Many open source projects have moved to using SPDX identifiers to specify license information, reducing the amount of boilerplate code in every source file. This patch replaces the bulk of SPDK .c, .cpp and Makefiles with the BSD-3-Clause identifier. Almost all of these files share the exact same license text, and this patch only modifies the files that contain the most common license text. There can be slight variations because the third clause contains company names - most say "Intel Corporation", but there are instances for Nvidia, Samsung, Eideticom and even "the copyright holder". Used a bash script to automate replacement of the license text with SPDX identifier which is checked into scripts/spdx.sh. Signed-off-by: Jim Harris <james.r.harris@intel.com> Change-Id: Iaa88ab5e92ea471691dc298cfe41ebfb5d169780 Reviewed-on: https://review.spdk.io/gerrit/c/spdk/spdk/+/12904 Community-CI: Broadcom CI <spdk-ci.pdl@broadcom.com> Community-CI: Mellanox Build Bot Tested-by: SPDK CI Jenkins <sys_sgci@intel.com> Reviewed-by: Aleksey Marchuk <alexeymar@nvidia.com> Reviewed-by: Changpeng Liu <changpeng.liu@intel.com> Reviewed-by: Dong Yi <dongx.yi@intel.com> Reviewed-by: Konrad Sztyber <konrad.sztyber@intel.com> Reviewed-by: Paul Luse <paul.e.luse@intel.com> Reviewed-by: <qun.wan@intel.com>
735 lines
17 KiB
C
735 lines
17 KiB
C
/* SPDX-License-Identifier: BSD-3-Clause
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* Copyright (c) Intel Corporation.
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* All rights reserved.
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*/
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#include "spdk_cunit.h"
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#include "common/lib/ut_multithread.c"
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#include "unit/lib/json_mock.c"
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#include "bdev/pmem/bdev_pmem.c"
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DEFINE_STUB_V(spdk_bdev_module_fini_done, (void));
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static struct spdk_bdev_module *g_bdev_pmem_module;
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static int g_bdev_module_cnt;
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struct pmemblk {
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const char *name;
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bool is_open;
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bool is_consistent;
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size_t bsize;
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long long nblock;
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uint8_t *buffer;
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};
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static const char *g_bdev_name = "pmem0";
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/* PMEMblkpool is a typedef of struct pmemblk */
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static PMEMblkpool g_pool_ok = {
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.name = "/pools/ok_pool",
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.is_open = false,
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.is_consistent = true,
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.bsize = 4096,
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.nblock = 150
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};
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static PMEMblkpool g_pool_nblock_0 = {
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.name = "/pools/nblock_0",
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.is_open = false,
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.is_consistent = true,
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.bsize = 4096,
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.nblock = 0
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};
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static PMEMblkpool g_pool_bsize_0 = {
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.name = "/pools/nblock_0",
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.is_open = false,
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.is_consistent = true,
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.bsize = 0,
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.nblock = 100
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};
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static PMEMblkpool g_pool_inconsistent = {
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.name = "/pools/inconsistent",
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.is_open = false,
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.is_consistent = false,
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.bsize = 512,
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.nblock = 1
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};
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static int g_opened_pools;
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static struct spdk_bdev *g_bdev;
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static const char *g_check_version_msg;
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static bool g_pmemblk_open_allow_open = true;
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static PMEMblkpool *
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find_pmemblk_pool(const char *path)
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{
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if (path == NULL) {
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errno = EINVAL;
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return NULL;
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} else if (strcmp(g_pool_ok.name, path) == 0) {
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return &g_pool_ok;
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} else if (strcmp(g_pool_nblock_0.name, path) == 0) {
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return &g_pool_nblock_0;
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} else if (strcmp(g_pool_bsize_0.name, path) == 0) {
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return &g_pool_bsize_0;
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} else if (strcmp(g_pool_inconsistent.name, path) == 0) {
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return &g_pool_inconsistent;
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}
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errno = ENOENT;
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return NULL;
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}
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PMEMblkpool *
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pmemblk_open(const char *path, size_t bsize)
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{
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PMEMblkpool *pool;
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if (!g_pmemblk_open_allow_open) {
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errno = EIO;
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return NULL;
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}
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pool = find_pmemblk_pool(path);
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if (!pool) {
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errno = ENOENT;
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return NULL;
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}
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CU_ASSERT_TRUE_FATAL(pool->is_consistent);
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CU_ASSERT_FALSE(pool->is_open);
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if (pool->is_open == false) {
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pool->is_open = true;
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g_opened_pools++;
