8b2395970a
Migration bandwidth is a very important value to live migration. It's because it's one of the major factors that we'll make decision on when to switchover to destination in a precopy process. This value is currently estimated by QEMU during the whole live migration process by monitoring how fast we were sending the data. This can be the most accurate bandwidth if in the ideal world, where we're always feeding unlimited data to the migration channel, and then it'll be limited to the bandwidth that is available. However in reality it may be very different, e.g., over a 10Gbps network we can see query-migrate showing migration bandwidth of only a few tens of MB/s just because there are plenty of other things the migration thread might be doing. For example, the migration thread can be busy scanning zero pages, or it can be fetching dirty bitmap from other external dirty sources (like vhost or KVM). It means we may not be pushing data as much as possible to migration channel, so the bandwidth estimated from "how many data we sent in the channel" can be dramatically inaccurate sometimes. With that, the decision to switchover will be affected, by assuming that we may not be able to switchover at all with such a low bandwidth, but in reality we can. The migration may not even converge at all with the downtime specified, with that wrong estimation of bandwidth, keeping iterations forever with a low estimation of bandwidth. The issue is QEMU itself may not be able to avoid those uncertainties on measuing the real "available migration bandwidth". At least not something I can think of so far. One way to fix this is when the user is fully aware of the available bandwidth, then we can allow the user to help providing an accurate value. For example, if the user has a dedicated channel of 10Gbps for migration for this specific VM, the user can specify this bandwidth so QEMU can always do the calculation based on this fact, trusting the user as long as specified. It may not be the exact bandwidth when switching over (in which case qemu will push migration data as fast as possible), but much better than QEMU trying to wildly guess, especially when very wrong. A new parameter "avail-switchover-bandwidth" is introduced just for this. So when the user specified this parameter, instead of trusting the estimated value from QEMU itself (based on the QEMUFile send speed), it trusts the user more by using this value to decide when to switchover, assuming that we'll have such bandwidth available then. Note that specifying this value will not throttle the bandwidth for switchover yet, so QEMU will always use the full bandwidth possible for sending switchover data, assuming that should always be the most important way to use the network at that time. This can resolve issues like "unconvergence migration" which is caused by hilarious low "migration bandwidth" detected for whatever reason. Reported-by: Zhiyi Guo <zhguo@redhat.com> Reviewed-by: Joao Martins <joao.m.martins@oracle.com> Reviewed-by: Juan Quintela <quintela@redhat.com> Signed-off-by: Peter Xu <peterx@redhat.com> Signed-off-by: Juan Quintela <quintela@redhat.com> Message-ID: <20231010221922.40638-1-peterx@redhat.com>
379 lines
24 KiB
Plaintext
379 lines
24 KiB
Plaintext
# See docs/devel/tracing.rst for syntax documentation.
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# savevm.c
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qemu_loadvm_state_section(unsigned int section_type) "%d"
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qemu_loadvm_state_section_command(int ret) "%d"
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qemu_loadvm_state_section_partend(uint32_t section_id) "%u"
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qemu_loadvm_state_post_main(int ret) "%d"
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qemu_loadvm_state_section_startfull(uint32_t section_id, const char *idstr, uint32_t instance_id, uint32_t version_id) "%u(%s) %u %u"
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qemu_savevm_send_packaged(void) ""
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loadvm_state_switchover_ack_needed(unsigned int switchover_ack_pending_num) "Switchover ack pending num=%u"
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loadvm_state_setup(void) ""
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loadvm_state_cleanup(void) ""
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loadvm_handle_cmd_packaged(unsigned int length) "%u"
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loadvm_handle_cmd_packaged_main(int ret) "%d"
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loadvm_handle_cmd_packaged_received(int ret) "%d"
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loadvm_handle_recv_bitmap(char *s) "%s"
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loadvm_postcopy_handle_advise(void) ""
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loadvm_postcopy_handle_listen(const char *str) "%s"
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loadvm_postcopy_handle_run(void) ""
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loadvm_postcopy_handle_run_bh(const char *str) "%s"
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loadvm_postcopy_handle_resume(void) ""
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loadvm_postcopy_ram_handle_discard(void) ""
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loadvm_postcopy_ram_handle_discard_end(void) ""
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loadvm_postcopy_ram_handle_discard_header(const char *ramid, uint16_t len) "%s: %ud"
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loadvm_process_command(const char *s, uint16_t len) "com=%s len=%d"
