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6485a74a5c
Functions flow_check_cf_bmk_values, flow_check_cf_value_length, flow4_validate_cf and flow6_validate_cf are now not built with lib but with conf to enable for better semantic separation.
296 lines
8.1 KiB
Plaintext
296 lines
8.1 KiB
Plaintext
/*
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* BIRD -- Flow specification (RFC 5575) grammar
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*
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* (c) 2016 CZ.NIC z.s.p.o.
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*
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* Can be freely distributed and used under the terms of the GNU GPL.
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*/
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CF_HDR
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#define PARSER 1
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#include "nest/bird.h"
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#include "lib/flowspec.h"
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CF_DEFINES
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struct flow_builder *this_flow;
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/**
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* flow_check_cf_value_length - check value by flowspec component type
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* @fb: flow builder instance
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* @val: value
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*
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* This function checks if the value is in range of component's type support.
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* If some problem will appear, the function calls cf_error() function with
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* a textual description of reason to failing of validation.
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*/
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static void
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flow_check_cf_value_length(struct flow_builder *fb, u32 val)
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{
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enum flow_type t = fb->this_type;
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u8 max = flow_max_value_length(t, fb->ipv6);
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if (t == FLOW_TYPE_DSCP && val > 0x3f)
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cf_error("%s value %u out of range (0-63)", flow_type_str(t, fb->ipv6), val);
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if (max == 1 && (val > 0xff))
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cf_error("%s value %u out of range (0-255)", flow_type_str(t, fb->ipv6), val);
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if (max == 2 && (val > 0xffff))
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cf_error("%s value %u out of range (0-65535)", flow_type_str(t, fb->ipv6), val);
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}
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/**
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* flow_check_cf_bmk_values - check value/bitmask part of flowspec component
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* @fb: flow builder instance
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* @neg: negation operand
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* @val: value from value/mask pair
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* @mask: bitmap mask from value/mask pair
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*
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* This function checks value/bitmask pair. If some problem will appear, the
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* function calls cf_error() function with a textual description of reason
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* to failing of validation.
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*/
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static void
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flow_check_cf_bmk_values(struct flow_builder *fb, u8 neg, u32 val, u32 mask)
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{
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flow_check_cf_value_length(fb, val);
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flow_check_cf_value_length(fb, mask);
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if (neg && !(val == 0 || val == mask))
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cf_error("For negation, value must be zero or bitmask");
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if ((fb->this_type == FLOW_TYPE_TCP_FLAGS) && (mask & 0xf000))
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cf_error("Invalid mask 0x%x, must not exceed 0xfff", mask);
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if ((fb->this_type == FLOW_TYPE_FRAGMENT) && fb->ipv6 && (mask & 0x01))
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cf_error("Invalid mask 0x%x, bit 0 must be 0", mask);
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if (val & ~mask)
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cf_error("Value 0x%x outside bitmask 0x%x", val, mask);
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}
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/**
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* flow4_validate_cf - validate flowspec data structure &net_addr_flow4 in parsing time
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* @f: flowspec data structure &net_addr_flow4
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*
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* Check if @f is valid flowspec data structure. Can call cf_error() function
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* with a textual description of reason to failing of validation.
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*/
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static void
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flow4_validate_cf(net_addr_flow4 *f)
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{
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enum flow_validated_state r = flow4_validate(flow4_first_part(f), flow_read_length(f->data));
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if (r != FLOW_ST_VALID)
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cf_error("Invalid flow route: %s", flow_validated_state_str(r));
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}
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/**
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* flow6_validate_cf - validate flowspec data structure &net_addr_flow6 in parsing time
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* @f: flowspec data structure &net_addr_flow6
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*
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* Check if @f is valid flowspec data structure. Can call cf_error() function
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* with a textual description of reason to failing of validation.
