/* *ClearallcredentialscopiedtomemoryforbothPower-ONandSetup *BIOSinstances
*/ int hp_clear_all_credentials(void)
{ int count = bioscfg_drv.password_instances_count; int instance;
/* clear all passwords */ for (instance = 0; instance < count; instance++)
clear_passwords(instance);
staticint hp_populate_password_elements_from_package(union acpi_object *password_obj, int password_obj_count, int instance_id)
{ char *str_value = NULL; int value_len; int ret;
u32 size;
u32 int_value = 0; int elem; int reqs; int eloc; int pos_values; struct password_data *password_data = &bioscfg_drv.password_data[instance_id];
if (!password_obj) return -EINVAL;
for (elem = 1, eloc = 1; elem < password_obj_count; elem++, eloc++) { /* ONLY look at the first PASSWORD_ELEM_CNT elements */ if (eloc == PSWD_ELEM_CNT) goto exit_package;
switch (password_obj[elem].type) { case ACPI_TYPE_STRING: if (PREREQUISITES != elem && PSWD_ENCODINGS != elem) {
ret = hp_convert_hexstr_to_str(password_obj[elem].string.pointer,
password_obj[elem].string.length,
&str_value, &value_len); if (ret) continue;
} break; case ACPI_TYPE_INTEGER:
int_value = (u32)password_obj[elem].integer.value; break; default:
pr_warn("Unsupported object type [%d]\n", password_obj[elem].type); continue;
}
/* Check that both expected and read object type match */ if (expected_password_types[eloc] != password_obj[elem].type) {
pr_err("Error expected type %d for elem %d, but got type %d instead\n",
expected_password_types[eloc], elem, password_obj[elem].type);
kfree(str_value); return -EIO;
}
/* Assign appropriate element value to corresponding field*/ switch (eloc) { case VALUE: break; case PATH:
strscpy(password_data->common.path, str_value); break; case IS_READONLY:
password_data->common.is_readonly = int_value; break; case DISPLAY_IN_UI:
password_data->common.display_in_ui = int_value; break; case REQUIRES_PHYSICAL_PRESENCE:
password_data->common.requires_physical_presence = int_value; break; case SEQUENCE:
password_data->common.sequence = int_value; break; case PREREQUISITES_SIZE: if (int_value > MAX_PREREQUISITES_SIZE) {
pr_warn("Prerequisites size value exceeded the maximum number of elements supported or data may be malformed\n");
int_value = MAX_PREREQUISITES_SIZE;
}
password_data->common.prerequisites_size = int_value;
/* This step is needed to keep the expected *elementlistpointingtotherightobj[elem].type *whenthesizeiszero.PREREQUISITES *objectisomittedbyBIOSwhenthesizeis *zero.
*/ if (int_value == 0)
eloc++; break; case PREREQUISITES:
size = min_t(u32, password_data->common.prerequisites_size,
MAX_PREREQUISITES_SIZE);
for (reqs = 0; reqs < size; reqs++) {
ret = hp_convert_hexstr_to_str(password_obj[elem + reqs].string.pointer,
password_obj[elem + reqs].string.length,
&str_value, &value_len);
} break; case SECURITY_LEVEL:
password_data->common.security_level = int_value; break; case PSWD_MIN_LENGTH:
password_data->min_password_length = int_value; break; case PSWD_MAX_LENGTH:
password_data->max_password_length = int_value; break; case PSWD_SIZE:
if (int_value > MAX_ENCODINGS_SIZE) {
pr_warn("Password Encoding size value exceeded the maximum number of elements supported or data may be malformed\n");
int_value = MAX_ENCODINGS_SIZE;
}
password_data->encodings_size = int_value;
/* This step is needed to keep the expected *elementlistpointingtotherightobj[elem].type *whenthesizeiszero.PSWD_ENCODINGS *objectisomittedbyBIOSwhenthesizeis *zero.
*/ if (int_value == 0)
eloc++; break; case PSWD_ENCODINGS:
size = min_t(u32, password_data->encodings_size, MAX_ENCODINGS_SIZE); for (pos_values = 0; pos_values < size; pos_values++) {
ret = hp_convert_hexstr_to_str(password_obj[elem + pos_values].string.pointer,
password_obj[elem + pos_values].string.length,
&str_value, &value_len); if (ret) break;
} break; case PSWD_IS_SET:
password_data->is_enabled = int_value; break; default:
pr_warn("Invalid element: %d found in Password attribute or data may be malformed\n", elem); break;
}
staticint hp_populate_password_elements_from_buffer(u8 *buffer_ptr, u32 *buffer_size, int instance_id)
{ int values; int isreadonly; struct password_data *password_data = &bioscfg_drv.password_data[instance_id]; int ret = 0;
// VALUE:
ret = hp_get_string_from_buffer(&buffer_ptr, buffer_size, password_data->current_password, sizeof(password_data->current_password)); if (ret < 0) goto buffer_exit;
// COMMON:
ret = hp_get_common_data_from_buffer(&buffer_ptr, buffer_size,
&password_data->common); if (ret < 0) goto buffer_exit;
// PSWD_MIN_LENGTH:
ret = hp_get_integer_from_buffer(&buffer_ptr, buffer_size,
&password_data->min_password_length); if (ret < 0) goto buffer_exit;
// PSWD_MAX_LENGTH:
ret = hp_get_integer_from_buffer(&buffer_ptr, buffer_size,
&password_data->max_password_length); if (ret < 0) goto buffer_exit;
// PSWD_SIZE:
ret = hp_get_integer_from_buffer(&buffer_ptr, buffer_size,
&password_data->encodings_size); if (ret < 0) goto buffer_exit;
if (password_data->encodings_size > MAX_ENCODINGS_SIZE) { /* Report a message and limit possible values size to maximum value */
pr_warn("Password Encoding size value exceeded the maximum number of elements supported or data may be malformed\n");
password_data->encodings_size = MAX_ENCODINGS_SIZE;
}
// PSWD_ENCODINGS: for (values = 0; values < password_data->encodings_size; values++) {
ret = hp_get_string_from_buffer(&buffer_ptr, buffer_size,
password_data->encodings[values], sizeof(password_data->encodings[values])); if (ret < 0) break;
}
// PSWD_IS_SET:
ret = hp_get_integer_from_buffer(&buffer_ptr, buffer_size, &isreadonly); if (ret < 0) goto buffer_exit;
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