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loadvm_process_command_ping(uint32_t val) "0x%x"
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loadvm_approve_switchover(unsigned int switchover_ack_pending_num) "Switchover ack pending num=%u"
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postcopy_ram_listen_thread_exit(void) ""
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postcopy_ram_listen_thread_start(void) ""
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qemu_savevm_send_postcopy_advise(void) ""
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qemu_savevm_send_postcopy_ram_discard(const char *id, uint16_t len) "%s: %ud"
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savevm_command_send(uint16_t command, uint16_t len) "com=0x%x len=%d"
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savevm_section_start(const char *id, unsigned int section_id) "%s, section_id %u"
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savevm_section_end(const char *id, unsigned int section_id, int ret) "%s, section_id %u -> %d"
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savevm_section_skip(const char *id, unsigned int section_id) "%s, section_id %u"
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savevm_send_open_return_path(void) ""
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savevm_send_ping(uint32_t val) "0x%x"
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savevm_send_postcopy_listen(void) ""
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savevm_send_postcopy_run(void) ""
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savevm_send_postcopy_resume(void) ""
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savevm_send_colo_enable(void) ""
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savevm_send_recv_bitmap(char *name) "%s"
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savevm_state_setup(void) ""
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savevm_state_resume_prepare(void) ""
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savevm_state_header(void) ""
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savevm_state_iterate(void) ""
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savevm_state_cleanup(void) ""
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savevm_state_complete_precopy(void) ""
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vmstate_save(const char *idstr, const char *vmsd_name) "%s, %s"
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vmstate_load(const char *idstr, const char *vmsd_name) "%s, %s"
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postcopy_pause_incoming(void) ""
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postcopy_pause_incoming_continued(void) ""
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postcopy_page_req_sync(void *host_addr) "sync page req %p"
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# vmstate.c
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vmstate_load_field_error(const char *field, int ret) "field \"%s\" load failed, ret = %d"
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vmstate_load_state(const char *name, int version_id) "%s v%d"
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vmstate_load_state_end(const char *name, const char *reason, int val) "%s %s/%d"
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vmstate_load_state_field(const char *name, const char *field) "%s:%s"
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vmstate_n_elems(const char *name, int n_elems) "%s: %d"
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vmstate_subsection_load(const char *parent) "%s"
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vmstate_subsection_load_bad(const char *parent, const char *sub, const char *sub2) "%s: %s/%s"
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vmstate_subsection_load_good(const char *parent) "%s"
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vmstate_save_state_pre_save_res(const char *name, int res) "%s/%d"
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vmstate_save_state_loop(const char *name, const char *field, int n_elems) "%s/%s[%d]"
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vmstate_save_state_top(const char *idstr) "%s"
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vmstate_subsection_save_loop(const char *name, const char *sub) "%s/%s"
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vmstate_subsection_save_top(const char *idstr) "%s"
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vmstate_field_exists(const char *vmsd, const char *name, int field_version, int version, int result) "%s:%s field_version %d version %d result %d"
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# vmstate-types.c
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get_qtailq(const char *name, int version_id) "%s v%d"
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get_qtailq_end(const char *name, const char *reason, int val) "%s %s/%d"
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put_qtailq(const char *name, int version_id) "%s v%d"
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put_qtailq_end(const char *name, const char *reason) "%s %s"
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get_gtree(const char *field_name, const char *key_vmsd_name, const char *val_vmsd_name, uint32_t nnodes) "%s(%s/%s) nnodes=%d"
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get_gtree_end(const char *field_name, const char *key_vmsd_name, const char *val_vmsd_name, int ret) "%s(%s/%s) %d"
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put_gtree(const char *field_name, const char *key_vmsd_name, const char *val_vmsd_name, uint32_t nnodes) "%s(%s/%s) nnodes=%d"
