22c5f96c6b
Some u-boot versions for QCA955x change the delays based on the link speed during boot. This usually breaks the support of other linkspeeds when OpenWrt is booted. It also conflicts with the at803x_platform_data::fixup_rgmii_tx_delay. OpenWrt has to set its own values in QCA955X_GMAC_REG_ETH_CFG. The default RGMII values from the Atheros u-boot are currently used to preset the existing mach files. These may have to be adjusted for boards using different values but which are not currently set them explicitely in OpenWrt. Signed-off-by: Sven Eckelmann <sven.eckelmann@open-mesh.com> Cc: Gabor Juhos <juhosg@openwrt.org> Cc: Imre Kaloz <kaloz@openwrt.org> Cc: Christian Beier <cb@shoutrlabs.com> Cc: Chris R Blake <chrisrblake93@gmail.com> Cc: Benjamin Berg <benjamin@sipsolutions.net> Cc: Heiner Kallweit <hkallweit1@gmail.com> Cc: Cezary Jackiewicz <cezary.jackiewicz@gmail.com> Cc: Matthias Schiffer <mschiffer@universe-factory.net> Cc: Dirk Neukirchen <dirkneukirchen@web.de> Cc: Christian Mehlis <christian@m3hlis.de> Cc: Luka Perkov <luka@openwrt.org> Cc: Felix Fietkau <nbd@openwrt.org> SVN-Revision: 49029
177 lines
4.2 KiB
C
177 lines
4.2 KiB
C
/*
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* EnGenius EPG5000 board support
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*
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* Copyright (c) 2014 Jon Suphammer <jon@suphammer.net>
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* Copyright (c) 2015 Christian Beier <cb@shoutrlabs.com>
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*
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* This program is free software; you can redistribute it and/or modify it
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* under the terms of the GNU General Public License version 2 as published
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* by the Free Software Foundation.
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*/
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#include <linux/platform_device.h>
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#include <linux/ar8216_platform.h>
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#include <asm/mach-ath79/ar71xx_regs.h>
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#include "common.h"
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#include "pci.h"
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#include "dev-ap9x-pci.h"
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#include "dev-gpio-buttons.h"
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#include "dev-eth.h"
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#include "dev-leds-gpio.h"
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#include "dev-m25p80.h"
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#include "dev-usb.h"
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#include "dev-wmac.h"
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#include "machtypes.h"
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#include "nvram.h"
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#define EPG5000_GPIO_LED_WLAN_5G 23
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#define EPG5000_GPIO_LED_WLAN_2G 13
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#define EPG5000_GPIO_LED_POWER_AMBER 2
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#define EPG5000_GPIO_LED_WPS_AMBER 22
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#define EPG5000_GPIO_LED_WPS_BLUE 19
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#define EPG5000_GPIO_BTN_WPS 16
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#define EPG5000_GPIO_BTN_RESET 17
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#define EPG5000_KEYS_POLL_INTERVAL 20 /* msecs */
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#define EPG5000_KEYS_DEBOUNCE_INTERVAL (3 * EPG5000_KEYS_POLL_INTERVAL)
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#define EPG5000_CALDATA_ADDR 0x1fff0000
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#define EPG5000_WMAC_CALDATA_OFFSET 0x1000
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#define EPG5000_PCIE_CALDATA_OFFSET 0x5000
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#define EPG5000_NVRAM_ADDR 0x1f030000
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#define EPG5000_NVRAM_SIZE 0x10000
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static struct gpio_led epg5000_leds_gpio[] __initdata = {
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{
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.name = "epg5000:amber:power",
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.gpio = EPG5000_GPIO_LED_POWER_AMBER,
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.active_low = 1,
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},
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{
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.name = "epg5000:blue:wps",
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.gpio = EPG5000_GPIO_LED_WPS_BLUE,
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.active_low = 1,
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},
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{
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.name = "epg5000:amber:wps",
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.gpio = EPG5000_GPIO_LED_WPS_AMBER,
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.active_low = 1,
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},
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{
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.name = "epg5000:blue:wlan-2g",
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.gpio = EPG5000_GPIO_LED_WLAN_2G,
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.active_low = 1,
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},
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{
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.name = "epg5000:blue:wlan-5g",
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.gpio = EPG5000_GPIO_LED_WLAN_5G,
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.active_low = 1,
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}
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};
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static struct gpio_keys_button epg5000_gpio_keys[] __initdata = {
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{
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.desc = "WPS button",
