xref: /rk3399_ARM-atf/plat/xilinx/common/plat_console.c (revision f84a4c5cd79b2bbd68197a5186d01cdceb87b177)
1 /*
2  * Copyright (c) 2023, Advanced Micro Devices, Inc. All rights reserved.
3  *
4  * SPDX-License-Identifier: BSD-3-Clause
5  */
6 
7 #include <assert.h>
8 #include <errno.h>
9 #include <stdlib.h>
10 #include <string.h>
11 
12 #include <common/debug.h>
13 #include <common/fdt_fixup.h>
14 #include <common/fdt_wrappers.h>
15 #include <drivers/arm/dcc.h>
16 #include <drivers/arm/pl011.h>
17 #include <drivers/cadence/cdns_uart.h>
18 #include <drivers/console.h>
19 #include <libfdt.h>
20 #include <plat_console.h>
21 #include <plat_fdt.h>
22 
23 #include <platform_def.h>
24 #include <plat_private.h>
25 
26 static console_t boot_console;
27 
28 #if (defined(XILINX_OF_BOARD_DTB_ADDR) && !IS_TFA_IN_OCM(BL31_BASE))
29 /**
30  * get_baudrate() - Get the baudrate form DTB.
31  * @dtb: Address of the Device Tree Blob (DTB).
32  *
33  * Return: On success returns the baudrate; on failure returns an error.
34  */
35 static int32_t get_baudrate(void *dtb)
36 {
37 	int node;
38 	int32_t ret = 0;
39 	const char *prop, *path;
40 	char *end;
41 	int32_t baud_rate = 0;
42 
43 	node = fdt_path_offset(dtb, "/secure-chosen");
44 	if (node < 0) {
45 		node = fdt_path_offset(dtb, "/chosen");
46 		if (node < 0) {
47 			ret = -FDT_ERR_NOTFOUND;
48 			goto error;
49 		}
50 	}
51 
52 	prop = fdt_getprop(dtb, node, "stdout-path", NULL);
53 	if (prop == NULL) {
54 		ret = -FDT_ERR_NOTFOUND;
55 		goto error;
56 	}
57 
58 	/* Parse string serial0:115200n8 */
59 	path = strchr(prop, ':');
60 	if (!path) {
61 		ret = -FDT_ERR_NOTFOUND;
62 		goto error;
63 	} else {
64 
65 		baud_rate = strtoul(path + 1, &end, 10);
66 		if (baud_rate == 0 && end == path) {
67 			ERROR("Conversion error occurred: %d\n", baud_rate);
68 			ret = -FDT_ERR_NOTFOUND;
69 			goto error;
70 		}
71 		ret = baud_rate;
72 	}
73 
74 error:
75 	return ret;
76 }
77 
78 /**
79  * get_node_status() - Get the DTB node status.
80  * @dtb: Address of the Device Tree Blob (DTB).
81  * @node: Node address in the device tree.
82  *
83  * Return: On success, it returns 1; on failure, it returns an 0.
84  */
85 static uint32_t get_node_status(void *dtb, int node)
86 {
87 	const char *status_cell;
88 	uint32_t status = 0;
89 
90 	status_cell = fdt_getprop(dtb, node, "status", NULL);
91 	if (!status_cell || strcmp(status_cell, "okay") == 0) {
92 		status = 1;
93 	} else {
94 		status = 0;
95 	}
96 
97 	return status;
98 }
99 
100 /**
101  * fdt_add_uart_info() - Add DTB information to a UART structure.
102  * @info: Pointer to the UART information structure.
103  * @node: Node address in the device tree.
104  * @dtb: Address of the Device Tree Blob(DTB).
105  *
106  * Return: On success, it returns 1; on failure, it returns an 0.
