TESTS: UNMAP make sure we read the blocks back as 0 after unmap
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@@ -200,6 +200,7 @@ test_sanitize_block_erase(void)
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logging(LOG_VERBOSE, "Test SANITIZE BLOCK ERASE");
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CHECK_FOR_SANITIZE;
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CHECK_FOR_DATALOSS;
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logging(LOG_NORMAL, "Check that SANITIZE BLOCK_ERASE is supported "
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"in REPORT_SUPPORTED_OPCODES");
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@@ -55,6 +55,7 @@ void test_sanitize_block_erase_reserved(void)
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logging(LOG_VERBOSE, "Test SANITIZE BLOCK_ERASE Reserved bits/bytes");
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CHECK_FOR_SANITIZE;
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CHECK_FOR_DATALOSS;
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local_iscsi_queue_pdu = my_iscsi_queue_pdu;
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@@ -109,6 +109,7 @@ test_sanitize_crypto_erase(void)
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logging(LOG_VERBOSE, "Test SANITIZE CRYPTO ERASE");
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CHECK_FOR_SANITIZE;
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CHECK_FOR_DATALOSS;
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logging(LOG_NORMAL, "Check that SANITIZE CRYPTO_ERASE is supported "
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"in REPORT_SUPPORTED_OPCODES");
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@@ -55,6 +55,7 @@ void test_sanitize_crypto_erase_reserved(void)
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logging(LOG_VERBOSE, "Test SANITIZE CRYPTO_ERASE Reserved bits/bytes");
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CHECK_FOR_SANITIZE;
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CHECK_FOR_DATALOSS;
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local_iscsi_queue_pdu = my_iscsi_queue_pdu;
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@@ -37,6 +37,7 @@ test_sanitize_exit_failure_mode(void)
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logging(LOG_VERBOSE, "Test SANITIZE EXIT FAILURE MODE");
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CHECK_FOR_SANITIZE;
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CHECK_FOR_DATALOSS;
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logging(LOG_NORMAL, "Check that SANITIZE EXIT FAILURE MODE is "
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"supported in REPORT_SUPPORTED_OPCODES");
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@@ -37,6 +37,7 @@ test_sanitize_overwrite(void)
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logging(LOG_VERBOSE, "Test SANITIZE OVERWRITE");
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CHECK_FOR_SANITIZE;
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CHECK_FOR_DATALOSS;
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logging(LOG_NORMAL, "Check that SANITIZE OVERWRITE is supported "
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"in REPORT_SUPPORTED_OPCODES");
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@@ -66,6 +66,7 @@ void test_sanitize_overwrite_reserved(void)
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logging(LOG_VERBOSE, "Test SANITIZE OVERWRITE Reserved bits/bytes");
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CHECK_FOR_SANITIZE;
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CHECK_FOR_DATALOSS;
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local_iscsi_queue_pdu = my_iscsi_queue_pdu;
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@@ -16,6 +16,7 @@
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*/
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#include <stdio.h>
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#include <alloca.h>
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#include <CUnit/CUnit.h>
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@@ -30,26 +31,84 @@ test_unmap_simple(void)
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{
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int i, ret;
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struct unmap_list list[257];
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unsigned char *buf = alloca(256 * block_size);
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unsigned char *zbuf = alloca(256 * block_size);
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logging(LOG_VERBOSE, LOG_BLANK_LINE);
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logging(LOG_VERBOSE, "Test basic UNMAP");
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CHECK_FOR_DATALOSS;
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CHECK_FOR_THIN_PROVISIONING;
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CHECK_FOR_SBC;
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logging(LOG_VERBOSE, LOG_BLANK_LINE);
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logging(LOG_VERBOSE, "Test UNMAP of 1-256 blocks at the start of the LUN as a single descriptor");
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logging(LOG_VERBOSE, "Test UNMAP of 1-256 blocks at the start of the "
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"LUN as a single descriptor");
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logging(LOG_VERBOSE, "Write 'a' to the first 256 LBAs");
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memset(buf, 'a', 256 * block_size);
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memset(zbuf, 0, 256 * block_size);
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ret = write10(iscsic, tgt_lun, 0, 256 * block_size,
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block_size, 0, 0, 0, 0, 0, buf);
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CU_ASSERT_EQUAL(ret, 0);
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for (i = 1; i <= 256; i++) {
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logging(LOG_VERBOSE, "UNMAP blocks 0-%d", i);
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list[0].lba = 0;
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list[0].num = i;
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ret = unmap(iscsic, tgt_lun, 0, list, 1);
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CU_ASSERT_EQUAL(ret, 0);
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logging(LOG_VERBOSE, "Read blocks 0-%d", i);
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ret = read10(iscsic, tgt_lun, 0, i * block_size,
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block_size, 0, 0, 0, 0, 0, buf);
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CU_ASSERT_EQUAL(ret, 0);
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if (rc16 && rc16->lbprz) {
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logging(LOG_VERBOSE, "LBPRZ==1 All UNMAPPED blocks "
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"should read back as 0");
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if (memcmp(buf, zbuf, i * block_size)) {
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logging(LOG_NORMAL, "[FAILED] Blocks did not "
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"read back as zero");
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CU_FAIL("[FAILED] Blocks did not read back "
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"as zero");
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} else {
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logging(LOG_VERBOSE, "[SUCCESS] Blocks read "
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"back as zero");
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}
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}
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}
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logging(LOG_VERBOSE, "Test UNMAP of 1-256 blocks at the start of the LUN with one descriptor per block");
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logging(LOG_VERBOSE, "Test UNMAP of 1-256 blocks at the start of the "
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"LUN with one descriptor per block");
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logging(LOG_VERBOSE, "Write 'a' to the first 256 LBAs");
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memset(buf, 'a', 256 * block_size);
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memset(zbuf, 0, 256 * block_size);
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ret = write10(iscsic, tgt_lun, 0, 256 * block_size,
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block_size, 0, 0, 0, 0, 0, buf);
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CU_ASSERT_EQUAL(ret, 0);
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for (i = 0; i < 256; i++) {
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list[i].lba = i;
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list[i].num = 1;
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ret = unmap(iscsic, tgt_lun, 0, list, i + 1);
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CU_ASSERT_EQUAL(ret, 0);
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logging(LOG_VERBOSE, "Read blocks 0-%d", i);
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ret = read10(iscsic, tgt_lun, 0, i * block_size,
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block_size, 0, 0, 0, 0, 0, buf);
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CU_ASSERT_EQUAL(ret, 0);
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if (rc16 && rc16->lbprz) {
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logging(LOG_VERBOSE, "LBPRZ==1 All UNMAPPED blocks "
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"should read back as 0");
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if (memcmp(buf, zbuf, i * block_size)) {
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logging(LOG_NORMAL, "[FAILED] Blocks did not "
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"read back as zero");
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CU_FAIL("[FAILED] Blocks did not read back "
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"as zero");
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} else {
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logging(LOG_VERBOSE, "[SUCCESS] Blocks read "
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"back as zero");
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}
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}
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}
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}
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