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@@ -931,7 +931,8 @@ static int vega20_print_clk_levels(struct smu_context *smu,
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return size;
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}
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static int vega20_upload_dpm_level(struct smu_context *smu, bool max)
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static int vega20_upload_dpm_level(struct smu_context *smu, bool max,
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uint32_t feature_mask)
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{
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struct vega20_dpm_table *dpm_table;
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struct vega20_single_dpm_table *single_dpm_table;
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@@ -940,7 +941,8 @@ static int vega20_upload_dpm_level(struct smu_context *smu, bool max)
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dpm_table = smu->smu_dpm.dpm_context;
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if (smu_feature_is_enabled(smu, FEATURE_DPM_GFXCLK_BIT)) {
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if (smu_feature_is_enabled(smu, FEATURE_DPM_GFXCLK_BIT) &&
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(feature_mask & FEATURE_DPM_GFXCLK_MASK)) {
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single_dpm_table = &(dpm_table->gfx_table);
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freq = max ? single_dpm_table->dpm_state.soft_max_level :
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single_dpm_table->dpm_state.soft_min_level;
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@@ -954,7 +956,8 @@ static int vega20_upload_dpm_level(struct smu_context *smu, bool max)
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}
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}
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if (smu_feature_is_enabled(smu, FEATURE_DPM_UCLK_BIT)) {
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if (smu_feature_is_enabled(smu, FEATURE_DPM_UCLK_BIT) &&
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(feature_mask & FEATURE_DPM_UCLK_MASK)) {
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single_dpm_table = &(dpm_table->mem_table);
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freq = max ? single_dpm_table->dpm_state.soft_max_level :
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single_dpm_table->dpm_state.soft_min_level;
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@@ -968,6 +971,51 @@ static int vega20_upload_dpm_level(struct smu_context *smu, bool max)
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}
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}
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if (smu_feature_is_enabled(smu, FEATURE_DPM_SOCCLK_BIT) &&
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(feature_mask & FEATURE_DPM_SOCCLK_MASK)) {
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single_dpm_table = &(dpm_table->soc_table);
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freq = max ? single_dpm_table->dpm_state.soft_max_level :
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single_dpm_table->dpm_state.soft_min_level;
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ret = smu_send_smc_msg_with_param(smu,
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(max ? SMU_MSG_SetSoftMaxByFreq : SMU_MSG_SetSoftMinByFreq),
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(PPCLK_SOCCLK << 16) | (freq & 0xffff));
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if (ret) {
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pr_err("Failed to set soft %s socclk !\n",
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max ? "max" : "min");
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return ret;
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}
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}
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if (smu_feature_is_enabled(smu, FEATURE_DPM_FCLK_BIT) &&
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(feature_mask & FEATURE_DPM_FCLK_MASK)) {
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single_dpm_table = &(dpm_table->fclk_table);
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freq = max ? single_dpm_table->dpm_state.soft_max_level :
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single_dpm_table->dpm_state.soft_min_level;
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ret = smu_send_smc_msg_with_param(smu,
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(max ? SMU_MSG_SetSoftMaxByFreq : SMU_MSG_SetSoftMinByFreq),
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(PPCLK_FCLK << 16) | (freq & 0xffff));
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if (ret) {
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pr_err("Failed to set soft %s fclk !\n",
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max ? "max" : "min");
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return ret;
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}
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}
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if (smu_feature_is_enabled(smu, FEATURE_DPM_DCEFCLK_BIT) &&
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(feature_mask & FEATURE_DPM_DCEFCLK_MASK)) {
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single_dpm_table = &(dpm_table->dcef_table);
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freq = single_dpm_table->dpm_state.hard_min_level;
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if (!max) {
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ret = smu_send_smc_msg_with_param(smu,
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SMU_MSG_SetHardMinByFreq,
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(PPCLK_DCEFCLK << 16) | (freq & 0xffff));
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if (ret) {
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pr_err("Failed to set hard min dcefclk !\n");
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return ret;
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}
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}
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}
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return ret;
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}
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@@ -976,7 +1024,7 @@ static int vega20_force_clk_levels(struct smu_context *smu,
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{
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struct vega20_dpm_table *dpm_table;
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struct vega20_single_dpm_table *single_dpm_table;
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uint32_t soft_min_level, soft_max_level;
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uint32_t soft_min_level, soft_max_level, hard_min_level;
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struct smu_dpm_context *smu_dpm = &smu->smu_dpm;
