efi_selftest: export efi_st_get_config_table()

We can use efi_st_get_config_table() in multiple unit tests.
Export the function.

Export system-table and boot-services.

Signed-off-by: Heinrich Schuchardt <heinrich.schuchardt@canonical.com>
This commit is contained in:
Heinrich Schuchardt 2022-09-03 15:56:51 +02:00
parent afb70d1ef4
commit b33f246c0b
4 changed files with 41 additions and 36 deletions

View file

@ -18,6 +18,9 @@
#define EFI_ST_FAILURE 1 #define EFI_ST_FAILURE 1
#define EFI_ST_SUCCESS_STR u"SUCCESS" #define EFI_ST_SUCCESS_STR u"SUCCESS"
extern const struct efi_system_table *st_systable;
extern const struct efi_boot_services *st_boottime;
/** /**
* efi_st_printf() - print a message * efi_st_printf() - print a message
* *
@ -130,6 +133,14 @@ u16 *efi_st_translate_code(u16 code);
*/ */
int efi_st_strcmp_16_8(const u16 *buf1, const char *buf2); int efi_st_strcmp_16_8(const u16 *buf1, const char *buf2);
/**
* efi_st_get_config_table() - get configuration table
*
* @guid: GUID of the configuration table
* Return: pointer to configuration table or NULL
*/
void *efi_st_get_config_table(const efi_guid_t *guid);
/** /**
* efi_st_get_key() - reads an Unicode character from the input device * efi_st_get_key() - reads an Unicode character from the input device
* *

