multifd: Add zlib compression multifd support
Signed-off-by: Juan Quintela <quintela@redhat.com> Acked-by: Markus Armbruster <armbru@redhat.com> Reviewed-by: Dr. David Alan Gilbert <dgilbert@redhat.com>
This commit is contained in:
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9004db48c0
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7ec2c2b3c1
@ -645,7 +645,7 @@ const PropertyInfo qdev_prop_fdc_drive_type = {
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const PropertyInfo qdev_prop_multifd_compression = {
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.name = "MultiFDCompression",
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.description = "multifd_compression values, "
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"none",
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"none/zlib",
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.enum_table = &MultiFDCompression_lookup,
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.get = get_enum,
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.set = set_enum,
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@ -8,6 +8,7 @@ common-obj-y += xbzrle.o postcopy-ram.o
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common-obj-y += qjson.o
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common-obj-y += block-dirty-bitmap.o
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common-obj-y += multifd.o
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common-obj-y += multifd-zlib.o
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common-obj-$(CONFIG_RDMA) += rdma.o
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325
migration/multifd-zlib.c
Normal file
325
migration/multifd-zlib.c
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@ -0,0 +1,325 @@
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/*
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* Multifd zlib compression implementation
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*
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* Copyright (c) 2020 Red Hat Inc
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*
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* Authors:
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* Juan Quintela <quintela@redhat.com>
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*
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* This work is licensed under the terms of the GNU GPL, version 2 or later.
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* See the COPYING file in the top-level directory.
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*/
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#include "qemu/osdep.h"
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#include <zlib.h>
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#include "qemu/rcu.h"
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#include "exec/target_page.h"
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#include "qapi/error.h"
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#include "migration.h"
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#include "trace.h"
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#include "multifd.h"
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struct zlib_data {
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/* stream for compression */
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z_stream zs;
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/* compressed buffer */
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uint8_t *zbuff;
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/* size of compressed buffer */
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uint32_t zbuff_len;
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};
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/* Multifd zlib compression */
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/**
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* zlib_send_setup: setup send side
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*
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* Setup each channel with zlib compression.
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*
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* Returns 0 for success or -1 for error
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*
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* @p: Params for the channel that we are using
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* @errp: pointer to an error
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*/
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static int zlib_send_setup(MultiFDSendParams *p, Error **errp)
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{
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uint32_t page_count = MULTIFD_PACKET_SIZE / qemu_target_page_size();
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struct zlib_data *z = g_malloc0(sizeof(struct zlib_data));
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z_stream *zs = &z->zs;
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zs->zalloc = Z_NULL;
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zs->zfree = Z_NULL;
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zs->opaque = Z_NULL;
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if (deflateInit(zs, migrate_multifd_zlib_level()) != Z_OK) {
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g_free(z);
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error_setg(errp, "multifd %d: deflate init failed", p->id);
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return -1;
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}
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/* We will never have more than page_count pages */
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z->zbuff_len = page_count * qemu_target_page_size();
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z->zbuff_len *= 2;
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z->zbuff = g_try_malloc(z->zbuff_len);
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if (!z->zbuff) {
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deflateEnd(&z->zs);
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g_free(z);
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error_setg(errp, "multifd %d: out of memory for zbuff", p->id);
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return -1;
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}
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p->data = z;
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return 0;
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}
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/**
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* zlib_send_cleanup: cleanup send side
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*
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* Close the channel and return memory.
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*
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* @p: Params for the channel that we are using
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*/
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static void zlib_send_cleanup(MultiFDSendParams *p, Error **errp)
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{
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struct zlib_data *z = p->data;
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deflateEnd(&z->zs);
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g_free(z->zbuff);
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z->zbuff = NULL;
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g_free(p->data);
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p->data = NULL;
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}
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/**
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* zlib_send_prepare: prepare date to be able to send
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*
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* Create a compressed buffer with all the pages that we are going to
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* send.
