With some build environments (e.g. clang, see #1613) linking fails with unresolved references. This is caused by the inclusion of 'unused code' which is usually discarded by the linker. The 'unused code' contains references to functions that have not been 'stubbed' out. The failure can be seen by removing 'LDFLAGS += -Wl,--gc-sections' in spdk.unittest.mk Resolved by adding stubs for missing references. These are never called so return an arbtrary default value. Part of a set of independent changes which Fixes #1613 Signed-off-by: Nick Connolly <nick.connolly@mayadata.io> Change-Id: Ic291ba22cbee121b5c75b80910378b456a217189 Reviewed-on: https://review.spdk.io/gerrit/c/spdk/spdk/+/5080 Tested-by: SPDK CI Jenkins <sys_sgci@intel.com> Reviewed-by: Jim Harris <james.r.harris@intel.com> Reviewed-by: Aleksey Marchuk <alexeymar@mellanox.com>
557 lines
18 KiB
C
557 lines
18 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 "CUnit/Basic.h"
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#include "spdk_cunit.h"
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#include "spdk/thread.h"
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#include "spdk_internal/mock.h"
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#include "common/lib/test_env.c"
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#include "unit/lib/json_mock.c"
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#include "vhost/vhost.c"
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DEFINE_STUB(rte_vhost_set_vring_base, int, (int vid, uint16_t queue_id,
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uint16_t last_avail_idx, uint16_t last_used_idx), 0);
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DEFINE_STUB(rte_vhost_get_vring_base, int, (int vid, uint16_t queue_id,
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uint16_t *last_avail_idx, uint16_t *last_used_idx), 0);
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DEFINE_STUB_V(vhost_session_install_rte_compat_hooks,
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(struct spdk_vhost_session *vsession));
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DEFINE_STUB(vhost_register_unix_socket, int, (const char *path, const char *name,
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uint64_t virtio_features, uint64_t disabled_features, uint64_t protocol_features), 0);
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DEFINE_STUB(vhost_driver_unregister, int, (const char *path), 0);
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DEFINE_STUB(spdk_mem_register, int, (void *vaddr, size_t len), 0);
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DEFINE_STUB(spdk_mem_unregister, int, (void *vaddr, size_t len), 0);
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DEFINE_STUB(rte_vhost_vring_call, int, (int vid, uint16_t vring_idx), 0);
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DEFINE_STUB_V(rte_vhost_log_used_vring, (int vid, uint16_t vring_idx,
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uint64_t offset, uint64_t len));
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DEFINE_STUB(rte_vhost_get_mem_table, int, (int vid, struct rte_vhost_memory **mem), 0);
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DEFINE_STUB(rte_vhost_get_negotiated_features, int, (int vid, uint64_t *features), 0);
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DEFINE_STUB(rte_vhost_get_vhost_vring, int,
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(int vid, uint16_t vring_idx, struct rte_vhost_vring *vring), 0);
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DEFINE_STUB(rte_vhost_enable_guest_notification, int,
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(int vid, uint16_t queue_id, int enable), 0);
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DEFINE_STUB(rte_vhost_get_ifname, int, (int vid, char *buf, size_t len), 0);
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DEFINE_STUB(rte_vhost_driver_start, int, (const char *name), 0);
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DEFINE_STUB(rte_vhost_driver_callback_register, int,
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(const char *path, struct vhost_device_ops const *const ops), 0);
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DEFINE_STUB(rte_vhost_driver_disable_features, int, (const char *path, uint64_t features), 0);
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DEFINE_STUB(rte_vhost_driver_set_features, int, (const char *path, uint64_t features), 0);
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DEFINE_STUB(rte_vhost_driver_register, int, (const char *path, uint64_t flags), 0);
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DEFINE_STUB(rte_vhost_set_last_inflight_io_split, int,
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(int vid, uint16_t vring_idx, uint16_t idx), 0);
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DEFINE_STUB(rte_vhost_clr_inflight_desc_split, int,
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(int vid, uint16_t vring_idx, uint16_t last_used_idx, uint16_t idx), 0);
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DEFINE_STUB_V(rte_vhost_log_write, (int vid, uint64_t addr, uint64_t len));
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DEFINE_STUB_V(vhost_session_mem_register, (struct rte_vhost_memory *mem));
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DEFINE_STUB_V(vhost_session_mem_unregister, (struct rte_vhost_memory *mem));
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DEFINE_STUB(vhost_get_negotiated_features, int,
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(int vid, uint64_t *negotiated_features), 0);
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DEFINE_STUB(rte_vhost_get_vhost_ring_inflight, int,
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(int vid, uint16_t vring_idx, struct rte_vhost_ring_inflight *vring), 0);
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DEFINE_STUB(vhost_get_mem_table, int, (int vid, struct rte_vhost_memory **mem), 0);
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void *
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spdk_call_unaffinitized(void *cb(void *arg), void *arg)
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{
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return cb(arg);
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}
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static struct spdk_vhost_dev_backend g_vdev_backend;
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static int
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test_setup(void)
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{
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return 0;
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}
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static int
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alloc_vdev(struct spdk_vhost_dev **vdev_p, const char *name, const char *cpumask)
