test/prout: use multipath session if available
These tests currently reconnect to the base sd for multi-initiator testing. Use the secondary multipath device instead, if available. Signed-off-by: David Disseldorp <ddiss@suse.de>
This commit is contained in:
@@ -22,7 +22,7 @@
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#include "iscsi.h"
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#include "iscsi.h"
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#include "scsi-lowlevel.h"
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#include "scsi-lowlevel.h"
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#include "iscsi-test-cu.h"
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#include "iscsi-test-cu.h"
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#include "iscsi-multipath.h"
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static void
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static void
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verify_persistent_reserve_access(struct scsi_device *sd1, struct scsi_device *sd2,
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verify_persistent_reserve_access(struct scsi_device *sd1, struct scsi_device *sd2,
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@@ -122,7 +122,8 @@ verify_persistent_reserve_access(struct scsi_device *sd1, struct scsi_device *sd
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void
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void
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test_prout_reserve_access_ea(void)
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test_prout_reserve_access_ea(void)
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{
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{
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struct scsi_device sd2;
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struct scsi_device *sd2;
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int ret;
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if (sd->iscsi_ctx == NULL) {
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if (sd->iscsi_ctx == NULL) {
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const char *err = "[SKIPPED] This PERSISTENT RESERVE test is "
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const char *err = "[SKIPPED] This PERSISTENT RESERVE test is "
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@@ -132,24 +133,19 @@ test_prout_reserve_access_ea(void)
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return;
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return;
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}
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}
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memset(&sd2, 0, sizeof(sd2));
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ret = mpath_sd2_get_or_clone(sd, &sd2);
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sd2.iscsi_url = sd->iscsi_url;
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CU_ASSERT_EQUAL(ret, 0);
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sd2.iscsi_lun = sd->iscsi_lun;
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verify_persistent_reserve_access(sd, sd2,
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sd2.iscsi_ctx = iscsi_context_login(initiatorname2, sd2.iscsi_url, &sd2.iscsi_lun);
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if (sd2.iscsi_ctx == NULL) {
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logging(LOG_VERBOSE, "Failed to login to target");
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return;
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}
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verify_persistent_reserve_access(sd, &sd2,
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SCSI_PERSISTENT_RESERVE_TYPE_EXCLUSIVE_ACCESS,
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SCSI_PERSISTENT_RESERVE_TYPE_EXCLUSIVE_ACCESS,
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0, 0, 0, 0);
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0, 0, 0, 0);
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iscsi_destroy_context(sd2.iscsi_ctx);
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mpath_sd2_put(sd2);
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}
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}
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void
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void
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test_prout_reserve_access_we(void)
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test_prout_reserve_access_we(void)
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{
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{
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struct scsi_device sd2;
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struct scsi_device *sd2;
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int ret;
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if (sd->iscsi_ctx == NULL) {
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if (sd->iscsi_ctx == NULL) {
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const char *err = "[SKIPPED] This PERSISTENT RESERVE test is "
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const char *err = "[SKIPPED] This PERSISTENT RESERVE test is "
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@@ -159,24 +155,19 @@ test_prout_reserve_access_we(void)
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return;
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return;
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}
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}
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memset(&sd2, 0, sizeof(sd2));
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ret = mpath_sd2_get_or_clone(sd, &sd2);
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sd2.iscsi_url = sd->iscsi_url;
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CU_ASSERT_EQUAL(ret, 0);
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sd2.iscsi_lun = sd->iscsi_lun;
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verify_persistent_reserve_access(sd, sd2,
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sd2.iscsi_ctx = iscsi_context_login(initiatorname2, sd2.iscsi_url, &sd2.iscsi_lun);
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if (sd2.iscsi_ctx == NULL) {
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logging(LOG_VERBOSE, "Failed to login to target");
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return;
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}
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verify_persistent_reserve_access(sd, &sd2,
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SCSI_PERSISTENT_RESERVE_TYPE_WRITE_EXCLUSIVE,
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SCSI_PERSISTENT_RESERVE_TYPE_WRITE_EXCLUSIVE,
