mirror of
https://github.com/openvswitch/ovs
synced 2025-10-13 14:07:02 +00:00
Signed-off-by: Pravin B Shelar <pshelar@nicira.com> Acked-by: Jarno Rajahalme <jrajahalme@nicira.com>
559 lines
17 KiB
C
559 lines
17 KiB
C
/*
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* Copyright (c) 2008, 2009, 2010, 2011, 2012, 2013 Nicira, Inc.
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*
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* Licensed under the Apache License, Version 2.0 (the "License");
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* you may not use this file except in compliance with the License.
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* You may obtain a copy of the License at:
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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*/
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#include <config.h>
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#include "ofpbuf.h"
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#include <stdlib.h>
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#include <string.h>
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#include "dynamic-string.h"
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#include "netdev-dpdk.h"
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#include "util.h"
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static void
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ofpbuf_init__(struct ofpbuf *b, size_t allocated, enum ofpbuf_source source)
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{
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b->allocated = allocated;
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b->source = source;
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b->l2 = NULL;
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b->l2_5_ofs = b->l3_ofs = b->l4_ofs = UINT16_MAX;
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list_poison(&b->list_node);
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}
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static void
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ofpbuf_use__(struct ofpbuf *b, void *base, size_t allocated,
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enum ofpbuf_source source)
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{
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ofpbuf_set_base(b, base);
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ofpbuf_set_data(b, base);
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ofpbuf_set_size(b, 0);
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ofpbuf_init__(b, allocated, source);
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}
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/* Initializes 'b' as an empty ofpbuf that contains the 'allocated' bytes of
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* memory starting at 'base'. 'base' should be the first byte of a region
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* obtained from malloc(). It will be freed (with free()) if 'b' is resized or
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* freed. */
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void
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ofpbuf_use(struct ofpbuf *b, void *base, size_t allocated)
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{
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ofpbuf_use__(b, base, allocated, OFPBUF_MALLOC);
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}
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/* Initializes 'b' as an empty ofpbuf that contains the 'allocated' bytes of
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* memory starting at 'base'. 'base' should point to a buffer on the stack.
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* (Nothing actually relies on 'base' being allocated on the stack. It could
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* be static or malloc()'d memory. But stack space is the most common use
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* case.)
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*
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* 'base' should be appropriately aligned. Using an array of uint32_t or
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* uint64_t for the buffer is a reasonable way to ensure appropriate alignment
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* for 32- or 64-bit data.
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*
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* An ofpbuf operation that requires reallocating data will assert-fail if this
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* function was used to initialize it. Thus, one need not call ofpbuf_uninit()
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* on an ofpbuf initialized by this function (though doing so is harmless),
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* because it is guaranteed that 'b' does not own any heap-allocated memory. */
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void
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ofpbuf_use_stack(struct ofpbuf *b, void *base, size_t allocated)
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{
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ofpbuf_use__(b, base, allocated, OFPBUF_STACK);
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}
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/* Initializes 'b' as an empty ofpbuf that contains the 'allocated' bytes of
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* memory starting at 'base'. 'base' should point to a buffer on the stack.
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* (Nothing actually relies on 'base' being allocated on the stack. It could
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* be static or malloc()'d memory. But stack space is the most common use
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* case.)
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*
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* 'base' should be appropriately aligned. Using an array of uint32_t or
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* uint64_t for the buffer is a reasonable way to ensure appropriate alignment
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* for 32- or 64-bit data.
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*
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* An ofpbuf operation that requires reallocating data will copy the provided
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* buffer into a malloc()'d buffer. Thus, it is wise to call ofpbuf_uninit()
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* on an ofpbuf initialized by this function, so that if it expanded into the
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* heap, that memory is freed. */
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void
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ofpbuf_use_stub(struct ofpbuf *b, void *base, size_t allocated)
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{
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ofpbuf_use__(b, base, allocated, OFPBUF_STUB);
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}
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/* Initializes 'b' as an ofpbuf whose data starts at 'data' and continues for
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* 'size' bytes. This is appropriate for an ofpbuf that will be used to
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* inspect existing data, without moving it around or reallocating it, and
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* generally without modifying it at all.
