gmqcc/ftepp.c

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/*
* Copyright (C) 2012
* Wolfgang Bumiller
* Dale Weiler
*
* Permission is hereby granted, free of charge, to any person obtaining a copy of
* this software and associated documentation files (the "Software"), to deal in
* the Software without restriction, including without limitation the rights to
* use, copy, modify, merge, publish, distribute, sublicense, and/or sell copies
* of the Software, and to permit persons to whom the Software is furnished to do
* so, subject to the following conditions:
*
* The above copyright notice and this permission notice shall be included in all
* copies or substantial portions of the Software.
*
* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
* IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
* FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
* AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
* LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
* OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
* SOFTWARE.
*/
#include "gmqcc.h"
#include "lexer.h"
typedef struct {
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bool on;
bool was_on;
bool had_else;
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} ppcondition;
typedef struct {
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int token;
char *value;
/* a copy from the lexer */
union {
vector v;
int i;
double f;
int t; /* type */
} constval;
} pptoken;
typedef struct {
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lex_ctx ctx;
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char *name;
char **params;
/* yes we need an extra flag since `#define FOO x` is not the same as `#define FOO() x` */
bool has_params;
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pptoken **output;
} ppmacro;
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typedef struct {
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lex_file *lex;
int token;
unsigned int errors;
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bool output_on;
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ppcondition *conditions;
ppmacro **macros;
char *output_string;
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char *itemname;
char *includename;
} ftepp_t;
#define ftepp_tokval(f) ((f)->lex->tok.value)
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#define ftepp_ctx(f) ((f)->lex->tok.ctx)
static void ftepp_errorat(ftepp_t *ftepp, lex_ctx ctx, const char *fmt, ...)
{
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va_list ap;
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ftepp->errors++;
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va_start(ap, fmt);
con_cvprintmsg((void*)&ctx, LVL_ERROR, "error", fmt, ap);
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va_end(ap);
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}
static void ftepp_error(ftepp_t *ftepp, const char *fmt, ...)
{
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va_list ap;
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ftepp->errors++;
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va_start(ap, fmt);
con_cvprintmsg((void*)&ftepp->lex->tok.ctx, LVL_ERROR, "error", fmt, ap);
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va_end(ap);
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}
static bool GMQCC_WARN ftepp_warn(ftepp_t *ftepp, int warntype, const char *fmt, ...)
{
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bool r;
va_list ap;
va_start(ap, fmt);
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r = vcompile_warning(ftepp->lex->tok.ctx, warntype, fmt, ap);
va_end(ap);
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return r;
}
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static pptoken *pptoken_make(ftepp_t *ftepp)
{
pptoken *token = (pptoken*)mem_a(sizeof(pptoken));
token->token = ftepp->token;
#if 0
if (token->token == TOKEN_WHITE)
token->value = util_strdup(" ");
else
#else
token->value = util_strdup(ftepp_tokval(ftepp));
#endif
memcpy(&token->constval, &ftepp->lex->tok.constval, sizeof(token->constval));
return token;
}
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static void pptoken_delete(pptoken *self)
{
mem_d(self->value);
mem_d(self);
}
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static ppmacro *ppmacro_new(lex_ctx ctx, const char *name)
{
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ppmacro *macro = (ppmacro*)mem_a(sizeof(ppmacro));
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(void)ctx;
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memset(macro, 0, sizeof(*macro));
macro->name = util_strdup(name);
return macro;
}
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static void ppmacro_delete(ppmacro *self)
{
size_t i;
for (i = 0; i < vec_size(self->params); ++i)
mem_d(self->params[i]);
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vec_free(self->params);
for (i = 0; i < vec_size(self->output); ++i)
pptoken_delete(self->output[i]);
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vec_free(self->output);
mem_d(self->name);
mem_d(self);
}
static ftepp_t* ftepp_new()
{
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ftepp_t *ftepp;
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ftepp = (ftepp_t*)mem_a(sizeof(*ftepp));
memset(ftepp, 0, sizeof(*ftepp));
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ftepp->output_on = true;
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return ftepp;
}
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static void ftepp_delete(ftepp_t *self)
{
size_t i;
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if (self->itemname)
mem_d(self->itemname);
if (self->includename)
vec_free(self->includename);
for (i = 0; i < vec_size(self->macros); ++i)
ppmacro_delete(self->macros[i]);
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vec_free(self->macros);
vec_free(self->conditions);
if (self->lex)
lex_close(self->lex);
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mem_d(self);
}
static void ftepp_out(ftepp_t *ftepp, const char *str, bool ignore_cond)
{
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if (ignore_cond || ftepp->output_on)
{
size_t len;
char *data;
len = strlen(str);
data = vec_add(ftepp->output_string, len);
memcpy(data, str, len);
}
}
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static void ftepp_update_output_condition(ftepp_t *ftepp)
{
size_t i;
ftepp->output_on = true;
for (i = 0; i < vec_size(ftepp->conditions); ++i)
ftepp->output_on = ftepp->output_on && ftepp->conditions[i].on;
}
static ppmacro* ftepp_macro_find(ftepp_t *ftepp, const char *name)
{
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size_t i;
for (i = 0; i < vec_size(ftepp->macros); ++i) {
if (!strcmp(name, ftepp->macros[i]->name))
return ftepp->macros[i];
}
return NULL;
}
static void ftepp_macro_delete(ftepp_t *ftepp, const char *name)
{
size_t i;
for (i = 0; i < vec_size(ftepp->macros); ++i) {
if (!strcmp(name, ftepp->macros[i]->name)) {
vec_remove(ftepp->macros, i, 1);
return;
}
}
}
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static inline int ftepp_next(ftepp_t *ftepp)
{
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return (ftepp->token = lex_do(ftepp->lex));
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}
/* Important: this does not skip newlines! */
static bool ftepp_skipspace(ftepp_t *ftepp)
{
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if (ftepp->token != TOKEN_WHITE)
return true;
while (ftepp_next(ftepp) == TOKEN_WHITE) {}
if (ftepp->token >= TOKEN_EOF) {
ftepp_error(ftepp, "unexpected end of preprocessor directive");
return false;
}
return true;
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}
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/* this one skips EOLs as well */
static bool ftepp_skipallwhite(ftepp_t *ftepp)
{
if (ftepp->token != TOKEN_WHITE && ftepp->token != TOKEN_EOL)
return true;
do {
ftepp_next(ftepp);
} while (ftepp->token == TOKEN_WHITE || ftepp->token == TOKEN_EOL);
if (ftepp->token >= TOKEN_EOF) {
ftepp_error(ftepp, "unexpected end of preprocessor directive");
return false;
}
return true;
}
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/**
* The huge macro parsing code...
