From a3a95b7d58b9403d9d8bb6c87e2f42dbe212ac91 Mon Sep 17 00:00:00 2001 From: Jasvinder Singh Date: Thu, 29 Mar 2018 19:31:54 +0100 Subject: [PATCH] examples/ip_pipeline: add table entry commands Add commands to add pipeline table entries which contains match and action part. Signed-off-by: Cristian Dumitrescu Signed-off-by: Jasvinder Singh Signed-off-by: Kevin Laatz --- examples/ip_pipeline/cli.c | 1295 +++++++++++++++++++++++++++++++ examples/ip_pipeline/pipeline.h | 13 + examples/ip_pipeline/thread.c | 751 ++++++++++++++++++ 3 files changed, 2059 insertions(+) diff --git a/examples/ip_pipeline/cli.c b/examples/ip_pipeline/cli.c index 33babb55b6..dab0d96899 100644 --- a/examples/ip_pipeline/cli.c +++ b/examples/ip_pipeline/cli.c @@ -8,6 +8,7 @@ #include #include +#include #include "cli.h" #include "kni.h" @@ -2261,6 +2262,1283 @@ cmd_pipeline_table_stats(char **tokens, stats.n_pkts_dropped_lkp_miss); } +/** + * ::= + * + * match + * acl + * priority + * ipv4 | ipv6 + * + * | array + * pos + * | hash + * raw + * | ipv4_5tuple + * | ipv6_5tuple + * | ipv4_addr + * | ipv6_addr + * | qinq + * | lpm + * ipv4 | ipv6 + */ +struct pkt_key_qinq { + uint16_t ethertype_svlan; + uint16_t svlan; + uint16_t ethertype_cvlan; + uint16_t cvlan; +} __attribute__((__packed__)); + +struct pkt_key_ipv4_5tuple { + uint8_t time_to_live; + uint8_t proto; + uint16_t hdr_checksum; + uint32_t sa; + uint32_t da; + uint16_t sp; + uint16_t dp; +} __attribute__((__packed__)); + +struct pkt_key_ipv6_5tuple { + uint16_t payload_length; + uint8_t proto; + uint8_t hop_limit; + uint8_t sa[16]; + uint8_t da[16]; + uint16_t sp; + uint16_t dp; +} __attribute__((__packed__)); + +struct pkt_key_ipv4_addr { + uint32_t addr; +} __attribute__((__packed__)); + +struct pkt_key_ipv6_addr { + uint8_t addr[16]; +} __attribute__((__packed__)); + +static uint32_t +parse_match(char **tokens, + uint32_t n_tokens, + char *out, + size_t out_size, + struct table_rule_match *m) +{ + memset(m, 0, sizeof(*m)); + + if (n_tokens < 2) + return 0; + + if (strcmp(tokens[0], "match") != 0) { + snprintf(out, out_size, MSG_ARG_NOT_FOUND, "match"); + return 0; + } + + if (strcmp(tokens[1], "acl") == 0) { + if (n_tokens < 14) { + snprintf(out, out_size, MSG_ARG_MISMATCH, tokens[0]); + return 0; + } + + m->match_type = TABLE_ACL; + + if (strcmp(tokens[2], "priority") != 0) { + snprintf(out, out_size, MSG_ARG_NOT_FOUND, "priority"); + return 0; + } + + if (parser_read_uint32(&m->match.acl.priority, + tokens[3]) != 0) { + snprintf(out, out_size, MSG_ARG_INVALID, "priority"); + return 0; + } + + if (strcmp(tokens[4], "ipv4") == 0) { + struct in_addr saddr, daddr; + + m->match.acl.ip_version = 1; + + if (parse_ipv4_addr(tokens[5], &saddr) != 0) { + snprintf(out, out_size, MSG_ARG_INVALID, "sa"); + return 0; + } + m->match.acl.ipv4.sa = rte_be_to_cpu_32(saddr.s_addr); + + if (parse_ipv4_addr(tokens[7], &daddr) != 0) { + snprintf(out, out_size, MSG_ARG_INVALID, "da"); + return 0; + } + m->match.acl.ipv4.da = rte_be_to_cpu_32(daddr.s_addr); + } else if (strcmp(tokens[4], "ipv6") == 0) { + struct in6_addr saddr, daddr; + + m->match.acl.ip_version = 0; + + if (parse_ipv6_addr(tokens[5], &saddr) != 0) { + snprintf(out, out_size, MSG_ARG_INVALID, "sa"); + return 0; + } + memcpy(m->match.acl.ipv6.sa, saddr.s6_addr, 16); + + if (parse_ipv6_addr(tokens[7], &daddr) != 0) { + snprintf(out, out_size, MSG_ARG_INVALID, "da"); + return 0; + } + memcpy(m->match.acl.ipv6.da, daddr.s6_addr, 16); + } else { + snprintf(out, out_size, MSG_ARG_NOT_FOUND, + "ipv4 or ipv6"); + return 0; + } + + if (parser_read_uint32(&m->match.acl.sa_depth, + tokens[6]) != 0) { + snprintf(out, out_size, MSG_ARG_INVALID, "sa_depth"); + return 0; + } + + if (parser_read_uint32(&m->match.acl.da_depth, + tokens[8]) != 0) { + snprintf(out, out_size, MSG_ARG_INVALID, "da_depth"); + return 0; + } + + if (parser_read_uint16(&m->match.acl.sp0, tokens[9]) != 0) { + snprintf(out, out_size, MSG_ARG_INVALID, "sp0"); + return 0; + } + + if (parser_read_uint16(&m->match.acl.sp1, tokens[10]) != 0) { + snprintf(out, out_size, MSG_ARG_INVALID, "sp1"); + return 0; + } + + if (parser_read_uint16(&m->match.acl.dp0, tokens[11]) != 0) { + snprintf(out, out_size, MSG_ARG_INVALID, "dp0"); + return 0; + } + + if (parser_read_uint16(&m->match.acl.dp1, tokens[12]) != 0) { + snprintf(out, out_size, MSG_ARG_INVALID, "dp1"); + return 0; + } + + if (parser_read_uint8(&m->match.acl.proto, tokens[13]) != 0) { + snprintf(out, out_size, MSG_ARG_INVALID, "proto"); + return 0; + } + + m->match.acl.proto_mask = 0xff; + + return 14; + } /* acl */ + + if (strcmp(tokens[1], "array") == 0) { + if (n_tokens < 3) { + snprintf(out, out_size, MSG_ARG_MISMATCH, tokens[0]); + return 0; + } + + m->match_type = TABLE_ARRAY; + + if (parser_read_uint32(&m->match.array.pos, tokens[2]) != 0) { + snprintf(out, out_size, MSG_ARG_INVALID, "pos"); + return 0; + } + + return 3; + } /* array */ + + if (strcmp(tokens[1], "hash") == 0) { + if (n_tokens < 3) { + snprintf(out, out_size, MSG_ARG_MISMATCH, tokens[0]); + return 0; + } + + m->match_type = TABLE_HASH; + + if (strcmp(tokens[2], "raw") == 0) { + uint32_t key_size = TABLE_RULE_MATCH_SIZE_MAX; + + if (n_tokens < 4) { + snprintf(out, out_size, MSG_ARG_MISMATCH, + tokens[0]); + return 0; + } + + if (parse_hex_string(tokens[3], + m->match.hash.key, &key_size) != 0) { + snprintf(out, out_size, MSG_ARG_INVALID, "key"); + return 0; + } + + return 4; + } /* hash raw */ + + if (strcmp(tokens[2], "ipv4_5tuple") == 0) { + struct pkt_key_ipv4_5tuple *ipv4 = + (struct pkt_key_ipv4_5tuple *) m->match.hash.key; + struct in_addr saddr, daddr; + uint16_t sp, dp; + uint8_t proto; + + if (n_tokens < 8) { + snprintf(out, out_size, MSG_ARG_MISMATCH, + tokens[0]); + return 0; + } + + if (parse_ipv4_addr(tokens[3], &saddr) != 0) { + snprintf(out, out_size, MSG_ARG_INVALID, "sa"); + return 0; + } + + if (parse_ipv4_addr(tokens[4], &daddr) != 0) { + snprintf(out, out_size, MSG_ARG_INVALID, "da"); + return 0; + } + + if (parser_read_uint16(&sp, tokens[5]) != 0) { + snprintf(out, out_size, MSG_ARG_INVALID, "sp"); + return 0; + } + + if (parser_read_uint16(&dp, tokens[6]) != 0) { + snprintf(out, out_size, MSG_ARG_INVALID, "dp"); + return 0; + } + + if (parser_read_uint8(&proto, tokens[7]) != 0) { + snprintf(out, out_size, MSG_ARG_INVALID, + "proto"); + return 0; + } + + ipv4->sa = saddr.s_addr; + ipv4->da = daddr.s_addr; + ipv4->sp = rte_cpu_to_be_16(sp); + ipv4->dp = rte_cpu_to_be_16(dp); + ipv4->proto = proto; + + return 8; + } /* hash ipv4_5tuple */ + + if (strcmp(tokens[2], "ipv6_5tuple") == 0) { + struct pkt_key_ipv6_5tuple *ipv6 = + (struct pkt_key_ipv6_5tuple *) m->match.hash.key; + struct in6_addr saddr, daddr; + uint16_t sp, dp; + uint8_t proto; + + if (n_tokens < 8) { + snprintf(out, out_size, MSG_ARG_MISMATCH, + tokens[0]); + return 0; + } + + if (parse_ipv6_addr(tokens[3], &saddr) != 0) { + snprintf(out, out_size, MSG_ARG_INVALID, "sa"); + return 0; + } + + if (parse_ipv6_addr(tokens[4], &daddr) != 0) { + snprintf(out, out_size, MSG_ARG_INVALID, "da"); + return 0; + } + + if (parser_read_uint16(&sp, tokens[5]) != 