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216 lines
6.3 KiB
C
216 lines
6.3 KiB
C
/*
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* virtio-serial Fuzzing Target
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*
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* Copyright Red Hat Inc., 2019
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*
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* Authors:
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* Alexander Bulekov <alxndr@bu.edu>
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*
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* This work is licensed under the terms of the GNU GPL, version 2 or later.
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* See the COPYING file in the top-level directory.
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*/
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#include "qemu/osdep.h"
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#include "tests/qtest/libqtest.h"
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#include "tests/qtest/libqos/virtio-scsi.h"
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#include "tests/qtest/libqos/virtio.h"
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#include "tests/qtest/libqos/virtio-pci.h"
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#include "standard-headers/linux/virtio_ids.h"
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#include "standard-headers/linux/virtio_pci.h"
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#include "standard-headers/linux/virtio_scsi.h"
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#include "fuzz.h"
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#include "fork_fuzz.h"
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#include "qos_fuzz.h"
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#define PCI_SLOT 0x02
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#define PCI_FN 0x00
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#define QVIRTIO_SCSI_TIMEOUT_US (1 * 1000 * 1000)
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#define MAX_NUM_QUEUES 64
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/* Based on tests/virtio-scsi-test.c */
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typedef struct {
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int num_queues;
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QVirtQueue *vq[MAX_NUM_QUEUES + 2];
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} QVirtioSCSIQueues;
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static QVirtioSCSIQueues *qvirtio_scsi_init(QVirtioDevice *dev, uint64_t mask)
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{
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QVirtioSCSIQueues *vs;
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uint64_t feat;
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int i;
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vs = g_new0(QVirtioSCSIQueues, 1);
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feat = qvirtio_get_features(dev);
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if (mask) {
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feat &= ~QVIRTIO_F_BAD_FEATURE | mask;
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} else {
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feat &= ~(QVIRTIO_F_BAD_FEATURE | (1ull << VIRTIO_RING_F_EVENT_IDX));
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}
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qvirtio_set_features(dev, feat);
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vs->num_queues = qvirtio_config_readl(dev, 0);
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for (i = 0; i < vs->num_queues + 2; i++) {
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vs->vq[i] = qvirtqueue_setup(dev, fuzz_qos_alloc, i);
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}
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qvirtio_set_driver_ok(dev);
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return vs;
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}
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static void virtio_scsi_fuzz(QTestState *s, QVirtioSCSIQueues* queues,
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const unsigned char *Data, size_t Size)
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{
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/*
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* Data is a sequence of random bytes. We split them up into "actions",
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* followed by data:
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* [vqa][dddddddd][vqa][dddd][vqa][dddddddddddd] ...
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* The length of the data is specified by the preceding vqa.length
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*/
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typedef struct vq_action {
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uint8_t queue;
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uint8_t length;
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uint8_t write;
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uint8_t next;
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uint8_t kick;
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} vq_action;
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/* Keep track of the free head for each queue we interact with */
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bool vq_touched[MAX_NUM_QUEUES + 2] = {0};
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uint32_t free_head[MAX_NUM_QUEUES + 2];
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QGuestAllocator *t_alloc = fuzz_qos_alloc;
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QVirtioSCSI *scsi = fuzz_qos_obj;
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QVirtioDevice *dev = scsi->vdev;
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QVirtQueue *q;
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vq_action vqa;
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while (Size >= sizeof(vqa)) {
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/* Copy the action, so we can normalize length, queue and flags */
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memcpy(&vqa, Data, sizeof(vqa));
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Data += sizeof(vqa);
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Size -= sizeof(vqa);
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vqa.queue = vqa.queue % queues->num_queues;
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/* Cap length at the number of remaining bytes in data */
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vqa.length = vqa.length >= Size ? Size : vqa.length;
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vqa.write = vqa.write & 1;
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vqa.next = vqa.next & 1;
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vqa.kick = vqa.kick & 1;
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q = queues->vq[vqa.queue];
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/* Copy the data into ram, and place it on the virtqueue */
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uint64_t req_addr = guest_alloc(t_alloc, vqa.length);
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qtest_memwrite(s, req_addr, Data, vqa.length);
