975b66555c
Signed-off-by: Fam Zheng <famz@redhat.com> Message-Id: <1438159512-3871-3-git-send-email-famz@redhat.com> Signed-off-by: Paolo Bonzini <pbonzini@redhat.com>
278 lines
8.1 KiB
C
278 lines
8.1 KiB
C
/*
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* QTest testcase for VirtIO SCSI
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*
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* Copyright (c) 2014 SUSE LINUX Products GmbH
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* Copyright (c) 2015 Red Hat Inc.
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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 <glib.h>
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#include <string.h>
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#include "libqtest.h"
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#include "qemu/osdep.h"
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#include <stdio.h>
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#include "block/scsi.h"
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#include "libqos/virtio.h"
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#include "libqos/virtio-pci.h"
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#include "libqos/pci-pc.h"
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#include "libqos/malloc.h"
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#include "libqos/malloc-pc.h"
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#include "libqos/malloc-generic.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 CDB_SIZE 32
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#define MAX_NUM_QUEUES 64
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typedef struct {
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QVirtioDevice *dev;
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QGuestAllocator *alloc;
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QPCIBus *bus;
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int num_queues;
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QVirtQueue *vq[MAX_NUM_QUEUES + 2];
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} QVirtIOSCSI;
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typedef struct {
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uint8_t lun[8];
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int64_t tag;
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uint8_t task_attr;
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uint8_t prio;
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uint8_t crn;
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uint8_t cdb[CDB_SIZE];
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} QEMU_PACKED QVirtIOSCSICmdReq;
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typedef struct {
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uint32_t sense_len;
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uint32_t resid;
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uint16_t status_qualifier;
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uint8_t status;
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uint8_t response;
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uint8_t sense[96];
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} QEMU_PACKED QVirtIOSCSICmdResp;
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static void qvirtio_scsi_start(const char *extra_opts)
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{
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char *cmdline;
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cmdline = g_strdup_printf(
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"-drive id=drv0,if=none,file=/dev/null,format=raw "
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"-device virtio-scsi-pci,id=vs0 "
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"-device scsi-hd,bus=vs0.0,drive=drv0 %s",
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extra_opts ? : "");
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qtest_start(cmdline);
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g_free(cmdline);
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}
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static void qvirtio_scsi_stop(void)
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{
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qtest_end();
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}
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static void qvirtio_scsi_pci_free(QVirtIOSCSI *vs)
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{
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int i;
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for (i = 0; i < vs->num_queues + 2; i++) {
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guest_free(vs->alloc, vs->vq[i]->desc);
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}
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pc_alloc_uninit(vs->alloc);
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qvirtio_pci_device_disable(container_of(vs->dev, QVirtioPCIDevice, vdev));
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g_free(vs->dev);
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qpci_free_pc(vs->bus);
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}
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static uint64_t qvirtio_scsi_alloc(QVirtIOSCSI *vs, size_t alloc_size,
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const void *data)
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{
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uint64_t addr;
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addr = guest_alloc(vs->alloc, alloc_size);
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if (data) {
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memwrite(addr, data, alloc_size);
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}
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return addr;
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}
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static uint8_t virtio_scsi_do_command(QVirtIOSCSI *vs, const uint8_t *cdb,
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const uint8_t *data_in,
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size_t data_in_len,
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uint8_t *data_out, size_t data_out_len,
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QVirtIOSCSICmdResp *resp_out)
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{
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QVirtQueue *vq;
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QVirtIOSCSICmdReq req = { { 0 } };
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QVirtIOSCSICmdResp resp = { .response = 0xff, .status = 0xff };
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uint64_t req_addr, resp_addr, data_in_addr = 0, data_out_addr = 0;
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uint8_t response;
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uint32_t free_head;
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vq = vs->vq[2];
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req.lun[0] = 1; /* Select LUN */
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req.lun[1] = 1; /* Select target 1 */
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memcpy(req.cdb, cdb, CDB_SIZE);
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/* XXX: Fix endian if any multi-byte field in req/resp is used */
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/* Add request header */
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req_addr = qvirtio_scsi_alloc(vs, sizeof(req), &req);
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free_head = qvirtqueue_add(vq, req_addr, sizeof(req), false, true);
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if (data_out_len) {
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data_out_addr = qvirtio_scsi_alloc(vs, data_out_len, data_out);
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qvirtqueue_add(vq, data_out_addr, data_out_len, false, true);
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}
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/* Add response header */
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resp_addr = qvirtio_scsi_alloc(vs, sizeof(resp), &resp);
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qvirtqueue_add(vq, resp_addr, sizeof(resp), true, !!data_in_len);
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if (data_in_len) {
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data_in_addr = qvirtio_scsi_alloc(vs, data_in_len, data_in);
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qvirtqueue_add(vq, data_in_addr, data_in_len, true, false);
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}
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qvirtqueue_kick(&qvirtio_pci, vs->dev, vq, free_head);
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qvirtio_wait_queue_isr(&qvirtio_pci, vs->dev, vq, QVIRTIO_SCSI_TIMEOUT_US);
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response = readb(resp_addr + offsetof(QVirtIOSCSICmdResp, response));
