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Yann Gautieree8f5422019-02-14 11:13:25 +01001/*
Yann Gautier352d8632020-09-17 11:38:09 +02002 * Copyright (c) 2015-2022, ARM Limited and Contributors. All rights reserved.
Yann Gautieree8f5422019-02-14 11:13:25 +01003 *
4 * SPDX-License-Identifier: BSD-3-Clause
5 */
6
Yann Gautiere3bf9132019-05-07 18:52:17 +02007#include <assert.h>
8
Yann Gautiera205a5c2021-08-30 15:06:54 +02009#include <drivers/clk.h>
Yann Gautiercd16df32021-06-04 14:04:05 +020010#include <drivers/st/stm32_gpio.h>
11#include <drivers/st/stm32_iwdg.h>
Yann Gautier6eef5252021-12-10 17:04:40 +010012#include <lib/mmio.h>
Yann Gautiercd16df32021-06-04 14:04:05 +020013#include <lib/xlat_tables/xlat_tables_v2.h>
Yann Gautier0c810882021-12-17 09:53:04 +010014#include <libfdt.h>
Yann Gautier35dc0772019-05-13 18:34:48 +020015
Sughosh Ganu03e2f802021-12-01 15:56:27 +053016#include <plat/common/platform.h>
Yann Gautieree8f5422019-02-14 11:13:25 +010017#include <platform_def.h>
18
Yann Gautier35dc0772019-05-13 18:34:48 +020019/* Internal layout of the 32bit OTP word board_id */
20#define BOARD_ID_BOARD_NB_MASK GENMASK(31, 16)
21#define BOARD_ID_BOARD_NB_SHIFT 16
Patrick Delaunay7704f162020-01-08 10:05:14 +010022#define BOARD_ID_VARCPN_MASK GENMASK(15, 12)
23#define BOARD_ID_VARCPN_SHIFT 12
Yann Gautier35dc0772019-05-13 18:34:48 +020024#define BOARD_ID_REVISION_MASK GENMASK(11, 8)
25#define BOARD_ID_REVISION_SHIFT 8
Patrick Delaunay7704f162020-01-08 10:05:14 +010026#define BOARD_ID_VARFG_MASK GENMASK(7, 4)
27#define BOARD_ID_VARFG_SHIFT 4
Yann Gautier35dc0772019-05-13 18:34:48 +020028#define BOARD_ID_BOM_MASK GENMASK(3, 0)
29
30#define BOARD_ID2NB(_id) (((_id) & BOARD_ID_BOARD_NB_MASK) >> \
31 BOARD_ID_BOARD_NB_SHIFT)
Patrick Delaunay7704f162020-01-08 10:05:14 +010032#define BOARD_ID2VARCPN(_id) (((_id) & BOARD_ID_VARCPN_MASK) >> \
33 BOARD_ID_VARCPN_SHIFT)
Yann Gautier35dc0772019-05-13 18:34:48 +020034#define BOARD_ID2REV(_id) (((_id) & BOARD_ID_REVISION_MASK) >> \
35 BOARD_ID_REVISION_SHIFT)
Patrick Delaunay7704f162020-01-08 10:05:14 +010036#define BOARD_ID2VARFG(_id) (((_id) & BOARD_ID_VARFG_MASK) >> \
37 BOARD_ID_VARFG_SHIFT)
Yann Gautier35dc0772019-05-13 18:34:48 +020038#define BOARD_ID2BOM(_id) ((_id) & BOARD_ID_BOM_MASK)
39
Yann Gautier82000472020-02-05 16:24:21 +010040#if STM32MP13
41#define TAMP_BOOT_MODE_BACKUP_REG_ID U(30)
42#endif
43#if STM32MP15
Yann Gautier6eef5252021-12-10 17:04:40 +010044#define TAMP_BOOT_MODE_BACKUP_REG_ID U(20)
Yann Gautier82000472020-02-05 16:24:21 +010045#endif
Yann Gautier6eef5252021-12-10 17:04:40 +010046#define TAMP_BOOT_MODE_ITF_MASK U(0x0000FF00)
47#define TAMP_BOOT_MODE_ITF_SHIFT 8
48
Sughosh Ganu03e2f802021-12-01 15:56:27 +053049#define TAMP_BOOT_COUNTER_REG_ID U(21)
50
Etienne Carriere72369b12019-12-08 08:17:56 +010051#if defined(IMAGE_BL2)
52#define MAP_SEC_SYSRAM MAP_REGION_FLAT(STM32MP_SYSRAM_BASE, \
Yann Gautiera2e2a302019-02-14 11:13:39 +010053 STM32MP_SYSRAM_SIZE, \
Yann Gautieree8f5422019-02-14 11:13:25 +010054 MT_MEMORY | \
