Commit 97da92c0 authored by Thomas Huth's avatar Thomas Huth Committed by Christian Borntraeger

KVM: s390: selftests: Use TAP interface in the memop test

The memop test currently does not have any output (unless one of the
TEST_ASSERT statement fails), so it's hard to say for a user whether
a certain new sub-test has been included in the binary or not. Let's
make this a little bit more user-friendly and include some TAP output
via the kselftests.h interface.
Reviewed-by: default avatarJanosch Frank <frankja@linux.ibm.com>
Signed-off-by: default avatarThomas Huth <thuth@redhat.com>
Link: https://lore.kernel.org/r/20220531101554.36844-2-thuth@redhat.comSigned-off-by: default avatarChristian Borntraeger <borntraeger@linux.ibm.com>
parent b0f46280
......@@ -14,6 +14,7 @@
#include "test_util.h"
#include "kvm_util.h"
#include "kselftest.h"
enum mop_target {
LOGICAL,
......@@ -691,34 +692,92 @@ static void test_errors(void)
kvm_vm_free(t.kvm_vm);
}
struct testdef {
const char *name;
void (*test)(void);
int extension;
} testlist[] = {
{
.name = "simple copy",
.test = test_copy,
},
{
.name = "generic error checks",
.test = test_errors,
},
{
.name = "copy with storage keys",
.test = test_copy_key,
.extension = 1,
},
{
.name = "copy with key storage protection override",
.test = test_copy_key_storage_prot_override,
.extension = 1,
},
{
.name = "copy with key fetch protection",
.test = test_copy_key_fetch_prot,
.extension = 1,
},
{
.name = "copy with key fetch protection override",
.test = test_copy_key_fetch_prot_override,
.extension = 1,
},
{
.name = "error checks with key",
.test = test_errors_key,
.extension = 1,
},
{
.name = "termination",
.test = test_termination,
.extension = 1,
},
{
.name = "error checks with key storage protection override",
.test = test_errors_key_storage_prot_override,
.extension = 1,
},
{
.name = "error checks without key fetch prot override",
.test = test_errors_key_fetch_prot_override_not_enabled,
.extension = 1,
},
{
.name = "error checks with key fetch prot override",
.test = test_errors_key_fetch_prot_override_enabled,
.extension = 1,
},
};
int main(int argc, char *argv[])
{
int memop_cap, extension_cap;
int memop_cap, extension_cap, idx;
setbuf(stdout, NULL); /* Tell stdout not to buffer its content */
ksft_print_header();
memop_cap = kvm_check_cap(KVM_CAP_S390_MEM_OP);
extension_cap = kvm_check_cap(KVM_CAP_S390_MEM_OP_EXTENSION);
if (!memop_cap) {
print_skip("CAP_S390_MEM_OP not supported");
exit(KSFT_SKIP);
ksft_exit_skip("CAP_S390_MEM_OP not supported.\n");
}
test_copy();
if (extension_cap > 0) {
test_copy_key();
test_copy_key_storage_prot_override();
test_copy_key_fetch_prot();
test_copy_key_fetch_prot_override();
test_errors_key();
test_termination();
test_errors_key_storage_prot_override();
test_errors_key_fetch_prot_override_not_enabled();
test_errors_key_fetch_prot_override_enabled();
ksft_set_plan(ARRAY_SIZE(testlist));
for (idx = 0; idx < ARRAY_SIZE(testlist); idx++) {
if (testlist[idx].extension >= extension_cap) {
testlist[idx].test();
ksft_test_result_pass("%s\n", testlist[idx].name);
} else {
print_skip("storage key memop extension not supported");
ksft_test_result_skip("%s - extension level %d not supported\n",
testlist[idx].name,
testlist[idx].extension);
}
}
test_errors();
return 0;
ksft_finished(); /* Print results and exit() accordingly */
}
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