A subsequent patch brought me to realize that I was not checking the return values from operational calls to the engine. Also, noticed that on any failure we'd stop submitting IO but still wait until the timer expired to exist. To match what other perf tools do, now continue to submit even after an error and run until the clock is out giving an accurate count of transient failures and successes. Signed-off-by: paul luse <paul.e.luse@intel.com> Change-Id: I5e6a0f382f9090e428ee67fbdfb60926e9c85917 Reviewed-on: https://review.spdk.io/gerrit/c/spdk/spdk/+/2879 Tested-by: SPDK CI Jenkins <sys_sgci@intel.com> Community-CI: Mellanox Build Bot Reviewed-by: Ben Walker <benjamin.walker@intel.com> Reviewed-by: Shuhei Matsumoto <shuhei.matsumoto.xt@hitachi.com>
523 lines
14 KiB
C
523 lines
14 KiB
C
/*-
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* BSD LICENSE
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*
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* Copyright (c) Intel Corporation.
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* All rights reserved.
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*
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* Redistribution and use in source and binary forms, with or without
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* modification, are permitted provided that the following conditions
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* are met:
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*
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* * Redistributions of source code must retain the above copyright
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* notice, this list of conditions and the following disclaimer.
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* * Redistributions in binary form must reproduce the above copyright
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* notice, this list of conditions and the following disclaimer in
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* the documentation and/or other materials provided with the
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* distribution.
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* * Neither the name of Intel Corporation nor the names of its
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* contributors may be used to endorse or promote products derived
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* from this software without specific prior written permission.
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*
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* THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
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* "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
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* LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
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* A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
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* OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
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* SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
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* LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
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* DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
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* THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
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* (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
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* OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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*/
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#include "spdk/stdinc.h"
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#include "spdk/thread.h"
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#include "spdk/env.h"
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#include "spdk/event.h"
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#include "spdk/log.h"
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#include "spdk/string.h"
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#include "spdk/accel_engine.h"
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#include "spdk/crc32.h"
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#define DATA_PATTERN 0x5a
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static uint64_t g_tsc_rate;
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static uint64_t g_tsc_us_rate;
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static uint64_t g_tsc_end;
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static int g_xfer_size_bytes = 4096;
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static int g_queue_depth = 32;
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static int g_time_in_sec = 5;
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static uint32_t g_crc32c_seed = 0;
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static int g_fail_percent_goal = 0;
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static bool g_verify = false;
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static const char *g_workload_type = NULL;
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static enum accel_capability g_workload_selection;
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static struct worker_thread *g_workers = NULL;
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static int g_num_workers = 0;
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static pthread_mutex_t g_workers_lock = PTHREAD_MUTEX_INITIALIZER;
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struct worker_thread {
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struct spdk_io_channel *ch;
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uint64_t xfer_completed;
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uint64_t xfer_failed;
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uint64_t injected_miscompares;
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uint64_t current_queue_depth;
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struct spdk_mempool *task_pool;
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struct worker_thread *next;
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unsigned core;
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struct spdk_thread *thread;
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bool is_draining;
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struct spdk_poller *is_draining_poller;
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struct spdk_poller *stop_poller;
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};
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struct ap_task {
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void *src;
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void *dst;
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struct worker_thread *worker;
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int status;
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int expected_status; /* used for compare */
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};
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inline static struct ap_task *
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__ap_task_from_accel_task(struct spdk_accel_task *at)
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{
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return (struct ap_task *)((uintptr_t)at - sizeof(struct ap_task));
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}
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inline static struct spdk_accel_task *
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__accel_task_from_ap_task(struct ap_task *ap)
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{
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return (struct spdk_accel_task *)((uintptr_t)ap + sizeof(struct ap_task));
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}
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static void
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dump_user_config(struct spdk_app_opts *opts)
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{
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printf("SPDK Configuration:\n");
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printf("Core mask: %s\n\n", opts->reactor_mask);
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printf("Accel Perf Configuration:\n");
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printf("Workload Type: %s\n", g_workload_type);
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if (g_workload_selection == ACCEL_CRC32C) {
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printf("CRC-32C seed: %u\n", g_crc32c_seed);
