1 /* preproc.c macro preprocessor for the Netwide Assembler
3 * The Netwide Assembler is copyright (C) 1996 Simon Tatham and
4 * Julian Hall. All rights reserved. The software is
5 * redistributable under the license given in the file "LICENSE"
6 * distributed in the NASM archive.
8 * initial version 18/iii/97 by Simon Tatham
11 /* Typical flow of text through preproc
13 * pp_getline gets tokenized lines, either
15 * from a macro expansion
19 * read_line gets raw text from stdmacpos, or predef, or current input file
20 * tokenize converts to tokens
23 * expand_mmac_params is used to expand %1 etc., unless a macro is being
24 * defined or a false conditional is being processed
25 * (%0, %1, %+1, %-1, %%foo
27 * do_directive checks for directives
29 * expand_smacro is used to expand single line macros
31 * expand_mmacro is used to expand multi-line macros
33 * detoken is used to convert the line back to text
56 typedef struct SMacro SMacro
;
57 typedef struct MMacro MMacro
;
58 typedef struct Context Context
;
59 typedef struct Token Token
;
60 typedef struct Blocks Blocks
;
61 typedef struct Line Line
;
62 typedef struct Include Include
;
63 typedef struct Cond Cond
;
64 typedef struct IncPath IncPath
;
67 * Note on the storage of both SMacro and MMacros: the hash table
68 * indexes them case-insensitively, and we then have to go through a
69 * linked list of potential case aliases (and, for MMacros, parameter
70 * ranges); this is to preserve the matching semantics of the earlier
71 * code. If the number of case aliases for a specific macro is a
72 * performance issue, you may want to reconsider your coding style.
76 * Store the definition of a single-line macro.
88 * Store the definition of a multi-line macro. This is also used to
89 * store the interiors of `%rep...%endrep' blocks, which are
90 * effectively self-re-invoking multi-line macros which simply
91 * don't have a name or bother to appear in the hash tables. %rep
92 * blocks are signified by having a NULL `name' field.
94 * In a MMacro describing a `%rep' block, the `in_progress' field
95 * isn't merely boolean, but gives the number of repeats left to
98 * The `next' field is used for storing MMacros in hash tables; the
99 * `next_active' field is for stacking them on istk entries.
101 * When a MMacro is being expanded, `params', `iline', `nparam',
102 * `paramlen', `rotate' and `unique' are local to the invocation.
107 int nparam_min
, nparam_max
;
109 bool plus
; /* is the last parameter greedy? */
110 bool nolist
; /* is this macro listing-inhibited? */
112 Token
*dlist
; /* All defaults as one list */
113 Token
**defaults
; /* Parameter default pointers */
114 int ndefs
; /* number of default parameters */
118 MMacro
*rep_nest
; /* used for nesting %rep */
119 Token
**params
; /* actual parameters */
120 Token
*iline
; /* invocation line */
121 unsigned int nparam
, rotate
;
124 int lineno
; /* Current line number on expansion */
128 * The context stack is composed of a linked list of these.
133 struct hash_table localmac
;
138 * This is the internal form which we break input lines up into.
139 * Typically stored in linked lists.
141 * Note that `type' serves a double meaning: TOK_SMAC_PARAM is not
142 * necessarily used as-is, but is intended to denote the number of
143 * the substituted parameter. So in the definition
145 * %define a(x,y) ( (x) & ~(y) )
147 * the token representing `x' will have its type changed to
148 * TOK_SMAC_PARAM, but the one representing `y' will be
151 * TOK_INTERNAL_STRING is a dirty hack: it's a single string token
152 * which doesn't need quotes around it. Used in the pre-include
153 * mechanism as an alternative to trying to find a sensible type of
154 * quote to use on the filename we were passed.
157 TOK_NONE
= 0, TOK_WHITESPACE
, TOK_COMMENT
, TOK_ID
,
158 TOK_PREPROC_ID
, TOK_STRING
,
159 TOK_NUMBER
, TOK_FLOAT
, TOK_SMAC_END
, TOK_OTHER
,
161 TOK_PREPROC_Q
, TOK_PREPROC_QQ
,
162 TOK_INDIRECT
, /* %[...] */
163 TOK_SMAC_PARAM
, /* MUST BE LAST IN THE LIST!!! */
164 TOK_MAX
= INT_MAX
/* Keep compiler from reducing the range */
171 SMacro
*mac
; /* associated macro for TOK_SMAC_END */
172 size_t len
; /* scratch length field */
173 } a
; /* Auxiliary data */
174 enum pp_token_type type
;
178 * Multi-line macro definitions are stored as a linked list of
179 * these, which is essentially a container to allow several linked
182 * Note that in this module, linked lists are treated as stacks
183 * wherever possible. For this reason, Lines are _pushed_ on to the
184 * `expansion' field in MMacro structures, so that the linked list,
185 * if walked, would give the macro lines in reverse order; this
186 * means that we can walk the list when expanding a macro, and thus
187 * push the lines on to the `expansion' field in _istk_ in reverse
188 * order (so that when popped back off they are in the right
189 * order). It may seem cockeyed, and it relies on my design having
190 * an even number of steps in, but it works...
192 * Some of these structures, rather than being actual lines, are
193 * markers delimiting the end of the expansion of a given macro.
194 * This is for use in the cycle-tracking and %rep-handling code.
195 * Such structures have `finishes' non-NULL, and `first' NULL. All
196 * others have `finishes' NULL, but `first' may still be NULL if
206 * To handle an arbitrary level of file inclusion, we maintain a
207 * stack (ie linked list) of these things.
216 MMacro
*mstk
; /* stack of active macros/reps */
220 * Include search path. This is simply a list of strings which get
221 * prepended, in turn, to the name of an include file, in an
222 * attempt to find the file if it's not in the current directory.
230 * Conditional assembly: we maintain a separate stack of these for
231 * each level of file inclusion. (The only reason we keep the
232 * stacks separate is to ensure that a stray `%endif' in a file
233 * included from within the true branch of a `%if' won't terminate
234 * it and cause confusion: instead, rightly, it'll cause an error.)
242 * These states are for use just after %if or %elif: IF_TRUE
243 * means the condition has evaluated to truth so we are
244 * currently emitting, whereas IF_FALSE means we are not
245 * currently emitting but will start doing so if a %else comes
246 * up. In these states, all directives are admissible: %elif,
247 * %else and %endif. (And of course %if.)
249 COND_IF_TRUE
, COND_IF_FALSE
,
251 * These states come up after a %else: ELSE_TRUE means we're
252 * emitting, and ELSE_FALSE means we're not. In ELSE_* states,
253 * any %elif or %else will cause an error.
255 COND_ELSE_TRUE
, COND_ELSE_FALSE
,
257 * These states mean that we're not emitting now, and also that
258 * nothing until %endif will be emitted at all. COND_DONE is
259 * used when we've had our moment of emission
260 * and have now started seeing %elifs. COND_NEVER is used when
261 * the condition construct in question is contained within a
262 * non-emitting branch of a larger condition construct,
263 * or if there is an error.
265 COND_DONE
, COND_NEVER
267 #define emitting(x) ( (x) == COND_IF_TRUE || (x) == COND_ELSE_TRUE )
270 * These defines are used as the possible return values for do_directive
272 #define NO_DIRECTIVE_FOUND 0
273 #define DIRECTIVE_FOUND 1
276 * Condition codes. Note that we use c_ prefix not C_ because C_ is
277 * used in nasm.h for the "real" condition codes. At _this_ level,
278 * we treat CXZ and ECXZ as condition codes, albeit non-invertible
279 * ones, so we need a different enum...
281 static const char * const conditions
[] = {
282 "a", "ae", "b", "be", "c", "cxz", "e", "ecxz", "g", "ge", "l", "le",
283 "na", "nae", "nb", "nbe", "nc", "ne", "ng", "nge", "nl", "nle", "no",
284 "np", "ns", "nz", "o", "p", "pe", "po", "rcxz", "s", "z"
287 c_A
, c_AE
, c_B
, c_BE
, c_C
, c_CXZ
, c_E
, c_ECXZ
, c_G
, c_GE
, c_L
, c_LE
,
288 c_NA
, c_NAE
, c_NB
, c_NBE
, c_NC
, c_NE
, c_NG
, c_NGE
, c_NL
, c_NLE
, c_NO
,
289 c_NP
, c_NS
, c_NZ
, c_O
, c_P
, c_PE
, c_PO
, c_RCXZ
, c_S
, c_Z
,
292 static const enum pp_conds inverse_ccs
[] = {
293 c_NA
, c_NAE
, c_NB
, c_NBE
, c_NC
, -1, c_NE
, -1, c_NG
, c_NGE
, c_NL
, c_NLE
,
294 c_A
, c_AE
, c_B
, c_BE
, c_C
, c_E
, c_G
, c_GE
, c_L
, c_LE
, c_O
, c_P
, c_S
,
295 c_Z
, c_NO
, c_NP
, c_PO
, c_PE
, -1, c_NS
, c_NZ
301 /* If this is a an IF, ELIF, ELSE or ENDIF keyword */
302 static int is_condition(enum preproc_token arg
)
304 return PP_IS_COND(arg
) || (arg
== PP_ELSE
) || (arg
== PP_ENDIF
);
307 /* For TASM compatibility we need to be able to recognise TASM compatible
308 * conditional compilation directives. Using the NASM pre-processor does
309 * not work, so we look for them specifically from the following list and
310 * then jam in the equivalent NASM directive into the input stream.
314 TM_ARG
, TM_ELIF
, TM_ELSE
, TM_ENDIF
, TM_IF
, TM_IFDEF
, TM_IFDIFI
,
315 TM_IFNDEF
, TM_INCLUDE
, TM_LOCAL
318 static const char * const tasm_directives
[] = {
319 "arg", "elif", "else", "endif", "if", "ifdef", "ifdifi",
320 "ifndef", "include", "local"
323 static int StackSize
= 4;
324 static char *StackPointer
= "ebp";
325 static int ArgOffset
= 8;
326 static int LocalOffset
= 0;
328 static Context
*cstk
;
329 static Include
*istk
;
330 static IncPath
*ipath
= NULL
;
332 static efunc _error
; /* Pointer to client-provided error reporting function */
333 static evalfunc evaluate
;
335 static int pass
; /* HACK: pass 0 = generate dependencies only */
336 static StrList
**dephead
, **deptail
; /* Dependency list */
338 static uint64_t unique
; /* unique identifier numbers */
340 static Line
*predef
= NULL
;
341 static bool do_predef
;
343 static ListGen
*list
;
346 * The current set of multi-line macros we have defined.
348 static struct hash_table mmacros
;
351 * The current set of single-line macros we have defined.
353 static struct hash_table smacros
;
356 * The multi-line macro we are currently defining, or the %rep
357 * block we are currently reading, if any.
359 static MMacro
*defining
;
361 static uint64_t nested_mac_count
;
362 static uint64_t nested_rep_count
;
365 * The number of macro parameters to allocate space for at a time.
367 #define PARAM_DELTA 16
370 * The standard macro set: defined in macros.c in the array nasm_stdmac.
371 * This gives our position in the macro set, when we're processing it.
373 static macros_t
*stdmacpos
;
376 * The extra standard macros that come from the object format, if
379 static macros_t
*extrastdmac
= NULL
;
380 static bool any_extrastdmac
;
383 * Tokens are allocated in blocks to improve speed
385 #define TOKEN_BLOCKSIZE 4096
386 static Token
*freeTokens
= NULL
;
392 static Blocks blocks
= { NULL
, NULL
};
395 * Forward declarations.
397 static Token
*expand_mmac_params(Token
* tline
);
398 static Token
*expand_smacro(Token
* tline
);
399 static Token
*expand_id(Token
* tline
);
400 static Token
*expand_indirect(Token
* tline
, int level
);
401 static Context
*get_ctx(const char *name
, bool all_contexts
);
402 static void make_tok_num(Token
* tok
, int64_t val
);
403 static void error(int severity
, const char *fmt
, ...);
404 static void error_precond(int severity
, const char *fmt
, ...);
405 static void *new_Block(size_t size
);
406 static void delete_Blocks(void);
407 static Token
*new_Token(Token
* next
, enum pp_token_type type
,
408 const char *text
, int txtlen
);
409 static Token
*delete_Token(Token
* t
);
412 * Macros for safe checking of token pointers, avoid *(NULL)
414 #define tok_type_(x,t) ((x) && (x)->type == (t))
415 #define skip_white_(x) if (tok_type_((x), TOK_WHITESPACE)) (x)=(x)->next
416 #define tok_is_(x,v) (tok_type_((x), TOK_OTHER) && !strcmp((x)->text,(v)))
417 #define tok_isnt_(x,v) ((x) && ((x)->type!=TOK_OTHER || strcmp((x)->text,(v))))
419 /* Handle TASM specific directives, which do not contain a % in
420 * front of them. We do it here because I could not find any other
421 * place to do it for the moment, and it is a hack (ideally it would
422 * be nice to be able to use the NASM pre-processor to do it).
424 static char *check_tasm_directive(char *line
)
426 int32_t i
, j
, k
, m
, len
;
427 char *p
= line
, *oldline
, oldchar
;
429 /* Skip whitespace */
430 while (nasm_isspace(*p
) && *p
!= 0)
433 /* Binary search for the directive name */
435 j
= elements(tasm_directives
);
437 while (!nasm_isspace(p
[len
]) && p
[len
] != 0)
444 m
= nasm_stricmp(p
, tasm_directives
[k
]);
446 /* We have found a directive, so jam a % in front of it
447 * so that NASM will then recognise it as one if it's own.
452 line
= nasm_malloc(len
+ 2);
454 if (k
== TM_IFDIFI
) {
455 /* NASM does not recognise IFDIFI, so we convert it to
456 * %ifdef BOGUS. This is not used in NASM comaptible
457 * code, but does need to parse for the TASM macro
460 strcpy(line
+ 1, "ifdef BOGUS");
462 memcpy(line
+ 1, p
, len
+ 1);
477 * The pre-preprocessing stage... This function translates line
478 * number indications as they emerge from GNU cpp (`# lineno "file"
479 * flags') into NASM preprocessor line number indications (`%line
482 static char *prepreproc(char *line
)
485 char *fname
, *oldline
;
487 if (line
[0] == '#' && line
[1] == ' ') {
490 lineno
= atoi(fname
);
491 fname
+= strspn(fname
, "0123456789 ");
494 fnlen
= strcspn(fname
, "\"");
495 line
= nasm_malloc(20 + fnlen
);
496 snprintf(line
, 20 + fnlen
, "%%line %d %.*s", lineno
, fnlen
, fname
);
499 if (tasm_compatible_mode
)
500 return check_tasm_directive(line
);
505 * Free a linked list of tokens.
507 static void free_tlist(Token
* list
)
510 list
= delete_Token(list
);
515 * Free a linked list of lines.
517 static void free_llist(Line
* list
)
523 free_tlist(l
->first
);
531 static void free_mmacro(MMacro
* m
)
534 free_tlist(m
->dlist
);
535 nasm_free(m
->defaults
);
536 free_llist(m
->expansion
);
541 * Free all currently defined macros, and free the hash tables
543 static void free_smacro_table(struct hash_table
*smt
)
547 struct hash_tbl_node
*it
= NULL
;
549 while ((s
= hash_iterate(smt
, &it
, &key
)) != NULL
) {
550 nasm_free((void *)key
);
552 SMacro
*ns
= s
->next
;
554 free_tlist(s
->expansion
);
562 static void free_mmacro_table(struct hash_table
*mmt
)
566 struct hash_tbl_node
*it
= NULL
;
569 while ((m
= hash_iterate(mmt
, &it
, &key
)) != NULL
) {
570 nasm_free((void *)key
);
572 MMacro
*nm
= m
->next
;
580 static void free_macros(void)
582 free_smacro_table(&smacros
);
583 free_mmacro_table(&mmacros
);
587 * Initialize the hash tables
589 static void init_macros(void)
591 hash_init(&smacros
, HASH_LARGE
);
592 hash_init(&mmacros
, HASH_LARGE
);
596 * Pop the context stack.