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1, 0, 1, 0);
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1, 0, 1, 0);
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iscsi_destroy_context(sd2.iscsi_ctx);
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mpath_sd2_put(sd2);
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}
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}
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void
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void
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test_prout_reserve_access_earo(void)
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test_prout_reserve_access_earo(void)
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{
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{
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struct scsi_device sd2;
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struct scsi_device *sd2;
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int ret;
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if (sd->iscsi_ctx == NULL) {
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if (sd->iscsi_ctx == NULL) {
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const char *err = "[SKIPPED] This PERSISTENT RESERVE test is "
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const char *err = "[SKIPPED] This PERSISTENT RESERVE test is "
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@@ -186,24 +177,19 @@ test_prout_reserve_access_earo(void)
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return;
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return;
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}
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}
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memset(&sd2, 0, sizeof(sd2));
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ret = mpath_sd2_get_or_clone(sd, &sd2);
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sd2.iscsi_url = sd->iscsi_url;
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CU_ASSERT_EQUAL(ret, 0);
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sd2.iscsi_lun = sd->iscsi_lun;
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verify_persistent_reserve_access(sd, sd2,
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sd2.iscsi_ctx = iscsi_context_login(initiatorname2, sd2.iscsi_url, &sd2.iscsi_lun);
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if (sd2.iscsi_ctx == NULL) {
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logging(LOG_VERBOSE, "Failed to login to target");
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return;
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}
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verify_persistent_reserve_access(sd, &sd2,
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SCSI_PERSISTENT_RESERVE_TYPE_EXCLUSIVE_ACCESS_REGISTRANTS_ONLY,
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SCSI_PERSISTENT_RESERVE_TYPE_EXCLUSIVE_ACCESS_REGISTRANTS_ONLY,
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1, 1, 0, 0);
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1, 1, 0, 0);
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iscsi_destroy_context(sd2.iscsi_ctx);
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mpath_sd2_put(sd2);
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}
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}
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void
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void
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test_prout_reserve_access_wero(void)
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test_prout_reserve_access_wero(void)
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{
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{
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struct scsi_device sd2;
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struct scsi_device *sd2;
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int ret;
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if (sd->iscsi_ctx == NULL) {
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if (sd->iscsi_ctx == NULL) {
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const char *err = "[SKIPPED] This PERSISTENT RESERVE test is "
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const char *err = "[SKIPPED] This PERSISTENT RESERVE test is "
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@@ -213,24 +199,19 @@ test_prout_reserve_access_wero(void)
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return;
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return;
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}
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}
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memset(&sd2, 0, sizeof(sd2));
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ret = mpath_sd2_get_or_clone(sd, &sd2);
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sd2.iscsi_url = sd->iscsi_url;
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CU_ASSERT_EQUAL(ret, 0);
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sd2.iscsi_lun = sd->iscsi_lun;
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verify_persistent_reserve_access(sd, sd2,
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sd2.iscsi_ctx = iscsi_context_login(initiatorname2, sd2.iscsi_url, &sd2.iscsi_lun);
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if (sd2.iscsi_ctx == NULL) {
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logging(LOG_VERBOSE, "Failed to login to target");
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return;
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}
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verify_persistent_reserve_access(sd, &sd2,
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SCSI_PERSISTENT_RESERVE_TYPE_WRITE_EXCLUSIVE_REGISTRANTS_ONLY,
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SCSI_PERSISTENT_RESERVE_TYPE_WRITE_EXCLUSIVE_REGISTRANTS_ONLY,
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1, 1, 1, 0);
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1, 1, 1, 0);
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iscsi_destroy_context(sd2.iscsi_ctx);
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mpath_sd2_put(sd2);
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}
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}
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void
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void
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test_prout_reserve_access_eaar(void)
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test_prout_reserve_access_eaar(void)
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{
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{
