xref: /dpdk/lib/ip_frag/rte_ipv4_fragmentation.c (revision 1edf7a796ddc6b8b642153f0a434a3e44e2d4fe3)
199a2dd95SBruce Richardson /* SPDX-License-Identifier: BSD-3-Clause
299a2dd95SBruce Richardson  * Copyright(c) 2010-2014 Intel Corporation
399a2dd95SBruce Richardson  */
499a2dd95SBruce Richardson 
599a2dd95SBruce Richardson #include <stddef.h>
699a2dd95SBruce Richardson #include <errno.h>
799a2dd95SBruce Richardson 
899a2dd95SBruce Richardson #include <rte_memcpy.h>
999a2dd95SBruce Richardson #include <rte_mempool.h>
1099a2dd95SBruce Richardson #include <rte_debug.h>
1199a2dd95SBruce Richardson #include <rte_ether.h>
1299a2dd95SBruce Richardson 
1399a2dd95SBruce Richardson #include "ip_frag_common.h"
1499a2dd95SBruce Richardson 
1599a2dd95SBruce Richardson /* Fragment Offset */
1699a2dd95SBruce Richardson #define	RTE_IPV4_HDR_DF_SHIFT			14
1799a2dd95SBruce Richardson #define	RTE_IPV4_HDR_MF_SHIFT			13
1899a2dd95SBruce Richardson #define	RTE_IPV4_HDR_FO_SHIFT			3
1999a2dd95SBruce Richardson 
2099a2dd95SBruce Richardson #define	IPV4_HDR_DF_MASK			(1 << RTE_IPV4_HDR_DF_SHIFT)
2199a2dd95SBruce Richardson #define	IPV4_HDR_MF_MASK			(1 << RTE_IPV4_HDR_MF_SHIFT)
2299a2dd95SBruce Richardson 
2399a2dd95SBruce Richardson #define	IPV4_HDR_FO_ALIGN			(1 << RTE_IPV4_HDR_FO_SHIFT)
2499a2dd95SBruce Richardson 
2599a2dd95SBruce Richardson static inline void __fill_ipv4hdr_frag(struct rte_ipv4_hdr *dst,
26*1edf7a79SPu Xu 		const struct rte_ipv4_hdr *src, uint16_t header_len,
27*1edf7a79SPu Xu 		uint16_t len, uint16_t fofs, uint16_t dofs, uint32_t mf)
2899a2dd95SBruce Richardson {
29*1edf7a79SPu Xu 	rte_memcpy(dst, src, header_len);
3099a2dd95SBruce Richardson 	fofs = (uint16_t)(fofs + (dofs >> RTE_IPV4_HDR_FO_SHIFT));
3199a2dd95SBruce Richardson 	fofs = (uint16_t)(fofs | mf << RTE_IPV4_HDR_MF_SHIFT);
3299a2dd95SBruce Richardson 	dst->fragment_offset = rte_cpu_to_be_16(fofs);
3399a2dd95SBruce Richardson 	dst->total_length = rte_cpu_to_be_16(len);
3499a2dd95SBruce Richardson 	dst->hdr_checksum = 0;
3599a2dd95SBruce Richardson }
3699a2dd95SBruce Richardson 
3799a2dd95SBruce Richardson static inline void __free_fragments(struct rte_mbuf *mb[], uint32_t num)
3899a2dd95SBruce Richardson {
3999a2dd95SBruce Richardson 	uint32_t i;
4099a2dd95SBruce Richardson 	for (i = 0; i != num; i++)
4199a2dd95SBruce Richardson 		rte_pktmbuf_free(mb[i]);
4299a2dd95SBruce Richardson }
4399a2dd95SBruce Richardson 
4499a2dd95SBruce Richardson /**
4599a2dd95SBruce Richardson  * IPv4 fragmentation.
4699a2dd95SBruce Richardson  *
4799a2dd95SBruce Richardson  * This function implements the fragmentation of IPv4 packets.
4899a2dd95SBruce Richardson  *
4999a2dd95SBruce Richardson  * @param pkt_in
5099a2dd95SBruce Richardson  *   The input packet.