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*
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* Returns 0 for success or -1 for error
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*
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* @p: Params for the channel that we are using
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* @used: number of pages used
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*/
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static int zlib_send_prepare(MultiFDSendParams *p, uint32_t used, Error **errp)
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{
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struct iovec *iov = p->pages->iov;
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struct zlib_data *z = p->data;
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z_stream *zs = &z->zs;
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uint32_t out_size = 0;
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int ret;
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uint32_t i;
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for (i = 0; i < used; i++) {
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uint32_t available = z->zbuff_len - out_size;
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int flush = Z_NO_FLUSH;
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if (i == used - 1) {
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flush = Z_SYNC_FLUSH;
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}
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zs->avail_in = iov[i].iov_len;
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zs->next_in = iov[i].iov_base;
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zs->avail_out = available;
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zs->next_out = z->zbuff + out_size;
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/*
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* Welcome to deflate semantics
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*
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* We need to loop while:
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* - return is Z_OK
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* - there are stuff to be compressed
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* - there are output space free
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*/
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do {
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ret = deflate(zs, flush);
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} while (ret == Z_OK && zs->avail_in && zs->avail_out);
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if (ret == Z_OK && zs->avail_in) {
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error_setg(errp, "multifd %d: deflate failed to compress all input",
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p->id);
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return -1;
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}
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if (ret != Z_OK) {
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error_setg(errp, "multifd %d: deflate returned %d instead of Z_OK",
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p->id, ret);
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return -1;
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}
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out_size += available - zs->avail_out;
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}
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p->next_packet_size = out_size;
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p->flags |= MULTIFD_FLAG_ZLIB;
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return 0;
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}
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/**
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* zlib_send_write: do the actual write of the data
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*
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* Do the actual write of the comprresed buffer.
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*
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* Returns 0 for success or -1 for error
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*
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* @p: Params for the channel that we are using
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* @used: number of pages used
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* @errp: pointer to an error
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*/
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static int zlib_send_write(MultiFDSendParams *p, uint32_t used, Error **errp)
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{
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struct zlib_data *z = p->data;
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return qio_channel_write_all(p->c, (void *)z->zbuff, p->next_packet_size,
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errp);
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}
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/**
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* zlib_recv_setup: setup receive side
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*
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* Create the compressed channel and buffer.
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*
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* Returns 0 for success or -1 for error
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*
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* @p: Params for the channel that we are using
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* @errp: pointer to an error
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*/
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static int zlib_recv_setup(MultiFDRecvParams *p, Error **errp)
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{
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uint32_t page_count = MULTIFD_PACKET_SIZE / qemu_target_page_size();
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struct zlib_data *z = g_malloc0(sizeof(struct zlib_data));
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z_stream *zs = &z->zs;
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p->data = z;
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zs->zalloc = Z_NULL;
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zs->zfree = Z_NULL;
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zs->opaque = Z_NULL;
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zs->avail_in = 0;
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zs->next_in = Z_NULL;
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if (inflateInit(zs) != Z_OK) {
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error_setg(errp, "multifd %d: inflate init failed", p->id);
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return -1;
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}
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/* We will never have more than page_count pages */
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z->zbuff_len = page_count * qemu_target_page_size();
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/* We know compression "could" use more space */
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z->zbuff_len *= 2;
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z->zbuff = g_try_malloc(z->zbuff_len);
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if (!z->zbuff) {
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inflateEnd(zs);
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error_setg(errp, "multifd %d: out of memory for zbuff", p->id);
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return -1;
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}
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return 0;
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}
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/**
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* zlib_recv_cleanup: setup receive side
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*
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* For no compression this function does nothing.
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*
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* @p: Params for the channel that we are using
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*/
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static void zlib_recv_cleanup(MultiFDRecvParams *p)
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{
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struct zlib_data *z = p->data;
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inflateEnd(&z->zs);
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g_free(z->zbuff);
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z->zbuff = NULL;
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g_free(p->data);
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p->data = NULL;
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}
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/**
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* zlib_recv_pages: read the data from the channel into actual pages
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*
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* Read the compressed buffer, and uncompress it into the actual
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* pages.