55 MT_RW | \
56 MT_SECURE | \
57 MT_EXECUTE_NEVER)
Etienne Carriere72369b12019-12-08 08:17:56 +010058#elif defined(IMAGE_BL32)
59#define MAP_SEC_SYSRAM MAP_REGION_FLAT(STM32MP_SEC_SYSRAM_BASE, \
60 STM32MP_SEC_SYSRAM_SIZE, \
61 MT_MEMORY | \
62 MT_RW | \
63 MT_SECURE | \
64 MT_EXECUTE_NEVER)
Yann Gautieree8f5422019-02-14 11:13:25 +010065
Etienne Carriere72369b12019-12-08 08:17:56 +010066/* Non-secure SYSRAM is used a uncached memory for SCMI message transfer */
67#define MAP_NS_SYSRAM MAP_REGION_FLAT(STM32MP_NS_SYSRAM_BASE, \
68 STM32MP_NS_SYSRAM_SIZE, \
69 MT_DEVICE | \
70 MT_RW | \
71 MT_NS | \
72 MT_EXECUTE_NEVER)
73#endif
74
Yann Gautier84d994b2020-04-14 18:08:50 +020075#if STM32MP13
76#define MAP_SRAM_ALL MAP_REGION_FLAT(SRAMS_BASE, \
77 SRAMS_SIZE_2MB_ALIGNED, \
78 MT_MEMORY | \
79 MT_RW | \
80 MT_SECURE | \
81 MT_EXECUTE_NEVER)
82#endif
83
Yann Gautieree8f5422019-02-14 11:13:25 +010084#define MAP_DEVICE1 MAP_REGION_FLAT(STM32MP1_DEVICE1_BASE, \
85 STM32MP1_DEVICE1_SIZE, \
86 MT_DEVICE | \
87 MT_RW | \
88 MT_SECURE | \
89 MT_EXECUTE_NEVER)
90
91#define MAP_DEVICE2 MAP_REGION_FLAT(STM32MP1_DEVICE2_BASE, \
92 STM32MP1_DEVICE2_SIZE, \
93 MT_DEVICE | \
94 MT_RW | \
95 MT_SECURE | \
96 MT_EXECUTE_NEVER)
97
98#if defined(IMAGE_BL2)
99static const mmap_region_t stm32mp1_mmap[] = {
Etienne Carriere72369b12019-12-08 08:17:56 +0100100 MAP_SEC_SYSRAM,
Yann Gautier84d994b2020-04-14 18:08:50 +0200101#if STM32MP13
102 MAP_SRAM_ALL,
103#endif
Yann Gautieree8f5422019-02-14 11:13:25 +0100104 MAP_DEVICE1,
Yann Gautier352d8632020-09-17 11:38:09 +0200105#if STM32MP_RAW_NAND
Yann Gautieree8f5422019-02-14 11:13:25 +0100106 MAP_DEVICE2,
Yann Gautier352d8632020-09-17 11:38:09 +0200107#endif
Yann Gautieree8f5422019-02-14 11:13:25 +0100108 {0}
109};
110#endif
111#if defined(IMAGE_BL32)
112static const mmap_region_t stm32mp1_mmap[] = {
Etienne Carriere72369b12019-12-08 08:17:56 +0100113 MAP_SEC_SYSRAM,
114 MAP_NS_SYSRAM,
Yann Gautieree8f5422019-02-14 11:13:25 +0100115 MAP_DEVICE1,
116 MAP_DEVICE2,
117 {0}
118};
119#endif
120
121void configure_mmu(void)
122{
123 mmap_add(stm32mp1_mmap);
124 init_xlat_tables();
125
126 enable_mmu_svc_mon(0);
127}
Yann Gautiere3bf9132019-05-07 18:52:17 +0200128
Etienne Carriere66b04522019-12-02 10:05:02 +0100129uintptr_t stm32_get_gpio_bank_base(unsigned int bank)
130{
Yann Gautiercc5f89a2020-02-12 09:36:23 +0100131#if STM32MP13
132 assert(GPIO_BANK_A == 0 && bank <= GPIO_BANK_I);
133#endif
134#if STM32MP15
Etienne Carriere66b04522019-12-02 10:05:02 +0100135 if (bank == GPIO_BANK_Z) {
136 return GPIOZ_BASE;
137 }
138
139 assert(GPIO_BANK_A == 0 && bank <= GPIO_BANK_K);
Yann Gautiercc5f89a2020-02-12 09:36:23 +0100140#endif
Etienne Carriere66b04522019-12-02 10:05:02 +0100141
142 return GPIOA_BASE + (bank * GPIO_BANK_OFFSET);
143}
144
145uint32_t stm32_get_gpio_bank_offset(unsigned int bank)
146{
Yann Gautiercc5f89a2020-02-12 09:36:23 +0100147#if STM32MP13
148 assert(GPIO_BANK_A == 0 && bank <= GPIO_BANK_I);
149#endif
150#if STM32MP15
