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Lokesh Vutla0911d952018-08-27 15:59:06 +05301// SPDX-License-Identifier: GPL-2.0+
2/*
3 * Board specific initialization for AM654 EVM
4 *
Nishanth Menona94a4072023-11-01 15:56:03 -05005 * Copyright (C) 2017-2018 Texas Instruments Incorporated - https://www.ti.com/
Lokesh Vutla0911d952018-08-27 15:59:06 +05306 * Lokesh Vutla <lokeshvutla@ti.com>
7 *
8 */
9
10#include <common.h>
Andreas Dannenberg03facc72019-06-04 18:08:26 -050011#include <dm.h>
Simon Glass4d72caa2020-05-10 11:40:01 -060012#include <fdt_support.h>
13#include <image.h>
Simon Glass67c4e9f2019-11-14 12:57:45 -070014#include <init.h>
Simon Glass90526e92020-05-10 11:39:56 -060015#include <net.h>
Andreas Dannenberg03facc72019-06-04 18:08:26 -050016#include <asm/arch/hardware.h>
Simon Glass401d1c42020-10-30 21:38:53 -060017#include <asm/global_data.h>
Andreas Dannenberg03facc72019-06-04 18:08:26 -050018#include <asm/gpio.h>
Lokesh Vutla0911d952018-08-27 15:59:06 +053019#include <asm/io.h>
Andreas Dannenberg03facc72019-06-04 18:08:26 -050020#include <asm/omap_common.h>
Simon Glass9fb625c2019-08-01 09:46:51 -060021#include <env.h>
Lokesh Vutla0911d952018-08-27 15:59:06 +053022#include <spl.h>
Simon Glass1e94b462023-09-14 18:21:46 -060023#include <linux/printk.h>
Lokesh Vutla0911d952018-08-27 15:59:06 +053024
Andreas Dannenberg03facc72019-06-04 18:08:26 -050025#include "../common/board_detect.h"
26
27#define board_is_am65x_base_board() board_ti_is("AM6-COMPROCEVM")
28
29/* Daughter card presence detection signals */
30enum {
31 AM65X_EVM_APP_BRD_DET,
32 AM65X_EVM_LCD_BRD_DET,
33 AM65X_EVM_SERDES_BRD_DET,
34 AM65X_EVM_HDMI_GPMC_BRD_DET,
35 AM65X_EVM_BRD_DET_COUNT,
36};
37
38/* Max number of MAC addresses that are parsed/processed per daughter card */
39#define DAUGHTER_CARD_NO_OF_MAC_ADDR 8
40
Aswath Govindraju6f9d4142020-11-20 21:18:53 +053041/* Regiter that controls the SERDES0 lane and clock assignment */
42#define CTRLMMR_SERDES0_CTRL 0x00104080
43#define PCIE_LANE0 0x1
44
Lokesh Vutla0911d952018-08-27 15:59:06 +053045DECLARE_GLOBAL_DATA_PTR;
46
47int board_init(void)
48{
49 return 0;
50}
51
52int dram_init(void)
53{
54#ifdef CONFIG_PHYS_64BIT
55 gd->ram_size = 0x100000000;
56#else
57 gd->ram_size = 0x80000000;
58#endif
59
60 return 0;
61}
62
Heinrich Schuchardtd768dd82023-08-12 20:16:58 +020063phys_addr_t board_get_usable_ram_top(phys_size_t total_size)
Lokesh Vutla0911d952018-08-27 15:59:06 +053064{
65#ifdef CONFIG_PHYS_64BIT
66 /* Limit RAM used by U-Boot to the DDR low region */
67 if (gd->ram_top > 0x100000000)
68 return 0x100000000;
69#endif
70
71 return gd->ram_top;
72}
73
74int dram_init_banksize(void)
75{
76 /* Bank 0 declares the memory available in the DDR low region */
Tom Riniaa6e94d2022-11-16 13:10:37 -050077 gd->bd->bi_dram[0].start = CFG_SYS_SDRAM_BASE;
Lokesh Vutla0911d952018-08-27 15:59:06 +053078 gd->bd->bi_dram[0].size = 0x80000000;