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put_gtree_end(const char *field_name, const char *key_vmsd_name, const char *val_vmsd_name, int ret) "%s(%s/%s) %d"
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get_qlist(const char *field_name, const char *vmsd_name, int version_id) "%s(%s v%d)"
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get_qlist_end(const char *field_name, const char *vmsd_name) "%s(%s)"
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put_qlist(const char *field_name, const char *vmsd_name, int version_id) "%s(%s v%d)"
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put_qlist_end(const char *field_name, const char *vmsd_name) "%s(%s)"
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# qemu-file.c
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qemu_file_fclose(void) ""
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# ram.c
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get_queued_page(const char *block_name, uint64_t tmp_offset, unsigned long page_abs) "%s/0x%" PRIx64 " page_abs=0x%lx"
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get_queued_page_not_dirty(const char *block_name, uint64_t tmp_offset, unsigned long page_abs) "%s/0x%" PRIx64 " page_abs=0x%lx"
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migration_bitmap_sync_start(void) ""
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migration_bitmap_sync_end(uint64_t dirty_pages) "dirty_pages %" PRIu64
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migration_bitmap_clear_dirty(char *str, uint64_t start, uint64_t size, unsigned long page) "rb %s start 0x%"PRIx64" size 0x%"PRIx64" page 0x%lx"
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migration_throttle(void) ""
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migration_dirty_limit_guest(int64_t dirtyrate) "guest dirty page rate limit %" PRIi64 " MB/s"
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ram_discard_range(const char *rbname, uint64_t start, size_t len) "%s: start: %" PRIx64 " %zx"
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ram_load_loop(const char *rbname, uint64_t addr, int flags, void *host) "%s: addr: 0x%" PRIx64 " flags: 0x%x host: %p"
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ram_load_postcopy_loop(int channel, uint64_t addr, int flags) "chan=%d addr=0x%" PRIx64 " flags=0x%x"
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ram_postcopy_send_discard_bitmap(void) ""
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ram_save_page(const char *rbname, uint64_t offset, void *host) "%s: offset: 0x%" PRIx64 " host: %p"
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ram_save_queue_pages(const char *rbname, size_t start, size_t len) "%s: start: 0x%zx len: 0x%zx"
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ram_dirty_bitmap_request(char *str) "%s"
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ram_dirty_bitmap_reload_begin(char *str) "%s"
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ram_dirty_bitmap_reload_complete(char *str) "%s"
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ram_dirty_bitmap_sync_start(void) ""
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ram_dirty_bitmap_sync_wait(void) ""
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ram_dirty_bitmap_sync_complete(void) ""
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ram_state_resume_prepare(uint64_t v) "%" PRId64
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colo_flush_ram_cache_begin(uint64_t dirty_pages) "dirty_pages %" PRIu64
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colo_flush_ram_cache_end(void) ""
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save_xbzrle_page_skipping(void) ""
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save_xbzrle_page_overflow(void) ""
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ram_save_iterate_big_wait(uint64_t milliconds, int iterations) "big wait: %" PRIu64 " milliseconds, %d iterations"
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ram_load_complete(int ret, uint64_t seq_iter) "exit_code %d seq iteration %" PRIu64
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ram_write_tracking_ramblock_start(const char *block_id, size_t page_size, void *addr, size_t length) "%s: page_size: %zu addr: %p length: %zu"
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ram_write_tracking_ramblock_stop(const char *block_id, size_t page_size, void *addr, size_t length) "%s: page_size: %zu addr: %p length: %zu"
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postcopy_preempt_triggered(char *str, unsigned long page) "during sending ramblock %s offset 0x%lx"
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postcopy_preempt_restored(char *str, unsigned long page) "ramblock %s offset 0x%lx"
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postcopy_preempt_hit(char *str, uint64_t offset) "ramblock %s offset 0x%"PRIx64
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postcopy_preempt_send_host_page(char *str, uint64_t offset) "ramblock %s offset 0x%"PRIx64
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postcopy_preempt_switch_channel(int channel) "%d"
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postcopy_preempt_reset_channel(void) ""
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# multifd.c
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multifd_new_send_channel_async(uint8_t id) "channel %u"
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multifd_recv(uint8_t id, uint64_t packet_num, uint32_t used, uint32_t flags, uint32_t next_packet_size) "channel %u packet_num %" PRIu64 " pages %u flags 0x%x next packet size %u"
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multifd_recv_new_channel(uint8_t id) "channel %u"