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} else {
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errno = EBUSY;
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pool = NULL;
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}
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return pool;
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}
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void
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spdk_bdev_io_get_buf(struct spdk_bdev_io *bdev_io, spdk_bdev_io_get_buf_cb cb, uint64_t len)
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{
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cb(NULL, bdev_io, true);
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}
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static void
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check_open_pool_fatal(PMEMblkpool *pool)
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{
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SPDK_CU_ASSERT_FATAL(pool != NULL);
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SPDK_CU_ASSERT_FATAL(find_pmemblk_pool(pool->name) == pool);
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SPDK_CU_ASSERT_FATAL(pool->is_open == true);
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}
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void
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pmemblk_close(PMEMblkpool *pool)
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{
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check_open_pool_fatal(pool);
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pool->is_open = false;
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CU_ASSERT(g_opened_pools > 0);
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g_opened_pools--;
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}
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size_t
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pmemblk_bsize(PMEMblkpool *pool)
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{
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check_open_pool_fatal(pool);
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return pool->bsize;
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}
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size_t
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pmemblk_nblock(PMEMblkpool *pool)
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{
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check_open_pool_fatal(pool);
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return pool->nblock;
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}
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int
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pmemblk_read(PMEMblkpool *pool, void *buf, long long blockno)
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{
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check_open_pool_fatal(pool);
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if (blockno >= pool->nblock) {
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errno = EINVAL;
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return -1;
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}
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memcpy(buf, &pool->buffer[blockno * pool->bsize], pool->bsize);
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return 0;
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}
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int
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pmemblk_write(PMEMblkpool *pool, const void *buf, long long blockno)
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{
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check_open_pool_fatal(pool);
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if (blockno >= pool->nblock) {
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errno = EINVAL;
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return -1;
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}
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memcpy(&pool->buffer[blockno * pool->bsize], buf, pool->bsize);
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return 0;
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}
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int
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pmemblk_set_zero(PMEMblkpool *pool, long long blockno)
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{
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check_open_pool_fatal(pool);
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if (blockno >= pool->nblock) {
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errno = EINVAL;
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return -1;
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}
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memset(&pool->buffer[blockno * pool->bsize], 0, pool->bsize);
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return 0;
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}
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const char *
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pmemblk_errormsg(void)
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{
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return strerror(errno);
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}
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const char *
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pmemblk_check_version(unsigned major_required, unsigned minor_required)
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{
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return g_check_version_msg;
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}
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int
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pmemblk_check(const char *path, size_t bsize)
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{
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PMEMblkpool *pool = find_pmemblk_pool(path);
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if (!pool) {
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errno = ENOENT;
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return -1;
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}
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if (!pool->is_consistent) {
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/* errno ? */
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return 0;
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}
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if (bsize != 0 && pool->bsize != bsize) {
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/* errno ? */
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return 0;
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}
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return 1;
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}
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void
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spdk_bdev_io_complete(struct spdk_bdev_io *bdev_io, enum spdk_bdev_io_status status)
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{
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bdev_io->internal.status = status;
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}
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int
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spdk_bdev_register(struct spdk_bdev *bdev)
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{
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CU_ASSERT_PTR_NULL(g_bdev);
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g_bdev = bdev;
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return 0;
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}
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int
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spdk_bdev_unregister_by_name(const char *name, struct spdk_bdev_module *module,
