1# SPDX-License-Identifier: (GPL-2.0-only OR BSD-2-Clause) 2%YAML 1.2 3--- 4$id: http://devicetree.org/schemas/power/qcom,rpmpd.yaml# 5$schema: http://devicetree.org/meta-schemas/core.yaml# 6 7title: Qualcomm RPM/RPMh Power domains 8 9maintainers: 10 - Rajendra Nayak <rnayak@codeaurora.org> 11 12description: 13 For RPM/RPMh Power domains, we communicate a performance state to RPM/RPMh 14 which then translates it into a corresponding voltage on a rail. 15 16properties: 17 compatible: 18 enum: 19 - qcom,msm8976-rpmpd 20 - qcom,msm8996-rpmpd 21 - qcom,msm8998-rpmpd 22 - qcom,qcs404-rpmpd 23 - qcom,sc7180-rpmhpd 24 - qcom,sdm845-rpmhpd 25 - qcom,sm8150-rpmhpd 26 27 '#power-domain-cells': 28 const: 1 29 30 operating-points-v2: true 31 32 opp-table: 33 type: object 34 35required: 36 - compatible 37 - '#power-domain-cells' 38 - operating-points-v2 39 40additionalProperties: false 41 42examples: 43 - | 44 45 // Example 1 (rpmh power domain controller and OPP table): 46 47 #include <dt-bindings/power/qcom-rpmpd.h> 48 49 rpmhpd: power-controller { 50 compatible = "qcom,sdm845-rpmhpd"; 51 #power-domain-cells = <1>; 52 operating-points-v2 = <&rpmhpd_opp_table>; 53 54 rpmhpd_opp_table: opp-table { 55 compatible = "operating-points-v2"; 56 57 rpmhpd_opp_ret: opp1 { 58 opp-level = <RPMH_REGULATOR_LEVEL_RETENTION>; 59 }; 60 61 rpmhpd_opp_min_svs: opp2 { 62 opp-level = <RPMH_REGULATOR_LEVEL_MIN_SVS>; 63 }; 64 65 rpmhpd_opp_low_svs: opp3 { 66 opp-level = <RPMH_REGULATOR_LEVEL_LOW_SVS>; 67 }; 68 69 rpmhpd_opp_svs: opp4 { 70 opp-level = <RPMH_REGULATOR_LEVEL_SVS>; 71 }; 72 73 rpmhpd_opp_svs_l1: opp5 { 74 opp-level = <RPMH_REGULATOR_LEVEL_SVS_L1>; 75 }; 76 77 rpmhpd_opp_nom: opp6 { 78 opp-level = <RPMH_REGULATOR_LEVEL_NOM>; 79 }; 80 81 rpmhpd_opp_nom_l1: opp7 { 82 opp-level = <RPMH_REGULATOR_LEVEL_NOM_L1>; 83 }; 84 85 rpmhpd_opp_nom_l2: opp8 { 86 opp-level = <RPMH_REGULATOR_LEVEL_NOM_L2>; 87 }; 88 89 rpmhpd_opp_turbo: opp9 { 90 opp-level = <RPMH_REGULATOR_LEVEL_TURBO>; 91 }; 92 93 rpmhpd_opp_turbo_l1: opp10 { 94 opp-level = <RPMH_REGULATOR_LEVEL_TURBO_L1>; 95 }; 96 }; 97 }; 98 99 - | 100 101 // Example 2 (rpm power domain controller and OPP table): 102 103 rpmpd: power-controller { 104 compatible = "qcom,msm8996-rpmpd"; 105 #power-domain-cells = <1>; 106 operating-points-v2 = <&rpmpd_opp_table>; 107 108 rpmpd_opp_table: opp-table { 109 compatible = "operating-points-v2"; 110 111 rpmpd_opp_low: opp1 { 112 opp-level = <1>; 113 }; 114 115 rpmpd_opp_ret: opp2 { 116 opp-level = <2>; 117 }; 118 119 rpmpd_opp_svs: opp3 { 120 opp-level = <3>; 121 }; 122 123 rpmpd_opp_normal: opp4 { 124 opp-level = <4>; 125 }; 126 127 rpmpd_opp_high: opp5 { 128 opp-level = <5>; 129 }; 130 131 rpmpd_opp_turbo: opp6 { 132 opp-level = <6>; 133 }; 134 }; 135 }; 136 137 - | 138 139 // Example 3 (Client/Consumer device using OPP table): 140 141 leaky-device0@12350000 { 142 compatible = "foo,i-leak-current"; 143 reg = <0x12350000 0x1000>; 144 power-domains = <&rpmhpd 0>; 145 operating-points-v2 = <&leaky_opp_table>; 146 }; 147 148 leaky_opp_table: opp-table { 149 compatible = "operating-points-v2"; 150 opp1 { 151 opp-hz = /bits/ 64 <144000>; 152 required-opps = <&rpmhpd_opp_low>; 153 }; 154 155 opp2 { 156 opp-hz = /bits/ 64 <400000>; 157 required-opps = <&rpmhpd_opp_ret>; 158 }; 159 160 opp3 { 161 opp-hz = /bits/ 64 <20000000>; 162 required-opps = <&rpmpd_opp_svs>; 163 }; 164 165 opp4 { 166 opp-hz = /bits/ 64 <25000000>; 167 required-opps = <&rpmpd_opp_normal>; 168 }; 169 }; 170... 171