*/
static bool ftepp_define_params(ftepp_t *ftepp, ppmacro *macro)
{
do {
ftepp_next(ftepp);
if (!ftepp_skipspace(ftepp))
return false;
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if (ftepp->token == ')')
break;
switch (ftepp->token) {
case TOKEN_IDENT:
case TOKEN_TYPENAME:
case TOKEN_KEYWORD:
break;
default:
ftepp_error(ftepp, "unexpected token in parameter list");
return false;
}
vec_push(macro->params, util_strdup(ftepp_tokval(ftepp)));
ftepp_next(ftepp);
if (!ftepp_skipspace(ftepp))
return false;
} while (ftepp->token == ',');
if (ftepp->token != ')') {
ftepp_error(ftepp, "expected closing paren after macro parameter list");
return false;
}
ftepp_next(ftepp);
/* skipspace happens in ftepp_define */
return true;
}
static bool ftepp_define_body(ftepp_t *ftepp, ppmacro *macro)
{
pptoken *ptok;
while (ftepp->token != TOKEN_EOL && ftepp->token < TOKEN_EOF) {
ptok = pptoken_make(ftepp);
vec_push(macro->output, ptok);
ftepp_next(ftepp);
}
/* recursive expansion can cause EOFs here */
if (ftepp->token != TOKEN_EOL && ftepp->token != TOKEN_EOF) {
ftepp_error(ftepp, "unexpected junk after macro or unexpected end of file");
return false;
}
return true;
}
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static bool ftepp_define(ftepp_t *ftepp)
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{
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ppmacro *macro;
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size_t l = ftepp_ctx(ftepp).line;
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(void)ftepp_next(ftepp);
if (!ftepp_skipspace(ftepp))
return false;
switch (ftepp->token) {
case TOKEN_IDENT:
case TOKEN_TYPENAME:
case TOKEN_KEYWORD:
macro = ftepp_macro_find(ftepp, ftepp_tokval(ftepp));
if (macro && ftepp->output_on) {
if (ftepp_warn(ftepp, WARN_PREPROCESSOR, "redefining `%s`", ftepp_tokval(ftepp)))
return false;
ftepp_macro_delete(ftepp, ftepp_tokval(ftepp));
}
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macro = ppmacro_new(ftepp_ctx(ftepp), ftepp_tokval(ftepp));
break;
default:
ftepp_error(ftepp, "expected macro name");
return false;
}
(void)ftepp_next(ftepp);
if (ftepp->token == '(') {
macro->has_params = true;
if (!ftepp_define_params(ftepp, macro))
return false;
}
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if (!ftepp_skipspace(ftepp))
return false;
if (!ftepp_define_body(ftepp, macro))
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return false;
if (ftepp->output_on)
vec_push(ftepp->macros, macro);
else {
ppmacro_delete(macro);
}
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for (; l < ftepp_ctx(ftepp).line; ++l)
ftepp_out(ftepp, "\n", true);
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return true;
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}
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/**
* When a macro is used we have to handle parameters as well
* as special-concatenation via ## or stringification via #
*
* Note: parenthesis can nest, so FOO((a),b) is valid, but only
* this kind of parens. Curly braces or [] don't count towards the
* paren-level.
*/
typedef struct {
pptoken **tokens;
} macroparam;
static void macroparam_clean(macroparam *self)
{
size_t i;
for (i = 0; i < vec_size(self->tokens); ++i)
pptoken_delete(self->tokens[i]);
vec_free(self->tokens);
}
/* need to leave the last token up */
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static bool ftepp_macro_call_params(ftepp_t *ftepp, macroparam **out_params)
{
macroparam *params = NULL;
pptoken *ptok;
macroparam mp;
size_t parens = 0;
size_t i;
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if (!ftepp_skipallwhite(ftepp))
return false;
while (ftepp->token != ')') {
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mp.tokens = NULL;
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if (!ftepp_skipallwhite(ftepp))
return false;
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while (parens || ftepp->token != ',') {
if (ftepp->token == '(')
++parens;
else if (ftepp->token == ')') {
if (!parens)
break;
--parens;
}
ptok = pptoken_make(ftepp);
vec_push(mp.tokens, ptok);
if (ftepp_next(ftepp) >= TOKEN_EOF) {
ftepp_error(ftepp, "unexpected EOF in macro call");
goto on_error;
}
}
vec_push(params, mp);
mp.tokens = NULL;
if (ftepp->token == ')')
break;
if (ftepp->token != ',') {
ftepp_error(ftepp, "expected closing paren or comma in macro call");
goto on_error;
}
if (ftepp_next(ftepp) >= TOKEN_EOF) {
ftepp_error(ftepp, "unexpected EOF in macro call");
goto on_error;
}
}
/* need to leave that up
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if (ftepp_next(ftepp) >= TOKEN_EOF) {
ftepp_error(ftepp, "unexpected EOF in macro call");
goto on_error;
}
*/
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*out_params = params;
return true;
on_error:
if (mp.tokens)
macroparam_clean(&mp);
for (i = 0; i < vec_size(params); ++i)
macroparam_clean(&params[i]);
vec_free(params);
return false;
}
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static bool macro_params_find(ppmacro *macro, const char *name, size_t *idx)
{
size_t i;
for (i = 0; i < vec_size(macro->params); ++i) {
if (!strcmp(macro->params[i], name)) {
*idx = i;
return true;
}
}
return false;
}
static void ftepp_stringify_token(ftepp_t *ftepp, pptoken *token)
{
char chs[2];
const char *ch;
chs[1] = 0;
switch (token->token) {
case TOKEN_STRINGCONST:
ch = token->value;
while (*ch) {
/* in preprocessor mode strings already are string,
* so we don't get actual newline bytes here.
