return -EINVAL;
}
+static int smu_v11_0_copy_table_to_smc(struct smu_context *smu,
+ uint32_t table_id)
+{
+ struct smu_table_context *table_context = &smu->smu_table;
+ struct smu_table *driver_pptable = &smu->smu_table.tables[table_id];
+ int ret = 0;
+
+ if (table_id >= TABLE_COUNT) {
+ pr_err("Invalid SMU Table ID for smu11!");
+ return -EINVAL;
+ }
+
+ if (!driver_pptable->cpu_addr) {
+ pr_err("Invalid virtual address for smu11!");
+ return -EINVAL;
+ }
+ if (!driver_pptable->mc_address) {
+ pr_err("Invalid MC address for smu11!");
+ return -EINVAL;
+ }
+ if (!driver_pptable->size) {
+ pr_err("Invalid SMU Table size for smu11!");
+ return -EINVAL;
+ }
+
+ memcpy(driver_pptable->cpu_addr, table_context->driver_pptable,
+ driver_pptable->size);
+
+ ret = smu_send_smc_msg_with_param(smu, PPSMC_MSG_SetDriverDramAddrHigh,
+ upper_32_bits(driver_pptable->mc_address));
+ if (ret) {
+ pr_err("[CopyTableToSMC] Attempt to Set Dram Addr High Failed!");
+ return ret;
+ }
+ ret = smu_send_smc_msg_with_param(smu, PPSMC_MSG_SetDriverDramAddrLow,
+ lower_32_bits(driver_pptable->mc_address));
+ if (ret) {
+ pr_err("[CopyTableToSMC] Attempt to Set Dram Addr Low Failed!");
+ return ret;
+ }
+ ret = smu_send_smc_msg_with_param(smu, PPSMC_MSG_TransferTableDram2Smu,
+ table_id);
+ if (ret) {
+ pr_err("[CopyTableToSMC] Attempt to Transfer Table To SMU Failed!");
+ return ret;
+ }
+
+ return 0;
+}
+
+static int smu_v11_0_write_pptable(struct smu_context *smu)
+{
+ int ret = 0;
+
+ ret = smu_v11_0_copy_table_to_smc(smu, TABLE_PPTABLE);
+
+ return ret;
+}
+
static const struct smu_funcs smu_v11_0_funcs = {
.init_microcode = smu_v11_0_init_microcode,
.load_microcode = smu_v11_0_load_microcode,
.check_pptable = smu_v11_0_check_pptable,
.parse_pptable = smu_v11_0_parse_pptable,
.populate_smc_pptable = smu_v11_0_populate_smc_pptable,
+ .write_pptable = smu_v11_0_write_pptable,
};
void smu_v11_0_set_smu_funcs(struct smu_context *smu)