396 lines
10 KiB
C
396 lines
10 KiB
C
/*
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Copyright (C) 2012 by Ronnie Sahlberg <ronniesahlberg@gmail.com>
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This program is free software; you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation; either version 2 of the License, or
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(at your option) any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program; if not, see <http://www.gnu.org/licenses/>.
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*/
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#include <stdio.h>
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#include <string.h>
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#include "iscsi.h"
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#include "scsi-lowlevel.h"
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#include "iscsi-test.h"
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int T0390_mandatory_opcodes_sbc(const char *initiator, const char *url, int data_loss, int show_info)
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{
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struct iscsi_context *iscsi;
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struct scsi_task *task;
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struct scsi_readcapacity16 *rc16;
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struct scsi_inquiry_standard *inq;
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int ret = 0, lun, sccs, encserv, lbpme;
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unsigned char data[4096];
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uint32_t block_size;
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int full_size;
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printf("0390_mandatory_opcodes_sbc:\n");
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printf("===========================\n");
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if (show_info) {
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printf("Test support for all mandatory opcodes for SBC devices\n");
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printf("1, Verify FORMAT UNIT is available\n");
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printf("2, Verify INQUIRY is available\n");
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printf("3, Verify MAINTENANCE IN is available (if SCCS bit is set)\n");
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printf("4, Verify MAINTENANCE OUT is available (if SCCS bit is set)\n");
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printf("5, Verify READ CAPACITY10 is available\n");
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printf("6, Verify READ CAPACITY16 is available\n");
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printf("7, Verify RECEIVE DIAGNOSTIC RESULT is available (if ENCSERV bit is set)\n");
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printf("8, Verify REDUNDANCY GROUP IN is available (if SCCS bit is set)\n");
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printf("9, Verify REDUNDANCY GROUP OUT is available (if SCCS bit is set)\n");
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printf("10, Verify REPORT LUNS is available\n");
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printf("11, Verify REQUEST SENSE is available\n");
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printf("12, Verify SEND DIAGNOSTIC is available\n");
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printf("13, Verify SPARE IN is available (if SCCS bit is set)\n");
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printf("14, Verify SPARE OUT is available (if SCCS bit is set)\n");
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printf("15, Verify TEST UNIT READY is available\n");
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printf("16, Verify UNAMP is available (if LBPME bit is set)\n");
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printf("17, Verify VOLUME SET IN is available (if SCCS bit is set)\n");
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printf("18, Verify VOLUME SET OUT is available (if SCCS bit is set)\n");
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printf("19, Verify WRITE SAME16 is available (if LBPME bit is set)\n");
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printf("20, Verify WRITE SAME32 is available (if LBPME bit is set)\n");
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printf("\n");
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return 0;
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}
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iscsi = iscsi_context_login(initiator, url, &lun);
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if (iscsi == NULL) {
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printf("Failed to login to target\n");
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return -1;
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}
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/* find the size of the LUN */
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task = iscsi_readcapacity16_sync(iscsi, lun);
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if (task == NULL) {
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printf("Failed to send READCAPACITY16 command: %s\n", iscsi_get_error(iscsi));
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ret = -1;
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goto finished;
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}
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if (task->status != SCSI_STATUS_GOOD) {
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printf("READCAPACITY16 command: failed with sense. %s\n", iscsi_get_error(iscsi));
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ret = -1;
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scsi_free_scsi_task(task);
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goto finished;
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}
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rc16 = scsi_datain_unmarshall(task);
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if (rc16 == NULL) {
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printf("failed to unmarshall READCAPACITY16 data. %s\n", iscsi_get_error(iscsi));
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ret = -1;
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scsi_free_scsi_task(task);
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goto finished;
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}
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block_size = rc16->block_length;
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lbpme = rc16->lbpme;
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scsi_free_scsi_task(task);
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/* See how big this inquiry data is */
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task = iscsi_inquiry_sync(iscsi, lun, 0, 0, 64);
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if (task == NULL || task->status != SCSI_STATUS_GOOD) {
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printf("Inquiry command failed : %s\n", iscsi_get_error(iscsi));
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return -1;
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}
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full_size = scsi_datain_getfullsize(task);
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if (full_size > task->datain.size) {
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scsi_free_scsi_task(task);
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/* we need more data for the full list */
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if ((task = iscsi_inquiry_sync(iscsi, lun, 0, 0, full_size)) == NULL) {
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printf("Inquiry command failed : %s\n", iscsi_get_error(iscsi));
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return -1;
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}
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}
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inq = scsi_datain_unmarshall(task);
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if (inq == NULL) {
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printf("failed to unmarshall inquiry datain blob\n");
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scsi_free_scsi_task(task);
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return -1;
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}
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sccs = inq->sccs;
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encserv = inq->encserv;
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if (inq->device_type != SCSI_INQUIRY_PERIPHERAL_DEVICE_TYPE_DIRECT_ACCESS) {
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printf("Not a SBC device. Skipping test\n");
