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The Programmable Real-Time Unit - Industrial Communication Subsystem (PRU-ICSS) is present of various TI SoCs such as AM335x or AM437x or the AM654x family. Each SoC can have one or more PRUSS instances that may or may not be identical. The PRUSS consists of dual 32-bit RISC cores called the Programmable Real-Time Units (PRUs), some shared, data and instruction memories, some internal peripheral modules, and an interrupt controller. The programmable nature of the PRUs provide flexibility to implement custom peripheral interfaces, fast real-time responses, or specialized data handling. Add support for pruss driver. Currently am654x family is supported. Signed-off-by: Keerthy <j-keerthy@ti.com> Signed-off-by: Roger Quadros <rogerq@ti.com> Signed-off-by: Lokesh Vutla <lokeshvutla@ti.com> Link: https://lore.kernel.org/r/20210622063431.3151-2-lokeshvutla@ti.com
227 lines
5.8 KiB
C
227 lines
5.8 KiB
C
/* SPDX-License-Identifier: GPL-2.0+ */
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#ifndef __TI_PRUSS_H
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#define __TI_PRUSS_H
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/*
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* PRU_ICSS_CFG registers
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* SYSCFG, ISRP, ISP, IESP, IECP, SCRP applicable on AMxxxx devices only
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*/
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#define PRUSS_CFG_REVID 0x00
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#define PRUSS_CFG_SYSCFG 0x04
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#define PRUSS_CFG_GPCFG(x) (0x08 + (x) * 4)
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#define PRUSS_CFG_CGR 0x10
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#define PRUSS_CFG_ISRP 0x14
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#define PRUSS_CFG_ISP 0x18
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#define PRUSS_CFG_IESP 0x1C
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#define PRUSS_CFG_IECP 0x20
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#define PRUSS_CFG_SCRP 0x24
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#define PRUSS_CFG_PMAO 0x28
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#define PRUSS_CFG_MII_RT 0x2C
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#define PRUSS_CFG_IEPCLK 0x30
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#define PRUSS_CFG_SPP 0x34
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#define PRUSS_CFG_PIN_MX 0x40
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/* PRUSS_GPCFG register bits */
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#define PRUSS_GPCFG_PRU_GPO_SH_SEL BIT(25)
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#define PRUSS_GPCFG_PRU_DIV1_SHIFT 20
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#define PRUSS_GPCFG_PRU_DIV1_MASK GENMASK(24, 20)
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#define PRUSS_GPCFG_PRU_DIV0_SHIFT 15
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#define PRUSS_GPCFG_PRU_DIV0_MASK GENMASK(15, 19)
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#define PRUSS_GPCFG_PRU_GPO_MODE BIT(14)
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#define PRUSS_GPCFG_PRU_GPO_MODE_DIRECT 0
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#define PRUSS_GPCFG_PRU_GPO_MODE_SERIAL BIT(14)
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#define PRUSS_GPCFG_PRU_GPI_SB BIT(13)
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#define PRUSS_GPCFG_PRU_GPI_DIV1_SHIFT 8
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#define PRUSS_GPCFG_PRU_GPI_DIV1_MASK GENMASK(12, 8)
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#define PRUSS_GPCFG_PRU_GPI_DIV0_SHIFT 3
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#define PRUSS_GPCFG_PRU_GPI_DIV0_MASK GENMASK(7, 3)
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#define PRUSS_GPCFG_PRU_GPI_CLK_MODE_POSITIVE 0
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#define PRUSS_GPCFG_PRU_GPI_CLK_MODE_NEGATIVE BIT(2)
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#define PRUSS_GPCFG_PRU_GPI_CLK_MODE BIT(2)
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#define PRUSS_GPCFG_PRU_GPI_MODE_MASK GENMASK(1, 0)
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#define PRUSS_GPCFG_PRU_GPI_MODE_SHIFT 0
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#define PRUSS_GPCFG_PRU_MUX_SEL_SHIFT 26
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#define PRUSS_GPCFG_PRU_MUX_SEL_MASK GENMASK(29, 26)
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/* PRUSS_MII_RT register bits */
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#define PRUSS_MII_RT_EVENT_EN BIT(0)
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/* PRUSS_SPP register bits */
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#define PRUSS_SPP_PRU1_PAD_HP_EN BIT(0)
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#define PRUSS_SPP_XFER_SHIFT_EN BIT(1)
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#define PRUSS_SPP_XFR_BYTE_SHIFT_EN BIT(2)
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#define PRUSS_SPP_RTU_XFR_SHIFT_EN BIT(3)
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/**
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* enum pruss_gp_mux_sel - PRUSS GPI/O Mux modes for the
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* PRUSS_GPCFG0/1 registers
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*
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* NOTE: The below defines are the most common values, but there
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* are some exceptions like on 66AK2G, where the RESERVED and MII2
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* values are interchanged. Also, this bit-field does not exist on
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* AM335x SoCs
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*/
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enum pruss_gp_mux_sel {
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PRUSS_GP_MUX_SEL_GP = 0,
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PRUSS_GP_MUX_SEL_ENDAT,
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PRUSS_GP_MUX_SEL_RESERVED,
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PRUSS_GP_MUX_SEL_SD,
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PRUSS_GP_MUX_SEL_MII2,
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PRUSS_GP_MUX_SEL_MAX,
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};
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/**
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* enum pruss_gpi_mode - PRUSS GPI configuration modes, used
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* to program the PRUSS_GPCFG0/1 registers
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*/
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enum pruss_gpi_mode {
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PRUSS_GPI_MODE_DIRECT = 0,
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PRUSS_GPI_MODE_PARALLEL,
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PRUSS_GPI_MODE_28BIT_SHIFT,
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PRUSS_GPI_MODE_MII,
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};
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/**
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* enum pruss_pru_id - PRU core identifiers
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*/
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enum pruss_pru_id {
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PRUSS_PRU0 = 0,
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PRUSS_PRU1,
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PRUSS_NUM_PRUS,
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};
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/**
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* enum pru_ctable_idx - Configurable Constant table index identifiers
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*/
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enum pru_ctable_idx {
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PRU_C24 = 0,
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PRU_C25,
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PRU_C26,
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PRU_C27,