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spdk_bdev_unregister_cb cb_fn, void *cb_arg)
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{
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return 0;
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}
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int
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spdk_bdev_notify_blockcnt_change(struct spdk_bdev *bdev, uint64_t size)
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{
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bdev->blockcnt = size;
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return 0;
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}
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static void
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ut_bdev_pmem_destruct(struct spdk_bdev *bdev)
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{
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SPDK_CU_ASSERT_FATAL(g_bdev != NULL);
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CU_ASSERT_EQUAL(bdev_pmem_destruct(bdev->ctxt), 0);
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g_bdev = NULL;
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}
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void
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spdk_bdev_module_list_add(struct spdk_bdev_module *bdev_module)
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{
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g_bdev_pmem_module = bdev_module;
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g_bdev_module_cnt++;
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}
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static int
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bdev_submit_request(struct spdk_bdev *bdev, int16_t io_type, uint64_t offset_blocks,
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uint64_t num_blocks, struct iovec *iovs, size_t iov_cnt)
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{
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struct spdk_bdev_io bio = { 0 };
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switch (io_type) {
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case SPDK_BDEV_IO_TYPE_READ:
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bio.u.bdev.iovs = iovs;
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bio.u.bdev.iovcnt = iov_cnt;
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bio.u.bdev.offset_blocks = offset_blocks;
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bio.u.bdev.num_blocks = num_blocks;
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break;
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case SPDK_BDEV_IO_TYPE_WRITE:
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bio.u.bdev.iovs = iovs;
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bio.u.bdev.iovcnt = iov_cnt;
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bio.u.bdev.offset_blocks = offset_blocks;
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bio.u.bdev.num_blocks = num_blocks;
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break;
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case SPDK_BDEV_IO_TYPE_FLUSH:
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bio.u.bdev.offset_blocks = offset_blocks;
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bio.u.bdev.num_blocks = num_blocks;
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break;
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case SPDK_BDEV_IO_TYPE_RESET:
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break;
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case SPDK_BDEV_IO_TYPE_UNMAP:
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bio.u.bdev.offset_blocks = offset_blocks;
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bio.u.bdev.num_blocks = num_blocks;
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break;
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case SPDK_BDEV_IO_TYPE_WRITE_ZEROES:
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bio.u.bdev.offset_blocks = offset_blocks;
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bio.u.bdev.num_blocks = num_blocks;
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break;
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default:
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CU_FAIL_FATAL("BUG:Unexpected IO type");
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break;
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}
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/*
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* Set status to value that shouldn't be returned
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*/
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bio.type = io_type;
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bio.internal.status = SPDK_BDEV_IO_STATUS_PENDING;
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bio.bdev = bdev;
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bdev_pmem_submit_request(NULL, &bio);
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return bio.internal.status;
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}
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static int
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ut_pmem_blk_clean(void)
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{
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free(g_pool_ok.buffer);
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g_pool_ok.buffer = NULL;
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/* Unload module to free IO channel */
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g_bdev_pmem_module->module_fini();
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poll_threads();
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free_threads();
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return 0;
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}
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static int
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ut_pmem_blk_init(void)
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{
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errno = 0;
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allocate_threads(1);
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set_thread(0);
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g_pool_ok.buffer = calloc(g_pool_ok.nblock, g_pool_ok.bsize);
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if (g_pool_ok.buffer == NULL) {
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ut_pmem_blk_clean();
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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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ut_pmem_init(void)
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{
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SPDK_CU_ASSERT_FATAL(g_bdev_pmem_module != NULL);
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CU_ASSERT_EQUAL(g_bdev_module_cnt, 1);
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/* Make pmemblk_check_version fail with provided error message */
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g_check_version_msg = "TEST FAIL MESSAGE";
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CU_ASSERT_NOT_EQUAL(g_bdev_pmem_module->module_init(), 0);
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/* This init must success */
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g_check_version_msg = NULL;
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CU_ASSERT_EQUAL(g_bdev_pmem_module->module_init(), 0);
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}
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static void
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ut_pmem_open_close(void)
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{
