blob: f0257770f96fb670528208377d302276fd932584 [file] [log] [blame]
/* SPDX-License-Identifier: GPL-2.0-only */
/*
* Tests SIE with paging.
*
* Copyright 2023 IBM Corp.
*
* Authors:
* Nico Boehr <nrb@linux.ibm.com>
*/
#include <libcflat.h>
#include <vmalloc.h>
#include <asm/pgtable.h>
#include <mmu.h>
#include <asm/page.h>
#include <asm/interrupt.h>
#include <alloc_page.h>
#include <sclp.h>
#include <sie.h>
#include <snippet.h>
#include "snippets/c/sie-dat.h"
static struct vm vm;
static pgd_t *guest_root;
static void test_sie_dat(void)
{
uint64_t test_page_gpa, test_page_hpa;
uint8_t *test_page_hva, expected_val;
bool contents_match;
uint8_t r1;
/* guest will tell us the guest physical address of the test buffer */
sie(&vm);
assert(vm.sblk->icptcode == ICPT_INST &&
(vm.sblk->ipa & 0xff00) == 0x8300 && vm.sblk->ipb == 0x9c0000);
r1 = (vm.sblk->ipa & 0xf0) >> 4;
test_page_gpa = vm.save_area.guest.grs[r1];
test_page_hpa = virt_to_pte_phys(guest_root, (void*)test_page_gpa);
test_page_hva = __va(test_page_hpa);
report_info("test buffer gpa=0x%lx hva=%p", test_page_gpa, test_page_hva);
/* guest will now write to the test buffer and we verify the contents */
sie(&vm);
assert(vm.sblk->icptcode == ICPT_INST &&
vm.sblk->ipa == 0x8300 && vm.sblk->ipb == 0x440000);
contents_match = true;
for (unsigned int i = 0; i < GUEST_TEST_PAGE_COUNT; i++) {
expected_val = 42 + i;
if (test_page_hva[i * PAGE_SIZE] != expected_val) {
report_fail("page %u mismatch actual_val=%x expected_val=%x",
i, test_page_hva[i], expected_val);
contents_match = false;
}
}
report(contents_match, "test buffer contents match");
/* the guest will now write to an unmapped address and we check that this causes a segment translation exception */
report_prefix_push("guest write to unmapped");
expect_pgm_int();
sie(&vm);
check_pgm_int_code(PGM_INT_CODE_SEGMENT_TRANSLATION);
report((lowcore.trans_exc_id & PAGE_MASK) == (GUEST_TOTAL_PAGE_COUNT * PAGE_SIZE), "TEID address match");
report_prefix_pop();
}
static void setup_guest(void)
{
extern const char SNIPPET_NAME_START(c, sie_dat)[];
extern const char SNIPPET_NAME_END(c, sie_dat)[];
uint64_t guest_max_addr;
pgd_t *root;
setup_vm();
root = (pgd_t *)(stctg(1) & PAGE_MASK);
snippet_setup_guest(&vm, false);
/* allocate a region-1 table */
guest_root = pgd_alloc_one();
/* map guest memory 1:1 */
guest_max_addr = GUEST_TOTAL_PAGE_COUNT * PAGE_SIZE;
for (uint64_t i = 0; i < guest_max_addr; i += PAGE_SIZE)
install_page(guest_root, virt_to_pte_phys(root, vm.guest_mem + i), (void *)i);
/* set up storage limit supression - leave mso and msl intact they are ignored anyways */
vm.sblk->cpuflags |= CPUSTAT_SM;
/* set up the guest asce */
vm.save_area.guest.asce = __pa(guest_root) | ASCE_DT_REGION1 | REGION_TABLE_LENGTH;
snippet_init(&vm, SNIPPET_NAME_START(c, sie_dat),
SNIPPET_LEN(c, sie_dat), SNIPPET_UNPACK_OFF);
}
int main(void)
{
report_prefix_push("sie-dat");
if (!sclp_facilities.has_sief2) {
report_skip("SIEF2 facility unavailable");
goto done;
}
setup_guest();
test_sie_dat();
sie_guest_destroy(&vm);
done:
report_prefix_pop();
return report_summary();
}