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scsi_free_scsi_task(task);
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ret = -2;
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goto finished;
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}
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scsi_free_scsi_task(task);
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if (!data_loss) {
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printf("--dataloss flag is not set. Skipping test\n");
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ret = -2;
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goto finished;
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}
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printf("Test FORMAT UNIT ... ");
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printf("[TEST NOT IMPLEMENTED YET]\n");
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goto test2;
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test2:
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printf("Test INQUIRY ... ");
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task = iscsi_inquiry_sync(iscsi, lun, 0, 0, 64);
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if (task == NULL) {
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printf("[FAILED]\n");
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printf("Failed to send INQUIRY command: %s\n", iscsi_get_error(iscsi));
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ret++;
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goto test3;
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}
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if (task->status != SCSI_STATUS_GOOD) {
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printf("[FAILED]\n");
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printf("INQUIRY command: failed with sense %s\n", iscsi_get_error(iscsi));
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ret++;
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scsi_free_scsi_task(task);
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goto test3;
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}
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scsi_free_scsi_task(task);
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printf("[OK]\n");
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test3:
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printf("Test MAINTENANCE IN ... ");
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if (sccs == 0) {
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printf("[SCCS == 0, SKIPPING TEST]\n");
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goto test4;
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}
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printf("[TEST NOT IMPLEMENTED YET]\n");
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goto test4;
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test4:
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printf("Test MAINTENANCE OUT ... ");
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if (sccs == 0) {
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printf("[SCCS == 0, SKIPPING TEST]\n");
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goto test5;
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}
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printf("[TEST NOT IMPLEMENTED YET]\n");
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goto test5;
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test5:
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printf("Test READ CAPACITY10 ... ");
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task = iscsi_readcapacity10_sync(iscsi, lun,0 ,0);
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if (task == NULL) {
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printf("[FAILED]\n");
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printf("Failed to send READ CAPACITY10 command: %s\n", iscsi_get_error(iscsi));
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ret++;
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goto test6;
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}
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if (task->status != SCSI_STATUS_GOOD) {
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printf("[FAILED]\n");
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printf("READ CAPACITY10 command: failed with sense %s\n", iscsi_get_error(iscsi));
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ret++;
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scsi_free_scsi_task(task);
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goto test6;
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}
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scsi_free_scsi_task(task);
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printf("[OK]\n");
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test6:
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printf("Test READ CAPACITY16 ... ");
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task = iscsi_readcapacity16_sync(iscsi, lun);
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if (task == NULL) {
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printf("[FAILED]\n");
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printf("Failed to send READ CAPACITY16 command: %s\n", iscsi_get_error(iscsi));
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ret++;
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goto test7;
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}
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if (task->status != SCSI_STATUS_GOOD) {
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printf("[FAILED]\n");
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printf("READ CAPACITY16 command: failed with sense %s\n", iscsi_get_error(iscsi));
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ret++;
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scsi_free_scsi_task(task);
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goto test7;
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}
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scsi_free_scsi_task(task);
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printf("[OK]\n");
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test7:
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printf("Test RECEIVE DIAGNOSTIC RESULT ... ");
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if (encserv == 0) {
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printf("[ENCSERV == 0, SKIPPING TEST]\n");
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goto test8;
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}
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printf("[TEST NOT IMPLEMENTED YET]\n");
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goto test8;
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test8:
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printf("Test REDUNDANCY GROUP IN ... ");
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if (sccs == 0) {
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printf("[SCCS == 0, SKIPPING TEST]\n");
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goto test9;
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}
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printf("[TEST NOT IMPLEMENTED YET]\n");
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goto test9;
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test9:
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printf("Test REDUNDANCY GROUP OUT ... ");
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if (sccs == 0) {
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printf("[SCCS == 0, SKIPPING TEST]\n");
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goto test10;
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}
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printf("[TEST NOT IMPLEMENTED YET]\n");
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goto test10;
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test10:
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printf("Test REPORT LUNS ... ");
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task = iscsi_reportluns_sync(iscsi, 0, 64);
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if (task == NULL) {
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printf("[FAILED]\n");
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printf("Failed to send REPORT LUNS command: %s\n", iscsi_get_error(iscsi));
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ret++;
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goto test11;
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}
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if (task->status != SCSI_STATUS_GOOD) {
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printf("[FAILED]\n");
