Lexer now returns known sym / unknown sym / keyword
This commit is contained in:
parent
fe503c7c06
commit
9eef9c648c
5 changed files with 108 additions and 74 deletions
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@ -654,6 +654,14 @@ cf_default_name(char *template, int *counter)
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static enum yytokentype
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cf_lex_symbol(const char *data)
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{
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/* Have we defined such a symbol? */
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struct symbol *sym = cf_get_symbol(data);
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cf_lval.s = sym;
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if (sym->class != SYM_VOID)
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return CF_SYM_KNOWN;
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/* Is it a keyword? */
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struct keyword *k = HASH_FIND(kw_hash, KW, data);
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if (k)
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{
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@ -666,19 +674,9 @@ cf_lex_symbol(const char *data)
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}
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}
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cf_lval.s = cf_get_symbol(data);
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switch (cf_lval.s->class) {
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case SYM_VOID: return CF_SYM_VOID;
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case SYM_PROTO: return CF_SYM_PROTO;
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case SYM_TEMPLATE: return CF_SYM_TEMPLATE;
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case SYM_FUNCTION: return CF_SYM_FUNCTION;
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case SYM_FILTER: return CF_SYM_FILTER;
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case SYM_TABLE: return CF_SYM_TABLE;
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case SYM_ATTRIBUTE: return CF_SYM_ATTRIBUTE;
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case SYM_VARIABLE_RANGE: return CF_SYM_VARIABLE;
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case SYM_CONSTANT_RANGE: return CF_SYM_CONSTANT;
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default: bug("Unknown symbol class %d", cf_lval.s->class);
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}
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/* OK, undefined symbol */
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cf_lval.s = sym;
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return CF_SYM_UNDEFINED;
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}
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static void
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@ -33,6 +33,21 @@ check_u16(uint val)
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cf_error("Value %u out of range (0-65535)", val);
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}
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#define cf_assert(cond, ...) do { if (!(cond)) cf_error(__VA_ARGS__); } while (0)
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static inline void cf_assert_symbol(const struct symbol *sym, uint class) {
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switch (class) {
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case SYM_PROTO: cf_assert(sym->class == SYM_PROTO, "Protocol name required"); break;
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case SYM_TEMPLATE: cf_assert(sym->class == SYM_TEMPLATE, "Protocol template name required"); break;
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case SYM_FUNCTION: cf_assert(sym->class == SYM_FUNCTION, "Function name required"); break;
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case SYM_FILTER: cf_assert(sym->class == SYM_FILTER, "Filter name required"); break;
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case SYM_TABLE: cf_assert(sym->class == SYM_TABLE, "Table name required"); break;
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case SYM_ATTRIBUTE: cf_assert(sym->class == SYM_ATTRIBUTE, "Custom attribute name required"); break;
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case SYM_VARIABLE: cf_assert((sym->class & ~0xff) == SYM_VARIABLE, "Variable name required"); break;
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case SYM_CONSTANT: cf_assert((sym->class & ~0xff) == SYM_CONSTANT, "Constant name required"); break;
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default: bug("This shall not happen");
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}
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}
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CF_DECLS
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%union {
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@ -82,7 +97,7 @@ CF_DECLS
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%token <ip4> IP4
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%token <ip6> IP6
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%token <i64> VPN_RD
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%token <s> CF_SYM_VOID CF_SYM_PROTO CF_SYM_TEMPLATE CF_SYM_FUNCTION CF_SYM_FILTER CF_SYM_TABLE CF_SYM_ATTRIBUTE CF_SYM_VARIABLE CF_SYM_CONSTANT
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%token <s> CF_SYM_KNOWN CF_SYM_UNDEFINED
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%token <t> TEXT
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%type <iface> ipa_scope
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@ -92,6 +107,7 @@ CF_DECLS
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%type <net> net_ip4_ net_ip6_ net_ip6 net_ip_ net_ip net_or_ipa
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%type <net_ptr> net_ net_any net_vpn4_ net_vpn6_ net_vpn_ net_roa4_ net_roa6_ net_roa_ net_ip6_sadr_ net_mpls_
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%type <mls> label_stack_start label_stack
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%type <s> CF_SYM_VOID
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%type <t> text opttext
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%type <s> symbol
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@ -104,6 +120,8 @@ CF_DECLS
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%left '!'