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*/
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static void
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flow6_validate_cf(net_addr_flow6 *f)
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{
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enum flow_validated_state r = flow6_validate(flow6_first_part(f), flow_read_length(f->data));
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if (r != FLOW_ST_VALID)
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cf_error("Invalid flow route: %s", flow_validated_state_str(r));
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}
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CF_DECLS
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%type <i32> flow_num_op flow_srcdst flow_logic_op flow_num_type_ flow_frag_val flow_neg
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%type <net_ptr> net_flow4_ net_flow6_ net_flow_
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CF_KEYWORDS(FLOW4, FLOW6, DST, SRC, PROTO, NEXT, HEADER, DPORT, SPORT, ICMP,
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TYPE, CODE, TCP, FLAGS, LENGTH, DSCP, DONT_FRAGMENT, IS_FRAGMENT,
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FIRST_FRAGMENT, LAST_FRAGMENT, FRAGMENT, LABEL, OFFSET)
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CF_GRAMMAR
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/* Network Flow Specification */
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flow_num_op:
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TRUE { $$ = FLOW_OP_TRUE; }
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| '=' { $$ = FLOW_OP_EQ; }
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| NEQ { $$ = FLOW_OP_NEQ; }
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| '<' { $$ = FLOW_OP_LT; }
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| LEQ { $$ = FLOW_OP_LEQ; }
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| '>' { $$ = FLOW_OP_GT; }
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| GEQ { $$ = FLOW_OP_GEQ; }
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| FALSE { $$ = FLOW_OP_FALSE; }
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;
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flow_logic_op:
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OR { $$ = FLOW_OP_OR; }
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| AND { $$ = FLOW_OP_AND; }
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;
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flow_num_type_:
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PROTO { $$ = FLOW_TYPE_IP_PROTOCOL; }
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| NEXT HEADER { $$ = FLOW_TYPE_NEXT_HEADER; }
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| PORT { $$ = FLOW_TYPE_PORT; }
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| DPORT { $$ = FLOW_TYPE_DST_PORT; }
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| SPORT { $$ = FLOW_TYPE_SRC_PORT; }
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| ICMP TYPE { $$ = FLOW_TYPE_ICMP_TYPE; }
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| ICMP CODE { $$ = FLOW_TYPE_ICMP_CODE; }
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| LENGTH { $$ = FLOW_TYPE_PACKET_LENGTH; }
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| DSCP { $$ = FLOW_TYPE_DSCP; }
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| LABEL { $$ = FLOW_TYPE_LABEL; }
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;
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flow_num_type: flow_num_type_{ flow_builder_set_type(this_flow, $1); };
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flow_flag_type: TCP FLAGS { flow_builder_set_type(this_flow, FLOW_TYPE_TCP_FLAGS); };
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flow_frag_type: FRAGMENT { flow_builder_set_type(this_flow, FLOW_TYPE_FRAGMENT); };
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flow_srcdst:
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DST { $$ = FLOW_TYPE_DST_PREFIX; }
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| SRC { $$ = FLOW_TYPE_SRC_PREFIX; }
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;
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flow_num_opts:
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flow_num_op expr {
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flow_check_cf_value_length(this_flow, $2);
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flow_builder_add_op_val(this_flow, $1, $2);
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}
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| flow_num_opts flow_logic_op flow_num_op expr {
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flow_check_cf_value_length(this_flow, $4);
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flow_builder_add_op_val(this_flow, $2 | $3, $4);
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}
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| flow_num_opt_ext
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| flow_num_opts OR flow_num_opt_ext
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;
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flow_num_opt_ext_expr:
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expr {
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flow_check_cf_value_length(this_flow, $1);
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flow_builder_add_op_val(this_flow, FLOW_OP_EQ, $1);
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}
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| expr DDOT expr {
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flow_check_cf_value_length(this_flow, $1);
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flow_check_cf_value_length(this_flow, $3);
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flow_builder_add_op_val(this_flow, FLOW_OP_GEQ, $1);
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flow_builder_add_op_val(this_flow, FLOW_OP_AND | FLOW_OP_LEQ, $3);
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}
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;
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flow_num_opt_ext:
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flow_num_opt_ext_expr
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| flow_num_opt_ext ',' flow_num_opt_ext_expr
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;
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flow_bmk_opts:
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flow_neg expr '/' expr {
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flow_check_cf_bmk_values(this_flow, $1, $2, $4);
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flow_builder_add_val_mask(this_flow, $1, $2, $4);