Etienne Carriere66b04522019-12-02 10:05:02 +0100151 if (bank == GPIO_BANK_Z) {
152 return 0;
153 }
154
155 assert(GPIO_BANK_A == 0 && bank <= GPIO_BANK_K);
Yann Gautiercc5f89a2020-02-12 09:36:23 +0100156#endif
Etienne Carriere66b04522019-12-02 10:05:02 +0100157
158 return bank * GPIO_BANK_OFFSET;
159}
160
Yann Gautier2b79c372021-06-11 10:54:56 +0200161bool stm32_gpio_is_secure_at_reset(unsigned int bank)
162{
Yann Gautiercc5f89a2020-02-12 09:36:23 +0100163#if STM32MP13
164 return true;
165#endif
166#if STM32MP15
Yann Gautier2b79c372021-06-11 10:54:56 +0200167 if (bank == GPIO_BANK_Z) {
168 return true;
169 }
170
171 return false;
Yann Gautiercc5f89a2020-02-12 09:36:23 +0100172#endif
Yann Gautier2b79c372021-06-11 10:54:56 +0200173}
174
Yann Gautiere3bf9132019-05-07 18:52:17 +0200175unsigned long stm32_get_gpio_bank_clock(unsigned int bank)
176{
Yann Gautiercc5f89a2020-02-12 09:36:23 +0100177#if STM32MP13
178 assert(GPIO_BANK_A == 0 && bank <= GPIO_BANK_I);
179#endif
180#if STM32MP15
Yann Gautiere3bf9132019-05-07 18:52:17 +0200181 if (bank == GPIO_BANK_Z) {
182 return GPIOZ;
183 }
184
185 assert(GPIO_BANK_A == 0 && bank <= GPIO_BANK_K);
Yann Gautiercc5f89a2020-02-12 09:36:23 +0100186#endif
Yann Gautiere3bf9132019-05-07 18:52:17 +0200187
188 return GPIOA + (bank - GPIO_BANK_A);
189}
Yann Gautier091eab52019-06-04 18:06:34 +0200190
Etienne Carriered81dadf2020-04-25 11:14:45 +0200191int stm32_get_gpio_bank_pinctrl_node(void *fdt, unsigned int bank)
192{
193 switch (bank) {
194 case GPIO_BANK_A:
195 case GPIO_BANK_B:
196 case GPIO_BANK_C:
197 case GPIO_BANK_D:
198 case GPIO_BANK_E:
199 case GPIO_BANK_F:
200 case GPIO_BANK_G:
201 case GPIO_BANK_H:
202 case GPIO_BANK_I:
Yann Gautiercc5f89a2020-02-12 09:36:23 +0100203#if STM32MP15
Etienne Carriered81dadf2020-04-25 11:14:45 +0200204 case GPIO_BANK_J:
205 case GPIO_BANK_K:
Yann Gautiercc5f89a2020-02-12 09:36:23 +0100206#endif
Etienne Carriered81dadf2020-04-25 11:14:45 +0200207 return fdt_path_offset(fdt, "/soc/pin-controller");
Yann Gautiercc5f89a2020-02-12 09:36:23 +0100208#if STM32MP15
Etienne Carriered81dadf2020-04-25 11:14:45 +0200209 case GPIO_BANK_Z:
210 return fdt_path_offset(fdt, "/soc/pin-controller-z");
Yann Gautiercc5f89a2020-02-12 09:36:23 +0100211#endif
Etienne Carriered81dadf2020-04-25 11:14:45 +0200212 default:
213 panic();
214 }
215}
216
Yann Gautier3d8497c2021-10-18 16:06:22 +0200217#if STM32MP_UART_PROGRAMMER || !defined(IMAGE_BL2)
Patrick Delaunaye50571b2021-10-28 13:48:52 +0200218/*
219 * UART Management
220 */
221static const uintptr_t stm32mp1_uart_addresses[8] = {
222 USART1_BASE,
223 USART2_BASE,
224 USART3_BASE,
225 UART4_BASE,
226 UART5_BASE,
227 USART6_BASE,
228 UART7_BASE,
229 UART8_BASE,
230};
231
232uintptr_t get_uart_address(uint32_t instance_nb)
233{
234 if ((instance_nb == 0U) ||
235 (instance_nb > ARRAY_SIZE(stm32mp1_uart_addresses))) {
236 return 0U;
237 }
238
239 return stm32mp1_uart_addresses[instance_nb - 1U];
240}
241#endif
242
Yann Gautiercd16df32021-06-04 14:04:05 +0200243#if STM32MP_USB_PROGRAMMER
