1 # SPDX-License-Identifier: (GPL-2.0 OR BSD-2-C 1 # SPDX-License-Identifier: (GPL-2.0 OR BSD-2-Clause) 2 %YAML 1.2 2 %YAML 1.2 3 --- 3 --- 4 $id: http://devicetree.org/schemas/dma/sterics 4 $id: http://devicetree.org/schemas/dma/stericsson,dma40.yaml# 5 $schema: http://devicetree.org/meta-schemas/co 5 $schema: http://devicetree.org/meta-schemas/core.yaml# 6 6 7 title: ST-Ericsson DMA40 DMA Engine 7 title: ST-Ericsson DMA40 DMA Engine 8 8 9 maintainers: 9 maintainers: 10 - Linus Walleij <linus.walleij@linaro.org> 10 - Linus Walleij <linus.walleij@linaro.org> 11 11 12 allOf: 12 allOf: 13 - $ref: dma-controller.yaml# 13 - $ref: dma-controller.yaml# 14 14 15 properties: 15 properties: 16 "#dma-cells": 16 "#dma-cells": 17 const: 3 17 const: 3 18 description: | 18 description: | 19 The first cell is the unique device chan 19 The first cell is the unique device channel number as indicated by this 20 table for DB8500 which is the only ASIC 20 table for DB8500 which is the only ASIC known to use DMA40: 21 21 22 0: SPI controller 0 22 0: SPI controller 0 23 1: SD/MMC controller 0 (unused) 23 1: SD/MMC controller 0 (unused) 24 2: SD/MMC controller 1 (unused) 24 2: SD/MMC controller 1 (unused) 25 3: SD/MMC controller 2 (unused) 25 3: SD/MMC controller 2 (unused) 26 4: I2C port 1 26 4: I2C port 1 27 5: I2C port 3 27 5: I2C port 3 28 6: I2C port 2 28 6: I2C port 2 29 7: I2C port 4 29 7: I2C port 4 30 8: Synchronous Serial Port SSP0 30 8: Synchronous Serial Port SSP0 31 9: Synchronous Serial Port SSP1 31 9: Synchronous Serial Port SSP1 32 10: Multi-Channel Display Engine MCDE RX 32 10: Multi-Channel Display Engine MCDE RX 33 11: UART port 2 33 11: UART port 2 34 12: UART port 1 34 12: UART port 1 35 13: UART port 0 35 13: UART port 0 36 14: Multirate Serial Port MSP2 36 14: Multirate Serial Port MSP2 37 15: I2C port 0 37 15: I2C port 0 38 16: USB OTG in/out endpoints 7 & 15 38 16: USB OTG in/out endpoints 7 & 15 39 17: USB OTG in/out endpoints 6 & 14 39 17: USB OTG in/out endpoints 6 & 14 40 18: USB OTG in/out endpoints 5 & 13 40 18: USB OTG in/out endpoints 5 & 13 41 19: USB OTG in/out endpoints 4 & 12 41 19: USB OTG in/out endpoints 4 & 12 42 20: SLIMbus or HSI channel 0 42 20: SLIMbus or HSI channel 0 43 21: SLIMbus or HSI channel 1 43 21: SLIMbus or HSI channel 1 44 22: SLIMbus or HSI channel 2 44 22: SLIMbus or HSI channel 2 45 23: SLIMbus or HSI channel 3 45 23: SLIMbus or HSI channel 3 46 24: Multimedia DSP SXA0 46 24: Multimedia DSP SXA0 47 25: Multimedia DSP SXA1 47 25: Multimedia DSP SXA1 48 26: Multimedia DSP SXA2 48 26: Multimedia DSP SXA2 49 27: Multimedia DSP SXA3 49 27: Multimedia DSP SXA3 50 28: SD/MMC controller 2 50 28: SD/MMC controller 2 51 29: SD/MMC controller 0 51 29: SD/MMC controller 0 52 30: MSP port 1 on DB8500 v1, MSP port 3 52 30: MSP port 1 on DB8500 v1, MSP port 3 on DB8500 v2 53 31: MSP port 0 or SLIMbus channel 0 53 31: MSP port 0 or SLIMbus channel 0 54 32: SD/MMC controller 1 54 32: SD/MMC controller 1 55 33: SPI controller 2 55 33: SPI controller 2 56 34: i2c3 RX2 TX2 56 34: i2c3 RX2 TX2 57 35: SPI controller 1 57 35: SPI controller 1 58 36: USB OTG in/out endpoints 3 & 11 58 36: USB OTG in/out endpoints 3 & 11 59 37: USB OTG in/out endpoints 2 & 10 59 37: USB OTG in/out endpoints 2 & 10 60 38: USB OTG in/out endpoints 1 & 9 60 38: USB OTG in/out endpoints 1 & 9 61 39: USB OTG in/out endpoints 8 61 39: USB OTG in/out endpoints 8 62 40: SPI controller 3 62 40: SPI controller 3 63 41: SD/MMC controller 3 63 41: SD/MMC controller 3 64 42: SD/MMC controller 4 64 42: SD/MMC controller 4 65 43: SD/MMC controller 5 65 43: SD/MMC controller 5 66 44: Multimedia DSP SXA4 66 44: Multimedia DSP SXA4 67 45: Multimedia DSP SXA5 67 45: Multimedia DSP SXA5 68 46: SLIMbus channel 8 or Multimedia DSP 68 46: SLIMbus channel 8 or Multimedia DSP SXA6 69 47: SLIMbus channel 9 or Multimedia DSP 69 47: SLIMbus channel 9 or Multimedia DSP SXA7 70 48: Crypto Accelerator 1 70 48: Crypto Accelerator 1 71 49: Crypto Accelerator 1 TX or Hash Acce 71 49: Crypto Accelerator 1 TX or Hash Accelerator 1 TX 72 50: Hash Accelerator 1 TX 72 50: Hash Accelerator 1 TX 73 51: memcpy TX (to be used by the DMA dri 73 51: memcpy TX (to be used by the DMA driver for memcpy operations) 74 52: SLIMbus or HSI channel 4 74 52: SLIMbus or HSI channel 4 75 53: SLIMbus or HSI channel 5 75 53: SLIMbus or HSI channel 5 76 54: SLIMbus or HSI channel 6 76 54: SLIMbus or HSI channel 6 77 55: SLIMbus or HSI channel 7 77 55: SLIMbus or HSI channel 7 78 56: memcpy (to be used by the DMA driver 78 56: memcpy (to be used by the DMA driver for memcpy operations) 79 57: memcpy (to be used by the DMA driver 79 57: memcpy (to be used by the DMA driver for memcpy operations) 80 58: memcpy (to be used by the DMA driver 80 58: memcpy (to be used by the DMA driver for memcpy operations) 81 59: memcpy (to be used by the DMA driver 81 59: memcpy (to be used by the DMA driver for memcpy operations) 82 60: memcpy (to be used by the DMA driver 82 60: memcpy (to be used by the DMA driver for memcpy operations) 83 61: Crypto Accelerator 0 83 61: Crypto Accelerator 0 84 62: Crypto Accelerator 0 TX or Hash Acce 84 62: Crypto Accelerator 0 TX or Hash Accelerator 0 TX 85 63: Hash Accelerator 0 TX 85 63: Hash Accelerator 0 TX 86 86 87 The second cell is the DMA request line 87 The second cell is the DMA request line number. This is only used when 88 a fixed channel is allocated, and indica 88 a fixed channel is allocated, and indicated by setting bit 3 in the 89 flags field (see below). 89 flags field (see below). 90 90 91 The third cell is a 32bit flags bitfield 91 The third cell is a 32bit flags bitfield with the following possible 92 bits set: 92 bits set: 93 0x00000001 (bit 0) - mode: 93 0x00000001 (bit 0) - mode: 94 Logical channel when unset 94 Logical channel when unset 95 Physical channel when set 95 Physical channel when set 96 0x00000002 (bit 1) - direction: 96 0x00000002 (bit 1) - direction: 97 Memory to Device when unset 97 Memory to Device when unset 98 Device to Memory when set 98 Device to Memory when set 99 0x00000004 (bit 2) - endianness: 99 0x00000004 (bit 2) - endianness: 100 Little endian when unset 100 Little endian when unset 101 Big endian when set 101 Big endian when set 102 0x00000008 (bit 3) - use fixed channel: 102 0x00000008 (bit 3) - use fixed channel: 103 Use automatic channel selection when u 103 Use automatic channel selection when unset 104 Use DMA request line number when set 104 Use DMA request line number when set 105 0x00000010 (bit 4) - set channel as high 105 0x00000010 (bit 4) - set channel as high priority: 106 Normal priority when unset 106 Normal priority when unset 107 High priority when set 107 High priority when set 108 108 109 compatible: 109 compatible: 110 