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multifd_recv_sync_main(long packet_num) "packet num %ld"
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multifd_recv_sync_main_signal(uint8_t id) "channel %u"
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multifd_recv_sync_main_wait(uint8_t id) "channel %u"
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multifd_recv_terminate_threads(bool error) "error %d"
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multifd_recv_thread_end(uint8_t id, uint64_t packets, uint64_t pages) "channel %u packets %" PRIu64 " pages %" PRIu64
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multifd_recv_thread_start(uint8_t id) "%u"
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multifd_send(uint8_t id, uint64_t packet_num, uint32_t normal, uint32_t flags, uint32_t next_packet_size) "channel %u packet_num %" PRIu64 " normal pages %u flags 0x%x next packet size %u"
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multifd_send_error(uint8_t id) "channel %u"
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multifd_send_sync_main(long packet_num) "packet num %ld"
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multifd_send_sync_main_signal(uint8_t id) "channel %u"
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multifd_send_sync_main_wait(uint8_t id) "channel %u"
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multifd_send_terminate_threads(bool error) "error %d"
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multifd_send_thread_end(uint8_t id, uint64_t packets, uint64_t normal_pages) "channel %u packets %" PRIu64 " normal pages %" PRIu64
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multifd_send_thread_start(uint8_t id) "%u"
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multifd_tls_outgoing_handshake_start(void *ioc, void *tioc, const char *hostname) "ioc=%p tioc=%p hostname=%s"
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multifd_tls_outgoing_handshake_error(void *ioc, const char *err) "ioc=%p err=%s"
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multifd_tls_outgoing_handshake_complete(void *ioc) "ioc=%p"
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multifd_set_outgoing_channel(void *ioc, const char *ioctype, const char *hostname, void *err) "ioc=%p ioctype=%s hostname=%s err=%p"
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# migration.c
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await_return_path_close_on_source_close(void) ""
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await_return_path_close_on_source_joining(void) ""
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migrate_set_state(const char *new_state) "new state %s"
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migrate_fd_cleanup(void) ""
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migrate_fd_error(const char *error_desc) "error=%s"
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migrate_fd_cancel(void) ""
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migrate_handle_rp_req_pages(const char *rbname, size_t start, size_t len) "in %s at 0x%zx len 0x%zx"
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migrate_pending_exact(uint64_t size, uint64_t pre, uint64_t post) "exact pending size %" PRIu64 " (pre = %" PRIu64 " post=%" PRIu64 ")"
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migrate_pending_estimate(uint64_t size, uint64_t pre, uint64_t post) "estimate pending size %" PRIu64 " (pre = %" PRIu64 " post=%" PRIu64 ")"
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migrate_send_rp_message(int msg_type, uint16_t len) "%d: len %d"
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migrate_send_rp_recv_bitmap(char *name, int64_t size) "block '%s' size 0x%"PRIi64
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migration_completion_file_err(void) ""
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migration_completion_vm_stop(int ret) "ret %d"
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migration_completion_postcopy_end(void) ""
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migration_completion_postcopy_end_after_complete(void) ""
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migration_rate_limit_pre(int ms) "%d ms"
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migration_rate_limit_post(int urgent) "urgent: %d"
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migration_return_path_end_before(void) ""
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migration_return_path_end_after(int rp_error) "%d"
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migration_thread_after_loop(void) ""
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migration_thread_file_err(void) ""
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migration_thread_setup_complete(void) ""
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open_return_path_on_source(void) ""
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open_return_path_on_source_continue(void) ""
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postcopy_start(void) ""
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postcopy_pause_return_path(void) ""
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postcopy_pause_return_path_continued(void) ""
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postcopy_pause_continued(void) ""
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postcopy_start_set_run(void) ""
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postcopy_page_req_add(void *addr, int count) "new page req %p total %d"
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source_return_path_thread_bad_end(void) ""
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source_return_path_thread_end(void) ""
