173, 189, 173, 173, 190, 173, 178, 173, 173, 190, 190, 173, 173, 173, 173, 190, 0, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173 } ; static const flex_int16_t yy_nxt[475] = { 0, 16, 17, 18, 19, 20, 21, 22, 23, 22, 22, 24, 25, 26, 27, 28, 29, 29, 30, 31, 32, 33, 33, 33, 33, 33, 33, 33, 34, 33, 33, 33, 33, 33, 33, 33, 33, 33, 33, 33, 33, 33, 33, 33, 35, 37, 38, 37, 38, 18, 19, 171, 39, 172, 39, 40, 41, 18, 19, 40, 40, 40, 40, 40, 40, 40, 40, 40, 42, 40, 40, 40, 40, 40, 40, 43, 43, 43, 43, 43, 43, 43, 43, 43, 43, 43, 43, 43, 43, 43, 43, 43, 43, 43, 43, 43, 43, 43, 40, 18, 19, 46, 47, 48, 18, 19, 18, 19, 18, 19, 18, 19, 171, 49, 64, 64, 64, 65, 74, 75, 170, 66, 77, 78, 83, 84, 65, 50, 51, 65, 94, 52, 53, 66, 173, 173, 54, 164, 87, 88, 55, 56, 46, 47, 48, 89, 100, 169, 101, 90, 69, 102, 69, 118, 49, 165, 103, 69, 164, 69, 119, 69, 173, 173, 163, 69, 69, 162, 50, 51, 83, 84, 52, 53, 69, 173, 173, 54, 68, 68, 67, 55, 56, 68, 68, 130, 173, 173, 70, 161, 69, 124, 69, 70, 71, 87, 88, 69, 125, 173, 173, 130, 173, 152, 70, 69, 173, 67, 67, 70, 160, 71, 72, 72, 72, 159, 87, 88, 69, 69, 69, 69, 73, 89, 157, 69, 69, 90, 167, 168, 168, 156, 155, 69, 69, 167, 168, 168, 73, 173, 173, 154, 153, 110, 110, 110, 67, 67, 152, 110, 111, 151, 150, 149, 148, 110, 110, 111, 110, 147, 130, 145, 144, 143, 142, 141, 140, 139, 138, 137, 136, 135, 134, 133, 132, 109, 130, 36, 36, 36, 36, 36, 36, 36, 36, 44, 44, 44, 44, 44, 44, 44, 44, 45, 45, 45, 45, 45, 45, 45, 45, 67, 67, 67, 79, 79, 82, 82, 82, 82, 131, 82, 82, 82, 86, 86, 86, 86, 86, 86, 86, 86, 91, 129, 128, 91, 91, 91, 91, 91, 93, 93, 93, 93, 93, 93, 93, 93, 96, 127, 126, 96, 96, 109, 109, 122, 109, 109, 109, 109, 109, 115, 121, 120, 115, 115, 115, 115, 115, 116, 116, 117, 116, 116, 116, 116, 116, 123, 123, 123, 123, 123, 123, 97, 123, 146, 146, 146, 146, 146, 146, 158, 158, 95, 158, 158, 158, 158, 158, 166, 166, 166, 166, 166, 166, 166, 166, 109, 92, 114, 114, 113, 113, 112, 57, 108, 107, 106, 105, 104, 99, 98, 98, 97, 95, 92, 85, 85, 81, 80, 76, 63, 62, 61, 60, 59, 58, 58, 57, 173, 15, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173 } ; static const flex_int16_t yy_chk[475] = { 0, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 3, 3, 4, 4, 7, 7, 171, 3, 170, 4, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 8, 8, 9, 9, 9, 11, 11, 12, 12, 13, 13, 14, 14, 169, 9, 26, 26, 26, 27, 30, 30, 165, 27, 32, 32, 36, 36, 42, 9, 9, 49, 42, 9, 9, 49, 70, 70, 9, 164, 39, 39, 9, 9, 10, 10, 10, 39, 51, 162, 51, 39, 64, 51, 64, 100, 10, 159, 51, 64, 157, 67, 100, 67, 73, 73, 156, 64, 67, 155, 10, 10, 82, 82, 10, 10, 67, 130, 130, 10, 68, 68, 68, 10, 10, 28, 28, 110, 166, 166, 68, 153, 28, 104, 28, 28, 28, 86, 86, 28, 104, 172, 172, 110, 86, 152, 68, 28, 86, 69, 69, 28, 151, 28, 29, 29, 29, 149, 89, 89, 69, 29, 69, 29, 29, 89, 145, 69, 29, 89, 161, 161, 161, 144, 143, 69, 29, 167, 167, 167, 29, 71, 71, 142, 141, 71, 71, 71, 111, 111, 140, 71, 71, 139, 138, 137, 136, 71, 71, 71, 71, 135, 111, 132, 131, 129, 128, 127, 126, 125, 124, 122, 121, 120, 119, 118, 117, 116, 111, 174, 174, 174, 174, 174, 174, 174, 174, 175, 175, 175, 175, 175, 175, 175, 175, 176, 176, 176, 176, 176, 176, 176, 176, 177, 177, 177, 178, 178, 179, 179, 179, 179, 112, 179, 179, 179, 180, 180, 180, 180, 180, 180, 180, 180, 181, 108, 107, 181, 181, 181, 181, 181, 182, 182, 182, 182, 182, 182, 182, 182, 183, 106, 105, 183, 183, 184, 184, 103, 184, 184, 184, 184, 184, 185, 102, 101, 185, 185, 185, 185, 185, 186, 186, 99, 186, 186, 186, 186, 186, 187, 187, 187, 187, 187, 187, 97, 187, 188, 188, 188, 188, 188, 188, 189, 189, 96, 189, 189, 189, 189, 189, 190, 190, 190, 190, 190, 190, 190, 190, 94, 92, 88, 87, 84, 83, 80, 57, 56, 55, 54, 53, 52, 50, 48, 47, 46, 43, 41, 38, 37, 35, 34, 31, 25, 24, 23, 21, 20, 19, 18, 16, 15, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173, 173 } ; /* The intent behind this definition is that it'll catch * any uses of REJECT which flex missed. */ #define REJECT reject_used_but_not_detected #define yymore() yymore_used_but_not_detected #define YY_MORE_ADJ 0 #define YY_RESTORE_YY_MORE_OFFSET #line 1 "../src/compiler/glsl/glcpp/glcpp-lex.l" #line 2 "../src/compiler/glsl/glcpp/glcpp-lex.l" /* * Copyright © 2010 Intel Corporation * * Permission is hereby granted, free of charge, to any person obtaining a * copy of this software and associated documentation files (the "Software"), * to deal in the Software without restriction, including without limitation * the rights to use, copy, modify, merge, publish, distribute, sublicense, * and/or sell copies of the Software, and to permit persons to whom the * Software is furnished to do so, subject to the following conditions: * * The above copyright notice and this permission notice (including the next * paragraph) shall be included in all copies or substantial portions of the * Software. * * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING * FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER * DEALINGS IN THE SOFTWARE. */ #include #include #include #include "glcpp.h" #include "glcpp-parse.h" /* Flex annoyingly generates some functions without making them * static. Let's declare them here. */ int glcpp_get_column (yyscan_t yyscanner); void glcpp_set_column (int column_no , yyscan_t yyscanner); #ifdef _MSC_VER #define YY_NO_UNISTD_H #endif #define YY_NO_INPUT #define YY_USER_ACTION \ do { \ if (parser->has_new_line_number) \ yylineno = parser->new_line_number; \ if (parser->has_new_source_number) \ yylloc->source = parser->new_source_number; \ yylloc->first_column = yycolumn + 1; \ yylloc->first_line = yylloc->last_line = yylineno; \ yycolumn += yyleng; \ yylloc->last_column = yycolumn + 1; \ parser->has_new_line_number = 0; \ parser->has_new_source_number = 0; \ } while(0); #define YY_USER_INIT \ do { \ yylineno = 1; \ yycolumn = 0; \ yylloc->source = 0; \ } while(0) /* It's ugly to have macros that have return statements inside of * them, but flex-based lexer generation is all built around the * return statement. * * To mitigate the ugliness, we defer as much of the logic as possible * to an actual function, not a macro (see * glcpplex_update_state_per_token) and we make the word RETURN * prominent in all of the macros which may return. * * The most-commonly-used macro is RETURN_TOKEN which will perform all * necessary state updates based on the provided token,, then * conditionally return the token. It will not return a token if the * parser is currently skipping tokens, (such as within #if * 0...#else). * * The RETURN_TOKEN_NEVER_SKIP macro is a lower-level variant that * makes the token returning unconditional. This is needed for things * like #if and the tokens of its condition, (since these must be * evaluated by the parser even when otherwise skipping). * * Finally, RETURN_STRING_TOKEN is a simple convenience wrapper on top * of RETURN_TOKEN that performs a string copy of yytext before the * return. */ #define RETURN_TOKEN_NEVER_SKIP(token) \ do { \ if (glcpp_lex_update_state_per_token (parser, token)) \ return token; \ } while (0) #define RETURN_TOKEN(token) \ do { \ if (! parser->skipping) { \ RETURN_TOKEN_NEVER_SKIP(token); \ } \ } while(0) #define RETURN_STRING_TOKEN(token) \ do { \ if (! parser->skipping) { \ /* We're not doing linear_strdup here, to avoid \ * an implicit call on strlen() for the length \ * of the string, as this is already found by \ * flex and stored in yyleng */ \ void *mem_ctx = yyextra->linalloc; \ yylval->str = linear_alloc_child(mem_ctx, \ yyleng + 1); \ memcpy(yylval->str, yytext, yyleng + 1); \ RETURN_TOKEN_NEVER_SKIP (token); \ } \ } while(0) /* Update all state necessary for each token being returned. * * Here we'll be tracking newlines