0) { + snprintf(out, out_size, MSG_ARG_INVALID, "sp"); + return 0; + } + + if (parser_read_uint16(&dp, tokens[6]) != 0) { + snprintf(out, out_size, MSG_ARG_INVALID, "dp"); + return 0; + } + + if (parser_read_uint8(&proto, tokens[7]) != 0) { + snprintf(out, out_size, MSG_ARG_INVALID, + "proto"); + return 0; + } + + memcpy(ipv6->sa, saddr.s6_addr, 16); + memcpy(ipv6->da, daddr.s6_addr, 16); + ipv6->sp = rte_cpu_to_be_16(sp); + ipv6->dp = rte_cpu_to_be_16(dp); + ipv6->proto = proto; + + return 8; + } /* hash ipv6_5tuple */ + + if (strcmp(tokens[2], "ipv4_addr") == 0) { + struct pkt_key_ipv4_addr *ipv4_addr = + (struct pkt_key_ipv4_addr *) m->match.hash.key; + struct in_addr addr; + + if (n_tokens < 4) { + snprintf(out, out_size, MSG_ARG_MISMATCH, + tokens[0]); + return 0; + } + + if (parse_ipv4_addr(tokens[3], &addr) != 0) { + snprintf(out, out_size, MSG_ARG_INVALID, + "addr"); + return 0; + } + + ipv4_addr->addr = addr.s_addr; + + return 4; + } /* hash ipv4_addr */ + + if (strcmp(tokens[2], "ipv6_addr") == 0) { + struct pkt_key_ipv6_addr *ipv6_addr = + (struct pkt_key_ipv6_addr *) m->match.hash.key; + struct in6_addr addr; + + if (n_tokens < 4) { + snprintf(out, out_size, MSG_ARG_MISMATCH, + tokens[0]); + return 0; + } + + if (parse_ipv6_addr(tokens[3], &addr) != 0) { + snprintf(out, out_size, MSG_ARG_INVALID, + "addr"); + return 0; + } + + memcpy(ipv6_addr->addr, addr.s6_addr, 16); + + return 4; + } /* hash ipv6_5tuple */ + + if (strcmp(tokens[2], "qinq") == 0) { + struct pkt_key_qinq *qinq = + (struct pkt_key_qinq *) m->match.hash.key; + uint16_t svlan, cvlan; + + if (n_tokens < 5) { + snprintf(out, out_size, MSG_ARG_MISMATCH, + tokens[0]); + return 0; + } + + if ((parser_read_uint16(&svlan, tokens[3]) != 0) || + (svlan > 0xFFF)) { + snprintf(out, out_size, MSG_ARG_INVALID, + "svlan"); + return 0; + } + + if ((parser_read_uint16(&cvlan, tokens[4]) != 0) || + (cvlan > 0xFFF)) { + snprintf(out, out_size, MSG_ARG_INVALID, + "cvlan"); + return 0; + } + + qinq->svlan = rte_cpu_to_be_16(svlan); + qinq->cvlan = rte_cpu_to_be_16(cvlan); + + return 5; + } /* hash qinq */ + + snprintf(out, out_size, MSG_ARG_MISMATCH, tokens[0]); + return 0; + } /* hash */ + + if (strcmp(tokens[1], "lpm") == 0) { + if (n_tokens < 5) { + snprintf(out, out_size, MSG_ARG_MISMATCH, tokens[0]); + return 0; + } + + m->match_type = TABLE_LPM; + + if (strcmp(tokens[2], "ipv4") == 0) { + struct in_addr addr; + + m->match.lpm.ip_version = 1; + + if (parse_ipv4_addr(tokens[3], &addr) != 0) { + snprintf(out, out_size, MSG_ARG_INVALID, + "addr"); + return 0; + } + + m->match.lpm.ipv4 = rte_be_to_cpu_32(addr.s_addr); + } else if (strcmp(tokens[2], "ipv6") == 0) { + struct in6_addr addr; + + m->match.lpm.ip_version = 0; + + if (parse_ipv6_addr(tokens[3], &addr) != 0) { + snprintf(out, out_size, MSG_ARG_INVALID, + "addr"); + return 0; + } + + memcpy(m->match.lpm.ipv6, addr.s6_addr, 16); + } else { + snprintf(out, out_size, MSG_ARG_MISMATCH, + "ipv4 or ipv6"); + return 0; + } + + if (parser_read_uint8(&m->match.lpm.depth, tokens[4]) != 0) { + snprintf(out, out_size, MSG_ARG_INVALID, "depth"); + return 0; + } + + return 5; + } /* lpm */ + + snprintf(out, out_size, MSG_ARG_MISMATCH, + "acl or array or hash or lpm"); + return 0; +} + +/** + * table_action ::= + * + * action + * fwd + * drop + * | port + * | meta + * | table + * [balance ... ] + * [meter + * tc0 meter policer g y r + * [tc1 meter policer g y r + * tc2 meter policer g y r + * tc3 meter policer g y r ]] + * [tm subport pipe ] + * [encap + * ether + * | vlan + * | qinq + * | mpls unicast | multicast + * + * label0