Merge branch irq/cirq-v2 into irq/irqchip-next
* irq/cirq-v2: : . : Support for the MTK CIRQv2, courtesy of AngeloGioacchino Del Regno: : : "On newer SoCs (like MT8192/95 and also other non-chromebook chips), the : MediaTek CIRQ controller has a new register layout: this series adds : some more flexibility to the irq-mtk-cirq driver, allowing to select : the register layout based on a SoC-specific compatible." : : . irqchip/irq-mtk-cirq: Add support for System CIRQ on MT8192 irqchip/irq-mtk-cirq: Move register offsets to const array dt-bindings: interrupt-controller: mediatek,cirq: Document MT8192 dt-bindings: interrupt-controller: mediatek,cirq: Migrate to dt schema Signed-off-by: Marc Zyngier <maz@kernel.org>
This commit is contained in:
commit
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@ -1,33 +0,0 @@
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* Mediatek 27xx cirq
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In Mediatek SOCs, the CIRQ is a low power interrupt controller designed to
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work outside MCUSYS which comprises with Cortex-Ax cores,CCI and GIC.
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The external interrupts (outside MCUSYS) will feed through CIRQ and connect
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to GIC in MCUSYS. When CIRQ is enabled, it will record the edge-sensitive
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interrupts and generate a pulse signal to parent interrupt controller when
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flush command is executed. With CIRQ, MCUSYS can be completely turned off
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to improve the system power consumption without losing interrupts.
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Required properties:
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- compatible: should be one of
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- "mediatek,mt2701-cirq" for mt2701 CIRQ
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- "mediatek,mt8135-cirq" for mt8135 CIRQ
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- "mediatek,mt8173-cirq" for mt8173 CIRQ
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and "mediatek,cirq" as a fallback.
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- interrupt-controller : Identifies the node as an interrupt controller.
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- #interrupt-cells : Use the same format as specified by GIC in arm,gic.txt.
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- reg: Physical base address of the cirq registers and length of memory
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mapped region.
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- mediatek,ext-irq-range: Identifies external irq number range in different
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SOCs.
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Example:
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cirq: interrupt-controller@10204000 {
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compatible = "mediatek,mt2701-cirq",
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"mediatek,mtk-cirq";
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interrupt-controller;
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#interrupt-cells = <3>;
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interrupt-parent = <&sysirq>;
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reg = <0 0x10204000 0 0x400>;
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mediatek,ext-irq-start = <32 200>;
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};
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@ -0,0 +1,68 @@
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# SPDX-License-Identifier: GPL-2.0-only OR BSD-2-Clause
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%YAML 1.2
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---
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$id: http://devicetree.org/schemas/interrupt-controller/mediatek,mtk-cirq.yaml#
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$schema: http://devicetree.org/meta-schemas/core.yaml#
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title: MediaTek System Interrupt Controller
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maintainers:
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- Youlin Pei <youlin.pei@mediatek.com>
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description:
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In MediaTek SoCs, the CIRQ is a low power interrupt controller designed to
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work outside of MCUSYS which comprises with Cortex-Ax cores, CCI and GIC.
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The external interrupts (outside MCUSYS) will feed through CIRQ and connect
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to GIC in MCUSYS. When CIRQ is enabled, it will record the edge-sensitive
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interrupts and generate a pulse signal to parent interrupt controller when
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flush command is executed. With CIRQ, MCUSYS can be completely turned off
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to improve the system power consumption without losing interrupts.
