blob: 1c6fc8e48106a12dd575fa174e1f91d526a9c04e [file] [log] [blame]
/*
* Copyright (c) 2022-2024, Arm Limited. All rights reserved.
*
* SPDX-License-Identifier: BSD-3-Clause
*
*/
#include <host_realm_rmi.h>
#include <lib/aarch64/arch_features.h>
#include <realm_rsi.h>
#include <smccc.h>
/* This function return RSI_ABI_VERSION */
u_register_t rsi_get_version(u_register_t req_ver)
{
smc_ret_values res = {};
res = tftf_smc(&(smc_args)
{RSI_VERSION, req_ver, 0UL, 0UL, 0UL, 0UL, 0UL, 0UL});
if (res.ret0 == SMC_UNKNOWN) {
return SMC_UNKNOWN;
}
if (res.ret0 == RSI_ERROR_STATE) {
return RSI_ERROR_STATE;
}
/* Return lower version */
return res.ret1;
}
/* This function will call the Host to request IPA of the NS shared buffer */
u_register_t rsi_get_ns_buffer(void)
{
smc_ret_values res = {};
struct rsi_host_call host_cal __aligned(sizeof(struct rsi_host_call));
host_cal.imm = HOST_CALL_GET_SHARED_BUFF_CMD;
res = tftf_smc(&(smc_args) {RSI_HOST_CALL, (u_register_t)&host_cal,
0UL, 0UL, 0UL, 0UL, 0UL, 0UL});
if (res.ret0 != RSI_SUCCESS) {
return 0U;
}
return host_cal.gprs[0];
}
/* This function call Host and request to exit Realm with proper exit code */
void rsi_exit_to_host(enum host_call_cmd exit_code)
{
struct rsi_host_call host_cal __aligned(sizeof(struct rsi_host_call));
host_cal.imm = exit_code;
host_cal.gprs[0] = read_mpidr_el1();
tftf_smc(&(smc_args) {RSI_HOST_CALL, (u_register_t)&host_cal,
0UL, 0UL, 0UL, 0UL, 0UL, 0UL});
}
/* This function will exit to the Host to request RIPAS CHANGE of IPA range */
u_register_t rsi_ipa_state_set(u_register_t base,
u_register_t top,
rsi_ripas_type ripas,
u_register_t flag,
u_register_t *new_base,
rsi_ripas_respose_type *response)
{
smc_ret_values res = {};
res = tftf_smc(&(smc_args)
{RSI_IPA_STATE_SET, base, top, ripas, flag});
if (res.ret0 == RSI_SUCCESS) {
*new_base = res.ret1;
*response = res.ret2;
}
return res.ret0;
}
/* This function will return RIPAS of IPA range */
u_register_t rsi_ipa_state_get(u_register_t base,
u_register_t top,
u_register_t *out_top,
rsi_ripas_type *ripas)
{
smc_ret_values res = {};
res = tftf_smc(&(smc_args)
{RSI_IPA_STATE_GET, base, top});
if (res.ret0 == RSI_SUCCESS) {
*out_top = res.ret1;
*ripas = res.ret2;
}
return res.ret0;
}
/* This function will initialize the attestation context */
u_register_t rsi_attest_token_init(u_register_t challenge_0,
u_register_t challenge_1,
u_register_t challenge_2,
u_register_t challenge_3,
u_register_t challenge_4,
u_register_t challenge_5,
u_register_t challenge_6,
u_register_t challenge_7,
u_register_t *out_token_upper_bound)
{
smc_ret_values_ext res = {};
tftf_smc_no_retval_x8(&(smc_args_ext) {
RSI_ATTEST_TOKEN_INIT,
challenge_0,
challenge_1,
challenge_2,
challenge_3,
challenge_4,
challenge_5,
challenge_6,
challenge_7
},
&res);
if (res.ret0 == RSI_SUCCESS) {
*out_token_upper_bound = res.ret1;
}
return res.ret0;
}
/* This function will retrieve the (or part of) attestation token */
u_register_t rsi_attest_token_continue(u_register_t buffer_addr,
u_register_t offset,
u_register_t buffer_size,
u_register_t *bytes_copied)
{
smc_ret_values res = {};
res = tftf_smc(&(smc_args) {
RSI_ATTEST_TOKEN_CONTINUE,
buffer_addr,
offset,
buffer_size
});
if ((res.ret0 == RSI_SUCCESS) || (res.ret0 == RSI_INCOMPLETE)) {
*bytes_copied = res.ret1;
}
return res.ret0;
}
u_register_t rsi_realm_config(struct rsi_realm_config *s)
{
smc_ret_values res = {};
res = tftf_smc(&(smc_args)
{RSI_REALM_CONFIG, (u_register_t)s});
return res.ret0;
}
u_register_t rsi_mem_get_perm_value(u_register_t plane_index,
u_register_t perm_index,
u_register_t *perm)
{
smc_ret_values res = {};
res = tftf_smc(&(smc_args)
{RSI_MEM_GET_PERM_VALUE, plane_index, perm_index});
if (res.ret0 == RSI_SUCCESS) {
*perm = res.ret1;
}
return res.ret0;
}
u_register_t rsi_mem_set_perm_value(u_register_t plane_index,
u_register_t perm_index,
u_register_t perm)
{
smc_ret_values res = {};
res = tftf_smc(&(smc_args)
{RSI_MEM_SET_PERM_VALUE, plane_index, perm_index, perm});
return res.ret0;
}
u_register_t rsi_mem_set_perm_index(u_register_t base,
u_register_t top,
u_register_t perm_index,
u_register_t cookie,
u_register_t *new_base,
u_register_t *response,
u_register_t *new_cookie)
{
smc_ret_values res = {};
res = tftf_smc(&(smc_args)
{RSI_MEM_SET_PERM_INDEX, base, top, perm_index, cookie});
if (res.ret0 == RSI_SUCCESS) {
*new_base = res.ret1;
*response = res.ret2;
*new_cookie = res.ret3;
}
return res.ret0;
}
u_register_t rsi_plane_enter(u_register_t plane_index,
u_register_t plane_run)
{
smc_ret_values res = {};
res = tftf_smc(&(smc_args)
{RSI_PLANE_ENTER, plane_index, plane_run});
return res.ret0;
}