* Still need to escape backslashes and quotes.
*/
switch (*ch) {
case '\\': ftepp_out(ftepp, "\\\\", false); break;
case '"': ftepp_out(ftepp, "\\\"", false); break;
default:
chs[0] = *ch;
ftepp_out(ftepp, chs, false);
break;
}
++ch;
}
break;
case TOKEN_WHITE:
ftepp_out(ftepp, " ", false);
break;
case TOKEN_EOL:
ftepp_out(ftepp, "\\n", false);
break;
default:
ftepp_out(ftepp, token->value, false);
break;
}
}
static void ftepp_stringify(ftepp_t *ftepp, macroparam *param)
{
size_t i;
ftepp_out(ftepp, "\"", false);
for (i = 0; i < vec_size(param->tokens); ++i)
ftepp_stringify_token(ftepp, param->tokens[i]);
ftepp_out(ftepp, "\"", false);
}
static void ftepp_recursion_header(ftepp_t *ftepp)
{
ftepp_out(ftepp, "\n#pragma push(line)\n", false);
}
static void ftepp_recursion_footer(ftepp_t *ftepp)
{
ftepp_out(ftepp, "\n#pragma pop(line)\n", false);
}
static bool ftepp_preprocess(ftepp_t *ftepp);
static bool ftepp_macro_expand(ftepp_t *ftepp, ppmacro *macro, macroparam *params)
{
char *old_string = ftepp->output_string;
lex_file *old_lexer = ftepp->lex;
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bool retval = true;
size_t o, pi, pv;
lex_file *inlex;
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int nextok;
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/* really ... */
if (!vec_size(macro->output))
return true;
ftepp->output_string = NULL;
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for (o = 0; o < vec_size(macro->output); ++o) {
pptoken *out = macro->output[o];
switch (out->token) {
case TOKEN_IDENT:
case TOKEN_TYPENAME:
case TOKEN_KEYWORD:
if (!macro_params_find(macro, out->value, &pi)) {
ftepp_out(ftepp, out->value, false);
break;
} else {
for (pv = 0; pv < vec_size(params[pi].tokens); ++pv) {
out = params[pi].tokens[pv];
if (out->token == TOKEN_EOL)
ftepp_out(ftepp, "\n", false);
else
ftepp_out(ftepp, out->value, false);
}
}
break;
case '#':
if (o + 1 < vec_size(macro->output)) {
nextok = macro->output[o+1]->token;
if (nextok == '#') {
/* raw concatenation */
++o;
break;
}
if ( (nextok == TOKEN_IDENT ||
nextok == TOKEN_KEYWORD ||
nextok == TOKEN_TYPENAME) &&
macro_params_find(macro, macro->output[o+1]->value, &pi))
{
++o;
ftepp_stringify(ftepp, &params[pi]);
break;
}
}
ftepp_out(ftepp, "#", false);
break;
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case TOKEN_EOL:
ftepp_out(ftepp, "\n", false);
break;
default:
ftepp_out(ftepp, out->value, false);
break;
}
}
vec_push(ftepp->output_string, 0);
/* Now run the preprocessor recursively on this string buffer */
/*
printf("__________\n%s\n=========\n", ftepp->output_string);
*/
inlex = lex_open_string(ftepp->output_string, vec_size(ftepp->output_string)-1, ftepp->lex->name);
if (!inlex) {
ftepp_error(ftepp, "internal error: failed to instantiate lexer");
retval = false;
goto cleanup;
}
ftepp->output_string = old_string;
ftepp->lex = inlex;
ftepp_recursion_header(ftepp);
if (!ftepp_preprocess(ftepp)) {
lex_close(ftepp->lex);
retval = false;
goto cleanup;
}
ftepp_recursion_footer(ftepp);
old_string = ftepp->output_string;
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cleanup:
ftepp->lex = old_lexer;
ftepp->output_string = old_string;
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return retval;
}
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static bool ftepp_macro_call(ftepp_t *ftepp, ppmacro *macro)
{
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size_t o;
macroparam *params = NULL;
bool retval = true;
if (!macro->has_params) {
if (!ftepp_macro_expand(ftepp, macro, NULL))
return false;
ftepp_next(ftepp);
return true;
}
ftepp_next(ftepp);
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if (!ftepp_skipallwhite(ftepp))
return false;
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if (ftepp->token != '(') {
ftepp_error(ftepp, "expected macro parameters in parenthesis");
return false;
}
ftepp_next(ftepp);
if (!ftepp_macro_call_params(ftepp, &params))
return false;
if (vec_size(params) != vec_size(macro->params)) {
ftepp_error(ftepp, "macro %s expects %u paramteters, %u provided", macro->name,
(unsigned int)vec_size(macro->params),
(unsigned int)vec_size(params));
retval = false;
goto cleanup;
}
if (!ftepp_macro_expand(ftepp, macro, params))
retval = false;
ftepp_next(ftepp);
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cleanup:
for (o = 0; o < vec_size(params); ++o)
macroparam_clean(&params[o]);
vec_free(params);
return retval;
}
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/**
* #if - the FTEQCC way:
* defined(FOO) => true if FOO was #defined regardless of parameters or contents
* <numbers> => True if the number is not 0
* !<factor> => True if the factor yields false
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* !!<factor> => ERROR on 2 or more unary nots
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* <macro> => becomes the macro's FIRST token regardless of parameters
* <e> && <e> => True if both expressions are true
* <e> || <e> => True if either expression is true
* <string> => False
* <ident> => False (remember for macros the <macro> rule applies instead)
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* Unary + and - are weird and wrong in fteqcc so we don't allow them