107  */
108 static uint32_t fdt_add_uart_info(dt_uart_info_t *info, int node, void *dtb)
109 {
110 	uintptr_t base_addr;
111 	const char *com;
112 	int32_t ret = 0;
113 
114 	com = fdt_getprop(dtb, node, "compatible", NULL);
115 	if (com != NULL) {
116 		strlcpy(info->compatible, com, sizeof(info->compatible));
117 	} else {
118 		ERROR("Compatible property not found in DTB node\n");
119 		ret  = -FDT_ERR_NOTFOUND;
120 		goto error;
121 	}
122 
123 	ret = fdt_get_reg_props_by_index(dtb, node, 0, &base_addr, NULL);
124 	if (ret >= 0) {
125 		info->base = base_addr;
126 	} else {
127 		ERROR("Failed to retrieve base address. Error code: %d\n", ret);
128 		ret  = -FDT_ERR_NOTFOUND;
129 		goto error;
130 	}
131 
132 	info->status = get_node_status(dtb, node);
133 	info->baud_rate = get_baudrate(dtb);
134 
135 error:
136 	return ret;
137 }
138 
139 /**
140  * fdt_get_uart_info() - Get the uart information form DTB.
141  * @info: Pointer to the UART information structure.
142  *
143  * Return: On success, it returns 0; on failure, it returns an error+reason.
144  */
145 static int fdt_get_uart_info(dt_uart_info_t *info)
146 {
147 	int node = 0, ret = 0;
148 	void *dtb = (void *)XILINX_OF_BOARD_DTB_ADDR;
149 
150 	ret = is_valid_dtb(dtb);
151 	if (ret < 0) {
152 		ERROR("Invalid Device Tree at %p: error %d\n", dtb, ret);
153 		ret  = -FDT_ERR_NOTFOUND;
154 		goto error;
155 	}
156 
157 	node = fdt_get_stdout_node_offset(dtb);
158 	if (node < 0) {
159 		ERROR("DT get stdout node failed : %d\n", node);
160 		ret  = -FDT_ERR_NOTFOUND;
161 		goto error;
162 	}
163 
164 	ret = fdt_add_uart_info(info, node, dtb);
165 	if (ret < 0) {
166 		ERROR("Failed to add DT UART info: %d\n", ret);
167 		ret  = -FDT_ERR_NOTFOUND;
168 		goto error;
169 	}
170 
171 error:
172 	return ret;
173 }
174 
175 /**
176  * check_fdt_uart_info() - Check early uart info with DTB uart info.
177  * @info: Pointer to the UART information structure.
178  *
179  * Return: On success, it returns 0; on failure, it returns an error+reason.
180  */
181 static int32_t check_fdt_uart_info(dt_uart_info_t *info)
182 {
183 	int32_t ret = 0;
184 
185 	if (info->status == 0) {
186 		ret = -ENODEV;
187 		goto error;
188 	}
189 
190 	if ((info->base == boot_console.base) &&
191 	   (info->baud_rate == UART_BAUDRATE) && !CONSOLE_IS(dcc)) {
192 		ret = -ENODEV;
193 		goto error;
194 	}
195 
196 error:
197 	return ret;
198 }
199 
200 /**
201  * console_end() - Unregister the console_t instance form the console list.
202  * @console: Pointer to the console information structure.
203  */
204 static void console_end(console_t *console)
205 {
206 	if (CONSOLE_IS(dcc)) {
207 		console_dcc_unregister();
208 	} else {
209 		if (console != NULL) {
210 			console_flush();
211 			(void)console_unregister(console);
212 		}
213 	}
214 }
215 
216 /**
217  * register_console() - Registers the runtime uart with console list.
218  * @uart_base: UART base address
219  * @clock: UART clock.
220  * @baud_rate: UART buad rate
221  * @console: Pointer to the console information structure.
222  * @flags: console flags.
223  */
224 static void register_console(uintptr_t uart_base, uint32_t clock,
225 			     uint32_t baud_rate, console_t *console,
226 			     uint32_t flags)
227 {
228 	int32_t rc;
229 
230 #if defined(PLAT_zynqmp)
231 	rc = console_cdns_register(uart_base,
232 				   clock,
233 				   baud_rate,
234 				   console);
235 #else
236 	rc = console_pl011_register(uart_base,
237 				    clock,
238 				    baud_rate,
239 				    console);
240 #endif
241 	if (rc == 0) {
242 		panic();
243 	}
244 
245 	console_set_scope(console, flags);
246 }
247 
248 /**
249  * dt_console_init() - Initializes the DT console information.
