void *state, struct pp_power_state *power_state,
void *pp_table, uint32_t classification_flag)
{
+ ATOM_Vega10_GFXCLK_Dependency_Record_V2 *patom_record_V2;
struct vega10_power_state *vega10_power_state =
cast_phw_vega10_power_state(&(power_state->hardware));
struct vega10_performance_level *performance_level;
performance_level = &(vega10_power_state->performance_levels
[vega10_power_state->performance_level_count++]);
-
performance_level->soc_clock = socclk_dep_table->entries
- [state_entry->ucSocClockIndexHigh].ulClk;
- performance_level->gfx_clock = gfxclk_dep_table->entries
+ [state_entry->ucSocClockIndexHigh].ulClk;
+ if (gfxclk_dep_table->ucRevId == 0) {
+ performance_level->gfx_clock = gfxclk_dep_table->entries
[state_entry->ucGfxClockIndexHigh].ulClk;
+ } else if (gfxclk_dep_table->ucRevId == 1) {
+ patom_record_V2 = (ATOM_Vega10_GFXCLK_Dependency_Record_V2 *)gfxclk_dep_table->entries;
+ performance_level->gfx_clock = patom_record_V2[state_entry->ucGfxClockIndexHigh].ulClk;
+ }
+
performance_level->mem_clock = mclk_dep_table->entries
[state_entry->ucMemClockIndexHigh].ulMemClk;
return 0;
dpm_table->
gfx_table.dpm_levels[dpm_table->gfx_table.count - 1].
value = sclk;
-
if (phm_cap_enabled(hwmgr->platform_descriptor.platformCaps,
PHM_PlatformCaps_OD6PlusinACSupport) ||
phm_cap_enabled(hwmgr->platform_descriptor.platformCaps,
return result);
}
}
-
return result;
}
uint32_t table_size, i;
struct phm_ppt_v1_clock_voltage_dependency_table
*clk_table;
+ ATOM_Vega10_GFXCLK_Dependency_Record_V2 *patom_record_v2;
PP_ASSERT_WITH_CODE((clk_dep_table->ucNumEntries != 0),
"Invalid PowerPlay Table!", return -1);
clk_table->count = clk_dep_table->ucNumEntries;
- for (i = 0; i < clk_table->count; i++) {
- clk_table->entries[i].vddInd =
+ if (clk_dep_table->ucRevId == 0) {
+ for (i = 0; i < clk_table->count; i++) {
+ clk_table->entries[i].vddInd =
clk_dep_table->entries[i].ucVddInd;
- clk_table->entries[i].clk =
+ clk_table->entries[i].clk =
le32_to_cpu(clk_dep_table->entries[i].ulClk);
- clk_table->entries[i].cks_enable =
- (((clk_dep_table->entries[i].usCKSVOffsetandDisable & 0x8000)
+ clk_table->entries[i].cks_enable =
+ (((le16_to_cpu(clk_dep_table->entries[i].usCKSVOffsetandDisable) & 0x8000)
>> 15) == 0) ? 1 : 0;
- clk_table->entries[i].cks_voffset =
- (clk_dep_table->entries[i].usCKSVOffsetandDisable & 0x7F);
- clk_table->entries[i].sclk_offset =
- clk_dep_table->entries[i].usAVFSOffset;
+ clk_table->entries[i].cks_voffset =
+ le16_to_cpu(clk_dep_table->entries[i].usCKSVOffsetandDisable) & 0x7F;
+ clk_table->entries[i].sclk_offset =
+ le16_to_cpu(clk_dep_table->entries[i].usAVFSOffset);
+ }
+ } else if (clk_dep_table->ucRevId == 1) {
+ patom_record_v2 = (ATOM_Vega10_GFXCLK_Dependency_Record_V2 *)clk_dep_table->entries;
+ for (i = 0; i < clk_table->count; i++) {
+ clk_table->entries[i].vddInd =
+ patom_record_v2->ucVddInd;
+ clk_table->entries[i].clk =
+ le32_to_cpu(patom_record_v2->ulClk);
+ clk_table->entries[i].cks_enable =
+ (((le16_to_cpu(patom_record_v2->usCKSVOffsetandDisable) & 0x8000)
+ >> 15) == 0) ? 1 : 0;
+ clk_table->entries[i].cks_voffset =
+ le16_to_cpu(patom_record_v2->usCKSVOffsetandDisable) & 0x7F;
+ clk_table->entries[i].sclk_offset =
+ le16_to_cpu(patom_record_v2->usAVFSOffset);
+ patom_record_v2++;
+ }
+ } else {
+ kfree(clk_table);
+ PP_ASSERT_WITH_CODE(false,
+ "Unsupported GFXClockDependencyTable Revision!",
+ return -EINVAL);
}
*pp_vega10_clk_dep_table = clk_table;