Merge branch 'master' of git://git.denx.de/u-boot-sunxi
[platform/kernel/u-boot.git] / board / st / stm32mp1 / stm32mp1.c
1 // SPDX-License-Identifier: GPL-2.0+ OR BSD-3-Clause
2 /*
3  * Copyright (C) 2018, STMicroelectronics - All Rights Reserved
4  */
5 #include <common.h>
6 #include <adc.h>
7 #include <config.h>
8 #include <clk.h>
9 #include <dm.h>
10 #include <g_dnl.h>
11 #include <generic-phy.h>
12 #include <i2c.h>
13 #include <led.h>
14 #include <misc.h>
15 #include <phy.h>
16 #include <reset.h>
17 #include <syscon.h>
18 #include <usb.h>
19 #include <asm/io.h>
20 #include <asm/gpio.h>
21 #include <asm/arch/stm32.h>
22 #include <power/regulator.h>
23 #include <usb/dwc2_udc.h>
24
25 /* SYSCFG registers */
26 #define SYSCFG_BOOTR            0x00
27 #define SYSCFG_PMCSETR          0x04
28 #define SYSCFG_IOCTRLSETR       0x18
29 #define SYSCFG_ICNR             0x1C
30 #define SYSCFG_CMPCR            0x20
31 #define SYSCFG_CMPENSETR        0x24
32 #define SYSCFG_PMCCLRR          0x44
33
34 #define SYSCFG_BOOTR_BOOT_MASK          GENMASK(2, 0)
35 #define SYSCFG_BOOTR_BOOTPD_SHIFT       4
36
37 #define SYSCFG_IOCTRLSETR_HSLVEN_TRACE          BIT(0)
38 #define SYSCFG_IOCTRLSETR_HSLVEN_QUADSPI        BIT(1)
39 #define SYSCFG_IOCTRLSETR_HSLVEN_ETH            BIT(2)
40 #define SYSCFG_IOCTRLSETR_HSLVEN_SDMMC          BIT(3)
41 #define SYSCFG_IOCTRLSETR_HSLVEN_SPI            BIT(4)
42
43 #define SYSCFG_CMPCR_SW_CTRL            BIT(1)
44 #define SYSCFG_CMPCR_READY              BIT(8)
45
46 #define SYSCFG_CMPENSETR_MPU_EN         BIT(0)
47
48 #define SYSCFG_PMCSETR_ETH_CLK_SEL      BIT(16)
49 #define SYSCFG_PMCSETR_ETH_REF_CLK_SEL  BIT(17)
50
51 #define SYSCFG_PMCSETR_ETH_SELMII       BIT(20)
52
53 #define SYSCFG_PMCSETR_ETH_SEL_MASK     GENMASK(23, 21)
54 #define SYSCFG_PMCSETR_ETH_SEL_GMII_MII (0 << 21)
55 #define SYSCFG_PMCSETR_ETH_SEL_RGMII    (1 << 21)
56 #define SYSCFG_PMCSETR_ETH_SEL_RMII     (4 << 21)
57
58 /*
59  * Get a global data pointer
60  */
61 DECLARE_GLOBAL_DATA_PTR;
62
63 #define USB_WARNING_LOW_THRESHOLD_UV    660000
64 #define USB_START_LOW_THRESHOLD_UV      1230000
65 #define USB_START_HIGH_THRESHOLD_UV     2100000
66
67 int checkboard(void)
68 {
69         int ret;
70         char *mode;
71         u32 otp;
72         struct udevice *dev;
73         const char *fdt_compat;
74         int fdt_compat_len;
75
76         if (IS_ENABLED(CONFIG_STM32MP1_TRUSTED))
77                 mode = "trusted";
78         else
79                 mode = "basic";
80
81         printf("Board: stm32mp1 in %s mode", mode);
82         fdt_compat = fdt_getprop(gd->fdt_blob, 0, "compatible",
83                                  &fdt_compat_len);
84         if (fdt_compat && fdt_compat_len)
85                 printf(" (%s)", fdt_compat);
86         puts("\n");
87
88         ret = uclass_get_device_by_driver(UCLASS_MISC,
89                                           DM_GET_DRIVER(stm32mp_bsec),
90                                           &dev);
91
92         if (!ret)
93                 ret = misc_read(dev, STM32_BSEC_SHADOW(BSEC_OTP_BOARD),
94                                 &otp, sizeof(otp));
95         if (!ret && otp) {
96                 printf("Board: MB%04x Var%d Rev.%c-%02d\n",
97                        otp >> 16,
98                        (otp >> 12) & 0xF,
99                        ((otp >> 8) & 0xF) - 1 + 'A',
100                        otp & 0xF);
101         }
102
103         return 0;
104 }
105
106 static void board_key_check(void)
107 {
108 #if defined(CONFIG_FASTBOOT) || defined(CONFIG_CMD_STM32PROG)
109         ofnode node;
110         struct gpio_desc gpio;
111         enum forced_boot_mode boot_mode = BOOT_NORMAL;
112
113         node = ofnode_path("/config");
114         if (!ofnode_valid(node)) {
115                 debug("%s: no /config node?\n", __func__);
116                 return;