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struct spdk_bdev *bdev = NULL;
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int pools_cnt;
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int rc;
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pools_cnt = g_opened_pools;
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/* Try opening with NULL name */
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rc = create_pmem_disk(NULL, NULL, &bdev);
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CU_ASSERT_PTR_NULL(bdev);
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CU_ASSERT_EQUAL(pools_cnt, g_opened_pools);
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CU_ASSERT_NOT_EQUAL(rc, 0);
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/* Open non-existent pool */
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rc = create_pmem_disk("non existent pool", NULL, &bdev);
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CU_ASSERT_PTR_NULL(bdev);
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CU_ASSERT_EQUAL(pools_cnt, g_opened_pools);
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CU_ASSERT_NOT_EQUAL(rc, 0);
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/* Open inconsistent pool */
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rc = create_pmem_disk(g_pool_inconsistent.name, NULL, &bdev);
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CU_ASSERT_PTR_NULL(bdev);
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CU_ASSERT_EQUAL(pools_cnt, g_opened_pools);
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CU_ASSERT_NOT_EQUAL(rc, 0);
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/* Open consistent pool fail the open from unknown reason. */
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g_pmemblk_open_allow_open = false;
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rc = create_pmem_disk(g_pool_inconsistent.name, NULL, &bdev);
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g_pmemblk_open_allow_open = true;
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CU_ASSERT_PTR_NULL(bdev);
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CU_ASSERT_EQUAL(pools_cnt, g_opened_pools);
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CU_ASSERT_NOT_EQUAL(rc, 0);
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/* Open pool with nblocks = 0 */
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rc = create_pmem_disk(g_pool_nblock_0.name, NULL, &bdev);
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CU_ASSERT_PTR_NULL(bdev);
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CU_ASSERT_EQUAL(pools_cnt, g_opened_pools);
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CU_ASSERT_NOT_EQUAL(rc, 0);
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/* Open pool with bsize = 0 */
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rc = create_pmem_disk(g_pool_bsize_0.name, NULL, &bdev);
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CU_ASSERT_PTR_NULL(bdev);
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CU_ASSERT_EQUAL(pools_cnt, g_opened_pools);
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CU_ASSERT_NOT_EQUAL(rc, 0);
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/* Open pool with NULL name */
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rc = create_pmem_disk(g_pool_ok.name, NULL, &bdev);
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CU_ASSERT_PTR_NULL(bdev);
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CU_ASSERT_EQUAL(pools_cnt, g_opened_pools);
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CU_ASSERT_NOT_EQUAL(rc, 0);
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/* Open good pool */
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rc = create_pmem_disk(g_pool_ok.name, g_bdev_name, &bdev);
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SPDK_CU_ASSERT_FATAL(bdev != NULL);
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CU_ASSERT_TRUE(g_pool_ok.is_open);
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CU_ASSERT_EQUAL(pools_cnt + 1, g_opened_pools);
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CU_ASSERT_EQUAL(rc, 0);
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/* Now remove this bdev */
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ut_bdev_pmem_destruct(bdev);
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CU_ASSERT_FALSE(g_pool_ok.is_open);
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CU_ASSERT_EQUAL(pools_cnt, g_opened_pools);
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}
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static void
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ut_pmem_write_read(void)
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{
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uint8_t *write_buf, *read_buf;
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struct spdk_bdev *bdev;
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int rc;
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size_t unaligned_aligned_size = 100;
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size_t buf_size = g_pool_ok.bsize * g_pool_ok.nblock;
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size_t i;
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const uint64_t nblock_offset = 10;
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uint64_t offset;
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size_t io_size, nblock, total_io_size, bsize;
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bsize = 4096;
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struct iovec iov[] = {
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{ 0, 2 * bsize },
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{ 0, 3 * bsize },
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{ 0, 4 * bsize },
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};
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rc = create_pmem_disk(g_pool_ok.name, g_bdev_name, &bdev);
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CU_ASSERT_EQUAL(rc, 0);
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SPDK_CU_ASSERT_FATAL(g_pool_ok.nblock > 40);
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write_buf = calloc(1, buf_size);
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read_buf = calloc(1, buf_size);
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SPDK_CU_ASSERT_FATAL(bdev != NULL);
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SPDK_CU_ASSERT_FATAL(write_buf != NULL);
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SPDK_CU_ASSERT_FATAL(read_buf != NULL);
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total_io_size = 0;
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offset = nblock_offset * g_pool_ok.bsize;
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for (i = 0; i < 3; i++) {
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iov[i].iov_base = &write_buf[offset + total_io_size];
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total_io_size += iov[i].iov_len;
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}
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for (i = 0; i < total_io_size + unaligned_aligned_size; i++) {
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write_buf[offset + i] = 0x42 + i;
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}
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SPDK_CU_ASSERT_FATAL(total_io_size < buf_size);
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/*
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* Write outside pool.
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*/
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rc = bdev_submit_request(bdev, SPDK_BDEV_IO_TYPE_WRITE, g_pool_ok.nblock, 1, &iov[0], 2);
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CU_ASSERT_EQUAL(rc, SPDK_BDEV_IO_STATUS_FAILED);
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/*
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* Write with insufficient IOV buffers length.
