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Allows to define constants of all filter types.
This commit is contained in:
parent
ac57451348
commit
1103b32e83
@ -15,10 +15,10 @@
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* symbols and keywords.
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* symbols and keywords.
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*
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*
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* Each symbol is represented by a &symbol structure containing name
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* Each symbol is represented by a &symbol structure containing name
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* of the symbol, its lexical scope, symbol class (%SYM_PROTO for a name of a protocol,
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* of the symbol, its lexical scope, symbol class (%SYM_PROTO for a
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* %SYM_NUMBER for a numeric constant etc.) and class dependent data.
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* name of a protocol, %SYM_CONSTANT for a constant etc.) and class
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* When an unknown symbol is encountered, it's automatically added to the
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* dependent data. When an unknown symbol is encountered, it's
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* symbol table with class %SYM_VOID.
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* automatically added to the symbol table with class %SYM_VOID.
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*
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*
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* The keyword tables are generated from the grammar templates
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* The keyword tables are generated from the grammar templates
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* using the |gen_keywords.m4| script.
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* using the |gen_keywords.m4| script.
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@ -623,24 +623,23 @@ cf_walk_symbols(struct config *cf, struct symbol *sym, int *pos)
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char *
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char *
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cf_symbol_class_name(struct symbol *sym)
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cf_symbol_class_name(struct symbol *sym)
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{
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{
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if ((sym->class & 0xff00) == SYM_CONSTANT)
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return "constant";
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switch (sym->class)
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switch (sym->class)
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{
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{
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case SYM_VOID:
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case SYM_VOID:
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return "undefined";
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return "undefined";
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case SYM_PROTO:
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case SYM_PROTO:
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return "protocol";
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return "protocol";
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case SYM_NUMBER:
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case SYM_TEMPLATE:
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return "numeric constant";
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return "protocol template";
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case SYM_FUNCTION:
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case SYM_FUNCTION:
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return "function";
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return "function";
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case SYM_FILTER:
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case SYM_FILTER:
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return "filter";
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return "filter";
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case SYM_TABLE:
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case SYM_TABLE:
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return "routing table";
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return "routing table";
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case SYM_IPA:
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return "network address";
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case SYM_TEMPLATE:
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return "protocol template";
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case SYM_ROA:
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case SYM_ROA:
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return "ROA table";
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return "ROA table";
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default:
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default:
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10
conf/conf.h
10
conf/conf.h
@ -110,15 +110,17 @@ struct symbol {
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/* Remember to update cf_symbol_class_name() */
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/* Remember to update cf_symbol_class_name() */
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#define SYM_VOID 0
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#define SYM_VOID 0
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#define SYM_PROTO 1
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#define SYM_PROTO 1
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#define SYM_NUMBER 2
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#define SYM_TEMPLATE 2
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#define SYM_FUNCTION 3
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#define SYM_FUNCTION 3
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#define SYM_FILTER 4
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#define SYM_FILTER 4
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#define SYM_TABLE 5
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#define SYM_TABLE 5
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#define SYM_IPA 6
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#define SYM_ROA 6
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#define SYM_TEMPLATE 7
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#define SYM_ROA 8
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#define SYM_VARIABLE 0x100 /* 0x100-0x1ff are variable types */
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#define SYM_VARIABLE 0x100 /* 0x100-0x1ff are variable types */
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#define SYM_CONSTANT 0x200 /* 0x200-0x2ff are variable types */
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#define SYM_TYPE(s) (((struct f_val *) (s)->def)->type)
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#define SYM_VAL(s) (((struct f_val *) (s)->def)->val)
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struct include_file_stack {
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struct include_file_stack {
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void *buffer; /* Internal lexer state */
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void *buffer; /* Internal lexer state */
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@ -103,28 +103,29 @@ conf_entries:
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CF_ADDTO(conf, ';')
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CF_ADDTO(conf, ';')
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/* Constant expressions */
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/* Constant expressions */
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CF_ADDTO(conf, definition)
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definition:
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DEFINE SYM '=' term ';' {
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struct f_val *val = cfg_alloc(sizeof(struct f_val));