598 static void ctx_pop(void)
603 free_smacro_table(&c
->localmac
);
609 * Search for a key in the hash index; adding it if necessary
610 * (in which case we initialize the data pointer to NULL.)
613 hash_findi_add(struct hash_table
*hash
, const char *str
)
615 struct hash_insert hi
;
619 r
= hash_findi(hash
, str
, &hi
);
623 strx
= nasm_strdup(str
); /* Use a more efficient allocator here? */
624 return hash_add(&hi
, strx
, NULL
);
628 * Like hash_findi, but returns the data element rather than a pointer
629 * to it. Used only when not adding a new element, hence no third
633 hash_findix(struct hash_table
*hash
, const char *str
)
637 p
= hash_findi(hash
, str
, NULL
);
638 return p
? *p
: NULL
;
641 #define BUF_DELTA 512
643 * Read a line from the top file in istk, handling multiple CR/LFs
644 * at the end of the line read, and handling spurious ^Zs. Will
645 * return lines from the standard macro set if this has not already
648 static char *read_line(void)
650 char *buffer
, *p
, *q
;
651 int bufsize
, continued_count
;
655 const unsigned char *p
= stdmacpos
;
660 len
+= pp_directives_len
[c
-0x80]+1;
664 ret
= nasm_malloc(len
+1);
666 while ((c
= *stdmacpos
++)) {
668 memcpy(q
, pp_directives
[c
-0x80], pp_directives_len
[c
-0x80]);
669 q
+= pp_directives_len
[c
-0x80];
679 /* This was the last of the standard macro chain... */
681 if (any_extrastdmac
) {
682 stdmacpos
= extrastdmac
;
683 any_extrastdmac
= false;
684 } else if (do_predef
) {
686 Token
*head
, **tail
, *t
;
689 * Nasty hack: here we push the contents of
690 * `predef' on to the top-level expansion stack,
691 * since this is the most convenient way to
692 * implement the pre-include and pre-define
695 for (pd
= predef
; pd
; pd
= pd
->next
) {
698 for (t
= pd
->first
; t
; t
= t
->next
) {
699 *tail
= new_Token(NULL
, t
->type
, t
->text
, 0);
700 tail
= &(*tail
)->next
;
702 l
= nasm_malloc(sizeof(Line
));
703 l
->next
= istk
->expansion
;
715 buffer
= nasm_malloc(BUF_DELTA
);
719 q
= fgets(p
, bufsize
- (p
- buffer
), istk
->fp
);
723 if (p
> buffer
&& p
[-1] == '\n') {
724 /* Convert backslash-CRLF line continuation sequences into
725 nothing at all (for DOS and Windows) */
726 if (((p
- 2) > buffer
) && (p
[-3] == '\\') && (p
[-2] == '\r')) {
731 /* Also convert backslash-LF line continuation sequences into
732 nothing at all (for Unix) */
733 else if (((p
- 1) > buffer
) && (p
[-2] == '\\')) {
741 if (p
- buffer
> bufsize
- 10) {
742 int32_t offset
= p
- buffer
;
743 bufsize
+= BUF_DELTA
;
744 buffer
= nasm_realloc(buffer
, bufsize
);
745 p
= buffer
+ offset
; /* prevent stale-pointer problems */
749 if (!q
&& p
== buffer
) {
754 src_set_linnum(src_get_linnum() + istk
->lineinc
+
755 (continued_count
* istk
->lineinc
));
758 * Play safe: remove CRs as well as LFs, if any of either are
759 * present at the end of the line.
761 while (--p
>= buffer
&& (*p
== '\n' || *p
== '\r'))
765 * Handle spurious ^Z, which may be inserted into source files
766 * by some file transfer utilities.
768 buffer
[strcspn(buffer
, "\032")] = '\0';
770 list
->line(LIST_READ
, buffer
);
776 * Tokenize a line of text. This is a very simple process since we
777 * don't need to parse the value out of e.g. numeric tokens: we
778 * simply split one string into many.
780 static Token
*tokenize(char *line
)
783 enum pp_token_type type
;
785 Token
*t
, **tail
= &list
;
791 if (nasm_isdigit(*p
) ||
792 ((*p
== '-' || *p
== '+') && nasm_isdigit(p
[1])) ||
793 ((*p
== '+') && (nasm_isspace(p
[1]) || !p
[1]))) {
797 while (nasm_isdigit(*p
));
798 type
= TOK_PREPROC_ID
;
799 } else if (*p
== '{') {
801 while (*p
&& *p
!= '}') {
808 type
= TOK_PREPROC_ID
;
809 } else if (*p
== '[') {
811 line
+= 2; /* Skip the leading %[ */
813 while (lvl
&& (c
= *p
++)) {
825 p
= nasm_skip_string(p
)+1;
835 } else if (*p
== '?') {
836 type
= TOK_PREPROC_Q
; /* %? */
839 type
= TOK_PREPROC_QQ
; /* %?? */
842 } else if (isidchar(*p
) ||
843 ((*p
== '!' || *p
== '%' || *p
== '$') &&
848 while (isidchar(*p
));
849 type
= TOK_PREPROC_ID
;
855 } else if (isidstart(*p
) || (*p
== '$' && isidstart(p
[1]))) {
858 while (*p
&& isidchar(*p
))
860 } else if (*p
== '\'' || *p
== '"' || *p
== '`') {
865 p
= nasm_skip_string(p
);
870 error(ERR_WARNING
|ERR_PASS1
, "unterminated string");
871 /* Handling unterminated strings by UNV */
874 } else if (isnumstart(*p
)) {
876 bool is_float
= false;
892 if (!is_hex
&& (c
== 'e' || c
== 'E')) {
894 if (*p
== '+' || *p
== '-') {
895 /* e can only be followed by +/- if it is either a
896 prefixed hex number or a floating-point number */
900 } else if (c
== 'H' || c
== 'h' || c
== 'X' || c
== 'x') {
902 } else if (c
== 'P' || c
== 'p') {
904 if (*p
== '+' || *p
== '-')
906 } else if (isnumchar(c
) || c
== '_')
909 /* we need to deal with consequences of the legacy
910 parser, like "1.nolist" being two tokens
911 (TOK_NUMBER, TOK_ID) here; at least give it
912 a shot for now. In the future, we probably need
913 a flex-based scanner with proper pattern matching
914 to do it as well as it can be done. Nothing in
915 the world is going to help the person who wants
916 0x123.p16 interpreted as two tokens, though. */
921 if (nasm_isdigit(*r
) || (is_hex
&& nasm_isxdigit(*r
)) ||
922 (!is_hex
&& (*r
== 'e' || *r
== 'E')) ||
923 (*r
== 'p' || *r
== 'P')) {
927 break; /* Terminate the token */
931 p
--; /* Point to first character beyond number */
933 if (has_e
&& !is_hex
) {
934 /* 1e13 is floating-point, but 1e13h is not */
938 type
= is_float
? TOK_FLOAT
: TOK_NUMBER
;
939 } else if (nasm_isspace(*p
)) {
940 type
= TOK_WHITESPACE
;
942 while (*p
&& nasm_isspace(*p
))
945 * Whitespace just before end-of-line is discarded by
946 * pretending it's a comment; whitespace just before a
947 * comment gets lumped into the comment.
949 if (!*p
|| *p
== ';') {
954 } else if (*p
== ';') {
960 * Anything else is an operator of some kind. We check
961 * for all the double-character operators (>>, <<, //,
962 * %%, <=, >=, ==, !=, <>, &&, ||, ^^), but anything
963 * else is a single-character operator.
966 if ((p
[0] == '>' && p
[1] == '>') ||
967 (p
[0] == '<' && p
[1] == '<') ||
968 (p
[0] == '/' && p
[1] == '/') ||
969 (p
[0] == '<' && p
[1] == '=') ||
970 (p
[0] == '>' && p
[1] == '=') ||
971 (p
[0] == '=' && p
[1] == '=') ||
972 (p
[0] == '!' && p
[1] == '=') ||
973 (p
[0] == '<' && p
[1] == '>') ||
974 (p
[0] == '&' && p
[1] == '&') ||
975 (p
[0] == '|' && p
[1] == '|') ||
976 (p
[0] == '^' && p
[1] == '^')) {
982 /* Handling unterminated string by UNV */
985 *tail = t = new_Token(NULL, TOK_STRING, line, p-line+1);
986 t->text[p-line] = *line;
990 if (type
!= TOK_COMMENT
) {
991 *tail
= t
= new_Token(NULL
, type
, line
, p
- line
);
1000 * this function allocates a new managed block of memory and
1001 * returns a pointer to the block. The managed blocks are
1002 * deleted only all at once by the delete_Blocks function.
1004 static void *new_Block(size_t size
)
1006 Blocks
*b
= &blocks
;
1008 /* first, get to the end of the linked list */
1011 /* now allocate the requested chunk */
1012 b
->chunk
= nasm_malloc(size
);
1014 /* now allocate a new block for the next request */
1015 b
->next
= nasm_malloc(sizeof(Blocks
));
1016 /* and initialize the contents of the new block */
1017 b
->next
->next
= NULL
;
1018 b
->next
->chunk
= NULL
;
1023 * this function deletes all managed blocks of memory
1025 static void delete_Blocks(void)
1027 Blocks
*a
, *b
= &blocks
;
1030 * keep in mind that the first block, pointed to by blocks
1031 * is a static and not dynamically allocated, so we don't
1036 nasm_free(b
->chunk
);
1045 * this function creates a new Token and passes a pointer to it
1046 * back to the caller. It sets the type and text elements, and
1047 * also the a.mac and next elements to NULL.
1049 static Token
*new_Token(Token
* next
, enum pp_token_type type
,
1050 const char *text
, int txtlen
)
1055 if (freeTokens
== NULL
) {
1056 freeTokens
= (Token
*) new_Block(TOKEN_BLOCKSIZE
* sizeof(Token
));
1057 for (i
= 0; i
< TOKEN_BLOCKSIZE
- 1; i
++)
1058 freeTokens
[i
].next
= &freeTokens
[i
+ 1];
1059 freeTokens
[i
].next
= NULL
;
1062 freeTokens
= t
->next
;
1066 if (type
== TOK_WHITESPACE
|| text
== NULL
) {
1070 txtlen
= strlen(text
);
1071 t
->text
= nasm_malloc(txtlen
+1);
1072 memcpy(t
->text
, text
, txtlen
);
1073 t
->text
[txtlen
] = '\0';
1078 static Token
*delete_Token(Token
* t
)
1080 Token
*next
= t
->next
;
1082 t
->next
= freeTokens
;
1088 * Convert a line of tokens back into text.
1089 * If expand_locals is not zero, identifiers of the form "%$*xxx"
1090 * will be transformed into ..@ctxnum.xxx
1092 static char *detoken(Token
* tlist
, bool expand_locals
)
1100 for (t
= tlist
; t
; t
= t
->next
) {
1101 if (t
->type
== TOK_PREPROC_ID
&& t
->text
[1] == '!') {
1102 char *p
= getenv(t
->text
+ 2);
1105 t
->text
= nasm_strdup(p
);
1109 /* Expand local macros here and not during preprocessing */
1110 if (expand_locals
&&
1111 t
->type
== TOK_PREPROC_ID
&& t
->text
&&
1112 t
->text
[0] == '%' && t
->text
[1] == '$') {
1113 Context
*ctx
= get_ctx(t
->text
, false);
1116 char *p
, *q
= t
->text
+ 2;
1118 q
+= strspn(q
, "$");
1119 snprintf(buffer
, sizeof(buffer
), "..@%"PRIu32
".", ctx
->number
);
1120 p
= nasm_strcat(buffer
, q
);
1125 if (t
->type
== TOK_WHITESPACE
) {
1127 } else if (t
->text
) {
1128 len
+= strlen(t
->text
);
1131 p
= line
= nasm_malloc(len
+ 1);
1132 for (t
= tlist
; t
; t
= t
->next
) {
1133 if (t
->type
== TOK_WHITESPACE
) {
1135 } else if (t
->text
) {
1146 * A scanner, suitable for use by the expression evaluator, which
1147 * operates on a line of Tokens. Expects a pointer to a pointer to
1148 * the first token in the line to be passed in as its private_data
1151 * FIX: This really needs to be unified with stdscan.
1153 static int ppscan(void *private_data
, struct tokenval
*tokval
)
1155 Token
**tlineptr
= private_data
;
1157 char ourcopy
[MAX_KEYWORD
+1], *p
, *r
, *s
;
1161 *tlineptr
= tline
? tline
->next
: NULL
;
1163 while (tline
&& (tline
->type
== TOK_WHITESPACE
||
1164 tline
->type
== TOK_COMMENT
));
1167 return tokval
->t_type
= TOKEN_EOS
;
1169 tokval
->t_charptr
= tline
->text
;
1171 if (tline
->text
[0] == '$' && !tline
->text
[1])
1172 return tokval
->t_type
= TOKEN_HERE
;
1173 if (tline
->text
[0] == '$' && tline
->text
[1] == '$' && !tline
->text
[2])
1174 return tokval
->t_type
= TOKEN_BASE
;
1176 if (tline
->type
== TOK_ID
) {
1177 p
= tokval
->t_charptr
= tline
->text
;
1179 tokval
->t_charptr
++;
1180 return tokval
->t_type
= TOKEN_ID
;
1183 for (r
= p
, s
= ourcopy
; *r
; r
++) {
1184 if (r
>= p
+MAX_KEYWORD
)
1185 return tokval
->t_type
= TOKEN_ID
; /* Not a keyword */
1186 *s
++ = nasm_tolower(*r
);
1189 /* right, so we have an identifier sitting in temp storage. now,
1190 * is it actually a register or instruction name, or what? */
1191 return nasm_token_hash(ourcopy
, tokval
);
1194 if (tline
->type
== TOK_NUMBER
) {
1196 tokval
->t_integer
= readnum(tline
->text
, &rn_error
);
1197 tokval
->t_charptr
= tline
->text
;
1199 return tokval
->t_type
= TOKEN_ERRNUM
;
1201 return tokval
->t_type
= TOKEN_NUM
;
1204 if (tline
->type
== TOK_FLOAT
) {
1205 return tokval
->t_type
= TOKEN_FLOAT
;
1208 if (tline
->type
== TOK_STRING
) {
1211 bq
= tline
->text
[0];
1212 tokval
->t_charptr
= tline
->text
;
1213 tokval
->t_inttwo
= nasm_unquote(tline
->text
, &ep
);
1215 if (ep
[0] != bq
|| ep
[1] != '\0')
1216 return tokval
->t_type
= TOKEN_ERRSTR
;
1218 return tokval
->t_type
= TOKEN_STR
;
1221 if (tline
->type
== TOK_OTHER
) {
1222 if (!strcmp(tline
->text
, "<<"))
1223 return tokval
->t_type
= TOKEN_SHL
;
1224 if (!strcmp(tline
->text
, ">>"))
1225 return tokval
->t_type
= TOKEN_SHR
;
1226 if (!strcmp(tline
->text
, "//"))
1227 return tokval
->t_type
= TOKEN_SDIV
;
1228 if (!strcmp(tline
->text
, "%%"))
1229 return tokval
->t_type
= TOKEN_SMOD
;
1230 if (!strcmp(tline
->text
, "=="))
1231 return tokval
->t_type
= TOKEN_EQ
;
1232 if (!strcmp(tline
->text
, "<>"))
1233 return tokval
->t_type
= TOKEN_NE
;
1234 if (!strcmp(tline
->text
, "!="))
1235 return tokval
->t_type
= TOKEN_NE
;
1236 if (!strcmp(tline
->text
, "<="))
1237 return tokval
->t_type
= TOKEN_LE
;
1238 if (!strcmp(tline
->text
, ">="))
1239 return tokval
->t_type
= TOKEN_GE
;
1240 if (!strcmp(tline
->text
, "&&"))
1241 return tokval
->t_type
= TOKEN_DBL_AND
;
1242 if (!strcmp(tline
->text
, "^^"))
1243 return tokval
->t_type
= TOKEN_DBL_XOR
;
1244 if (!strcmp(tline
->text
, "||"))
1245 return tokval
->t_type
= TOKEN_DBL_OR
;
1249 * We have no other options: just return the first character of
1252 return tokval
->t_type
= tline
->text
[0];
1256 * Compare a string to the name of an existing macro; this is a
1257 * simple wrapper which calls either strcmp or nasm_stricmp
1258 * depending on the value of the `casesense' parameter.