and spaces so that the lexer can * alter its behavior as necessary, (for example, '#' has special * significance if it is the first non-whitespace, non-comment token * in a line, but does not otherwise). * * NOTE: If this function returns FALSE, then no token should be * returned at all. This is used to suprress duplicate SPACE tokens. */ static int glcpp_lex_update_state_per_token (glcpp_parser_t *parser, int token) { if (token != NEWLINE && token != SPACE && token != HASH_TOKEN && !parser->lexing_version_directive) { glcpp_parser_resolve_implicit_version(parser); } /* After the first non-space token in a line, we won't * allow any '#' to introduce a directive. */ if (token == NEWLINE) { parser->first_non_space_token_this_line = 1; } else if (token != SPACE) { parser->first_non_space_token_this_line = 0; } /* Track newlines just to know whether a newline needs * to be inserted if end-of-file comes early. */ if (token == NEWLINE) { parser->last_token_was_newline = 1; } else { parser->last_token_was_newline = 0; } /* Track spaces to avoid emitting multiple SPACE * tokens in a row. */ if (token == SPACE) { if (! parser->last_token_was_space) { parser->last_token_was_space = 1; return 1; } else { parser->last_token_was_space = 1; return 0; } } else { parser->last_token_was_space = 0; return 1; } } #line 989 "src/compiler/glsl/glcpp/glcpp-lex.c" #line 178 "../src/compiler/glsl/glcpp/glcpp-lex.l" /* Note: When adding any start conditions to this list, you must also * update the "Internal compiler error" catch-all rule near the end of * this file. */ /* The OTHER class is simply a catch-all for things that the CPP parser just doesn't care about. Since flex regular expressions that match longer strings take priority over those matching shorter strings, we have to be careful to avoid OTHER matching and hiding something that CPP does care about. So we simply exclude all characters that appear in any other expressions. */ #line 1001 "src/compiler/glsl/glcpp/glcpp-lex.c" #define INITIAL 0 #define COMMENT 1 #define DEFINE 2 #define DONE 3 #define HASH 4 #define NEWLINE_CATCHUP 5 #define UNREACHABLE 6 #ifndef YY_NO_UNISTD_H /* Special case for "unistd.h", since it is non-ANSI. We include it way * down here because we want the user's section 1 to have been scanned first. * The user has a chance to override it with an option. */ #include #endif #define YY_EXTRA_TYPE glcpp_parser_t * /* Holds the entire state of the reentrant scanner. */ struct yyguts_t { /* User-defined. Not touched by flex. */ YY_EXTRA_TYPE yyextra_r; /* The rest are the same as the globals declared in the non-reentrant scanner. */ FILE *yyin_r, *yyout_r; size_t yy_buffer_stack_top; /**< index of top of stack. */ size_t yy_buffer_stack_max; /**< capacity of stack. */ YY_BUFFER_STATE * yy_buffer_stack; /**< Stack as an array. */ char yy_hold_char; yy_size_t yy_n_chars; yy_size_t yyleng_r; char *yy_c_buf_p; int yy_init; int yy_start; int yy_did_buffer_switch_on_eof; int yy_start_stack_ptr; int yy_start_stack_depth; int *yy_start_stack; yy_state_type yy_last_accepting_state; char* yy_last_accepting_cpos; int yylineno_r; int yy_flex_debug_r; char *yytext_r; int yy_more_flag; int yy_more_len; YYSTYPE * yylval_r; YYLTYPE * yylloc_r; }; /* end struct yyguts_t */ static int yy_init_globals ( yyscan_t yyscanner ); /* This must go here because YYSTYPE and YYLTYPE are included * from bison output in section 1.*/ # define yylval yyg->yylval_r # define yylloc yyg->yylloc_r int yylex_init (yyscan_t* scanner); int yylex_init_extra ( YY_EXTRA_TYPE user_defined, yyscan_t* scanner); /* Accessor methods to globals. These are made visible to non-reentrant scanners for convenience. */ int yylex_destroy ( yyscan_t yyscanner ); int yyget_debug ( yyscan_t yyscanner ); void yyset_debug ( int debug_flag , yyscan_t yyscanner ); YY_EXTRA_TYPE yyget_extra ( yyscan_t yyscanner ); void yyset_extra ( YY_EXTRA_TYPE user_defined , yyscan_t yyscanner ); FILE *yyget_in ( yyscan_t yyscanner ); void yyset_in ( FILE * _in_str , yyscan_t yyscanner ); FILE *yyget_out ( yyscan_t yyscanner ); void yyset_out ( FILE * _out_str , yyscan_t yyscanner ); yy_size_t yyget_leng ( yyscan_t yyscanner ); char *yyget_text ( yyscan_t yyscanner ); int yyget_lineno ( yyscan_t yyscanner ); void yyset_lineno ( int _line_number , yyscan_t yyscanner ); int yyget_column ( yyscan_t yyscanner ); void yyset_column ( int _column_no , yyscan_t yyscanner ); YYSTYPE * yyget_lval ( yyscan_t yyscanner ); void yyset_lval ( YYSTYPE * yylval_param , yyscan_t yyscanner ); YYLTYPE *yyget_lloc ( yyscan_t yyscanner ); void yyset_lloc ( YYLTYPE * yylloc_param , yyscan_t yyscanner ); /* Macros after this point can all be overridden by user definitions in * section 1. */ #ifndef YY_SKIP_YYWRAP #ifdef __cplusplus extern "C" int yywrap ( yyscan_t yyscanner ); #else extern int yywrap ( yyscan_t yyscanner ); #endif #endif #ifndef YY_NO_UNPUT static void yyunput ( int c, char *buf_ptr , yyscan_t yyscanner); #endif #ifndef yytext_ptr static void yy_flex_strncpy ( char *, const char *, int , yyscan_t yyscanner); #endif #ifdef YY_NEED_STRLEN static int yy_flex_strlen ( const char * , yyscan_t yyscanner); #endif #ifndef YY_NO_INPUT #ifdef __cplusplus static int yyinput ( yyscan_t yyscanner ); #else static int input ( yyscan_t yyscanner ); #endif #endif static void yy_push_state ( int _new_state , yyscan_t yyscanner); static void yy_pop_state ( yyscan_t yyscanner ); static int yy_top_state ( yyscan_t yyscanner ); /* Amount of stuff to slurp up with each read. */ #ifndef YY_READ_BUF_SIZE #ifdef __ia64__ /* On IA-64, the buffer size is 16k, not 8k */ #define YY_READ_BUF_SIZE 16384 #else #define YY_READ_BUF_SIZE 8192 #endif /* __ia64__ */ #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 do { if (fwrite( yytext, (size_t) yyleng, 1, yyout )) {} } while (0) #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_LVALUE->yy_is_interactive ) \ { \ int c = '*'; \ yy_size_t 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 \ { \ errno=0; \ while ( (result = fread(buf, 1, (yy_size_t) max_size, yyin)) == 0 && ferror(yyin)) \ { \ if( errno != EINTR) \ { \ YY_FATAL_ERROR( "input in flex scanner failed" ); \ break; \ } \ errno=0; \ clearerr(yyin); \ } \ }\ \ #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 , yyscanner) #endif /* end tables serialization structures and prototypes */ /* Default declaration of generated scanner - a define so the user can * easily add parameters. */ #ifndef YY_DECL #define YY_DECL_IS_OURS 1 extern int yylex \ (YYSTYPE * yylval_param, YYLTYPE * yylloc_param , yyscan_t yyscanner); #define YY_DECL int yylex \ (YYSTYPE * yylval_param, YYLTYPE * yylloc_param , yyscan_t yyscanner) #endif /* !YY_DECL */ /* 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 /*LINTED*/break; #endif #define YY_RULE_SETUP \ YY_USER_ACTION /** The main scanner function which does all the work. */ YY_DECL { yy_state_type yy_current_state; char *yy_cp, *yy_bp; int yy_act; struct yyguts_t * yyg = (struct yyguts_t*)yyscanner; yylval = yylval_param; yylloc = yylloc_param; if ( !yyg->yy_init ) { yyg->yy_init = 1; #ifdef YY_USER_INIT YY_USER_INIT; #endif if ( ! yyg->yy_start ) yyg->yy_start = 1; /* first start state */ if ( ! yyin ) yyin = stdin; if ( ! yyout ) yyout = stdout; if ( ! YY_CURRENT_BUFFER ) { yyensure_buffer_stack (yyscanner); YY_CURRENT_BUFFER_LVALUE = yy_create_buffer( yyin, YY_BUF_SIZE , yyscanner); } yy_load_buffer_state( yyscanner ); } { #line 207 "../src/compiler/glsl/glcpp/glcpp-lex.l" glcpp_parser_t *parser = yyextra; /* When we lex a multi-line comment, we replace it (as * specified) with a single space. But if the comment spanned * multiple lines, then subsequent parsing