117         }
118 #ifdef CONFIG_FASTBOOT
119         if (gpio_request_by_name_nodev(node, "st,fastboot-gpios", 0,
120                                        &gpio, GPIOD_IS_IN)) {
121                 debug("%s: could not find a /config/st,fastboot-gpios\n",
122                       __func__);
123         } else {
124                 if (dm_gpio_get_value(&gpio)) {
125                         puts("Fastboot key pressed, ");
126                         boot_mode = BOOT_FASTBOOT;
127                 }
128
129                 dm_gpio_free(NULL, &gpio);
130         }
131 #endif
132 #ifdef CONFIG_CMD_STM32PROG
133         if (gpio_request_by_name_nodev(node, "st,stm32prog-gpios", 0,
134                                        &gpio, GPIOD_IS_IN)) {
135                 debug("%s: could not find a /config/st,stm32prog-gpios\n",
136                       __func__);
137         } else {
138                 if (dm_gpio_get_value(&gpio)) {
139                         puts("STM32Programmer key pressed, ");
140                         boot_mode = BOOT_STM32PROG;
141                 }
142                 dm_gpio_free(NULL, &gpio);
143         }
144 #endif
145
146         if (boot_mode != BOOT_NORMAL) {
147                 puts("entering download mode...\n");
148                 clrsetbits_le32(TAMP_BOOT_CONTEXT,
149                                 TAMP_BOOT_FORCED_MASK,
150                                 boot_mode);
151         }
152 #endif
153 }
154
155 #if defined(CONFIG_USB_GADGET) && defined(CONFIG_USB_GADGET_DWC2_OTG)
156
157 /* STMicroelectronics STUSB1600 Type-C controller */
158 #define STUSB1600_CC_CONNECTION_STATUS          0x0E
159
160 /* STUSB1600_CC_CONNECTION_STATUS bitfields */
161 #define STUSB1600_CC_ATTACH                     BIT(0)
162
163 static int stusb1600_init(struct udevice **dev_stusb1600)
164 {
165         ofnode node;
166         struct udevice *dev, *bus;
167         int ret;
168         u32 chip_addr;
169
170         *dev_stusb1600 = NULL;
171
172         /* if node stusb1600 is present, means DK1 or DK2 board */
173         node = ofnode_by_compatible(ofnode_null(), "st,stusb1600");
174         if (!ofnode_valid(node))
175                 return -ENODEV;
176
177         ret = ofnode_read_u32(node, "reg", &chip_addr);
178         if (ret)
179                 return -EINVAL;
180
181         ret = uclass_get_device_by_ofnode(UCLASS_I2C, ofnode_get_parent(node),
182                                           &bus);
183         if (ret) {
184                 printf("bus for stusb1600 not found\n");
185                 return -ENODEV;
186         }
187
188         ret = dm_i2c_probe(bus, chip_addr, 0, &dev);
189         if (!ret)
190                 *dev_stusb1600 = dev;
191
192         return ret;
193 }
194
195 static int stusb1600_cable_connected(struct udevice *dev)
196 {
197         u8 status;
198
199         if (dm_i2c_read(dev, STUSB1600_CC_CONNECTION_STATUS, &status, 1))
200                 return 0;
201
202         return status & STUSB1600_CC_ATTACH;
203 }
204
205 #include <usb/dwc2_udc.h>
206 int g_dnl_board_usb_cable_connected(void)
207 {
208         struct udevice *stusb1600;
209         struct udevice *dwc2_udc_otg;
210         int ret;
211
212         if (!stusb1600_init(&stusb1600))
213                 return stusb1600_cable_connected(stusb1600);
214
215         ret = uclass_get_device_by_driver(UCLASS_USB_GADGET_GENERIC,
216                                           DM_GET_DRIVER(dwc2_udc_otg),
217                                           &dwc2_udc_otg);
218         if (!ret)
219                 debug("dwc2_udc_otg init failed\n");
220
221         return dwc2_udc_B_session_valid(dwc2_udc_otg);
222 }
223 #endif /* CONFIG_USB_GADGET */
224
225 static int get_led(struct udevice **dev, char *led_string)
226 {
227         char *led_name;
228         int ret;