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*/
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rc = bdev_submit_request(bdev, SPDK_BDEV_IO_TYPE_WRITE, 0, g_pool_ok.nblock, &iov[0], 2);
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CU_ASSERT_EQUAL(rc, SPDK_BDEV_IO_STATUS_FAILED);
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/*
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* Try to write two IOV with first one iov_len % bsize != 0.
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*/
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io_size = iov[0].iov_len + iov[1].iov_len;
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nblock = io_size / g_pool_ok.bsize;
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iov[0].iov_len += unaligned_aligned_size;
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rc = bdev_submit_request(bdev, SPDK_BDEV_IO_TYPE_WRITE, 0, nblock, &iov[0], 2);
|
|
CU_ASSERT_EQUAL(rc, SPDK_BDEV_IO_STATUS_FAILED);
|
|
iov[0].iov_len -= unaligned_aligned_size;
|
|
|
|
/*
|
|
* Try to write one IOV.
|
|
*/
|
|
nblock = iov[0].iov_len / g_pool_ok.bsize;
|
|
rc = bdev_submit_request(bdev, SPDK_BDEV_IO_TYPE_WRITE, nblock_offset, nblock, &iov[0], 1);
|
|
CU_ASSERT_EQUAL(rc, SPDK_BDEV_IO_STATUS_SUCCESS);
|
|
|
|
/*
|
|
* Try to write 2 IOV.
|
|
* Sum of IOV length is larger than IO size and last IOV is larger and iov_len % bsize != 0
|
|
*/
|
|
offset = iov[0].iov_len / g_pool_ok.bsize;
|
|
io_size = iov[1].iov_len + iov[2].iov_len;
|
|
nblock = io_size / g_pool_ok.bsize;
|
|
iov[2].iov_len += unaligned_aligned_size;
|
|
rc = bdev_submit_request(bdev, SPDK_BDEV_IO_TYPE_WRITE, nblock_offset + offset, nblock,
|
|
&iov[1], 2);
|
|
CU_ASSERT_EQUAL(rc, SPDK_BDEV_IO_STATUS_SUCCESS);
|
|
iov[2].iov_len -= unaligned_aligned_size;
|
|
|
|
/*
|
|
* Examine pool state:
|
|
* 1. Written area should have expected values.
|
|
* 2. Anything else should contain zeros.
|
|
*/
|
|
offset = nblock_offset * g_pool_ok.bsize + total_io_size;
|
|
rc = memcmp(&g_pool_ok.buffer[0], write_buf, offset);
|
|
CU_ASSERT_EQUAL(rc, 0);
|
|
|
|
for (i = offset; i < buf_size; i++) {
|
|
if (g_pool_ok.buffer[i] != 0) {
|
|
CU_ASSERT_EQUAL(g_pool_ok.buffer[i], 0);
|
|
break;
|
|
}
|
|
}
|
|
|
|
/* Setup IOV for reads */
|
|
memset(read_buf, 0xAB, buf_size);
|
|
offset = nblock_offset * g_pool_ok.bsize;
|
|
for (i = 0; i < 3; i++) {
|
|
iov[i].iov_base = &read_buf[offset];
|
|
offset += iov[i].iov_len;
|
|
}
|
|
|
|
/*
|
|
* Write outside pool.
|
|
*/
|
|
rc = bdev_submit_request(bdev, SPDK_BDEV_IO_TYPE_READ, g_pool_ok.nblock, 1, &iov[0], 2);
|
|
CU_ASSERT_EQUAL(rc, SPDK_BDEV_IO_STATUS_FAILED);
|
|
|
|
/*
|
|
* Read with insufficient IOV buffers length.
|
|
*/
|
|
rc = bdev_submit_request(bdev, SPDK_BDEV_IO_TYPE_READ, 0, g_pool_ok.nblock, &iov[0], 2);
|
|
CU_ASSERT_EQUAL(rc, SPDK_BDEV_IO_STATUS_FAILED);
|
|
|
|
/*
|
|
* Try to read two IOV with first one iov_len % bsize != 0.
