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48c926cd34
Improve the binding example by removing all the leading zeros to fix the following dtc warnings: Warning (unit_address_format): Node /XXX unit name should not have leading 0s Converted using the following command: perl -p -i -e 's/\@0+([0-9a-f])/\@$1/g' `find ./Documentation/devicetree/bindings "*.txt"` Some unnecessary changes were manually fixed. Signed-off-by: Marco Franchi <marco.franchi@nxp.com> Signed-off-by: Rob Herring <robh@kernel.org>
175 lines
5.2 KiB
Plaintext
175 lines
5.2 KiB
Plaintext
*ST pin controller.
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Each multi-function pin is controlled, driven and routed through the
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PIO multiplexing block. Each pin supports GPIO functionality (ALT0)
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and multiple alternate functions(ALT1 - ALTx) that directly connect
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the pin to different hardware blocks.
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When a pin is in GPIO mode, Output Enable (OE), Open Drain(OD), and
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Pull Up (PU) are driven by the related PIO block.
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ST pinctrl driver controls PIO multiplexing block and also interacts with
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gpio driver to configure a pin.
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GPIO bank can have one of the two possible types of interrupt-wirings.
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First type is via irqmux, single interrupt is used by multiple gpio banks. This
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reduces number of overall interrupts numbers required. All these banks belong to
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a single pincontroller.
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_________
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| |----> [gpio-bank (n) ]
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| |----> [gpio-bank (n + 1)]
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[irqN]-- | irq-mux |----> [gpio-bank (n + 2)]
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| |----> [gpio-bank (... )]
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|_________|----> [gpio-bank (n + 7)]
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Second type has a dedicated interrupt per gpio bank.
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[irqN]----> [gpio-bank (n)]
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Pin controller node:
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Required properties:
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- compatible : should be "st,stih407-<pio-block>-pinctrl"
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- st,syscfg : Should be a phandle of the syscfg node.
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- st,retime-pin-mask : Should be mask to specify which pins can be retimed.
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If the property is not present, it is assumed that all the pins in the
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bank are capable of retiming. Retiming is mainly used to improve the
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IO timing margins of external synchronous interfaces.
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- ranges : defines mapping between pin controller node (parent) to gpio-bank
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node (children).
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Optional properties:
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- interrupts : Interrupt number of the irqmux. If the interrupt is shared
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with other gpio banks via irqmux.
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a irqline and gpio banks.
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- reg : irqmux memory resource. If irqmux is present.
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- reg-names : irqmux resource should be named as "irqmux".
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GPIO controller/bank node.
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Required properties:
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- gpio-controller : Indicates this device is a GPIO controller
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- #gpio-cells : Must be two.
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- First cell: specifies the pin number inside the controller
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- Second cell: specifies whether the pin is logically inverted.
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- 0 = active high
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- 1 = active low
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- st,bank-name : Should be a name string for this bank as specified in
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datasheet.
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Optional properties:
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- interrupts : Interrupt number for this gpio bank. If there is a dedicated
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interrupt wired up for this gpio bank.
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- interrupt-controller : Indicates this device is a interrupt controller. GPIO
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bank can be an interrupt controller iff one of the interrupt type either via
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irqmux or a dedicated interrupt per bank is specified.
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- #interrupt-cells: the value of this property should be 2.
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- First Cell: represents the external gpio interrupt number local to the
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gpio interrupt space of the controller.
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- Second Cell: flags to identify the type of the interrupt
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- 1 = rising edge triggered
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- 2 = falling edge triggered
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- 3 = rising and falling edge triggered
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- 4 = high level triggered
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- 8 = low level triggered
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for related macros look in:
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include/dt-bindings/interrupt-controller/irq.h
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Example:
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pin-controller-sbc {
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#address-cells = <1>;
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#size-cells = <1>;
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compatible = "st,stih407-sbc-pinctrl";
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st,syscfg = <&syscfg_sbc>;
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reg = <0x0961f080 0x4>;
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reg-names = "irqmux";
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interrupts = <GIC_SPI 188 IRQ_TYPE_NONE>;
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interrupt-names = "irqmux";
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ranges = <0 0x09610000 0x6000>;
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pio0: gpio@9610000 {
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gpio-controller;
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#gpio-cells = <2>;
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interrupt-controller;
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#interrupt-cells = <2>;
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reg = <0x0 0x100>;
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st,bank-name = "PIO0";
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};
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...
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pin-functions nodes follow...
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};
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Contents of function subnode node:
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----------------------
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Required properties for pin configuration node:
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- st,pins : Child node with list of pins with configuration.
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Below is the format of how each pin conf should look like.
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<bank offset mux mode rt_type rt_delay rt_clk>
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Every PIO is represented with 4-7 parameters depending on retime configuration.
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Each parameter is explained as below.
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-bank : Should be bank phandle to which this PIO belongs.
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-offset : Offset in the PIO bank.
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-mux : Should be alternate function number associated this pin.
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Use same numbers from datasheet.
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-mode :pin configuration is selected from one of the below values.
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IN
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IN_PU
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OUT
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BIDIR
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BIDIR_PU
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-rt_type Retiming Configuration for the pin.
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Possible retime configuration are:
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------- -------------
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value args
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------- -------------
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NICLK <delay> <clk>
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ICLK_IO <delay> <clk>
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BYPASS <delay>
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DE_IO <delay> <clk>
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SE_ICLK_IO <delay> <clk>
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SE_NICLK_IO <delay> <clk>
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- delay is retime delay in pico seconds as mentioned in data sheet.
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- rt_clk :clk to be use for retime.
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Possible values are:
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CLK_A
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CLK_B
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CLK_C
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CLK_D
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Example of mmcclk pin which is a bi-direction pull pu with retime config
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as non inverted clock retimed with CLK_B and delay of 0 pico seconds:
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pin-controller {
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...
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mmc0 {
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pinctrl_mmc: mmc {
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st,pins {
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mmcclk = <&PIO13 4 ALT4 BIDIR_PU NICLK 0 CLK_B>;
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...
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};
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};
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...
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};
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};
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sdhci0:sdhci@fe810000{
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...
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interrupt-parent = <&pio3>;
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#interrupt-cells = <2>;
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interrupts = <3 IRQ_TYPE_LEVEL_HIGH>; /* Interrupt line via PIO3-3 */
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interrupt-names = "card-detect";
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pinctrl-names = "default";
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pinctrl-0 = <&pinctrl_mmc>;
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};
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