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* parenthesis in expressions are allowed
* parameter lists on macros are errors
* No mathematical calculations are executed
*/
static bool ftepp_if_expr(ftepp_t *ftepp, bool *out, double *value_out);
static bool ftepp_if_op(ftepp_t *ftepp)
{
ftepp->lex->flags.noops = false;
ftepp_next(ftepp);
if (!ftepp_skipspace(ftepp))
return false;
ftepp->lex->flags.noops = true;
return true;
}
static bool ftepp_if_value(ftepp_t *ftepp, bool *out, double *value_out)
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{
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ppmacro *macro;
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bool wasnot = false;
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if (!ftepp_skipspace(ftepp))
return false;
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while (ftepp->token == '!') {
wasnot = true;
ftepp_next(ftepp);
if (!ftepp_skipspace(ftepp))
return false;
}
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switch (ftepp->token) {
case TOKEN_IDENT:
case TOKEN_TYPENAME:
case TOKEN_KEYWORD:
if (!strcmp(ftepp_tokval(ftepp), "defined")) {
ftepp_next(ftepp);
if (!ftepp_skipspace(ftepp))
return false;
if (ftepp->token != '(') {
ftepp_error(ftepp, "`defined` keyword in #if requires a macro name in parenthesis");
return false;
}
ftepp_next(ftepp);
if (!ftepp_skipspace(ftepp))
return false;
if (ftepp->token != TOKEN_IDENT &&
ftepp->token != TOKEN_TYPENAME &&
ftepp->token != TOKEN_KEYWORD)
{
ftepp_error(ftepp, "defined() used on an unexpected token type");
return false;
}
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macro = ftepp_macro_find(ftepp, ftepp_tokval(ftepp));
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*out = !!macro;
ftepp_next(ftepp);
if (!ftepp_skipspace(ftepp))
return false;
if (ftepp->token != ')') {
ftepp_error(ftepp, "expected closing paren");
return false;
2012-11-16 18:07:23 +00:00
}
break;
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}
macro = ftepp_macro_find(ftepp, ftepp_tokval(ftepp));
if (!macro || !vec_size(macro->output)) {
2012-11-16 18:07:23 +00:00
*out = false;
*value_out = 0;
2012-11-16 18:28:20 +00:00
} else {
/* This does not expand recursively! */
switch (macro->output[0]->token) {
case TOKEN_INTCONST:
*value_out = macro->output[0]->constval.i;
*out = !!(macro->output[0]->constval.i);
2012-11-16 18:28:20 +00:00
break;
case TOKEN_FLOATCONST:
*value_out = macro->output[0]->constval.f;
2012-11-16 18:28:20 +00:00
*out = !!(macro->output[0]->constval.f);
break;
default:
*out = false;
break;
}
}
break;
case TOKEN_STRINGCONST:
*out = false;
break;
case TOKEN_INTCONST:
*value_out = ftepp->lex->tok.constval.i;
2012-11-16 18:28:20 +00:00
*out = !!(ftepp->lex->tok.constval.i);
break;
case TOKEN_FLOATCONST:
*value_out = ftepp->lex->tok.constval.f;
2012-11-16 18:28:20 +00:00
*out = !!(ftepp->lex->tok.constval.f);
break;
2012-11-16 18:07:23 +00:00
2012-11-16 18:28:20 +00:00
case '(':
ftepp_next(ftepp);
if (!ftepp_if_expr(ftepp, out, value_out))
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return false;
2012-11-16 18:28:20 +00:00
if (ftepp->token != ')') {
ftepp_error(ftepp, "expected closing paren in #if expression");
return false;
}
break;
default:
ftepp_error(ftepp, "junk in #if: `%s` ...", ftepp_tokval(ftepp));
2012-11-16 18:28:20 +00:00
return false;
}
if (wasnot) {
2012-11-16 19:02:27 +00:00
*out = !*out;
*value_out = (*out ? 1 : 0);
}
return true;
}
2012-11-16 18:28:20 +00:00
/*
static bool ftepp_if_nextvalue(ftepp_t *ftepp, bool *out, double *value_out)
{
if (!ftepp_next(ftepp))
2012-11-16 18:28:20 +00:00
return false;
return ftepp_if_value(ftepp, out, value_out);
}
*/
2012-11-16 18:28:20 +00:00
static bool ftepp_if_expr(ftepp_t *ftepp, bool *out, double *value_out)
{
if (!ftepp_if_value(ftepp, out, value_out))
return false;
if (!ftepp_if_op(ftepp))
return false;
2012-11-16 18:28:20 +00:00
if (ftepp->token == ')' || ftepp->token != TOKEN_OPERATOR)
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return true;
/* FTEQCC is all right-associative and no precedence here */
2012-11-16 18:28:20 +00:00
if (!strcmp(ftepp_tokval(ftepp), "&&") ||
!strcmp(ftepp_tokval(ftepp), "||"))
{
bool next = false;
char opc = ftepp_tokval(ftepp)[0];
double nextvalue;
2012-11-16 18:07:23 +00:00
(void)nextvalue;
if (!ftepp_next(ftepp))
return false;
if (!ftepp_if_expr(ftepp, &next, &nextvalue))
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return false;
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if (opc == '&')
*out = *out && next;
else
*out = *out || next;
*value_out = (*out ? 1 : 0);
return true;
}
else if (!strcmp(ftepp_tokval(ftepp), "==") ||
!strcmp(ftepp_tokval(ftepp), "!=") ||
!strcmp(ftepp_tokval(ftepp), ">=") ||
!strcmp(ftepp_tokval(ftepp), "<=") ||
!strcmp(ftepp_tokval(ftepp), ">") ||
!strcmp(ftepp_tokval(ftepp), "<"))
{
bool next = false;
const char opc0 = ftepp_tokval(ftepp)[0];
const char opc1 = ftepp_tokval(ftepp)[1];
double other;
if (!ftepp_next(ftepp))
return false;
if (!ftepp_if_expr(ftepp, &next, &other))
return false;
if (opc0 == '=')
*out = (*value_out == other);
else if (opc0 == '!')