stages will not * count correct line numbers. To avoid this problem we keep * track of all newlines that were commented out by a * multi-line comment, and we emit a NEWLINE token for each at * the next legal opportunity, (which is when the lexer would * be emitting a NEWLINE token anyway). */ if (YY_START == NEWLINE_CATCHUP) { if (parser->commented_newlines) parser->commented_newlines--; if (parser->commented_newlines == 0) BEGIN INITIAL; RETURN_TOKEN_NEVER_SKIP (NEWLINE); } /* Set up the parser->skipping bit here before doing any lexing. * * This bit controls whether tokens are skipped, (as implemented by * RETURN_TOKEN), such as between "#if 0" and "#endif". * * The parser maintains a skip_stack indicating whether we should be * skipping, (and nested levels of #if/#ifdef/#ifndef/#endif) will * push and pop items from the stack. * * Here are the rules for determining whether we are skipping: * * 1. If the skip stack is NULL, we are outside of all #if blocks * and we are not skipping. * * 2. If the skip stack is non-NULL, the type of the top node in * the stack determines whether to skip. A type of * SKIP_NO_SKIP is used for blocks wheere we are emitting * tokens, (such as between #if 1 and #endif, or after the * #else of an #if 0, etc.). * * 3. The lexing_directive bit overrides the skip stack. This bit * is set when we are actively lexing the expression for a * pre-processor condition, (such as #if, #elif, or #else). In * this case, even if otherwise skipping, we need to emit the * tokens for this condition so that the parser can evaluate * the expression. (For, #else, there's no expression, but we * emit tokens so the parser can generate a nice error message * if there are any tokens here). */ if (parser->skip_stack && parser->skip_stack->type != SKIP_NO_SKIP && ! parser->lexing_directive) { parser->skipping = 1; } else { parser->skipping = 0; } /* Single-line comments */ #line 1356 "src/compiler/glsl/glcpp/glcpp-lex.c" while ( /*CONSTCOND*/1 ) /* loops until end-of-file is reached */ { yy_cp = yyg->yy_c_buf_p; /* Support of yytext. */ *yy_cp = yyg->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 = yyg->yy_start; yy_match: do { YY_CHAR yy_c = yy_ec[YY_SC_TO_UI(*yy_cp)] ; if ( yy_accept[yy_current_state] ) { yyg->yy_last_accepting_state = yy_current_state; yyg->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 >= 174 ) yy_c = yy_meta[yy_c]; } yy_current_state = yy_nxt[yy_base[yy_current_state] + yy_c]; ++yy_cp; } while ( yy_current_state != 173 ); yy_cp = yyg->yy_last_accepting_cpos; yy_current_state = yyg->yy_last_accepting_state; yy_find_action: 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 = yyg->yy_hold_char; yy_cp = yyg->yy_last_accepting_cpos; yy_current_state = yyg->yy_last_accepting_state; goto yy_find_action; case 1: YY_RULE_SETUP #line 267 "../src/compiler/glsl/glcpp/glcpp-lex.l" { } YY_BREAK /* Multi-line comments */ case 2: YY_RULE_SETUP #line 271 "../src/compiler/glsl/glcpp/glcpp-lex.l" { yy_push_state(COMMENT, yyscanner); } YY_BREAK case 3: YY_RULE_SETUP #line 272 "../src/compiler/glsl/glcpp/glcpp-lex.l" YY_BREAK case 4: /* rule 4 can match eol */ YY_RULE_SETUP #line 273 "../src/compiler/glsl/glcpp/glcpp-lex.l" { yylineno++; yycolumn = 0; parser->commented_newlines++; } YY_BREAK case 5: YY_RULE_SETUP #line 274 "../src/compiler/glsl/glcpp/glcpp-lex.l" YY_BREAK case 6: /* rule 6 can match eol */ YY_RULE_SETUP #line 275 "../src/compiler/glsl/glcpp/glcpp-lex.l" { yylineno++; yycolumn = 0; parser->commented_newlines++; } YY_BREAK case 7: YY_RULE_SETUP #line 276 "../src/compiler/glsl/glcpp/glcpp-lex.l" { yy_pop_state(yyscanner); /* In the start condition, we don't want any SPACE token. */ if (yyextra->space_tokens && YY_START != HASH) RETURN_TOKEN (SPACE); } YY_BREAK case 8: YY_RULE_SETUP #line 283 "../src/compiler/glsl/glcpp/glcpp-lex.l" { /* If the '#' is the first non-whitespace, non-comment token on this * line, then it introduces a directive, switch to the start * condition. * * Otherwise, this is just punctuation, so return the HASH_TOKEN * token. */ if (parser->first_non_space_token_this_line) { BEGIN HASH; yyextra->in_define = false; } RETURN_TOKEN_NEVER_SKIP (HASH_TOKEN); } YY_BREAK case 9: YY_RULE_SETUP #line 299 "../src/compiler/glsl/glcpp/glcpp-lex.l" { BEGIN INITIAL; yyextra->space_tokens = 0; yyextra->lexing_version_directive = 1; RETURN_STRING_TOKEN (VERSION_TOKEN); } YY_BREAK /* Swallow empty #pragma directives, (to avoid confusing the * downstream compiler). * * Note: We use a simple regular expression for the lookahead * here. Specifically, we cannot use the complete {NEWLINE} expression * since it uses alternation and we've found that there's a flex bug * where using alternation in the lookahead portion of a pattern * triggers a buffer overrun. */ case 10: /* rule 10 can match eol */ *yy_cp = yyg->yy_hold_char; /* undo effects of setting up yytext */ YY_LINENO_REWIND_TO(yy_cp - 1); yyg->yy_c_buf_p = yy_cp -= 1; YY_DO_BEFORE_ACTION; /* set up yytext again */ YY_RULE_SETUP #line 314 "../src/compiler/glsl/glcpp/glcpp-lex.l" { BEGIN INITIAL; } YY_BREAK /* glcpp doesn't handle #extension, #version, or #pragma directives. * Simply pass them through to the main compiler's lexer/parser. */ case 11: YY_RULE_SETUP #line 320 "../src/compiler/glsl/glcpp/glcpp-lex.l" { BEGIN INITIAL; RETURN_STRING_TOKEN (PRAGMA); } YY_BREAK case 12: YY_RULE_SETUP #line 325 "../src/compiler/glsl/glcpp/glcpp-lex.l" { BEGIN INITIAL; RETURN_TOKEN (LINE); } YY_BREAK case 13: /* rule 13 can match eol */ YY_RULE_SETUP #line 330 "../src/compiler/glsl/glcpp/glcpp-lex.l" { BEGIN INITIAL; yyextra->space_tokens = 0; yylineno++; yycolumn = 0; RETURN_TOKEN_NEVER_SKIP (NEWLINE); } YY_BREAK /* For the pre-processor directives, we return these tokens * even when we are otherwise skipping. */ case 14: YY_RULE_SETUP #line 340 "../src/compiler/glsl/glcpp/glcpp-lex.l" { if (!yyextra->in_define) { BEGIN INITIAL; yyextra->lexing_directive = 1; yyextra->space_tokens = 0; RETURN_TOKEN_NEVER_SKIP (IFDEF); } } YY_BREAK case 15: YY_RULE_SETUP #line 349 "../src/compiler/glsl/glcpp/glcpp-lex.l" { if (!yyextra->in_define) { BEGIN INITIAL; yyextra->lexing_directive = 1; yyextra->space_tokens = 0; RETURN_TOKEN_NEVER_SKIP (IFNDEF); } } YY_BREAK case 16: /* rule 16 can match eol */ *yy_cp = yyg->yy_hold_char; /* undo effects of setting up yytext */ YY_LINENO_REWIND_TO(yy_bp + 2); yyg->yy_c_buf_p = yy_cp = yy_bp + 2; YY_DO_BEFORE_ACTION; /* set up yytext again */ YY_RULE_SETUP #line 358 "../src/compiler/glsl/glcpp/glcpp-lex.l" { if (!yyextra->in_define) { BEGIN INITIAL; yyextra->lexing_directive = 1; yyextra->space_tokens = 0; RETURN_TOKEN_NEVER_SKIP (IF); } } YY_BREAK case 17: /* rule 17 can match eol */ *yy_cp = yyg->yy_hold_char; /* undo effects of setting up yytext */ YY_LINENO_REWIND_TO(yy_bp + 4); yyg->yy_c_buf_p = yy_cp = yy_bp + 4; YY_DO_BEFORE_ACTION; /* set up yytext again */ YY_RULE_SETUP #line 367 "../src/compiler/glsl/glcpp/glcpp-lex.l" { if (!yyextra->in_define) { BEGIN INITIAL; yyextra->lexing_directive = 1; yyextra->space_tokens = 0; RETURN_TOKEN_NEVER_SKIP (ELIF); } } YY_BREAK case 18: YY_RULE_SETUP #line 376 "../src/compiler/glsl/glcpp/glcpp-lex.l" { if (!yyextra->in_define) { BEGIN INITIAL; yyextra->space_tokens = 0; RETURN_TOKEN_NEVER_SKIP (ELSE); } } YY_BREAK case 19: YY_RULE_SETUP #line 384 "../src/compiler/glsl/glcpp/glcpp-lex.l" { if (!yyextra->in_define) { BEGIN INITIAL; yyextra->space_tokens = 0; RETURN_TOKEN_NEVER_SKIP (ENDIF); } } YY_BREAK case 20: YY_RULE_SETUP #line 392 "../src/compiler/glsl/glcpp/glcpp-lex.l" { BEGIN INITIAL; RETURN_STRING_TOKEN (ERROR_TOKEN); } YY_BREAK /* After we see a "#define" we enter the start state * for the lexer. Within we