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{
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struct spdk_vhost_dev *vdev = NULL;
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int rc;
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/* spdk_vhost_dev must be allocated on a cache line boundary. */
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rc = posix_memalign((void **)&vdev, 64, sizeof(*vdev));
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CU_ASSERT(rc == 0);
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SPDK_CU_ASSERT_FATAL(vdev != NULL);
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memset(vdev, 0, sizeof(*vdev));
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rc = vhost_dev_register(vdev, name, cpumask, &g_vdev_backend);
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if (rc == 0) {
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*vdev_p = vdev;
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} else {
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free(vdev);
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*vdev_p = NULL;
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}
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return rc;
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}
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static void
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start_vdev(struct spdk_vhost_dev *vdev)
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{
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struct rte_vhost_memory *mem;
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struct spdk_vhost_session *vsession = NULL;
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int rc;
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mem = calloc(1, sizeof(*mem) + 2 * sizeof(struct rte_vhost_mem_region));
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SPDK_CU_ASSERT_FATAL(mem != NULL);
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mem->nregions = 2;
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mem->regions[0].guest_phys_addr = 0;
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mem->regions[0].size = 0x400000; /* 4 MB */
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mem->regions[0].host_user_addr = 0x1000000;
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mem->regions[1].guest_phys_addr = 0x400000;
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mem->regions[1].size = 0x400000; /* 4 MB */
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mem->regions[1].host_user_addr = 0x2000000;
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assert(TAILQ_EMPTY(&vdev->vsessions));
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/* spdk_vhost_dev must be allocated on a cache line boundary. */
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rc = posix_memalign((void **)&vsession, 64, sizeof(*vsession));
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CU_ASSERT(rc == 0);
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SPDK_CU_ASSERT_FATAL(vsession != NULL);
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vsession->started = true;
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vsession->vid = 0;
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vsession->mem = mem;
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TAILQ_INSERT_TAIL(&vdev->vsessions, vsession, tailq);
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}
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static void
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stop_vdev(struct spdk_vhost_dev *vdev)
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{
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struct spdk_vhost_session *vsession = TAILQ_FIRST(&vdev->vsessions);
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TAILQ_REMOVE(&vdev->vsessions, vsession, tailq);
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free(vsession->mem);
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free(vsession);
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}
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static void
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cleanup_vdev(struct spdk_vhost_dev *vdev)
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{
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if (!TAILQ_EMPTY(&vdev->vsessions)) {
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stop_vdev(vdev);
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}
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vhost_dev_unregister(vdev);
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free(vdev);
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}
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static void
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desc_to_iov_test(void)
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{
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struct spdk_vhost_dev *vdev;
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struct spdk_vhost_session *vsession;
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struct iovec iov[SPDK_VHOST_IOVS_MAX];
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uint16_t iov_index;
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struct vring_desc desc;
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int rc;
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spdk_cpuset_set_cpu(&g_vhost_core_mask, 0, true);
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rc = alloc_vdev(&vdev, "vdev_name_0", "0x1");
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SPDK_CU_ASSERT_FATAL(rc == 0 && vdev);
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start_vdev(vdev);
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vsession = TAILQ_FIRST(&vdev->vsessions);
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/* Test simple case where iov falls fully within a 2MB page. */
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desc.addr = 0x110000;
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desc.len = 0x1000;
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iov_index = 0;
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rc = vhost_vring_desc_to_iov(vsession, iov, &iov_index, &desc);
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CU_ASSERT(rc == 0);
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CU_ASSERT(iov_index == 1);
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CU_ASSERT(iov[0].iov_base == (void *)0x1110000);
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CU_ASSERT(iov[0].iov_len == 0x1000);
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/*
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* Always memset the iov to ensure each test validates data written by its call
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* to the function under test.