5199a2dd95SBruce Richardson  * @param pkts_out
5299a2dd95SBruce Richardson  *   Array storing the output fragments.
5399a2dd95SBruce Richardson  * @param mtu_size
5499a2dd95SBruce Richardson  *   Size in bytes of the Maximum Transfer Unit (MTU) for the outgoing IPv4
5599a2dd95SBruce Richardson  *   datagrams. This value includes the size of the IPv4 header.
5699a2dd95SBruce Richardson  * @param pool_direct
5799a2dd95SBruce Richardson  *   MBUF pool used for allocating direct buffers for the output fragments.
5899a2dd95SBruce Richardson  * @param pool_indirect
5999a2dd95SBruce Richardson  *   MBUF pool used for allocating indirect buffers for the output fragments.
6099a2dd95SBruce Richardson  * @return
6199a2dd95SBruce Richardson  *   Upon successful completion - number of output fragments placed
6299a2dd95SBruce Richardson  *   in the pkts_out array.
6399a2dd95SBruce Richardson  *   Otherwise - (-1) * <errno>.
6499a2dd95SBruce Richardson  */
6599a2dd95SBruce Richardson int32_t
6699a2dd95SBruce Richardson rte_ipv4_fragment_packet(struct rte_mbuf *pkt_in,
6799a2dd95SBruce Richardson 	struct rte_mbuf **pkts_out,
6899a2dd95SBruce Richardson 	uint16_t nb_pkts_out,
6999a2dd95SBruce Richardson 	uint16_t mtu_size,
7099a2dd95SBruce Richardson 	struct rte_mempool *pool_direct,
7199a2dd95SBruce Richardson 	struct rte_mempool *pool_indirect)
7299a2dd95SBruce Richardson {
7399a2dd95SBruce Richardson 	struct rte_mbuf *in_seg = NULL;
7499a2dd95SBruce Richardson 	struct rte_ipv4_hdr *in_hdr;
7599a2dd95SBruce Richardson 	uint32_t out_pkt_pos, in_seg_data_pos;
7699a2dd95SBruce Richardson 	uint32_t more_in_segs;
77*1edf7a79SPu Xu 	uint16_t fragment_offset, flag_offset, frag_size, header_len;
7899a2dd95SBruce Richardson 	uint16_t frag_bytes_remaining;
7999a2dd95SBruce Richardson 
8099a2dd95SBruce Richardson 	/*
8199a2dd95SBruce Richardson 	 * Formal parameter checking.
8299a2dd95SBruce Richardson 	 */
8399a2dd95SBruce Richardson 	if (unlikely(pkt_in == NULL) || unlikely(pkts_out == NULL) ||
8499a2dd95SBruce Richardson 	    unlikely(nb_pkts_out == 0) ||
8599a2dd95SBruce Richardson 	    unlikely(pool_direct == NULL) || unlikely(pool_indirect == NULL) ||
8699a2dd95SBruce Richardson 	    unlikely(mtu_size < RTE_ETHER_MIN_MTU))
8799a2dd95SBruce Richardson 		return -EINVAL;
8899a2dd95SBruce Richardson 
89*1edf7a79SPu Xu 	in_hdr = rte_pktmbuf_mtod(pkt_in, struct rte_ipv4_hdr *);
90*1edf7a79SPu Xu 	header_len = (in_hdr->version_ihl & RTE_IPV4_HDR_IHL_MASK) *
91*1edf7a79SPu Xu 	    RTE_IPV4_IHL_MULTIPLIER;
92*1edf7a79SPu Xu 
93*1edf7a79SPu Xu 	/* Check IP header length */
94*1edf7a79SPu Xu 	if (unlikely(pkt_in->data_len < header_len) ||
95*1edf7a79SPu Xu 	    unlikely(mtu_size < header_len))
96*1edf7a79SPu Xu 		return -EINVAL;
97*1edf7a79SPu Xu 
9899a2dd95SBruce Richardson 	/*
9999a2dd95SBruce Richardson 	 * Ensure the IP payload length of all fragments is aligned to a
10099a2dd95SBruce Richardson 	 * multiple of 8 bytes as per RFC791 section 2.3.