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source_return_path_thread_entry(void) ""
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source_return_path_thread_loop_top(void) ""
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source_return_path_thread_pong(uint32_t val) "0x%x"
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source_return_path_thread_shut(uint32_t val) "0x%x"
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source_return_path_thread_resume_ack(uint32_t v) "%"PRIu32
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source_return_path_thread_switchover_acked(void) ""
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migration_thread_low_pending(uint64_t pending) "%" PRIu64
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migrate_transferred(uint64_t transferred, uint64_t time_spent, uint64_t bandwidth, uint64_t avail_bw, uint64_t size) "transferred %" PRIu64 " time_spent %" PRIu64 " bandwidth %" PRIu64 " switchover_bw %" PRIu64 " max_size %" PRId64
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process_incoming_migration_co_end(int ret, int ps) "ret=%d postcopy-state=%d"
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process_incoming_migration_co_postcopy_end_main(void) ""
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postcopy_preempt_enabled(bool value) "%d"
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# migration-stats
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migration_transferred_bytes(uint64_t qemu_file, uint64_t multifd, uint64_t rdma) "qemu_file %" PRIu64 " multifd %" PRIu64 " RDMA %" PRIu64
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# channel.c
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migration_set_incoming_channel(void *ioc, const char *ioctype) "ioc=%p ioctype=%s"
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migration_set_outgoing_channel(void *ioc, const char *ioctype, const char *hostname, void *err) "ioc=%p ioctype=%s hostname=%s err=%p"
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# global_state.c
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migrate_state_too_big(void) ""
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migrate_global_state_post_load(const char *state) "loaded state: %s"
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migrate_global_state_pre_save(const char *state) "saved state: %s"
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# rdma.c
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qemu_rdma_accept_incoming_migration(void) ""
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qemu_rdma_accept_incoming_migration_accepted(void) ""
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qemu_rdma_accept_pin_state(bool pin) "%d"
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qemu_rdma_accept_pin_verbsc(void *verbs) "Verbs context after listen: %p"
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qemu_rdma_block_for_wrid_miss(uint64_t wcomp, uint64_t req) "A Wanted wrid %" PRIu64 " but got %" PRIu64
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qemu_rdma_cleanup_disconnect(void) ""
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qemu_rdma_close(void) ""
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qemu_rdma_connect_pin_all_requested(void) ""
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qemu_rdma_connect_pin_all_outcome(bool pin) "%d"
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qemu_rdma_dest_init_trying(const char *host, const char *ip) "%s => %s"
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qemu_rdma_dump_id_failed(const char *who) "%s RDMA Device opened, but can't query port information"
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qemu_rdma_dump_id(const char *who, const char *name, const char *dev_name, const char *dev_path, const char *ibdev_path, int transport, const char *transport_name) "%s RDMA Device opened: kernel name %s uverbs device name %s, infiniband_verbs class device path %s, infiniband class device path %s, transport: (%d) %s"
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qemu_rdma_dump_gid(const char *who, const char *src, const char *dst) "%s Source GID: %s, Dest GID: %s"
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qemu_rdma_exchange_get_response_start(const char *desc) "CONTROL: %s receiving..."
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qemu_rdma_exchange_get_response_none(const char *desc, int type) "Surprise: got %s (%d)"
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qemu_rdma_exchange_send_issue_callback(void) ""
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qemu_rdma_exchange_send_waiting(const char *desc) "Waiting for response %s"
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qemu_rdma_exchange_send_received(const char *desc) "Response %s received."
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qemu_rdma_fill(size_t control_len, size_t size) "RDMA %zd of %zd bytes already in buffer"
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qemu_rdma_init_ram_blocks(int blocks) "Allocated %d local ram block structures"
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qemu_rdma_poll_recv(uint64_t comp, int64_t id, int sent) "completion %" PRIu64 " received (%" PRId64 ") left %d"
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qemu_rdma_poll_write(uint64_t comp, int left, uint64_t block, uint64_t chunk, void *local, void *remote) "completions %" PRIu64 " left %d, block %" PRIu64 ", chunk: %" PRIu64 " %p %p"
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qemu_rdma_poll_other(uint64_t comp, int left) "other completion %" PRIu64 " received left %d"
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qemu_rdma_post_send_control(const char *desc) "CONTROL: sending %s.."
