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migration/rdma: Fix out of order wrid
destination: ../qemu/build/qemu-system-x86_64 -enable-kvm -netdev tap,id=hn0,script=/etc/qemu-ifup,downscript=/etc/qemu-ifdown -device e1000,netdev=hn0,mac=50:52:54:00:11:22 -boot c -drive if=none,file=./Fedora-rdma-server-migration.qcow2,id=drive-virtio-disk0 -device virtio-blk-pci,bus=pci.0,addr=0x4,drive=drive-virtio-disk0,id=virtio-disk0 -m 2048 -smp 2 -device piix3-usb-uhci -device usb-tablet -monitor stdio -vga qxl -spice streaming-video=filter,port=5902,disable-ticketing -incoming rdma:192.168.22.23:8888 qemu-system-x86_64: -spice streaming-video=filter,port=5902,disable-ticketing: warning: short-form boolean option 'disable-ticketing' deprecated Please use disable-ticketing=on instead QEMU 6.0.50 monitor - type 'help' for more information (qemu) trace-event qemu_rdma_block_for_wrid_miss on (qemu) dest_init RDMA Device opened: kernel name rxe_eth0 uverbs device name uverbs2, infiniband_verbs class device path /sys/class/infiniband_verbs/uverbs2, infiniband class device path /sys/class/infiniband/rxe_eth0, transport: (2) Ethernet qemu_rdma_block_for_wrid_miss A Wanted wrid CONTROL SEND (2000) but got CONTROL RECV (4000) source: ../qemu/build/qemu-system-x86_64 -enable-kvm -netdev tap,id=hn0,script=/etc/qemu-ifup,downscript=/etc/qemu-ifdown -device e1000,netdev=hn0,mac=50:52:54:00:11:22 -boot c -drive if=none,file=./Fedora-rdma-server.qcow2,id=drive-virtio-disk0 -device virtio-blk-pci,bus=pci.0,addr=0x4,drive=drive-virtio-disk0,id=virtio-disk0 -m 2048 -smp 2 -device piix3-usb-uhci -device usb-tablet -monitor stdio -vga qxl -spice streaming-video=filter,port=5901,disable-ticketing -S qemu-system-x86_64: -spice streaming-video=filter,port=5901,disable-ticketing: warning: short-form boolean option 'disable-ticketing' deprecated Please use disable-ticketing=on instead QEMU 6.0.50 monitor - type 'help' for more information (qemu) (qemu) trace-event qemu_rdma_block_for_wrid_miss on (qemu) migrate -d rdma:192.168.22.23:8888 source_resolve_host RDMA Device opened: kernel name rxe_eth0 uverbs device name uverbs2, infiniband_verbs class device path /sys/class/infiniband_verbs/uverbs2, infiniband class device path /sys/class/infiniband/rxe_eth0, transport: (2) Ethernet (qemu) qemu_rdma_block_for_wrid_miss A Wanted wrid WRITE RDMA (1) but got CONTROL RECV (4000) NOTE: we use soft RoCE as the rdma device. [root@iaas-rpma images]# rdma link show rxe_eth0/1 link rxe_eth0/1 state ACTIVE physical_state LINK_UP netdev eth0 This migration could not be completed when out of order(OOO) CQ event occurs. The send queue and receive queue shared a same completion queue, and qemu_rdma_block_for_wrid() will drop the CQs it's not interested in. But the dropped CQs by qemu_rdma_block_for_wrid() could be later CQs it wants. So in this case, qemu_rdma_block_for_wrid() will block forever. OOO cases will occur in both source side and destination side. And a forever blocking happens on only SEND and RECV are out of order. OOO between 'WRITE RDMA' and 'RECV' doesn't matter. below the OOO sequence: source destination rdma_write_one() qemu_rdma_registration_handle() 1. S1: post_recv X D1: post_recv Y 2. wait for recv CQ event X 3. D2: post_send X ---------------+ 4. wait for send CQ send event X (D2) | 5. recv CQ event X reaches (D2) | 6. +-S2: post_send Y | 7. | wait for send CQ event Y | 8. | recv CQ event Y (S2) (drop it) | 9. +-send CQ event Y reaches (S2) | 10. send CQ event X reaches (D2) -----+ 11. wait recv CQ event Y (dropped by (8)) Although a hardware IB works fine in my a hundred of runs, the IB specification doesn't guaratee the CQ order in such case. Here we introduce a independent send completion queue to distinguish ibv_post_send completion queue from the original mixed completion queue. It helps us to poll the specific CQE we are really interested in. Signed-off-by: Li Zhijian <lizhijian@cn.fujitsu.com> Reviewed-by: Juan Quintela <quintela@redhat.com> Signed-off-by: Juan Quintela <quintela@redhat.com>
This commit is contained in:
parent
af531756d2
commit
b390afd8c5
1 changed files with 101 additions and 37 deletions
138
migration/rdma.c
138
migration/rdma.c
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@ -358,9 +358,11 @@ typedef struct RDMAContext {
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struct ibv_context *verbs;
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struct rdma_event_channel *channel;
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struct ibv_qp *qp; /* queue pair */
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struct ibv_comp_channel *comp_channel; /* completion channel */
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struct ibv_comp_channel *recv_comp_channel; /* recv completion channel */
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struct ibv_comp_channel *send_comp_channel; /* send completion channel */
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struct ibv_pd *pd; /* protection domain */
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struct ibv_cq *cq; /* completion queue */
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struct ibv_cq *recv_cq; /* recvieve completion queue */
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struct ibv_cq *send_cq; /* send completion queue */
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/*
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* If a previous write failed (perhaps because of a failed
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@ -1059,21 +1061,34 @@ static int qemu_rdma_alloc_pd_cq(RDMAContext *rdma)
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return -1;
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}
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/* create completion channel */
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rdma->comp_channel = ibv_create_comp_channel(rdma->verbs);