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int ret = 0;
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@@ -1008,13 +1056,13 @@ static int vega20_force_clk_levels(struct smu_context *smu,
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single_dpm_table->dpm_state.soft_max_level =
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single_dpm_table->dpm_levels[soft_max_level].value;
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ret = vega20_upload_dpm_level(smu, false);
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ret = vega20_upload_dpm_level(smu, false, FEATURE_DPM_GFXCLK_MASK);
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if (ret) {
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pr_err("Failed to upload boot level to lowest!\n");
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break;
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}
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ret = vega20_upload_dpm_level(smu, true);
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ret = vega20_upload_dpm_level(smu, true, FEATURE_DPM_GFXCLK_MASK);
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if (ret)
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pr_err("Failed to upload dpm max level to highest!\n");
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@@ -1035,18 +1083,92 @@ static int vega20_force_clk_levels(struct smu_context *smu,
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single_dpm_table->dpm_state.soft_max_level =
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single_dpm_table->dpm_levels[soft_max_level].value;
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ret = vega20_upload_dpm_level(smu, false);
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ret = vega20_upload_dpm_level(smu, false, FEATURE_DPM_UCLK_MASK);
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if (ret) {
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pr_err("Failed to upload boot level to lowest!\n");
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break;
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}
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ret = vega20_upload_dpm_level(smu, true);
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ret = vega20_upload_dpm_level(smu, true, FEATURE_DPM_UCLK_MASK);
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if (ret)
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pr_err("Failed to upload dpm max level to highest!\n");
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break;
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case PP_SOCCLK:
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single_dpm_table = &(dpm_table->soc_table);
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if (soft_max_level >= single_dpm_table->count) {
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pr_err("Clock level specified %d is over max allowed %d\n",
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soft_max_level, single_dpm_table->count - 1);
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ret = -EINVAL;
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break;
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}
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single_dpm_table->dpm_state.soft_min_level =
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single_dpm_table->dpm_levels[soft_min_level].value;
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single_dpm_table->dpm_state.soft_max_level =
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single_dpm_table->dpm_levels[soft_max_level].value;
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ret = vega20_upload_dpm_level(smu, false, FEATURE_DPM_SOCCLK_MASK);
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if (ret) {
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pr_err("Failed to upload boot level to lowest!\n");
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break;
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}
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ret = vega20_upload_dpm_level(smu, true, FEATURE_DPM_SOCCLK_MASK);
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if (ret)
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pr_err("Failed to upload dpm max level to highest!\n");
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break;
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case PP_FCLK:
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single_dpm_table = &(dpm_table->fclk_table);
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if (soft_max_level >= single_dpm_table->count) {
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pr_err("Clock level specified %d is over max allowed %d\n",
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soft_max_level, single_dpm_table->count - 1);
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ret = -EINVAL;
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break;
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}
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single_dpm_table->dpm_state.soft_min_level =
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single_dpm_table->dpm_levels[soft_min_level].value;
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single_dpm_table->dpm_state.soft_max_level =
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single_dpm_table->dpm_levels[soft_max_level].value;
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ret = vega20_upload_dpm_level(smu, false, FEATURE_DPM_FCLK_MASK);
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if (ret) {
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pr_err("Failed to upload boot level to lowest!\n");
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break;
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}
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ret = vega20_upload_dpm_level(smu, true, FEATURE_DPM_FCLK_MASK);
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if (ret)
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pr_err("Failed to upload dpm max level to highest!\n");
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break;
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case PP_DCEFCLK:
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hard_min_level = soft_min_level;
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single_dpm_table = &(dpm_table->dcef_table);
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if (hard_min_level >= single_dpm_table->count) {
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pr_err("Clock level specified %d is over max allowed %d\n",
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hard_min_level, single_dpm_table->count - 1);
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ret = -EINVAL;
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break;
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}
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single_dpm_table->dpm_state.hard_min_level =
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single_dpm_table->dpm_levels[hard_min_level].value;