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.type = EV_KEY,
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.code = KEY_WPS_BUTTON,
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.debounce_interval = EPG5000_KEYS_DEBOUNCE_INTERVAL,
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.gpio = EPG5000_GPIO_BTN_WPS,
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.active_low = 1,
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},
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{
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.desc = "Reset button",
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.type = EV_KEY,
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.code = KEY_RESTART,
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.debounce_interval = EPG5000_KEYS_DEBOUNCE_INTERVAL,
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.gpio = EPG5000_GPIO_BTN_RESET,
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.active_low = 1,
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},
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};
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static struct ar8327_pad_cfg epg5000_ar8327_pad0_cfg = {
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.mode = AR8327_PAD_MAC_RGMII,
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.txclk_delay_en = true,
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.rxclk_delay_en = true,
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.txclk_delay_sel = AR8327_CLK_DELAY_SEL2,
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.rxclk_delay_sel = AR8327_CLK_DELAY_SEL2,
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};
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static struct ar8327_platform_data epg5000_ar8327_data = {
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.pad0_cfg = &epg5000_ar8327_pad0_cfg,
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.port0_cfg = {
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.force_link = 1,
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.speed = AR8327_PORT_SPEED_1000,
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.duplex = 1,
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.txpause = 1,
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.rxpause = 1,
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},
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};
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static struct mdio_board_info epg5000_mdio0_info[] = {
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{
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.bus_id = "ag71xx-mdio.0",
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.phy_addr = 0,
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.platform_data = &epg5000_ar8327_data,
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},
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};
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static int epg5000_get_mac(const char *name, char *mac)
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{
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u8 *nvram = (u8 *) KSEG1ADDR(EPG5000_NVRAM_ADDR);
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int err;
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err = ath79_nvram_parse_mac_addr(nvram, EPG5000_NVRAM_SIZE,
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name, mac);
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if (err) {
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pr_err("no MAC address found for %s\n", name);
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return false;
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}
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return true;
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}
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static void __init epg5000_setup(void)
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{
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u8 *caldata = (u8 *) KSEG1ADDR(EPG5000_CALDATA_ADDR);
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u8 mac1[ETH_ALEN];
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ath79_register_m25p80(NULL);
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ath79_register_leds_gpio(-1, ARRAY_SIZE(epg5000_leds_gpio),
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epg5000_leds_gpio);
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ath79_register_gpio_keys_polled(-1, EPG5000_KEYS_POLL_INTERVAL,
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ARRAY_SIZE(epg5000_gpio_keys),
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epg5000_gpio_keys);
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ath79_register_usb();
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ath79_setup_qca955x_eth_cfg(QCA955X_ETH_CFG_RGMII_EN, 3, 3, 0, 0);
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ath79_register_mdio(0, 0x0);
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mdiobus_register_board_info(epg5000_mdio0_info,
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ARRAY_SIZE(epg5000_mdio0_info));
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/* GMAC0 is connected to an QCA8327N switch */
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ath79_eth0_data.phy_if_mode = PHY_INTERFACE_MODE_RGMII;
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ath79_eth0_data.phy_mask = BIT(0);
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ath79_eth0_data.mii_bus_dev = &ath79_mdio0_device.dev;
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if (epg5000_get_mac("ethaddr=", mac1))
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ath79_init_mac(ath79_eth0_data.mac_addr, mac1, 0);
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ath79_eth0_pll_data.pll_1000 = 0xa6000000;
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ath79_register_eth(0);
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ath79_register_wmac(caldata + EPG5000_WMAC_CALDATA_OFFSET, mac1);
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ath79_register_pci();
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}
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MIPS_MACHINE(ATH79_MACH_EPG5000, "EPG5000",
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"EnGenius EPG5000",
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epg5000_setup);
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