1260 static int mstrcmp(const char *p
, const char *q
, bool casesense
)
1262 return casesense
? strcmp(p
, q
) : nasm_stricmp(p
, q
);
1266 * Compare a string to the name of an existing macro; this is a
1267 * simple wrapper which calls either strcmp or nasm_stricmp
1268 * depending on the value of the `casesense' parameter.
1270 static int mmemcmp(const char *p
, const char *q
, size_t l
, bool casesense
)
1272 return casesense
? memcmp(p
, q
, l
) : nasm_memicmp(p
, q
, l
);
1276 * Return the Context structure associated with a %$ token. Return
1277 * NULL, having _already_ reported an error condition, if the
1278 * context stack isn't deep enough for the supplied number of $
1280 * If all_contexts == true, contexts that enclose current are
1281 * also scanned for such smacro, until it is found; if not -
1282 * only the context that directly results from the number of $'s
1283 * in variable's name.
1285 static Context
*get_ctx(const char *name
, bool all_contexts
)
1291 if (!name
|| name
[0] != '%' || name
[1] != '$')
1295 error(ERR_NONFATAL
, "`%s': context stack is empty", name
);
1299 for (i
= strspn(name
+ 2, "$"), ctx
= cstk
; (i
> 0) && ctx
; i
--) {
1301 /* i--; Lino - 02/25/02 */
1304 error(ERR_NONFATAL
, "`%s': context stack is only"
1305 " %d level%s deep", name
, i
- 1, (i
== 2 ? "" : "s"));
1312 /* Search for this smacro in found context */
1313 m
= hash_findix(&ctx
->localmac
, name
);
1315 if (!mstrcmp(m
->name
, name
, m
->casesense
))
1326 * Check to see if a file is already in a string list
1328 static bool in_list(const StrList
*list
, const char *str
)
1331 if (!strcmp(list
->str
, str
))
1339 * Open an include file. This routine must always return a valid
1340 * file pointer if it returns - it's responsible for throwing an
1341 * ERR_FATAL and bombing out completely if not. It should also try
1342 * the include path one by one until it finds the file or reaches
1343 * the end of the path.
1345 static FILE *inc_fopen(const char *file
, StrList
**dhead
, StrList
***dtail
,
1350 IncPath
*ip
= ipath
;
1351 int len
= strlen(file
);
1352 size_t prefix_len
= 0;
1356 sl
= nasm_malloc(prefix_len
+len
+1+sizeof sl
->next
);
1357 memcpy(sl
->str
, prefix
, prefix_len
);
1358 memcpy(sl
->str
+prefix_len
, file
, len
+1);
1359 fp
= fopen(sl
->str
, "r");
1360 if (fp
&& dhead
&& !in_list(*dhead
, sl
->str
)) {
1378 prefix_len
= strlen(prefix
);
1380 /* -MG given and file not found */
1381 if (dhead
&& !in_list(*dhead
, file
)) {
1382 sl
= nasm_malloc(len
+1+sizeof sl
->next
);
1384 strcpy(sl
->str
, file
);
1392 error(ERR_FATAL
, "unable to open include file `%s'", file
);
1393 return NULL
; /* never reached - placate compilers */
1397 * Determine if we should warn on defining a single-line macro of
1398 * name `name', with `nparam' parameters. If nparam is 0 or -1, will
1399 * return true if _any_ single-line macro of that name is defined.
1400 * Otherwise, will return true if a single-line macro with either
1401 * `nparam' or no parameters is defined.
1403 * If a macro with precisely the right number of parameters is
1404 * defined, or nparam is -1, the address of the definition structure
1405 * will be returned in `defn'; otherwise NULL will be returned. If `defn'
1406 * is NULL, no action will be taken regarding its contents, and no
1409 * Note that this is also called with nparam zero to resolve
1412 * If you already know which context macro belongs to, you can pass
1413 * the context pointer as first parameter; if you won't but name begins
1414 * with %$ the context will be automatically computed. If all_contexts
1415 * is true, macro will be searched in outer contexts as well.
1418 smacro_defined(Context
* ctx
, const char *name
, int nparam
, SMacro
** defn
,
1421 struct hash_table
*smtbl
;
1425 smtbl
= &ctx
->localmac
;
1426 } else if (name
[0] == '%' && name
[1] == '$') {
1428 ctx
= get_ctx(name
, false);
1430 return false; /* got to return _something_ */
1431 smtbl
= &ctx
->localmac
;
1435 m
= (SMacro
*) hash_findix(smtbl
, name
);
1438 if (!mstrcmp(m
->name
, name
, m
->casesense
&& nocase
) &&
1439 (nparam
<= 0 || m
->nparam
== 0 || nparam
== (int) m
->nparam
)) {
1441 if (nparam
== (int) m
->nparam
|| nparam
== -1)
1455 * Count and mark off the parameters in a multi-line macro call.
1456 * This is called both from within the multi-line macro expansion
1457 * code, and also to mark off the default parameters when provided
1458 * in a %macro definition line.
1460 static void count_mmac_params(Token
* t
, int *nparam
, Token
*** params
)
1462 int paramsize
, brace
;
1464 *nparam
= paramsize
= 0;
1467 /* +1: we need space for the final NULL */
1468 if (*nparam
+1 >= paramsize
) {
1469 paramsize
+= PARAM_DELTA
;
1470 *params
= nasm_realloc(*params
, sizeof(**params
) * paramsize
);
1474 if (tok_is_(t
, "{"))
1476 (*params
)[(*nparam
)++] = t
;
1477 while (tok_isnt_(t
, brace
? "}" : ","))
1479 if (t
) { /* got a comma/brace */
1483 * Now we've found the closing brace, look further
1487 if (tok_isnt_(t
, ",")) {
1489 "braces do not enclose all of macro parameter");
1490 while (tok_isnt_(t
, ","))
1494 t
= t
->next
; /* eat the comma */
1501 * Determine whether one of the various `if' conditions is true or
1504 * We must free the tline we get passed.
1506 static bool if_condition(Token
* tline
, enum preproc_token ct
)
1508 enum pp_conditional i
= PP_COND(ct
);
1510 Token
*t
, *tt
, **tptr
, *origline
;
1511 struct tokenval tokval
;
1513 enum pp_token_type needtype
;
1519 j
= false; /* have we matched yet? */
1524 if (tline
->type
!= TOK_ID
) {
1526 "`%s' expects context identifiers", pp_directives
[ct
]);
1527 free_tlist(origline
);
1530 if (cstk
&& cstk
->name
&& !nasm_stricmp(tline
->text
, cstk
->name
))
1532 tline
= tline
->next
;
1537 j
= false; /* have we matched yet? */
1540 if (!tline
|| (tline
->type
!= TOK_ID
&&
1541 (tline
->type
!= TOK_PREPROC_ID
||
1542 tline
->text
[1] != '$'))) {
1544 "`%s' expects macro identifiers", pp_directives
[ct
]);
1547 if (smacro_defined(NULL
, tline
->text
, 0, NULL
, true))
1549 tline
= tline
->next
;
1555 tline
= expand_smacro(tline
);
1557 while (tok_isnt_(tt
, ","))
1561 "`%s' expects two comma-separated arguments",
1566 j
= true; /* assume equality unless proved not */
1567 while ((t
->type
!= TOK_OTHER
|| strcmp(t
->text
, ",")) && tt
) {
1568 if (tt
->type
== TOK_OTHER
&& !strcmp(tt
->text
, ",")) {
1569 error(ERR_NONFATAL
, "`%s': more than one comma on line",
1573 if (t
->type
== TOK_WHITESPACE
) {
1577 if (tt
->type
== TOK_WHITESPACE
) {
1581 if (tt
->type
!= t
->type
) {
1582 j
= false; /* found mismatching tokens */
1585 /* When comparing strings, need to unquote them first */
1586 if (t
->type
== TOK_STRING
) {
1587 size_t l1
= nasm_unquote(t
->text
, NULL
);
1588 size_t l2
= nasm_unquote(tt
->text
, NULL
);
1594 if (mmemcmp(t
->text
, tt
->text
, l1
, i
== PPC_IFIDN
)) {
1598 } else if (mstrcmp(tt
->text
, t
->text
, i
== PPC_IFIDN
) != 0) {
1599 j
= false; /* found mismatching tokens */
1606 if ((t
->type
!= TOK_OTHER
|| strcmp(t
->text
, ",")) || tt
)
1607 j
= false; /* trailing gunk on one end or other */
1613 MMacro searching
, *mmac
;
1615 tline
= tline
->next
;
1617 tline
= expand_id(tline
);
1618 if (!tok_type_(tline
, TOK_ID
)) {
1620 "`%s' expects a macro name", pp_directives
[ct
]);
1623 searching
.name
= nasm_strdup(tline
->text
);
1624 searching
.casesense
= true;
1625 searching
.plus
= false;
1626 searching
.nolist
= false;
1627 searching
.in_progress
= 0;
1628 searching
.rep_nest
= NULL
;
1629 searching
.nparam_min
= 0;
1630 searching
.nparam_max
= INT_MAX
;
1631 tline
= expand_smacro(tline
->next
);
1634 } else if (!tok_type_(tline
, TOK_NUMBER
)) {
1636 "`%s' expects a parameter count or nothing",
1639 searching
.nparam_min
= searching
.nparam_max
=
1640 readnum(tline
->text
, &j
);
1643 "unable to parse parameter count `%s'",
1646 if (tline
&& tok_is_(tline
->next
, "-")) {
1647 tline
= tline
->next
->next
;
1648 if (tok_is_(tline
, "*"))
1649 searching
.nparam_max
= INT_MAX
;
1650 else if (!tok_type_(tline
, TOK_NUMBER
))
1652 "`%s' expects a parameter count after `-'",
1655 searching
.nparam_max
= readnum(tline
->text
, &j
);
1658 "unable to parse parameter count `%s'",
1660 if (searching
.nparam_min
> searching
.nparam_max
)
1662 "minimum parameter count exceeds maximum");
1665 if (tline
&& tok_is_(tline
->next
, "+")) {
1666 tline
= tline
->next
;
1667 searching
.plus
= true;
1669 mmac
= (MMacro
*) hash_findix(&mmacros
, searching
.name
);
1671 if (!strcmp(mmac
->name
, searching
.name
) &&
1672 (mmac
->nparam_min
<= searching
.nparam_max
1674 && (searching
.nparam_min
<= mmac
->nparam_max
1681 if(tline
&& tline
->next
)
1682 error(ERR_WARNING
|ERR_PASS1
,
1683 "trailing garbage after %%ifmacro ignored");
1684 nasm_free(searching
.name
);
1693 needtype
= TOK_NUMBER
;
1696 needtype
= TOK_STRING
;
1700 t
= tline
= expand_smacro(tline
);
1702 while (tok_type_(t
, TOK_WHITESPACE
) ||
1703 (needtype
== TOK_NUMBER
&&
1704 tok_type_(t
, TOK_OTHER
) &&
1705 (t
->text
[0] == '-' || t
->text
[0] == '+') &&
1709 j
= tok_type_(t
, needtype
);
1713 t
= tline
= expand_smacro(tline
);
1714 while (tok_type_(t
, TOK_WHITESPACE
))
1719 t
= t
->next
; /* Skip the actual token */
1720 while (tok_type_(t
, TOK_WHITESPACE
))
1722 j
= !t
; /* Should be nothing left */
1727 t
= tline
= expand_smacro(tline
);
1728 while (tok_type_(t
, TOK_WHITESPACE
))
1731 j
= !t
; /* Should be empty */
1735 t
= tline
= expand_smacro(tline
);
1737 tokval
.t_type
= TOKEN_INVALID
;
1738 evalresult
= evaluate(ppscan
, tptr
, &tokval
,
1739 NULL
, pass
| CRITICAL
, error
, NULL
);
1743 error(ERR_WARNING
|ERR_PASS1
,
1744 "trailing garbage after expression ignored");
1745 if (!is_simple(evalresult
)) {
1747 "non-constant value given to `%s'", pp_directives
[ct
]);
1750 j
= reloc_value(evalresult
) != 0;
1755 "preprocessor directive `%s' not yet implemented",
1760 free_tlist(origline
);
1761 return j
^ PP_NEGATIVE(ct
);
1764 free_tlist(origline
);
1769 * Common code for defining an smacro
1771 static bool define_smacro(Context
*ctx
, char *mname
, bool casesense
,
1772 int nparam
, Token
*expansion
)
1774 SMacro
*smac
, **smhead
;
1775 struct hash_table
*smtbl
;
1777 if (smacro_defined(ctx
, mname
, nparam
, &smac
, casesense
)) {
1779 error(ERR_WARNING
|ERR_PASS1
,
1780 "single-line macro `%s' defined both with and"
1781 " without parameters", mname
);
1783 /* Some instances of the old code considered this a failure,
1784 some others didn't. What is the right thing to do here? */
1785 free_tlist(expansion
);
1786 return false; /* Failure */
1789 * We're redefining, so we have to take over an
1790 * existing SMacro structure. This means freeing
1791 * what was already in it.
1793 nasm_free(smac
->name
);
1794 free_tlist(smac
->expansion
);
1797 smtbl
= ctx
? &ctx
->localmac
: &smacros
;
1798 smhead
= (SMacro
**) hash_findi_add(smtbl
, mname
);
1799 smac
= nasm_malloc(sizeof(SMacro
));
1800 smac
->next
= *smhead
;
1803 smac
->name
= nasm_strdup(mname
);
1804 smac
->casesense
= casesense
;
1805 smac
->nparam
= nparam
;
1806 smac
->expansion
= expansion
;
1807 smac
->in_progress
= false;
1808 return true; /* Success */
1812 * Undefine an smacro
1814 static void undef_smacro(Context
*ctx
, const char *mname
)
1816 SMacro
**smhead
, *s
, **sp
;
1817 struct hash_table
*smtbl
;
1819 smtbl
= ctx
? &ctx
->localmac
: &smacros
;
1820 smhead
= (SMacro
**)hash_findi(smtbl
, mname
, NULL
);
1824 * We now have a macro name... go hunt for it.
1827 while ((s
= *sp
) != NULL
) {
1828 if (!mstrcmp(s
->name
, mname
, s
->casesense
)) {
1831 free_tlist(s
->expansion
);
1841 * Parse a mmacro specification.