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%nonassoc '.'
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%start config
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CF_KEYWORDS(DEFINE, ON, OFF, YES, NO, S, MS, US, PORT, VPN, MPLS, FROM)
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CF_GRAMMAR
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@ -137,8 +155,8 @@ definition:
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expr:
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NUM
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| '(' term ')' { $$ = f_eval_int(f_postfixify($2)); }
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| CF_SYM_CONSTANT {
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if ($1->class != (SYM_CONSTANT | T_INT)) cf_error("Number expected");
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| CF_SYM_KNOWN {
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if ($1->class != (SYM_CONSTANT | T_INT)) cf_error("Number constant expected");
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$$ = SYM_VAL($1).i; }
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;
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@ -148,17 +166,9 @@ expr_us:
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| expr US { $$ = $1 US_; }
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;
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symbol:
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CF_SYM_VOID
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| CF_SYM_PROTO
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| CF_SYM_TEMPLATE
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| CF_SYM_FUNCTION
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| CF_SYM_FILTER
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| CF_SYM_TABLE
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| CF_SYM_ATTRIBUTE
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| CF_SYM_VARIABLE
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| CF_SYM_CONSTANT
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;
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CF_SYM_VOID: CF_SYM_UNDEFINED ;
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symbol: CF_SYM_VOID | CF_SYM_KNOWN ;
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/* Switches */
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@ -177,8 +187,8 @@ bool:
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ipa:
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IP4 { $$ = ipa_from_ip4($1); }
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| IP6 { $$ = ipa_from_ip6($1); }
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| CF_SYM_CONSTANT {
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if ($1->class != (SYM_CONSTANT | T_IP)) cf_error("IP address expected");
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| CF_SYM_KNOWN {
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if ($1->class != (SYM_CONSTANT | T_IP)) cf_error("IP address constant expected");
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$$ = SYM_VAL($1).ip;
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}
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;
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@ -292,27 +302,27 @@ net_:
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net_ip6:
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net_ip6_
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| CF_SYM_CONSTANT {
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| CF_SYM_KNOWN {
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if (($1->class != (SYM_CONSTANT | T_NET)) || (SYM_VAL($1).net->type != NET_IP6))
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cf_error("IPv6 network expected");
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cf_error("IPv6 network constant expected");
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$$ = * SYM_VAL($1).net;
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}
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;
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net_ip:
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net_ip_
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| CF_SYM_CONSTANT {
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| CF_SYM_KNOWN {
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if (($1->class != (SYM_CONSTANT | T_NET)) || !net_is_ip(SYM_VAL($1).net))
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cf_error("IP network expected");
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cf_error("IP network constant expected");
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$$ = * SYM_VAL($1).net;
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}
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;
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net_any:
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net_
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| CF_SYM_CONSTANT {
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| CF_SYM_KNOWN {
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if ($1->class != (SYM_CONSTANT | T_NET))
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cf_error("Network expected");
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cf_error("Network constant expected");