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} else if ((g_workload_selection == ACCEL_COMPARE) && g_fail_percent_goal > 0) {
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printf("Miscompare: %u percent\n", g_fail_percent_goal);
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}
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printf("Transfer size: %u bytes\n", g_xfer_size_bytes);
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printf("Queue depth: %u\n", g_queue_depth);
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printf("Run time: %u seconds\n", g_time_in_sec);
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printf("Verify: %s\n\n", g_verify ? "Yes" : "No");
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}
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static void
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usage(void)
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{
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printf("accel_perf options:\n");
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printf("\t[-h help message]\n");
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printf("\t[-q queue depth]\n");
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printf("\t[-n number of channels]\n");
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printf("\t[-o transfer size in bytes]\n");
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printf("\t[-t time in seconds]\n");
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printf("\t[-w workload type must be one of these: copy, fill, crc32c, compare\n");
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printf("\t[-s for crc32c workload, use this seed value (default 0)\n");
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printf("\t[-P for compare workload, percentage of operations that should miscompare (percent, default 0)\n");
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printf("\t[-y verify result if this switch is on]\n");
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}
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static int
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parse_args(int argc, char *argv)
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{
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switch (argc) {
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case 'o':
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g_xfer_size_bytes = spdk_strtol(optarg, 10);
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break;
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case 'P':
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g_fail_percent_goal = spdk_strtol(optarg, 10);
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break;
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case 'q':
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g_queue_depth = spdk_strtol(optarg, 10);
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break;
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case 's':
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g_crc32c_seed = spdk_strtol(optarg, 10);
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break;
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case 't':
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g_time_in_sec = spdk_strtol(optarg, 10);
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break;
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case 'y':
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g_verify = true;
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break;
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case 'w':
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g_workload_type = optarg;
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if (!strcmp(g_workload_type, "copy")) {
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g_workload_selection = ACCEL_COPY;
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} else if (!strcmp(g_workload_type, "fill")) {
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g_workload_selection = ACCEL_FILL;
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} else if (!strcmp(g_workload_type, "crc32c")) {
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g_workload_selection = ACCEL_CRC32C;
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} else if (!strcmp(g_workload_type, "compare")) {
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g_workload_selection = ACCEL_COMPARE;
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}
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break;
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default:
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usage();
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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 void
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unregister_worker(void *arg1)
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{
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struct worker_thread *worker = arg1;
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spdk_mempool_free(worker->task_pool);
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spdk_put_io_channel(worker->ch);
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pthread_mutex_lock(&g_workers_lock);
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assert(g_num_workers >= 1);
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if (--g_num_workers == 0) {
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pthread_mutex_unlock(&g_workers_lock);
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spdk_app_stop(0);
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}
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pthread_mutex_unlock(&g_workers_lock);
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}
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static void accel_done(void *ref, int status);
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static void
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_submit_single(void *arg1, void *arg2)
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{
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struct worker_thread *worker = arg1;
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struct ap_task *task = arg2;
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int random_num;
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int rc = 0;
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assert(worker);
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task->worker = worker;
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task->worker->current_queue_depth++;
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switch (g_workload_selection) {
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case ACCEL_COPY:
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rc = spdk_accel_submit_copy(__accel_task_from_ap_task(task),
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worker->ch, task->dst,
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task->src, g_xfer_size_bytes, accel_done);
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break;
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case ACCEL_FILL:
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/* For fill use the first byte of the task->dst buffer */
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rc = spdk_accel_submit_fill(__accel_task_from_ap_task(task),
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worker->ch, task->dst, *(uint8_t *)task->src,
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g_xfer_size_bytes, accel_done);
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break;
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case ACCEL_CRC32C:
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rc = spdk_accel_submit_crc32c(__accel_task_from_ap_task(task),
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worker->ch, (uint32_t *)task->dst, task->src, g_crc32c_seed,
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g_xfer_size_bytes, accel_done);
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break;
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case ACCEL_COMPARE:
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random_num = rand() % 100;
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if (random_num < g_fail_percent_goal) {
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task->expected_status = -EILSEQ;
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*(uint8_t *)task->dst = ~DATA_PATTERN;
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} else {
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task->expected_status = 0;
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*(uint8_t *)task->dst = DATA_PATTERN;
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}
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rc = spdk_accel_submit_compare(__accel_task_from_ap_task(task),
