clk_state
u32 clk_id, enum clk_state state,
enum clk_state state,
enum clk_state state,
enum dm_pp_clocks_state clk_state = DM_PP_CLOCKS_STATE_INVALID;
clk_state = DM_PP_CLOCKS_STATE_ULTRA_LOW;
clk_state = DM_PP_CLOCKS_STATE_LOW;
clk_state = DM_PP_CLOCKS_STATE_NOMINAL;
clk_state = DM_PP_CLOCKS_STATE_PERFORMANCE;
clk_state = DM_PP_CLOCKS_STATE_INVALID;
clk_mgr_dce->max_clks_by_state[clk_state].display_clk_khz =
enum dm_pp_clocks_state clk_state = DM_PP_CLOCKS_STATE_INVALID;
clk_state = DM_PP_CLOCKS_STATE_ULTRA_LOW;
clk_state = DM_PP_CLOCKS_STATE_LOW;
clk_state = DM_PP_CLOCKS_STATE_NOMINAL;
clk_state = DM_PP_CLOCKS_STATE_PERFORMANCE;
clk_state = DM_PP_CLOCKS_STATE_INVALID;
clk_mgr_dce->max_clks_by_state[clk_state].display_clk_khz =
if (ctrl->sched.clk_state != SLIM_CLK_ACTIVE) {
ctrl->sched.clk_state, ret);
if (ctrl->sched.clk_state == SLIM_CLK_ENTERING_PAUSE &&
if (ctrl->sched.clk_state != SLIM_CLK_ACTIVE) {
ctrl->sched.clk_state, ret);
sched->clk_state = SLIM_CLK_ACTIVE;
sched->clk_state = SLIM_CLK_PAUSED;
if (sched->clk_state == SLIM_CLK_ACTIVE) {
if (sched->clk_state == SLIM_CLK_PAUSED && ctrl->wakeup)
sched->clk_state = SLIM_CLK_ACTIVE;
if (ctrl->sched.clk_state == SLIM_CLK_PAUSED) {
sched->clk_state = SLIM_CLK_ENTERING_PAUSE;
enum slim_clk_state clk_state;