*/
static int nocomp_send_prepare(MultiFDSendParams *p, Error **errp)
{
- p->next_packet_size = p->pages->num * qemu_target_page_size();
+ MultiFDPages_t *pages = p->pages;
+ size_t page_size = qemu_target_page_size();
+
+ for (int i = 0; i < p->pages->num; i++) {
+ p->iov[p->iovs_num].iov_base = pages->block->host + pages->offset[i];
+ p->iov[p->iovs_num].iov_len = page_size;
+ p->iovs_num++;
+ }
+
+ p->next_packet_size = p->pages->num * page_size;
p->flags |= MULTIFD_FLAG_NOCOMP;
return 0;
}
*/
static int nocomp_send_write(MultiFDSendParams *p, uint32_t used, Error **errp)
{
- return qio_channel_writev_all(p->c, p->pages->iov, used, errp);
+ return qio_channel_writev_all(p->c, p->iov, p->iovs_num, errp);
}
/**
static int nocomp_recv_pages(MultiFDRecvParams *p, Error **errp)
{
uint32_t flags = p->flags & MULTIFD_FLAG_COMPRESSION_MASK;
+ size_t page_size = qemu_target_page_size();
if (flags != MULTIFD_FLAG_NOCOMP) {
error_setg(errp, "multifd %u: flags received %x flags expected %x",
p->id, flags, MULTIFD_FLAG_NOCOMP);
return -1;
}
- return qio_channel_readv_all(p->c, p->pages->iov, p->pages->num, errp);
+ for (int i = 0; i < p->pages->num; i++) {
+ p->iov[i].iov_base = p->pages->block->host + p->pages->offset[i];
+ p->iov[i].iov_len = page_size;
+ }
+ return qio_channel_readv_all(p->c, p->iov, p->pages->num, errp);
}
static MultiFDMethods multifd_nocomp_ops = {
MultiFDPages_t *pages = g_new0(MultiFDPages_t, 1);
pages->allocated = size;
- pages->iov = g_new0(struct iovec, size);
pages->offset = g_new0(ram_addr_t, size);
return pages;
pages->allocated = 0;
pages->packet_num = 0;
pages->block = NULL;
- g_free(pages->iov);
- pages->iov = NULL;
g_free(pages->offset);
pages->offset = NULL;
g_free(pages);
return -1;
}
p->pages->offset[i] = offset;
- p->pages->iov[i].iov_base = block->host + offset;
- p->pages->iov[i].iov_len = page_size;
}
return 0;
if (pages->block == block) {
pages->offset[pages->num] = offset;
- pages->iov[pages->num].iov_base = block->host + offset;
- pages->iov[pages->num].iov_len = qemu_target_page_size();
pages->num++;
if (pages->num < pages->allocated) {
p->packet_len = 0;
g_free(p->packet);
p->packet = NULL;
+ g_free(p->iov);
+ p->iov = NULL;
multifd_send_state->ops->send_cleanup(p, &local_err);
if (local_err) {
migrate_set_error(migrate_get_current(), local_err);
uint32_t used = p->pages->num;
uint64_t packet_num = p->packet_num;
uint32_t flags = p->flags;
+ p->iovs_num = 0;
if (used) {
ret = multifd_send_state->ops->send_prepare(p, &local_err);
p->packet->version = cpu_to_be32(MULTIFD_VERSION);
p->name = g_strdup_printf("multifdsend_%d", i);
p->tls_hostname = g_strdup(s->hostname);
+ p->iov = g_new0(struct iovec, page_count);
socket_send_channel_create(multifd_new_send_channel_async, p);
}
p->packet_len = 0;
g_free(p->packet);
p->packet = NULL;
+ g_free(p->iov);
+ p->iov = NULL;
multifd_recv_state->ops->recv_cleanup(p);
}
qemu_sem_destroy(&multifd_recv_state->sem_sync);
+ sizeof(uint64_t) * page_count;
p->packet = g_malloc0(p->packet_len);
p->name = g_strdup_printf("multifdrecv_%d", i);
+ p->iov = g_new0(struct iovec, page_count);
}
for (i = 0; i < thread_count; i++) {