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*/
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memset(iov, 0, sizeof(iov));
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/* Same test, but ensure it respects the non-zero starting iov_index. */
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iov_index = SPDK_VHOST_IOVS_MAX - 1;
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rc = vhost_vring_desc_to_iov(vsession, iov, &iov_index, &desc);
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CU_ASSERT(rc == 0);
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CU_ASSERT(iov_index == SPDK_VHOST_IOVS_MAX);
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CU_ASSERT(iov[SPDK_VHOST_IOVS_MAX - 1].iov_base == (void *)0x1110000);
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CU_ASSERT(iov[SPDK_VHOST_IOVS_MAX - 1].iov_len == 0x1000);
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memset(iov, 0, sizeof(iov));
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/* Test for failure if iov_index already equals SPDK_VHOST_IOVS_MAX. */
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iov_index = SPDK_VHOST_IOVS_MAX;
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rc = vhost_vring_desc_to_iov(vsession, iov, &iov_index, &desc);
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CU_ASSERT(rc != 0);
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memset(iov, 0, sizeof(iov));
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/* Test case where iov spans a 2MB boundary, but does not span a vhost memory region. */
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desc.addr = 0x1F0000;
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desc.len = 0x20000;
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iov_index = 0;
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rc = vhost_vring_desc_to_iov(vsession, iov, &iov_index, &desc);
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CU_ASSERT(rc == 0);
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CU_ASSERT(iov_index == 1);
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CU_ASSERT(iov[0].iov_base == (void *)0x11F0000);
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CU_ASSERT(iov[0].iov_len == 0x20000);
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memset(iov, 0, sizeof(iov));
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/* Same test, but ensure it respects the non-zero starting iov_index. */
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iov_index = SPDK_VHOST_IOVS_MAX - 1;
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rc = vhost_vring_desc_to_iov(vsession, iov, &iov_index, &desc);
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CU_ASSERT(rc == 0);
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CU_ASSERT(iov_index == SPDK_VHOST_IOVS_MAX);
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CU_ASSERT(iov[SPDK_VHOST_IOVS_MAX - 1].iov_base == (void *)0x11F0000);
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CU_ASSERT(iov[SPDK_VHOST_IOVS_MAX - 1].iov_len == 0x20000);
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memset(iov, 0, sizeof(iov));
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/* Test case where iov spans a vhost memory region. */
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desc.addr = 0x3F0000;
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desc.len = 0x20000;
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iov_index = 0;
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rc = vhost_vring_desc_to_iov(vsession, iov, &iov_index, &desc);
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CU_ASSERT(rc == 0);
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CU_ASSERT(iov_index == 2);
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CU_ASSERT(iov[0].iov_base == (void *)0x13F0000);
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CU_ASSERT(iov[0].iov_len == 0x10000);
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CU_ASSERT(iov[1].iov_base == (void *)0x2000000);
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CU_ASSERT(iov[1].iov_len == 0x10000);
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memset(iov, 0, sizeof(iov));
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cleanup_vdev(vdev);
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CU_ASSERT(true);
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}
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static void
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create_controller_test(void)
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{
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struct spdk_vhost_dev *vdev, *vdev2;
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int ret;
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char long_name[PATH_MAX];
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spdk_cpuset_set_cpu(&g_vhost_core_mask, 0, true);
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/* Create device with no name */