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if (!rdma->comp_channel) {
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error_report("failed to allocate completion channel");
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/* create receive completion channel */
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rdma->recv_comp_channel = ibv_create_comp_channel(rdma->verbs);
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if (!rdma->recv_comp_channel) {
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error_report("failed to allocate receive completion channel");
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goto err_alloc_pd_cq;
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}
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/*
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* Completion queue can be filled by both read and write work requests,
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* so must reflect the sum of both possible queue sizes.
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* Completion queue can be filled by read work requests.
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*/
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rdma->cq = ibv_create_cq(rdma->verbs, (RDMA_SIGNALED_SEND_MAX * 3),
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NULL, rdma->comp_channel, 0);
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if (!rdma->cq) {
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error_report("failed to allocate completion queue");
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rdma->recv_cq = ibv_create_cq(rdma->verbs, (RDMA_SIGNALED_SEND_MAX * 3),
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NULL, rdma->recv_comp_channel, 0);
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if (!rdma->recv_cq) {
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error_report("failed to allocate receive completion queue");
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goto err_alloc_pd_cq;
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}
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/* create send completion channel */
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rdma->send_comp_channel = ibv_create_comp_channel(rdma->verbs);
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if (!rdma->send_comp_channel) {
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error_report("failed to allocate send completion channel");
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goto err_alloc_pd_cq;
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}
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rdma->send_cq = ibv_create_cq(rdma->verbs, (RDMA_SIGNALED_SEND_MAX * 3),
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NULL, rdma->send_comp_channel, 0);
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if (!rdma->send_cq) {
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error_report("failed to allocate send completion queue");
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goto err_alloc_pd_cq;
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}
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@ -1083,11 +1098,19 @@ err_alloc_pd_cq:
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if (rdma->pd) {
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ibv_dealloc_pd(rdma->pd);
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}
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if (rdma->comp_channel) {
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ibv_destroy_comp_channel(rdma->comp_channel);
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if (rdma->recv_comp_channel) {
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ibv_destroy_comp_channel(rdma->recv_comp_channel);
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}
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if (rdma->send_comp_channel) {
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ibv_destroy_comp_channel(rdma->send_comp_channel);
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}
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if (rdma->recv_cq) {
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ibv_destroy_cq(rdma->recv_cq);
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rdma->recv_cq = NULL;
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}
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rdma->pd = NULL;
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rdma->comp_channel = NULL;
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rdma->recv_comp_channel = NULL;
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rdma->send_comp_channel = NULL;
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return -1;
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}
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@ -1104,8 +1127,8 @@ static int qemu_rdma_alloc_qp(RDMAContext *rdma)
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attr.cap.max_recv_wr = 3;
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attr.cap.max_send_sge = 1;
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attr.cap.max_recv_sge = 1;
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attr.send_cq = rdma->cq;
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attr.recv_cq = rdma->cq;
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attr.send_cq = rdma->send_cq;
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attr.recv_cq = rdma->recv_cq;
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attr.qp_type = IBV_QPT_RC;
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ret = rdma_create_qp(rdma->cm_id, rdma->pd, &attr);
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@ -1496,14 +1519,14 @@ static void qemu_rdma_signal_unregister(RDMAContext *rdma, uint64_t index,
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* (of any kind) has completed.