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printf("REPORT LUNS command: failed with sense %s\n", iscsi_get_error(iscsi));
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ret++;
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scsi_free_scsi_task(task);
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goto test11;
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}
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scsi_free_scsi_task(task);
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printf("[OK]\n");
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test11:
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printf("Test REQUEST SENSE ... ");
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printf("[TEST NOT IMPLEMENTED YET]\n");
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goto test12;
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test12:
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printf("Test SEND DIAGNOSTIC ... ");
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printf("[TEST NOT IMPLEMENTED YET]\n");
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goto test13;
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test13:
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printf("Test SPARE IN ... ");
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if (sccs == 0) {
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printf("[SCCS == 0, SKIPPING TEST]\n");
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goto test14;
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}
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printf("[TEST NOT IMPLEMENTED YET]\n");
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goto test14;
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test14:
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printf("Test SPARE OUT ... ");
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if (sccs == 0) {
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printf("[SCCS == 0, SKIPPING TEST]\n");
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goto test15;
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}
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printf("[TEST NOT IMPLEMENTED YET]\n");
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goto test15;
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test15:
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printf("Test TEST UNIT READY ... ");
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task = iscsi_testunitready_sync(iscsi, lun);
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if (task == NULL) {
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printf("[FAILED]\n");
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printf("Failed to send TEST UNIT READY command: %s\n", iscsi_get_error(iscsi));
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ret++;
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goto test11;
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}
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if (task->status != SCSI_STATUS_GOOD) {
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printf("[FAILED]\n");
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printf("TEST UNIT READY command: failed with sense %s\n", iscsi_get_error(iscsi));
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ret++;
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scsi_free_scsi_task(task);
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goto test16;
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}
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scsi_free_scsi_task(task);
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printf("[OK]\n");
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test16:
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printf("Test UNMAP ... ");
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if (lbpme == 0) {
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printf("[LBPME == 0, SKIPPING TEST]\n");
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goto test17;
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}
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task = iscsi_unmap_sync(iscsi, lun, 0, 0, NULL, 0);
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if (task == NULL) {
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printf("[FAILED]\n");
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printf("Failed to send UNMAP command: %s\n", iscsi_get_error(iscsi));
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ret++;
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goto test17;
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}
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if (task->status != SCSI_STATUS_GOOD) {
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printf("[FAILED]\n");
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printf("UNMAP command: failed with sense %s\n", iscsi_get_error(iscsi));
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ret++;
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scsi_free_scsi_task(task);
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goto test17;
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}
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scsi_free_scsi_task(task);
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printf("[OK]\n");
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test17:
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printf("Test VOLUME SET IN ... ");
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if (sccs == 0) {
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printf("[SCCS == 0, SKIPPING TEST]\n");
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goto test18;
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}
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printf("[TEST NOT IMPLEMENTED YET]\n");
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goto test18;
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test18:
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printf("Test VOLUME SET OUT ... ");
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if (sccs == 0) {
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printf("[SCCS == 0, SKIPPING TEST]\n");
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goto test19;
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}
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printf("[TEST NOT IMPLEMENTED YET]\n");
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goto test19;
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test19:
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printf("Test WRITE SAME16 ... ");
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if (lbpme == 0) {
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printf("[LBPME == 0, SKIPPING TEST]\n");
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goto test20;
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}
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task = iscsi_writesame16_sync(iscsi, lun, data, block_size, 0, 1, 0, 1, 0, 0, 0, 0);
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if (task == NULL) {
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printf("[FAILED]\n");
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printf("Failed to send WRITE SAME16 command: %s\n", iscsi_get_error(iscsi));
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ret++;
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goto test20;
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}
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if (task->status != SCSI_STATUS_GOOD) {
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printf("[FAILED]\n");
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printf("WRITE SAME16 command: failed with sense %s\n", iscsi_get_error(iscsi));
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ret++;
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scsi_free_scsi_task(task);
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goto test20;
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}
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scsi_free_scsi_task(task);
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printf("[OK]\n");
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test20:
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printf("Test WRITE SAME32 ... ");
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printf("[TEST NOT IMPLEMENTED YET]\n");
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goto test21;
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test21:
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finished:
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iscsi_logout_sync(iscsi);
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iscsi_destroy_context(iscsi);
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return ret;
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}
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