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ret = vega20_upload_dpm_level(smu, false, FEATURE_DPM_DCEFCLK_MASK);
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if (ret)
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pr_err("Failed to upload boot level to lowest!\n");
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break;
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case PP_PCIE:
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break;
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@@ -1722,14 +1844,23 @@ static int vega20_force_dpm_limit_value(struct smu_context *smu, bool highest)
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dpm_table->mem_table.dpm_state.soft_max_level =
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dpm_table->mem_table.dpm_levels[soft_level].value;
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ret = vega20_upload_dpm_level(smu, false);
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if (highest)
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soft_level = vega20_find_highest_dpm_level(&(dpm_table->soc_table));
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else
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soft_level = vega20_find_lowest_dpm_level(&(dpm_table->soc_table));
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dpm_table->soc_table.dpm_state.soft_min_level =
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dpm_table->soc_table.dpm_state.soft_max_level =
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dpm_table->soc_table.dpm_levels[soft_level].value;
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ret = vega20_upload_dpm_level(smu, false, 0xFFFFFFFF);
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if (ret) {
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pr_err("Failed to upload boot level to %s!\n",
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highest ? "highest" : "lowest");
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return ret;
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}
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ret = vega20_upload_dpm_level(smu, true);
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ret = vega20_upload_dpm_level(smu, true, 0xFFFFFFFF);
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if (ret) {
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pr_err("Failed to upload dpm max level to %s!\n!",
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highest ? "highest" : "lowest");
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@@ -1739,6 +1870,49 @@ static int vega20_force_dpm_limit_value(struct smu_context *smu, bool highest)
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return ret;
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}
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static int vega20_unforce_dpm_levels(struct smu_context *smu)
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{
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uint32_t soft_min_level, soft_max_level;
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int ret = 0;
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struct vega20_dpm_table *dpm_table =
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(struct vega20_dpm_table *)smu->smu_dpm.dpm_context;
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soft_min_level = vega20_find_lowest_dpm_level(&(dpm_table->gfx_table));
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soft_max_level = vega20_find_highest_dpm_level(&(dpm_table->gfx_table));
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dpm_table->gfx_table.dpm_state.soft_min_level =
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dpm_table->gfx_table.dpm_levels[soft_min_level].value;
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dpm_table->gfx_table.dpm_state.soft_max_level =
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dpm_table->gfx_table.dpm_levels[soft_max_level].value;
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soft_min_level = vega20_find_lowest_dpm_level(&(dpm_table->mem_table));
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soft_max_level = vega20_find_highest_dpm_level(&(dpm_table->mem_table));
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dpm_table->mem_table.dpm_state.soft_min_level =
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dpm_table->gfx_table.dpm_levels[soft_min_level].value;
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dpm_table->mem_table.dpm_state.soft_max_level =
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dpm_table->gfx_table.dpm_levels[soft_max_level].value;
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soft_min_level = vega20_find_lowest_dpm_level(&(dpm_table->soc_table));
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soft_max_level = vega20_find_highest_dpm_level(&(dpm_table->soc_table));
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dpm_table->soc_table.dpm_state.soft_min_level =
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dpm_table->soc_table.dpm_levels[soft_min_level].value;
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dpm_table->soc_table.dpm_state.soft_max_level =
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dpm_table->soc_table.dpm_levels[soft_max_level].value;
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ret = smu_upload_dpm_level(smu, false, 0xFFFFFFFF);
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if (ret) {
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pr_err("Failed to upload DPM Bootup Levels!");
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return ret;
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}
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ret = smu_upload_dpm_level(smu, true, 0xFFFFFFFF);
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if (ret) {
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pr_err("Failed to upload DPM Max Levels!");
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return ret;
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}
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return ret;
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}
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static enum amd_dpm_forced_level vega20_get_performance_level(struct smu_context *smu)
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{
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struct smu_dpm_context *smu_dpm_ctx = &(smu->smu_dpm);
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@@ -2186,6 +2360,7 @@ static const struct pptable_funcs vega20_ppt_funcs = {
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.apply_clocks_adjust_rules = vega20_apply_clocks_adjust_rules,
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.notify_smc_dispaly_config = vega20_notify_smc_dispaly_config,
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.force_dpm_limit_value = vega20_force_dpm_limit_value,
|
|
|
|
|
.unforce_dpm_levels = vega20_unforce_dpm_levels,
|
|
|
|
|
.upload_dpm_level = vega20_upload_dpm_level,
|
|
|
|
|
.get_profiling_clk_mask = vega20_get_profiling_clk_mask,
|
|
|
|
|
};
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|