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* Return the work request ID that completed.
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*/
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static uint64_t qemu_rdma_poll(RDMAContext *rdma, uint64_t *wr_id_out,
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uint32_t *byte_len)
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static uint64_t qemu_rdma_poll(RDMAContext *rdma, struct ibv_cq *cq,
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uint64_t *wr_id_out, uint32_t *byte_len)
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{
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int ret;
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struct ibv_wc wc;
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uint64_t wr_id;
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ret = ibv_poll_cq(rdma->cq, 1, &wc);
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ret = ibv_poll_cq(cq, 1, &wc);
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if (!ret) {
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*wr_id_out = RDMA_WRID_NONE;
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@ -1575,7 +1598,8 @@ static uint64_t qemu_rdma_poll(RDMAContext *rdma, uint64_t *wr_id_out,
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/* Wait for activity on the completion channel.
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* Returns 0 on success, none-0 on error.
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*/
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static int qemu_rdma_wait_comp_channel(RDMAContext *rdma)
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static int qemu_rdma_wait_comp_channel(RDMAContext *rdma,
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struct ibv_comp_channel *comp_channel)
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{
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struct rdma_cm_event *cm_event;
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int ret = -1;
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@ -1586,7 +1610,7 @@ static int qemu_rdma_wait_comp_channel(RDMAContext *rdma)
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*/
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if (rdma->migration_started_on_destination &&
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migration_incoming_get_current()->state == MIGRATION_STATUS_ACTIVE) {
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yield_until_fd_readable(rdma->comp_channel->fd);
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yield_until_fd_readable(comp_channel->fd);
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} else {
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/* This is the source side, we're in a separate thread
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* or destination prior to migration_fd_process_incoming()
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@ -1597,7 +1621,7 @@ static int qemu_rdma_wait_comp_channel(RDMAContext *rdma)
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*/
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while (!rdma->error_state && !rdma->received_error) {
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GPollFD pfds[2];
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pfds[0].fd = rdma->comp_channel->fd;
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pfds[0].fd = comp_channel->fd;
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pfds[0].events = G_IO_IN | G_IO_HUP | G_IO_ERR;
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pfds[0].revents = 0;
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@ -1655,6 +1679,17 @@ static int qemu_rdma_wait_comp_channel(RDMAContext *rdma)
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return rdma->error_state;
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}
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static struct ibv_comp_channel *to_channel(RDMAContext *rdma, int wrid)
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{
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return wrid < RDMA_WRID_RECV_CONTROL ? rdma->send_comp_channel :
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rdma->recv_comp_channel;
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}
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static struct ibv_cq *to_cq(RDMAContext *rdma, int wrid)
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{
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return wrid < RDMA_WRID_RECV_CONTROL ? rdma->send_cq : rdma->recv_cq;
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}
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/*
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* Block until the next work request has completed.