*out = (*value_out != other);
else if (opc0 == '>') {
if (opc1 == '=') *out = (*value_out >= other);
else *out = (*value_out > other);
}
else if (opc0 == '<') {
if (opc1 == '=') *out = (*value_out <= other);
else *out = (*value_out < other);
}
*value_out = (*out ? 1 : 0);
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return true;
}
else {
ftepp_error(ftepp, "junk after #if");
return false;
2012-11-16 18:07:23 +00:00
}
2012-11-16 18:01:44 +00:00
}
static bool ftepp_if(ftepp_t *ftepp, ppcondition *cond)
{
2012-11-16 18:07:23 +00:00
bool result = false;
double dummy = 0;
2012-11-16 18:01:44 +00:00
2012-11-16 18:07:23 +00:00
memset(cond, 0, sizeof(*cond));
(void)ftepp_next(ftepp);
if (!ftepp_skipspace(ftepp))
return false;
if (ftepp->token == TOKEN_EOL) {
ftepp_error(ftepp, "expected expression for #if-directive");
return false;
}
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if (!ftepp_if_expr(ftepp, &result, &dummy))
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return false;
2012-11-16 18:01:44 +00:00
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cond->on = result;
return true;
2012-11-16 18:01:44 +00:00
}
/**
* ifdef is rather simple
*/
static bool ftepp_ifdef(ftepp_t *ftepp, ppcondition *cond)
{
2012-11-16 18:07:23 +00:00
ppmacro *macro;
memset(cond, 0, sizeof(*cond));
(void)ftepp_next(ftepp);
if (!ftepp_skipspace(ftepp))
return false;
switch (ftepp->token) {
case TOKEN_IDENT:
case TOKEN_TYPENAME:
case TOKEN_KEYWORD:
macro = ftepp_macro_find(ftepp, ftepp_tokval(ftepp));
break;
default:
ftepp_error(ftepp, "expected macro name");
return false;
}
(void)ftepp_next(ftepp);
if (!ftepp_skipspace(ftepp))
return false;
/* relaxing this condition
if (ftepp->token != TOKEN_EOL && ftepp->token != TOKEN_EOF) {
2012-11-16 18:07:23 +00:00
ftepp_error(ftepp, "stray tokens after #ifdef");
return false;
}
*/
2012-11-16 18:07:23 +00:00
cond->on = !!macro;
return true;
2012-11-16 16:46:16 +00:00
}
/**
* undef is also simple
*/
static bool ftepp_undef(ftepp_t *ftepp)
{
(void)ftepp_next(ftepp);
if (!ftepp_skipspace(ftepp))
return false;
if (ftepp->output_on) {
switch (ftepp->token) {
case TOKEN_IDENT:
case TOKEN_TYPENAME:
case TOKEN_KEYWORD:
ftepp_macro_delete(ftepp, ftepp_tokval(ftepp));
break;
default:
ftepp_error(ftepp, "expected macro name");
return false;
}
}
(void)ftepp_next(ftepp);
if (!ftepp_skipspace(ftepp))
return false;
/* relaxing this condition
if (ftepp->token != TOKEN_EOL && ftepp->token != TOKEN_EOF) {
ftepp_error(ftepp, "stray tokens after #ifdef");
return false;
}
*/
return true;
}
2012-11-18 15:22:07 +00:00
/* Special unescape-string function which skips a leading quote
* and stops at a quote, not just at \0
*/
static void unescape(const char *str, char *out) {
++str;
while (*str && *str != '"') {
if (*str == '\\') {
++str;
switch (*str) {
case '\\': *out++ = *str; break;
case '"': *out++ = *str; break;
case 'a': *out++ = '\a'; break;
case 'b': *out++ = '\b'; break;
case 'r': *out++ = '\r'; break;
case 'n': *out++ = '\n'; break;
case 't': *out++ = '\t'; break;
case 'f': *out++ = '\f'; break;
case 'v': *out++ = '\v'; break;
default:
*out++ = '\\';
*out++ = *str;
break;
}
++str;
continue;
}
*out++ = *str++;
}
*out = 0;
}
static char *ftepp_include_find_path(const char *file, const char *pathfile)
2012-11-18 15:22:07 +00:00
{
FILE *fp;
char *filename = NULL;
const char *last_slash;
size_t len;
if (!pathfile)
return NULL;
last_slash = strrchr(pathfile, '/');
if (last_slash) {
len = last_slash - pathfile;
memcpy(vec_add(filename, len), pathfile, len);
vec_push(filename, '/');
}
2012-11-18 15:22:07 +00:00
len = strlen(file);
memcpy(vec_add(filename, len+1), file, len);
vec_last(filename) = 0;
fp = util_fopen(filename, "rb");
if (fp) {
fclose(fp);
return filename;
}
vec_free(filename);
return NULL;
}
static char *ftepp_include_find(ftepp_t *ftepp, const char *file)
{
char *filename = NULL;
filename = ftepp_include_find_path(file, ftepp->includename);
if (!filename)
filename = ftepp_include_find_path(file, ftepp->itemname);
2012-11-18 15:22:07 +00:00
return filename;
}
/**
* Include a file.