244struct gpio_bank_pin_list {
245 uint32_t bank;
246 uint32_t pin;
247};
248
249static const struct gpio_bank_pin_list gpio_list[] = {
250 { /* USART2_RX: GPIOA3 */
251 .bank = 0U,
252 .pin = 3U,
253 },
254 { /* USART3_RX: GPIOB12 */
255 .bank = 1U,
256 .pin = 12U,
257 },
258 { /* UART4_RX: GPIOB2 */
259 .bank = 1U,
260 .pin = 2U,
261 },
262 { /* UART5_RX: GPIOB4 */
263 .bank = 1U,
264 .pin = 5U,
265 },
266 { /* USART6_RX: GPIOC7 */
267 .bank = 2U,
268 .pin = 7U,
269 },
270 { /* UART7_RX: GPIOF6 */
271 .bank = 5U,
272 .pin = 6U,
273 },
274 { /* UART8_RX: GPIOE0 */
275 .bank = 4U,
276 .pin = 0U,
277 },
278};
279
280void stm32mp1_deconfigure_uart_pins(void)
281{
282 size_t i;
283
284 for (i = 0U; i < ARRAY_SIZE(gpio_list); i++) {
285 set_gpio_reset_cfg(gpio_list[i].bank, gpio_list[i].pin);
286 }
287}
288#endif
289
Yann Gautiera0a6ff62021-05-10 16:05:18 +0200290uint32_t stm32mp_get_chip_version(void)
Yann Gautierc7374052019-06-04 18:02:37 +0200291{
Yann Gautiera0a6ff62021-05-10 16:05:18 +0200292 uint32_t version = 0U;
293
294 if (stm32mp1_dbgmcu_get_chip_version(&version) < 0) {
295 INFO("Cannot get CPU version, debug disabled\n");
296 return 0U;
297 }
298
299 return version;
300}
Yann Gautierc7374052019-06-04 18:02:37 +0200301
Yann Gautiera0a6ff62021-05-10 16:05:18 +0200302uint32_t stm32mp_get_chip_dev_id(void)
303{
304 uint32_t dev_id;
Nicolas Le Bayon98f4ea02019-09-23 11:18:32 +0200305
Yann Gautierc7374052019-06-04 18:02:37 +0200306 if (stm32mp1_dbgmcu_get_chip_dev_id(&dev_id) < 0) {
Yann Gautiera0a6ff62021-05-10 16:05:18 +0200307 INFO("Use default chip ID, debug disabled\n");
308 dev_id = STM32MP1_CHIP_ID;
Yann Gautierc7374052019-06-04 18:02:37 +0200309 }
310
Yann Gautiera0a6ff62021-05-10 16:05:18 +0200311 return dev_id;
312}
313
314static uint32_t get_part_number(void)
315{
316 static uint32_t part_number;
317
318 if (part_number != 0U) {
319 return part_number;
320 }
321
Lionel Debievebc2d88d2019-11-04 14:31:38 +0100322 if (stm32_get_otp_value(PART_NUMBER_OTP, &part_number) != 0) {
Yann Gautiera0a6ff62021-05-10 16:05:18 +0200323 panic();
Yann Gautierc7374052019-06-04 18:02:37 +0200324 }
325
326 part_number = (part_number & PART_NUMBER_OTP_PART_MASK) >>
327 PART_NUMBER_OTP_PART_SHIFT;
328
Yann Gautiera0a6ff62021-05-10 16:05:18 +0200329 part_number |= stm32mp_get_chip_dev_id() << 16;
Yann Gautierc7374052019-06-04 18:02:37 +0200330
Yann Gautiera0a6ff62021-05-10 16:05:18 +0200331 return part_number;
Yann Gautierc7374052019-06-04 18:02:37 +0200332}
333
Yann Gautier16188f32020-02-12 15:38:34 +0100334#if STM32MP15
Yann Gautiera0a6ff62021-05-10 16:05:18 +0200335static uint32_t get_cpu_package(void)
Yann Gautierc7374052019-06-04 18:02:37 +0200336{
337 uint32_t package;
338
Lionel Debievebc2d88d2019-11-04 14:31:38 +0100339 if (stm32_get_otp_value(PACKAGE_OTP, &package) != 0) {
Yann Gautiera0a6ff62021-05-10 16:05:18 +0200340 panic();
Yann Gautierc7374052019-06-04 18:02:37 +0200341 }
342
Yann Gautiera0a6ff62021-05-10 16:05:18 +0200343 package = (package & PACKAGE_OTP_PKG_MASK) >>