1843 static bool parse_mmacro_spec(Token
*tline
, MMacro
*def
, const char *directive
)
1847 tline
= tline
->next
;
1849 tline
= expand_id(tline
);
1850 if (!tok_type_(tline
, TOK_ID
)) {
1851 error(ERR_NONFATAL
, "`%s' expects a macro name", directive
);
1855 def
->name
= nasm_strdup(tline
->text
);
1857 def
->nolist
= false;
1858 def
->in_progress
= 0;
1859 def
->rep_nest
= NULL
;
1860 def
->nparam_min
= 0;
1861 def
->nparam_max
= 0;
1863 tline
= expand_smacro(tline
->next
);
1865 if (!tok_type_(tline
, TOK_NUMBER
)) {
1866 error(ERR_NONFATAL
, "`%s' expects a parameter count", directive
);
1868 def
->nparam_min
= def
->nparam_max
=
1869 readnum(tline
->text
, &err
);
1872 "unable to parse parameter count `%s'", tline
->text
);
1874 if (tline
&& tok_is_(tline
->next
, "-")) {
1875 tline
= tline
->next
->next
;
1876 if (tok_is_(tline
, "*")) {
1877 def
->nparam_max
= INT_MAX
;
1878 } else if (!tok_type_(tline
, TOK_NUMBER
)) {
1880 "`%s' expects a parameter count after `-'", directive
);
1882 def
->nparam_max
= readnum(tline
->text
, &err
);
1884 error(ERR_NONFATAL
, "unable to parse parameter count `%s'",
1887 if (def
->nparam_min
> def
->nparam_max
) {
1888 error(ERR_NONFATAL
, "minimum parameter count exceeds maximum");
1892 if (tline
&& tok_is_(tline
->next
, "+")) {
1893 tline
= tline
->next
;
1896 if (tline
&& tok_type_(tline
->next
, TOK_ID
) &&
1897 !nasm_stricmp(tline
->next
->text
, ".nolist")) {
1898 tline
= tline
->next
;
1903 * Handle default parameters.
1905 if (tline
&& tline
->next
) {
1906 def
->dlist
= tline
->next
;
1908 count_mmac_params(def
->dlist
, &def
->ndefs
, &def
->defaults
);
1911 def
->defaults
= NULL
;
1913 def
->expansion
= NULL
;
1916 def
->ndefs
> def
->nparam_max
- def
->nparam_min
&&
1918 error(ERR_WARNING
|ERR_PASS1
|ERR_WARN_MDP
,
1919 "too many default macro parameters");
1926 * Decode a size directive
1928 static int parse_size(const char *str
) {
1929 static const char *size_names
[] =
1930 { "byte", "dword", "oword", "qword", "tword", "word", "yword" };
1931 static const int sizes
[] =
1932 { 0, 1, 4, 16, 8, 10, 2, 32 };
1934 return sizes
[bsii(str
, size_names
, elements(size_names
))+1];
1938 * find and process preprocessor directive in passed line
1939 * Find out if a line contains a preprocessor directive, and deal
1942 * If a directive _is_ found, it is the responsibility of this routine
1943 * (and not the caller) to free_tlist() the line.
1945 * @param tline a pointer to the current tokeninzed line linked list
1946 * @return DIRECTIVE_FOUND or NO_DIRECTIVE_FOUND
1949 static int do_directive(Token
* tline
)
1951 enum preproc_token i
;
1959 char *p
, *pp
, *mname
;
1963 MMacro
*mmac
, **mmhead
;
1964 Token
*t
, *tt
, *param_start
, *macro_start
, *last
, **tptr
, *origline
;
1966 struct tokenval tokval
;
1968 MMacro
*tmp_defining
; /* Used when manipulating rep_nest */
1976 if (!tline
|| !tok_type_(tline
, TOK_PREPROC_ID
) ||
1977 (tline
->text
[1] == '%' || tline
->text
[1] == '$'
1978 || tline
->text
[1] == '!'))
1979 return NO_DIRECTIVE_FOUND
;
1981 i
= pp_token_hash(tline
->text
);
1984 * If we're in a non-emitting branch of a condition construct,
1985 * or walking to the end of an already terminated %rep block,
1986 * we should ignore all directives except for condition
1989 if (((istk
->conds
&& !emitting(istk
->conds
->state
)) ||
1990 (istk
->mstk
&& !istk
->mstk
->in_progress
)) && !is_condition(i
)) {
1991 return NO_DIRECTIVE_FOUND
;
1995 * If we're defining a macro or reading a %rep block, we should
1996 * ignore all directives except for %macro/%imacro (which nest),
1997 * %endm/%endmacro, and (only if we're in a %rep block) %endrep.
1998 * If we're in a %rep block, another %rep nests, so should be let through.
2000 if (defining
&& i
!= PP_MACRO
&& i
!= PP_IMACRO
&&
2001 i
!= PP_ENDMACRO
&& i
!= PP_ENDM
&&
2002 (defining
->name
|| (i
!= PP_ENDREP
&& i
!= PP_REP
))) {
2003 return NO_DIRECTIVE_FOUND
;
2007 if (i
== PP_MACRO
|| i
== PP_IMACRO
) {
2009 return NO_DIRECTIVE_FOUND
;
2010 } else if (nested_mac_count
> 0) {
2011 if (i
== PP_ENDMACRO
) {
2013 return NO_DIRECTIVE_FOUND
;
2016 if (!defining
->name
) {
2019 return NO_DIRECTIVE_FOUND
;
2020 } else if (nested_rep_count
> 0) {
2021 if (i
== PP_ENDREP
) {
2023 return NO_DIRECTIVE_FOUND
;
2031 error(ERR_NONFATAL
, "unknown preprocessor directive `%s'",
2033 return NO_DIRECTIVE_FOUND
; /* didn't get it */
2036 /* Directive to tell NASM what the default stack size is. The
2037 * default is for a 16-bit stack, and this can be overriden with
2039 * the following form:
2041 * ARG arg1:WORD, arg2:DWORD, arg4:QWORD
2043 tline
= tline
->next
;
2044 if (tline
&& tline
->type
== TOK_WHITESPACE
)
2045 tline
= tline
->next
;
2046 if (!tline
|| tline
->type
!= TOK_ID
) {
2047 error(ERR_NONFATAL
, "`%%stacksize' missing size parameter");
2048 free_tlist(origline
);
2049 return DIRECTIVE_FOUND
;
2051 if (nasm_stricmp(tline
->text
, "flat") == 0) {
2052 /* All subsequent ARG directives are for a 32-bit stack */
2054 StackPointer
= "ebp";
2057 } else if (nasm_stricmp(tline
->text
, "flat64") == 0) {
2058 /* All subsequent ARG directives are for a 64-bit stack */
2060 StackPointer
= "rbp";
2063 } else if (nasm_stricmp(tline
->text
, "large") == 0) {
2064 /* All subsequent ARG directives are for a 16-bit stack,
2065 * far function call.
2068 StackPointer
= "bp";
2071 } else if (nasm_stricmp(tline
->text
, "small") == 0) {
2072 /* All subsequent ARG directives are for a 16-bit stack,
2073 * far function call. We don't support near functions.
2076 StackPointer
= "bp";
2080 error(ERR_NONFATAL
, "`%%stacksize' invalid size type");
2081 free_tlist(origline
);
2082 return DIRECTIVE_FOUND
;
2084 free_tlist(origline
);
2085 return DIRECTIVE_FOUND
;
2088 /* TASM like ARG directive to define arguments to functions, in
2089 * the following form:
2091 * ARG arg1:WORD, arg2:DWORD, arg4:QWORD
2095 char *arg
, directive
[256];
2096 int size
= StackSize
;
2098 /* Find the argument name */
2099 tline
= tline
->next
;
2100 if (tline
&& tline
->type
== TOK_WHITESPACE
)
2101 tline
= tline
->next
;
2102 if (!tline
|| tline
->type
!= TOK_ID
) {
2103 error(ERR_NONFATAL
, "`%%arg' missing argument parameter");
2104 free_tlist(origline
);
2105 return DIRECTIVE_FOUND
;
2109 /* Find the argument size type */
2110 tline
= tline
->next
;
2111 if (!tline
|| tline
->type
!= TOK_OTHER
2112 || tline
->text
[0] != ':') {
2114 "Syntax error processing `%%arg' directive");
2115 free_tlist(origline
);
2116 return DIRECTIVE_FOUND
;
2118 tline
= tline
->next
;
2119 if (!tline
|| tline
->type
!= TOK_ID
) {
2120 error(ERR_NONFATAL
, "`%%arg' missing size type parameter");
2121 free_tlist(origline
);
2122 return DIRECTIVE_FOUND
;
2125 /* Allow macro expansion of type parameter */
2126 tt
= tokenize(tline
->text
);
2127 tt
= expand_smacro(tt
);
2128 size
= parse_size(tt
->text
);
2131 "Invalid size type for `%%arg' missing directive");
2133 free_tlist(origline
);
2134 return DIRECTIVE_FOUND
;
2138 /* Round up to even stack slots */
2139 size
= (size
+StackSize
-1) & ~(StackSize
-1);
2141 /* Now define the macro for the argument */
2142 snprintf(directive
, sizeof(directive
), "%%define %s (%s+%d)",
2143 arg
, StackPointer
, offset
);
2144 do_directive(tokenize(directive
));
2147 /* Move to the next argument in the list */
2148 tline
= tline
->next
;
2149 if (tline
&& tline
->type
== TOK_WHITESPACE
)
2150 tline
= tline
->next
;
2151 } while (tline
&& tline
->type
== TOK_OTHER
&& tline
->text
[0] == ',');
2153 free_tlist(origline
);
2154 return DIRECTIVE_FOUND
;
2157 /* TASM like LOCAL directive to define local variables for a
2158 * function, in the following form:
2160 * LOCAL local1:WORD, local2:DWORD, local4:QWORD = LocalSize
2162 * The '= LocalSize' at the end is ignored by NASM, but is
2163 * required by TASM to define the local parameter size (and used
2164 * by the TASM macro package).
2166 offset
= LocalOffset
;
2168 char *local
, directive
[256];
2169 int size
= StackSize
;
2171 /* Find the argument name */
2172 tline
= tline
->next
;
2173 if (tline
&& tline
->type
== TOK_WHITESPACE
)
2174 tline
= tline
->next
;
2175 if (!tline
|| tline
->type
!= TOK_ID
) {
2177 "`%%local' missing argument parameter");
2178 free_tlist(origline
);
2179 return DIRECTIVE_FOUND
;
2181 local
= tline
->text
;
2183 /* Find the argument size type */
2184 tline
= tline
->next
;
2185 if (!tline
|| tline
->type
!= TOK_OTHER
2186 || tline
->text
[0] != ':') {
2188 "Syntax error processing `%%local' directive");
2189 free_tlist(origline
);
2190 return DIRECTIVE_FOUND
;
2192 tline
= tline
->next
;
2193 if (!tline
|| tline
->type
!= TOK_ID
) {
2195 "`%%local' missing size type parameter");
2196 free_tlist(origline
);
2197 return DIRECTIVE_FOUND
;
2200 /* Allow macro expansion of type parameter */
2201 tt
= tokenize(tline
->text
);
2202 tt
= expand_smacro(tt
);
2203 size
= parse_size(tt
->text
);
2206 "Invalid size type for `%%local' missing directive");
2208 free_tlist(origline
);
2209 return DIRECTIVE_FOUND
;
2213 /* Round up to even stack slots */
2214 size
= (size
+StackSize
-1) & ~(StackSize
-1);
2216 offset
+= size
; /* Negative offset, increment before */
2218 /* Now define the macro for the argument */
2219 snprintf(directive
, sizeof(directive
), "%%define %s (%s-%d)",
2220 local
, StackPointer
, offset
);
2221 do_directive(tokenize(directive
));
2223 /* Now define the assign to setup the enter_c macro correctly */
2224 snprintf(directive
, sizeof(directive
),
2225 "%%assign %%$localsize %%$localsize+%d", size
);
2226 do_directive(tokenize(directive
));
2228 /* Move to the next argument in the list */
2229 tline
= tline
->next
;
2230 if (tline
&& tline
->type
== TOK_WHITESPACE
)
2231 tline
= tline
->next
;
2232 } while (tline
&& tline
->type
== TOK_OTHER
&& tline
->text
[0] == ',');
2233 LocalOffset
= offset
;
2234 free_tlist(origline
);
2235 return DIRECTIVE_FOUND
;
2239 error(ERR_WARNING
|ERR_PASS1
,
2240 "trailing garbage after `%%clear' ignored");
2243 free_tlist(origline
);
2244 return DIRECTIVE_FOUND
;
2247 t
= tline
->next
= expand_smacro(tline
->next
);
2249 if (!t
|| (t
->type
!= TOK_STRING
&&
2250 t
->type
!= TOK_INTERNAL_STRING
)) {
2251 error(ERR_NONFATAL
, "`%%depend' expects a file name");
2252 free_tlist(origline
);
2253 return DIRECTIVE_FOUND
; /* but we did _something_ */
2256 error(ERR_WARNING
|ERR_PASS1
,
2257 "trailing garbage after `%%depend' ignored");
2259 if (t
->type
!= TOK_INTERNAL_STRING
)
2260 nasm_unquote(p
, NULL
);
2261 if (dephead
&& !in_list(*dephead
, p
)) {
2262 StrList
*sl
= nasm_malloc(strlen(p
)+1+sizeof sl
->next
);
2266 deptail
= &sl
->next
;
2268 free_tlist(origline
);
2269 return DIRECTIVE_FOUND
;
2272 t
= tline
->next
= expand_smacro(tline
->next
);
2275 if (!t
|| (t
->type
!= TOK_STRING
&&
2276 t
->type
!= TOK_INTERNAL_STRING
)) {
2277 error(ERR_NONFATAL
, "`%%include' expects a file name");
2278 free_tlist(origline
);
2279 return DIRECTIVE_FOUND
; /* but we did _something_ */
2282 error(ERR_WARNING
|ERR_PASS1
,
2283 "trailing garbage after `%%include' ignored");
2285 if (t
->type
!= TOK_INTERNAL_STRING
)
2286 nasm_unquote(p
, NULL
);
2287 inc
= nasm_malloc(sizeof(Include
));
2290 inc
->fp
= inc_fopen(p
, dephead
, &deptail
, pass
== 0);
2292 /* -MG given but file not found */
2295 inc
->fname
= src_set_fname(nasm_strdup(p
));
2296 inc
->lineno
= src_set_linnum(0);
2298 inc
->expansion
= NULL
;
2301 list
->uplevel(LIST_INCLUDE
);
2303 free_tlist(origline
);
2304 return DIRECTIVE_FOUND