|
|
*/
|
|
io_size = iov[0].iov_len + iov[1].iov_len;
|
|
nblock = io_size / g_pool_ok.bsize;
|
|
iov[0].iov_len += unaligned_aligned_size;
|
|
rc = bdev_submit_request(bdev, SPDK_BDEV_IO_TYPE_READ, 0, nblock, &iov[0], 2);
|
|
CU_ASSERT_EQUAL(rc, SPDK_BDEV_IO_STATUS_FAILED);
|
|
iov[0].iov_len -= unaligned_aligned_size;
|
|
|
|
/*
|
|
* Try to write one IOV.
|
|
*/
|
|
nblock = iov[0].iov_len / g_pool_ok.bsize;
|
|
rc = bdev_submit_request(bdev, SPDK_BDEV_IO_TYPE_READ, nblock_offset, nblock, &iov[0], 1);
|
|
CU_ASSERT_EQUAL(rc, SPDK_BDEV_IO_STATUS_SUCCESS);
|
|
|
|
/*
|
|
* Try to read 2 IOV.
|
|
* Sum of IOV length is larger than IO size and last IOV is larger and iov_len % bsize != 0
|
|
*/
|
|
offset = iov[0].iov_len / g_pool_ok.bsize;
|
|
io_size = iov[1].iov_len + iov[2].iov_len;
|
|
nblock = io_size / g_pool_ok.bsize;
|
|
iov[2].iov_len += unaligned_aligned_size;
|
|
rc = bdev_submit_request(bdev, SPDK_BDEV_IO_TYPE_READ, nblock_offset + offset, nblock,
|
|
&iov[1], 2);
|
|
CU_ASSERT_EQUAL(rc, SPDK_BDEV_IO_STATUS_SUCCESS);
|
|
iov[2].iov_len -= unaligned_aligned_size;
|
|
|
|
|
|
/*
|
|
* Examine what we read state:
|
|
* 1. Written area should have expected values.
|
|
* 2. Anything else should contain zeros.
|
|
*/
|
|
offset = nblock_offset * g_pool_ok.bsize;
|
|
for (i = 0; i < offset; i++) {
|
|
if (read_buf[i] != 0xAB) {
|
|
CU_ASSERT_EQUAL(read_buf[i], 0xAB);
|
|
break;
|
|
}
|
|
}
|
|
|
|
rc = memcmp(&read_buf[offset], &write_buf[offset], total_io_size);
|
|
CU_ASSERT_EQUAL(rc, 0);
|
|
|
|
offset += total_io_size;
|
|
for (i = offset; i < buf_size; i++) {
|
|
if (read_buf[i] != 0xAB) {
|
|
CU_ASSERT_EQUAL(read_buf[i], 0xAB);
|
|
break;
|
|
}
|
|
}
|
|
|
|
memset(g_pool_ok.buffer, 0, g_pool_ok.bsize * g_pool_ok.nblock);
|
|
free(write_buf);
|
|
free(read_buf);
|
|
|
|
/* Now remove this bdev */
|
|
ut_bdev_pmem_destruct(bdev);
|
|
CU_ASSERT_FALSE(g_pool_ok.is_open);
|
|
CU_ASSERT_EQUAL(g_opened_pools, 0);
|
|
}
|
|
|
|
static void
|
|
ut_pmem_reset(void)
|
|
{
|
|
struct spdk_bdev *bdev;
|
|
int rc;
|
|
|
|
rc = create_pmem_disk(g_pool_ok.name, g_bdev_name, &bdev);
|
|
CU_ASSERT_EQUAL(rc, 0);
|
|
SPDK_CU_ASSERT_FATAL(bdev != NULL);
|
|
|
|
rc = bdev_submit_request(bdev, SPDK_BDEV_IO_TYPE_RESET, 0, 0, NULL, 0);
|
|
CU_ASSERT_EQUAL(rc, SPDK_BDEV_IO_STATUS_SUCCESS);
|
|
|
|
ut_bdev_pmem_destruct(bdev);
|
|
}
|
|
|
|
static void
|
|
ut_pmem_unmap_write_zero(int16_t io_type)
|
|
{
|
|
struct spdk_bdev *bdev;
|
|
size_t buff_size = g_pool_ok.nblock * g_pool_ok.bsize;
|
|
size_t i;
|
|
uint8_t *buffer;
|
|
int rc;
|
|
|
|
CU_ASSERT(io_type == SPDK_BDEV_IO_TYPE_UNMAP || io_type == SPDK_BDEV_IO_TYPE_WRITE_ZEROES);
|
|
rc = create_pmem_disk(g_pool_ok.name, g_bdev_name, &bdev);
|
|
CU_ASSERT_EQUAL(rc, 0);
|
|
SPDK_CU_ASSERT_FATAL(bdev != NULL);
|
|
SPDK_CU_ASSERT_FATAL(g_pool_ok.nblock > 40);
|
|
|
|
buffer = calloc(1, buff_size);
|
|
SPDK_CU_ASSERT_FATAL(buffer != NULL);
|
|
|
|
for (i = 10 * g_pool_ok.bsize; i < 30 * g_pool_ok.bsize; i++) {
|
|
buffer[i] = 0x30 + io_type + i;
|
|
}
|
|
memcpy(g_pool_ok.buffer, buffer, buff_size);
|
|
|
|
/*
|
|
* Block outside of pool.