Yann Gautierc7374052019-06-04 18:02:37 +0200344 PACKAGE_OTP_PKG_SHIFT;
345
Yann Gautiera0a6ff62021-05-10 16:05:18 +0200346 return package;
Yann Gautierc7374052019-06-04 18:02:37 +0200347}
Yann Gautier16188f32020-02-12 15:38:34 +0100348#endif
Yann Gautierc7374052019-06-04 18:02:37 +0200349
Yann Gautiera0a6ff62021-05-10 16:05:18 +0200350void stm32mp_get_soc_name(char name[STM32_SOC_NAME_SIZE])
Yann Gautierc7374052019-06-04 18:02:37 +0200351{
Yann Gautiera0a6ff62021-05-10 16:05:18 +0200352 char *cpu_s, *cpu_r, *pkg;
Yann Gautierc7374052019-06-04 18:02:37 +0200353
354 /* MPUs Part Numbers */
Yann Gautiera0a6ff62021-05-10 16:05:18 +0200355 switch (get_part_number()) {
Yann Gautier16188f32020-02-12 15:38:34 +0100356#if STM32MP13
357 case STM32MP135F_PART_NB:
358 cpu_s = "135F";
359 break;
360 case STM32MP135D_PART_NB:
361 cpu_s = "135D";
362 break;
363 case STM32MP135C_PART_NB:
364 cpu_s = "135C";
365 break;
366 case STM32MP135A_PART_NB:
367 cpu_s = "135A";
368 break;
369 case STM32MP133F_PART_NB:
370 cpu_s = "133F";
371 break;
372 case STM32MP133D_PART_NB:
373 cpu_s = "133D";
374 break;
375 case STM32MP133C_PART_NB:
376 cpu_s = "133C";
377 break;
378 case STM32MP133A_PART_NB:
379 cpu_s = "133A";
380 break;
381 case STM32MP131F_PART_NB:
382 cpu_s = "131F";
383 break;
384 case STM32MP131D_PART_NB:
385 cpu_s = "131D";
386 break;
387 case STM32MP131C_PART_NB:
388 cpu_s = "131C";
389 break;
390 case STM32MP131A_PART_NB:
391 cpu_s = "131A";
392 break;
393#endif
394#if STM32MP15
Yann Gautierc7374052019-06-04 18:02:37 +0200395 case STM32MP157C_PART_NB:
396 cpu_s = "157C";
397 break;
398 case STM32MP157A_PART_NB:
399 cpu_s = "157A";
400 break;
401 case STM32MP153C_PART_NB:
402 cpu_s = "153C";
403 break;
404 case STM32MP153A_PART_NB:
405 cpu_s = "153A";
406 break;
407 case STM32MP151C_PART_NB:
408 cpu_s = "151C";
409 break;
410 case STM32MP151A_PART_NB:
411 cpu_s = "151A";
412 break;
Lionel Debieve7b64e3e2019-05-17 16:01:18 +0200413 case STM32MP157F_PART_NB:
414 cpu_s = "157F";
415 break;
416 case STM32MP157D_PART_NB:
417 cpu_s = "157D";
418 break;
419 case STM32MP153F_PART_NB:
420 cpu_s = "153F";
421 break;
422 case STM32MP153D_PART_NB:
423 cpu_s = "153D";
424 break;
425 case STM32MP151F_PART_NB:
426 cpu_s = "151F";
427 break;
428 case STM32MP151D_PART_NB:
429 cpu_s = "151D";
430 break;
Yann Gautier16188f32020-02-12 15:38:34 +0100431#endif
Yann Gautierc7374052019-06-04 18:02:37 +0200432 default:
433 cpu_s = "????";
434 break;
435 }
436
437 /* Package */
Yann Gautier16188f32020-02-12 15:38:34 +0100438#if STM32MP13
439 /* On STM32MP13, package is not present in OTP */
440 pkg = "";
441#endif
442#if STM32MP15
Yann Gautiera0a6ff62021-05-10 16:05:18 +0200443 switch (get_cpu_package()) {
Yann Gautierc7374052019-06-04 18:02:37 +0200444 case PKG_AA_LFBGA448:
445 pkg = "AA";
446 break;
447 case PKG_AB_LFBGA354:
448 pkg = "AB";
449 break;
450 case PKG_AC_TFBGA361:
451 pkg = "AC";
452 break;
453 case PKG_AD_TFBGA257:
454 pkg = "AD";
455 break;
456 default:
457 pkg = "??";
