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Mon, 20 Mar 2023 11:25:58 -0700 Received: from drhqmail202.nvidia.com (10.126.190.181) by drhqmail203.nvidia.com (10.126.190.182) with Microsoft SMTP Server (version=TLS1_2, cipher=TLS_ECDHE_RSA_WITH_AES_256_GCM_SHA384) id 15.2.986.37; Mon, 20 Mar 2023 11:25:58 -0700 Received: from sumitg-l4t.nvidia.com (10.127.8.10) by mail.nvidia.com (10.126.190.181) with Microsoft SMTP Server id 15.2.986.5 via Frontend Transport; Mon, 20 Mar 2023 11:25:53 -0700 From: Sumit Gupta To: , , , , , , , CC: , , , , , , , , , , , , , Subject: [Patch v3 06/11] arm64: tegra: Add cpu OPP tables and interconnects property Date: Mon, 20 Mar 2023 23:54:36 +0530 Message-ID: <20230320182441.11904-7-sumitg@nvidia.com> X-Mailer: git-send-email 2.17.1 In-Reply-To: <20230320182441.11904-1-sumitg@nvidia.com> References: <20230320182441.11904-1-sumitg@nvidia.com> X-NVConfidentiality: public MIME-Version: 1.0 X-EOPAttributedMessage: 0 X-MS-PublicTrafficType: Email X-MS-TrafficTypeDiagnostic: BN8NAM11FT087:EE_|MN2PR12MB4208:EE_ X-MS-Office365-Filtering-Correlation-Id: 8cf87a40-3128-40d5-c742-08db29709255 X-MS-Exchange-SenderADCheck: 1 X-MS-Exchange-AntiSpam-Relay: 0 X-Microsoft-Antispam: BCL:0; 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DIR:OUT; SFP:1101; X-OriginatorOrg: Nvidia.com X-MS-Exchange-CrossTenant-OriginalArrivalTime: 20 Mar 2023 18:26:06.9353 (UTC) X-MS-Exchange-CrossTenant-Network-Message-Id: 8cf87a40-3128-40d5-c742-08db29709255 X-MS-Exchange-CrossTenant-Id: 43083d15-7273-40c1-b7db-39efd9ccc17a X-MS-Exchange-CrossTenant-OriginalAttributedTenantConnectingIp: TenantId=43083d15-7273-40c1-b7db-39efd9ccc17a; Ip=[216.228.118.232]; Helo=[mail.nvidia.com] X-MS-Exchange-CrossTenant-AuthSource: BN8NAM11FT087.eop-nam11.prod.protection.outlook.com X-MS-Exchange-CrossTenant-AuthAs: Anonymous X-MS-Exchange-CrossTenant-FromEntityHeader: HybridOnPrem X-MS-Exchange-Transport-CrossTenantHeadersStamped: MN2PR12MB4208 Precedence: bulk List-ID: X-Mailing-List: devicetree@vger.kernel.org Add OPP table and interconnects property to scale DDR frequency with CPU frequency for better performance. Each operating point entry of the OPP table has CPU freq to per MC channel bandwidth mapping. One table is added for each cluster even though the table data is same because the bandwidth request is per cluster. This is done because OPP framework creates a single icc path and hence single bandwidth request if the table is marked as 'opp-shared' and shared among all clusters. For us, the OPP table data is same but the MC Client ID argument to interconnects property is different for each cluster. So, having per cluster table