* FIXME: do we need/want a -I option?
* FIXME: what about when dealing with files in subdirectories coming from a progs.src?
*/
static bool ftepp_include(ftepp_t *ftepp)
{
lex_file *old_lexer = ftepp->lex;
lex_file *inlex;
lex_ctx ctx;
char lineno[128];
char *filename;
char *old_includename;
2012-11-18 15:22:07 +00:00
(void)ftepp_next(ftepp);
if (!ftepp_skipspace(ftepp))
return false;
if (ftepp->token != TOKEN_STRINGCONST) {
ftepp_error(ftepp, "expected filename to include");
return false;
}
ctx = ftepp_ctx(ftepp);
unescape(ftepp_tokval(ftepp), ftepp_tokval(ftepp));
ftepp_out(ftepp, "\n#pragma file(", false);
ftepp_out(ftepp, ftepp_tokval(ftepp), false);
ftepp_out(ftepp, ")\n#pragma line(1)\n", false);
filename = ftepp_include_find(ftepp, ftepp_tokval(ftepp));
if (!filename) {
ftepp_error(ftepp, "failed to open include file `%s`", ftepp_tokval(ftepp));
return false;
}
2012-11-18 15:22:07 +00:00
inlex = lex_open(filename);
if (!inlex) {
ftepp_error(ftepp, "open failed on include file `%s`", filename);
2012-11-18 15:22:07 +00:00
vec_free(filename);
return false;
}
ftepp->lex = inlex;
old_includename = ftepp->includename;
ftepp->includename = filename;
2012-11-18 15:22:07 +00:00
if (!ftepp_preprocess(ftepp)) {
vec_free(ftepp->includename);
ftepp->includename = old_includename;
2012-11-18 15:22:07 +00:00
lex_close(ftepp->lex);
ftepp->lex = old_lexer;
return false;
}
vec_free(ftepp->includename);
ftepp->includename = old_includename;
2012-11-18 15:22:07 +00:00
lex_close(ftepp->lex);
ftepp->lex = old_lexer;
ftepp_out(ftepp, "\n#pragma file(", false);
ftepp_out(ftepp, ctx.file, false);
snprintf(lineno, sizeof(lineno), ")\n#pragma line(%lu)\n", (unsigned long)(ctx.line+1));
ftepp_out(ftepp, lineno, false);
/* skip the line */
(void)ftepp_next(ftepp);
if (!ftepp_skipspace(ftepp))
return false;
if (ftepp->token != TOKEN_EOL) {
ftepp_error(ftepp, "stray tokens after #include");
return false;
}
(void)ftepp_next(ftepp);
return true;
}
/* Basic structure handlers */
2012-11-16 16:46:16 +00:00
static bool ftepp_else_allowed(ftepp_t *ftepp)
{
2012-11-16 18:07:23 +00:00
if (!vec_size(ftepp->conditions)) {
ftepp_error(ftepp, "#else without #if");
return false;
}
if (vec_last(ftepp->conditions).had_else) {
ftepp_error(ftepp, "multiple #else for a single #if");
return false;
}
return true;
2012-11-16 16:46:16 +00:00
}
static bool ftepp_hash(ftepp_t *ftepp)
{
2012-11-16 18:07:23 +00:00
ppcondition cond;
ppcondition *pc;
lex_ctx ctx = ftepp_ctx(ftepp);
if (!ftepp_skipspace(ftepp))
return false;
switch (ftepp->token) {
case TOKEN_KEYWORD:
case TOKEN_IDENT:
case TOKEN_TYPENAME:
if (!strcmp(ftepp_tokval(ftepp), "define")) {
return ftepp_define(ftepp);
}
else if (!strcmp(ftepp_tokval(ftepp), "undef")) {
return ftepp_undef(ftepp);
}
2012-11-16 18:07:23 +00:00
else if (!strcmp(ftepp_tokval(ftepp), "ifdef")) {
if (!ftepp_ifdef(ftepp, &cond))
return false;
2012-11-16 18:28:20 +00:00
cond.was_on = cond.on;
2012-11-16 18:07:23 +00:00
vec_push(ftepp->conditions, cond);
2012-11-16 21:02:38 +00:00
ftepp->output_on = ftepp->output_on && cond.on;
2012-11-16 18:28:20 +00:00
break;
2012-11-16 18:07:23 +00:00
}
else if (!strcmp(ftepp_tokval(ftepp), "ifndef")) {
if (!ftepp_ifdef(ftepp, &cond))
return false;
cond.on = !cond.on;
2012-11-16 18:28:20 +00:00
cond.was_on = cond.on;
2012-11-16 18:07:23 +00:00
vec_push(ftepp->conditions, cond);
2012-11-16 21:02:38 +00:00
ftepp->output_on = ftepp->output_on && cond.on;
2012-11-16 18:28:20 +00:00
break;
2012-11-16 18:07:23 +00:00
}
else if (!strcmp(ftepp_tokval(ftepp), "elifdef")) {
if (!ftepp_else_allowed(ftepp))
return false;
if (!ftepp_ifdef(ftepp, &cond))
return false;
pc = &vec_last(ftepp->conditions);
pc->on = !pc->was_on && cond.on;
pc->was_on = pc->was_on || pc->on;
2012-11-16 21:02:38 +00:00
ftepp_update_output_condition(ftepp);
2012-11-16 18:28:20 +00:00
break;
2012-11-16 18:07:23 +00:00
}
else if (!strcmp(ftepp_tokval(ftepp), "elifndef")) {
if (!ftepp_else_allowed(ftepp))
return false;
if (!ftepp_ifdef(ftepp, &cond))
return false;
cond.on = !cond.on;
pc = &vec_last(ftepp->conditions);