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struct scsi_device sd2;
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struct scsi_device *sd2;
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int ret;
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if (sd->iscsi_ctx == NULL) {
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if (sd->iscsi_ctx == NULL) {
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const char *err = "[SKIPPED] This PERSISTENT RESERVE test is "
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const char *err = "[SKIPPED] This PERSISTENT RESERVE test is "
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@@ -240,24 +221,19 @@ test_prout_reserve_access_eaar(void)
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return;
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return;
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}
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}
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memset(&sd2, 0, sizeof(sd2));
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ret = mpath_sd2_get_or_clone(sd, &sd2);
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sd2.iscsi_url = sd->iscsi_url;
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CU_ASSERT_EQUAL(ret, 0);
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sd2.iscsi_lun = sd->iscsi_lun;
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verify_persistent_reserve_access(sd, sd2,
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sd2.iscsi_ctx = iscsi_context_login(initiatorname2, sd2.iscsi_url, &sd2.iscsi_lun);
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if (sd2.iscsi_ctx == NULL) {
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logging(LOG_VERBOSE, "Failed to login to target");
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return;
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}
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verify_persistent_reserve_access(sd, &sd2,
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SCSI_PERSISTENT_RESERVE_TYPE_EXCLUSIVE_ACCESS_ALL_REGISTRANTS,
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SCSI_PERSISTENT_RESERVE_TYPE_EXCLUSIVE_ACCESS_ALL_REGISTRANTS,
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1, 1, 0, 0);
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1, 1, 0, 0);
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iscsi_destroy_context(sd2.iscsi_ctx);
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mpath_sd2_put(sd2);
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}
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}
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void
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void
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test_prout_reserve_access_wear(void)
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test_prout_reserve_access_wear(void)
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{
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{
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struct scsi_device sd2;
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struct scsi_device *sd2;
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int ret;
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if (sd->iscsi_ctx == NULL) {
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if (sd->iscsi_ctx == NULL) {
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const char *err = "[SKIPPED] This PERSISTENT RESERVE test is "
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const char *err = "[SKIPPED] This PERSISTENT RESERVE test is "
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@@ -267,16 +243,10 @@ test_prout_reserve_access_wear(void)
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return;
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return;
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}
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}
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memset(&sd2, 0, sizeof(sd2));
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ret = mpath_sd2_get_or_clone(sd, &sd2);
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sd2.iscsi_url = sd->iscsi_url;
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CU_ASSERT_EQUAL(ret, 0);
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sd2.iscsi_lun = sd->iscsi_lun;
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verify_persistent_reserve_access(sd, sd2,
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sd2.iscsi_ctx = iscsi_context_login(initiatorname2, sd2.iscsi_url, &sd2.iscsi_lun);
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if (sd2.iscsi_ctx == NULL) {
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logging(LOG_VERBOSE, "Failed to login to target");
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return;
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}
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verify_persistent_reserve_access(sd, &sd2,
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SCSI_PERSISTENT_RESERVE_TYPE_WRITE_EXCLUSIVE_ALL_REGISTRANTS,
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SCSI_PERSISTENT_RESERVE_TYPE_WRITE_EXCLUSIVE_ALL_REGISTRANTS,
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1, 1, 1, 0);
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1, 1, 1, 0);
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iscsi_destroy_context(sd2.iscsi_ctx);
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mpath_sd2_put(sd2);
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}
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}
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@@ -22,7 +22,7 @@
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#include "iscsi.h"
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#include "iscsi.h"
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#include "scsi-lowlevel.h"
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#include "scsi-lowlevel.h"
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#include "iscsi-test-cu.h"
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#include "iscsi-test-cu.h"
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#include "iscsi-multipath.h"
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static void
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static void
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verify_persistent_reserve_ownership(struct scsi_device *sd1, struct scsi_device *sd2,
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verify_persistent_reserve_ownership(struct scsi_device *sd1, struct scsi_device *sd2,
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@@ -96,7 +96,8 @@ verify_persistent_reserve_ownership(struct scsi_device *sd1, struct scsi_device
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void