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*
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* Returns 0 for success or -1 for error
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*
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* @p: Params for the channel that we are using
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* @used: number of pages used
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* @errp: pointer to an error
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*/
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static int zlib_recv_pages(MultiFDRecvParams *p, uint32_t used, Error **errp)
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{
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struct zlib_data *z = p->data;
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z_stream *zs = &z->zs;
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uint32_t in_size = p->next_packet_size;
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/* we measure the change of total_out */
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uint32_t out_size = zs->total_out;
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uint32_t expected_size = used * qemu_target_page_size();
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uint32_t flags = p->flags & MULTIFD_FLAG_COMPRESSION_MASK;
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int ret;
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int i;
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if (flags != MULTIFD_FLAG_ZLIB) {
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error_setg(errp, "multifd %d: flags received %x flags expected %x",
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p->id, flags, MULTIFD_FLAG_ZLIB);
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return -1;
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}
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ret = qio_channel_read_all(p->c, (void *)z->zbuff, in_size, errp);
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if (ret != 0) {
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return ret;
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}
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zs->avail_in = in_size;
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zs->next_in = z->zbuff;
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for (i = 0; i < used; i++) {
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struct iovec *iov = &p->pages->iov[i];
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int flush = Z_NO_FLUSH;
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unsigned long start = zs->total_out;
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if (i == used - 1) {
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flush = Z_SYNC_FLUSH;
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}
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zs->avail_out = iov->iov_len;
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zs->next_out = iov->iov_base;
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/*
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* Welcome to inflate semantics
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*
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* We need to loop while:
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* - return is Z_OK
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* - there are input available
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* - we haven't completed a full page
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*/
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do {
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ret = inflate(zs, flush);
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} while (ret == Z_OK && zs->avail_in
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&& (zs->total_out - start) < iov->iov_len);
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if (ret == Z_OK && (zs->total_out - start) < iov->iov_len) {
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error_setg(errp, "multifd %d: inflate generated too few output",
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p->id);
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return -1;
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}
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if (ret != Z_OK) {
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error_setg(errp, "multifd %d: inflate returned %d instead of Z_OK",
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p->id, ret);
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return -1;
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}
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}
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out_size = zs->total_out - out_size;
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if (out_size != expected_size) {
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error_setg(errp, "multifd %d: packet size received %d size expected %d",
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p->id, out_size, expected_size);
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return -1;
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}
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return 0;
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}
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static MultiFDMethods multifd_zlib_ops = {
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.send_setup = zlib_send_setup,
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.send_cleanup = zlib_send_cleanup,
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.send_prepare = zlib_send_prepare,
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.send_write = zlib_send_write,
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.recv_setup = zlib_recv_setup,
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.recv_cleanup = zlib_recv_cleanup,
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.recv_pages = zlib_recv_pages
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};
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static void multifd_zlib_register(void)
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{
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multifd_register_ops(MULTIFD_COMPRESSION_ZLIB, &multifd_zlib_ops);
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}
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migration_init(multifd_zlib_register);
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@ -166,6 +166,12 @@ static MultiFDMethods *multifd_ops[MULTIFD_COMPRESSION__MAX] = {
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[MULTIFD_COMPRESSION_NONE] = &multifd_nocomp_ops,
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};
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void multifd_register_ops(int method, MultiFDMethods *ops)
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{
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assert(0 < method && method < MULTIFD_COMPRESSION__MAX);
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multifd_ops[method] = ops;
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}
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static int multifd_send_initial_packet(MultiFDSendParams *p, Error **errp)
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{
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MultiFDInit_t msg = {};
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@ -23,12 +23,14 @@ void multifd_recv_sync_main(void);
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void multifd_send_sync_main(QEMUFile *f);
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int multifd_queue_page(QEMUFile *f, RAMBlock *block, ram_addr_t offset);
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/* Multifd Compression flags */
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#define MULTIFD_FLAG_SYNC (1 << 0)
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/* We reserve 3 bits for compression methods */
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#define MULTIFD_FLAG_COMPRESSION_MASK (7 << 1)
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/* we need to be compatible. Before compression value was 0 */
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#define MULTIFD_FLAG_NOCOMP (0 << 1)
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#define MULTIFD_FLAG_ZLIB (1 << 1)
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/* This value needs to be a multiple of qemu_target_page_size() */
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#define MULTIFD_PACKET_SIZE (512 * 1024)
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@ -161,5 +163,7 @@ typedef struct {
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int (*recv_pages)(MultiFDRecvParams *p, uint32_t used, Error **errp);
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} MultiFDMethods;
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void multifd_register_ops(int method, MultiFDMethods *ops);
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#endif
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@ -494,12 +494,13 @@
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# An enumeration of multifd compression methods.
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#
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# @none: no compression.
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# @zlib: use zlib compression method.
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#
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# Since: 5.0
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#
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##
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{ 'enum': 'MultiFDCompression',
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'data': [ 'none' ] }
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'data': [ 'none', 'zlib' ] }
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##
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# @MigrationParameter:
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@ -1323,6 +1323,11 @@ static void test_multifd_tcp_none(void)
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test_multifd_tcp("none");
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}
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static void test_multifd_tcp_zlib(void)
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{
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test_multifd_tcp("zlib");
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}
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/*
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* This test does:
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* source target
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@ -1486,6 +1491,7 @@ int main(int argc, char **argv)
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qtest_add_func("/migration/auto_converge", test_migrate_auto_converge);
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qtest_add_func("/migration/multifd/tcp/none", test_multifd_tcp_none);
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qtest_add_func("/migration/multifd/tcp/cancel", test_multifd_tcp_cancel);
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qtest_add_func("/migration/multifd/tcp/zlib", test_multifd_tcp_zlib);
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ret = g_test_run();
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