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ret = alloc_vdev(&vdev, NULL, "0x1");
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CU_ASSERT(ret != 0);
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/* Create device with incorrect cpumask */
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ret = alloc_vdev(&vdev, "vdev_name_0", "0x2");
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CU_ASSERT(ret != 0);
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/* Create device with too long name and path */
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memset(long_name, 'x', sizeof(long_name));
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long_name[PATH_MAX - 1] = 0;
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snprintf(dev_dirname, sizeof(dev_dirname), "some_path/");
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ret = alloc_vdev(&vdev, long_name, "0x1");
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CU_ASSERT(ret != 0);
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dev_dirname[0] = 0;
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/* Create device when device name is already taken */
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ret = alloc_vdev(&vdev, "vdev_name_0", "0x1");
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SPDK_CU_ASSERT_FATAL(ret == 0 && vdev);
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ret = alloc_vdev(&vdev2, "vdev_name_0", "0x1");
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CU_ASSERT(ret != 0);
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cleanup_vdev(vdev);
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}
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static void
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session_find_by_vid_test(void)
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{
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struct spdk_vhost_dev *vdev;
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struct spdk_vhost_session *vsession;
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struct spdk_vhost_session *tmp;
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int rc;
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rc = alloc_vdev(&vdev, "vdev_name_0", "0x1");
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SPDK_CU_ASSERT_FATAL(rc == 0 && vdev);
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start_vdev(vdev);
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vsession = TAILQ_FIRST(&vdev->vsessions);
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tmp = vhost_session_find_by_vid(vsession->vid);
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CU_ASSERT(tmp == vsession);
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/* Search for a device with incorrect vid */
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tmp = vhost_session_find_by_vid(vsession->vid + 0xFF);
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CU_ASSERT(tmp == NULL);
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cleanup_vdev(vdev);
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}
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static void
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remove_controller_test(void)
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{
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struct spdk_vhost_dev *vdev;
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int ret;
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ret = alloc_vdev(&vdev, "vdev_name_0", "0x1");
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SPDK_CU_ASSERT_FATAL(ret == 0 && vdev);
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/* Remove device when controller is in use */
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start_vdev(vdev);
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SPDK_CU_ASSERT_FATAL(!TAILQ_EMPTY(&vdev->vsessions));
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ret = vhost_dev_unregister(vdev);
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CU_ASSERT(ret != 0);
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cleanup_vdev(vdev);
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}
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static void
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vq_avail_ring_get_test(void)
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{
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struct spdk_vhost_virtqueue vq = {};
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uint16_t avail_mem[34];
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uint16_t reqs[32];
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uint16_t reqs_len, ret, i;
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/* Basic example reap all requests */
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vq.vring.avail = (struct vring_avail *)avail_mem;