;
2308 static macros_t
*use_pkg
;
2309 const char *pkg_macro
;
2311 t
= tline
->next
= expand_smacro(tline
->next
);
2314 if (!t
|| (t
->type
!= TOK_STRING
&&
2315 t
->type
!= TOK_INTERNAL_STRING
&&
2316 t
->type
!= TOK_ID
)) {
2317 error(ERR_NONFATAL
, "`%%use' expects a package name");
2318 free_tlist(origline
);
2319 return DIRECTIVE_FOUND
; /* but we did _something_ */
2322 error(ERR_WARNING
|ERR_PASS1
,
2323 "trailing garbage after `%%use' ignored");
2324 if (t
->type
== TOK_STRING
)
2325 nasm_unquote(t
->text
, NULL
);
2326 use_pkg
= nasm_stdmac_find_package(t
->text
);
2328 error(ERR_NONFATAL
, "unknown `%%use' package: %s", t
->text
);
2329 /* The first string will be <%define>__USE_*__ */
2330 pkg_macro
= (char *)use_pkg
+ 1;
2331 if (!smacro_defined(NULL
, pkg_macro
, 0, NULL
, true)) {
2332 /* Not already included, go ahead and include it */
2333 stdmacpos
= use_pkg
;
2335 free_tlist(origline
);
2336 return DIRECTIVE_FOUND
;
2339 tline
= tline
->next
;
2341 tline
= expand_id(tline
);
2343 if (!tok_type_(tline
, TOK_ID
)) {
2344 error(ERR_NONFATAL
, "`%%push' expects a context identifier");
2345 free_tlist(origline
);
2346 return DIRECTIVE_FOUND
; /* but we did _something_ */
2349 error(ERR_WARNING
|ERR_PASS1
,
2350 "trailing garbage after `%%push' ignored");
2351 p
= nasm_strdup(tline
->text
);
2353 p
= NULL
; /* Anonymous context */
2355 ctx
= nasm_malloc(sizeof(Context
));
2357 hash_init(&ctx
->localmac
, HASH_SMALL
);
2359 ctx
->number
= unique
++;
2361 free_tlist(origline
);
2362 return DIRECTIVE_FOUND
;
2365 tline
= tline
->next
;
2367 tline
= expand_id(tline
);
2369 if (!tok_type_(tline
, TOK_ID
)) {
2370 error(ERR_NONFATAL
, "`%%repl' expects a context identifier");
2371 free_tlist(origline
);
2372 return DIRECTIVE_FOUND
; /* but we did _something_ */
2375 error(ERR_WARNING
|ERR_PASS1
,
2376 "trailing garbage after `%%repl' ignored");
2377 p
= nasm_strdup(tline
->text
);
2382 error(ERR_NONFATAL
, "`%%repl': context stack is empty");
2384 nasm_free(cstk
->name
);
2387 free_tlist(origline
);
2388 return DIRECTIVE_FOUND
;
2392 error(ERR_WARNING
|ERR_PASS1
,
2393 "trailing garbage after `%%pop' ignored");
2395 error(ERR_NONFATAL
, "`%%pop': context stack is already empty");
2398 free_tlist(origline
);
2399 return DIRECTIVE_FOUND
;
2402 severity
= ERR_FATAL
|ERR_NO_SEVERITY
;
2405 severity
= ERR_NONFATAL
|ERR_NO_SEVERITY
;
2408 severity
= ERR_WARNING
|ERR_NO_SEVERITY
|ERR_WARN_USER
;
2413 /* Only error out if this is the final pass */
2414 if (pass
!= 2 && i
!= PP_FATAL
)
2415 return DIRECTIVE_FOUND
;
2417 tline
->next
= expand_smacro(tline
->next
);
2418 tline
= tline
->next
;
2420 t
= tline
? tline
->next
: NULL
;
2422 if (tok_type_(tline
, TOK_STRING
) && !t
) {
2423 /* The line contains only a quoted string */
2425 nasm_unquote(p
, NULL
);
2426 error(severity
, "%s: %s", pp_directives
[i
], p
);
2428 /* Not a quoted string, or more than a quoted string */
2429 p
= detoken(tline
, false);
2430 error(severity
, "%s: %s", pp_directives
[i
], p
);
2433 free_tlist(origline
);
2434 return DIRECTIVE_FOUND
;
2438 if (istk
->conds
&& !emitting(istk
->conds
->state
))
2441 j
= if_condition(tline
->next
, i
);
2442 tline
->next
= NULL
; /* it got freed */
2443 j
= j
< 0 ? COND_NEVER
: j
? COND_IF_TRUE
: COND_IF_FALSE
;
2445 cond
= nasm_malloc(sizeof(Cond
));
2446 cond
->next
= istk
->conds
;
2449 free_tlist(origline
);
2450 return DIRECTIVE_FOUND
;
2454 error(ERR_FATAL
, "`%s': no matching `%%if'", pp_directives
[i
]);
2455 switch(istk
->conds
->state
) {
2457 istk
->conds
->state
= COND_DONE
;
2464 case COND_ELSE_TRUE
:
2465 case COND_ELSE_FALSE
:
2466 error_precond(ERR_WARNING
|ERR_PASS1
,
2467 "`%%elif' after `%%else' ignored");
2468 istk
->conds
->state
= COND_NEVER
;
2473 * IMPORTANT: In the case of %if, we will already have
2474 * called expand_mmac_params(); however, if we're
2475 * processing an %elif we must have been in a
2476 * non-emitting mode, which would have inhibited
2477 * the normal invocation of expand_indirect() and
2478 * expand_mmac_params(). Therefore, we have to do it
2481 t
= expand_indirect(tline
->next
,0);
2482 t
= expand_mmac_params(t
);
2483 j
= if_condition(expand_mmac_params(t
), i
);
2484 tline
->next
= NULL
; /* it got freed */
2485 istk
->conds
->state
=
2486 j
< 0 ? COND_NEVER
: j
? COND_IF_TRUE
: COND_IF_FALSE
;
2489 free_tlist(origline
);
2490 return DIRECTIVE_FOUND
;
2494 error_precond(ERR_WARNING
|ERR_PASS1
,
2495 "trailing garbage after `%%else' ignored");
2497 error(ERR_FATAL
, "`%%else': no matching `%%if'");
2498 switch(istk
->conds
->state
) {
2501 istk
->conds
->state
= COND_ELSE_FALSE
;
2508 istk
->conds
->state
= COND_ELSE_TRUE
;
2511 case COND_ELSE_TRUE
:
2512 case COND_ELSE_FALSE
:
2513 error_precond(ERR_WARNING
|ERR_PASS1
,
2514 "`%%else' after `%%else' ignored.");
2515 istk
->conds
->state
= COND_NEVER
;
2518 free_tlist(origline
);
2519 return DIRECTIVE_FOUND
;
2523 error_precond(ERR_WARNING
|ERR_PASS1
,
2524 "trailing garbage after `%%endif' ignored");
2526 error(ERR_FATAL
, "`%%endif': no matching `%%if'");
2528 istk
->conds
= cond
->next
;
2530 free_tlist(origline
);
2531 return DIRECTIVE_FOUND
;
2537 "`%%%smacro': already defining a macro",
2538 (i
== PP_IMACRO
? "i" : ""));
2539 return DIRECTIVE_FOUND
;
2541 defining
= nasm_malloc(sizeof(MMacro
));
2542 defining
->casesense
= (i
== PP_MACRO
);
2543 if (!parse_mmacro_spec(tline
, defining
, pp_directives
[i
])) {
2544 nasm_free(defining
);
2546 return DIRECTIVE_FOUND
;
2549 mmac
= (MMacro
*) hash_findix(&mmacros
, defining
->name
);
2551 if (!strcmp(mmac
->name
, defining
->name
) &&
2552 (mmac
->nparam_min
<= defining
->nparam_max
2554 && (defining
->nparam_min
<= mmac
->nparam_max
2556 error(ERR_WARNING
|ERR_PASS1
,
2557 "redefining multi-line macro `%s'", defining
->name
);
2558 return DIRECTIVE_FOUND
;
2562 free_tlist(origline
);
2563 return DIRECTIVE_FOUND
;
2567 if (! (defining
&& defining
->name
)) {
2568 error(ERR_NONFATAL
, "`%s': not defining a macro", tline
->text
);
2569 return DIRECTIVE_FOUND
;
2571 mmhead
= (MMacro
**) hash_findi_add(&mmacros
, defining
->name
);
2572 defining
->next
= *mmhead
;
2575 free_tlist(origline
);
2576 return DIRECTIVE_FOUND
;
2584 spec
.casesense
= (i
== PP_UNMACRO
);
2585 if (!parse_mmacro_spec(tline
, &spec
, pp_directives
[i
])) {
2586 return DIRECTIVE_FOUND
;
2588 mmac_p
= (MMacro
**) hash_findi(&mmacros
, spec
.name
, NULL
);
2589 while (mmac_p
&& *mmac_p
) {
2591 if (mmac
->casesense
== spec
.casesense
&&
2592 !mstrcmp(mmac
->name
, spec
.name
, spec
.casesense
) &&
2593 mmac
->nparam_min
== spec
.nparam_min
&&
2594 mmac
->nparam_max
== spec
.nparam_max
&&
2595 mmac
->plus
== spec
.plus
) {
2596 *mmac_p
= mmac
->next
;
2599 mmac_p
= &mmac
->next
;
2602 free_tlist(origline
);
2603 free_tlist(spec
.dlist
);
2604 return DIRECTIVE_FOUND
;
2608 if (tline
->next
&& tline
->next
->type
== TOK_WHITESPACE
)
2609 tline
= tline
->next
;
2610 if (tline
->next
== NULL
) {
2611 free_tlist(origline
);
2612 error(ERR_NONFATAL
, "`%%rotate' missing rotate count");
2613 return DIRECTIVE_FOUND
;
2615 t
= expand_smacro(tline
->next
);
2617 free_tlist(origline
);
2620 tokval
.t_type
= TOKEN_INVALID
;
2622 evaluate(ppscan
, tptr
, &tokval
, NULL
, pass
, error
, NULL
);
2625 return DIRECTIVE_FOUND
;
2627 error(ERR_WARNING
|ERR_PASS1
,
2628 "trailing garbage after expression ignored");
2629 if (!is_simple(evalresult
)) {
2630 error(ERR_NONFATAL
, "non-constant value given to `%%rotate'");
2631 return DIRECTIVE_FOUND
;
2634 while (mmac
&& !mmac
->name
) /* avoid mistaking %reps for macros */
2635 mmac
= mmac
->next_active
;
2637 error(ERR_NONFATAL
, "`%%rotate' invoked outside a macro call");
2638 } else if (mmac
->nparam
== 0) {
2640 "`%%rotate' invoked within macro without parameters");
2642 int rotate
= mmac
->rotate
+ reloc_value(evalresult
);
2644 rotate
%= (int)mmac
->nparam
;
2646 rotate
+= mmac
->nparam
;
2648 mmac
->rotate
= rotate
;
2650 return DIRECTIVE_FOUND
;
2655 tline
= tline
->next
;
2656 } while (tok_type_(tline
, TOK_WHITESPACE
));
2658 if (tok_type_(tline
, TOK_ID
) &&
2659 nasm_stricmp(tline
->text
, ".nolist") == 0) {
2662 tline
= tline
->next
;
2663 } while (tok_type_(tline
, TOK_WHITESPACE
));
2667 t
= expand_smacro(tline
);
2669 tokval
.t_type
= TOKEN_INVALID
;
2671 evaluate(ppscan
, tptr
, &tokval
, NULL
, pass
, error
, NULL
);
2673 free_tlist(origline
);
2674 return DIRECTIVE_FOUND
;
2677 error(ERR_WARNING
|ERR_PASS1
,
2678 "trailing garbage after expression ignored");
2679 if (!is_simple(evalresult
)) {
2680 error(ERR_NONFATAL
, "non-constant value given to `%%rep'");
2681 return DIRECTIVE_FOUND
;
2683 count
= reloc_value(evalresult
) + 1;
2685 error(ERR_NONFATAL
, "`%%rep' expects a repeat count");
2688 free_tlist(origline
);
2690 tmp_defining
= defining
;
2691 defining
= nasm_malloc(sizeof(MMacro
));
2692 defining
->name
= NULL
; /* flags this macro as a %rep block */
2693 defining
->casesense
= false;
2694 defining
->plus
= false;
2695 defining
->nolist
= nolist
;
2696 defining
->in_progress
= count
;
2697 defining
->nparam_min
= defining
->nparam_max
= 0;
2698 defining
->defaults
= NULL
;
2699 defining
->dlist
= NULL
;
2700 defining
->expansion
= NULL
;
2701 defining
->next_active
= istk
->mstk
;
2702 defining
->rep_nest
= tmp_defining
;
2703 return DIRECTIVE_FOUND
;
2706 if (!defining
|| defining
->name
) {
2707 error(ERR_NONFATAL
, "`%%endrep': no matching `%%rep'");
2708 return DIRECTIVE_FOUND
;
2712 * Now we have a "macro" defined - although it has no name
2713 * and we won't be entering it in the hash tables - we must
2714 * push a macro-end marker for it on to istk->expansion.
2715 * After that, it will take care of propagating itself (a
2716 * macro-end marker line for a macro which is really a %rep
2717 * block will cause the macro to be re-expanded, complete
2718 * with another macro-end marker to ensure the process
2719 * continues) until the whole expansion is forcibly removed
2720 * from istk->expansion by a %exitrep.
2722 l
= nasm_malloc(sizeof(Line
));
2723 l
->next
= istk
->expansion
;
2724 l
->finishes
= defining
;
2726 istk
->expansion
= l
;
2728 istk
->mstk
= defining
;
2730 list
->uplevel(defining
->nolist
? LIST_MACRO_NOLIST
: LIST_MACRO
);
2731 tmp_defining
= defining
;
2732 defining
= defining
->rep_nest
;
2733 free_tlist(origline
);
2734 return DIRECTIVE_FOUND
;
2738 * We must search along istk->expansion until we hit a
2739 * macro-end marker for a macro with no name. Then we set
2740 * its `in_progress' flag to 0.
2742 for (l
= istk
->expansion
; l
; l
= l
->next
)
2743 if (l
->finishes
&& !l
->finishes
->name
)
2747 l
->finishes
->in_progress
= 1;
2749 error(ERR_NONFATAL
, "`%%exitrep' not within `%%rep' block");
2750 free_tlist(origline
);
2751 return DIRECTIVE_FOUND
;
2757 casesense
= (i
== PP_DEFINE
|| i
== PP_XDEFINE
);
2759 tline
= tline
->next
;
2761 tline
= expand_id(tline
);
2762 if (!tline
|| (tline
->type
!= TOK_ID
&&
2763 (tline
->type
!= TOK_PREPROC_ID
||
2764 tline
->text
[1] != '$'))) {
2765 error(ERR_NONFATAL
, "`%s' expects a macro identifier",
2767 free_tlist(origline
);
2768 return DIRECTIVE_FOUND
;
2771 ctx
= get_ctx(tline
->text
, false);
2773 mname
= tline
->text
;
2775 param_start
= tline
= tline
->next
;
2778 /* Expand the macro definition now for %xdefine and %ixdefine */
2779 if ((i
== PP_XDEFINE
) || (i
== PP_IXDEFINE
))
2780 tline
= expand_smacro(tline
);
2782 if (tok_is_(tline
, "(")) {
2784 * This macro has parameters.
