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Filter: Implement type checks for function calls
Keep list of function parameters in f_line and use it to verify types of arguments for function calls. Only static type checks are implemented.
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0768038c86
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@ -75,6 +75,7 @@ CF_DECLS
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struct f_static_attr fsa;
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struct f_lval flv;
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struct f_line *fl;
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struct f_arg *fa;
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const struct filter *f;
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struct f_tree *e;
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struct f_trie *trie;
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@ -302,9 +302,10 @@ CF_KEYWORDS(FUNCTION, PRINT, PRINTN, UNSET, RETURN,
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%type <f> filter where_filter
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%type <fl> filter_body function_body
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%type <flv> lvalue
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%type <i> type function_args function_vars
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%type <i> type function_vars
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%type <fa> function_argsn function_args
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%type <ecs> ec_kind
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%type <fret> break_command
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%type <fret> break_command
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%type <i32> cnum
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%type <e> pair_item ec_item lc_item set_item switch_item set_items switch_items switch_body
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%type <trie> fprefix_set
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@ -403,18 +404,21 @@ type:
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;
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function_argsn:
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/* EMPTY */
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/* EMPTY */ { $$ = NULL; }
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| function_argsn type symbol ';' {
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if ($3->scope->slots >= 0xfe) cf_error("Too many declarations, at most 255 allowed");
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cf_define_symbol($3, SYM_VARIABLE | $2, offset, $3->scope->slots++);
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$$ = cfg_alloc(sizeof(struct f_arg));
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$$->arg = cf_define_symbol($3, SYM_VARIABLE | $2, offset, $3->scope->slots++);
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$$->next = $1;
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}
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;
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function_args:
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'(' ')' { $$ = 0; }
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'(' ')' { $$ = NULL; }
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| '(' function_argsn type symbol ')' {
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cf_define_symbol($4, SYM_VARIABLE | $3, offset, $4->scope->slots++);
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$$ = $4->scope->slots;
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$$ = cfg_alloc(sizeof(struct f_arg));
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$$->arg = cf_define_symbol($4, SYM_VARIABLE | $3, offset, $4->scope->slots++);
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$$->next = $2;
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}
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;
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@ -459,9 +463,21 @@ function_def:
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FUNCTION symbol { DBG( "Beginning of function %s\n", $2->name );
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$2 = cf_define_symbol($2, SYM_FUNCTION, function, NULL);
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cf_push_scope($2);
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} function_args function_body {
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DBG("Definition of function %s with %u args and %u local vars.\n", $2->name, $4, $5->vars);
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$5->args = $4;
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} function_args function_body
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{
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$5->arg_list = NULL;
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$5->args = 0;
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/* Revert the args */
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while ($4) {
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struct f_arg *tmp = $4;
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$4 = $4->next;
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tmp->next = $5->arg_list;
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$5->arg_list = tmp;
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$5->args++;
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}
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$2->function = $5;
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cf_pop_scope();
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}
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@ -1089,6 +1089,19 @@
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cf_error("Function '%s' expects %u arguments, got %u arguments",
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sym->name, sym->function->args, whati->varcount);
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/* Typecheck individual arguments */
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struct f_inst *a = fvar;
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struct f_arg *b = sym->function->arg_list;
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for (uint i = 1; a && b; a = a->next, b = b->next, i++)
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{
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enum f_type b_type = b->arg->class & 0xff;
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if (a->type && (a->type != b_type) && !f_const_promotion(a, b_type))
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cf_error("Argument %u of '%s' must be %s, got %s",
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i, sym->name, f_type_name(b_type), f_type_name(a->type));
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}
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ASSERT(!a && !b);
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/* Add implicit void slot for the return value */
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struct f_inst *tmp = f_new_inst(FI_CONSTANT, (struct f_val) { .type = T_VOID });
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tmp->next = whati->fvar;
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@ -35,12 +35,18 @@ const char *f_instruction_name_(enum f_instruction_code fi);
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static inline const char *f_instruction_name(enum f_instruction_code fi)
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{ return f_instruction_name_(fi) + 3; }
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struct f_arg {
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struct symbol *arg;
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struct f_arg *next;
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};
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/* Filter structures for execution */
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/* Line of instructions to be unconditionally executed one after another */
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struct f_line {
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uint len; /* Line length */
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u8 args; /* Function: Args required */
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u8 vars;
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struct f_arg *arg_list;
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struct f_line_item items[0]; /* The items themselves */
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};
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