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*val = f_eval($4, cfg_mem);
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if (val->type == T_RETURN) cf_error("Runtime error");
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cf_define_symbol($2, SYM_CONSTANT | val->type, val);
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}
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;
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expr:
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expr:
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NUM
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NUM
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| '(' term ')' { $$ = f_eval_int($2); }
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| '(' term ')' { $$ = f_eval_int($2); }
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| SYM { if ($1->class != SYM_NUMBER) cf_error("Number expected"); else $$ = $1->aux; }
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| SYM {
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if ($1->class != (SYM_CONSTANT | T_INT)) cf_error("Number expected");
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$$ = SYM_VAL($1).i; }
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;
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;
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/* expr_u16: expr { check_u16($1); $$ = $1; }; */
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/* expr_u16: expr { check_u16($1); $$ = $1; }; */
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CF_ADDTO(conf, definition)
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definition:
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DEFINE SYM '=' expr ';' {
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cf_define_symbol($2, SYM_NUMBER, NULL);
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$2->aux = $4;
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}
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| DEFINE SYM '=' IPA ';' {
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cf_define_symbol($2, SYM_IPA, cfg_alloc(sizeof(ip_addr)));
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*(ip_addr *)$2->def = $4;
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}
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;
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/* Switches */
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/* Switches */
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bool:
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bool:
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@ -141,8 +142,8 @@ bool:
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ipa:
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ipa:
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IPA
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IPA
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| SYM {
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| SYM {
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if ($1->class != SYM_IPA) cf_error("IP address expected");
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if ($1->class != (SYM_CONSTANT | T_IP)) cf_error("IP address expected");
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$$ = *(ip_addr *)$1->def;
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$$ = SYM_VAL($1).px.ip;
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}
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}
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;
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;
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@ -193,7 +193,14 @@ f_generate_ec(u16 kind, struct f_inst *tk, struct f_inst *tv)
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else if (tk->code == 'C') {
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else if (tk->code == 'C') {
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c1 = 1;
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c1 = 1;
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struct f_val *val = tk->a1.p;
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struct f_val *val = tk->a1.p;
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if (val->type == T_IP) {
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if (val->type == T_INT) {
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ipv4_used = 0; key = val->val.i;
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}
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else if (val->type == T_QUAD) {
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ipv4_used = 1; key = val->val.i;
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}
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else if (val->type == T_IP) {
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ipv4_used = 1; key = ipa_to_u32(val->val.px.ip);
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ipv4_used = 1; key = ipa_to_u32(val->val.px.ip);
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}
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}
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else
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else
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@ -661,37 +668,15 @@ function_call:
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symbol:
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symbol:
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SYM {
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SYM {
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$$ = f_new_inst();
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$$ = f_new_inst();
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switch ($1->class) {
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case SYM_NUMBER:
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switch ($1->class & 0xff00) {
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$$ = f_new_inst();
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case SYM_CONSTANT: $$->code = 'C'; break;
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$$->code = 'c';
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case SYM_VARIABLE: $$->code = 'V'; break;
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$$->aux = T_INT;
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default: cf_error("%s: variable expected.", $1->name);
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$$->a2.i = $1->aux;
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break;
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case SYM_IPA:
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{ NEW_F_VAL; $$ = f_new_inst(); $$->code = 'C'; $$->a1.p = val; val->type = T_IP; val->val.px.ip = * (ip_addr *) ($1->def); }
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break;
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case SYM_VARIABLE | T_BOOL:
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case SYM_VARIABLE | T_INT:
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case SYM_VARIABLE | T_PAIR:
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case SYM_VARIABLE | T_QUAD:
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case SYM_VARIABLE | T_EC:
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case SYM_VARIABLE | T_STRING:
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case SYM_VARIABLE | T_IP:
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case SYM_VARIABLE | T_PREFIX:
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case SYM_VARIABLE | T_PREFIX_SET:
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case SYM_VARIABLE | T_SET:
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case SYM_VARIABLE | T_PATH:
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case SYM_VARIABLE | T_PATH_MASK:
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case SYM_VARIABLE | T_CLIST:
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case SYM_VARIABLE | T_ECLIST:
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$$->code = 'V';
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$$->a1.p = $1->def;
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$$->a2.p = $1->name;
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break;
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default:
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cf_error("%s: variable expected.", $1->name );
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}
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}