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$$ = (net_addr *) SYM_VAL($1).net; /* Avoid const warning */
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}
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;
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@ -322,13 +332,13 @@ net_or_ipa:
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| net_ip6_
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| IP4 { net_fill_ip4(&($$), $1, IP4_MAX_PREFIX_LENGTH); }
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| IP6 { net_fill_ip6(&($$), $1, IP6_MAX_PREFIX_LENGTH); }
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| CF_SYM_CONSTANT {
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| CF_SYM_KNOWN {
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if ($1->class == (SYM_CONSTANT | T_IP))
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net_fill_ip_host(&($$), SYM_VAL($1).ip);
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else if (($1->class == (SYM_CONSTANT | T_NET)) && net_is_ip(SYM_VAL($1).net))
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$$ = * SYM_VAL($1).net;
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else
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cf_error("IP address or network expected");
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cf_error("IP address or network constant expected");
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}
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;
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@ -359,8 +369,8 @@ time:
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text:
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TEXT
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| CF_SYM_CONSTANT {
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if ($1->class != (SYM_CONSTANT | T_STRING)) cf_error("String expected");
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| CF_SYM_KNOWN {
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if ($1->class != (SYM_CONSTANT | T_STRING)) cf_error("String constant expected");
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$$ = SYM_VAL($1).s;
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}
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;
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@ -489,7 +489,8 @@ custom_attr: ATTRIBUTE type CF_SYM_VOID ';' {
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conf: bt_test_suite ;
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bt_test_suite:
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BT_TEST_SUITE '(' CF_SYM_FUNCTION ',' text ')' {
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BT_TEST_SUITE '(' CF_SYM_KNOWN ',' text ')' {
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cf_assert_symbol($3, SYM_FUNCTION);
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struct f_bt_test_suite *t = cfg_allocz(sizeof(struct f_bt_test_suite));
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t->fn = $3->function;
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t->fn_name = $3->name;
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@ -501,7 +502,9 @@ bt_test_suite:
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conf: bt_test_same ;
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bt_test_same:
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BT_TEST_SAME '(' CF_SYM_FUNCTION ',' CF_SYM_FUNCTION ',' NUM ')' {
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BT_TEST_SAME '(' CF_SYM_KNOWN ',' CF_SYM_KNOWN ',' NUM ')' {
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cf_assert_symbol($3, SYM_FUNCTION);
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cf_assert_symbol($5, SYM_FUNCTION);
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struct f_bt_test_suite *t = cfg_allocz(sizeof(struct f_bt_test_suite));
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t->fn = $3->function;
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t->cmp = $5->function;
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@ -589,7 +592,8 @@ filter_body:
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;
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filter:
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CF_SYM_FILTER {
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CF_SYM_KNOWN {
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cf_assert_symbol($1, SYM_FILTER);
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$$ = $1->filter;
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}
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| filter_body {
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@ -699,7 +703,8 @@ set_atom:
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if (f_eval(f_postfixify($2), cfg_mem, &($$)) > F_RETURN) cf_error("Runtime error");
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if (!f_valid_set_type($$.type)) cf_error("Set-incompatible type");
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}
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| CF_SYM_CONSTANT {
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| CF_SYM_KNOWN {
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cf_assert_symbol($1, SYM_CONSTANT);