10199a2dd95SBruce Richardson 	 */
102*1edf7a79SPu Xu 	frag_size = RTE_ALIGN_FLOOR((mtu_size - header_len),
10399a2dd95SBruce Richardson 				    IPV4_HDR_FO_ALIGN);
10499a2dd95SBruce Richardson 
10599a2dd95SBruce Richardson 	flag_offset = rte_cpu_to_be_16(in_hdr->fragment_offset);
10699a2dd95SBruce Richardson 
10799a2dd95SBruce Richardson 	/* If Don't Fragment flag is set */
10899a2dd95SBruce Richardson 	if (unlikely ((flag_offset & IPV4_HDR_DF_MASK) != 0))
10999a2dd95SBruce Richardson 		return -ENOTSUP;
11099a2dd95SBruce Richardson 
11199a2dd95SBruce Richardson 	/* Check that pkts_out is big enough to hold all fragments */
11299a2dd95SBruce Richardson 	if (unlikely(frag_size * nb_pkts_out <
113*1edf7a79SPu Xu 	    (uint16_t)(pkt_in->pkt_len - header_len)))
11499a2dd95SBruce Richardson 		return -EINVAL;
11599a2dd95SBruce Richardson 
11699a2dd95SBruce Richardson 	in_seg = pkt_in;
117*1edf7a79SPu Xu 	in_seg_data_pos = header_len;
11899a2dd95SBruce Richardson 	out_pkt_pos = 0;
11999a2dd95SBruce Richardson 	fragment_offset = 0;
12099a2dd95SBruce Richardson 
12199a2dd95SBruce Richardson 	more_in_segs = 1;
12299a2dd95SBruce Richardson 	while (likely(more_in_segs)) {
12399a2dd95SBruce Richardson 		struct rte_mbuf *out_pkt = NULL, *out_seg_prev = NULL;
12499a2dd95SBruce Richardson 		uint32_t more_out_segs;
12599a2dd95SBruce Richardson 		struct rte_ipv4_hdr *out_hdr;
12699a2dd95SBruce Richardson 
12799a2dd95SBruce Richardson 		/* Allocate direct buffer */
12899a2dd95SBruce Richardson 		out_pkt = rte_pktmbuf_alloc(pool_direct);
12999a2dd95SBruce Richardson 		if (unlikely(out_pkt == NULL)) {
13099a2dd95SBruce Richardson 			__free_fragments(pkts_out, out_pkt_pos);
13199a2dd95SBruce Richardson 			return -ENOMEM;
13299a2dd95SBruce Richardson 		}
13399a2dd95SBruce Richardson 
13499a2dd95SBruce Richardson 		/* Reserve space for the IP header that will be built later */
135*1edf7a79SPu Xu 		out_pkt->data_len = header_len;
136*1edf7a79SPu Xu 		out_pkt->pkt_len = header_len;
13799a2dd95SBruce Richardson 		frag_bytes_remaining = frag_size;
13899a2dd95SBruce Richardson 
13999a2dd95SBruce Richardson 		out_seg_prev = out_pkt;
14099a2dd95SBruce Richardson 		more_out_segs = 1;
14199a2dd95SBruce Richardson 		while (likely(more_out_segs && more_in_segs)) {
14299a2dd95SBruce Richardson 			struct rte_mbuf *out_seg = NULL;
14399a2dd95SBruce Richardson 			uint32_t len;
14499a2dd95SBruce Richardson 
14599a2dd95SBruce Richardson 			/* Allocate indirect buffer */
14699a2dd95SBruce Richardson 			out_seg = rte_pktmbuf_alloc(pool_indirect);
14799a2dd95SBruce Richardson 			if (unlikely(out_seg == NULL)) {
14899a2dd95SBruce Richardson 				rte_pktmbuf_free(out_pkt);
14999a2dd95SBruce Richardson 				__free_fragments(pkts_out, out_pkt_pos);
15099a2dd95SBruce Richardson 				return -ENOMEM;