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void
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test_prout_reserve_ownership_ea(void)
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test_prout_reserve_ownership_ea(void)
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{
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{
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struct scsi_device sd2;
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struct scsi_device *sd2;
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int ret;
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if (sd->iscsi_ctx == NULL) {
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if (sd->iscsi_ctx == NULL) {
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const char *err = "[SKIPPED] This PERSISTENT RESERVE test is "
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const char *err = "[SKIPPED] This PERSISTENT RESERVE test is "
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@@ -106,23 +107,18 @@ test_prout_reserve_ownership_ea(void)
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return;
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return;
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}
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}
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memset(&sd2, 0, sizeof(sd2));
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ret = mpath_sd2_get_or_clone(sd, &sd2);
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sd2.iscsi_url = sd->iscsi_url;
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CU_ASSERT_EQUAL(ret, 0);
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sd2.iscsi_lun = sd->iscsi_lun;
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verify_persistent_reserve_ownership(sd, sd2,
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sd2.iscsi_ctx = iscsi_context_login(initiatorname2, sd2.iscsi_url, &sd2.iscsi_lun);
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if (sd2.iscsi_ctx == NULL) {
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logging(LOG_VERBOSE, "Failed to login to target");
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return;
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}
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verify_persistent_reserve_ownership(sd, &sd2,
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SCSI_PERSISTENT_RESERVE_TYPE_EXCLUSIVE_ACCESS, 0);
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SCSI_PERSISTENT_RESERVE_TYPE_EXCLUSIVE_ACCESS, 0);
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iscsi_destroy_context(sd2.iscsi_ctx);
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mpath_sd2_put(sd2);
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}
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}
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void
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void
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test_prout_reserve_ownership_we(void)
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test_prout_reserve_ownership_we(void)
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{
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{
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struct scsi_device sd2;
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struct scsi_device *sd2;
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int ret;
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if (sd->iscsi_ctx == NULL) {
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if (sd->iscsi_ctx == NULL) {
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const char *err = "[SKIPPED] This PERSISTENT RESERVE test is "
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const char *err = "[SKIPPED] This PERSISTENT RESERVE test is "
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@@ -132,23 +128,18 @@ test_prout_reserve_ownership_we(void)
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return;
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return;
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}
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}
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memset(&sd2, 0, sizeof(sd2));
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ret = mpath_sd2_get_or_clone(sd, &sd2);
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sd2.iscsi_url = sd->iscsi_url;
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CU_ASSERT_EQUAL(ret, 0);
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sd2.iscsi_lun = sd->iscsi_lun;
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verify_persistent_reserve_ownership(sd, sd2,
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sd2.iscsi_ctx = iscsi_context_login(initiatorname2, sd2.iscsi_url, &sd2.iscsi_lun);
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if (sd2.iscsi_ctx == NULL) {
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logging(LOG_VERBOSE, "Failed to login to target");
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return;
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}
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verify_persistent_reserve_ownership(sd, &sd2,
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SCSI_PERSISTENT_RESERVE_TYPE_WRITE_EXCLUSIVE, 0);
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SCSI_PERSISTENT_RESERVE_TYPE_WRITE_EXCLUSIVE, 0);
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iscsi_destroy_context(sd2.iscsi_ctx);
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mpath_sd2_put(sd2);
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}
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}
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void
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void
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test_prout_reserve_ownership_earo(void)
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test_prout_reserve_ownership_earo(void)
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{
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{
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struct scsi_device sd2;
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struct scsi_device *sd2;
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int ret;
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if (sd->iscsi_ctx == NULL) {
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if (sd->iscsi_ctx == NULL) {
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const char *err = "[SKIPPED] This PERSISTENT RESERVE test is "
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const char *err = "[SKIPPED] This PERSISTENT RESERVE test is "
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@@ -158,23 +149,18 @@ test_prout_reserve_ownership_earo(void)
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return;
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return;