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if (!f_valid_set_type(SYM_TYPE($1))) cf_error("%s: set-incompatible type", $1->name);
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$$ = *$1->val;
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}
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@ -858,15 +863,25 @@ constructor:
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function_call:
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CF_SYM_FUNCTION '(' var_list ')' {
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CF_SYM_KNOWN '(' var_list ')' {
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$$ = f_new_inst(FI_CALL, $1, $3);
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}
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;
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symbol_value:
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CF_SYM_CONSTANT { $$ = f_new_inst(FI_VARIABLE, $1); }
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| CF_SYM_VARIABLE { $$ = f_new_inst(FI_VARIABLE, $1); }
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| CF_SYM_ATTRIBUTE { $$ = f_new_inst(FI_EA_GET, *$1->attribute); }
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symbol_value: CF_SYM_KNOWN
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{
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switch ($1->class) {
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case SYM_CONSTANT_RANGE:
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case SYM_VARIABLE_RANGE:
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$$ = f_new_inst(FI_VARIABLE, $1);
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break;
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case SYM_ATTRIBUTE:
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$$ = f_new_inst(FI_EA_GET, *$1->attribute);
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break;
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default:
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cf_error("Can't get value of symbol %s", $1->name);
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}
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}
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;
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static_attr:
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@ -993,11 +1008,17 @@ cmd:
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| IF term THEN block ELSE block {
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$$ = f_new_inst(FI_CONDITION, $2, $4, $6);
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}
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| CF_SYM_ATTRIBUTE '=' term ';' {
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$$ = f_new_inst(FI_EA_SET, $3, *$1->attribute);
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}
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| CF_SYM_VARIABLE '=' term ';' {
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| CF_SYM_KNOWN '=' term ';' {
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switch ($1->class) {
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case SYM_VARIABLE_RANGE:
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$$ = f_new_inst(FI_SET, $3, $1);
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break;
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case SYM_ATTRIBUTE:
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$$ = f_new_inst(FI_EA_SET, $3, *$1->attribute);
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break;
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default:
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cf_error("Can't assign to symbol %s", $1->name);
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}
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}
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| RETURN term ';' {
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DBG( "Ook, we'll return the value\n" );
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@ -1038,7 +1059,7 @@ get_cf_position:
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};
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lvalue:
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CF_SYM_VARIABLE { $$ = (struct f_lval) { .type = F_LVAL_VARIABLE, .sym = $1 }; }
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CF_SYM_KNOWN { cf_assert_symbol($1, SYM_VARIABLE); $$ = (struct f_lval) { .type = F_LVAL_VARIABLE, .sym = $1 }; }
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| PREFERENCE { $$ = (struct f_lval) { .type = F_LVAL_PREFERENCE }; }
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| static_attr { $$ = (struct f_lval) { .type = F_LVAL_SA, .sa = $1 }; }
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| dynamic_attr { $$ = (struct f_lval) { .type = F_LVAL_EA, .da = $1 }; };
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@ -88,7 +88,7 @@ CF_ENUM(T_ENUM_ROA, ROA_, UNKNOWN, VALID, INVALID)
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%type <i32> idval
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%type <f> imexport
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%type <r> rtable
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%type <s> optproto sym_proto_or_template
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%type <s> optproto
