@@ -21,13 +21,12 @@
#define SIGNATURE 0xdead
#define SIGNATURE_OFFSET 0x10
#define BOOT_SECTOR_ADDRESS 0x7c00
+#define SIGNATURE_ADDR (BOOT_SECTOR_ADDRESS + SIGNATURE_OFFSET)
-/* Boot sector code: write SIGNATURE into memory,
+/* x86 boot sector code: write SIGNATURE into memory,
* then halt.
- * Q35 machine requires a minimum 0x7e000 bytes disk.
- * (bug or feature?)
*/
-static uint8_t boot_sector[0x7e000] = {
+static uint8_t x86_boot_sector[512] = {
/* The first sector will be placed at RAM address 00007C00, and
* the BIOS transfers control to 00007C00
*/
@@ -50,8 +49,8 @@ static uint8_t boot_sector[0x7e000] = {
[0x07] = HIGH(SIGNATURE),
/* 7c08: mov %ax,0x7c10 */
[0x08] = 0xa3,
- [0x09] = LOW(BOOT_SECTOR_ADDRESS + SIGNATURE_OFFSET),
- [0x0a] = HIGH(BOOT_SECTOR_ADDRESS + SIGNATURE_OFFSET),
+ [0x09] = LOW(SIGNATURE_ADDR),
+ [0x0a] = HIGH(SIGNATURE_ADDR),
/* 7c0b cli */
[0x0b] = 0xfa,
@@ -72,7 +71,9 @@ static uint8_t boot_sector[0x7e000] = {
int boot_sector_init(char *fname)
{
int fd, ret;
- size_t len = sizeof boot_sector;
+ size_t len;
+ char *boot_code;
+ const char *arch = qtest_get_arch();
fd = mkstemp(fname);
if (fd < 0) {
@@ -80,16 +81,26 @@ int boot_sector_init(char *fname)
return 1;
}
- /* For Open Firmware based system, we can use a Forth script instead */
- if (strcmp(qtest_get_arch(), "ppc64") == 0) {
- len = sprintf((char *)boot_sector, "\\ Bootscript\n%x %x c! %x %x c!\n",
- LOW(SIGNATURE), BOOT_SECTOR_ADDRESS + SIGNATURE_OFFSET,
- HIGH(SIGNATURE), BOOT_SECTOR_ADDRESS + SIGNATURE_OFFSET + 1);
+ if (g_str_equal(arch, "i386") || g_str_equal(arch, "x86_64")) {
+ /* Q35 requires a minimum 0x7e000 bytes disk (bug or feature?) */
+ len = MAX(0x7e000, sizeof(x86_boot_sector));
+ boot_code = g_malloc0(len);
+ memcpy(boot_code, x86_boot_sector, sizeof(x86_boot_sector));
+ } else if (g_str_equal(arch, "ppc64")) {
+ /* For Open Firmware based system, use a Forth script */
+ boot_code = g_strdup_printf("\\ Bootscript\n%x %x c! %x %x c!\n",
+ LOW(SIGNATURE), SIGNATURE_ADDR,
+ HIGH(SIGNATURE), SIGNATURE_ADDR + 1);
+ len = strlen(boot_code);
+ } else {
+ g_assert_not_reached();
}
- ret = write(fd, boot_sector, len);
+ ret = write(fd, boot_code, len);
close(fd);
+ g_free(boot_code);
+
if (ret != len) {
fprintf(stderr, "Could not write \"%s\"", fname);
return 1;
@@ -115,8 +126,8 @@ void boot_sector_test(void)
* instruction.
*/
for (i = 0; i < TEST_CYCLES; ++i) {
- signature_low = readb(BOOT_SECTOR_ADDRESS + SIGNATURE_OFFSET);
- signature_high = readb(BOOT_SECTOR_ADDRESS + SIGNATURE_OFFSET + 1);
+ signature_low = readb(SIGNATURE_ADDR);
+ signature_high = readb(SIGNATURE_ADDR + 1);
signature = (signature_high << 8) | signature_low;
if (signature == SIGNATURE) {
break;