229
230         led_name = fdtdec_get_config_string(gd->fdt_blob, led_string);
231         if (!led_name) {
232                 pr_debug("%s: could not find %s config string\n",
233                          __func__, led_string);
234                 return -ENOENT;
235         }
236         ret = led_get_by_label(led_name, dev);
237         if (ret) {
238                 debug("%s: get=%d\n", __func__, ret);
239                 return ret;
240         }
241
242         return 0;
243 }
244
245 static int setup_led(enum led_state_t cmd)
246 {
247         struct udevice *dev;
248         int ret;
249
250         ret = get_led(&dev, "u-boot,boot-led");
251         if (ret)
252                 return ret;
253
254         ret = led_set_state(dev, cmd);
255         return ret;
256 }
257
258 static int board_check_usb_power(void)
259 {
260         struct ofnode_phandle_args adc_args;
261         struct udevice *adc;
262         struct udevice *led;
263         ofnode node;
264         unsigned int raw;
265         int max_uV = 0;
266         int ret, uV, adc_count;
267         u8 i, nb_blink;
268
269         node = ofnode_path("/config");
270         if (!ofnode_valid(node)) {
271                 debug("%s: no /config node?\n", __func__);
272                 return -ENOENT;
273         }
274
275         /*
276          * Retrieve the ADC channels devices and get measurement
277          * for each of them
278          */
279         adc_count = ofnode_count_phandle_with_args(node, "st,adc_usb_pd",
280                                                    "#io-channel-cells");
281         if (adc_count < 0) {
282                 if (adc_count == -ENOENT)
283                         return 0;
284
285                 pr_err("%s: can't find adc channel (%d)\n", __func__,
286                        adc_count);
287
288                 return adc_count;
289         }
290
291         for (i = 0; i < adc_count; i++) {
292                 if (ofnode_parse_phandle_with_args(node, "st,adc_usb_pd",
293                                                    "#io-channel-cells", 0, i,
294                                                    &adc_args)) {
295                         pr_debug("%s: can't find /config/st,adc_usb_pd\n",
296                                  __func__);
297                         return 0;
298                 }
299
300                 ret = uclass_get_device_by_ofnode(UCLASS_ADC, adc_args.node,
301                                                   &adc);
302
303                 if (ret) {
304                         pr_err("%s: Can't get adc device(%d)\n", __func__,
305                                ret);
306                         return ret;
307                 }
308
309                 ret = adc_channel_single_shot(adc->name, adc_args.args[0],
310                                               &raw);
311                 if (ret) {
312                         pr_err("%s: single shot failed for %s[%d]!\n",
313                                __func__, adc->name, adc_args.args[0]);
314                         return ret;
315                 }
316                 /* Convert to uV */
317                 if (!adc_raw_to_uV(adc, raw, &uV)) {
318                         if (uV > max_uV)
319                                 max_uV = uV;
320                         pr_debug("%s: %s[%02d] = %u, %d uV\n", __func__,
321                                  adc->name, adc_args.args[0], raw, uV);
322                 } else {
323                         pr_err("%s: Can't get uV value for %s[%d]\n",
324                                __func__, adc->name, adc_args.args[0]);
325                 }
326         }
327
328         /*
329          * If highest value is inside 1.23 Volts and 2.10 Volts, that means
330          * board is plugged on an USB-C 3A power supply and boot process can
331          * continue.
