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Tue, 20 Dec 2022 08:04:27 -0800 Received: from drhqmail203.nvidia.com (10.126.190.182) by drhqmail202.nvidia.com (10.126.190.181) with Microsoft SMTP Server (version=TLS1_2, cipher=TLS_ECDHE_RSA_WITH_AES_256_GCM_SHA384) id 15.2.986.36; Tue, 20 Dec 2022 08:04:27 -0800 Received: from sumitg-l4t.nvidia.com (10.127.8.10) by mail.nvidia.com (10.126.190.182) with Microsoft SMTP Server id 15.2.986.36 via Frontend Transport; Tue, 20 Dec 2022 08:04:23 -0800 From: Sumit Gupta To: , , , , , , , , , , CC: , , , , Subject: [Patch v1 06/10] arm64: tegra: Add cpu OPP tables and interconnects property Date: Tue, 20 Dec 2022 21:32:36 +0530 Message-ID: <20221220160240.27494-7-sumitg@nvidia.com> X-Mailer: git-send-email 2.17.1 In-Reply-To: <20221220160240.27494-1-sumitg@nvidia.com> References: <20221220160240.27494-1-sumitg@nvidia.com> X-NVConfidentiality: public MIME-Version: 1.0 X-EOPAttributedMessage: 0 X-MS-PublicTrafficType: Email X-MS-TrafficTypeDiagnostic: BN8NAM11FT110:EE_|PH7PR12MB8055:EE_ X-MS-Office365-Filtering-Correlation-Id: ae147af3-c374-4e2b-b0fd-08dae2a3eb32 X-MS-Exchange-SenderADCheck: 1 X-MS-Exchange-AntiSpam-Relay: 0 X-Microsoft-Antispam: BCL:0; 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X-OriginatorOrg: Nvidia.com X-MS-Exchange-CrossTenant-OriginalArrivalTime: 20 Dec 2022 16:04:47.7829 (UTC) X-MS-Exchange-CrossTenant-Network-Message-Id: ae147af3-c374-4e2b-b0fd-08dae2a3eb32 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: BN8NAM11FT110.eop-nam11.prod.protection.outlook.com X-MS-Exchange-CrossTenant-AuthAs: Anonymous X-MS-Exchange-CrossTenant-FromEntityHeader: HybridOnPrem X-MS-Exchange-Transport-CrossTenantHeadersStamped: PH7PR12MB8055 Precedence: bulk List-ID: X-Mailing-List: linux-pm@vger.kernel.org Add OPP table and interconnects property required to scale DDR frequency for better performance. The OPP table has CPU frequency to per MC channel bandwidth mapping in each operating point entry. One table is added for each cluster even though the table data is same because the bandwidth request is per cluster. OPP framework is creating a single icc path if the table is marked 'opp-shared' and shared among all clusters. For us the OPP table is same but the MC client ID argument to interconnects property is different for each cluster which makes different icc path for all. 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 eaf05ee9acd1..ed7d0f7da431 100644 --- a/arch/arm64/boot/dts/nvidia/tegra234.dtsi +++ b/arch/arm64/boot/dts/nvidia/tegra234.dtsi @@ -2840,6 +2840,9 @@ 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>; @@ -2856,6 +2859,9 @@ 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>; @@ -2872,6 +2878,9 @@ 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>; @@ -2888,6 +2897,9 @@ 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>; @@ -2904,6 +2916,9 @@ 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>; @@ -2920,6 +2935,9 @@ 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>; @@ -2936,6 +2954,9 @@ 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>; @@ -2952,6 +2973,9 @@ 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>; @@ -2968,6 +2992,9 @@ 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>; @@ -2984,6 +3011,9 @@ 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>; @@ -3000,6 +3030,9 @@ 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>; @@ -3016,6 +3049,9 @@ 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>; @@ -3272,4 +3308,244 @@ 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>; + }; + }; };