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*
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* An ofpbuf operation that requires reallocating data will assert-fail if this
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* function was used to initialize it. */
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void
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ofpbuf_use_const(struct ofpbuf *b, const void *data, size_t size)
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{
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ofpbuf_use__(b, CONST_CAST(void *, data), size, OFPBUF_STACK);
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ofpbuf_set_size(b, size);
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}
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/* Initializes 'b' as an empty ofpbuf that contains the 'allocated' bytes of
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* memory starting at 'base'. DPDK allocated ofpbuf and *data is allocated
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* from one continous memory region, so in memory data start right after
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* ofpbuf. Therefore there is special method to free this type of
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* buffer. ofpbuf base, data and size are initialized by dpdk rcv() so no
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* need to initialize those fields. */
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void
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ofpbuf_init_dpdk(struct ofpbuf *b, size_t allocated)
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{
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ofpbuf_init__(b, allocated, OFPBUF_DPDK);
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}
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/* Initializes 'b' as an empty ofpbuf with an initial capacity of 'size'
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* bytes. */
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void
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ofpbuf_init(struct ofpbuf *b, size_t size)
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{
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ofpbuf_use(b, size ? xmalloc(size) : NULL, size);
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}
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/* Frees memory that 'b' points to. */
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void
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ofpbuf_uninit(struct ofpbuf *b)
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{
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if (b) {
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if (b->source == OFPBUF_MALLOC) {
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free(ofpbuf_base(b));
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}
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if (b->source == OFPBUF_DPDK) {
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free_dpdk_buf(b);
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}
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}
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}
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/* Frees memory that 'b' points to and allocates a new ofpbuf */
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void
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ofpbuf_reinit(struct ofpbuf *b, size_t size)
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{
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ofpbuf_uninit(b);
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ofpbuf_init(b, size);
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}
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/* Creates and returns a new ofpbuf with an initial capacity of 'size'
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* bytes. */
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struct ofpbuf *
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ofpbuf_new(size_t size)
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{
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struct ofpbuf *b = xmalloc(sizeof *b);
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ofpbuf_init(b, size);
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return b;
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}
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/* Creates and returns a new ofpbuf with an initial capacity of 'size +
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* headroom' bytes, reserving the first 'headroom' bytes as headroom. */
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struct ofpbuf *
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ofpbuf_new_with_headroom(size_t size, size_t headroom)
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{
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struct ofpbuf *b = ofpbuf_new(size + headroom);
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ofpbuf_reserve(b, headroom);
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return b;
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}
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/* Creates and returns a new ofpbuf that initially contains a copy of the
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* 'ofpbuf_size(buffer)' bytes of data starting at 'buffer->data' with no headroom or
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* tailroom. */
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struct ofpbuf *
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ofpbuf_clone(const struct ofpbuf *buffer)
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{
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return ofpbuf_clone_with_headroom(buffer, 0);
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}
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/* Creates and returns a new ofpbuf whose data are copied from 'buffer'. The
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* returned ofpbuf will additionally have 'headroom' bytes of headroom. */
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struct ofpbuf *
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ofpbuf_clone_with_headroom(const struct ofpbuf *buffer, size_t headroom)
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{
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struct ofpbuf *new_buffer;
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new_buffer = ofpbuf_clone_data_with_headroom(ofpbuf_data(buffer),
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ofpbuf_size(buffer),
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headroom);
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if (buffer->l2) {
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uintptr_t data_delta = (char *)ofpbuf_data(new_buffer) - (char *)ofpbuf_data(buffer);
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new_buffer->l2 = (char *) buffer->l2 + data_delta;
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}
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new_buffer->l2_5_ofs = buffer->l2_5_ofs;
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new_buffer->l3_ofs = buffer->l3_ofs;
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new_buffer->l4_ofs = buffer->l4_ofs;
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return new_buffer;
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}
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/* Creates and returns a new ofpbuf that initially contains a copy of the
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* 'size' bytes of data starting at 'data' with no headroom or tailroom. */
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struct ofpbuf *
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ofpbuf_clone_data(const void *data, size_t size)
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{
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return ofpbuf_clone_data_with_headroom(data, size, 0);
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}
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/* Creates and returns a new ofpbuf that initially contains 'headroom' bytes of
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* headroom followed by a copy of the 'size' bytes of data starting at
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* 'data'. */
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struct ofpbuf *