View file

@ -14,8 +14,8 @@
#define EFI_ST_EXECUTE 2 #define EFI_ST_EXECUTE 2
#define EFI_ST_TEARDOWN 4 #define EFI_ST_TEARDOWN 4
static const struct efi_system_table *systable; const struct efi_system_table *st_systable;
static const struct efi_boot_services *boottime; const struct efi_boot_services *st_boottime;
static const struct efi_runtime_services *runtime; static const struct efi_runtime_services *runtime;
static efi_handle_t handle; static efi_handle_t handle;
static u16 reset_message[] = u"Selftest completed"; static u16 reset_message[] = u"Selftest completed";
@ -41,7 +41,7 @@ void efi_st_exit_boot_services(void)
/* Do not detach devices in ExitBootServices. We need the console. */ /* Do not detach devices in ExitBootServices. We need the console. */
efi_st_keep_devices = true; efi_st_keep_devices = true;
ret = boottime->get_memory_map(&map_size, NULL, &map_key, &desc_size, ret = st_boottime->get_memory_map(&map_size, NULL, &map_key, &desc_size,
&desc_version); &desc_version);
if (ret != EFI_BUFFER_TOO_SMALL) { if (ret != EFI_BUFFER_TOO_SMALL) {
efi_st_error( efi_st_error(
@ -50,19 +50,19 @@ void efi_st_exit_boot_services(void)
} }
/* Allocate extra space for newly allocated memory */ /* Allocate extra space for newly allocated memory */
map_size += sizeof(struct efi_mem_desc); map_size += sizeof(struct efi_mem_desc);
ret = boottime->allocate_pool(EFI_BOOT_SERVICES_DATA, map_size, ret = st_boottime->allocate_pool(EFI_BOOT_SERVICES_DATA, map_size,
(void **)&memory_map); (void **)&memory_map);
if (ret != EFI_SUCCESS) { if (ret != EFI_SUCCESS) {
efi_st_error("AllocatePool did not return EFI_SUCCESS\n"); efi_st_error("AllocatePool did not return EFI_SUCCESS\n");
return; return;
} }
ret = boottime->get_memory_map(&map_size, memory_map, &map_key, ret = st_boottime->get_memory_map(&map_size, memory_map, &map_key,
&desc_size, &desc_version); &desc_size, &desc_version);
if (ret != EFI_SUCCESS) { if (ret != EFI_SUCCESS) {
efi_st_error("GetMemoryMap did not return EFI_SUCCESS\n"); efi_st_error("GetMemoryMap did not return EFI_SUCCESS\n");
return; return;
} }
ret = boottime->exit_boot_services(handle, map_key); ret = st_boottime->exit_boot_services(handle, map_key);
if (ret != EFI_SUCCESS) { if (ret != EFI_SUCCESS) {
efi_st_error("ExitBootServices did not return EFI_SUCCESS\n"); efi_st_error("ExitBootServices did not return EFI_SUCCESS\n");
return; return;
@ -84,7 +84,7 @@ static int setup(struct efi_unit_test *test, unsigned int *failures)
if (!test->setup) if (!test->setup)
return EFI_ST_SUCCESS; return EFI_ST_SUCCESS;
efi_st_printc(EFI_LIGHTBLUE, "\nSetting up '%s'\n", test->name); efi_st_printc(EFI_LIGHTBLUE, "\nSetting up '%s'\n", test->name);
ret = test->setup(handle, systable); ret = test->setup(handle, st_systable);
if (ret != EFI_ST_SUCCESS) { if (ret != EFI_ST_SUCCESS) {
efi_st_error("Setting up '%s' failed\n", test->name); efi_st_error("Setting up '%s' failed\n", test->name);
++*failures; ++*failures;
@ -240,8 +240,8 @@ void efi_st_do_tests(const u16 *testname, unsigned int phase,
* All tests use a driver model and are run in three phases: * All tests use a driver model and are run in three phases:
* setup, execute, teardown. * setup, execute, teardown.
* *
* A test may be setup and executed at boottime, * A test may be setup and executed at st_boottime,
* it may be setup at boottime and executed at runtime, * it may be setup at st_boottime and executed at runtime,
* or it may be setup and executed at runtime. * or it may be setup and executed at runtime.
* *
* After executing all tests the system is reset. * After executing all tests the system is reset.
@ -257,14 +257,14 @@ efi_status_t EFIAPI efi_selftest(efi_handle_t image_handle,
struct efi_loaded_image *loaded_image; struct efi_loaded_image *loaded_image;
efi_status_t ret; efi_status_t ret;
systable = systab; st_systable = systab;
boottime = systable->boottime; st_boottime = st_systable->boottime;
runtime = systable->runtime; runtime = st_systable->runtime;
handle = image_handle; handle = image_handle;
con_out = systable->con_out; con_out = st_systable->con_out;
con_in = systable->con_in; con_in = st_systable->con_in;
ret = boottime->handle_protocol(image_handle, &efi_guid_loaded_image, ret = st_boottime->handle_protocol(image_handle, &efi_guid_loaded_image,
(void **)&loaded_image); (void **)&loaded_image);
if (ret != EFI_SUCCESS) { if (ret != EFI_SUCCESS) {
efi_st_error("Cannot open loaded image protocol\n"); efi_st_error("Cannot open loaded image protocol\n");
@ -280,9 +280,9 @@ efi_status_t EFIAPI efi_selftest(efi_handle_t image_handle,
list_all_tests(); list_all_tests();
/* /*
* TODO: * TODO:
* Once the Exit boottime service is correctly * Once the Exit st_boottime service is correctly
* implemented we should call * implemented we should call
* boottime->exit(image_handle, EFI_SUCCESS, 0, NULL); * st_boottime->exit(image_handle, EFI_SUCCESS, 0, NULL);
* here, cf. * here, cf.
* https://lists.denx.de/pipermail/u-boot/2017-October/308720.html * https://lists.denx.de/pipermail/u-boot/2017-October/308720.html
*/ */
@ -300,7 +300,7 @@ efi_status_t EFIAPI efi_selftest(efi_handle_t image_handle,
efi_unit_test)); efi_unit_test));
/* Allocate buffer for setup results */ /* Allocate buffer for setup results */
ret = boottime->allocate_pool(EFI_RUNTIME_SERVICES_DATA, sizeof(int) * ret = st_boottime->allocate_pool(EFI_RUNTIME_SERVICES_DATA, sizeof(int) *
ll_entry_count(struct efi_unit_test, ll_entry_count(struct efi_unit_test,
efi_unit_test), efi_unit_test),
(void **)&setup_status); (void **)&setup_status);
@ -309,7 +309,7 @@ efi_status_t EFIAPI efi_selftest(efi_handle_t image_handle,
return ret; return ret;
} }
/* Execute boottime tests */ /* Execute st_boottime tests */
efi_st_do_tests(testname, EFI_EXECUTE_BEFORE_BOOTTIME_EXIT, efi_st_do_tests(testname, EFI_EXECUTE_BEFORE_BOOTTIME_EXIT,
EFI_ST_SETUP | EFI_ST_EXECUTE | EFI_ST_TEARDOWN, EFI_ST_SETUP | EFI_ST_EXECUTE | EFI_ST_TEARDOWN,
&failures); &failures);

View file

@ -144,23 +144,6 @@ static char *get_property(const u16 *property, const u16 *node)
return NULL; return NULL;
} }
/**
* efi_st_get_config_table() - get configuration table
*
* @guid: GUID of the configuration table
* Return: pointer to configuration table or NULL
*/
static void *efi_st_get_config_table(const efi_guid_t *guid)
{
size_t i;
for (i = 0; i < systab.nr_tables; i++) {
if (!guidcmp(guid, &systemtab->tables[i].guid))
return systemtab->tables[i].table;
}
return NULL;
}
/* /*
* Setup unit test. * Setup unit test.
* *

View file

@ -110,3 +110,14 @@ int efi_st_strcmp_16_8(const u16 *buf1, const char *buf2)
} }
return 0; return 0;
} }
void *efi_st_get_config_table(const efi_guid_t *guid)
{
size_t i;
for (i = 0; i < st_systable->nr_tables; i++) {
if (!guidcmp(guid, &st_systable->tables[i].guid))
return st_systable->tables[i].table;
}
return NULL;
}