are looking for the first * identifier and specifically checking whether the identifier * is followed by a '(' or not, (to lex either a * FUNC_IDENTIFIER or an OBJ_IDENITIFIER token). * * While in the state we also need to explicitly * handle a few other things that may appear before the * identifier: * * * Comments, (handled above with the main support for * comments). * * * Whitespace (simply ignored) * * * Anything else, (not an identifier, not a comment, * and not whitespace). This will generate an error. */ case 21: YY_RULE_SETUP #line 415 "../src/compiler/glsl/glcpp/glcpp-lex.l" { yyextra->in_define = true; if (!parser->skipping) { BEGIN DEFINE; yyextra->space_tokens = 0; RETURN_TOKEN (DEFINE_TOKEN); } } YY_BREAK case 22: YY_RULE_SETUP #line 424 "../src/compiler/glsl/glcpp/glcpp-lex.l" { BEGIN INITIAL; yyextra->space_tokens = 0; RETURN_TOKEN (UNDEF); } YY_BREAK case 23: YY_RULE_SETUP #line 430 "../src/compiler/glsl/glcpp/glcpp-lex.l" { /* Nothing to do here. Importantly, don't leave the * start condition, since it's legal to have space between the * '#' and the directive.. */ } YY_BREAK /* This will catch any non-directive garbage after a HASH */ case 24: YY_RULE_SETUP #line 437 "../src/compiler/glsl/glcpp/glcpp-lex.l" { if (!parser->skipping) { BEGIN INITIAL; RETURN_TOKEN (GARBAGE); } } YY_BREAK /* An identifier immediately followed by '(' */ case 25: *yy_cp = yyg->yy_hold_char; /* undo effects of setting up yytext */ yyg->yy_c_buf_p = yy_cp -= 1; YY_DO_BEFORE_ACTION; /* set up yytext again */ YY_RULE_SETUP #line 445 "../src/compiler/glsl/glcpp/glcpp-lex.l" { BEGIN INITIAL; RETURN_STRING_TOKEN (FUNC_IDENTIFIER); } YY_BREAK /* An identifier not immediately followed by '(' */ case 26: YY_RULE_SETUP #line 451 "../src/compiler/glsl/glcpp/glcpp-lex.l" { BEGIN INITIAL; RETURN_STRING_TOKEN (OBJ_IDENTIFIER); } YY_BREAK /* Whitespace */ case 27: YY_RULE_SETUP #line 457 "../src/compiler/glsl/glcpp/glcpp-lex.l" { /* Just ignore it. Nothing to do here. */ } YY_BREAK /* '/' not followed by '*', so not a comment. This is an error. */ case 28: /* rule 28 can match eol */ YY_RULE_SETUP #line 462 "../src/compiler/glsl/glcpp/glcpp-lex.l" { BEGIN INITIAL; glcpp_error(yylloc, yyextra, "#define followed by a non-identifier: %s", yytext); RETURN_STRING_TOKEN (INTEGER_STRING); } YY_BREAK /* A character that can't start an identifier, comment, or * space. This is an error. */ case 29: YY_RULE_SETUP #line 470 "../src/compiler/glsl/glcpp/glcpp-lex.l" { BEGIN INITIAL; glcpp_error(yylloc, yyextra, "#define followed by a non-identifier: %s", yytext); RETURN_STRING_TOKEN (INTEGER_STRING); } YY_BREAK case 30: YY_RULE_SETUP #line 476 "../src/compiler/glsl/glcpp/glcpp-lex.l" { RETURN_STRING_TOKEN (INTEGER_STRING); } YY_BREAK case 31: YY_RULE_SETUP #line 480 "../src/compiler/glsl/glcpp/glcpp-lex.l" { RETURN_STRING_TOKEN (INTEGER_STRING); } YY_BREAK case 32: YY_RULE_SETUP #line 484 "../src/compiler/glsl/glcpp/glcpp-lex.l" { RETURN_STRING_TOKEN (INTEGER_STRING); } YY_BREAK case 33: YY_RULE_SETUP #line 488 "../src/compiler/glsl/glcpp/glcpp-lex.l" { RETURN_TOKEN (LEFT_SHIFT); } YY_BREAK case 34: YY_RULE_SETUP #line 492 "../src/compiler/glsl/glcpp/glcpp-lex.l" { RETURN_TOKEN (RIGHT_SHIFT); } YY_BREAK case 35: YY_RULE_SETUP #line 496 "../src/compiler/glsl/glcpp/glcpp-lex.l" { RETURN_TOKEN (LESS_OR_EQUAL); } YY_BREAK case 36: YY_RULE_SETUP #line 500 "../src/compiler/glsl/glcpp/glcpp-lex.l" { RETURN_TOKEN (GREATER_OR_EQUAL); } YY_BREAK case 37: YY_RULE_SETUP #line 504 "../src/compiler/glsl/glcpp/glcpp-lex.l" { RETURN_TOKEN (EQUAL); } YY_BREAK case 38: YY_RULE_SETUP #line 508 "../src/compiler/glsl/glcpp/glcpp-lex.l" { RETURN_TOKEN (NOT_EQUAL); } YY_BREAK case 39: YY_RULE_SETUP #line 512 "../src/compiler/glsl/glcpp/glcpp-lex.l" { RETURN_TOKEN (AND); } YY_BREAK case 40: YY_RULE_SETUP #line 516 "../src/compiler/glsl/glcpp/glcpp-lex.l" { RETURN_TOKEN (OR); } YY_BREAK case 41: YY_RULE_SETUP #line 520 "../src/compiler/glsl/glcpp/glcpp-lex.l" { RETURN_TOKEN (PLUS_PLUS); } YY_BREAK case 42: YY_RULE_SETUP #line 524 "../src/compiler/glsl/glcpp/glcpp-lex.l" { RETURN_TOKEN (MINUS_MINUS); } YY_BREAK case 43: YY_RULE_SETUP #line 528 "../src/compiler/glsl/glcpp/glcpp-lex.l" { if (! parser->skipping) { if (parser->is_gles) glcpp_error(yylloc, yyextra, "Token pasting (##) is illegal in GLES"); RETURN_TOKEN (PASTE); } } YY_BREAK case 44: YY_RULE_SETUP #line 536 "../src/compiler/glsl/glcpp/glcpp-lex.l" { RETURN_TOKEN (DEFINED); } YY_BREAK case 45: YY_RULE_SETUP #line 540 "../src/compiler/glsl/glcpp/glcpp-lex.l" { RETURN_STRING_TOKEN (IDENTIFIER); } YY_BREAK case 46: YY_RULE_SETUP #line 544 "../src/compiler/glsl/glcpp/glcpp-lex.l" { RETURN_STRING_TOKEN (OTHER); } YY_BREAK case 47: YY_RULE_SETUP #line 548 "../src/compiler/glsl/glcpp/glcpp-lex.l" { RETURN_TOKEN (yytext[0]); } YY_BREAK case 48: YY_RULE_SETUP #line 552 "../src/compiler/glsl/glcpp/glcpp-lex.l" { RETURN_STRING_TOKEN (OTHER); } YY_BREAK case 49: YY_RULE_SETUP #line 556 "../src/compiler/glsl/glcpp/glcpp-lex.l" { if (yyextra->space_tokens) { RETURN_TOKEN (SPACE); } } YY_BREAK /* We preserve all newlines, even between #if 0..#endif, so no skipping.. */ case 50: /* rule 50 can match eol */ YY_RULE_SETUP #line 564 "../src/compiler/glsl/glcpp/glcpp-lex.l" { if (parser->commented_newlines) { BEGIN NEWLINE_CATCHUP; } else { BEGIN INITIAL; } yyextra->space_tokens = 1; yyextra->lexing_directive = 0; yyextra->lexing_version_directive = 0; yylineno++; yycolumn = 0; RETURN_TOKEN_NEVER_SKIP (NEWLINE); } YY_BREAK case YY_STATE_EOF(INITIAL): case YY_STATE_EOF(COMMENT): case YY_STATE_EOF(DEFINE): case YY_STATE_EOF(HASH): #line 578 "../src/compiler/glsl/glcpp/glcpp-lex.l" { if (YY_START == COMMENT) glcpp_error(yylloc, yyextra, "Unterminated comment"); BEGIN DONE; /* Don't keep matching this rule forever. */ yyextra->lexing_directive = 0; yyextra->lexing_version_directive = 0; if (! parser->last_token_was_newline) RETURN_TOKEN (NEWLINE); } YY_BREAK /* This is a catch-all to avoid the annoying default flex action which * matches any character and prints it. If any input ever matches this * rule, then we have made a mistake above and need to fix one or more * of the preceding patterns to match that input. */ case 51: YY_RULE_SETUP #line 593 "../src/compiler/glsl/glcpp/glcpp-lex.l" { glcpp_error(yylloc, yyextra, "Internal compiler error: Unexpected character: %s", yytext); /* We don't actually use the UNREACHABLE start condition. We only have this block here so that we can pretend to call some generated functions, (to avoid "defined but not used" warnings. */ if (YY_START == UNREACHABLE) { unput('.'); yy_top_state(yyextra); } } YY_BREAK case 52: YY_RULE_SETUP #line 606 "../src/compiler/glsl/glcpp/glcpp-lex.l" YY_FATAL_ERROR( "flex scanner jammed" ); YY_BREAK #line 1938 "src/compiler/glsl/glcpp/glcpp-lex.c" case YY_STATE_EOF(DONE): case YY_STATE_EOF(NEWLINE_CATCHUP): case YY_STATE_EOF(UNREACHABLE): yyterminate(); case YY_END_OF_BUFFER: { /* Amount of text matched not including the EOB char. */ int yy_amount_of_matched_text = (int) (yy_cp - yyg->yytext_ptr) - 1; /* Undo the effects of YY_DO_BEFORE_ACTION. */ *yy_cp = yyg->yy_hold_char; YY_RESTORE_YY_MORE_OFFSET if ( YY_CURRENT_BUFFER_LVALUE->yy_buffer_status == YY_BUFFER_NEW ) { /* We're scanning a new file or input source. It's * possible that this happened because the user * just pointed yyin at a new source and called * yylex(). If so, then we have to assure * consistency between YY_CURRENT_BUFFER and our * globals. Here is the right place to do so, because * this is the first action (other than possibly a * back-up) that will match for the new input source. */ yyg->yy_n_chars = YY_CURRENT_BUFFER_LVALUE->yy_n_chars; YY_CURRENT_BUFFER_LVALUE->yy_input_file = yyin; YY_CURRENT_BUFFER_LVALUE->yy_buffer_status = YY_BUFFER_NORMAL; } /* Note that here we test for yy_c_buf_p "<=" to the position * of the first EOB in the buffer, since yy_c_buf_p will * already have been incremented past the NUL character * (since all states make transitions on EOB to the * end-of-buffer state). Contrast this with the test * in input(). */ if ( yyg->yy_c_buf_p <= &YY_CURRENT_BUFFER_LVALUE->yy_ch_buf[yyg->yy_n_chars] ) { /* This was really a NUL. */ yy_state_type yy_next_state; yyg->yy_c_buf_p = yyg->yytext_ptr + yy_amount_of_matched_text; yy_current_state = yy_get_previous_state( yyscanner ); /* Okay, we're now positioned to make the NUL * transition. We couldn't have * yy_get_previous_state() go ahead and do it * for us because it doesn't know how to deal * with the possibility of jamming (and we don't * want to build jamming into it because then it * will run more slowly). */ yy_next_state = yy_try_NUL_trans( yy_current_state , yyscanner); yy_bp = yyg->yytext_ptr + YY_MORE_ADJ; if ( yy_next_state ) { /* Consume the NUL. */ yy_cp = ++yyg->yy_c_buf_p; yy_current_state = yy_next_state; goto yy_match; } else { yy_cp = yyg->yy_last_accepting_cpos; yy_current_state = yyg->yy_last_accepting_state; goto yy_find_action; } } else switch ( yy_get_next_buffer( yyscanner ) ) { case EOB_ACT_END_OF_FILE: { yyg->yy_did_buffer_switch_on_eof = 0; if ( yywrap( yyscanner ) ) { /* Note: because we've taken care in * yy_get_next_buffer() to have set up * yytext, we can now set up * yy_c_buf_p so that if some total * hoser (like flex itself) wants to * call the scanner after we return the * YY_NULL, it'll still work - another * YY_NULL will get returned. */ yyg->yy_c_buf_p = yyg->yytext_ptr + YY_MORE_ADJ; yy_act = YY_STATE_EOF(YY_START); goto do_action; } else { if ( ! yyg->yy_did_buffer_switch_on_eof ) YY_NEW_FILE; } break; } case EOB_ACT_CONTINUE_SCAN: yyg->yy_c_buf_p = yyg->yytext_ptr + yy_amount_of_matched_text; yy_current_state = yy_get_previous_state( yyscanner ); yy_cp = yyg->yy_c_buf_p; yy_bp = yyg->yytext_ptr + YY_MORE_ADJ; goto yy_match; case EOB_ACT_LAST_MATCH: yyg->yy_c_buf_p = &YY_CURRENT_BUFFER_LVALUE->yy_ch_buf[yyg->yy_n_chars]; yy_current_state = yy_get_previous_state( yyscanner ); yy_cp = yyg->yy_c_buf_p; yy_bp = yyg->yytext_ptr + YY_MORE_ADJ; goto yy_find_action; } break; } default: YY_FATAL_ERROR( "fatal flex scanner internal error--no action found" ); } /* end of action switch */ } /* end of scanning one token */ } /* end of user's declarations */ } /* end of yylex */ /* yy_get_next_buffer - try to read in a new buffer * * Returns a code representing an action: * EOB_ACT_LAST_MATCH - * EOB_ACT_CONTINUE_SCAN - continue scanning from current position * EOB_ACT_END_OF_FILE - end of file */ static int yy_get_next_buffer (yyscan_t yyscanner) { struct yyguts_t * yyg = (struct yyguts_t*)yyscanner; char *dest = YY_CURRENT_BUFFER_LVALUE->yy_ch_buf; char *source = yyg->yytext_ptr; yy_size_t number_to_move, i; int ret_val; if ( yyg->yy_c_buf_p > &YY_CURRENT_BUFFER_LVALUE->yy_ch_buf[yyg->yy_n_chars + 1] ) YY_FATAL_ERROR( "fatal flex scanner internal error--end of buffer missed" ); if ( YY_CURRENT_BUFFER_LVALUE->yy_fill_buffer == 0 ) { /* Don't try to fill the buffer, so this is an EOF. */ if ( yyg->yy_c_buf_p - yyg->yytext_ptr - YY_MORE_ADJ == 1 ) { /* We matched a single character, the EOB, so * treat this as a final EOF. */ return EOB_ACT_END_OF_FILE; } else { /* We matched some text prior to the EOB, first * process it. */ return EOB_ACT_LAST_MATCH; } } /* Try to read more data. */ /* First move last chars to start of buffer. */ number_to_move = (yy_size_t) (yyg->yy_c_buf_p - yyg->yytext_ptr - 1); for ( i = 0; i < number_to_move; ++i ) *(dest++) = *(source++); if ( YY_CURRENT_BUFFER_LVALUE->yy_buffer_status == YY_BUFFER_EOF_PENDING ) /* don't do the read, it's not guaranteed to return an EOF, * just force an EOF */ YY_CURRENT_BUFFER_LVALUE->yy_n_chars = yyg->yy_n_chars = 0; else { yy_size_t num_to_read = YY_CURRENT_BUFFER_LVALUE->yy_buf_size - number_to_move - 1; while ( num_to_read <= 0 ) { /* Not enough room in the buffer - grow it. */ /* just a shorter name for the current buffer */ YY_BUFFER_STATE b = YY_CURRENT_BUFFER_LVALUE; int yy_c_buf_p_offset = (int) (yyg->yy_c_buf_p - b->yy_ch_buf); if ( b->yy_is_our_buffer ) { yy_size_t new_size = b->yy_buf_size * 2; if ( new_size <= 0 ) b->yy_buf_size += b->yy_buf_size / 8; else b->yy_buf_size *= 2; b->yy_ch_buf = (char *) /* Include room in for 2 EOB chars. */ yyrealloc( (void *) b->yy_ch_buf, (yy_size_t) (b->yy_buf_size + 2) , yyscanner ); } else /* Can't grow it, we don't own it. */ b->yy_ch_buf = NULL; if ( ! b->yy_ch_buf ) YY_FATAL_ERROR( "fatal error - scanner input buffer overflow" ); yyg->yy_c_buf_p = &b->yy_ch_buf[yy_c_buf_p_offset]; num_to_read = YY_CURRENT_BUFFER_LVALUE->yy_buf_size - number_to_move - 1; } if ( num_to_read > YY_READ_BUF_SIZE ) num_to_read = YY_READ_BUF_SIZE; /* Read in more data. */ YY_INPUT( (&YY_CURRENT_BUFFER_LVALUE->yy_ch_buf[number_to_move]), yyg->yy_n_chars, num_to_read ); YY_CURRENT_BUFFER_LVALUE->yy_n_chars = yyg->yy_n_chars; } if ( yyg->yy_n_chars == 0 ) { if ( number_to_move == YY_MORE_ADJ ) { ret_val = EOB_ACT_END_OF_FILE; yyrestart( yyin , yyscanner); } else { ret_val = EOB_ACT_LAST_MATCH; YY_CURRENT_BUFFER_LVALUE->yy_buffer_status = YY_BUFFER_EOF_PENDING; } } else ret_val = EOB_ACT_CONTINUE_SCAN; if ((yyg->yy_n_chars + number_to_move) > YY_CURRENT_BUFFER_LVALUE->yy_buf_size) { /* Extend the array by 50%, plus the number we really need. */ yy_size_t new_size = yyg->yy_n_chars + number_to_move + (yyg->yy_n_chars >> 1); YY_CURRENT_BUFFER_LVALUE->yy_ch_buf = (char *) yyrealloc( (void *) YY_CURRENT_BUFFER_LVALUE->yy_ch_buf, (yy_size_t) new_size , yyscanner ); if ( ! YY_CURRENT_BUFFER_LVALUE->yy_ch_buf ) YY_FATAL_ERROR( "out of dynamic memory in yy_get_next_buffer()" ); /* "- 2" to take care of EOB's */ YY_CURRENT_BUFFER_LVALUE->yy_buf_size = (yy_size_t) (new_size - 2); } yyg->yy_n_chars += number_to_move; YY_CURRENT_BUFFER_LVALUE->yy_ch_buf[yyg->yy_n_chars] = YY_END_OF_BUFFER_CHAR; YY_CURRENT_BUFFER_LVALUE->yy_ch_buf[yyg->yy_n_chars + 1] = YY_END_OF_BUFFER_CHAR; yyg->yytext_ptr = &YY_CURRENT_BUFFER_LVALUE->yy_ch_buf[0]; return ret_val; } /* yy_get_previous_state - get the state just before the EOB char was reached */ static yy_state_type yy_get_previous_state (yyscan_t yyscanner) { yy_state_type yy_current_state; char *yy_cp; struct yyguts_t * yyg = (struct yyguts_t*)yyscanner; yy_current_state = yyg->yy_start; for ( yy_cp = yyg->yytext_ptr + YY_MORE_ADJ; yy_cp < yyg->yy_c_buf_p; ++yy_cp ) { YY_CHAR yy_c = (*yy_cp ? yy_ec[YY_SC_TO_UI(*yy_cp)] : 1); if ( yy_accept[yy_current_state] ) { yyg->yy_last_accepting_state = yy_current_state; yyg->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 >= 174 ) yy_c = yy_meta[yy_c]; } yy_current_state = yy_nxt[yy_base[yy_current_state] + yy_c]; } return yy_current_state; } /* yy_try_NUL_trans - try to make a transition on the NUL character * * synopsis * next_state = yy_try_NUL_trans( current_state ); */ static yy_state_type yy_try_NUL_trans (yy_state_type yy_current_state , yyscan_t yyscanner) { int yy_is_jam; struct yyguts_t * yyg = (struct yyguts_t*)yyscanner; /* This var may be unused depending upon options. */ char *yy_cp = yyg->yy_c_buf_p; YY_CHAR yy_c = 1; if ( yy_accept[yy_current_state] ) { yyg->yy_last_accepting_state = yy_current_state; yyg->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 >= 174 ) yy_c = yy_meta[yy_c]; } yy_current_state = yy_nxt[yy_base[yy_current_state] + yy_c]; yy_is_jam = (yy_current_state == 173); (void)yyg; return yy_is_jam ? 