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if (resp_out) {
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memread(resp_addr, resp_out, sizeof(*resp_out));
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}
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guest_free(vs->alloc, req_addr);
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guest_free(vs->alloc, resp_addr);
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guest_free(vs->alloc, data_in_addr);
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guest_free(vs->alloc, data_out_addr);
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return response;
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}
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static QVirtIOSCSI *qvirtio_scsi_pci_init(int slot)
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{
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const uint8_t test_unit_ready_cdb[CDB_SIZE] = {};
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QVirtIOSCSI *vs;
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QVirtioPCIDevice *dev;
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QVirtIOSCSICmdResp resp;
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void *addr;
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int i;
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vs = g_new0(QVirtIOSCSI, 1);
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vs->alloc = pc_alloc_init();
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vs->bus = qpci_init_pc();
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dev = qvirtio_pci_device_find(vs->bus, QVIRTIO_SCSI_DEVICE_ID);
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vs->dev = (QVirtioDevice *)dev;
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g_assert(dev != NULL);
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g_assert_cmphex(vs->dev->device_type, ==, QVIRTIO_SCSI_DEVICE_ID);
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qvirtio_pci_device_enable(dev);
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qvirtio_reset(&qvirtio_pci, vs->dev);
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qvirtio_set_acknowledge(&qvirtio_pci, vs->dev);
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qvirtio_set_driver(&qvirtio_pci, vs->dev);
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addr = dev->addr + QVIRTIO_PCI_DEVICE_SPECIFIC_NO_MSIX;
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vs->num_queues = qvirtio_config_readl(&qvirtio_pci, vs->dev,
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(uint64_t)(uintptr_t)addr);
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g_assert_cmpint(vs->num_queues, <, MAX_NUM_QUEUES);
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for (i = 0; i < vs->num_queues + 2; i++) {
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vs->vq[i] = qvirtqueue_setup(&qvirtio_pci, vs->dev, vs->alloc, i);
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}
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/* Clear the POWER ON OCCURRED unit attention */
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g_assert_cmpint(virtio_scsi_do_command(vs, test_unit_ready_cdb,
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NULL, 0, NULL, 0, &resp),
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==, 0);
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g_assert_cmpint(resp.status, ==, CHECK_CONDITION);
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g_assert_cmpint(resp.sense[0], ==, 0x70); /* Fixed format sense buffer */
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g_assert_cmpint(resp.sense[2], ==, UNIT_ATTENTION);
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g_assert_cmpint(resp.sense[12], ==, 0x29); /* POWER ON */
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g_assert_cmpint(resp.sense[13], ==, 0x00);
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return vs;
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}
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/* Tests only initialization so far. TODO: Replace with functional tests */
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static void pci_nop(void)
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{
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qvirtio_scsi_start(NULL);
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qvirtio_scsi_stop();
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}
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static void hotplug(void)
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{
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QDict *response;
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qvirtio_scsi_start("-drive id=drv1,if=none,file=/dev/null,format=raw");
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response = qmp("{\"execute\": \"device_add\","
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" \"arguments\": {"
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" \"driver\": \"scsi-hd\","
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" \"id\": \"scsi-hd\","
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" \"drive\": \"drv1\""
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"}}");
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g_assert(response);
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g_assert(!qdict_haskey(response, "error"));
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QDECREF(response);
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response = qmp("{\"execute\": \"device_del\","
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" \"arguments\": {"
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" \"id\": \"scsi-hd\""
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"}}");
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g_assert(response);
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g_assert(!qdict_haskey(response, "error"));
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g_assert(qdict_haskey(response, "event"));
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g_assert(!strcmp(qdict_get_str(response, "event"), "DEVICE_DELETED"));
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QDECREF(response);
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qvirtio_scsi_stop();
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}
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/* Test WRITE SAME with the lba not aligned */
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static void test_unaligned_write_same(void)
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{
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QVirtIOSCSI *vs;
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uint8_t buf1[512] = { 0 };
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uint8_t buf2[512] = { 1 };
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const uint8_t write_same_cdb_1[CDB_SIZE] = { 0x41, 0x00, 0x00, 0x00, 0x00,
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0x01, 0x00, 0x00, 0x02, 0x00 };
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const uint8_t write_same_cdb_2[CDB_SIZE] = { 0x41, 0x00, 0x00, 0x00, 0x00,
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0x01, 0x00, 0x33, 0x00, 0x00 };
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qvirtio_scsi_start("-drive file=blkdebug::null-co://,if=none,id=dr1"
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",format=raw,file.align=4k "
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"-device scsi-disk,drive=dr1,lun=0,scsi-id=1");
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vs = qvirtio_scsi_pci_init(PCI_SLOT);
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g_assert_cmphex(0, ==,
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virtio_scsi_do_command(vs, write_same_cdb_1, NULL, 0, buf1, 512, NULL));
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g_assert_cmphex(0, ==,
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virtio_scsi_do_command(vs, write_same_cdb_2, NULL, 0, buf2, 512, NULL));
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qvirtio_scsi_pci_free(vs);
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qvirtio_scsi_stop();
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}
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int main(int argc, char **argv)
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{
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int ret;
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g_test_init(&argc, &argv, NULL);
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qtest_add_func("/virtio/scsi/pci/nop", pci_nop);
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qtest_add_func("/virtio/scsi/pci/hotplug", hotplug);
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qtest_add_func("/virtio/scsi/pci/scsi-disk/unaligned-write-same",
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test_unaligned_write_same);
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ret = g_test_run();
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return ret;
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}
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