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ofpbuf_clone_data_with_headroom(const void *data, size_t size, size_t headroom)
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{
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struct ofpbuf *b = ofpbuf_new_with_headroom(size, headroom);
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ofpbuf_put(b, data, size);
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return b;
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}
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static void
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ofpbuf_copy__(struct ofpbuf *b, uint8_t *new_base,
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size_t new_headroom, size_t new_tailroom)
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{
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const uint8_t *old_base = ofpbuf_base(b);
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size_t old_headroom = ofpbuf_headroom(b);
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size_t old_tailroom = ofpbuf_tailroom(b);
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size_t copy_headroom = MIN(old_headroom, new_headroom);
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size_t copy_tailroom = MIN(old_tailroom, new_tailroom);
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memcpy(&new_base[new_headroom - copy_headroom],
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&old_base[old_headroom - copy_headroom],
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copy_headroom + ofpbuf_size(b) + copy_tailroom);
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}
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/* Reallocates 'b' so that it has exactly 'new_headroom' and 'new_tailroom'
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* bytes of headroom and tailroom, respectively. */
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static void
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ofpbuf_resize__(struct ofpbuf *b, size_t new_headroom, size_t new_tailroom)
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{
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void *new_base, *new_data;
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size_t new_allocated;
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new_allocated = new_headroom + ofpbuf_size(b) + new_tailroom;
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switch (b->source) {
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case OFPBUF_DPDK:
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OVS_NOT_REACHED();
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case OFPBUF_MALLOC:
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if (new_headroom == ofpbuf_headroom(b)) {
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new_base = xrealloc(ofpbuf_base(b), new_allocated);
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} else {
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new_base = xmalloc(new_allocated);
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ofpbuf_copy__(b, new_base, new_headroom, new_tailroom);
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free(ofpbuf_base(b));
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}
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break;
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case OFPBUF_STACK:
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OVS_NOT_REACHED();
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case OFPBUF_STUB:
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b->source = OFPBUF_MALLOC;
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new_base = xmalloc(new_allocated);
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ofpbuf_copy__(b, new_base, new_headroom, new_tailroom);
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break;
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default:
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OVS_NOT_REACHED();
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}
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b->allocated = new_allocated;
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ofpbuf_set_base(b, new_base);
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new_data = (char *) new_base + new_headroom;
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if (ofpbuf_data(b) != new_data) {
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uintptr_t data_delta = (char *) new_data - (char *) ofpbuf_data(b);
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ofpbuf_set_data(b, new_data);
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if (b->l2) {
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b->l2 = (char *) b->l2 + data_delta;
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}
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}
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}
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/* Ensures that 'b' has room for at least 'size' bytes at its tail end,
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* reallocating and copying its data if necessary. Its headroom, if any, is
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* preserved. */
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void
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ofpbuf_prealloc_tailroom(struct ofpbuf *b, size_t size)
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{
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if (size > ofpbuf_tailroom(b)) {
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ofpbuf_resize__(b, ofpbuf_headroom(b), MAX(size, 64));
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}
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}
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/* Ensures that 'b' has room for at least 'size' bytes at its head,
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* reallocating and copying its data if necessary. Its tailroom, if any, is
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* preserved. */
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void
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ofpbuf_prealloc_headroom(struct ofpbuf *b, size_t size)
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{
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if (size > ofpbuf_headroom(b)) {
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ofpbuf_resize__(b, MAX(size, 64), ofpbuf_tailroom(b));
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}
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}
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/* Trims the size of 'b' to fit its actual content, reducing its tailroom to
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* 0. Its headroom, if any, is preserved.
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*
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* Buffers not obtained from malloc() are not resized, since that wouldn't save
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* any memory. */
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void
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ofpbuf_trim(struct ofpbuf *b)
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{
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ovs_assert(b->source != OFPBUF_DPDK);
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if (b->source == OFPBUF_MALLOC
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&& (ofpbuf_headroom(b) || ofpbuf_tailroom(b))) {
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ofpbuf_resize__(b, 0, 0);
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}
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}
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/* If 'b' is shorter than 'length' bytes, pads its tail out with zeros to that
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* length. */
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void
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ofpbuf_padto(struct ofpbuf *b, size_t length)
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{
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if (ofpbuf_size(b) < length) {
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ofpbuf_put_zeros(b, length - ofpbuf_size(b));
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}
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}
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/* Shifts all of the data within the allocated space in 'b' by 'delta' bytes.