Jan Kiszkac02712a2020-05-18 07:57:22 +020079 gd->ram_size = 0x80000000;
Lokesh Vutla0911d952018-08-27 15:59:06 +053080
81#ifdef CONFIG_PHYS_64BIT
82 /* Bank 1 declares the memory available in the DDR high region */
Tom Riniaa6e94d2022-11-16 13:10:37 -050083 gd->bd->bi_dram[1].start = CFG_SYS_SDRAM_BASE1;
Lokesh Vutla0911d952018-08-27 15:59:06 +053084 gd->bd->bi_dram[1].size = 0x80000000;
Jan Kiszkac02712a2020-05-18 07:57:22 +020085 gd->ram_size = 0x100000000;
Lokesh Vutla0911d952018-08-27 15:59:06 +053086#endif
87
88 return 0;
89}
Lokesh Vutlaea8ad1d2018-08-27 15:59:08 +053090
91#ifdef CONFIG_SPL_LOAD_FIT
92int board_fit_config_name_match(const char *name)
93{
94#ifdef CONFIG_TARGET_AM654_A53_EVM
95 if (!strcmp(name, "k3-am654-base-board"))
96 return 0;
97#endif
98
99 return -1;
100}
101#endif
Lokesh Vutla5582c032019-03-08 11:47:35 +0530102
Christian Gmeinerf7fbe542022-02-15 07:47:55 +0100103#ifdef CONFIG_TI_I2C_BOARD_DETECT
Andreas Dannenberg03facc72019-06-04 18:08:26 -0500104int do_board_detect(void)
105{
106 int ret;
107
108 ret = ti_i2c_eeprom_am6_get_base(CONFIG_EEPROM_BUS_ADDRESS,
109 CONFIG_EEPROM_CHIP_ADDRESS);
110 if (ret)
111 pr_err("Reading on-board EEPROM at 0x%02x failed %d\n",
112 CONFIG_EEPROM_CHIP_ADDRESS, ret);
113
114 return ret;
115}
116
Lokesh Vutlabd8f1382019-09-27 13:32:12 +0530117int checkboard(void)
118{
119 struct ti_am6_eeprom *ep = TI_AM6_EEPROM_DATA;
120
121 if (do_board_detect())
122 /* EEPROM not populated */
123 printf("Board: %s rev %s\n", "AM6-COMPROCEVM", "E3");
124 else
125 printf("Board: %s rev %s\n", ep->name, ep->version);
126
127 return 0;
128}
129
Andreas Dannenberg03facc72019-06-04 18:08:26 -0500130static void setup_board_eeprom_env(void)
131{
132 char *name = "am65x";
133
134 if (do_board_detect())
135 goto invalid_eeprom;
136
137 if (board_is_am65x_base_board())
138 name = "am65x";
139 else
140 printf("Unidentified board claims %s in eeprom header\n",
141 board_ti_get_name());
142
143invalid_eeprom:
144 set_board_info_env_am6(name);
145}
146
147static int init_daughtercard_det_gpio(char *gpio_name, struct gpio_desc *desc)
148{
149 int ret;
150
151 memset(desc, 0, sizeof(*desc));
152
153 ret = dm_gpio_lookup_name(gpio_name, desc);
154 if (ret < 0)
155 return ret;
156
157 /* Request GPIO, simply re-using the name as label */
158 ret = dm_gpio_request(desc, gpio_name);
159 if (ret < 0)
160 return ret;
161
162 return dm_gpio_set_dir_flags(desc, GPIOD_IS_IN);
163}
164
165static int probe_daughtercards(void)
166{
167 struct ti_am6_eeprom ep;
168 struct gpio_desc board_det_gpios[AM65X_EVM_BRD_DET_COUNT];
169 char mac_addr[DAUGHTER_CARD_NO_OF_MAC_ADDR][TI_EEPROM_HDR_ETH_ALEN];
170 u8 mac_addr_cnt;
171 char name_overlays[1024] = { 0 };
172 int i, j;
173 int ret;
174
175 /*
176 * Daughter card presence detection signal name to GPIO (via I2C I/O
177 * expander @ address 0x38) name and EEPROM I2C address mapping.