2787 tline
= tline
->next
;
2791 error(ERR_NONFATAL
, "parameter identifier expected");
2792 free_tlist(origline
);
2793 return DIRECTIVE_FOUND
;
2795 if (tline
->type
!= TOK_ID
) {
2797 "`%s': parameter identifier expected",
2799 free_tlist(origline
);
2800 return DIRECTIVE_FOUND
;
2802 tline
->type
= TOK_SMAC_PARAM
+ nparam
++;
2803 tline
= tline
->next
;
2805 if (tok_is_(tline
, ",")) {
2806 tline
= tline
->next
;
2808 if (!tok_is_(tline
, ")")) {
2810 "`)' expected to terminate macro template");
2811 free_tlist(origline
);
2812 return DIRECTIVE_FOUND
;
2818 tline
= tline
->next
;
2820 if (tok_type_(tline
, TOK_WHITESPACE
))
2821 last
= tline
, tline
= tline
->next
;
2826 if (t
->type
== TOK_ID
) {
2827 for (tt
= param_start
; tt
; tt
= tt
->next
)
2828 if (tt
->type
>= TOK_SMAC_PARAM
&&
2829 !strcmp(tt
->text
, t
->text
))
2833 t
->next
= macro_start
;
2838 * Good. We now have a macro name, a parameter count, and a
2839 * token list (in reverse order) for an expansion. We ought
2840 * to be OK just to create an SMacro, store it, and let
2841 * free_tlist have the rest of the line (which we have
2842 * carefully re-terminated after chopping off the expansion
2845 define_smacro(ctx
, mname
, casesense
, nparam
, macro_start
);
2846 free_tlist(origline
);
2847 return DIRECTIVE_FOUND
;
2850 tline
= tline
->next
;
2852 tline
= expand_id(tline
);
2853 if (!tline
|| (tline
->type
!= TOK_ID
&&
2854 (tline
->type
!= TOK_PREPROC_ID
||
2855 tline
->text
[1] != '$'))) {
2856 error(ERR_NONFATAL
, "`%%undef' expects a macro identifier");
2857 free_tlist(origline
);
2858 return DIRECTIVE_FOUND
;
2861 error(ERR_WARNING
|ERR_PASS1
,
2862 "trailing garbage after macro name ignored");
2865 /* Find the context that symbol belongs to */
2866 ctx
= get_ctx(tline
->text
, false);
2867 undef_smacro(ctx
, tline
->text
);
2868 free_tlist(origline
);
2869 return DIRECTIVE_FOUND
;
2873 casesense
= (i
== PP_DEFSTR
);
2875 tline
= tline
->next
;
2877 tline
= expand_id(tline
);
2878 if (!tline
|| (tline
->type
!= TOK_ID
&&
2879 (tline
->type
!= TOK_PREPROC_ID
||
2880 tline
->text
[1] != '$'))) {
2881 error(ERR_NONFATAL
, "`%s' expects a macro identifier",
2883 free_tlist(origline
);
2884 return DIRECTIVE_FOUND
;
2887 ctx
= get_ctx(tline
->text
, false);
2889 mname
= tline
->text
;
2891 tline
= expand_smacro(tline
->next
);
2894 while (tok_type_(tline
, TOK_WHITESPACE
))
2895 tline
= delete_Token(tline
);
2897 p
= detoken(tline
, false);
2898 macro_start
= nasm_malloc(sizeof(*macro_start
));
2899 macro_start
->next
= NULL
;
2900 macro_start
->text
= nasm_quote(p
, strlen(p
));
2901 macro_start
->type
= TOK_STRING
;
2902 macro_start
->a
.mac
= NULL
;
2906 * We now have a macro name, an implicit parameter count of
2907 * zero, and a string token to use as an expansion. Create
2908 * and store an SMacro.
2910 define_smacro(ctx
, mname
, casesense
, 0, macro_start
);
2911 free_tlist(origline
);
2912 return DIRECTIVE_FOUND
;
2917 StrList
*xsl
= NULL
;
2918 StrList
**xst
= &xsl
;
2922 tline
= tline
->next
;
2924 tline
= expand_id(tline
);
2925 if (!tline
|| (tline
->type
!= TOK_ID
&&
2926 (tline
->type
!= TOK_PREPROC_ID
||
2927 tline
->text
[1] != '$'))) {
2929 "`%%pathsearch' expects a macro identifier as first parameter");
2930 free_tlist(origline
);
2931 return DIRECTIVE_FOUND
;
2933 ctx
= get_ctx(tline
->text
, false);
2935 mname
= tline
->text
;
2937 tline
= expand_smacro(tline
->next
);
2941 while (tok_type_(t
, TOK_WHITESPACE
))
2944 if (!t
|| (t
->type
!= TOK_STRING
&&
2945 t
->type
!= TOK_INTERNAL_STRING
)) {
2946 error(ERR_NONFATAL
, "`%%pathsearch' expects a file name");
2948 free_tlist(origline
);
2949 return DIRECTIVE_FOUND
; /* but we did _something_ */
2952 error(ERR_WARNING
|ERR_PASS1
,
2953 "trailing garbage after `%%pathsearch' ignored");
2955 if (t
->type
!= TOK_INTERNAL_STRING
)
2956 nasm_unquote(p
, NULL
);
2958 fp
= inc_fopen(p
, &xsl
, &xst
, true);
2961 fclose(fp
); /* Don't actually care about the file */
2963 macro_start
= nasm_malloc(sizeof(*macro_start
));
2964 macro_start
->next
= NULL
;
2965 macro_start
->text
= nasm_quote(p
, strlen(p
));
2966 macro_start
->type
= TOK_STRING
;
2967 macro_start
->a
.mac
= NULL
;
2972 * We now have a macro name, an implicit parameter count of
2973 * zero, and a string token to use as an expansion. Create
2974 * and store an SMacro.
2976 define_smacro(ctx
, mname
, casesense
, 0, macro_start
);
2978 free_tlist(origline
);
2979 return DIRECTIVE_FOUND
;
2985 tline
= tline
->next
;
2987 tline
= expand_id(tline
);
2988 if (!tline
|| (tline
->type
!= TOK_ID
&&
2989 (tline
->type
!= TOK_PREPROC_ID
||
2990 tline
->text
[1] != '$'))) {
2992 "`%%strlen' expects a macro identifier as first parameter");
2993 free_tlist(origline
);
2994 return DIRECTIVE_FOUND
;
2996 ctx
= get_ctx(tline
->text
, false);
2998 mname
= tline
->text
;
3000 tline
= expand_smacro(tline
->next
);
3004 while (tok_type_(t
, TOK_WHITESPACE
))
3006 /* t should now point to the string */
3007 if (t
->type
!= TOK_STRING
) {
3009 "`%%strlen` requires string as second parameter");
3011 free_tlist(origline
);
3012 return DIRECTIVE_FOUND
;
3015 macro_start
= nasm_malloc(sizeof(*macro_start
));
3016 macro_start
->next
= NULL
;
3017 make_tok_num(macro_start
, nasm_unquote(t
->text
, NULL
));
3018 macro_start
->a
.mac
= NULL
;
3021 * We now have a macro name, an implicit parameter count of
3022 * zero, and a numeric token to use as an expansion. Create
3023 * and store an SMacro.
3025 define_smacro(ctx
, mname
, casesense
, 0, macro_start
);
3027 free_tlist(origline
);
3028 return DIRECTIVE_FOUND
;
3033 tline
= tline
->next
;
3035 tline
= expand_id(tline
);
3036 if (!tline
|| (tline
->type
!= TOK_ID
&&
3037 (tline
->type
!= TOK_PREPROC_ID
||
3038 tline
->text
[1] != '$'))) {
3040 "`%%strcat' expects a macro identifier as first parameter");
3041 free_tlist(origline
);
3042 return DIRECTIVE_FOUND
;
3044 ctx
= get_ctx(tline
->text
, false);
3046 mname
= tline
->text
;
3048 tline
= expand_smacro(tline
->next
);
3052 for (t
= tline
; t
; t
= t
->next
) {
3054 case TOK_WHITESPACE
:
3057 len
+= t
->a
.len
= nasm_unquote(t
->text
, NULL
);
3060 if (!strcmp(t
->text
, ",")) /* permit comma separators */
3062 /* else fall through */
3065 "non-string passed to `%%strcat' (%d)", t
->type
);
3067 free_tlist(origline
);
3068 return DIRECTIVE_FOUND
;
3072 p
= pp
= nasm_malloc(len
);
3074 for (t
= tline
; t
; t
= t
->next
) {
3075 if (t
->type
== TOK_STRING
) {
3076 memcpy(p
, t
->text
, t
->a
.len
);
3082 * We now have a macro name, an implicit parameter count of
3083 * zero, and a numeric token to use as an expansion. Create
3084 * and store an SMacro.
3086 macro_start
= new_Token(NULL
, TOK_STRING
, NULL
, 0);
3087 macro_start
->text
= nasm_quote(pp
, len
);
3089 define_smacro(ctx
, mname
, casesense
, 0, macro_start
);
3091 free_tlist(origline
);
3092 return DIRECTIVE_FOUND
;
3101 tline
= tline
->next
;
3103 tline
= expand_id(tline
);
3104 if (!tline
|| (tline
->type
!= TOK_ID
&&
3105 (tline
->type
!= TOK_PREPROC_ID
||
3106 tline
->text
[1] != '$'))) {
3108 "`%%substr' expects a macro identifier as first parameter");
3109 free_tlist(origline
);
3110 return DIRECTIVE_FOUND
;
3112 ctx
= get_ctx(tline
->text
, false);
3114 mname
= tline
->text
;
3116 tline
= expand_smacro(tline
->next
);
3120 while (tok_type_(t
, TOK_WHITESPACE
))
3123 /* t should now point to the string */
3124 if (t
->type
!= TOK_STRING
) {
3126 "`%%substr` requires string as second parameter");
3128 free_tlist(origline
);
3129 return DIRECTIVE_FOUND
;
3134 tokval
.t_type
= TOKEN_INVALID
;
3135 evalresult
= evaluate(ppscan
, tptr
, &tokval
, NULL
,
3139 free_tlist(origline
);
3140 return DIRECTIVE_FOUND
;
3141 } else if (!is_simple(evalresult
)) {
3142 error(ERR_NONFATAL
, "non-constant value given to `%%substr`");
3144 free_tlist(origline
);
3145 return DIRECTIVE_FOUND
;
3147 a1
= evalresult
->value
-1;
3149 while (tok_type_(tt
, TOK_WHITESPACE
))
3152 a2
= 1; /* Backwards compatibility: one character */
3154 tokval
.t_type
= TOKEN_INVALID
;
3155 evalresult
= evaluate(ppscan
, tptr
, &tokval
, NULL
,
3159 free_tlist(origline
);
3160 return DIRECTIVE_FOUND
;
3161 } else if (!is_simple(evalresult
)) {
3162 error(ERR_NONFATAL
, "non-constant value given to `%%substr`");
3164 free_tlist(origline
);
3165 return DIRECTIVE_FOUND
;
3167 a2
= evalresult
->value
;
3170 len
= nasm_unquote(t
->text
, NULL
);
3173 if (a1
+a2
> (int64_t)len
)
3176 macro_start
= nasm_malloc(sizeof(*macro_start
));
3177 macro_start
->next
= NULL
;
3178 macro_start
->text
= nasm_quote((a1
< 0) ? "" : t
->text
+a1
, a2
);
3179 macro_start
->type
= TOK_STRING
;
3180 macro_start
->a
.mac
= NULL
;
3183 * We now have a macro name, an implicit parameter count of
3184 * zero, and a numeric token to use as an expansion. Create
3185 * and store an SMacro.
3187 define_smacro(ctx
, mname
, casesense
, 0, macro_start
);
3189 free_tlist(origline
);
3190 return DIRECTIVE_FOUND
;
3195 casesense
= (i
== PP_ASSIGN
);
3197 tline
= tline
->next
;
3199 tline
= expand_id(tline
);
3200 if (!tline
|| (tline
->type
!= TOK_ID
&&
3201 (tline
->type
!= TOK_PREPROC_ID
||
3202 tline
->text
[1] != '$'))) {
3204 "`%%%sassign' expects a macro identifier",
3205 (i
== PP_IASSIGN
? "i" : ""));
3206 free_tlist(origline
);
3207 return DIRECTIVE_FOUND
;
3209 ctx
= get_ctx(tline
->text
, false);
3211 mname
= tline
->text
;
3213 tline
= expand_smacro(tline
->next
);
3218 tokval
.t_type
= TOKEN_INVALID
;
3220 evaluate(ppscan
, tptr
, &tokval
, NULL
, pass
, error
, NULL
);
3223 free_tlist(origline
);
3224 return DIRECTIVE_FOUND
;
3228 error(ERR_WARNING
|ERR_PASS1
,
3229 "trailing garbage after expression ignored");
3231 if (!is_simple(evalresult
)) {
3233 "non-constant value given to `%%%sassign'",
3234 (i
== PP_IASSIGN
? "i" : ""));
3235 free_tlist(origline
);
3236 return DIRECTIVE_FOUND
;
3239 macro_start
= nasm_malloc(sizeof(*macro_start
));
3240 macro_start
->next
= NULL
;
3241 make_tok_num(macro_start
, reloc_value(evalresult
));
3242 macro_start
->a
.mac
= NULL
;
3245 * We now have a macro name, an implicit parameter count of
3246 * zero, and a numeric token to use as an expansion. Create
3247 * and store an SMacro.
3249 define_smacro(ctx
, mname
, casesense
, 0, macro_start
);
3250 free_tlist(origline
);
3251 return DIRECTIVE_FOUND
;
3255 * Syntax is `%line nnn[+mmm] [filename]'
3257 tline
= tline
->next
;
3259 if (!tok_type_(tline
, TOK_NUMBER
)) {
3260 error(ERR_NONFATAL
, "`%%line' expects line number");
3261 free_tlist(origline
);
3262 return DIRECTIVE_FOUND
;
3264 k
= readnum(tline
->text
, &err
);
3266 tline
= tline
->next
;
3267 if (tok_is_(tline
, "+")) {
3268 tline
= tline
->next
;
3269 if (!tok_type_(tline
, TOK_NUMBER
)) {
3270 error(ERR_NONFATAL
, "`%%line' expects line increment");
3271 free_tlist(origline
);
3272 return DIRECTIVE_FOUND
;
3274 m
= readnum(tline
->text
, &err
);
3275 tline
= tline
->next
;
3281 nasm_free(src_set_fname(detoken(tline
, false)));
3283 free_tlist(origline
);
3284 return DIRECTIVE_FOUND
;
3288 "preprocessor directive `%s' not yet implemented",
3290 return DIRECTIVE_FOUND
;
3295 * Ensure that a macro parameter contains a condition code and
3296 * nothing else. Return the condition code index if so, or -1
3299 static int find_cc(Token
* t
)
3305 return -1; /* Probably a %+ without a space */
3308 if (t
->type
!= TOK_ID
)
3312 if (tt
&& (tt
->type
!= TOK_OTHER
|| strcmp(tt
->text
, ",")))
3316 j
= elements(conditions
);
3319 m
= nasm_stricmp(t
->text
, conditions
[k
]);
3335 * Expand MMacro-local things: parameter references (%0, %n, %+n,
3336 * %-n) and MMacro-local identifiers (%%foo).
3338 static Token
*expand_mmac_params(Token
* tline
)
3340 Token
*t
, *tt
, **tail
, *thead
;
3346 if (tline
->type
== TOK_PREPROC_ID
&&
3347 (((tline
->text
[1] == '+' || tline
->text
[1] == '-')
3348 && tline
->text
[2]) || tline
->text
[1] == '%'
3349 || (tline
->text
[1] >= '0' && tline
->text
[1] <= '9'))) {
3351 int type
= 0, cc
; /* type = 0 to placate optimisers */
3358 tline
= tline
->next
;
3361 while (mac
&& !mac
->name
) /* avoid mistaking %reps for macros */
3362 mac
= mac
->next_active
;
3364 error(ERR_NONFATAL
, "`%s': not in a macro call", t
->text
);
3366 switch (t
->text
[1]) {
3368 * We have to make a substitution of one of the
3369 * forms %1, %-1, %+1, %%foo, %0.