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*
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@ -1675,13 +1710,15 @@ static int qemu_rdma_block_for_wrid(RDMAContext *rdma, int wrid_requested,
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struct ibv_cq *cq;
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void *cq_ctx;
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uint64_t wr_id = RDMA_WRID_NONE, wr_id_in;
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struct ibv_comp_channel *ch = to_channel(rdma, wrid_requested);
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struct ibv_cq *poll_cq = to_cq(rdma, wrid_requested);
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if (ibv_req_notify_cq(rdma->cq, 0)) {
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if (ibv_req_notify_cq(poll_cq, 0)) {
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return -1;
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}
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/* poll cq first */
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while (wr_id != wrid_requested) {
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ret = qemu_rdma_poll(rdma, &wr_id_in, byte_len);
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ret = qemu_rdma_poll(rdma, poll_cq, &wr_id_in, byte_len);
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if (ret < 0) {
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return ret;
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}
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@ -1702,12 +1739,12 @@ static int qemu_rdma_block_for_wrid(RDMAContext *rdma, int wrid_requested,
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}
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while (1) {
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ret = qemu_rdma_wait_comp_channel(rdma);
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ret = qemu_rdma_wait_comp_channel(rdma, ch);
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if (ret) {
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goto err_block_for_wrid;
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}
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ret = ibv_get_cq_event(rdma->comp_channel, &cq, &cq_ctx);
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ret = ibv_get_cq_event(ch, &cq, &cq_ctx);
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if (ret) {
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perror("ibv_get_cq_event");
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goto err_block_for_wrid;
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@ -1721,7 +1758,7 @@ static int qemu_rdma_block_for_wrid(RDMAContext *rdma, int wrid_requested,
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}
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while (wr_id != wrid_requested) {
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ret = qemu_rdma_poll(rdma, &wr_id_in, byte_len);
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ret = qemu_rdma_poll(rdma, poll_cq, &wr_id_in, byte_len);
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if (ret < 0) {
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goto err_block_for_wrid;
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}
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@ -2437,13 +2474,21 @@ static void qemu_rdma_cleanup(RDMAContext *rdma)
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rdma_destroy_qp(rdma->cm_id);
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rdma->qp = NULL;
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}
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if (rdma->cq) {
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ibv_destroy_cq(rdma->cq);
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rdma->cq = NULL;
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if (rdma->recv_cq) {
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ibv_destroy_cq(rdma->recv_cq);
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rdma->recv_cq = NULL;
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}
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if (rdma->comp_channel) {
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ibv_destroy_comp_channel(rdma->comp_channel);
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rdma->comp_channel = NULL;
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if (rdma->send_cq) {
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ibv_destroy_cq(rdma->send_cq);
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rdma->send_cq = NULL;
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}
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if (rdma->recv_comp_channel) {
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ibv_destroy_comp_channel(rdma->recv_comp_channel);
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rdma->recv_comp_channel = NULL;
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}
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if (rdma->send_comp_channel) {
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ibv_destroy_comp_channel(rdma->send_comp_channel);
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rdma->send_comp_channel = NULL;
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}
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if (rdma->pd) {
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ibv_dealloc_pd(rdma->pd);
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{
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QIOChannelRDMA *rioc = QIO_CHANNEL_RDMA(ioc);
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if (io_read) {
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aio_set_fd_handler(ctx, rioc->rdmain->comp_channel->fd,
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aio_set_fd_handler(ctx, rioc->rdmain->recv_comp_channel->fd,
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false, io_read, io_write, NULL, opaque);
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aio_set_fd_handler(ctx, rioc->rdmain->send_comp_channel->fd,
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false, io_read, io_write, NULL, opaque);
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} else {
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aio_set_fd_handler(ctx, rioc->rdmaout->comp_channel->fd,
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aio_set_fd_handler(ctx, rioc->rdmaout->recv_comp_channel->fd,
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false, io_read, io_write, NULL, opaque);
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aio_set_fd_handler(ctx, rioc->rdmaout->send_comp_channel->fd,
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false, io_read, io_write, NULL, opaque);
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}
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}
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*/
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while (1) {
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uint64_t wr_id, wr_id_in;
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int ret = qemu_rdma_poll(rdma, &wr_id_in, NULL);
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int ret = qemu_rdma_poll(rdma, rdma->recv_cq, &wr_id_in, NULL);
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if (ret < 0) {
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error_report("rdma migration: polling error! %d", ret);
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goto err;
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}
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wr_id = wr_id_in & RDMA_WRID_TYPE_MASK;
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if (wr_id == RDMA_WRID_NONE) {
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break;
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}
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}
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while (1) {
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uint64_t wr_id, wr_id_in;
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int ret = qemu_rdma_poll(rdma, rdma->send_cq, &wr_id_in, NULL);
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if (ret < 0) {
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error_report("rdma migration: polling error! %d", ret);
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goto err;
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