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worker->ch, task->dst, task->src,
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g_xfer_size_bytes, accel_done);
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break;
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default:
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assert(false);
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break;
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}
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if (rc) {
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accel_done(__accel_task_from_ap_task(task), rc);
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}
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}
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static void
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_accel_done(void *arg1)
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{
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struct ap_task *task = arg1;
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struct worker_thread *worker = task->worker;
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uint32_t sw_crc32c;
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assert(worker);
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assert(worker->current_queue_depth > 0);
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if (g_verify && task->status == 0) {
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switch (g_workload_selection) {
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case ACCEL_CRC32C:
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/* calculate sw CRC-32C and compare to sw aceel result. */
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sw_crc32c = spdk_crc32c_update(task->src, g_xfer_size_bytes, ~g_crc32c_seed);
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if (*(uint32_t *)task->dst != sw_crc32c) {
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SPDK_NOTICELOG("CRC-32C miscompare\n");
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worker->xfer_failed++;
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}
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break;
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case ACCEL_COPY:
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if (memcmp(task->src, task->dst, g_xfer_size_bytes)) {
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SPDK_NOTICELOG("Data miscompare\n");
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worker->xfer_failed++;
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}
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break;
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default:
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assert(false);
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break;
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}
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}
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if (task->expected_status == -EILSEQ) {
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assert(task->status != 0);
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worker->injected_miscompares++;
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} else if (task->status) {
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/* Expected to pass but API reported error. */
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worker->xfer_failed++;
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}
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worker->xfer_completed++;
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worker->current_queue_depth--;
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if (!worker->is_draining) {
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_submit_single(worker, task);
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} else {
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spdk_free(task->src);
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spdk_free(task->dst);
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spdk_mempool_put(worker->task_pool, task);
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}
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}
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static int
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dump_result(void)
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{
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uint64_t total_completed = 0;
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uint64_t total_failed = 0;
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uint64_t total_miscompared = 0;
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uint64_t total_xfer_per_sec, total_bw_in_MiBps;
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struct worker_thread *worker = g_workers;
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printf("\nCore Transfers Bandwidth Failed Miscompares\n");
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printf("-----------------------------------------------------------------\n");
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while (worker != NULL) {
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uint64_t xfer_per_sec = worker->xfer_completed / g_time_in_sec;
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uint64_t bw_in_MiBps = (worker->xfer_completed * g_xfer_size_bytes) /
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(g_time_in_sec * 1024 * 1024);
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total_completed += worker->xfer_completed;
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total_failed += worker->xfer_failed;
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total_miscompared += worker->injected_miscompares;
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if (xfer_per_sec) {
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printf("%10d%12" PRIu64 "/s%8" PRIu64 " MiB/s%11" PRIu64 " %11" PRIu64 "\n",
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worker->core, xfer_per_sec,
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bw_in_MiBps, worker->xfer_failed, worker->injected_miscompares);
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}
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worker = worker->next;
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}
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total_xfer_per_sec = total_completed / g_time_in_sec;
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total_bw_in_MiBps = (total_completed * g_xfer_size_bytes) /
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(g_time_in_sec * 1024 * 1024);
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printf("==================================================================\n");
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printf("Total:%16" PRIu64 "/s%8" PRIu64 " MiB/s%11" PRIu64 " %11" PRIu64"\n\n",
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total_xfer_per_sec, total_bw_in_MiBps, total_failed, total_miscompared);
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return total_failed ? 1 : 0;
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}
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static int
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_check_draining(void *arg)
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{
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struct worker_thread *worker = arg;
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assert(worker);
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if (worker->current_queue_depth == 0) {
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spdk_poller_unregister(&worker->is_draining_poller);
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unregister_worker(worker);
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}
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return -1;
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}
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static int
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_worker_stop(void *arg)
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{
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struct worker_thread *worker = arg;
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assert(worker);
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spdk_poller_unregister(&worker->stop_poller);
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/* now let the worker drain and check it's outstanding IO with a poller */
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worker->is_draining = true;
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worker->is_draining_poller = SPDK_POLLER_REGISTER(_check_draining, worker, 0);
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return 0;
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}
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static void