15199a2dd95SBruce Richardson 			}
15299a2dd95SBruce Richardson 			out_seg_prev->next = out_seg;
15399a2dd95SBruce Richardson 			out_seg_prev = out_seg;
15499a2dd95SBruce Richardson 
15599a2dd95SBruce Richardson 			/* Prepare indirect buffer */
15699a2dd95SBruce Richardson 			rte_pktmbuf_attach(out_seg, in_seg);
15799a2dd95SBruce Richardson 			len = frag_bytes_remaining;
15899a2dd95SBruce Richardson 			if (len > (in_seg->data_len - in_seg_data_pos)) {
15999a2dd95SBruce Richardson 				len = in_seg->data_len - in_seg_data_pos;
16099a2dd95SBruce Richardson 			}
16199a2dd95SBruce Richardson 			out_seg->data_off = in_seg->data_off + in_seg_data_pos;
16299a2dd95SBruce Richardson 			out_seg->data_len = (uint16_t)len;
16399a2dd95SBruce Richardson 			out_pkt->pkt_len = (uint16_t)(len +
16499a2dd95SBruce Richardson 			    out_pkt->pkt_len);
16599a2dd95SBruce Richardson 			out_pkt->nb_segs += 1;
16699a2dd95SBruce Richardson 			in_seg_data_pos += len;
16799a2dd95SBruce Richardson 			frag_bytes_remaining -= len;
16899a2dd95SBruce Richardson 
16999a2dd95SBruce Richardson 			/* Current output packet (i.e. fragment) done ? */
17099a2dd95SBruce Richardson 			if (unlikely(frag_bytes_remaining == 0))
17199a2dd95SBruce Richardson 				more_out_segs = 0;
17299a2dd95SBruce Richardson 
17399a2dd95SBruce Richardson 			/* Current input segment done ? */
17499a2dd95SBruce Richardson 			if (unlikely(in_seg_data_pos == in_seg->data_len)) {
17599a2dd95SBruce Richardson 				in_seg = in_seg->next;
17699a2dd95SBruce Richardson 				in_seg_data_pos = 0;
17799a2dd95SBruce Richardson 
17899a2dd95SBruce Richardson 				if (unlikely(in_seg == NULL))
17999a2dd95SBruce Richardson 					more_in_segs = 0;
18099a2dd95SBruce Richardson 			}
18199a2dd95SBruce Richardson 		}
18299a2dd95SBruce Richardson 
18399a2dd95SBruce Richardson 		/* Build the IP header */
18499a2dd95SBruce Richardson 
18599a2dd95SBruce Richardson 		out_hdr = rte_pktmbuf_mtod(out_pkt, struct rte_ipv4_hdr *);
18699a2dd95SBruce Richardson 
187*1edf7a79SPu Xu 		__fill_ipv4hdr_frag(out_hdr, in_hdr, header_len,
18899a2dd95SBruce Richardson 		    (uint16_t)out_pkt->pkt_len,
18999a2dd95SBruce Richardson 		    flag_offset, fragment_offset, more_in_segs);
19099a2dd95SBruce Richardson 
19199a2dd95SBruce Richardson 		fragment_offset = (uint16_t)(fragment_offset +
192*1edf7a79SPu Xu 		    out_pkt->pkt_len - header_len);
19399a2dd95SBruce Richardson 
194*1edf7a79SPu Xu 		out_pkt->l3_len = header_len;
19599a2dd95SBruce Richardson 
19699a2dd95SBruce Richardson 		/* Write the fragment to the output list */
19799a2dd95SBruce Richardson 		pkts_out[out_pkt_pos] = out_pkt;
19899a2dd95SBruce Richardson 		out_pkt_pos ++;
19999a2dd95SBruce Richardson 	}
20099a2dd95SBruce Richardson 
20199a2dd95SBruce Richardson 	return out_pkt_pos;
20299a2dd95SBruce Richardson }
203