3373 snprintf(tmpbuf
, sizeof(tmpbuf
), "%d", mac
->nparam
);
3374 text
= nasm_strdup(tmpbuf
);
3378 snprintf(tmpbuf
, sizeof(tmpbuf
), "..@%"PRIu64
".",
3380 text
= nasm_strcat(tmpbuf
, t
->text
+ 2);
3383 n
= atoi(t
->text
+ 2) - 1;
3384 if (n
>= mac
->nparam
)
3387 if (mac
->nparam
> 1)
3388 n
= (n
+ mac
->rotate
) % mac
->nparam
;
3389 tt
= mac
->params
[n
];
3394 "macro parameter %d is not a condition code",
3399 if (inverse_ccs
[cc
] == -1) {
3401 "condition code `%s' is not invertible",
3406 nasm_strdup(conditions
[inverse_ccs
[cc
]]);
3410 n
= atoi(t
->text
+ 2) - 1;
3411 if (n
>= mac
->nparam
)
3414 if (mac
->nparam
> 1)
3415 n
= (n
+ mac
->rotate
) % mac
->nparam
;
3416 tt
= mac
->params
[n
];
3421 "macro parameter %d is not a condition code",
3426 text
= nasm_strdup(conditions
[cc
]);
3430 n
= atoi(t
->text
+ 1) - 1;
3431 if (n
>= mac
->nparam
)
3434 if (mac
->nparam
> 1)
3435 n
= (n
+ mac
->rotate
) % mac
->nparam
;
3436 tt
= mac
->params
[n
];
3439 for (i
= 0; i
< mac
->paramlen
[n
]; i
++) {
3440 *tail
= new_Token(NULL
, tt
->type
, tt
->text
, 0);
3441 tail
= &(*tail
)->next
;
3445 text
= NULL
; /* we've done it here */
3461 tline
= tline
->next
;
3468 for (; t
&& (tt
= t
->next
) != NULL
; t
= t
->next
)
3470 case TOK_WHITESPACE
:
3471 if (tt
->type
== TOK_WHITESPACE
) {
3472 t
->next
= delete_Token(tt
);
3477 if (tt
->type
== t
->type
|| tt
->type
== TOK_NUMBER
) {
3478 char *tmp
= nasm_strcat(t
->text
, tt
->text
);
3481 t
->next
= delete_Token(tt
);
3492 * Expand all single-line macro calls made in the given line.
3493 * Return the expanded version of the line. The original is deemed
3494 * to be destroyed in the process. (In reality we'll just move
3495 * Tokens from input to output a lot of the time, rather than
3496 * actually bothering to destroy and replicate.)
3498 #define DEADMAN_LIMIT (1 << 20)
3500 static Token
*expand_smacro(Token
* tline
)
3502 Token
*t
, *tt
, *mstart
, **tail
, *thead
;
3503 struct hash_table
*smtbl
;
3504 SMacro
*head
= NULL
, *m
;
3507 unsigned int nparam
, sparam
;
3508 int brackets
, rescan
;
3509 Token
*org_tline
= tline
;
3512 int deadman
= DEADMAN_LIMIT
;
3515 * Trick: we should avoid changing the start token pointer since it can
3516 * be contained in "next" field of other token. Because of this
3517 * we allocate a copy of first token and work with it; at the end of
3518 * routine we copy it back
3522 new_Token(org_tline
->next
, org_tline
->type
, org_tline
->text
,
3524 tline
->a
.mac
= org_tline
->a
.mac
;
3525 nasm_free(org_tline
->text
);
3526 org_tline
->text
= NULL
;
3533 while (tline
) { /* main token loop */
3535 error(ERR_NONFATAL
, "interminable macro recursion");
3539 if ((mname
= tline
->text
)) {
3540 /* if this token is a local macro, look in local context */
3543 if (tline
->type
== TOK_ID
|| tline
->type
== TOK_PREPROC_ID
) {
3544 ctx
= get_ctx(mname
, true);
3546 smtbl
= &ctx
->localmac
;
3548 head
= (SMacro
*) hash_findix(smtbl
, mname
);
3551 * We've hit an identifier. As in is_mmacro below, we first
3552 * check whether the identifier is a single-line macro at
3553 * all, then think about checking for parameters if
3556 for (m
= head
; m
; m
= m
->next
)
3557 if (!mstrcmp(m
->name
, mname
, m
->casesense
))
3563 if (m
->nparam
== 0) {
3565 * Simple case: the macro is parameterless. Discard the
3566 * one token that the macro call took, and push the
3567 * expansion back on the to-do stack.
3569 if (!m
->expansion
) {
3570 if (!strcmp("__FILE__", m
->name
)) {
3573 src_get(&num
, &file
);
3574 tline
->text
= nasm_quote(file
, strlen(file
));
3575 tline
->type
= TOK_STRING
;
3579 if (!strcmp("__LINE__", m
->name
)) {
3580 nasm_free(tline
->text
);
3581 make_tok_num(tline
, src_get_linnum());
3584 if (!strcmp("__BITS__", m
->name
)) {
3585 nasm_free(tline
->text
);
3586 make_tok_num(tline
, globalbits
);
3589 tline
= delete_Token(tline
);
3594 * Complicated case: at least one macro with this name
3595 * exists and takes parameters. We must find the
3596 * parameters in the call, count them, find the SMacro
3597 * that corresponds to that form of the macro call, and
3598 * substitute for the parameters when we expand. What a
3601 /*tline = tline->next;
3602 skip_white_(tline); */
3605 while (tok_type_(t
, TOK_SMAC_END
)) {
3606 t
->a
.mac
->in_progress
= false;
3608 t
= tline
->next
= delete_Token(t
);
3611 } while (tok_type_(tline
, TOK_WHITESPACE
));
3612 if (!tok_is_(tline
, "(")) {
3614 * This macro wasn't called with parameters: ignore
3615 * the call. (Behaviour borrowed from gnu cpp.)
3624 sparam
= PARAM_DELTA
;
3625 params
= nasm_malloc(sparam
* sizeof(Token
*));
3626 params
[0] = tline
->next
;
3627 paramsize
= nasm_malloc(sparam
* sizeof(int));
3629 while (true) { /* parameter loop */
3631 * For some unusual expansions
3632 * which concatenates function call
3635 while (tok_type_(t
, TOK_SMAC_END
)) {
3636 t
->a
.mac
->in_progress
= false;
3638 t
= tline
->next
= delete_Token(t
);
3644 "macro call expects terminating `)'");
3647 if (tline
->type
== TOK_WHITESPACE
3649 if (paramsize
[nparam
])
3652 params
[nparam
] = tline
->next
;
3653 continue; /* parameter loop */
3655 if (tline
->type
== TOK_OTHER
3656 && tline
->text
[1] == 0) {
3657 char ch
= tline
->text
[0];
3658 if (ch
== ',' && !paren
&& brackets
<= 0) {
3659 if (++nparam
>= sparam
) {
3660 sparam
+= PARAM_DELTA
;
3661 params
= nasm_realloc(params
,
3666 nasm_realloc(paramsize
,
3670 params
[nparam
] = tline
->next
;
3671 paramsize
[nparam
] = 0;
3673 continue; /* parameter loop */
3676 (brackets
> 0 || (brackets
== 0 &&
3677 !paramsize
[nparam
])))
3679 if (!(brackets
++)) {
3680 params
[nparam
] = tline
->next
;
3681 continue; /* parameter loop */
3684 if (ch
== '}' && brackets
> 0)
3685 if (--brackets
== 0) {
3687 continue; /* parameter loop */
3689 if (ch
== '(' && !brackets
)
3691 if (ch
== ')' && brackets
<= 0)
3697 error(ERR_NONFATAL
, "braces do not "
3698 "enclose all of macro parameter");
3700 paramsize
[nparam
] += white
+ 1;
3702 } /* parameter loop */
3704 while (m
&& (m
->nparam
!= nparam
||
3705 mstrcmp(m
->name
, mname
,
3709 error(ERR_WARNING
|ERR_PASS1
|ERR_WARN_MNP
,
3710 "macro `%s' exists, "
3711 "but not taking %d parameters",
3712 mstart
->text
, nparam
);
3715 if (m
&& m
->in_progress
)
3717 if (!m
) { /* in progess or didn't find '(' or wrong nparam */
3719 * Design question: should we handle !tline, which
3720 * indicates missing ')' here, or expand those
3721 * macros anyway, which requires the (t) test a few
3725 nasm_free(paramsize
);
3729 * Expand the macro: we are placed on the last token of the
3730 * call, so that we can easily split the call from the
3731 * following tokens. We also start by pushing an SMAC_END
3732 * token for the cycle removal.
3739 tt
= new_Token(tline
, TOK_SMAC_END
, NULL
, 0);
3741 m
->in_progress
= true;
3743 for (t
= m
->expansion
; t
; t
= t
->next
) {
3744 if (t
->type
>= TOK_SMAC_PARAM
) {
3745 Token
*pcopy
= tline
, **ptail
= &pcopy
;
3749 ttt
= params
[t
->type
- TOK_SMAC_PARAM
];
3750 for (i
= paramsize
[t
->type
- TOK_SMAC_PARAM
];
3753 new_Token(tline
, ttt
->type
, ttt
->text
,
3759 } else if (t
->type
== TOK_PREPROC_Q
) {
3760 tt
= new_Token(tline
, TOK_ID
, mname
, 0);
3762 } else if (t
->type
== TOK_PREPROC_QQ
) {
3763 tt
= new_Token(tline
, TOK_ID
, m
->name
, 0);
3766 tt
= new_Token(tline
, t
->type
, t
->text
, 0);
3772 * Having done that, get rid of the macro call, and clean
3773 * up the parameters.
3776 nasm_free(paramsize
);
3778 continue; /* main token loop */
3783 if (tline
->type
== TOK_SMAC_END
) {
3784 tline
->a
.mac
->in_progress
= false;
3785 tline
= delete_Token(tline
);
3788 tline
= tline
->next
;
3796 * Now scan the entire line and look for successive TOK_IDs that resulted
3797 * after expansion (they can't be produced by tokenize()). The successive
3798 * TOK_IDs should be concatenated.
3799 * Also we look for %+ tokens and concatenate the tokens before and after
3800 * them (without white spaces in between).
3805 while (t
&& t
->type
!= TOK_ID
&& t
->type
!= TOK_PREPROC_ID
)
3809 if (t
->next
->type
== TOK_ID
||
3810 t
->next
->type
== TOK_PREPROC_ID
||
3811 t
->next
->type
== TOK_NUMBER
) {
3812 char *p
= nasm_strcat(t
->text
, t
->next
->text
);
3814 t
->next
= delete_Token(t
->next
);
3817 } else if (t
->next
->type
== TOK_WHITESPACE
&& t
->next
->next
&&
3818 t
->next
->next
->type
== TOK_PREPROC_ID
&&
3819 strcmp(t
->next
->next
->text
, "%+") == 0) {
3820 /* free the next whitespace, the %+ token and next whitespace */
3822 for (i
= 1; i
<= 3; i
++) {
3824 || (i
!= 2 && t
->next
->type
!= TOK_WHITESPACE
))
3826 t
->next
= delete_Token(t
->next
);
3831 /* If we concatenaded something, re-scan the line for macros */
3839 *org_tline
= *thead
;
3840 /* since we just gave text to org_line, don't free it */
3842 delete_Token(thead
);
3844 /* the expression expanded to empty line;
3845 we can't return NULL for some reasons
3846 we just set the line to a single WHITESPACE token. */
3847 memset(org_tline
, 0, sizeof(*org_tline
));
3848 org_tline
->text
= NULL
;
3849 org_tline
->type
= TOK_WHITESPACE
;
3858 * Similar to expand_smacro but used exclusively with macro identifiers
3859 * right before they are fetched in. The reason is that there can be
3860 * identifiers consisting of several subparts. We consider that if there
3861 * are more than one element forming the name, user wants a expansion,
3862 * otherwise it will be left as-is. Example:
3866 * the identifier %$abc will be left as-is so that the handler for %define
3867 * will suck it and define the corresponding value. Other case:
3869 * %define _%$abc cde
3871 * In this case user wants name to be expanded *before* %define starts
3872 * working, so we'll expand %$abc into something (if it has a value;
3873 * otherwise it will be left as-is) then concatenate all successive
3876 static Token
*expand_id(Token
* tline
)
3878 Token
*cur
, *oldnext
= NULL
;
3880 if (!tline
|| !tline
->next
)
3885 (cur
->next
->type
== TOK_ID
||
3886 cur
->next
->type
== TOK_PREPROC_ID
3887 || cur
->next
->type
== TOK_NUMBER
))
3890 /* If identifier consists of just one token, don't expand */
3895 oldnext
= cur
->next
; /* Detach the tail past identifier */
3896 cur
->next
= NULL
; /* so that expand_smacro stops here */
3899 tline
= expand_smacro(tline
);
3902 /* expand_smacro possibly changhed tline; re-scan for EOL */
3904 while (cur
&& cur
->next
)
3907 cur
->next
= oldnext
;
3914 * Expand indirect tokens, %[...]. Just like expand_smacro(),
3915 * the input is considered destroyed.
3917 static Token
*expand_indirect(Token
* tline
, int level
)
3919 const int max_indirect_level
= 1000;
3920 Token
*t
, *thead
, **tp
;
3924 if (level
>= max_indirect_level
) {
3925 error(ERR_NONFATAL
, "interminable indirect expansion");
3930 if (t
->type
!= TOK_INDIRECT
) {
3934 it
= tokenize(t
->text
);
3935 it
= expand_indirect(it
, level
+1);
3936 it
= expand_smacro(it
);
3939 switch (thead
? thead
->type
: TOK_NONE
) {
3940 case TOK_WHITESPACE
:
3941 skip
= (it
->type
== TOK_WHITESPACE
);
3945 if (it
->type
== thead
->type
|| it
->type
== TOK_NUMBER
) {
3946 char *tmp
= nasm_strcat(thead
->text
, it
->text
);
3947 nasm_free(thead
->text
);
3956 it
= delete_Token(it
);
3963 *tp
= thead
= t
->next
;
3964 t
= delete_Token(t
);
3972 * Determine whether the given line constitutes a multi-line macro
3973 * call, and return the MMacro structure called if so. Doesn't have
3974 * to check for an initial label - that's taken care of in
3975 * expand_mmacro - but must check numbers of parameters. Guaranteed
3976 * to be called with tline->type == TOK_ID, so the putative macro
3977 * name is easy to find.
3979 static MMacro
*is_mmacro(Token
* tline
, Token
*** params_array
)
3985 head
= (MMacro
*) hash_findix(&mmacros
, tline
->text
);
3988 * Efficiency: first we see if any macro exists with the given
3989 * name. If not, we can return NULL immediately. _Then_ we
3990 * count the parameters, and then we look further along the
3991 * list if necessary to find the proper MMacro.
3993 for (m
= head
; m
; m
= m
->next
)
3994 if (!mstrcmp(m
->name
, tline
->text
, m
->casesense
))
4000 * OK, we have a potential macro. Count and demarcate the
4003 count_mmac_params(tline
->next
, &nparam
, ¶ms
);
4006 * So we know how many parameters we've got. Find the MMacro
4007 * structure that handles this number.
4010 if (m
->nparam_min
<= nparam
4011 && (m
->plus
|| nparam
<= m
->nparam_max
)) {
4013 * This one is right. Just check if cycle removal
4014 * prohibits us using it before we actually celebrate...
4016 if (m
->in_progress
) {
4019 "self-reference in multi-line macro `%s'", m
->name
);
4025 * It's right, and we can use it. Add its default
4026 * parameters to the end of our list if necessary.
4028 if (m
->defaults
&& nparam
< m
->nparam_min
+ m
->ndefs
) {
4030 nasm_realloc(params
,
4031 ((m
->nparam_min
+ m
->ndefs
+
4032 1) * sizeof(*params
)));
4033 while (nparam
< m
->nparam_min
+ m
->ndefs
) {
4034 params
[nparam
] = m
->defaults
[nparam
- m
->nparam_min
];
4039 * If we've gone over the maximum parameter count (and
4040 * we're in Plus mode), ignore parameters beyond
4043 if (m
->plus
&& nparam
> m
->nparam_max
)
4044 nparam
= m
->nparam_max
;
4046 * Then terminate the parameter list, and leave.
4048 if (!params
) { /* need this special case */
4049 params
= nasm_malloc(sizeof(*params
));
4052 params
[nparam
] = NULL
;
4053 *params_array
= params
;
4057 * This one wasn't right: look for the next one with the
4060 for (m
= m
->next
; m
; m
= m
->next
)
4061 if (!mstrcmp(m
->name
, tline
->text
, m
->casesense
))
4066 * After all that, we didn't find one with the right number of
4067 * parameters. Issue a warning, and fail to expand the macro.