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_init_thread_done(void *ctx)
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{
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}
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static void
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_init_thread(void *arg1)
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{
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struct worker_thread *worker;
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char task_pool_name[30];
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struct ap_task *task;
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int i;
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worker = calloc(1, sizeof(*worker));
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if (worker == NULL) {
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fprintf(stderr, "Unable to allocate worker\n");
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return;
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}
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worker->core = spdk_env_get_current_core();
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worker->thread = spdk_get_thread();
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worker->next = g_workers;
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worker->ch = spdk_accel_engine_get_io_channel();
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snprintf(task_pool_name, sizeof(task_pool_name), "task_pool_%d", g_num_workers);
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worker->task_pool = spdk_mempool_create(task_pool_name,
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g_queue_depth,
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spdk_accel_task_size() + sizeof(struct ap_task),
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SPDK_MEMPOOL_DEFAULT_CACHE_SIZE,
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SPDK_ENV_SOCKET_ID_ANY);
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if (!worker->task_pool) {
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fprintf(stderr, "Could not allocate buffer pool.\n");
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free(worker);
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return;
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}
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/* Register a poller that will stop the worker at time elapsed */
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worker->stop_poller = SPDK_POLLER_REGISTER(_worker_stop, worker,
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g_time_in_sec * 1000000ULL);
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g_workers = worker;
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pthread_mutex_lock(&g_workers_lock);
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g_num_workers++;
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pthread_mutex_unlock(&g_workers_lock);
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for (i = 0; i < g_queue_depth; i++) {
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task = spdk_mempool_get(worker->task_pool);
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if (!task) {
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fprintf(stderr, "Unable to get accel_task\n");
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return;
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}
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task->src = spdk_dma_zmalloc(g_xfer_size_bytes, 0, NULL);
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if (task->src == NULL) {
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fprintf(stderr, "Unable to alloc src buffer\n");
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return;
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}
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memset(task->src, DATA_PATTERN, g_xfer_size_bytes);
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task->dst = spdk_dma_zmalloc(g_xfer_size_bytes, 0, NULL);
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if (task->dst == NULL) {
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fprintf(stderr, "Unable to alloc dst buffer\n");
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return;
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}
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/* For compare we want the buffers to match, otherwise not. */
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if (g_workload_selection == ACCEL_COMPARE) {
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memset(task->dst, DATA_PATTERN, g_xfer_size_bytes);
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} else {
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memset(task->dst, ~DATA_PATTERN, g_xfer_size_bytes);
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}
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_submit_single(worker, task);
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}
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}
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static void
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accel_done(void *ref, int status)
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{
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struct ap_task *task = __ap_task_from_accel_task(ref);
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struct worker_thread *worker = task->worker;
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assert(worker);
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task->status = status;
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spdk_thread_send_msg(worker->thread, _accel_done, task);
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}
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static void
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accel_perf_start(void *arg1)
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{
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uint64_t capabilites;
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struct spdk_io_channel *accel_ch;
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accel_ch = spdk_accel_engine_get_io_channel();
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capabilites = spdk_accel_get_capabilities(accel_ch);
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spdk_put_io_channel(accel_ch);
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if ((capabilites & g_workload_selection) != g_workload_selection) {
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SPDK_ERRLOG("Selected workload is not supported by the current engine\n");
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SPDK_NOTICELOG("Software engine is selected by default, enable a HW engine via RPC\n\n");
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spdk_app_stop(-1);
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return;
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}
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g_tsc_rate = spdk_get_ticks_hz();
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g_tsc_us_rate = g_tsc_rate / (1000 * 1000);
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g_tsc_end = spdk_get_ticks() + g_time_in_sec * g_tsc_rate;
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printf("Running for %d seconds...\n", g_time_in_sec);
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fflush(stdout);
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spdk_for_each_thread(_init_thread, NULL, _init_thread_done);
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}
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int
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main(int argc, char **argv)
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{
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struct spdk_app_opts opts = {};
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struct worker_thread *worker, *tmp;
|
|
int rc = 0;
|
|
|
|
pthread_mutex_init(&g_workers_lock, NULL);
|
|
spdk_app_opts_init(&opts);
|
|
opts.reactor_mask = "0x1";
|
|
if ((rc = spdk_app_parse_args(argc, argv, &opts, "o:q:t:yw:P:", NULL, parse_args,
|
|
usage)) != SPDK_APP_PARSE_ARGS_SUCCESS) {
|
|
rc = -1;
|
|
goto cleanup;
|
|
}
|
|
|
|
if ((g_workload_selection != ACCEL_COPY) &&
|
|
(g_workload_selection != ACCEL_FILL) &&
|
|
(g_workload_selection != ACCEL_CRC32C) &&
|
|
(g_workload_selection != ACCEL_COMPARE)) {
|
|
usage();
|
|
rc = -1;
|
|
goto cleanup;
|
|
}
|
|
|
|
dump_user_config(&opts);
|
|
rc = spdk_app_start(&opts, accel_perf_start, NULL);
|
|
if (rc) {
|
|
SPDK_ERRLOG("ERROR starting application\n");
|
|
} else {
|
|
dump_result();
|
|
}
|
|
|
|
pthread_mutex_destroy(&g_workers_lock);
|
|
|
|
worker = g_workers;
|
|
while (worker) {
|
|
tmp = worker->next;
|
|
free(worker);
|
|
worker = tmp;
|
|
}
|
|
cleanup:
|
|
spdk_app_fini();
|
|
return rc;
|
|
}
|