0 : yy_current_state; } #ifndef YY_NO_UNPUT static void yyunput (int c, char * yy_bp , yyscan_t yyscanner) { char *yy_cp; struct yyguts_t * yyg = (struct yyguts_t*)yyscanner; yy_cp = yyg->yy_c_buf_p; /* undo effects of setting up yytext */ *yy_cp = yyg->yy_hold_char; if ( yy_cp < YY_CURRENT_BUFFER_LVALUE->yy_ch_buf + 2 ) { /* need to shift things up to make room */ /* +2 for EOB chars. */ yy_size_t number_to_move = yyg->yy_n_chars + 2; char *dest = &YY_CURRENT_BUFFER_LVALUE->yy_ch_buf[ YY_CURRENT_BUFFER_LVALUE->yy_buf_size + 2]; char *source = &YY_CURRENT_BUFFER_LVALUE->yy_ch_buf[number_to_move]; while ( source > YY_CURRENT_BUFFER_LVALUE->yy_ch_buf ) *--dest = *--source; yy_cp += (int) (dest - source); yy_bp += (int) (dest - source); YY_CURRENT_BUFFER_LVALUE->yy_n_chars = yyg->yy_n_chars = YY_CURRENT_BUFFER_LVALUE->yy_buf_size; if ( yy_cp < YY_CURRENT_BUFFER_LVALUE->yy_ch_buf + 2 ) YY_FATAL_ERROR( "flex scanner push-back overflow" ); } *--yy_cp = (char) c; yyg->yytext_ptr = yy_bp; yyg->yy_hold_char = *yy_cp; yyg->yy_c_buf_p = yy_cp; } #endif #ifndef YY_NO_INPUT #ifdef __cplusplus static int yyinput (yyscan_t yyscanner) #else static int input (yyscan_t yyscanner) #endif { int c; struct yyguts_t * yyg = (struct yyguts_t*)yyscanner; *yyg->yy_c_buf_p = yyg->yy_hold_char; if ( *yyg->yy_c_buf_p == YY_END_OF_BUFFER_CHAR ) { /* yy_c_buf_p now points to the character we want to return. * If this occurs *before* the EOB characters, then it's a * valid NUL; if not, then we've hit the end of the buffer. */ if ( yyg->yy_c_buf_p < &YY_CURRENT_BUFFER_LVALUE->yy_ch_buf[yyg->yy_n_chars] ) /* This was really a NUL. */ *yyg->yy_c_buf_p = '\0'; else { /* need more input */ yy_size_t offset = (int) (yyg->yy_c_buf_p - yyg->yytext_ptr); ++yyg->yy_c_buf_p; switch ( yy_get_next_buffer( yyscanner ) ) { case EOB_ACT_LAST_MATCH: /* This happens because yy_g_n_b() * sees that we've accumulated a * token and flags that we need to * try matching the token before * proceeding. But for input(), * there's no matching to consider. * So convert the EOB_ACT_LAST_MATCH * to EOB_ACT_END_OF_FILE. */ /* Reset buffer status. */ yyrestart( yyin , yyscanner); /*FALLTHROUGH*/ case EOB_ACT_END_OF_FILE: { if ( yywrap( yyscanner ) ) return 0; if ( ! yyg->yy_did_buffer_switch_on_eof ) YY_NEW_FILE; #ifdef __cplusplus return yyinput(yyscanner); #else return input(yyscanner); #endif } case EOB_ACT_CONTINUE_SCAN: yyg->yy_c_buf_p = yyg->yytext_ptr + offset; break; } } } c = *(unsigned char *) yyg->yy_c_buf_p; /* cast for 8-bit char's */ *yyg->yy_c_buf_p = '\0'; /* preserve yytext */ yyg->yy_hold_char = *++yyg->yy_c_buf_p; return c; } #endif /* ifndef YY_NO_INPUT */ /** Immediately switch to a different input stream. * @param input_file A readable stream. * @param yyscanner The scanner object. * @note This function does not reset the start condition to @c INITIAL . */ void yyrestart (FILE * input_file , yyscan_t yyscanner) { struct yyguts_t * yyg = (struct yyguts_t*)yyscanner; if ( ! YY_CURRENT_BUFFER ){ yyensure_buffer_stack (yyscanner); YY_CURRENT_BUFFER_LVALUE = yy_create_buffer( yyin, YY_BUF_SIZE , yyscanner); } yy_init_buffer( YY_CURRENT_BUFFER, input_file , yyscanner); yy_load_buffer_state( yyscanner ); } /** Switch to a different input buffer. * @param new_buffer The new input buffer. * @param yyscanner The scanner object. */ void yy_switch_to_buffer (YY_BUFFER_STATE new_buffer , yyscan_t yyscanner) { struct yyguts_t * yyg = (struct yyguts_t*)yyscanner; /* TODO. We should be able to replace this entire function body * with * yypop_buffer_state(); * yypush_buffer_state(new_buffer); */ yyensure_buffer_stack (yyscanner); if ( YY_CURRENT_BUFFER == new_buffer ) return; if ( YY_CURRENT_BUFFER ) { /* Flush out information for old buffer. */ *yyg->yy_c_buf_p = yyg->yy_hold_char; YY_CURRENT_BUFFER_LVALUE->yy_buf_pos = yyg->yy_c_buf_p; YY_CURRENT_BUFFER_LVALUE->yy_n_chars = yyg->yy_n_chars; } YY_CURRENT_BUFFER_LVALUE = new_buffer; yy_load_buffer_state( yyscanner ); /* We don't actually know whether we did this switch during * EOF (yywrap()) processing, but the only time this flag * is looked at is after yywrap() is called, so it's safe * to go ahead and always set it. */ yyg->yy_did_buffer_switch_on_eof = 1; } static void yy_load_buffer_state (yyscan_t yyscanner) { struct yyguts_t * yyg = (struct yyguts_t*)yyscanner; yyg->yy_n_chars = YY_CURRENT_BUFFER_LVALUE->yy_n_chars; yyg->yytext_ptr = yyg->yy_c_buf_p = YY_CURRENT_BUFFER_LVALUE->yy_buf_pos; yyin = YY_CURRENT_BUFFER_LVALUE->yy_input_file; yyg->yy_hold_char = *yyg->yy_c_buf_p; } /** Allocate and initialize an input buffer state. * @param file A readable stream. * @param size The character buffer size in bytes. When in doubt, use @c YY_BUF_SIZE. * @param yyscanner The scanner object. * @return the allocated buffer state. */ YY_BUFFER_STATE yy_create_buffer (FILE * file, yy_size_t size , yyscan_t yyscanner) { YY_BUFFER_STATE b; b = (YY_BUFFER_STATE) yyalloc( sizeof( struct yy_buffer_state ) , yyscanner ); if ( ! b ) YY_FATAL_ERROR( "out of dynamic memory in yy_create_buffer()" ); b->yy_buf_size = size; /* yy_ch_buf has to be 2 characters longer than the size given because * we need to put in 2 end-of-buffer characters. */ b->yy_ch_buf = (char *) yyalloc( (yy_size_t) (b->yy_buf_size + 2) , yyscanner ); if ( ! b->yy_ch_buf ) YY_FATAL_ERROR( "out of dynamic memory in yy_create_buffer()" ); b->yy_is_our_buffer = 1; yy_init_buffer( b, file , yyscanner); return b; } /** Destroy the buffer. * @param b a buffer created with yy_create_buffer() * @param yyscanner The scanner object. */ void yy_delete_buffer (YY_BUFFER_STATE b , yyscan_t yyscanner) { struct yyguts_t * yyg = (struct yyguts_t*)yyscanner; if ( ! b ) return; if ( b == YY_CURRENT_BUFFER ) /* Not sure if we should pop here. */ YY_CURRENT_BUFFER_LVALUE = (YY_BUFFER_STATE) 0; if ( b->yy_is_our_buffer ) yyfree( (void *) b->yy_ch_buf , yyscanner ); yyfree( (void *) b , yyscanner ); } /* Initializes or reinitializes a buffer. * This function is sometimes called more than once on the same buffer, * such as during a yyrestart() or at EOF. */ static void yy_init_buffer (YY_BUFFER_STATE b, FILE * file , yyscan_t yyscanner) { int oerrno = errno; struct yyguts_t * yyg = (struct yyguts_t*)yyscanner; yy_flush_buffer( b , yyscanner); b->yy_input_file = file; b->yy_fill_buffer = 1; /* If b is the current buffer, then yy_init_buffer was _probably_ * called from yyrestart() or through yy_get_next_buffer. * In that case, we don't want to reset the lineno or column. */ if (b != YY_CURRENT_BUFFER){ b->yy_bs_lineno = 1; b->yy_bs_column = 0; } b->yy_is_interactive = 0; errno = oerrno; } /** Discard all buffered characters. On the next scan, YY_INPUT will be called. * @param b the buffer state to be flushed, usually @c YY_CURRENT_BUFFER. * @param yyscanner The scanner object. */ void yy_flush_buffer (YY_BUFFER_STATE b , yyscan_t yyscanner) { struct yyguts_t * yyg = (struct yyguts_t*)yyscanner; if ( ! b ) return; b->yy_n_chars = 0; /* We always need two end-of-buffer characters. The first causes * a transition to the end-of-buffer state. The second causes * a jam in that state. */ b->yy_ch_buf[0] = YY_END_OF_BUFFER_CHAR; b->yy_ch_buf[1] = YY_END_OF_BUFFER_CHAR; b->yy_buf_pos = &b->yy_ch_buf[0]; b->yy_at_bol = 1; b->yy_buffer_status = YY_BUFFER_NEW; if ( b == YY_CURRENT_BUFFER ) yy_load_buffer_state( yyscanner ); } /** Pushes the new state onto the stack. The new state becomes * the current state. This function will allocate the stack * if necessary. * @param new_buffer The new state. * @param yyscanner The scanner object. */ void yypush_buffer_state (YY_BUFFER_STATE new_buffer , yyscan_t yyscanner) { struct yyguts_t * yyg = (struct yyguts_t*)yyscanner; if (new_buffer == NULL) return; yyensure_buffer_stack(yyscanner); /* This block is copied from yy_switch_to_buffer. */ if ( YY_CURRENT_BUFFER ) { /* Flush out information for old buffer. */ *yyg->yy_c_buf_p = yyg->yy_hold_char; YY_CURRENT_BUFFER_LVALUE->yy_buf_pos = yyg->yy_c_buf_p; YY_CURRENT_BUFFER_LVALUE->yy_n_chars = yyg->yy_n_chars; } /* Only push if top exists. Otherwise, replace top. */ if (YY_CURRENT_BUFFER) yyg->yy_buffer_stack_top++; YY_CURRENT_BUFFER_LVALUE = new_buffer; /* copied from yy_switch_to_buffer. */ yy_load_buffer_state( yyscanner ); yyg->yy_did_buffer_switch_on_eof = 1; } /** Removes and deletes the top of the stack, if present. * The next element becomes the new top. * @param yyscanner The scanner object. */ void yypop_buffer_state (yyscan_t yyscanner) { struct yyguts_t * yyg = (struct yyguts_t*)yyscanner; if (!YY_CURRENT_BUFFER) return; yy_delete_buffer(YY_CURRENT_BUFFER , yyscanner); YY_CURRENT_BUFFER_LVALUE = NULL; if (yyg->yy_buffer_stack_top > 0) --yyg->yy_buffer_stack_top; if (YY_CURRENT_BUFFER) { yy_load_buffer_state( yyscanner ); yyg->yy_did_buffer_switch_on_eof = 1; } } /* Allocates the stack if it does not exist. * Guarantees space for at least one push. */ static void yyensure_buffer_stack (yyscan_t yyscanner) { yy_size_t num_to_alloc; struct yyguts_t * yyg = (struct yyguts_t*)yyscanner; if (!yyg->yy_buffer_stack) { /* First allocation is just for 2 elements, since we don't know if this * scanner will even need a stack. We use 2 instead of 1 to avoid an * immediate realloc on the next call. */ num_to_alloc = 1; /* After all that talk, this was set to 1 anyways... */ yyg->yy_buffer_stack = (struct yy_buffer_state**)yyalloc (num_to_alloc * sizeof(struct yy_buffer_state*) , yyscanner); if ( ! yyg->yy_buffer_stack ) YY_FATAL_ERROR( "out of dynamic memory in yyensure_buffer_stack()" ); memset(yyg->yy_buffer_stack, 0, num_to_alloc * sizeof(struct yy_buffer_state*)); yyg->yy_buffer_stack_max = num_to_alloc; yyg->yy_buffer_stack_top = 0; return; } if (yyg->yy_buffer_stack_top >= (yyg->yy_buffer_stack_max) - 1){ /* Increase the buffer to prepare for a possible push. */ yy_size_t grow_size = 8 /* arbitrary grow size */; num_to_alloc = yyg->yy_buffer_stack_max + grow_size; yyg->yy_buffer_stack = (struct yy_buffer_state**)yyrealloc (yyg->yy_buffer_stack, num_to_alloc * sizeof(struct yy_buffer_state*) , yyscanner); if ( ! yyg->yy_buffer_stack ) YY_FATAL_ERROR( "out of dynamic memory in yyensure_buffer_stack()" ); /* zero only the new slots.*/ memset(yyg->yy_buffer_stack + yyg->yy_buffer_stack_max, 0, grow_size * sizeof(struct yy_buffer_state*)); yyg->yy_buffer_stack_max = num_to_alloc; } } /** Setup the input buffer state to scan directly from a user-specified character buffer. * @param base the character buffer * @param size the size in bytes of the character buffer * @param yyscanner The scanner object. * @return the newly allocated buffer state object. */ YY_BUFFER_STATE yy_scan_buffer (char * base, yy_size_t size , yyscan_t yyscanner) { YY_BUFFER_STATE b; if ( size < 2 || base[size-2] != YY_END_OF_BUFFER_CHAR || base[size-1] != YY_END_OF_BUFFER_CHAR ) /* They forgot to leave room for the EOB's. */ return NULL; b = (YY_BUFFER_STATE) yyalloc( sizeof( struct yy_buffer_state ) , yyscanner ); if ( ! b ) YY_FATAL_ERROR( "out of dynamic memory in yy_scan_buffer()" ); b->yy_buf_size = (size - 2); /* "- 2" to take care of EOB's */ b->yy_buf_pos = b->yy_ch_buf = base; b->yy_is_our_buffer = 0; b->yy_input_file = NULL; b->yy_n_chars = b->yy_buf_size; b->yy_is_interactive = 0; b->yy_at_bol = 1; b->yy_fill_buffer = 0; b->yy_buffer_status = YY_BUFFER_NEW; yy_switch_to_buffer( b , yyscanner ); return b; } /** Setup the input buffer state to scan a string. The next call to yylex() will * scan from a @e copy of @a str. * @param yystr a NUL-terminated string to scan * @param yyscanner The scanner object. * @return the newly allocated buffer state object. * @note If you want to scan bytes that may contain NUL values, then use * yy_scan_bytes() instead. */ YY_BUFFER_STATE yy_scan_string (const char * yystr , yyscan_t yyscanner) { return yy_scan_bytes( yystr, strlen(yystr) , yyscanner); } /** Setup the input buffer state to scan the given bytes. The next call to yylex() will * scan from a @e copy of @a bytes. * @param yybytes the byte buffer to scan * @param _yybytes_len the number of bytes in the buffer pointed to by @a bytes. * @param yyscanner The scanner object. * @return the newly allocated buffer state object. */ YY_BUFFER_STATE yy_scan_bytes (const char * yybytes, yy_size_t _yybytes_len , yyscan_t yyscanner) { YY_BUFFER_STATE b; char *buf; yy_size_t n; yy_size_t i; /* Get memory for full buffer, including space for trailing EOB's. */ n = (yy_size_t) (_yybytes_len + 2); buf = (char *) yyalloc( n , yyscanner ); if ( ! buf ) YY_FATAL_ERROR( "out of dynamic memory in yy_scan_bytes()" ); for ( i = 0; i < _yybytes_len; ++i ) buf[i] = yybytes[i]; buf[_yybytes_len] = buf[_yybytes_len+1] = YY_END_OF_BUFFER_CHAR; b = yy_scan_buffer( buf, n , yyscanner); if ( ! b ) YY_FATAL_ERROR( "bad buffer in yy_scan_bytes()" ); /* It's okay to grow etc. this buffer, and we should throw it * away when we're done. */ b->yy_is_our_buffer = 1; return b; } static void yy_push_state (int _new_state , yyscan_t yyscanner) { struct yyguts_t * yyg = (struct yyguts_t*)yyscanner; if ( yyg->yy_start_stack_ptr >= yyg->yy_start_stack_depth ) { yy_size_t new_size; yyg->yy_start_stack_depth += YY_START_STACK_INCR; new_size = (yy_size_t) yyg->yy_start_stack_depth * sizeof( int ); if ( ! yyg->yy_start_stack ) yyg->yy_start_stack = (int *) yyalloc( new_size , yyscanner ); else yyg->yy_start_stack = (int *) yyrealloc( (void *) yyg->yy_start_stack, new_size , yyscanner ); if ( ! yyg->yy_start_stack ) YY_FATAL_ERROR( "out of memory expanding start-condition stack" ); } yyg->yy_start_stack[yyg->yy_start_stack_ptr++] = YY_START; BEGIN(_new_state); } static void yy_pop_state (yyscan_t yyscanner) { struct yyguts_t * yyg = (struct yyguts_t*)yyscanner; if ( --yyg->yy_start_stack_ptr < 0 ) YY_FATAL_ERROR( "start-condition stack underflow" ); BEGIN(yyg->yy_start_stack[yyg->yy_start_stack_ptr]); } static int yy_top_state (yyscan_t yyscanner) { struct yyguts_t * yyg = (struct yyguts_t*)yyscanner; return yyg->yy_start_stack[yyg->yy_start_stack_ptr - 1]; } #ifndef YY_EXIT_FAILURE #define YY_EXIT_FAILURE 2 #endif static void yynoreturn yy_fatal_error (const char* msg , yyscan_t yyscanner) { struct yyguts_t * yyg = (struct yyguts_t*)yyscanner; (void)yyg; fprintf( stderr, "%s\n", msg ); exit( YY_EXIT_FAILURE ); } /* Redefine yyless() so it works in section 3 code. */ #undef yyless #define yyless(n) \ do \ { \ /* Undo effects of setting up yytext. */ \ int yyless_macro_arg = (n); \ YY_LESS_LINENO(yyless_macro_arg);\ yytext[yyleng] = yyg->yy_hold_char; \ yyg->yy_c_buf_p = yytext + yyless_macro_arg; \ yyg->yy_hold_char = *yyg->yy_c_buf_p; \ *yyg->yy_c_buf_p = '\0'; \ yyleng = yyless_macro_arg; \ } \ while ( 0 ) /* Accessor methods (get/set functions) to struct members. */ /** Get the user-defined data for this scanner. * @param yyscanner The scanner object. */ YY_EXTRA_TYPE yyget_extra (yyscan_t yyscanner) { struct yyguts_t * yyg = (struct yyguts_t*)yyscanner; return yyextra; } /** Get the current line number. * @param yyscanner The scanner object. */ int yyget_lineno (yyscan_t yyscanner) { struct yyguts_t * yyg = (struct yyguts_t*)yyscanner; if (! YY_CURRENT_BUFFER) return 0; return yylineno; } /** Get the current column number. * @param yyscanner The scanner object. */ int yyget_column (yyscan_t yyscanner) { struct yyguts_t * yyg = (struct yyguts_t*)yyscanner; if (! YY_CURRENT_BUFFER) return 0; return yycolumn; } /** Get the