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properties:
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compatible:
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items:
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- enum:
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- mediatek,mt2701-cirq
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- mediatek,mt8135-cirq
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- mediatek,mt8173-cirq
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- mediatek,mt8192-cirq
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- const: mediatek,mtk-cirq
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reg:
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maxItems: 1
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'#interrupt-cells':
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const: 3
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interrupt-controller: true
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mediatek,ext-irq-range:
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$ref: /schemas/types.yaml#/definitions/uint32-array
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items:
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- description: First CIRQ interrupt
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- description: Last CIRQ interrupt
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description:
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Identifies the range of external interrupts in different SoCs
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required:
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- compatible
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- reg
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- '#interrupt-cells'
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- interrupt-controller
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- mediatek,ext-irq-range
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additionalProperties: false
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examples:
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- |
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#include <dt-bindings/interrupt-controller/irq.h>
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cirq: interrupt-controller@10204000 {
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compatible = "mediatek,mt2701-cirq", "mediatek,mtk-cirq";
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reg = <0x10204000 0x400>;
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#interrupt-cells = <3>;
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interrupt-controller;
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interrupt-parent = <&sysirq>;
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mediatek,ext-irq-range = <32 200>;
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};
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@ -15,14 +15,41 @@
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#include <linux/slab.h>
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#include <linux/syscore_ops.h>
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#define CIRQ_ACK 0x40
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#define CIRQ_MASK_SET 0xc0
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#define CIRQ_MASK_CLR 0x100
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#define CIRQ_SENS_SET 0x180
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#define CIRQ_SENS_CLR 0x1c0
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#define CIRQ_POL_SET 0x240
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#define CIRQ_POL_CLR 0x280
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#define CIRQ_CONTROL 0x300
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enum mtk_cirq_regoffs_index {
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CIRQ_STA,
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CIRQ_ACK,
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CIRQ_MASK_SET,
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CIRQ_MASK_CLR,
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CIRQ_SENS_SET,
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CIRQ_SENS_CLR,
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CIRQ_POL_SET,
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CIRQ_POL_CLR,
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CIRQ_CONTROL
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};
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static const u32 mtk_cirq_regoffs_v1[] = {
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[CIRQ_STA] = 0x0,
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[CIRQ_ACK] = 0x40,
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[CIRQ_MASK_SET] = 0xc0,
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[CIRQ_MASK_CLR] = 0x100,
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[CIRQ_SENS_SET] = 0x180,
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[CIRQ_SENS_CLR] = 0x1c0,
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[CIRQ_POL_SET] = 0x240,
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[CIRQ_POL_CLR] = 0x280,
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[CIRQ_CONTROL] = 0x300,
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};
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static const u32 mtk_cirq_regoffs_v2[] = {
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[CIRQ_STA] = 0x0,
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[CIRQ_ACK] = 0x80,
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[CIRQ_MASK_SET] = 0x180,
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[CIRQ_MASK_CLR] = 0x200,
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[CIRQ_SENS_SET] = 0x300,
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[CIRQ_SENS_CLR] = 0x380,
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[CIRQ_POL_SET] = 0x480,
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[CIRQ_POL_CLR] = 0x500,
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[CIRQ_CONTROL] = 0x600,
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};
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#define CIRQ_EN 0x1
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#define CIRQ_EDGE 0x2
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@ -32,18 +59,32 @@ struct mtk_cirq_chip_data {
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void __iomem *base;
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unsigned int ext_irq_start;
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unsigned int ext_irq_end;
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const u32 *offsets;
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struct irq_domain *domain;
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};
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static struct mtk_cirq_chip_data *cirq_data;
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static void mtk_cirq_write_mask(struct irq_data *data, unsigned int offset)
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static void __iomem *mtk_cirq_reg(struct mtk_cirq_chip_data *chip_data,
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enum mtk_cirq_regoffs_index idx)
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{
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return chip_data->base + chip_data->offsets[idx];
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}
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static void __iomem *mtk_cirq_irq_reg(struct mtk_cirq_chip_data *chip_data,