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PRU_C28,
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PRU_C29,
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PRU_C30,
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PRU_C31,
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};
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/**
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* enum pruss_mem - PRUSS memory range identifiers
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*/
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enum pruss_mem {
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PRUSS_MEM_DRAM0 = 0,
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PRUSS_MEM_DRAM1,
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PRUSS_MEM_SHRD_RAM2,
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PRUSS_MEM_MAX,
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};
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/**
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* struct pruss_mem_region - PRUSS memory region structure
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* @va: kernel virtual address of the PRUSS memory region
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* @pa: physical (bus) address of the PRUSS memory region
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* @size: size of the PRUSS memory region
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*/
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struct pruss_mem_region {
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void __iomem *va;
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phys_addr_t pa;
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size_t size;
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};
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/**
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* struct pruss - PRUSS parent structure
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* @dev: pruss device pointer
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* @cfg: regmap for config region
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* @mem_regions: data for each of the PRUSS memory regions
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* @mem_in_use: to indicate if memory resource is in use
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*/
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struct pruss {
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struct udevice *dev;
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struct regmap *cfg;
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struct pruss_mem_region mem_regions[PRUSS_MEM_MAX];
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struct pruss_mem_region *mem_in_use[PRUSS_MEM_MAX];
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};
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int pruss_request_tm_region(struct udevice *dev, phys_addr_t *loc);
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int pruss_request_mem_region(struct udevice *dev, enum pruss_mem mem_id,
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struct pruss_mem_region *region);
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int pruss_release_mem_region(struct udevice *dev, struct pruss_mem_region *region);
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int pruss_cfg_update(struct udevice *dev, unsigned int reg,
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unsigned int mask, unsigned int val);
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/**
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* pruss_cfg_gpimode() - set the GPI mode of the PRU
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* @dev: the pruss device
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* @pru_id: the rproc instance handle of the PRU
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* @mode: GPI mode to set
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*
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* Sets the GPI mode for a given PRU by programming the
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* corresponding PRUSS_CFG_GPCFGx register
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*
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* Returns 0 on success, or an error code otherwise
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*/
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static inline int pruss_cfg_gpimode(struct udevice *dev, enum pruss_pru_id id,
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enum pruss_gpi_mode mode)
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{
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if (id < 0)
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return -EINVAL;
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return pruss_cfg_update(dev, PRUSS_CFG_GPCFG(id),
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PRUSS_GPCFG_PRU_GPI_MODE_MASK,
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mode << PRUSS_GPCFG_PRU_GPI_MODE_SHIFT);
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}
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/**
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* pruss_cfg_miirt_enable() - Enable/disable MII RT Events
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* @dev: the pruss device
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* @enable: enable/disable
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*
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* Enable/disable the MII RT Events for the PRUSS.
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*/
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static inline int pruss_cfg_miirt_enable(struct udevice *dev, bool enable)
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{
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u32 set = enable ? PRUSS_MII_RT_EVENT_EN : 0;
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return pruss_cfg_update(dev, PRUSS_CFG_MII_RT,
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PRUSS_MII_RT_EVENT_EN, set);
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}
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/**
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* pruss_cfg_xfr_enable() - Enable/disable XIN XOUT shift functionality
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* @dev: the pruss device
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* @enable: enable/disable
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*/
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static inline int pruss_cfg_xfr_enable(struct udevice *dev, bool enable)
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{
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u32 set = enable ? PRUSS_SPP_XFER_SHIFT_EN : 0;
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return pruss_cfg_update(dev, PRUSS_CFG_SPP,
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PRUSS_SPP_XFER_SHIFT_EN, set);
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}
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/**
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* pruss_cfg_set_gpmux() - set the GPMUX value for a PRU device
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* @pruss: pruss device
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* @pru_id: PRU identifier (0-1)
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* @mux: new mux value for PRU
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*/
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static inline int pruss_cfg_set_gpmux(struct udevice *dev,
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enum pruss_pru_id id, u8 mux)
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{
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if (mux >= PRUSS_GP_MUX_SEL_MAX)
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return -EINVAL;
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return pruss_cfg_update(dev, PRUSS_CFG_GPCFG(id),
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PRUSS_GPCFG_PRU_MUX_SEL_MASK,
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(u32)mux << PRUSS_GPCFG_PRU_MUX_SEL_SHIFT);
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}
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#endif /* __TI_PRUSS_H */
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