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https://github.com/AsahiLinux/u-boot
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6cf6fe2537
The Anbernic RGxx3 is a "pseudo-device" that encompasses the following devices: - Anbernic RG353M - Anbernic RG353P - Anbernic RG353V - Anbernic RG353VS - Anbernic RG503 The rk3566-anbernic-rgxx3.dtsi is synced with upstream Linux, but rk3566-anbernic-rgxx3.dts is a U-Boot specific devicetree that is used for all RGxx3 devices. Via the board.c file, the bootloader automatically sets the correct fdtfile, board, and board_name environment variables so that the correct devicetree can be passed to Linux. It is also possible to simply hard-code a single devicetree in the boot.scr file and use that to load Linux as well. The common specifications for each device are: - Rockchip RK3566 SoC - 2 external SDMMC slots - 1 USB-C host port, 1 USB-C peripheral port - 1 mini-HDMI output - MIPI-DSI based display panel - ADC controlled joysticks with a GPIO mux - GPIO buttons - A PWM controlled vibrator - An ADC controlled button All of the common features are defined in the devicetree synced from upstream Linux. TODO: DSI panel auto-detection for the RG353 devices (requires porting of DSI controller driver and DSI-DPHY driver to send DSI commands to the panel). Signed-off-by: Chris Morgan <macromorgan@hotmail.com> Reviewed-by: Kever Yang <kever.yang@rock-chips.com>
203 lines
4.1 KiB
C
203 lines
4.1 KiB
C
// SPDX-License-Identifier: GPL-2.0+
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/*
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* Copyright (c) 2023 Chris Morgan <macromorgan@hotmail.com>
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*/
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#include <abuf.h>
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#include <adc.h>
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#include <asm/io.h>
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#include <dm.h>
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#include <linux/delay.h>
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#include <pwm.h>
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#include <rng.h>
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#include <stdlib.h>
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#include <mmc.h>
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#include <env.h>
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#define GPIO0_BASE 0xfdd60000
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#define GPIO_SWPORT_DR_H 0x0004
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#define GPIO_SWPORT_DDR_H 0x000c
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#define GPIO_A5 BIT(5)
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#define GPIO_A6 BIT(6)
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#define GPIO_WRITEMASK(bits) ((bits) << 16)
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#define DTB_DIR "rockchip/"
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struct rg3xx_model {
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const char *board;
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const char *board_name;
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const char *fdtfile;
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};
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enum rgxx3_device_id {
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RG353M,
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RG353P,
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RG353V,
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RG353VS,
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RG503,
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};
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static const struct rg3xx_model rg3xx_model_details[] = {
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[RG353M] = {
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"rk3566-anbernic-rg353m",
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"RG353M",
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DTB_DIR "rk3566-anbernic-rg353m.dtb",
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},
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[RG353P] = {
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"rk3566-anbernic-rg353p",
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"RG353P",
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DTB_DIR "rk3566-anbernic-rg353p.dtb",
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},
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[RG353V] = {
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"rk3566-anbernic-rg353v",
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"RG353V",
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DTB_DIR "rk3566-anbernic-rg353v.dtb",
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},
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[RG353VS] = {
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"rk3566-anbernic-rg353vs",
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"RG353VS",
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DTB_DIR "rk3566-anbernic-rg353vs.dtb",
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},
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[RG503] = {
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"rk3566-anbernic-rg503",
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"RG503",
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DTB_DIR "rk3566-anbernic-rg503.dtb",
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},
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};
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/*
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* Start LED very early so user knows device is on. Set color
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* to amber.
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*/
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void spl_board_init(void)
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{
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/* Set GPIO0_A5 and GPIO0_A6 to output. */
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writel(GPIO_WRITEMASK(GPIO_A6 | GPIO_A5) | (GPIO_A6 | GPIO_A5),
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(GPIO0_BASE + GPIO_SWPORT_DDR_H));
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/* Set GPIO0_A5 to 0 and GPIO0_A6 to 1. */
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writel(GPIO_WRITEMASK(GPIO_A6 | GPIO_A5) | GPIO_A6,
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(GPIO0_BASE + GPIO_SWPORT_DR_H));
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}
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/* Use hardware rng to seed Linux random. */
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int board_rng_seed(struct abuf *buf)
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{
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struct udevice *dev;
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size_t len = 0x8;
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u64 *data;
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data = malloc(len);
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if (!data) {
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printf("Out of memory\n");
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return -ENOMEM;
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}
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if (uclass_get_device(UCLASS_RNG, 0, &dev) || !dev) {
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printf("No RNG device\n");
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return -ENODEV;
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}
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if (dm_rng_read(dev, data, len)) {
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printf("Reading RNG failed\n");
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return -EIO;
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}
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abuf_init_set(buf, data, len);
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return 0;
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}
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/*
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* Buzz the buzzer so the user knows something is going on. Make it
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* optional in case PWM is disabled.
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*/
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void __maybe_unused startup_buzz(void)
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{
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struct udevice *dev;
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int err;
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err = uclass_get_device(UCLASS_PWM, 0, &dev);
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if (err)
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printf("pwm not found\n");
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pwm_set_enable(dev, 0, 1);
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mdelay(200);
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pwm_set_enable(dev, 0, 0);
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}
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/* Detect which Anbernic RGXX3 device we are using so as to load the
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* correct devicetree for Linux. Set an environment variable once
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* found. The detection depends on the value of ADC channel 1, the
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* presence of an eMMC on mmc0, and querying the DSI panel (TODO).
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*/
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int rgxx3_detect_device(void)
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{
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u32 adc_info;
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int ret;
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int board_id = -ENXIO;
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struct mmc *mmc;
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ret = adc_channel_single_shot("saradc@fe720000", 1, &adc_info);
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if (ret) {
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printf("Read SARADC failed with error %d\n", ret);
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return ret;
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}
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/* Observed value 517. */
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if (adc_info > 505 && adc_info < 530)
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board_id = RG353M;
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/* Observed value 695. */
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if (adc_info > 680 && adc_info < 710)
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board_id = RG353V;
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/* Documented value 860. */
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if (adc_info > 850 && adc_info < 870)
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board_id = RG353P;
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/* Observed value 1023. */
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if (adc_info > 1010)
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board_id = RG503;
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/*
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* Try to access the eMMC on an RG353V. If it's missing, it's
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* an RG353VS. Note we could also check for a touchscreen at
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* 0x1a on i2c2.
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*/
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if (board_id == RG353V) {
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mmc = find_mmc_device(0);
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if (mmc) {
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ret = mmc_init(mmc);
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if (ret)
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board_id = RG353VS;
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}
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}
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if (board_id < 0)
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return board_id;
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env_set("board", rg3xx_model_details[board_id].board);
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env_set("board_name",
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rg3xx_model_details[board_id].board_name);
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env_set("fdtfile", rg3xx_model_details[board_id].fdtfile);
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return 0;
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}
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int rk_board_late_init(void)
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{
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int ret;
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/* Turn off orange LED and turn on green LED. */
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writel(GPIO_WRITEMASK(GPIO_A6 | GPIO_A5) | GPIO_A5,
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(GPIO0_BASE + GPIO_SWPORT_DR_H));
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ret = rgxx3_detect_device();
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if (ret) {
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printf("Unable to detect device type: %d\n", ret);
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return ret;
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}
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if (IS_ENABLED(CONFIG_DM_PWM))
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startup_buzz();
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return 0;
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}
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