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vq.vring.size = 32;
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vq.last_avail_idx = 24;
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vq.vring.avail->idx = 29;
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reqs_len = 6;
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for (i = 0; i < 32; i++) {
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vq.vring.avail->ring[i] = i;
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}
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ret = vhost_vq_avail_ring_get(&vq, reqs, reqs_len);
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CU_ASSERT(ret == 5);
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CU_ASSERT(vq.last_avail_idx == 29);
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for (i = 0; i < ret; i++) {
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CU_ASSERT(reqs[i] == vq.vring.avail->ring[i + 24]);
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}
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/* Basic example reap only some requests */
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vq.last_avail_idx = 20;
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vq.vring.avail->idx = 29;
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reqs_len = 6;
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ret = vhost_vq_avail_ring_get(&vq, reqs, reqs_len);
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CU_ASSERT(ret == reqs_len);
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CU_ASSERT(vq.last_avail_idx == 26);
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for (i = 0; i < ret; i++) {
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CU_ASSERT(reqs[i] == vq.vring.avail->ring[i + 20]);
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}
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/* Test invalid example */
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vq.last_avail_idx = 20;
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vq.vring.avail->idx = 156;
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reqs_len = 6;
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ret = vhost_vq_avail_ring_get(&vq, reqs, reqs_len);
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CU_ASSERT(ret == 0);
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/* Test overflow in the avail->idx variable. */
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vq.last_avail_idx = 65535;
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vq.vring.avail->idx = 4;
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reqs_len = 6;
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ret = vhost_vq_avail_ring_get(&vq, reqs, reqs_len);
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CU_ASSERT(ret == 5);
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CU_ASSERT(vq.last_avail_idx == 4);
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CU_ASSERT(reqs[0] == vq.vring.avail->ring[31]);
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for (i = 1; i < ret; i++) {
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CU_ASSERT(reqs[i] == vq.vring.avail->ring[i - 1]);
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}
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}
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static bool
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vq_desc_guest_is_used(struct spdk_vhost_virtqueue *vq, int16_t guest_last_used_idx,
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int16_t guest_used_phase)
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{
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return (!!(vq->vring.desc_packed[guest_last_used_idx].flags & VRING_DESC_F_USED) ==
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!!guest_used_phase);
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}
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static void
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vq_desc_guest_set_avail(struct spdk_vhost_virtqueue *vq, int16_t *guest_last_avail_idx,
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int16_t *guest_avail_phase)
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{
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if (*guest_avail_phase) {
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vq->vring.desc_packed[*guest_last_avail_idx].flags |= VRING_DESC_F_AVAIL;
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vq->vring.desc_packed[*guest_last_avail_idx].flags &= ~VRING_DESC_F_USED;
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} else {
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vq->vring.desc_packed[*guest_last_avail_idx].flags &= ~VRING_DESC_F_AVAIL;
|
|
vq->vring.desc_packed[*guest_last_avail_idx].flags |= VRING_DESC_F_USED;
|
|
}
|
|
|
|
if (++(*guest_last_avail_idx) >= vq->vring.size) {
|
|
*guest_last_avail_idx -= vq->vring.size;
|
|
*guest_avail_phase = !(*guest_avail_phase);