250  * @uart_info: Pointer to the UART information structure.
251  * @console: Pointer to the console information structure.
252  * @clock: UART clock.
253  *
254  * Return: On success, it returns 0; on failure, it returns an error+reason;
255  */
256 static int32_t dt_console_init(dt_uart_info_t *uart_info,
257 			  console_t *console,
258 			  uint32_t clock)
259 {
260 	int32_t rc = 0;
261 	static console_t dt_console;
262 
263 	/* Parse UART information from Device Tree Blob (DTB) */
264 	rc = fdt_get_uart_info(uart_info);
265 	if (rc < 0) {
266 		rc = -FDT_ERR_NOTFOUND;
267 		goto error;
268 	}
269 
270 	if (strncmp(uart_info->compatible, DT_UART_COMPAT,
271 		   strlen(DT_UART_COMPAT)) == 0) {
272 
273 		if (check_fdt_uart_info(uart_info) == 0) {
274 			register_console(uart_info->base, clock,
275 					 uart_info->baud_rate, &dt_console,
276 					 CONSOLE_FLAG_BOOT | CONSOLE_FLAG_RUNTIME
277 					 | CONSOLE_FLAG_CRASH);
278 			console_end(console);
279 			INFO("DTB console setup\n");
280 		} else {
281 			INFO("Early console and DTB console are same\n");
282 		}
283 	} else if (strncmp(uart_info->compatible, DT_UART_DCC_COMPAT,
284 			  strlen(DT_UART_DCC_COMPAT)) == 0) {
285 		rc = console_dcc_register();
286 		if (rc == 0) {
287 			panic();
288 		}
289 		console_end(console);
290 	} else {
291 		WARN("BL31: No console device found in DT.\n");
292 	}
293 
294 error:
295 	return rc;
296 }
297 #endif
298 
299 void setup_console(void)
300 {
301 	int32_t rc;
302 	uint32_t uart_clk = get_uart_clk();
303 
304 #if defined(PLAT_zynqmp)
305 	if (CONSOLE_IS(cadence) || (CONSOLE_IS(cadence1))) {
306 		rc = console_cdns_register(UART_BASE,
307 					   uart_clk,
308 					   UART_BAUDRATE,
309 					   &boot_console);
310 		if (rc == 0) {
311 			panic();
312 		}
313 
314 		console_set_scope(&boot_console, CONSOLE_FLAG_BOOT |
315 				  CONSOLE_FLAG_RUNTIME | CONSOLE_FLAG_CRASH);
316 	}
317 #else
318 	if (CONSOLE_IS(pl011) || (CONSOLE_IS(pl011_1))) {
319 		/* Initialize the console to provide early debug support */
320 		rc = console_pl011_register((uint32_t)UART_BASE,
321 					   uart_clk,
322 					   (uint32_t)UART_BAUDRATE,
323 					   &boot_console);
324 		if (rc == 0) {
325 			panic();
326 		}
327 
328 		console_set_scope(&boot_console, CONSOLE_FLAG_BOOT |
329 				  CONSOLE_FLAG_RUNTIME | CONSOLE_FLAG_CRASH);
330 	}
331 #endif
332 	if (CONSOLE_IS(dcc)) {
333 		/* Initialize the dcc console for debug */
334 		rc = console_dcc_register();
335 		if (rc == 0) {
336 			panic();
337 		}
338 	}
339 	INFO("BL31: Early console setup\n");
340 
341 #if (defined(XILINX_OF_BOARD_DTB_ADDR) && !IS_TFA_IN_OCM(BL31_BASE))
342 	static dt_uart_info_t uart_info = {0};
343 
344 	/* Initialize the DTB console using UART information from the DTB */
345 	rc = dt_console_init(&uart_info, &boot_console, uart_clk);
346 	if (rc < 0) {
347 		ERROR("Failed to initialize DT console: %d\n", rc);
348 	}
349 #endif
350 }
351