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%type <ra> r_args
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%type <sd> sym_args
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%type <i> proto_start echo_mask echo_size debug_mask debug_list debug_flag mrtdump_mask mrtdump_list mrtdump_flag export_mode limit_action net_type table_sorted tos password_algorithm
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@ -114,7 +114,7 @@ idval:
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NUM { $$ = $1; }
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| '(' term ')' { $$ = f_eval_int(f_postfixify($2)); }
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| IP4 { $$ = ip4_to_u32($1); }
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| CF_SYM_CONSTANT {
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| CF_SYM_KNOWN {
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if ($1->class == (SYM_CONSTANT | T_INT) || $1->class == (SYM_CONSTANT | T_QUAD))
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$$ = SYM_VAL($1).i;
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else if (($1->class == (SYM_CONSTANT | T_IP)) && ipa_is_ip4(SYM_VAL($1).ip))
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@ -173,8 +173,6 @@ proto_start:
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| TEMPLATE { $$ = SYM_TEMPLATE; }
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;
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sym_proto_or_template: CF_SYM_PROTO | CF_SYM_TEMPLATE ;
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proto_name:
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/* EMPTY */ {
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struct symbol *s = cf_default_name(this_proto->protocol->template, &this_proto->protocol->name_counter);
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@ -186,20 +184,22 @@ proto_name:
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cf_define_symbol($1, this_proto->class, proto, this_proto);
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this_proto->name = $1->name;
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}
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| FROM sym_proto_or_template {
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| FROM CF_SYM_KNOWN {
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if (($2->class != SYM_TEMPLATE) && ($2->class != SYM_PROTO)) cf_error("Template or protocol name expected");
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struct symbol *s = cf_default_name(this_proto->protocol->template, &this_proto->protocol->name_counter);
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s->class = this_proto->class;
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s->proto = this_proto;
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this_proto->name = s->name;
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if (($2->class != SYM_TEMPLATE) && ($2->class != SYM_PROTO)) cf_error("Template or protocol name expected");
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proto_copy_config(this_proto, $2->proto);
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}
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| CF_SYM_VOID FROM sym_proto_or_template {
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| CF_SYM_VOID FROM CF_SYM_KNOWN {
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if (($3->class != SYM_TEMPLATE) && ($3->class != SYM_PROTO)) cf_error("Template or protocol name expected");
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cf_define_symbol($1, this_proto->class, proto, this_proto);
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this_proto->name = $1->name;
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if (($3->class != SYM_TEMPLATE) && ($3->class != SYM_PROTO)) cf_error("Template or protocol name expected");
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proto_copy_config(this_proto, $3->proto);
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}
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;
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@ -256,7 +256,7 @@ channel_end:
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proto_channel: channel_start channel_opt_list channel_end;
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rtable: CF_SYM_TABLE { $$ = $1->table; } ;
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rtable: CF_SYM_KNOWN { cf_assert_symbol($1, SYM_TABLE); $$ = $1->table; } ;
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imexport:
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FILTER filter { $$ = $2; }
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@ -510,7 +510,7 @@ CF_CLI(SHOW PROTOCOLS ALL, proto_patt2, [<protocol> | \"<pattern>\"], [[Show rou
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{ proto_apply_cmd($4, proto_cmd_show, 0, 1); } ;
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optproto:
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CF_SYM_PROTO
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CF_SYM_KNOWN { cf_assert_symbol($1, SYM_PROTO); $$ = $1; }
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| /* empty */ { $$ = NULL; }
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;