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qemu_rdma_register_and_get_keys(uint64_t len, void *start) "Registering %" PRIu64 " bytes @ %p"
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qemu_rdma_register_odp_mr(const char *name) "Try to register On-Demand Paging memory region: %s"
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qemu_rdma_advise_mr(const char *name, uint32_t len, uint64_t addr, const char *res) "Try to advise block %s prefetch at %" PRIu32 "@0x%" PRIx64 ": %s"
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qemu_rdma_registration_handle_compress(int64_t length, int index, int64_t offset) "Zapping zero chunk: %" PRId64 " bytes, index %d, offset %" PRId64
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qemu_rdma_registration_handle_finished(void) ""
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qemu_rdma_registration_handle_ram_blocks(void) ""
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qemu_rdma_registration_handle_ram_blocks_loop(const char *name, uint64_t offset, uint64_t length, void *local_host_addr, unsigned int src_index) "%s: @0x%" PRIx64 "/%" PRIu64 " host:@%p src_index: %u"
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qemu_rdma_registration_handle_register(int requests) "%d requests"
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qemu_rdma_registration_handle_register_loop(int req, int index, uint64_t addr, uint64_t chunks) "Registration request (%d): index %d, current_addr %" PRIu64 " chunks: %" PRIu64
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qemu_rdma_registration_handle_register_rkey(int rkey) "0x%x"
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qemu_rdma_registration_handle_unregister(int requests) "%d requests"
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qemu_rdma_registration_handle_unregister_loop(int count, int index, uint64_t chunk) "Unregistration request (%d): index %d, chunk %" PRIu64
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qemu_rdma_registration_handle_unregister_success(uint64_t chunk) "%" PRIu64
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qemu_rdma_registration_handle_wait(void) ""
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qemu_rdma_registration_start(uint64_t flags) "%" PRIu64
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qemu_rdma_registration_stop(uint64_t flags) "%" PRIu64
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qemu_rdma_registration_stop_ram(void) ""
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qemu_rdma_resolve_host_trying(const char *host, const char *ip) "Trying %s => %s"
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qemu_rdma_signal_unregister_append(uint64_t chunk, int pos) "Appending unregister chunk %" PRIu64 " at position %d"
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qemu_rdma_signal_unregister_already(uint64_t chunk) "Unregister chunk %" PRIu64 " already in queue"
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qemu_rdma_unregister_waiting_inflight(uint64_t chunk) "Cannot unregister inflight chunk: %" PRIu64
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qemu_rdma_unregister_waiting_proc(uint64_t chunk, int pos) "Processing unregister for chunk: %" PRIu64 " at position %d"
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qemu_rdma_unregister_waiting_send(uint64_t chunk) "Sending unregister for chunk: %" PRIu64
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qemu_rdma_unregister_waiting_complete(uint64_t chunk) "Unregister for chunk: %" PRIu64 " complete."
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qemu_rdma_write_flush(int sent) "sent total: %d"
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qemu_rdma_write_one_block(int count, int block, uint64_t chunk, uint64_t current, uint64_t len, int nb_sent, int nb_chunks) "(%d) Not clobbering: block: %d chunk %" PRIu64 " current %" PRIu64 " len %" PRIu64 " %d %d"
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qemu_rdma_write_one_post(uint64_t chunk, long addr, long remote, uint32_t len) "Posting chunk: %" PRIu64 ", addr: 0x%lx remote: 0x%lx, bytes %" PRIu32
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qemu_rdma_write_one_queue_full(void) ""
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qemu_rdma_write_one_recvregres(int mykey, int theirkey, uint64_t chunk) "Received registration result: my key: 0x%x their key 0x%x, chunk %" PRIu64
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qemu_rdma_write_one_sendreg(uint64_t chunk, int len, int index, int64_t offset) "Sending registration request chunk %" PRIu64 " for %d bytes, index: %d, offset: %" PRId64
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qemu_rdma_write_one_top(uint64_t chunks, uint64_t size) "Writing %" PRIu64 " chunks, (%" PRIu64 " MB)"
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qemu_rdma_write_one_zero(uint64_t chunk, int len, int index, int64_t offset) "Entire chunk is zero, sending compress: %" PRIu64 " for %d bytes, index: %d, offset: %" PRId64
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rdma_add_block(const char *block_name, int block, uint64_t addr, uint64_t offset, uint64_t len, uint64_t end, uint64_t bits, int chunks) "Added Block: '%s':%d, addr: %" PRIu64 ", offset: %" PRIu64 " length: %" PRIu64 " end: %" PRIu64 " bits %" PRIu64 " chunks %d"
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rdma_block_notification_handle(const char *name, int index) "%s at %d"
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rdma_delete_block(void *block, uint64_t addr, uint64_t offset, uint64_t len, uint64_t end, uint64_t bits, int chunks) "Deleted Block: %p, addr: %" PRIu64 ", offset: %" PRIu64 " length: %" PRIu64 " end: %" PRIu64 " bits %" PRIu64 " chunks %d"
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rdma_start_incoming_migration(void) ""