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}
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}
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memset(&sd2, 0, sizeof(sd2));
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ret = mpath_sd2_get_or_clone(sd, &sd2);
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sd2.iscsi_url = sd->iscsi_url;
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CU_ASSERT_EQUAL(ret, 0);
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sd2.iscsi_lun = sd->iscsi_lun;
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verify_persistent_reserve_ownership(sd, sd2,
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sd2.iscsi_ctx = iscsi_context_login(initiatorname2, sd2.iscsi_url, &sd2.iscsi_lun);
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if (sd2.iscsi_ctx == NULL) {
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logging(LOG_VERBOSE, "Failed to login to target");
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return;
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}
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verify_persistent_reserve_ownership(sd, &sd2,
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SCSI_PERSISTENT_RESERVE_TYPE_EXCLUSIVE_ACCESS_REGISTRANTS_ONLY, 0);
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SCSI_PERSISTENT_RESERVE_TYPE_EXCLUSIVE_ACCESS_REGISTRANTS_ONLY, 0);
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iscsi_destroy_context(sd2.iscsi_ctx);
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mpath_sd2_put(sd2);
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}
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}
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void
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void
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test_prout_reserve_ownership_wero(void)
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test_prout_reserve_ownership_wero(void)
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{
|
{
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struct scsi_device sd2;
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struct scsi_device *sd2;
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int ret;
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if (sd->iscsi_ctx == NULL) {
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if (sd->iscsi_ctx == NULL) {
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const char *err = "[SKIPPED] This PERSISTENT RESERVE test is "
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const char *err = "[SKIPPED] This PERSISTENT RESERVE test is "
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@@ -184,23 +170,18 @@ test_prout_reserve_ownership_wero(void)
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return;
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return;
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}
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}
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memset(&sd2, 0, sizeof(sd2));
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ret = mpath_sd2_get_or_clone(sd, &sd2);
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sd2.iscsi_url = sd->iscsi_url;
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CU_ASSERT_EQUAL(ret, 0);
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sd2.iscsi_lun = sd->iscsi_lun;
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verify_persistent_reserve_ownership(sd, sd2,
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sd2.iscsi_ctx = iscsi_context_login(initiatorname2, sd2.iscsi_url, &sd2.iscsi_lun);
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if (sd2.iscsi_ctx == NULL) {
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logging(LOG_VERBOSE, "Failed to login to target");
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return;
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||||||
}
|
|
||||||
verify_persistent_reserve_ownership(sd, &sd2,
|
|
||||||
SCSI_PERSISTENT_RESERVE_TYPE_WRITE_EXCLUSIVE_REGISTRANTS_ONLY, 0);
|
SCSI_PERSISTENT_RESERVE_TYPE_WRITE_EXCLUSIVE_REGISTRANTS_ONLY, 0);
|
||||||
iscsi_destroy_context(sd2.iscsi_ctx);
|
mpath_sd2_put(sd2);
|
||||||
}
|
}
|
||||||
|
|
||||||
void
|
void
|
||||||
test_prout_reserve_ownership_eaar(void)
|
test_prout_reserve_ownership_eaar(void)
|
||||||
{
|
{
|
||||||
struct scsi_device sd2;
|
struct scsi_device *sd2;
|
||||||
|
int ret;
|
||||||
|
|
||||||
if (sd->iscsi_ctx == NULL) {
|
if (sd->iscsi_ctx == NULL) {
|
||||||
const char *err = "[SKIPPED] This PERSISTENT RESERVE test is "
|
const char *err = "[SKIPPED] This PERSISTENT RESERVE test is "
|
||||||
@@ -210,23 +191,18 @@ test_prout_reserve_ownership_eaar(void)
|
|||||||
return;
|
return;
|
||||||
}
|
}
|
||||||
|
|
||||||
memset(&sd2, 0, sizeof(sd2));
|
ret = mpath_sd2_get_or_clone(sd, &sd2);
|
||||||
sd2.iscsi_url = sd->iscsi_url;
|
CU_ASSERT_EQUAL(ret, 0);
|
||||||
sd2.iscsi_lun = sd->iscsi_lun;
|
verify_persistent_reserve_ownership(sd, sd2,
|
||||||
sd2.iscsi_ctx = iscsi_context_login(initiatorname2, sd2.iscsi_url, &sd2.iscsi_lun);
|
|
||||||
if (sd2.iscsi_ctx == NULL) {
|
|
||||||
logging(LOG_VERBOSE, "Failed to login to target");
|
|
||||||
return;
|
|
||||||
}
|
|
||||||
verify_persistent_reserve_ownership(sd, &sd2,
|
|
||||||
SCSI_PERSISTENT_RESERVE_TYPE_EXCLUSIVE_ACCESS_ALL_REGISTRANTS, 1);
|
SCSI_PERSISTENT_RESERVE_TYPE_EXCLUSIVE_ACCESS_ALL_REGISTRANTS, 1);
|
||||||
iscsi_destroy_context(sd2.iscsi_ctx);
|
mpath_sd2_put(sd2);
|
||||||
}
|
}
|
||||||
|
|
||||||
void
|
void
|
||||||
test_prout_reserve_ownership_wear(void)
|
test_prout_reserve_ownership_wear(void)
|
||||||
{
|
{
|
||||||
struct scsi_device sd2;
|
struct scsi_device *sd2;
|
||||||
|
int ret;
|
||||||
|
|
||||||
if (sd->iscsi_ctx == NULL) {
|
if (sd->iscsi_ctx == NULL) {
|
||||||
const char *err = "[SKIPPED] This PERSISTENT RESERVE test is "
|
const char *err = "[SKIPPED] This PERSISTENT RESERVE test is "
|
||||||
@@ -236,15 +212,9 @@ test_prout_reserve_ownership_wear(void)
|
|||||||
return;
|
return;
|
||||||
}
|
}
|
||||||
|
|
||||||
memset(&sd2, 0, sizeof(sd2));
|
ret = mpath_sd2_get_or_clone(sd, &sd2);
|
||||||
sd2.iscsi_url = sd->iscsi_url;
|
CU_ASSERT_EQUAL(ret, 0);
|
||||||
sd2.iscsi_lun = sd->iscsi_lun;
|
verify_persistent_reserve_ownership(sd, sd2,
|
||||||
sd2.iscsi_ctx = iscsi_context_login(initiatorname2, sd2.iscsi_url, &sd2.iscsi_lun);
|
|
||||||
if (sd2.iscsi_ctx == NULL) {
|
|
||||||
logging(LOG_VERBOSE, "Failed to login to target");
|
|
||||||
return;
|
|
||||||
}
|
|
||||||
verify_persistent_reserve_ownership(sd, &sd2,
|
|
||||||
SCSI_PERSISTENT_RESERVE_TYPE_WRITE_EXCLUSIVE_ALL_REGISTRANTS, 1);
|
SCSI_PERSISTENT_RESERVE_TYPE_WRITE_EXCLUSIVE_ALL_REGISTRANTS, 1);
|
||||||
iscsi_destroy_context(sd2.iscsi_ctx);
|
mpath_sd2_put(sd2);
|
||||||
}
|
}
|
||||||
|
|||||||
Reference in New Issue
Block a user