332          */
333         if (max_uV > USB_START_LOW_THRESHOLD_UV &&
334             max_uV < USB_START_HIGH_THRESHOLD_UV)
335                 return 0;
336
337         /* Display warning message and make u-boot,error-led blinking */
338         pr_err("\n*******************************************\n");
339
340         if (max_uV < USB_WARNING_LOW_THRESHOLD_UV) {
341                 pr_err("*   WARNING 500mA power supply detected   *\n");
342                 nb_blink = 2;
343         } else {
344                 pr_err("* WARNING 1.5A power supply detected      *\n");
345                 nb_blink = 3;
346         }
347
348         pr_err("* Current too low, use a 3A power supply! *\n");
349         pr_err("*******************************************\n\n");
350
351         ret = get_led(&led, "u-boot,error-led");
352         if (ret)
353                 return ret;
354
355         for (i = 0; i < nb_blink * 2; i++) {
356                 led_set_state(led, LEDST_TOGGLE);
357                 mdelay(125);
358         }
359         led_set_state(led, LEDST_ON);
360
361         return 0;
362 }
363
364 static void sysconf_init(void)
365 {
366 #ifndef CONFIG_STM32MP1_TRUSTED
367         u8 *syscfg;
368 #ifdef CONFIG_DM_REGULATOR
369         struct udevice *pwr_dev;
370         struct udevice *pwr_reg;
371         struct udevice *dev;
372         int ret;
373         u32 otp = 0;
374 #endif
375         u32 bootr;
376
377         syscfg = (u8 *)syscon_get_first_range(STM32MP_SYSCON_SYSCFG);
378
379         /* interconnect update : select master using the port 1 */
380         /* LTDC = AXI_M9 */
381         /* GPU  = AXI_M8 */
382         /* today information is hardcoded in U-Boot */
383         writel(BIT(9), syscfg + SYSCFG_ICNR);
384
385         /* disable Pull-Down for boot pin connected to VDD */
386         bootr = readl(syscfg + SYSCFG_BOOTR);
387         bootr &= ~(SYSCFG_BOOTR_BOOT_MASK << SYSCFG_BOOTR_BOOTPD_SHIFT);
388         bootr |= (bootr & SYSCFG_BOOTR_BOOT_MASK) << SYSCFG_BOOTR_BOOTPD_SHIFT;
389         writel(bootr, syscfg + SYSCFG_BOOTR);
390
391 #ifdef CONFIG_DM_REGULATOR
392         /* High Speed Low Voltage Pad mode Enable for SPI, SDMMC, ETH, QSPI
393          * and TRACE. Needed above ~50MHz and conditioned by AFMUX selection.
394          * The customer will have to disable this for low frequencies
395          * or if AFMUX is selected but the function not used, typically for
396          * TRACE. Otherwise, impact on power consumption.
397          *
398          * WARNING:
399          *   enabling High Speed mode while VDD>2.7V
400          *   with the OTP product_below_2v5 (OTP 18, BIT 13)
401          *   erroneously set to 1 can damage the IC!