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* For example, a 'delta' of 1 would cause each byte of data to move one byte
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* forward (from address 'p' to 'p+1'), and a 'delta' of -1 would cause each
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* byte to move one byte backward (from 'p' to 'p-1'). */
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void
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ofpbuf_shift(struct ofpbuf *b, int delta)
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{
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ovs_assert(delta > 0 ? delta <= ofpbuf_tailroom(b)
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: delta < 0 ? -delta <= ofpbuf_headroom(b)
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: true);
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if (delta != 0) {
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char *dst = (char *) ofpbuf_data(b) + delta;
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memmove(dst, ofpbuf_data(b), ofpbuf_size(b));
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ofpbuf_set_data(b, dst);
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}
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}
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/* Appends 'size' bytes of data to the tail end of 'b', reallocating and
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* copying its data if necessary. Returns a pointer to the first byte of the
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* new data, which is left uninitialized. */
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void *
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ofpbuf_put_uninit(struct ofpbuf *b, size_t size)
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{
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void *p;
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ofpbuf_prealloc_tailroom(b, size);
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p = ofpbuf_tail(b);
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ofpbuf_set_size(b, ofpbuf_size(b) + size);
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return p;
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}
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/* Appends 'size' zeroed bytes to the tail end of 'b'. Data in 'b' is
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* reallocated and copied if necessary. Returns a pointer to the first byte of
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* the data's location in the ofpbuf. */
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void *
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ofpbuf_put_zeros(struct ofpbuf *b, size_t size)
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{
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void *dst = ofpbuf_put_uninit(b, size);
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memset(dst, 0, size);
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return dst;
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}
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/* Appends the 'size' bytes of data in 'p' to the tail end of 'b'. Data in 'b'
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* is reallocated and copied if necessary. Returns a pointer to the first
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* byte of the data's location in the ofpbuf. */
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void *
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ofpbuf_put(struct ofpbuf *b, const void *p, size_t size)
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{
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void *dst = ofpbuf_put_uninit(b, size);
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memcpy(dst, p, size);
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return dst;
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}
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/* Parses as many pairs of hex digits as possible (possibly separated by
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* spaces) from the beginning of 's', appending bytes for their values to 'b'.
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* Returns the first character of 's' that is not the first of a pair of hex
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* digits. If 'n' is nonnull, stores the number of bytes added to 'b' in
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* '*n'. */
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char *
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ofpbuf_put_hex(struct ofpbuf *b, const char *s, size_t *n)
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{
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size_t initial_size = ofpbuf_size(b);
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for (;;) {
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uint8_t byte;
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bool ok;
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s += strspn(s, " \t\r\n");
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byte = hexits_value(s, 2, &ok);
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if (!ok) {
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if (n) {
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*n = ofpbuf_size(b) - initial_size;
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}
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return CONST_CAST(char *, s);
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}
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ofpbuf_put(b, &byte, 1);
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s += 2;
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}
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}
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/* Reserves 'size' bytes of headroom so that they can be later allocated with
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* ofpbuf_push_uninit() without reallocating the ofpbuf. */
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void
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ofpbuf_reserve(struct ofpbuf *b, size_t size)