458 break;
459 }
Yann Gautier16188f32020-02-12 15:38:34 +0100460#endif
Yann Gautierc7374052019-06-04 18:02:37 +0200461
462 /* REVISION */
Yann Gautiera0a6ff62021-05-10 16:05:18 +0200463 switch (stm32mp_get_chip_version()) {
Yann Gautierc7374052019-06-04 18:02:37 +0200464 case STM32MP1_REV_B:
465 cpu_r = "B";
466 break;
Lionel Debieve2d64b532019-06-25 10:40:37 +0200467 case STM32MP1_REV_Z:
468 cpu_r = "Z";
469 break;
Yann Gautierc7374052019-06-04 18:02:37 +0200470 default:
471 cpu_r = "?";
472 break;
473 }
474
Yann Gautiera0a6ff62021-05-10 16:05:18 +0200475 snprintf(name, STM32_SOC_NAME_SIZE,
476 "STM32MP%s%s Rev.%s", cpu_s, pkg, cpu_r);
477}
478
479void stm32mp_print_cpuinfo(void)
480{
481 char name[STM32_SOC_NAME_SIZE];
482
483 stm32mp_get_soc_name(name);
484 NOTICE("CPU: %s\n", name);
Yann Gautierc7374052019-06-04 18:02:37 +0200485}
486
Yann Gautier35dc0772019-05-13 18:34:48 +0200487void stm32mp_print_boardinfo(void)
488{
Lionel Debievebc2d88d2019-11-04 14:31:38 +0100489 uint32_t board_id = 0;
Yann Gautier35dc0772019-05-13 18:34:48 +0200490
Lionel Debievebc2d88d2019-11-04 14:31:38 +0100491 if (stm32_get_otp_value(BOARD_ID_OTP, &board_id) != 0) {
Yann Gautier35dc0772019-05-13 18:34:48 +0200492 return;
493 }
494
Yann Gautier35dc0772019-05-13 18:34:48 +0200495 if (board_id != 0U) {
496 char rev[2];
497
498 rev[0] = BOARD_ID2REV(board_id) - 1 + 'A';
499 rev[1] = '\0';
Yann Gautier36e9d382020-10-13 18:03:31 +0200500 NOTICE("Board: MB%04x Var%u.%u Rev.%s-%02u\n",
Yann Gautier35dc0772019-05-13 18:34:48 +0200501 BOARD_ID2NB(board_id),
Patrick Delaunay7704f162020-01-08 10:05:14 +0100502 BOARD_ID2VARCPN(board_id),
503 BOARD_ID2VARFG(board_id),
Yann Gautier35dc0772019-05-13 18:34:48 +0200504 rev,
505 BOARD_ID2BOM(board_id));
506 }
507}
508
Yann Gautieraf19ff92019-06-04 18:23:10 +0200509/* Return true when SoC provides a single Cortex-A7 core, and false otherwise */
510bool stm32mp_is_single_core(void)
511{
Yann Gautier6bd30e22020-02-06 15:34:16 +0100512#if STM32MP13
513 return true;
514#endif
515#if STM32MP15
Yann Gautier2f3b5602021-10-19 13:31:06 +0200516 bool single_core = false;
517
Yann Gautiera0a6ff62021-05-10 16:05:18 +0200518 switch (get_part_number()) {
Yann Gautieraf19ff92019-06-04 18:23:10 +0200519 case STM32MP151A_PART_NB:
520 case STM32MP151C_PART_NB:
Lionel Debieve7b64e3e2019-05-17 16:01:18 +0200521 case STM32MP151D_PART_NB:
522 case STM32MP151F_PART_NB:
Yann Gautier2f3b5602021-10-19 13:31:06 +0200523 single_core = true;
524 break;
Yann Gautieraf19ff92019-06-04 18:23:10 +0200525 default:
Yann Gautier2f3b5602021-10-19 13:31:06 +0200526 break;
Yann Gautieraf19ff92019-06-04 18:23:10 +0200527 }
Yann Gautier2f3b5602021-10-19 13:31:06 +0200528
529 return single_core;
Yann Gautier6bd30e22020-02-06 15:34:16 +0100530#endif
Yann Gautieraf19ff92019-06-04 18:23:10 +0200531}
532
Lionel Debieve0e73d732019-09-16 12:17:09 +0200533/* Return true when device is in closed state */
534bool stm32mp_is_closed_device(void)
535{
536 uint32_t value;
537