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}
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| flow_bmk_opts flow_logic_op flow_neg expr '/' expr {
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flow_check_cf_bmk_values(this_flow, $3, $4, $6);
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flow_builder_add_val_mask(this_flow, $2 | $3, $4, $6);
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}
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| flow_bmk_opts ',' flow_neg expr '/' expr {
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flow_check_cf_bmk_values(this_flow, $3, $4, $6);
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flow_builder_add_val_mask(this_flow, 0x40 | $3, $4, $6); /* AND */
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}
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;
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flow_neg:
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/* empty */ { $$ = 0x00; }
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| '!' { $$ = 0x02; }
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;
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flow_frag_val:
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DONT_FRAGMENT { $$ = 1; }
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| IS_FRAGMENT { $$ = 2; }
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| FIRST_FRAGMENT { $$ = 4; }
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| LAST_FRAGMENT { $$ = 8; }
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;
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flow_frag_opts:
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flow_neg flow_frag_val {
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flow_builder_add_val_mask(this_flow, 0, ($1 ? 0 : $2), $2);
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}
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| flow_frag_opts flow_logic_op flow_neg flow_frag_val {
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flow_builder_add_val_mask(this_flow, $2, ($3 ? 0 : $4), $4);
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}
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| flow_frag_opts ',' flow_neg flow_frag_val {
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flow_builder_add_val_mask(this_flow, 0x40, ($3 ? 0 : $4), $4); /* AND */
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}
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;
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flow4_item:
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flow_srcdst net_ip4 {
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flow_builder_set_type(this_flow, $1);
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flow_builder4_add_pfx(this_flow, (net_addr_ip4 *) &($2));
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}
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| flow_num_type flow_num_opts
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| flow_flag_type flow_bmk_opts
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| flow_frag_type flow_frag_opts
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;
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flow6_item:
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flow_srcdst net_ip6 {
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flow_builder_set_type(this_flow, $1);
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flow_builder6_add_pfx(this_flow, (net_addr_ip6 *) &($2), 0);
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}
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| flow_srcdst net_ip6 OFFSET NUM {
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if ($4 > $2.pxlen)
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cf_error("Prefix offset is higher than prefix length");
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flow_builder_set_type(this_flow, $1);
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flow_builder6_add_pfx(this_flow, (net_addr_ip6 *) &($2), $4);
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}
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| flow_num_type flow_num_opts
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| flow_flag_type flow_bmk_opts
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| flow_frag_type flow_frag_opts
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;
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flow4_opts:
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/* empty */
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| flow4_opts flow4_item ';'
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;
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flow6_opts:
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/* empty */
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| flow6_opts flow6_item ';'
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;
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flow_builder_init:
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{
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if (this_flow == NULL)
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this_flow = flow_builder_init(config_pool); /* FIXME: This should be allocated from tmp in future */
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else
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flow_builder_clear(this_flow);
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};
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flow_builder_set_ipv4: { this_flow->ipv6 = 0; };
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flow_builder_set_ipv6: { this_flow->ipv6 = 1; };
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net_flow4_: FLOW4 '{' flow_builder_init flow_builder_set_ipv4 flow4_opts '}'
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{
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$$ = (net_addr *) flow_builder4_finalize(this_flow, cfg_mem);
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flow4_validate_cf((net_addr_flow4 *) $$);
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};
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net_flow6_: FLOW6 '{' flow_builder_init flow_builder_set_ipv6 flow6_opts '}'
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{
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$$ = (net_addr *) flow_builder6_finalize(this_flow, cfg_mem);
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flow6_validate_cf((net_addr_flow6 *) $$);
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};
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net_flow_: net_flow4_ | net_flow6_ ;
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CF_CODE
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CF_END
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