pc->on = !pc->was_on && cond.on;
pc->was_on = pc->was_on || pc->on;
2012-11-16 21:02:38 +00:00
ftepp_update_output_condition(ftepp);
2012-11-16 18:28:20 +00:00
break;
2012-11-16 18:07:23 +00:00
}
else if (!strcmp(ftepp_tokval(ftepp), "elif")) {
if (!ftepp_else_allowed(ftepp))
return false;
if (!ftepp_if(ftepp, &cond))
return false;
pc = &vec_last(ftepp->conditions);
pc->on = !pc->was_on && cond.on;
pc->was_on = pc->was_on || pc->on;
2012-11-16 21:02:38 +00:00
ftepp_update_output_condition(ftepp);
2012-11-16 18:28:20 +00:00
break;
2012-11-16 18:07:23 +00:00
}
else if (!strcmp(ftepp_tokval(ftepp), "if")) {
if (!ftepp_if(ftepp, &cond))
return false;
2012-11-16 18:28:20 +00:00
cond.was_on = cond.on;
2012-11-16 18:07:23 +00:00
vec_push(ftepp->conditions, cond);
2012-11-16 21:02:38 +00:00
ftepp->output_on = ftepp->output_on && cond.on;
2012-11-16 18:28:20 +00:00
break;
2012-11-16 18:07:23 +00:00
}
else if (!strcmp(ftepp_tokval(ftepp), "else")) {
if (!ftepp_else_allowed(ftepp))
return false;
pc = &vec_last(ftepp->conditions);
pc->on = !pc->was_on;
pc->had_else = true;
2012-11-16 18:28:20 +00:00
ftepp_next(ftepp);
2012-11-16 21:02:38 +00:00
ftepp_update_output_condition(ftepp);
2012-11-16 18:28:20 +00:00
break;
2012-11-16 18:07:23 +00:00
}
else if (!strcmp(ftepp_tokval(ftepp), "endif")) {
if (!vec_size(ftepp->conditions)) {
ftepp_error(ftepp, "#endif without #if");
return false;
}
vec_pop(ftepp->conditions);
2012-11-16 18:28:20 +00:00
ftepp_next(ftepp);
2012-11-16 21:02:38 +00:00
ftepp_update_output_condition(ftepp);
2012-11-16 18:07:23 +00:00
break;
}
2012-11-18 15:22:07 +00:00
else if (!strcmp(ftepp_tokval(ftepp), "include")) {
return ftepp_include(ftepp);
}
else if (!strcmp(ftepp_tokval(ftepp), "pragma")) {
ftepp_out(ftepp, "#", false);
break;
}
2012-11-16 18:07:23 +00:00
else {
if (ftepp->output_on) {
ftepp_error(ftepp, "unrecognized preprocessor directive: `%s`", ftepp_tokval(ftepp));
return false;
} else {
ftepp_next(ftepp);
break;
}
2012-11-16 18:07:23 +00:00
}
2012-11-22 20:32:08 +00:00
/* break; never reached */
2012-11-16 18:07:23 +00:00
default:
ftepp_error(ftepp, "unexpected preprocessor token: `%s`", ftepp_tokval(ftepp));
return false;
case TOKEN_EOL:
ftepp_errorat(ftepp, ctx, "empty preprocessor directive");
return false;
case TOKEN_EOF:
ftepp_error(ftepp, "missing newline at end of file", ftepp_tokval(ftepp));
return false;
/* Builtins! Don't forget the builtins! */
case TOKEN_INTCONST:
case TOKEN_FLOATCONST:
ftepp_out(ftepp, "#", false);
return true;
2012-11-16 18:07:23 +00:00
}
2012-11-16 18:28:20 +00:00
if (!ftepp_skipspace(ftepp))
return false;
2012-11-16 18:07:23 +00:00
return true;
2012-11-16 16:46:16 +00:00
}
static bool ftepp_preprocess(ftepp_t *ftepp)
{
2012-11-16 19:46:52 +00:00
ppmacro *macro;
bool newline = true;
2012-11-16 18:07:23 +00:00
ftepp->lex->flags.preprocessing = true;
ftepp->lex->flags.mergelines = false;
ftepp->lex->flags.noops = true;
2012-11-16 18:07:23 +00:00
ftepp_next(ftepp);
do
{
if (ftepp->token >= TOKEN_EOF)
break;
#if 0
newline = true;
#endif
2012-11-16 18:07:23 +00:00
switch (ftepp->token) {
2012-11-16 19:46:52 +00:00
case TOKEN_KEYWORD:
case TOKEN_IDENT:
case TOKEN_TYPENAME:
2012-11-30 14:43:18 +00:00
if (ftepp->output_on)
2012-11-30 14:41:01 +00:00
macro = ftepp_macro_find(ftepp, ftepp_tokval(ftepp));
else
macro = NULL;
2012-11-16 19:46:52 +00:00
if (!macro) {
ftepp_out(ftepp, ftepp_tokval(ftepp), false);
ftepp_next(ftepp);
break;
}
if (!ftepp_macro_call(ftepp, macro))
ftepp->token = TOKEN_ERROR;
break;
2012-11-16 18:07:23 +00:00
case '#':
if (!newline) {
2012-11-16 18:28:20 +00:00
ftepp_out(ftepp, ftepp_tokval(ftepp), false);
2012-11-16 18:07:23 +00:00
ftepp_next(ftepp);
break;
}
ftepp->lex->flags.mergelines = true;
2012-11-16 18:07:23 +00:00
if (ftepp_next(ftepp) >= TOKEN_EOF) {
ftepp_error(ftepp, "error in preprocessor directive");
ftepp->token = TOKEN_ERROR;
break;
}
if (!ftepp_hash(ftepp))
ftepp->token = TOKEN_ERROR;
ftepp->lex->flags.mergelines = false;
2012-11-16 18:07:23 +00:00
break;
case TOKEN_EOL:
newline = true;
2012-11-16 18:28:20 +00:00