402          *   => U-Boot set the register only if VDD < 2.7V (in DT)
403          *      but this value need to be consistent with board design
404          */
405         ret = syscon_get_by_driver_data(STM32MP_SYSCON_PWR, &pwr_dev);
406         if (!ret) {
407                 ret = uclass_get_device_by_driver(UCLASS_MISC,
408                                                   DM_GET_DRIVER(stm32mp_bsec),
409                                                   &dev);
410                 if (ret) {
411                         pr_err("Can't find stm32mp_bsec driver\n");
412                         return;
413                 }
414
415                 ret = misc_read(dev, STM32_BSEC_SHADOW(18), &otp, 4);
416                 if (!ret)
417                         otp = otp & BIT(13);
418
419                 /* get VDD = pwr-supply */
420                 ret = device_get_supply_regulator(pwr_dev, "pwr-supply",
421                                                   &pwr_reg);
422
423                 /* check if VDD is Low Voltage */
424                 if (!ret) {
425                         if (regulator_get_value(pwr_reg) < 2700000) {
426                                 writel(SYSCFG_IOCTRLSETR_HSLVEN_TRACE |
427                                        SYSCFG_IOCTRLSETR_HSLVEN_QUADSPI |
428                                        SYSCFG_IOCTRLSETR_HSLVEN_ETH |
429                                        SYSCFG_IOCTRLSETR_HSLVEN_SDMMC |
430                                        SYSCFG_IOCTRLSETR_HSLVEN_SPI,
431                                        syscfg + SYSCFG_IOCTRLSETR);
432
433                                 if (!otp)
434                                         pr_err("product_below_2v5=0: HSLVEN protected by HW\n");
435                         } else {
436                                 if (otp)
437                                         pr_err("product_below_2v5=1: HSLVEN update is destructive, no update as VDD>2.7V\n");
438                         }
439                 } else {
440                         debug("VDD unknown");
441                 }
442         }
443 #endif
444
445         /* activate automatic I/O compensation
446          * warning: need to ensure CSI enabled and ready in clock driver
447          */
448         writel(SYSCFG_CMPENSETR_MPU_EN, syscfg + SYSCFG_CMPENSETR);
449
450         while (!(readl(syscfg + SYSCFG_CMPCR) & SYSCFG_CMPCR_READY))
451                 ;
452         clrbits_le32(syscfg + SYSCFG_CMPCR, SYSCFG_CMPCR_SW_CTRL);
453 #endif
454 }
455
456 /* board dependent setup after realloc */
457 int board_init(void)
458 {
459         struct udevice *dev;
460
461         /* address of boot parameters */
462         gd->bd->bi_boot_params = STM32_DDR_BASE + 0x100;
463
464         /* probe all PINCTRL for hog */
465         for (uclass_first_device(UCLASS_PINCTRL, &dev);
466              dev;
467              uclass_next_device(&dev)) {
468                 pr_debug("probe pincontrol = %s\n", dev->name);
469         }
470
471         board_key_check();
472
473         sysconf_init();
474
475         if (IS_ENABLED(CONFIG_LED))
476                 led_default_state();
477
478         return 0;
479 }
480
481 int board_late_init(void)
482 {
483 #ifdef CONFIG_ENV_VARS_UBOOT_RUNTIME_CONFIG
484         const void *fdt_compat;
485         int fdt_compat_len;
486
487         fdt_compat = fdt_getprop(gd->fdt_blob, 0, "compatible",
488                                  &fdt_compat_len);
489         if (fdt_compat && fdt_compat_len) {
490                 if (strncmp(fdt_compat, "st,", 3) != 0)
491                         env_set("board_name", fdt_compat);
492                 else
493                         env_set("board_name", fdt_compat + 3);
494         }
495 #endif
496
497         /* for DK1/DK2 boards */
498         board_check_usb_power();
499
500         return 0;
501 }
502
503 void board_quiesce_devices(void)
504 {
505         setup_led(LEDST_OFF);
506 }