Lionel Debievebc2d88d2019-11-04 14:31:38 +0100538 if (stm32_get_otp_value(CFG0_OTP, &value) != 0) {
Lionel Debieve0e73d732019-09-16 12:17:09 +0200539 return true;
540 }
541
Lionel Debievebc2d88d2019-11-04 14:31:38 +0100542 return (value & CFG0_CLOSED_DEVICE) == CFG0_CLOSED_DEVICE;
Lionel Debieve0e73d732019-09-16 12:17:09 +0200543}
544
Lionel Debieve06bc62d2019-12-06 12:42:20 +0100545/* Return true when device supports secure boot */
546bool stm32mp_is_auth_supported(void)
547{
548 bool supported = false;
549
550 switch (get_part_number()) {
Yann Gautier16188f32020-02-12 15:38:34 +0100551#if STM32MP13
552 case STM32MP131C_PART_NB:
553 case STM32MP131F_PART_NB:
554 case STM32MP133C_PART_NB:
555 case STM32MP133F_PART_NB:
556 case STM32MP135C_PART_NB:
557 case STM32MP135F_PART_NB:
558#endif
559#if STM32MP15
Lionel Debieve06bc62d2019-12-06 12:42:20 +0100560 case STM32MP151C_PART_NB:
561 case STM32MP151F_PART_NB:
562 case STM32MP153C_PART_NB:
563 case STM32MP153F_PART_NB:
564 case STM32MP157C_PART_NB:
565 case STM32MP157F_PART_NB:
Yann Gautier16188f32020-02-12 15:38:34 +0100566#endif
Lionel Debieve06bc62d2019-12-06 12:42:20 +0100567 supported = true;
568 break;
569 default:
570 break;
571 }
572
573 return supported;
574}
575
Yann Gautier091eab52019-06-04 18:06:34 +0200576uint32_t stm32_iwdg_get_instance(uintptr_t base)
577{
578 switch (base) {
579 case IWDG1_BASE:
580 return IWDG1_INST;
581 case IWDG2_BASE:
582 return IWDG2_INST;
583 default:
584 panic();
585 }
586}
587
588uint32_t stm32_iwdg_get_otp_config(uint32_t iwdg_inst)
589{
590 uint32_t iwdg_cfg = 0U;
591 uint32_t otp_value;
592
Lionel Debievebc2d88d2019-11-04 14:31:38 +0100593 if (stm32_get_otp_value(HW2_OTP, &otp_value) != 0) {
Yann Gautier091eab52019-06-04 18:06:34 +0200594 panic();
595 }
596
597 if ((otp_value & BIT(iwdg_inst + HW2_OTP_IWDG_HW_POS)) != 0U) {
598 iwdg_cfg |= IWDG_HW_ENABLED;
599 }
600
601 if ((otp_value & BIT(iwdg_inst + HW2_OTP_IWDG_FZ_STOP_POS)) != 0U) {
602 iwdg_cfg |= IWDG_DISABLE_ON_STOP;
603 }
604
605 if ((otp_value & BIT(iwdg_inst + HW2_OTP_IWDG_FZ_STANDBY_POS)) != 0U) {
606 iwdg_cfg |= IWDG_DISABLE_ON_STANDBY;
607 }
608
609 return iwdg_cfg;
610}
611
612#if defined(IMAGE_BL2)
613uint32_t stm32_iwdg_shadow_update(uint32_t iwdg_inst, uint32_t flags)
614{
Lionel Debievebc2d88d2019-11-04 14:31:38 +0100615 uint32_t otp_value;
Yann Gautier091eab52019-06-04 18:06:34 +0200616 uint32_t otp;
617 uint32_t result;
618
Lionel Debievebc2d88d2019-11-04 14:31:38 +0100619 if (stm32_get_otp_index(HW2_OTP, &otp, NULL) != 0) {
620 panic();
621 }
622
623 if (stm32_get_otp_value(HW2_OTP, &otp_value) != 0) {
Yann Gautier091eab52019-06-04 18:06:34 +0200624 panic();
625 }
626
Lionel Debievebc2d88d2019-11-04 14:31:38 +0100627 if ((flags & IWDG_DISABLE_ON_STOP) != 0) {
628 otp_value |= BIT(iwdg_inst + HW2_OTP_IWDG_FZ_STOP_POS);
Yann Gautier091eab52019-06-04 18:06:34 +0200629 }
630
Lionel Debievebc2d88d2019-11-04 14:31:38 +0100631 if ((flags & IWDG_DISABLE_ON_STANDBY) != 0) {
632 otp_value |= BIT(iwdg_inst + HW2_OTP_IWDG_FZ_STANDBY_POS);