ftepp_out(ftepp, "\n", true);
2012-11-16 18:07:23 +00:00
ftepp_next(ftepp);
break;
case TOKEN_WHITE:
/* same as default but don't set newline=false */
ftepp_out(ftepp, ftepp_tokval(ftepp), false);
ftepp_next(ftepp);
break;
2012-11-16 18:07:23 +00:00
default:
newline = false;
2012-11-16 18:28:20 +00:00
ftepp_out(ftepp, ftepp_tokval(ftepp), false);
2012-11-16 18:07:23 +00:00
ftepp_next(ftepp);
break;
}
} while (!ftepp->errors && ftepp->token < TOKEN_EOF);
/* force a 0 at the end but don't count it as added to the output */
vec_push(ftepp->output_string, 0);
vec_shrinkby(ftepp->output_string, 1);
return (ftepp->token == TOKEN_EOF);
}
/* Like in parser.c - files keep the previous state so we have one global
* preprocessor. Except here we will want to warn about dangling #ifs.
*/
static ftepp_t *ftepp;
static bool ftepp_preprocess_done()
{
bool retval = true;
if (vec_size(ftepp->conditions)) {
if (ftepp_warn(ftepp, WARN_MULTIFILE_IF, "#if spanning multiple files, is this intended?"))
retval = false;
}
lex_close(ftepp->lex);
ftepp->lex = NULL;
2012-11-18 15:22:07 +00:00
if (ftepp->itemname) {
mem_d(ftepp->itemname);
ftepp->itemname = NULL;
}
return retval;
}
bool ftepp_preprocess_file(const char *filename)
{
ftepp->lex = lex_open(filename);
2012-11-18 15:22:07 +00:00
ftepp->itemname = util_strdup(filename);
if (!ftepp->lex) {
con_out("failed to open file \"%s\"\n", filename);
return false;
}
2012-11-23 14:03:10 +00:00
if (!ftepp_preprocess(ftepp))
return false;
return ftepp_preprocess_done();
}
bool ftepp_preprocess_string(const char *name, const char *str)
{
ftepp->lex = lex_open_string(str, strlen(str), name);
2012-11-18 15:22:07 +00:00
ftepp->itemname = util_strdup(name);
if (!ftepp->lex) {
con_out("failed to create lexer for string \"%s\"\n", name);
return false;
}
2012-11-23 14:03:10 +00:00
if (!ftepp_preprocess(ftepp))
return false;
return ftepp_preprocess_done();
}
2012-12-17 14:58:40 +00:00
void ftepp_add_macro(const char *name, const char *value) {
char *create = NULL;
/* use saner path for empty macros */
if (!value) {
ftepp_add_define("__builtin__", name);
return;
}
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vec_upload(create, "#define ", 8);
vec_upload(create, name, strlen(name));
vec_push (create, ' ');
vec_upload(create, value, strlen(value));
vec_push (create, 0);
ftepp_preprocess_string("__builtin__", create);
vec_free (create);
}
bool ftepp_init()
{
char minor[32];
char major[32];
ftepp = ftepp_new();
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if (!ftepp)
return false;
memset(minor, 0, sizeof(minor));
memset(major, 0, sizeof(major));
/* set the right macro based on the selected standard */
ftepp_add_define(NULL, "GMQCC");
if (opts.standard == COMPILER_FTEQCC) {
ftepp_add_define(NULL, "__STD_FTEQCC__");
/* 1.00 */
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major[0] = '"';
major[1] = '1';
major[2] = '"';
minor[0] = '"';
minor[1] = '0';
minor[2] = '"';
} else if (opts.standard == COMPILER_GMQCC) {
ftepp_add_define(NULL, "__STD_GMQCC__");
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sprintf(major, "\"%d\"", GMQCC_VERSION_MAJOR);
sprintf(minor, "\"%d\"", GMQCC_VERSION_MINOR);
} else if (opts.standard == COMPILER_QCC) {
ftepp_add_define(NULL, "__STD_QCC__");
/* 1.0 */
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major[0] = '"';
major[1] = '1';
major[2] = '"';
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minor[0] = '"';
minor[1] = '0';
minor[2] = '"';
}
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ftepp_add_macro("__STD_VERSION_MINOR__", minor);
ftepp_add_macro("__STD_VERSION_MAJOR__", major);
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return true;
}
void ftepp_add_define(const char *source, const char *name)
{
ppmacro *macro;
lex_ctx ctx = { "__builtin__", 0 };
ctx.file = source;
macro = ppmacro_new(ctx, name);
vec_push(ftepp->macros, macro);
}
const char *ftepp_get()
{
return ftepp->output_string;
}
void ftepp_flush()
{
vec_free(ftepp->output_string);
}
void ftepp_finish()
{
if (!ftepp)
return;
ftepp_delete(ftepp);
ftepp = NULL;
}