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{
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ovs_assert(!ofpbuf_size(b));
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ofpbuf_prealloc_tailroom(b, size);
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ofpbuf_set_data(b, (char*)ofpbuf_data(b) + size);
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}
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/* Reserves 'size' bytes of headroom so that they can be later allocated with
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* ofpbuf_push_uninit() without reallocating the ofpbuf. */
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void
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ofpbuf_reserve_with_tailroom(struct ofpbuf *b, size_t headroom,
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size_t tailroom)
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{
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ovs_assert(!ofpbuf_size(b));
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ofpbuf_prealloc_tailroom(b, headroom + tailroom);
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ofpbuf_set_data(b, (char*)ofpbuf_data(b) + headroom);
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}
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/* Prefixes 'size' bytes to the head end of 'b', reallocating and copying its
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* data if necessary. Returns a pointer to the first byte of the data's
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* location in the ofpbuf. The new data is left uninitialized. */
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void *
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ofpbuf_push_uninit(struct ofpbuf *b, size_t size)
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{
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ofpbuf_prealloc_headroom(b, size);
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ofpbuf_set_data(b, (char*)ofpbuf_data(b) - size);
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ofpbuf_set_size(b, ofpbuf_size(b) + size);
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return ofpbuf_data(b);
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}
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/* Prefixes 'size' zeroed bytes to the head end of 'b', reallocating and
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* copying its data if necessary. Returns a pointer to the first byte of the
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* data's location in the ofpbuf. */
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void *
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ofpbuf_push_zeros(struct ofpbuf *b, size_t size)
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{
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void *dst = ofpbuf_push_uninit(b, size);
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memset(dst, 0, size);
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return dst;
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}
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/* Copies the 'size' bytes starting at 'p' to the head end of 'b', reallocating
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* and copying its data if necessary. Returns a pointer to the first byte of
|
|
* the data's location in the ofpbuf. */
|
|
void *
|
|
ofpbuf_push(struct ofpbuf *b, const void *p, size_t size)
|
|
{
|
|
void *dst = ofpbuf_push_uninit(b, size);
|
|
memcpy(dst, p, size);
|
|
return dst;
|
|
}
|
|
|
|
/* Returns the data in 'b' as a block of malloc()'d memory and frees the buffer
|
|
* within 'b'. (If 'b' itself was dynamically allocated, e.g. with
|
|
* ofpbuf_new(), then it should still be freed with, e.g., ofpbuf_delete().) */
|
|
void *
|
|
ofpbuf_steal_data(struct ofpbuf *b)
|
|
{
|
|
void *p;
|
|
ovs_assert(b->source != OFPBUF_DPDK);
|
|
|
|
if (b->source == OFPBUF_MALLOC && ofpbuf_data(b) == ofpbuf_base(b)) {
|
|
p = ofpbuf_data(b);
|
|
} else {
|
|
p = xmemdup(ofpbuf_data(b), ofpbuf_size(b));
|
|
if (b->source == OFPBUF_MALLOC) {
|
|
free(ofpbuf_base(b));
|
|
}
|
|
}
|
|
ofpbuf_set_base(b, NULL);
|
|
ofpbuf_set_data(b, NULL);
|
|
return p;
|
|
}
|
|
|
|
/* Returns a string that describes some of 'b''s metadata plus a hex dump of up
|
|
* to 'maxbytes' from the start of the buffer. */
|
|
char *
|
|
ofpbuf_to_string(const struct ofpbuf *b, size_t maxbytes)
|
|
{
|
|
struct ds s;
|
|
|
|
ds_init(&s);
|
|
ds_put_format(&s, "size=%"PRIu32", allocated=%"PRIu32", head=%"PRIuSIZE", tail=%"PRIuSIZE"\n",
|
|
ofpbuf_size(b), b->allocated,
|
|
ofpbuf_headroom(b), ofpbuf_tailroom(b));
|
|
ds_put_hex_dump(&s, ofpbuf_data(b), MIN(ofpbuf_size(b), maxbytes), 0, false);
|
|
return ds_cstr(&s);
|
|
}
|
|
|
|
/* Removes each of the "struct ofpbuf"s on 'list' from the list and frees
|
|
* them. */
|
|
void
|
|
ofpbuf_list_delete(struct list *list)
|
|
{
|
|
struct ofpbuf *b, *next;
|
|
|
|
LIST_FOR_EACH_SAFE (b, next, list_node, list) {
|
|
list_remove(&b->list_node);
|
|
ofpbuf_delete(b);
|
|
}
|
|
}
|
|
|
|
static inline void
|
|
ofpbuf_adjust_layer_offset(uint16_t *offset, int increment)
|
|
{
|
|
if (*offset != UINT16_MAX) {
|
|
*offset += increment;
|
|
}
|
|
}
|
|
|
|
/* Adjust the size of the l2_5 portion of the ofpbuf, updating the l2
|
|
* pointer and the layer offsets. The caller is responsible for
|
|
* modifying the contents. */
|
|
void *
|
|
ofpbuf_resize_l2_5(struct ofpbuf *b, int increment)
|
|
{
|
|
if (increment >= 0) {
|
|
ofpbuf_push_uninit(b, increment);
|
|
} else {
|
|
ofpbuf_pull(b, -increment);
|
|
}
|
|
|
|
b->l2 = ofpbuf_data(b);
|
|
/* Adjust layer offsets after l2_5. */
|
|
ofpbuf_adjust_layer_offset(&b->l3_ofs, increment);
|
|
ofpbuf_adjust_layer_offset(&b->l4_ofs, increment);
|
|
|
|
return b->l2;
|
|
}
|
|
|
|
/* Adjust the size of the l2 portion of the ofpbuf, updating the l2
|
|
* pointer and the layer offsets. The caller is responsible for
|
|
* modifying the contents. */
|
|
void *
|
|
ofpbuf_resize_l2(struct ofpbuf *b, int increment)
|
|
{
|
|
ofpbuf_resize_l2_5(b, increment);
|
|
ofpbuf_adjust_layer_offset(&b->l2_5_ofs, increment);
|
|
return b->l2;
|
|
}
|