|
|
}
|
|
}
|
|
|
|
static int16_t
|
|
vq_desc_guest_handle_completed_desc(struct spdk_vhost_virtqueue *vq, int16_t *guest_last_used_idx,
|
|
int16_t *guest_used_phase)
|
|
{
|
|
int16_t buffer_id = -1;
|
|
|
|
if (vq_desc_guest_is_used(vq, *guest_last_used_idx, *guest_used_phase)) {
|
|
buffer_id = vq->vring.desc_packed[*guest_last_used_idx].id;
|
|
if (++(*guest_last_used_idx) >= vq->vring.size) {
|
|
*guest_last_used_idx -= vq->vring.size;
|
|
*guest_used_phase = !(*guest_used_phase);
|
|
}
|
|
|
|
return buffer_id;
|
|
}
|
|
|
|
return -1;
|
|
}
|
|
|
|
static void
|
|
vq_packed_ring_test(void)
|
|
{
|
|
struct spdk_vhost_session vs = {};
|
|
struct spdk_vhost_virtqueue vq = {};
|
|
struct vring_packed_desc descs[4];
|
|
uint16_t guest_last_avail_idx = 0, guest_last_used_idx = 0;
|
|
uint16_t guest_avail_phase = 1, guest_used_phase = 1;
|
|
int i;
|
|
int16_t chain_num;
|
|
|
|
vq.vring.desc_packed = descs;
|
|
vq.vring.size = 4;
|
|
|
|
/* avail and used wrap counter are initialized to 1 */
|
|
vq.packed.avail_phase = 1;
|
|
vq.packed.used_phase = 1;
|
|
vq.packed.packed_ring = true;
|
|
memset(descs, 0, sizeof(descs));
|
|
|
|
CU_ASSERT(vhost_vq_packed_ring_is_avail(&vq) == false);
|
|
|
|
/* Guest send requests */
|
|
for (i = 0; i < vq.vring.size; i++) {
|
|
descs[guest_last_avail_idx].id = i;
|
|
/* Set the desc available */
|
|
vq_desc_guest_set_avail(&vq, &guest_last_avail_idx, &guest_avail_phase);
|
|
}
|
|
CU_ASSERT(guest_last_avail_idx == 0);
|
|
CU_ASSERT(guest_avail_phase == 0);
|
|
|
|
/* Host handle available descs */
|
|
CU_ASSERT(vhost_vq_packed_ring_is_avail(&vq) == true);
|
|
i = 0;
|
|
while (vhost_vq_packed_ring_is_avail(&vq)) {
|
|
CU_ASSERT(vhost_vring_packed_desc_get_buffer_id(&vq, vq.last_avail_idx, &chain_num) == i++);
|
|
CU_ASSERT(chain_num == 1);
|
|
}
|
|
|
|
/* Host complete them out of order: 1, 0, 2. */
|
|
vhost_vq_packed_ring_enqueue(&vs, &vq, 1, 1, 1);
|
|
vhost_vq_packed_ring_enqueue(&vs, &vq, 1, 0, 1);
|
|
vhost_vq_packed_ring_enqueue(&vs, &vq, 1, 2, 1);
|
|
|
|
/* Host has got all the available request but only complete three requests */
|
|
CU_ASSERT(vq.last_avail_idx == 0);
|
|
CU_ASSERT(vq.packed.avail_phase == 0);
|
|
CU_ASSERT(vq.last_used_idx == 3);
|
|
CU_ASSERT(vq.packed.used_phase == 1);
|
|
|
|
/* Guest handle completed requests */
|
|
CU_ASSERT(vq_desc_guest_handle_completed_desc(&vq, &guest_last_used_idx, &guest_used_phase) == 1);
|
|
CU_ASSERT(vq_desc_guest_handle_completed_desc(&vq, &guest_last_used_idx, &guest_used_phase) == 0);
|
|
CU_ASSERT(vq_desc_guest_handle_completed_desc(&vq, &guest_last_used_idx, &guest_used_phase) == 2);
|
|
CU_ASSERT(guest_last_used_idx == 3);
|
|
CU_ASSERT(guest_used_phase == 1);
|
|
|
|
/* There are three descs available the guest can send three request again */
|
|
for (i = 0; i < 3; i++) {
|
|
descs[guest_last_avail_idx].id = 2 - i;
|
|
/* Set the desc available */
|
|
vq_desc_guest_set_avail(&vq, &guest_last_avail_idx, &guest_avail_phase);
|
|
}
|
|
|
|
/* Host handle available descs */
|
|
CU_ASSERT(vhost_vq_packed_ring_is_avail(&vq) == true);
|
|
i = 2;
|
|
while (vhost_vq_packed_ring_is_avail(&vq)) {
|
|
CU_ASSERT(vhost_vring_packed_desc_get_buffer_id(&vq, vq.last_avail_idx, &chain_num) == i--);
|
|
CU_ASSERT(chain_num == 1);
|
|
}
|
|
|
|
/* There are four requests in Host, the new three ones and left one */
|
|
CU_ASSERT(vq.last_avail_idx == 3);
|
|
/* Available wrap conter should overturn */
|
|
CU_ASSERT(vq.packed.avail_phase == 0);
|
|
|
|
/* Host complete all the requests */
|
|
vhost_vq_packed_ring_enqueue(&vs, &vq, 1, 1, 1);
|
|
vhost_vq_packed_ring_enqueue(&vs, &vq, 1, 0, 1);
|
|
vhost_vq_packed_ring_enqueue(&vs, &vq, 1, 3, 1);
|
|
vhost_vq_packed_ring_enqueue(&vs, &vq, 1, 2, 1);
|
|
|
|
CU_ASSERT(vq.last_used_idx == vq.last_avail_idx);
|
|
CU_ASSERT(vq.packed.used_phase == vq.packed.avail_phase);
|
|
|
|
/* Guest handle completed requests */
|
|
CU_ASSERT(vq_desc_guest_handle_completed_desc(&vq, &guest_last_used_idx, &guest_used_phase) == 1);
|
|
CU_ASSERT(vq_desc_guest_handle_completed_desc(&vq, &guest_last_used_idx, &guest_used_phase) == 0);
|
|
CU_ASSERT(vq_desc_guest_handle_completed_desc(&vq, &guest_last_used_idx, &guest_used_phase) == 3);
|
|
CU_ASSERT(vq_desc_guest_handle_completed_desc(&vq, &guest_last_used_idx, &guest_used_phase) == 2);
|
|
|
|
CU_ASSERT(guest_last_avail_idx == guest_last_used_idx);
|
|
CU_ASSERT(guest_avail_phase == guest_used_phase);
|
|
}
|
|
|
|
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("vhost_suite", test_setup, NULL);
|
|
|
|
CU_ADD_TEST(suite, desc_to_iov_test);
|
|
CU_ADD_TEST(suite, create_controller_test);
|
|
CU_ADD_TEST(suite, session_find_by_vid_test);
|
|
CU_ADD_TEST(suite, remove_controller_test);
|
|
CU_ADD_TEST(suite, vq_avail_ring_get_test);
|
|
CU_ADD_TEST(suite, vq_packed_ring_test);
|
|
|
|
CU_basic_set_mode(CU_BRM_VERBOSE);
|
|
CU_basic_run_tests();
|
|
num_failures = CU_get_number_of_failures();
|
|
CU_cleanup_registry();
|
|
|
|
return num_failures;
|
|
}
|