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$$->a1.p = $1->def;
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$$->a2.p = $1->name;
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}
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}
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static_attr:
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static_attr:
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@ -240,6 +240,15 @@ int b;
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print "Defined: ", a, " ", b, " ", defined(b);
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print "Defined: ", a, " ", b, " ", defined(b);
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}
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}
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define is1 = [ one, (2+1), (6-one), 8, 11, 15, 17, 19];
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define is2 = [(17+2), 17, 15, 11, 8, 5, 3, 2];
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define is3 = [5, 17, 2, 11, 8, 15, 3, 19];
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define pxs2 = [ 10.0.0.0/16{8,12}, 20.0.0.0/16{24,28} ];
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define ecs2 = [(rt, ten, (one+onef(0))*10), (ro, 100000, 100..200), (rt, 12345, *)];
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function __startup()
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function __startup()
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int i;
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int i;
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bool b;
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bool b;
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@ -249,9 +258,6 @@ pair pp;
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quad qq;
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quad qq;
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ec cc;
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ec cc;
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int set is;
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int set is;
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int set is1;
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int set is2;
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int set is3;
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pair set ps;
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pair set ps;
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ec set ecs;
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ec set ecs;
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prefix set pxs;
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prefix set pxs;
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@ -279,11 +285,6 @@ string s;
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print " must be true: ", defined(1), ",", defined(1.2.3.4), ",", 1 != 2, ",", 1 <= 2;
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print " must be true: ", defined(1), ",", defined(1.2.3.4), ",", 1 != 2, ",", 1 <= 2;
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print " data types: must be false: ", 1 ~ [ 2, 3, 4 ], ",", 5 ~ is, ",", 1.2.3.4 ~ [ 1.2.3.3, 1.2.3.5 ], ",", (1,2) > (2,2), ",", (1,1) > (1,1), ",", 1.0.0.0/9 ~ [ 1.0.0.0/8- ], ",", 1.2.0.0/17 ~ [ 1.0.0.0/8{ 15 , 16 } ], ",", true && false;
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print " data types: must be false: ", 1 ~ [ 2, 3, 4 ], ",", 5 ~ is, ",", 1.2.3.4 ~ [ 1.2.3.3, 1.2.3.5 ], ",", (1,2) > (2,2), ",", (1,1) > (1,1), ",", 1.0.0.0/9 ~ [ 1.0.0.0/8- ], ",", 1.2.0.0/17 ~ [ 1.0.0.0/8{ 15 , 16 } ], ",", true && false;
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is1 = [ 1, 5, 8, 11, 15, 17, 19];
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is1 = [ one, (2+1), (6-one), 8, 11, 15, 17, 19];
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is2 = [(17+2), 17, 15, 11, 8, 5, 3, 2];
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is3 = [5, 17, 2, 11, 8, 15, 3, 19];
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print " must be true: ", 1 ~ is1, " ", 3 ~ is1, " ", 5 ~ is1;
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print " must be true: ", 1 ~ is1, " ", 3 ~ is1, " ", 5 ~ is1;
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print " must be true: ", (one+2) ~ is1, " ", 2 ~ is2, " ", 2 ~ is3;
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print " must be true: ", (one+2) ~ is1, " ", 2 ~ is2, " ", 2 ~ is3;
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@ -333,6 +334,7 @@ string s;
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ecs = [(rt, ten, (one+onef(0))*10), (ro, 100000, 100..200), (rt, 12345, *)];
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ecs = [(rt, ten, (one+onef(0))*10), (ro, 100000, 100..200), (rt, 12345, *)];
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print "EC set: ", ecs;
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print "EC set: ", ecs;
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print "EC set: ", ecs2;
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print "Testing EC set, true: ", (rt, 10, 20) ~ ecs, " ", (ro, 100000, 100) ~ ecs, " ", (ro, 100000, 200) ~ ecs,
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print "Testing EC set, true: ", (rt, 10, 20) ~ ecs, " ", (ro, 100000, 100) ~ ecs, " ", (ro, 100000, 200) ~ ecs,
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" ", (rt, 12345, 0) ~ ecs, " ", cc ~ ecs, " ", (rt, 12345, 4000000) ~ ecs;
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" ", (rt, 12345, 0) ~ ecs, " ", cc ~ ecs, " ", (rt, 12345, 4000000) ~ ecs;
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print "Testing EC set, false: ", (ro, 10, 20) ~ ecs, " ", (rt, 10, 21) ~ ecs, " ", (ro, 100000, 99) ~ ecs,
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print "Testing EC set, false: ", (ro, 10, 20) ~ ecs, " ", (rt, 10, 21) ~ ecs, " ", (ro, 100000, 99) ~ ecs,
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@ -354,6 +356,7 @@ string s;
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print " must be false: ", 1.1.0.0/16 ~ pxs, ",", 1.3.0.0/16 ~ pxs, ",", 1.2.0.0/15 ~ pxs, ",", 1.2.0.0/17 ~ pxs, ",",
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print " must be false: ", 1.1.0.0/16 ~ pxs, ",", 1.3.0.0/16 ~ pxs, ",", 1.2.0.0/15 ~ pxs, ",", 1.2.0.0/17 ~ pxs, ",",
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1.2.0.0/32 ~ pxs, ",", 1.4.0.0/15 ~ pxs;
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1.2.0.0/32 ~ pxs, ",", 1.4.0.0/15 ~ pxs;
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test_pxset(pxs2);
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test_pxset([ 10.0.0.0/16{8,12}, 20.0.0.0/16{24,28} ]);
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test_pxset([ 10.0.0.0/16{8,12}, 20.0.0.0/16{24,28} ]);
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print "What will this do? ", [ 1, 2, 1, 1, 1, 3, 4, 1, 1, 1, 5 ];
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print "What will this do? ", [ 1, 2, 1, 1, 1, 3, 4, 1, 1, 1, 5 ];
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@ -97,9 +97,10 @@ static inline void
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add_num_const(char *name, int val)
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add_num_const(char *name, int val)
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{
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{
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struct symbol *s = cf_find_symbol(name);
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struct symbol *s = cf_find_symbol(name);
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s->class = SYM_NUMBER;
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s->class = SYM_CONSTANT | T_INT;
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s->def = NULL;
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s->def = cfg_allocz(sizeof(struct f_val));
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s->aux = val;
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SYM_TYPE(s) = T_INT;
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SYM_VAL(s).i = val;
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}
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}
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/* the code of read_iproute_table() is based on
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/* the code of read_iproute_table() is based on
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