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if (vq_touched[vqa.queue] == 0) {
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vq_touched[vqa.queue] = 1;
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free_head[vqa.queue] = qvirtqueue_add(s, q, req_addr, vqa.length,
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vqa.write, vqa.next);
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} else {
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qvirtqueue_add(s, q, req_addr, vqa.length, vqa.write , vqa.next);
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}
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if (vqa.kick) {
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qvirtqueue_kick(s, dev, q, free_head[vqa.queue]);
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free_head[vqa.queue] = 0;
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}
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Data += vqa.length;
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Size -= vqa.length;
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}
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/* In the end, kick each queue we interacted with */
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for (int i = 0; i < MAX_NUM_QUEUES + 2; i++) {
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if (vq_touched[i]) {
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qvirtqueue_kick(s, dev, queues->vq[i], free_head[i]);
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}
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}
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}
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static void virtio_scsi_fork_fuzz(QTestState *s,
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const unsigned char *Data, size_t Size)
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{
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QVirtioSCSI *scsi = fuzz_qos_obj;
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static QVirtioSCSIQueues *queues;
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if (!queues) {
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queues = qvirtio_scsi_init(scsi->vdev, 0);
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}
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if (fork() == 0) {
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virtio_scsi_fuzz(s, queues, Data, Size);
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flush_events(s);
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_Exit(0);
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} else {
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flush_events(s);
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wait(NULL);
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}
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}
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static void virtio_scsi_with_flag_fuzz(QTestState *s,
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const unsigned char *Data, size_t Size)
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{
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QVirtioSCSI *scsi = fuzz_qos_obj;
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static QVirtioSCSIQueues *queues;
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if (fork() == 0) {
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if (Size >= sizeof(uint64_t)) {
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queues = qvirtio_scsi_init(scsi->vdev, *(uint64_t *)Data);
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virtio_scsi_fuzz(s, queues,
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Data + sizeof(uint64_t), Size - sizeof(uint64_t));
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flush_events(s);
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}
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_Exit(0);
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} else {
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flush_events(s);
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wait(NULL);
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}
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}
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static void virtio_scsi_pre_fuzz(QTestState *s)
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{
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qos_init_path(s);
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counter_shm_init();
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}
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static void *virtio_scsi_test_setup(GString *cmd_line, void *arg)
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{
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g_string_append(cmd_line,
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" -drive file=blkdebug::null-co://,"
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"file.image.read-zeroes=on,"
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"if=none,id=dr1,format=raw,file.align=4k "
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"-device scsi-hd,drive=dr1,lun=0,scsi-id=1");
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return arg;
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}
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static void register_virtio_scsi_fuzz_targets(void)
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{
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fuzz_add_qos_target(&(FuzzTarget){
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.name = "virtio-scsi-fuzz",
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.description = "Fuzz the virtio-scsi virtual queues, forking "
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"for each fuzz run",
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.pre_vm_init = &counter_shm_init,
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.pre_fuzz = &virtio_scsi_pre_fuzz,
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.fuzz = virtio_scsi_fork_fuzz,},
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"virtio-scsi",
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&(QOSGraphTestOptions){.before = virtio_scsi_test_setup}
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);
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fuzz_add_qos_target(&(FuzzTarget){
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.name = "virtio-scsi-flags-fuzz",
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.description = "Fuzz the virtio-scsi virtual queues, forking "
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"for each fuzz run (also fuzzes the virtio flags)",
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.pre_vm_init = &counter_shm_init,
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.pre_fuzz = &virtio_scsi_pre_fuzz,
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.fuzz = virtio_scsi_with_flag_fuzz,},
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"virtio-scsi",
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&(QOSGraphTestOptions){.before = virtio_scsi_test_setup}
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);
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}
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fuzz_target_init(register_virtio_scsi_fuzz_targets);
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