4069 error(ERR_WARNING
|ERR_PASS1
|ERR_WARN_MNP
,
4070 "macro `%s' exists, but not taking %d parameters",
4071 tline
->text
, nparam
);
4077 * Expand the multi-line macro call made by the given line, if
4078 * there is one to be expanded. If there is, push the expansion on
4079 * istk->expansion and return 1. Otherwise return 0.
4081 static int expand_mmacro(Token
* tline
)
4083 Token
*startline
= tline
;
4084 Token
*label
= NULL
;
4085 int dont_prepend
= 0;
4086 Token
**params
, *t
, *mtok
, *tt
;
4089 int i
, nparam
, *paramlen
;
4094 /* if (!tok_type_(t, TOK_ID)) Lino 02/25/02 */
4095 if (!tok_type_(t
, TOK_ID
) && !tok_type_(t
, TOK_PREPROC_ID
))
4098 m
= is_mmacro(t
, ¶ms
);
4104 * We have an id which isn't a macro call. We'll assume
4105 * it might be a label; we'll also check to see if a
4106 * colon follows it. Then, if there's another id after
4107 * that lot, we'll check it again for macro-hood.
4111 if (tok_type_(t
, TOK_WHITESPACE
))
4112 last
= t
, t
= t
->next
;
4113 if (tok_is_(t
, ":")) {
4115 last
= t
, t
= t
->next
;
4116 if (tok_type_(t
, TOK_WHITESPACE
))
4117 last
= t
, t
= t
->next
;
4119 if (!tok_type_(t
, TOK_ID
) || (m
= is_mmacro(t
, ¶ms
)) == NULL
)
4127 * Fix up the parameters: this involves stripping leading and
4128 * trailing whitespace, then stripping braces if they are
4131 for (nparam
= 0; params
[nparam
]; nparam
++) ;
4132 paramlen
= nparam
? nasm_malloc(nparam
* sizeof(*paramlen
)) : NULL
;
4134 for (i
= 0; params
[i
]; i
++) {
4136 int comma
= (!m
->plus
|| i
< nparam
- 1);
4140 if (tok_is_(t
, "{"))
4141 t
= t
->next
, brace
= true, comma
= false;
4145 if (comma
&& t
->type
== TOK_OTHER
&& !strcmp(t
->text
, ","))
4146 break; /* ... because we have hit a comma */
4147 if (comma
&& t
->type
== TOK_WHITESPACE
4148 && tok_is_(t
->next
, ","))
4149 break; /* ... or a space then a comma */
4150 if (brace
&& t
->type
== TOK_OTHER
&& !strcmp(t
->text
, "}"))
4151 break; /* ... or a brace */
4158 * OK, we have a MMacro structure together with a set of
4159 * parameters. We must now go through the expansion and push
4160 * copies of each Line on to istk->expansion. Substitution of
4161 * parameter tokens and macro-local tokens doesn't get done
4162 * until the single-line macro substitution process; this is
4163 * because delaying them allows us to change the semantics
4164 * later through %rotate.
4166 * First, push an end marker on to istk->expansion, mark this
4167 * macro as in progress, and set up its invocation-specific
4170 ll
= nasm_malloc(sizeof(Line
));
4171 ll
->next
= istk
->expansion
;
4174 istk
->expansion
= ll
;
4176 m
->in_progress
= true;
4181 m
->paramlen
= paramlen
;
4182 m
->unique
= unique
++;
4185 m
->next_active
= istk
->mstk
;
4188 for (l
= m
->expansion
; l
; l
= l
->next
) {
4191 ll
= nasm_malloc(sizeof(Line
));
4192 ll
->finishes
= NULL
;
4193 ll
->next
= istk
->expansion
;
4194 istk
->expansion
= ll
;
4197 for (t
= l
->first
; t
; t
= t
->next
) {
4201 tt
= *tail
= new_Token(NULL
, TOK_ID
, mname
, 0);
4203 case TOK_PREPROC_QQ
:
4204 tt
= *tail
= new_Token(NULL
, TOK_ID
, m
->name
, 0);
4206 case TOK_PREPROC_ID
:
4207 if (t
->text
[1] == '0' && t
->text
[2] == '0') {
4215 tt
= *tail
= new_Token(NULL
, x
->type
, x
->text
, 0);
4224 * If we had a label, push it on as the first line of
4225 * the macro expansion.
4228 if (dont_prepend
< 0)
4229 free_tlist(startline
);
4231 ll
= nasm_malloc(sizeof(Line
));
4232 ll
->finishes
= NULL
;
4233 ll
->next
= istk
->expansion
;
4234 istk
->expansion
= ll
;
4235 ll
->first
= startline
;
4236 if (!dont_prepend
) {
4238 label
= label
->next
;
4239 label
->next
= tt
= new_Token(NULL
, TOK_OTHER
, ":", 0);
4244 list
->uplevel(m
->nolist
? LIST_MACRO_NOLIST
: LIST_MACRO
);
4249 /* The function that actually does the error reporting */
4250 static void verror(int severity
, const char *fmt
, va_list arg
)
4254 vsnprintf(buff
, sizeof(buff
), fmt
, arg
);
4256 if (istk
&& istk
->mstk
&& istk
->mstk
->name
)
4257 _error(severity
, "(%s:%d) %s", istk
->mstk
->name
,
4258 istk
->mstk
->lineno
, buff
);
4260 _error(severity
, "%s", buff
);
4264 * Since preprocessor always operate only on the line that didn't
4265 * arrived yet, we should always use ERR_OFFBY1.
4267 static void error(int severity
, const char *fmt
, ...)
4271 /* If we're in a dead branch of IF or something like it, ignore the error */
4272 if (istk
&& istk
->conds
&& !emitting(istk
->conds
->state
))
4276 verror(severity
, fmt
, arg
);
4281 * Because %else etc are evaluated in the state context
4282 * of the previous branch, errors might get lost with error():
4283 * %if 0 ... %else trailing garbage ... %endif
4284 * So %else etc should report errors with this function.
4286 static void error_precond(int severity
, const char *fmt
, ...)
4290 /* Only ignore the error if it's really in a dead branch */
4291 if (istk
&& istk
->conds
&& istk
->conds
->state
== COND_NEVER
)
4295 verror(severity
, fmt
, arg
);
4300 pp_reset(char *file
, int apass
, efunc errfunc
, evalfunc eval
,
4301 ListGen
* listgen
, StrList
**deplist
)
4307 istk
= nasm_malloc(sizeof(Include
));
4310 istk
->expansion
= NULL
;
4312 istk
->fp
= fopen(file
, "r");
4314 src_set_fname(nasm_strdup(file
));
4318 error(ERR_FATAL
|ERR_NOFILE
, "unable to open input file `%s'",
4321 nested_mac_count
= 0;
4322 nested_rep_count
= 0;
4325 if (tasm_compatible_mode
) {
4326 stdmacpos
= nasm_stdmac
;
4328 stdmacpos
= nasm_stdmac_after_tasm
;
4330 any_extrastdmac
= extrastdmac
&& *extrastdmac
;
4336 * 0 for dependencies, 1 for preparatory passes, 2 for final pass.
4337 * The caller, however, will also pass in 3 for preprocess-only so
4338 * we can set __PASS__ accordingly.
4340 pass
= apass
> 2 ? 2 : apass
;
4342 dephead
= deptail
= deplist
;
4344 StrList
*sl
= nasm_malloc(strlen(file
)+1+sizeof sl
->next
);
4346 strcpy(sl
->str
, file
);
4348 deptail
= &sl
->next
;
4352 * Define the __PASS__ macro. This is defined here unlike
4353 * all the other builtins, because it is special -- it varies between
4356 t
= nasm_malloc(sizeof(*t
));
4358 make_tok_num(t
, apass
);
4360 define_smacro(NULL
, "__PASS__", true, 0, t
);
4363 static char *pp_getline(void)
4370 * Fetch a tokenized line, either from the macro-expansion
4371 * buffer or from the input file.
4374 while (istk
->expansion
&& istk
->expansion
->finishes
) {
4375 Line
*l
= istk
->expansion
;
4376 if (!l
->finishes
->name
&& l
->finishes
->in_progress
> 1) {
4380 * This is a macro-end marker for a macro with no
4381 * name, which means it's not really a macro at all
4382 * but a %rep block, and the `in_progress' field is
4383 * more than 1, meaning that we still need to
4384 * repeat. (1 means the natural last repetition; 0
4385 * means termination by %exitrep.) We have
4386 * therefore expanded up to the %endrep, and must
4387 * push the whole block on to the expansion buffer
4388 * again. We don't bother to remove the macro-end
4389 * marker: we'd only have to generate another one
4392 l
->finishes
->in_progress
--;
4393 for (l
= l
->finishes
->expansion
; l
; l
= l
->next
) {
4394 Token
*t
, *tt
, **tail
;
4396 ll
= nasm_malloc(sizeof(Line
));
4397 ll
->next
= istk
->expansion
;
4398 ll
->finishes
= NULL
;
4402 for (t
= l
->first
; t
; t
= t
->next
) {
4403 if (t
->text
|| t
->type
== TOK_WHITESPACE
) {
4405 new_Token(NULL
, t
->type
, t
->text
, 0);
4410 istk
->expansion
= ll
;
4414 * Check whether a `%rep' was started and not ended
4415 * within this macro expansion. This can happen and
4416 * should be detected. It's a fatal error because
4417 * I'm too confused to work out how to recover
4423 "defining with name in expansion");
4424 else if (istk
->mstk
->name
)
4426 "`%%rep' without `%%endrep' within"
4427 " expansion of macro `%s'",
4432 * FIXME: investigate the relationship at this point between
4433 * istk->mstk and l->finishes
4436 MMacro
*m
= istk
->mstk
;
4437 istk
->mstk
= m
->next_active
;
4440 * This was a real macro call, not a %rep, and
4441 * therefore the parameter information needs to
4444 nasm_free(m
->params
);
4445 free_tlist(m
->iline
);
4446 nasm_free(m
->paramlen
);
4447 l
->finishes
->in_progress
= false;
4451 istk
->expansion
= l
->next
;
4453 list
->downlevel(LIST_MACRO
);
4456 while (1) { /* until we get a line we can use */
4458 if (istk
->expansion
) { /* from a macro expansion */
4460 Line
*l
= istk
->expansion
;
4462 istk
->mstk
->lineno
++;
4464 istk
->expansion
= l
->next
;
4466 p
= detoken(tline
, false);
4467 list
->line(LIST_MACRO
, p
);
4472 if (line
) { /* from the current input file */
4473 line
= prepreproc(line
);
4474 tline
= tokenize(line
);
4479 * The current file has ended; work down the istk
4486 "expected `%%endif' before end of file");
4487 /* only set line and file name if there's a next node */
4489 src_set_linnum(i
->lineno
);
4490 nasm_free(src_set_fname(i
->fname
));
4493 list
->downlevel(LIST_INCLUDE
);
4497 if (istk
->expansion
&& istk
->expansion
->finishes
)
4503 * We must expand MMacro parameters and MMacro-local labels
4504 * _before_ we plunge into directive processing, to cope
4505 * with things like `%define something %1' such as STRUC
4506 * uses. Unless we're _defining_ a MMacro, in which case
4507 * those tokens should be left alone to go into the
4508 * definition; and unless we're in a non-emitting
4509 * condition, in which case we don't want to meddle with
4512 if (!defining
&& !(istk
->conds
&& !emitting(istk
->conds
->state
))
4513 && !(istk
->mstk
&& !istk
->mstk
->in_progress
)) {
4514 tline
= expand_indirect(tline
,0);
4515 tline
= expand_mmac_params(tline
);
4519 * Check the line to see if it's a preprocessor directive.
4521 if (do_directive(tline
) == DIRECTIVE_FOUND
) {
4523 } else if (defining
) {
4525 * We're defining a multi-line macro. We emit nothing
4527 * shove the tokenized line on to the macro definition.
4529 Line
*l
= nasm_malloc(sizeof(Line
));
4530 l
->next
= defining
->expansion
;
4533 defining
->expansion
= l
;
4535 } else if (istk
->conds
&& !emitting(istk
->conds
->state
)) {
4537 * We're in a non-emitting branch of a condition block.
4538 * Emit nothing at all, not even a blank line: when we
4539 * emerge from the condition we'll give a line-number
4540 * directive so we keep our place correctly.
4544 } else if (istk
->mstk
&& !istk
->mstk
->in_progress
) {
4546 * We're in a %rep block which has been terminated, so
4547 * we're walking through to the %endrep without
4548 * emitting anything. Emit nothing at all, not even a
4549 * blank line: when we emerge from the %rep block we'll
4550 * give a line-number directive so we keep our place
4556 tline
= expand_smacro(tline
);
4557 if (!expand_mmacro(tline
)) {
4559 * De-tokenize the line again, and emit it.
4561 line
= detoken(tline
, true);
4565 continue; /* expand_mmacro calls free_tlist */
4573 static void pp_cleanup(int pass
)
4576 if(defining
->name
) {
4578 "end of file while still defining macro `%s'",
4581 error(ERR_NONFATAL
, "end of file while still in %%rep");
4584 free_mmacro(defining
);
4593 nasm_free(i
->fname
);
4598 nasm_free(src_set_fname(NULL
));
4603 while ((i
= ipath
)) {
4612 void pp_include_path(char *path
)
4616 i
= nasm_malloc(sizeof(IncPath
));
4617 i
->path
= path
? nasm_strdup(path
) : NULL
;
4620 if (ipath
!= NULL
) {
4622 while (j
->next
!= NULL
)
4630 void pp_pre_include(char *fname
)
4632 Token
*inc
, *space
, *name
;
4635 name
= new_Token(NULL
, TOK_INTERNAL_STRING
, fname
, 0);
4636 space
= new_Token(name
, TOK_WHITESPACE
, NULL
, 0);
4637 inc
= new_Token(space
, TOK_PREPROC_ID
, "%include", 0);
4639 l
= nasm_malloc(sizeof(Line
));
4646 void pp_pre_define(char *definition
)
4652 equals
= strchr(definition
, '=');
4653 space
= new_Token(NULL
, TOK_WHITESPACE
, NULL
, 0);
4654 def
= new_Token(space
, TOK_PREPROC_ID
, "%define", 0);
4657 space
->next
= tokenize(definition
);
4661 l
= nasm_malloc(sizeof(Line
));
4668 void pp_pre_undefine(char *definition
)
4673 space
= new_Token(NULL
, TOK_WHITESPACE
, NULL
, 0);
4674 def
= new_Token(space
, TOK_PREPROC_ID
, "%undef", 0);
4675 space
->next
= tokenize(definition
);
4677 l
= nasm_malloc(sizeof(Line
));
4685 * Added by Keith Kanios:
4687 * This function is used to assist with "runtime" preprocessor
4688 * directives. (e.g. pp_runtime("%define __BITS__ 64");)
4690 * ERRORS ARE IGNORED HERE, SO MAKE COMPLETELY SURE THAT YOU
4691 * PASS A VALID STRING TO THIS FUNCTION!!!!!
4694 void pp_runtime(char *definition
)
4698 def
= tokenize(definition
);
4699 if(do_directive(def
) == NO_DIRECTIVE_FOUND
)
4704 void pp_extra_stdmac(macros_t
*macros
)
4706 extrastdmac
= macros
;
4709 static void make_tok_num(Token
* tok
, int64_t val
)
4712 snprintf(numbuf
, sizeof(numbuf
), "%"PRId64
"", val
);
4713 tok
->text
= nasm_strdup(numbuf
);
4714 tok
->type
= TOK_NUMBER
;