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enum mtk_cirq_regoffs_index idx,
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unsigned int cirq_num)
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{
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return mtk_cirq_reg(chip_data, idx) + (cirq_num / 32) * 4;
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}
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static void mtk_cirq_write_mask(struct irq_data *data, enum mtk_cirq_regoffs_index idx)
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{
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struct mtk_cirq_chip_data *chip_data = data->chip_data;
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unsigned int cirq_num = data->hwirq;
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u32 mask = 1 << (cirq_num % 32);
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writel_relaxed(mask, chip_data->base + offset + (cirq_num / 32) * 4);
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writel_relaxed(mask, mtk_cirq_irq_reg(chip_data, idx, cirq_num));
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}
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static void mtk_cirq_mask(struct irq_data *data)
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@ -160,6 +201,7 @@ static const struct irq_domain_ops cirq_domain_ops = {
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#ifdef CONFIG_PM_SLEEP
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static int mtk_cirq_suspend(void)
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{
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void __iomem *reg;
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u32 value, mask;
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unsigned int irq, hwirq_num;
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bool pending, masked;
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@ -200,31 +242,34 @@ static int mtk_cirq_suspend(void)
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continue;
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}
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reg = mtk_cirq_irq_reg(cirq_data, CIRQ_ACK, i);
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mask = 1 << (i % 32);
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writel_relaxed(mask, cirq_data->base + CIRQ_ACK + (i / 32) * 4);
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writel_relaxed(mask, reg);
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}
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/* set edge_only mode, record edge-triggerd interrupts */
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/* enable cirq */
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value = readl_relaxed(cirq_data->base + CIRQ_CONTROL);
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reg = mtk_cirq_reg(cirq_data, CIRQ_CONTROL);
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value = readl_relaxed(reg);
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value |= (CIRQ_EDGE | CIRQ_EN);
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writel_relaxed(value, cirq_data->base + CIRQ_CONTROL);
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writel_relaxed(value, reg);
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return 0;
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}
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static void mtk_cirq_resume(void)
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{
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void __iomem *reg = mtk_cirq_reg(cirq_data, CIRQ_CONTROL);
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u32 value;
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/* flush recorded interrupts, will send signals to parent controller */
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value = readl_relaxed(cirq_data->base + CIRQ_CONTROL);
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writel_relaxed(value | CIRQ_FLUSH, cirq_data->base + CIRQ_CONTROL);
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value = readl_relaxed(reg);
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writel_relaxed(value | CIRQ_FLUSH, reg);
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/* disable cirq */
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value = readl_relaxed(cirq_data->base + CIRQ_CONTROL);
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value = readl_relaxed(reg);
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value &= ~(CIRQ_EDGE | CIRQ_EN);
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writel_relaxed(value, cirq_data->base + CIRQ_CONTROL);
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writel_relaxed(value, reg);
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}
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static struct syscore_ops mtk_cirq_syscore_ops = {
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@ -240,10 +285,19 @@ static void mtk_cirq_syscore_init(void)
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static inline void mtk_cirq_syscore_init(void) {}
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#endif
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static const struct of_device_id mtk_cirq_of_match[] = {
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{ .compatible = "mediatek,mt2701-cirq", .data = &mtk_cirq_regoffs_v1 },
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{ .compatible = "mediatek,mt8135-cirq", .data = &mtk_cirq_regoffs_v1 },
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{ .compatible = "mediatek,mt8173-cirq", .data = &mtk_cirq_regoffs_v1 },
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{ .compatible = "mediatek,mt8192-cirq", .data = &mtk_cirq_regoffs_v2 },
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{ /* sentinel */ }
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};
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static int __init mtk_cirq_of_init(struct device_node *node,
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struct device_node *parent)
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{
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struct irq_domain *domain, *domain_parent;
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const struct of_device_id *match;
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unsigned int irq_num;
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int ret;
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@ -274,6 +328,13 @@ static int __init mtk_cirq_of_init(struct device_node *node,
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if (ret)
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goto out_unmap;
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match = of_match_node(mtk_cirq_of_match, node);
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if (!match) {
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ret = -ENODEV;
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goto out_unmap;
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}
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cirq_data->offsets = match->data;
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irq_num = cirq_data->ext_irq_end - cirq_data->ext_irq_start + 1;
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domain = irq_domain_add_hierarchy(domain_parent, 0,
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irq_num, node,
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