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rdma_start_incoming_migration_after_dest_init(void) ""
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rdma_start_incoming_migration_after_rdma_listen(void) ""
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rdma_start_outgoing_migration_after_rdma_connect(void) ""
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rdma_start_outgoing_migration_after_rdma_source_init(void) ""
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# postcopy-ram.c
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postcopy_discard_send_finish(const char *ramblock, int nwords, int ncmds) "%s mask words sent=%d in %d commands"
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postcopy_discard_send_range(const char *ramblock, unsigned long start, unsigned long length) "%s:%lx/%lx"
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postcopy_cleanup_range(const char *ramblock, void *host_addr, size_t offset, size_t length) "%s: %p offset=0x%zx length=0x%zx"
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postcopy_init_range(const char *ramblock, void *host_addr, size_t offset, size_t length) "%s: %p offset=0x%zx length=0x%zx"
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postcopy_nhp_range(const char *ramblock, void *host_addr, size_t offset, size_t length) "%s: %p offset=0x%zx length=0x%zx"
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postcopy_place_page(void *host_addr) "host=%p"
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postcopy_place_page_zero(void *host_addr) "host=%p"
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postcopy_ram_enable_notify(void) ""
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mark_postcopy_blocktime_begin(uint64_t addr, void *dd, uint32_t time, int cpu, int received) "addr: 0x%" PRIx64 ", dd: %p, time: %u, cpu: %d, already_received: %d"
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mark_postcopy_blocktime_end(uint64_t addr, void *dd, uint32_t time, int affected_cpu) "addr: 0x%" PRIx64 ", dd: %p, time: %u, affected_cpu: %d"
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postcopy_pause_fault_thread(void) ""
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postcopy_pause_fault_thread_continued(void) ""
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postcopy_pause_fast_load(void) ""
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postcopy_pause_fast_load_continued(void) ""
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postcopy_ram_fault_thread_entry(void) ""
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postcopy_ram_fault_thread_exit(void) ""
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postcopy_ram_fault_thread_fds_core(int baseufd, int quitfd) "ufd: %d quitfd: %d"
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postcopy_ram_fault_thread_fds_extra(size_t index, const char *name, int fd) "%zd/%s: %d"
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postcopy_ram_fault_thread_quit(void) ""
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postcopy_ram_fault_thread_request(uint64_t hostaddr, const char *ramblock, size_t offset, uint32_t pid) "Request for HVA=0x%" PRIx64 " rb=%s offset=0x%zx pid=%u"
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postcopy_ram_incoming_cleanup_closeuf(void) ""
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postcopy_ram_incoming_cleanup_entry(void) ""
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postcopy_ram_incoming_cleanup_exit(void) ""
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postcopy_ram_incoming_cleanup_join(void) ""
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postcopy_ram_incoming_cleanup_blocktime(uint64_t total) "total blocktime %" PRIu64
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postcopy_request_shared_page(const char *sharer, const char *rb, uint64_t rb_offset) "for %s in %s offset 0x%"PRIx64
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postcopy_request_shared_page_present(const char *sharer, const char *rb, uint64_t rb_offset) "%s already %s offset 0x%"PRIx64
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postcopy_wake_shared(uint64_t client_addr, const char *rb) "at 0x%"PRIx64" in %s"
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postcopy_page_req_del(void *addr, int count) "resolved page req %p total %d"
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postcopy_preempt_tls_handshake(void) ""
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postcopy_preempt_new_channel(void) ""
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postcopy_preempt_thread_entry(void) ""
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postcopy_preempt_thread_exit(void) ""
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get_mem_fault_cpu_index(int cpu, uint32_t pid) "cpu: %d, pid: %u"
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# exec.c
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migration_exec_outgoing(const char *cmd) "cmd=%s"
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migration_exec_incoming(const char *cmd) "cmd=%s"
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# fd.c
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migration_fd_outgoing(int fd) "fd=%d"
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migration_fd_incoming(int fd) "fd=%d"
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# file.c
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migration_file_outgoing(const char *filename) "filename=%s"
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migration_file_incoming(const char *filename) "filename=%s"
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# socket.c
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migration_socket_incoming_accepted(void) ""