input stream. * @param yyscanner The scanner object. */ FILE *yyget_in (yyscan_t yyscanner) { struct yyguts_t * yyg = (struct yyguts_t*)yyscanner; return yyin; } /** Get the output stream. * @param yyscanner The scanner object. */ FILE *yyget_out (yyscan_t yyscanner) { struct yyguts_t * yyg = (struct yyguts_t*)yyscanner; return yyout; } /** Get the length of the current token. * @param yyscanner The scanner object. */ yy_size_t yyget_leng (yyscan_t yyscanner) { struct yyguts_t * yyg = (struct yyguts_t*)yyscanner; return yyleng; } /** Get the current token. * @param yyscanner The scanner object. */ char *yyget_text (yyscan_t yyscanner) { struct yyguts_t * yyg = (struct yyguts_t*)yyscanner; return yytext; } /** Set the user-defined data. This data is never touched by the scanner. * @param user_defined The data to be associated with this scanner. * @param yyscanner The scanner object. */ void yyset_extra (YY_EXTRA_TYPE user_defined , yyscan_t yyscanner) { struct yyguts_t * yyg = (struct yyguts_t*)yyscanner; yyextra = user_defined ; } /** Set the current line number. * @param _line_number line number * @param yyscanner The scanner object. */ void yyset_lineno (int _line_number , yyscan_t yyscanner) { struct yyguts_t * yyg = (struct yyguts_t*)yyscanner; /* lineno is only valid if an input buffer exists. */ if (! YY_CURRENT_BUFFER ) YY_FATAL_ERROR( "yyset_lineno called with no buffer" ); yylineno = _line_number; } /** Set the current column. * @param _column_no column number * @param yyscanner The scanner object. */ void yyset_column (int _column_no , yyscan_t yyscanner) { struct yyguts_t * yyg = (struct yyguts_t*)yyscanner; /* column is only valid if an input buffer exists. */ if (! YY_CURRENT_BUFFER ) YY_FATAL_ERROR( "yyset_column called with no buffer" ); yycolumn = _column_no; } /** Set the input stream. This does not discard the current * input buffer. * @param _in_str A readable stream. * @param yyscanner The scanner object. * @see yy_switch_to_buffer */ void yyset_in (FILE * _in_str , yyscan_t yyscanner) { struct yyguts_t * yyg = (struct yyguts_t*)yyscanner; yyin = _in_str ; } void yyset_out (FILE * _out_str , yyscan_t yyscanner) { struct yyguts_t * yyg = (struct yyguts_t*)yyscanner; yyout = _out_str ; } int yyget_debug (yyscan_t yyscanner) { struct yyguts_t * yyg = (struct yyguts_t*)yyscanner; return yy_flex_debug; } void yyset_debug (int _bdebug , yyscan_t yyscanner) { struct yyguts_t * yyg = (struct yyguts_t*)yyscanner; yy_flex_debug = _bdebug ; } /* Accessor methods for yylval and yylloc */ YYSTYPE * yyget_lval (yyscan_t yyscanner) { struct yyguts_t * yyg = (struct yyguts_t*)yyscanner; return yylval; } void yyset_lval (YYSTYPE * yylval_param , yyscan_t yyscanner) { struct yyguts_t * yyg = (struct yyguts_t*)yyscanner; yylval = yylval_param; } YYLTYPE *yyget_lloc (yyscan_t yyscanner) { struct yyguts_t * yyg = (struct yyguts_t*)yyscanner; return yylloc; } void yyset_lloc (YYLTYPE * yylloc_param , yyscan_t yyscanner) { struct yyguts_t * yyg = (struct yyguts_t*)yyscanner; yylloc = yylloc_param; } /* User-visible API */ /* yylex_init is special because it creates the scanner itself, so it is * the ONLY reentrant function that doesn't take the scanner as the last argument. * That's why we explicitly handle the declaration, instead of using our macros. */ int yylex_init(yyscan_t* ptr_yy_globals) { if (ptr_yy_globals == NULL){ errno = EINVAL; return 1; } *ptr_yy_globals = (yyscan_t) yyalloc ( sizeof( struct yyguts_t ), NULL ); if (*ptr_yy_globals == NULL){ errno = ENOMEM; return 1; } /* By setting to 0xAA, we expose bugs in yy_init_globals. Leave at 0x00 for releases. */ memset(*ptr_yy_globals,0x00,sizeof(struct yyguts_t)); return yy_init_globals ( *ptr_yy_globals ); } /* yylex_init_extra has the same functionality as yylex_init, but follows the * convention of taking the scanner as the last argument. Note however, that * this is a *pointer* to a scanner, as it will be allocated by this call (and * is the reason, too, why this function also must handle its own declaration). * The user defined value in the first argument will be available to yyalloc in * the yyextra field. */ int yylex_init_extra( YY_EXTRA_TYPE yy_user_defined, yyscan_t* ptr_yy_globals ) { struct yyguts_t dummy_yyguts; yyset_extra (yy_user_defined, &dummy_yyguts); if (ptr_yy_globals == NULL){ errno = EINVAL; return 1; } *ptr_yy_globals = (yyscan_t) yyalloc ( sizeof( struct yyguts_t ), &dummy_yyguts ); if (*ptr_yy_globals == NULL){ errno = ENOMEM; return 1; } /* By setting to 0xAA, we expose bugs in yy_init_globals. Leave at 0x00 for releases. */ memset(*ptr_yy_globals,0x00,sizeof(struct yyguts_t)); yyset_extra (yy_user_defined, *ptr_yy_globals); return yy_init_globals ( *ptr_yy_globals ); } static int yy_init_globals (yyscan_t yyscanner) { struct yyguts_t * yyg = (struct yyguts_t*)yyscanner; /* Initialization is the same as for the non-reentrant scanner. * This function is called from yylex_destroy(), so don't allocate here. */ yyg->yy_buffer_stack = NULL; yyg->yy_buffer_stack_top = 0; yyg->yy_buffer_stack_max = 0; yyg->yy_c_buf_p = NULL; yyg->yy_init = 0; yyg->yy_start = 0; yyg->yy_start_stack_ptr = 0; yyg->yy_start_stack_depth = 0; yyg->yy_start_stack = NULL; /* Defined in main.c */ #ifdef YY_STDINIT yyin = stdin; yyout = stdout; #else yyin = NULL; yyout = NULL; #endif /* For future reference: Set errno on error, since we are called by * yylex_init() */ return 0; } /* yylex_destroy is for both reentrant and non-reentrant scanners. */ int yylex_destroy (yyscan_t yyscanner) { struct yyguts_t * yyg = (struct yyguts_t*)yyscanner; /* Pop the buffer stack, destroying each element. */ while(YY_CURRENT_BUFFER){ yy_delete_buffer( YY_CURRENT_BUFFER , yyscanner ); YY_CURRENT_BUFFER_LVALUE = NULL; yypop_buffer_state(yyscanner); } /* Destroy the stack itself. */ yyfree(yyg->yy_buffer_stack , yyscanner); yyg->yy_buffer_stack = NULL; /* Destroy the start condition stack. */ yyfree( yyg->yy_start_stack , yyscanner ); yyg->yy_start_stack = NULL; /* Reset the globals. This is important in a non-reentrant scanner so the next time * yylex() is called, initialization will occur. */ yy_init_globals( yyscanner); /* Destroy the main struct (reentrant only). */ yyfree ( yyscanner , yyscanner ); yyscanner = NULL; return 0; } /* * Internal utility routines. */ #ifndef yytext_ptr static void yy_flex_strncpy (char* s1, const char * s2, int n , yyscan_t yyscanner) { struct yyguts_t * yyg = (struct yyguts_t*)yyscanner; (void)yyg; int i; for ( i = 0; i < n; ++i ) s1[i] = s2[i]; } #endif #ifdef YY_NEED_STRLEN static int yy_flex_strlen (const char * s , yyscan_t yyscanner) { int n; for ( n = 0; s[n]; ++n ) ; return n; } #endif void *yyalloc (yy_size_t size , yyscan_t yyscanner) { struct yyguts_t * yyg = (struct yyguts_t*)yyscanner; (void)yyg; return malloc(size); } void *yyrealloc (void * ptr, yy_size_t size , yyscan_t yyscanner) { struct yyguts_t * yyg = (struct yyguts_t*)yyscanner; (void)yyg; /* The cast to (char *) in the following accommodates both * implementations that use char* generic pointers, and those * that use void* generic pointers. It works with the latter * because both ANSI C and C++ allow castless assignment from * any pointer type to void*, and deal with argument conversions * as though doing an assignment. */ return realloc(ptr, size); } void yyfree (void * ptr , yyscan_t yyscanner) { struct yyguts_t * yyg = (struct yyguts_t*)yyscanner; (void)yyg; free( (char *) ptr ); /* see yyrealloc() for (char *) cast */ } #define YYTABLES_NAME "yytables" #line 606 "../src/compiler/glsl/glcpp/glcpp-lex.l" void glcpp_lex_set_source_string(glcpp_parser_t *parser, const char *shader) { yy_scan_string(shader, parser->scanner); }