makes different icc path for each cluster and helps to make per cluster BW requests. Signed-off-by: Sumit Gupta --- arch/arm64/boot/dts/nvidia/tegra234.dtsi | 276 +++++++++++++++++++++++ 1 file changed, 276 insertions(+) diff --git a/arch/arm64/boot/dts/nvidia/tegra234.dtsi b/arch/arm64/boot/dts/nvidia/tegra234.dtsi index f1748cff8a33..285fff0bef99 100644 --- a/arch/arm64/boot/dts/nvidia/tegra234.dtsi +++ b/arch/arm64/boot/dts/nvidia/tegra234.dtsi @@ -3013,6 +3013,9 @@ enable-method = "psci"; + operating-points-v2 = <&cl0_opp_tbl>; + interconnects = <&mc TEGRA_ICC_MC_CPU_CLUSTER0 &emc>; + i-cache-size = <65536>; i-cache-line-size = <64>; i-cache-sets = <256>; @@ -3029,6 +3032,9 @@ enable-method = "psci"; + operating-points-v2 = <&cl0_opp_tbl>; + interconnects = <&mc TEGRA_ICC_MC_CPU_CLUSTER0 &emc>; + i-cache-size = <65536>; i-cache-line-size = <64>; i-cache-sets = <256>; @@ -3045,6 +3051,9 @@ enable-method = "psci"; + operating-points-v2 = <&cl0_opp_tbl>; + interconnects = <&mc TEGRA_ICC_MC_CPU_CLUSTER0 &emc>; + i-cache-size = <65536>; i-cache-line-size = <64>; i-cache-sets = <256>; @@ -3061,6 +3070,9 @@ enable-method = "psci"; + operating-points-v2 = <&cl0_opp_tbl>; + interconnects = <&mc TEGRA_ICC_MC_CPU_CLUSTER0 &emc>; + i-cache-size = <65536>; i-cache-line-size = <64>; i-cache-sets = <256>; @@ -3077,6 +3089,9 @@ enable-method = "psci"; + operating-points-v2 = <&cl1_opp_tbl>; + interconnects = <&mc TEGRA_ICC_MC_CPU_CLUSTER1 &emc>; + i-cache-size = <65536>; i-cache-line-size = <64>; i-cache-sets = <256>; @@ -3093,6 +3108,9 @@ enable-method = "psci"; + operating-points-v2 = <&cl1_opp_tbl>; + interconnects = <&mc TEGRA_ICC_MC_CPU_CLUSTER1 &emc>; + i-cache-size = <65536>; i-cache-line-size = <64>; i-cache-sets = <256>; @@ -3109,6 +3127,9 @@ enable-method = "psci"; + operating-points-v2 = <&cl1_opp_tbl>; + interconnects = <&mc TEGRA_ICC_MC_CPU_CLUSTER1 &emc>; + i-cache-size = <65536>; i-cache-line-size = <64>; i-cache-sets = <256>; @@ -3125,6 +3146,9 @@ enable-method = "psci"; + operating-points-v2 = <&cl1_opp_tbl>; + interconnects = <&mc TEGRA_ICC_MC_CPU_CLUSTER1 &emc>; + i-cache-size = <65536>; i-cache-line-size = <64>; i-cache-sets = <256>; @@ -3141,6 +3165,9 @@ enable-method = "psci"; + operating-points-v2 = <&cl2_opp_tbl>; + interconnects = <&mc TEGRA_ICC_MC_CPU_CLUSTER2 &emc>; + i-cache-size = <65536>; i-cache-line-size = <64>; i-cache-sets = <256>; @@ -3157,6 +3184,9 @@ enable-method = "psci"; + operating-points-v2 = <&cl2_opp_tbl>; + interconnects = <&mc TEGRA_ICC_MC_CPU_CLUSTER2 &emc>; + i-cache-size = <65536>; i-cache-line-size = <64>; i-cache-sets = <256>; @@ -3173,6 +3203,9 @@ enable-method = "psci"; + operating-points-v2 = <&cl2_opp_tbl>; + interconnects = <&mc TEGRA_ICC_MC_CPU_CLUSTER2 &emc>; + i-cache-size = <65536>; i-cache-line-size = <64>; i-cache-sets = <256>; @@ -3189,6 +3222,9 @@ enable-method = "psci"; + operating-points-v2 = <&cl2_opp_tbl>; + interconnects = <&mc TEGRA_ICC_MC_CPU_CLUSTER2 &emc>; + i-cache-size = <65536>; i-cache-line-size = <64>; i-cache-sets = <256>; @@ -3445,4 +3481,244 @@ interrupt-parent = <&gic>; always-on; }; + + cl0_opp_tbl: opp-table-cluster0 { + compatible = "operating-points-v2"; + opp-shared; + + cl0_ch1_opp1: opp-115200000 { + opp-hz = /bits/ 64 <115200000>; + opp-peak-kBps = <816000>; + }; + + cl0_ch1_opp2: opp-268800000 { + opp-hz = /bits/ 64 <268800000>; + opp-peak-kBps = <816000>; + }; + + cl0_ch1_opp3: opp-422400000 { + opp-hz = /bits/ 64 <422400000>; + opp-peak-kBps = <816000>; + }; + + cl0_ch1_opp4: opp-576000000 { + opp-hz = /bits/ 64 <576000000>; + opp-peak-kBps = <816000>; + }; + + cl0_ch1_opp5: opp-729600000 { + opp-hz = /bits/ 64 <729600000>; + opp-peak-kBps = <816000>; + }; + + cl0_ch1_opp6: opp-883200000 { + opp-hz = /bits/ 64 <883200000>; + opp-peak-kBps = <816000>; + }; + + cl0_ch1_opp7: opp-1036800000 { + opp-hz = /bits/ 64 <1036800000>; + opp-peak-kBps = <816000>; + }; + + cl0_ch1_opp8: opp-1190400000 { + opp-hz = /bits/ 64 <1190400000>; + opp-peak-kBps = <816000>; + }; + + cl0_ch1_opp9: opp-1344000000 { + opp-hz = /bits/ 64 <1344000000>; + opp-peak-kBps = <1632000>; + }; + + cl0_ch1_opp10: opp-1497600000 { + opp-hz = /bits/ 64 <1497600000>; + opp-peak-kBps = <1632000>; + }; + + cl0_ch1_opp11: opp-1651200000 { + opp-hz = /bits/ 64 <1651200000>; + opp-peak-kBps = <2660000>; + }; + + cl0_ch1_opp12: opp-1804800000 { + opp-hz = /bits/ 64 <1804800000>; + opp-peak-kBps = <2660000>; + }; + + cl0_ch1_opp13: opp-1958400000 { + opp-hz = /bits/ 64 <1958400000>; + opp-peak-kBps = <3200000>; + }; + + cl0_ch1_opp14: opp-2112000000 { + opp-hz = /bits/ 64 <2112000000>; + opp-peak-kBps = <6400000>; + }; + + cl0_ch1_opp15: opp-2201600000 { + opp-hz = /bits/ 64 <2201600000>; + opp-peak-kBps = <6400000>; + }; + }; + + cl1_opp_tbl: opp-table-cluster1 { + compatible = "operating-points-v2"; + opp-shared; + + cl1_ch1_opp1: opp-115200000 { + opp-hz = /bits/ 64 <115200000>; + opp-peak-kBps = <816000>; + }; + + cl1_ch1_opp2: opp-268800000 { + opp-hz = /bits/ 64 <268800000>; + opp-peak-kBps = <816000>; + }; + + cl1_ch1_opp3: opp-422400000 { + opp-hz = /bits/ 64 <422400000>; + opp-peak-kBps = <816000>; + }; + + cl1_ch1_opp4: opp-576000000 { + opp-hz = /bits/ 64 <576000000>; + opp-peak-kBps = <816000>; + }; + + cl1_ch1_opp5: opp-729600000 { + opp-hz = /bits/ 64 <729600000>; + opp-peak-kBps = <816000>; + }; + + cl1_ch1_opp6: opp-883200000 { + opp-hz = /bits/ 64 <883200000>; + opp-peak-kBps = <816000>; + }; + + cl1_ch1_opp7: opp-1036800000 { + opp-hz = /bits/ 64 <1036800000>; + opp-peak-kBps = <816000>; + }; + + cl1_ch1_opp8: opp-1190400000 { + opp-hz = /bits/ 64 <1190400000>; + opp-peak-kBps = <816000>; + }; + + cl1_ch1_opp9: opp-1344000000 { + opp-hz = /bits/ 64 <1344000000>; + opp-peak-kBps = <1632000>; + }; + + cl1_ch1_opp10: opp-1497600000 { + opp-hz = /bits/ 64 <1497600000>; + opp-peak-kBps = <1632000>; + }; + + cl1_ch1_opp11: opp-1651200000 { + opp-hz = /bits/ 64 <1651200000>; + opp-peak-kBps = <2660000>; + }; + + cl1_ch1_opp12: opp-1804800000 { + opp-hz = /bits/ 64 <1804800000>; + opp-peak-kBps = <2660000>; + }; + + cl1_ch1_opp13: opp-1958400000 { + opp-hz = /bits/ 64 <1958400000>; + opp-peak-kBps = <3200000>; + }; + + cl1_ch1_opp14: opp-2112000000 { + opp-hz = /bits/ 64 <2112000000>; + opp-peak-kBps = <6400000>; + }; + + cl1_ch1_opp15: opp-2201600000 { + opp-hz = /bits/ 64 <2201600000>; + opp-peak-kBps = <6400000>; + }; + }; + + cl2_opp_tbl: opp-table-cluster2 { + compatible = "operating-points-v2"; + opp-shared; + + cl2_ch1_opp1: opp-115200000 { + opp-hz = /bits/ 64 <115200000>; + opp-peak-kBps = <816000>; + }; + + cl2_ch1_opp2: opp-268800000 { + opp-hz = /bits/ 64 <268800000>; + opp-peak-kBps = <816000>; + }; + + cl2_ch1_opp3: opp-422400000 { + opp-hz = /bits/ 64 <422400000>; + opp-peak-kBps = <816000>; + }; + + cl2_ch1_opp4: opp-576000000 { + opp-hz = /bits/ 64 <576000000>; + opp-peak-kBps = <816000>; + }; + + cl2_ch1_opp5: opp-729600000 { + opp-hz = /bits/ 64 <729600000>; + opp-peak-kBps = <816000>; + }; + + cl2_ch1_opp6: opp-883200000 { + opp-hz = /bits/ 64 <883200000>; + opp-peak-kBps = <816000>; + }; + + cl2_ch1_opp7: opp-1036800000 { + opp-hz = /bits/ 64 <1036800000>; + opp-peak-kBps = <816000>; + }; + + cl2_ch1_opp8: opp-1190400000 { + opp-hz = /bits/ 64 <1190400000>; + opp-peak-kBps = <816000>; + }; + + cl2_ch1_opp9: opp-1344000000 { + opp-hz = /bits/ 64 <1344000000>; + opp-peak-kBps = <1632000>; + }; + + cl2_ch1_opp10: opp-1497600000 { + opp-hz = /bits/ 64 <1497600000>; + opp-peak-kBps = <1632000>; + }; + + cl2_ch1_opp11: opp-1651200000 { + opp-hz = /bits/ 64 <1651200000>; + opp-peak-kBps = <2660000>; + }; + + cl2_ch1_opp12: opp-1804800000 { + opp-hz = /bits/ 64 <1804800000>; + opp-peak-kBps = <2660000>; + }; + + cl2_ch1_opp13: opp-1958400000 { + opp-hz = /bits/ 64 <1958400000>; + opp-peak-kBps = <3200000>; + }; + + cl2_ch1_opp14: opp-2112000000 { + opp-hz = /bits/ 64 <2112000000>; + opp-peak-kBps = <6400000>; + }; + + cl2_ch1_opp15: opp-2201600000 { + opp-hz = /bits/ 64 <2201600000>; + opp-peak-kBps = <6400000>; + }; + }; };