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migration_socket_outgoing_connected(const char *hostname) "hostname=%s"
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migration_socket_outgoing_error(const char *err) "error=%s"
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# tls.c
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migration_tls_outgoing_handshake_start(const char *hostname) "hostname=%s"
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migration_tls_outgoing_handshake_error(const char *err) "err=%s"
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migration_tls_outgoing_handshake_complete(void) ""
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migration_tls_incoming_handshake_start(void) ""
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migration_tls_incoming_handshake_error(const char *err) "err=%s"
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migration_tls_incoming_handshake_complete(void) ""
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# colo.c
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colo_vm_state_change(const char *old, const char *new) "Change '%s' => '%s'"
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colo_send_message(const char *msg) "Send '%s' message"
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colo_receive_message(const char *msg) "Receive '%s' message"
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# colo-failover.c
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colo_failover_set_state(const char *new_state) "new state %s"
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# block-dirty-bitmap.c
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send_bitmap_header_enter(void) ""
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send_bitmap_bits(uint32_t flags, uint64_t start_sector, uint32_t nr_sectors, uint64_t data_size) "flags: 0x%x, start_sector: %" PRIu64 ", nr_sectors: %" PRIu32 ", data_size: %" PRIu64
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dirty_bitmap_save_iterate(int in_postcopy) "in postcopy: %d"
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dirty_bitmap_save_complete_enter(void) ""
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dirty_bitmap_save_complete_finish(void) ""
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dirty_bitmap_state_pending(uint64_t pending) "pending %" PRIu64
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dirty_bitmap_load_complete(void) ""
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dirty_bitmap_load_bits_enter(uint64_t first_sector, uint32_t nr_sectors) "chunk: %" PRIu64 " %" PRIu32
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dirty_bitmap_load_bits_zeroes(void) ""
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dirty_bitmap_load_header(uint32_t flags) "flags 0x%x"
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dirty_bitmap_load_enter(void) ""
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dirty_bitmap_load_success(void) ""
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# dirtyrate.c
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dirtyrate_set_state(const char *new_state) "new state %s"
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query_dirty_rate_info(const char *new_state) "current state %s"
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get_ramblock_vfn_hash(const char *idstr, uint64_t vfn, uint32_t hash) "ramblock name: %s, vfn: %"PRIu64 ", hash: %" PRIu32
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calc_page_dirty_rate(const char *idstr, uint32_t new_hash, uint32_t old_hash) "ramblock name: %s, new hash: %" PRIu32 ", old hash: %" PRIu32
|
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skip_sample_ramblock(const char *idstr, uint64_t ramblock_size) "ramblock name: %s, ramblock size: %" PRIu64
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find_page_matched(const char *idstr) "ramblock %s addr or size changed"
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dirtyrate_calculate(int64_t dirtyrate) "dirty rate: %" PRIi64 " MB/s"
|
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dirtyrate_do_calculate_vcpu(int idx, uint64_t rate) "vcpu[%d]: %"PRIu64 " MB/s"
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# block.c
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migration_block_init_shared(const char *blk_device_name) "Start migration for %s with shared base image"
|
|
migration_block_init_full(const char *blk_device_name) "Start full migration for %s"
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migration_block_save_device_dirty(int64_t sector) "Error reading sector %" PRId64
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migration_block_flush_blks(const char *action, int submitted, int read_done, int transferred) "%s submitted %d read_done %d transferred %d"
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migration_block_save(const char *mig_stage, int submitted, int transferred) "Enter save live %s submitted %d transferred %d"
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migration_block_save_complete(void) "Block migration completed"
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migration_block_state_pending(uint64_t pending) "Enter save live pending %" PRIu64
|
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migration_block_progression(unsigned percent) "Completed %u%%"
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|
# page_cache.c
|
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migration_pagecache_init(int64_t max_num_items) "Setting cache buckets to %" PRId64
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migration_pagecache_insert(void) "Error allocating page"
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