Yann Gautier091eab52019-06-04 18:06:34 +0200633 }
634
Lionel Debievebc2d88d2019-11-04 14:31:38 +0100635 result = bsec_write_otp(otp_value, otp);
Yann Gautier091eab52019-06-04 18:06:34 +0200636 if (result != BSEC_OK) {
637 return result;
638 }
639
640 /* Sticky lock OTP_IWDG (read and write) */
Lionel Debievebc2d88d2019-11-04 14:31:38 +0100641 if ((bsec_set_sr_lock(otp) != BSEC_OK) ||
642 (bsec_set_sw_lock(otp) != BSEC_OK)) {
Yann Gautier091eab52019-06-04 18:06:34 +0200643 return BSEC_LOCK_FAIL;
644 }
645
646 return BSEC_OK;
647}
648#endif
Yann Gautier8f268c82020-02-26 13:39:44 +0100649
Lionel Debieve1dc5e2e2020-09-27 21:13:53 +0200650#if STM32MP_USE_STM32IMAGE
Yann Gautier8f268c82020-02-26 13:39:44 +0100651/* Get the non-secure DDR size */
652uint32_t stm32mp_get_ddr_ns_size(void)
653{
654 static uint32_t ddr_ns_size;
655 uint32_t ddr_size;
656
657 if (ddr_ns_size != 0U) {
658 return ddr_ns_size;
659 }
660
661 ddr_size = dt_get_ddr_size();
662 if ((ddr_size <= (STM32MP_DDR_S_SIZE + STM32MP_DDR_SHMEM_SIZE)) ||
663 (ddr_size > STM32MP_DDR_MAX_SIZE)) {
664 panic();
665 }
666
667 ddr_ns_size = ddr_size - (STM32MP_DDR_S_SIZE + STM32MP_DDR_SHMEM_SIZE);
668
669 return ddr_ns_size;
670}
Lionel Debieve1dc5e2e2020-09-27 21:13:53 +0200671#endif /* STM32MP_USE_STM32IMAGE */
Yann Gautier6eef5252021-12-10 17:04:40 +0100672
673void stm32_save_boot_interface(uint32_t interface, uint32_t instance)
674{
Nicolas Toromanoffbb82b1b2022-02-09 12:26:31 +0100675 uintptr_t bkpr_itf_idx = tamp_bkpr(TAMP_BOOT_MODE_BACKUP_REG_ID);
Yann Gautier6eef5252021-12-10 17:04:40 +0100676
Yann Gautiera205a5c2021-08-30 15:06:54 +0200677 clk_enable(RTCAPB);
Yann Gautier6eef5252021-12-10 17:04:40 +0100678
679 mmio_clrsetbits_32(bkpr_itf_idx,
680 TAMP_BOOT_MODE_ITF_MASK,
681 ((interface << 4) | (instance & 0xFU)) <<
682 TAMP_BOOT_MODE_ITF_SHIFT);
683
Yann Gautiera205a5c2021-08-30 15:06:54 +0200684 clk_disable(RTCAPB);
Yann Gautier6eef5252021-12-10 17:04:40 +0100685}
Yann Gautieraaee0612020-12-16 12:04:06 +0100686
687void stm32_get_boot_interface(uint32_t *interface, uint32_t *instance)
688{
689 static uint32_t itf;
690
691 if (itf == 0U) {
Nicolas Toromanoffbb82b1b2022-02-09 12:26:31 +0100692 uintptr_t bkpr = tamp_bkpr(TAMP_BOOT_MODE_BACKUP_REG_ID);
Yann Gautieraaee0612020-12-16 12:04:06 +0100693
Yann Gautiera205a5c2021-08-30 15:06:54 +0200694 clk_enable(RTCAPB);
Yann Gautieraaee0612020-12-16 12:04:06 +0100695
696 itf = (mmio_read_32(bkpr) & TAMP_BOOT_MODE_ITF_MASK) >>
697 TAMP_BOOT_MODE_ITF_SHIFT;
698
Yann Gautiera205a5c2021-08-30 15:06:54 +0200699 clk_disable(RTCAPB);
Yann Gautieraaee0612020-12-16 12:04:06 +0100700 }
701
702 *interface = itf >> 4;
703 *instance = itf & 0xFU;
704}
Sughosh Ganu03e2f802021-12-01 15:56:27 +0530705
706#if !STM32MP_USE_STM32IMAGE && PSA_FWU_SUPPORT
707void stm32mp1_fwu_set_boot_idx(void)
708{
709 clk_enable(RTCAPB);
710 mmio_write_32(tamp_bkpr(TAMP_BOOT_COUNTER_REG_ID),
711 plat_fwu_get_boot_idx());
712 clk_disable(RTCAPB);
713}
714#endif /* !STM32MP_USE_STM32IMAGE && PSA_FWU_SUPPORT */