items: 110 items: 111 - const: stericsson,db8500-dma40 111 - const: stericsson,db8500-dma40 112 - const: stericsson,dma40 112 - const: stericsson,dma40 113 113 114 reg: 114 reg: 115 oneOf: 115 oneOf: 116 - items: 116 - items: 117 - description: DMA40 memory base 117 - description: DMA40 memory base 118 - items: 118 - items: 119 - description: DMA40 memory base 119 - description: DMA40 memory base 120 - description: LCPA memory base, dep 120 - description: LCPA memory base, deprecated, use eSRAM pool instead 121 deprecated: true 121 deprecated: true 122 122 123 123 124 reg-names: 124 reg-names: 125 oneOf: 125 oneOf: 126 - items: 126 - items: 127 - const: base 127 - const: base 128 - items: 128 - items: 129 - const: base 129 - const: base 130 - const: lcpa 130 - const: lcpa 131 deprecated: true 131 deprecated: true 132 132 133 interrupts: 133 interrupts: 134 maxItems: 1 134 maxItems: 1 135 135 136 clocks: 136 clocks: 137 maxItems: 1 137 maxItems: 1 138 138 139 sram: 139 sram: 140 $ref: /schemas/types.yaml#/definitions/pha 140 $ref: /schemas/types.yaml#/definitions/phandle-array 141 description: A phandle array with inner si 141 description: A phandle array with inner size 1 (no arg cells). 142 First phandle is the LCPA (Logical Chann 142 First phandle is the LCPA (Logical Channel Parameter Address) memory. 143 Second phandle is the LCLA (Logical Cha 143 Second phandle is the LCLA (Logical Channel Link base Address) memory. 144 maxItems: 2 144 maxItems: 2 145 items: 145 items: 146 maxItems: 1 146 maxItems: 1 147 147 148 memcpy-channels: 148 memcpy-channels: 149 $ref: /schemas/types.yaml#/definitions/uin 149 $ref: /schemas/types.yaml#/definitions/uint32-array 150 description: Array of u32 elements indicat 150 description: Array of u32 elements indicating which channels on the DMA 151 engine are eligible for memcpy transfers 151 engine are eligible for memcpy transfers 152 152 153 required: 153 required: 154 - "#dma-cells" 154 - "#dma-cells" 155 - compatible 155 - compatible 156 - reg 156 - reg 157 - interrupts 157 - interrupts 158 - clocks 158 - clocks 159 - sram 159 - sram 160 - memcpy-channels 160 - memcpy-channels 161 161 162 additionalProperties: false 162 additionalProperties: false 163 163 164 examples: 164 examples: 165 - | 165 - | 166 #include <dt-bindings/interrupt-controller 166 #include <dt-bindings/interrupt-controller/irq.h> 167 #include <dt-bindings/interrupt-controller 167 #include <dt-bindings/interrupt-controller/arm-gic.h> 168 #include <dt-bindings/mfd/dbx500-prcmu.h> 168 #include <dt-bindings/mfd/dbx500-prcmu.h> 169 dma-controller@801c0000 { 169 dma-controller@801c0000 { 170 compatible = "stericsson,db8500-dma40" 170 compatible = "stericsson,db8500-dma40", "stericsson,dma40"; 171 reg = <0x801c0000 0x1000>; 171 reg = <0x801c0000 0x1000>; 172 reg-names = "base"; 172 reg-names = "base"; 173 sram = <&lcpa>, <&lcla>; 173 sram = <&lcpa>, <&lcla>; 174 interrupts = <GIC_SPI 25 IRQ_TYPE_LEVE 174 interrupts = <GIC_SPI 25 IRQ_TYPE_LEVEL_HIGH>; 175 #dma-cells = <3>; 175 #dma-cells = <3>; 176 memcpy-channels = <56 57 58 59 60>; 176 memcpy-channels = <56 57 58 59 60>; 177 clocks = <&prcmu_clk PRCMU_DMACLK>; 177 clocks = <&prcmu_clk PRCMU_DMACLK>; 178 }; 178 }; 179 ... 179 ...
Linux® is a registered trademark of Linus Torvalds in the United States and other countries.
TOMOYO® is a registered trademark of NTT DATA CORPORATION.