178 */
179 const struct {
180 char *gpio_name;
181 u8 i2c_addr;
182 } slot_map[AM65X_EVM_BRD_DET_COUNT] = {
183 { "gpio@38_0", 0x52, }, /* AM65X_EVM_APP_BRD_DET */
184 { "gpio@38_1", 0x55, }, /* AM65X_EVM_LCD_BRD_DET */
185 { "gpio@38_2", 0x54, }, /* AM65X_EVM_SERDES_BRD_DET */
186 { "gpio@38_3", 0x53, }, /* AM65X_EVM_HDMI_GPMC_BRD_DET */
187 };
188
189 /* Declaration of daughtercards to probe */
190 const struct {
191 u8 slot_index; /* Slot the card is installed */
192 char *card_name; /* EEPROM-programmed card name */
193 char *dtbo_name; /* Device tree overlay to apply */
194 u8 eth_offset; /* ethXaddr MAC address index offset */
195 } cards[] = {
196 {
197 AM65X_EVM_APP_BRD_DET,
198 "AM6-GPAPPEVM",
199 "k3-am654-gp.dtbo",
200 0,
201 },
202 {
203 AM65X_EVM_APP_BRD_DET,
204 "AM6-IDKAPPEVM",
205 "k3-am654-idk.dtbo",
206 3,
207 },
208 {
209 AM65X_EVM_SERDES_BRD_DET,
210 "SER-PCIE2LEVM",
211 "k3-am654-pcie-usb2.dtbo",
212 0,
213 },
214 {
215 AM65X_EVM_SERDES_BRD_DET,
216 "SER-PCIEUSBEVM",
217 "k3-am654-pcie-usb3.dtbo",
218 0,
219 },
220 {
221 AM65X_EVM_LCD_BRD_DET,
222 "OLDI-LCD1EVM",
223 "k3-am654-evm-oldi-lcd1evm.dtbo",
224 0,
225 },
226 };
227
228 /*
229 * Initialize GPIO used for daughtercard slot presence detection and
230 * keep the resulting handles in local array for easier access.
231 */
232 for (i = 0; i < AM65X_EVM_BRD_DET_COUNT; i++) {
233 ret = init_daughtercard_det_gpio(slot_map[i].gpio_name,
234 &board_det_gpios[i]);
235 if (ret < 0)
236 return ret;
237 }
238
239 for (i = 0; i < ARRAY_SIZE(cards); i++) {
240 /* Obtain card-specific slot index and associated I2C address */
241 u8 slot_index = cards[i].slot_index;
242 u8 i2c_addr = slot_map[slot_index].i2c_addr;
243
244 /*
245 * The presence detection signal is active-low, hence skip
246 * over this card slot if anything other than 0 is returned.
247 */
248 ret = dm_gpio_get_value(&board_det_gpios[slot_index]);
249 if (ret < 0)
250 return ret;
251 else if (ret)
252 continue;
253
254 /* Get and parse the daughter card EEPROM record */
255 ret = ti_i2c_eeprom_am6_get(CONFIG_EEPROM_BUS_ADDRESS, i2c_addr,
256 &ep,
257 (char **)mac_addr,
258 DAUGHTER_CARD_NO_OF_MAC_ADDR,
259 &mac_addr_cnt);
260 if (ret) {
261 pr_err("Reading daughtercard EEPROM at 0x%02x failed %d\n",
262 i2c_addr, ret);
263 /*
264 * Even this is pretty serious let's just skip over
265 * this particular daughtercard, rather than ending
266 * the probing process altogether.