|
|
*/
|
|
rc = bdev_submit_request(bdev, io_type, g_pool_ok.nblock, 1, NULL, 0);
|
|
CU_ASSERT_EQUAL(rc, SPDK_BDEV_IO_STATUS_FAILED);
|
|
|
|
rc = memcmp(buffer, g_pool_ok.buffer, buff_size);
|
|
CU_ASSERT_EQUAL(rc, 0);
|
|
|
|
/*
|
|
* Blocks 15 to 25
|
|
*/
|
|
memset(&buffer[15 * g_pool_ok.bsize], 0, 10 * g_pool_ok.bsize);
|
|
rc = bdev_submit_request(bdev, io_type, 15, 10, NULL, 0);
|
|
CU_ASSERT_EQUAL(rc, SPDK_BDEV_IO_STATUS_SUCCESS);
|
|
|
|
rc = memcmp(buffer, g_pool_ok.buffer, buff_size);
|
|
CU_ASSERT_EQUAL(rc, 0);
|
|
|
|
/*
|
|
* All blocks.
|
|
*/
|
|
memset(buffer, 0, buff_size);
|
|
rc = bdev_submit_request(bdev, io_type, 0, g_pool_ok.nblock, NULL, 0);
|
|
CU_ASSERT_EQUAL(rc, SPDK_BDEV_IO_STATUS_SUCCESS);
|
|
|
|
rc = memcmp(buffer, g_pool_ok.buffer, buff_size);
|
|
CU_ASSERT_EQUAL(rc, 0);
|
|
|
|
/* Now remove this bdev */
|
|
ut_bdev_pmem_destruct(bdev);
|
|
CU_ASSERT_FALSE(g_pool_ok.is_open);
|
|
CU_ASSERT_EQUAL(g_opened_pools, 0);
|
|
|
|
free(buffer);
|
|
}
|
|
|
|
static void
|
|
ut_pmem_write_zero(void)
|
|
{
|
|
ut_pmem_unmap_write_zero(SPDK_BDEV_IO_TYPE_WRITE_ZEROES);
|
|
}
|
|
|
|
static void
|
|
ut_pmem_unmap(void)
|
|
{
|
|
ut_pmem_unmap_write_zero(SPDK_BDEV_IO_TYPE_UNMAP);
|
|
}
|
|
|
|
int
|
|
main(int argc, char **argv)
|
|
{
|
|
CU_pSuite suite = NULL;
|
|
unsigned int num_failures;
|
|
|
|
CU_set_error_action(CUEA_ABORT);
|
|
CU_initialize_registry();
|
|
|
|
suite = CU_add_suite("bdev_pmem", ut_pmem_blk_init, ut_pmem_blk_clean);
|
|
|
|
CU_ADD_TEST(suite, ut_pmem_init);
|
|
CU_ADD_TEST(suite, ut_pmem_open_close);
|
|
CU_ADD_TEST(suite, ut_pmem_write_read);
|
|
CU_ADD_TEST(suite, ut_pmem_reset);
|
|
CU_ADD_TEST(suite, ut_pmem_write_zero);
|
|
CU_ADD_TEST(suite, ut_pmem_unmap);
|
|
|
|
CU_basic_set_mode(CU_BRM_VERBOSE);
|
|
CU_basic_run_tests();
|
|
num_failures = CU_get_number_of_failures();
|
|
CU_cleanup_registry();
|
|
|
|
return num_failures;
|
|
}
|