Implement journal write batching and slightly refactor journal writes
Slightly reduces WA. For example, in 4K T1Q128 replicated randwrite tests WA is reduced from ~3.6 to ~3.1, in T1Q64 from ~3.8 to ~3.4. Only effective without no_same_sector_overwrites.
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+13
-48
@@ -74,24 +74,17 @@ skip_ov:
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{
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return 0;
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}
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// There is sufficient space. Get SQEs
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struct io_uring_sqe *sqe[space_check.sectors_to_write];
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for (i = 0; i < space_check.sectors_to_write; i++)
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{
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BS_SUBMIT_GET_SQE_DECL(sqe[i]);
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}
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// There is sufficient space. Check SQEs
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BS_SUBMIT_CHECK_SQES(space_check.sectors_to_write);
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// Prepare and submit journal entries
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auto cb = [this, op](ring_data_t *data) { handle_rollback_event(data, op); };
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int s = 0, cur_sector = -1;
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int s = 0;
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for (i = 0, v = (obj_ver_id*)op->buf; i < op->len; i++, v++)
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{
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if (!journal.entry_fits(sizeof(journal_entry_rollback)) &&
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journal.sector_info[journal.cur_sector].dirty)
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{
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if (cur_sector == -1)
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PRIV(op)->min_flushed_journal_sector = 1 + journal.cur_sector;
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prepare_journal_sector_write(journal, journal.cur_sector, sqe[s++], cb);
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cur_sector = journal.cur_sector;
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prepare_journal_sector_write(journal.cur_sector, op);
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s++;
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}
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journal_entry_rollback *je = (journal_entry_rollback*)
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prefill_single_journal_entry(journal, JE_ROLLBACK, sizeof(journal_entry_rollback));
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@@ -100,12 +93,9 @@ skip_ov:
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je->crc32 = je_crc32((journal_entry*)je);
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journal.crc32_last = je->crc32;
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}
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prepare_journal_sector_write(journal, journal.cur_sector, sqe[s++], cb);
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prepare_journal_sector_write(journal.cur_sector, op);
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s++;
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assert(s == space_check.sectors_to_write);
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if (cur_sector == -1)
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PRIV(op)->min_flushed_journal_sector = 1 + journal.cur_sector;
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PRIV(op)->max_flushed_journal_sector = 1 + journal.cur_sector;
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PRIV(op)->pending_ops = s;
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PRIV(op)->op_state = 1;
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return 1;
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}
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@@ -114,30 +104,23 @@ int blockstore_impl_t::continue_rollback(blockstore_op_t *op)
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{
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if (PRIV(op)->op_state == 2)
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goto resume_2;
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else if (PRIV(op)->op_state == 3)
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goto resume_3;
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else if (PRIV(op)->op_state == 5)
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goto resume_5;
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else if (PRIV(op)->op_state == 4)
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goto resume_4;
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else
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return 1;
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resume_2:
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// Release used journal sectors
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release_journal_sectors(op);
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resume_3:
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if (!disable_journal_fsync)
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{
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io_uring_sqe *sqe;
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BS_SUBMIT_GET_SQE_DECL(sqe);
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ring_data_t *data = ((ring_data_t*)sqe->user_data);
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BS_SUBMIT_GET_SQE(sqe, data);
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my_uring_prep_fsync(sqe, journal.fd, IORING_FSYNC_DATASYNC);
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data->iov = { 0 };
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data->callback = [this, op](ring_data_t *data) { handle_rollback_event(data, op); };
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data->callback = [this, op](ring_data_t *data) { handle_write_event(data, op); };
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PRIV(op)->min_flushed_journal_sector = PRIV(op)->max_flushed_journal_sector = 0;
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PRIV(op)->pending_ops = 1;
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PRIV(op)->op_state = 4;
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PRIV(op)->op_state = 3;
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return 1;
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}
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resume_5:
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resume_4:
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obj_ver_id* v;
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int i;
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for (i = 0, v = (obj_ver_id*)op->buf; i < op->len; i++, v++)
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@@ -196,24 +179,6 @@ void blockstore_impl_t::mark_rolled_back(const obj_ver_id & ov)
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}
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}
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void blockstore_impl_t::handle_rollback_event(ring_data_t *data, blockstore_op_t *op)
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{
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live = true;
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if (data->res != data->iov.iov_len)
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{
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throw std::runtime_error(
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"write operation failed ("+std::to_string(data->res)+" != "+std::to_string(data->iov.iov_len)+
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"). in-memory state is corrupted. AAAAAAAaaaaaaaaa!!!111"
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);
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}
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PRIV(op)->pending_ops--;
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if (PRIV(op)->pending_ops == 0)
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{
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PRIV(op)->op_state++;
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ringloop->wakeup();
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}
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}
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void blockstore_impl_t::erase_dirty(blockstore_dirty_db_t::iterator dirty_start, blockstore_dirty_db_t::iterator dirty_end, uint64_t clean_loc)
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{
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if (dirty_end == dirty_start)
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