267 */
268 continue;
269 }
270
271 /* Only process the parsed data if we found a match */
272 if (strncmp(ep.name, cards[i].card_name, sizeof(ep.name)))
273 continue;
274
Lokesh Vutlabd8f1382019-09-27 13:32:12 +0530275 printf("Detected: %s rev %s\n", ep.name, ep.version);
Andreas Dannenberg03facc72019-06-04 18:08:26 -0500276
277 /*
278 * Populate any MAC addresses from daughtercard into the U-Boot
279 * environment, starting with a card-specific offset so we can
280 * have multiple cards contribute to the MAC pool in a well-
281 * defined manner.
282 */
283 for (j = 0; j < mac_addr_cnt; j++) {
284 if (!is_valid_ethaddr((u8 *)mac_addr[j]))
285 continue;
286
287 eth_env_set_enetaddr_by_index("eth",
288 cards[i].eth_offset + j,
289 (uchar *)mac_addr[j]);
290 }
291
Aswath Govindraju6f9d4142020-11-20 21:18:53 +0530292 /*
293 * It has been observed that setting SERDES0 lane mux to USB prevents USB
294 * 2.0 operation on USB0. Setting SERDES0 lane mux to non-USB when USB0 is
295 * used in USB 2.0 only mode solves this issue. For USB3.0+2.0 operation
296 * this issue is not present.
297 *
298 * Implement this workaround by writing 1 to LANE_FUNC_SEL field in
299 * CTRLMMR_SERDES0_CTRL register.
300 */
301 if (!strncmp(ep.name, "SER-PCIE2LEVM", sizeof(ep.name)))
302 writel(PCIE_LANE0, CTRLMMR_SERDES0_CTRL);
303
Andreas Dannenberg03facc72019-06-04 18:08:26 -0500304 /* Skip if no overlays are to be added */
305 if (!strlen(cards[i].dtbo_name))
306 continue;
307
308 /*
309 * Make sure we are not running out of buffer space by checking
310 * if we can fit the new overlay, a trailing space to be used
311 * as a separator, plus the terminating zero.
312 */
313 if (strlen(name_overlays) + strlen(cards[i].dtbo_name) + 2 >
314 sizeof(name_overlays))
315 return -ENOMEM;
316
317 /* Append to our list of overlays */
318 strcat(name_overlays, cards[i].dtbo_name);
319 strcat(name_overlays, " ");
320 }
321
322 /* Apply device tree overlay(s) to the U-Boot environment, if any */
323 if (strlen(name_overlays))
324 return env_set("name_overlays", name_overlays);
325
326 return 0;
327}
Christian Gmeinerf7fbe542022-02-15 07:47:55 +0100328#endif
Andreas Dannenberg03facc72019-06-04 18:08:26 -0500329
330int board_late_init(void)
331{
Christian Gmeinerf7fbe542022-02-15 07:47:55 +0100332 if (IS_ENABLED(CONFIG_TI_I2C_BOARD_DETECT)) {
333 struct ti_am6_eeprom *ep = TI_AM6_EEPROM_DATA;
Andreas Dannenberg03facc72019-06-04 18:08:26 -0500334
Christian Gmeinerf7fbe542022-02-15 07:47:55 +0100335 setup_board_eeprom_env();
Andreas Dannenberg03facc72019-06-04 18:08:26 -0500336
Christian Gmeinerf7fbe542022-02-15 07:47:55 +0100337 /*
338 * The first MAC address for ethernet a.k.a. ethernet0 comes from
339 * efuse populated via the am654 gigabit eth switch subsystem driver.
340 * All the other ones are populated via EEPROM, hence continue with
341 * an index of 1.
342 */
343 board_ti_am6_set_ethaddr(1, ep->mac_addr_cnt);
Andreas Dannenberg03facc72019-06-04 18:08:26 -0500344
Christian Gmeinerf7fbe542022-02-15 07:47:55 +0100345 /* Check for and probe any plugged-in daughtercards */
346 probe_daughtercards();
347 }
Andreas Dannenberg03facc72019-06-04 18:08:26 -0500348
349 return 0;
350}