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@ -542,7 +542,8 @@ r_args:
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$$->show_for = 1;
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$$->addr = $3;
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}
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| r_args TABLE CF_SYM_TABLE {
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| r_args TABLE CF_SYM_KNOWN {
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cf_assert_symbol($3, SYM_TABLE);
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$$ = $1;
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rt_show_add_table($$, $3->table->table);
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$$->tables_defined_by = RSD_TDB_DIRECT;
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@ -554,7 +555,8 @@ r_args:
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rt_show_add_table($$, t->table);
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$$->tables_defined_by = RSD_TDB_ALL;
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}
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| r_args IMPORT TABLE CF_SYM_PROTO '.' r_args_channel {
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| r_args IMPORT TABLE CF_SYM_KNOWN '.' r_args_channel {
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cf_assert_symbol($4, SYM_PROTO);
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$$ = $1;
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struct proto_config *cf = $4->proto;
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if (!cf->proto) cf_error("%s is not a protocol", $4->name);
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@ -586,7 +588,8 @@ r_args:
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$$ = $1;
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$$->filtered = 1;
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}
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| r_args export_mode CF_SYM_PROTO {
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| r_args export_mode CF_SYM_KNOWN {
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cf_assert_symbol($3, SYM_PROTO);
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struct proto_config *c = (struct proto_config *) $3->proto;
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$$ = $1;
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if ($$->export_mode) cf_error("Export specified twice");
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@ -595,7 +598,8 @@ r_args:
|
|||
$$->export_protocol = c->proto;
|
||||
$$->tables_defined_by = RSD_TDB_INDIRECT;
|
||||
}
|
||||
| r_args export_mode CF_SYM_PROTO '.' r_args_channel {
|
||||
| r_args export_mode CF_SYM_KNOWN '.' r_args_channel {
|
||||
cf_assert_symbol($3, SYM_PROTO);
|
||||
struct proto_config *c = (struct proto_config *) $3->proto;
|
||||
$$ = $1;
|
||||
if ($$->export_mode) cf_error("Export specified twice");
|
||||
|
@ -605,7 +609,8 @@ r_args:
|
|||
if (!$$->export_channel) cf_error("Export channel not found");
|
||||
$$->tables_defined_by = RSD_TDB_INDIRECT;
|
||||
}
|
||||
| r_args PROTOCOL CF_SYM_PROTO {
|
||||
| r_args PROTOCOL CF_SYM_KNOWN {
|
||||
cf_assert_symbol($3, SYM_PROTO);
|
||||
struct proto_config *c = (struct proto_config *) $3->proto;
|
||||
$$ = $1;
|
||||
if ($$->show_protocol) cf_error("Protocol specified twice");
|
||||
|
@ -643,7 +648,7 @@ r_args_for:
|
|||
$$ = cfg_alloc(sizeof(net_addr_ip6_sadr));
|
||||
net_fill_ip6_sadr($$, $1, IP6_MAX_PREFIX_LENGTH, $3, IP6_MAX_PREFIX_LENGTH);
|
||||
}
|
||||
| CF_SYM_CONSTANT {
|
||||
| CF_SYM_KNOWN {
|
||||
if ($1->class == (SYM_CONSTANT | T_IP))
|
||||
{
|
||||
$$ = cfg_alloc(ipa_is_ip4(SYM_VAL($1).ip) ? sizeof(net_addr_ip4) : sizeof(net_addr_ip6));
|
||||
|
@ -652,7 +657,7 @@ r_args_for:
|
|||
else if (($1->class == (SYM_CONSTANT | T_NET)) && net_type_match(SYM_VAL($1).net, NB_IP | NB_VPN))
|
||||
$$ = (net_addr *) SYM_VAL($1).net; /* Avoid const warning */
|
||||
else
|
||||
cf_error("IP address or network expected");
|
||||
cf_error("IP address or network constant expected");
|
||||
}
|
||||
;
|
||||
|
||||
|
@ -775,13 +780,13 @@ CF_CLI(RESTRICT,,,[[Restrict current CLI session to safe commands]])
|
|||
{ this_cli->restricted = 1; cli_msg(16, "Access restricted"); } ;
|
||||
|
||||
proto_patt:
|
||||
CF_SYM_PROTO { $$.ptr = $1; $$.patt = 0; }
|
||||
CF_SYM_KNOWN { cf_assert_symbol($1, SYM_PROTO); $$.ptr = $1; $$.patt = 0; }
|
||||
| ALL { $$.ptr = NULL; $$.patt = 1; }
|
||||
| TEXT { $$.ptr = $1; $$.patt = 1; }
|
||||
;
|
||||
|
||||
proto_patt2:
|
||||
CF_SYM_PROTO { $$.ptr = $1; $$.patt = 0; }
|
||||
CF_SYM_KNOWN { cf_assert_symbol($1, SYM_PROTO); $$.ptr = $1; $$.patt = 0; }
|
||||
| { $$.ptr = NULL; $$.patt = 1; }
|
||||
| TEXT { $$.ptr = $1; $$.patt = 1; }
|
||||
;
|
||||
|
|
|
@ -544,7 +544,7 @@ lsadb_args:
|
|||
| lsadb_args LSID idval { $$ = $1; $$->lsid = $3; }
|
||||
| lsadb_args SELF { $$ = $1; $$->router = SH_ROUTER_SELF; }
|
||||
| lsadb_args ROUTER idval { $$ = $1; $$->router = $3; }
|
||||
| lsadb_args CF_SYM_PROTO { $$ = $1; $$->proto = (struct ospf_proto *) proto_get_named($2, &proto_ospf); }
|
||||
| lsadb_args CF_SYM_KNOWN { cf_assert_symbol($2, SYM_PROTO); $$ = $1; $$->proto = (struct ospf_proto *) proto_get_named($2, &proto_ospf); }
|
||||
;
|
||||
|
||||
CF_CODE
|
||||
|
|
Loading…
Reference in a new issue