1 // SPDX-License-Identifier: GPL-2.0+
2 /*
3  * Copyright (c) 2011-2012 The Chromium OS Authors.
4  */
5 
6 #include <common.h>
7 #include <command.h>
8 #include <dm/root.h>
9 #include <efi_loader.h>
10 #include <errno.h>
11 #include <init.h>
12 #include <log.h>
13 #include <os.h>
14 #include <cli.h>
15 #include <sort.h>
16 #include <asm/getopt.h>
17 #include <asm/global_data.h>
18 #include <asm/io.h>
19 #include <asm/malloc.h>
20 #include <asm/sections.h>
21 #include <asm/state.h>
22 #include <linux/ctype.h>
23 
24 DECLARE_GLOBAL_DATA_PTR;
25 
26 static char **os_argv;
27 
28 /* Compare two options so that they can be sorted into alphabetical order */
h_compare_opt(const void * p1,const void * p2)29 static int h_compare_opt(const void *p1, const void *p2)
30 {
31 	const struct sandbox_cmdline_option *opt1 = p1;
32 	const struct sandbox_cmdline_option *opt2 = p2;
33 	const char *str1, *str2;
34 	char flag1[2], flag2[2];
35 
36 	opt1 = *(struct sandbox_cmdline_option **)p1;
37 	opt2 = *(struct sandbox_cmdline_option **)p2;
38 	flag1[1] = '\0';
39 	flag2[1] = '\0';
40 
41 	*flag1 = opt1->flag_short < 0x100 ? opt1->flag_short : '\0';
42 	*flag2 = opt2->flag_short < 0x100 ? opt2->flag_short : '\0';
43 
44 	str1 = *flag1 ? flag1 : opt1->flag;
45 	str2 = *flag2 ? flag2 : opt2->flag;
46 
47 	/*
48 	 * Force lower-case flags to come before upper-case ones. We only
49 	 * support upper-case for short flags.
50 	 */
51 	if (isalpha(*str1) && isalpha(*str2) &&
52 	    tolower(*str1) == tolower(*str2))
53 		return isupper(*str1) - isupper(*str2);
54 
55 	return strcasecmp(str1, str2);
56 }
57 
sandbox_early_getopt_check(void)58 int sandbox_early_getopt_check(void)
59 {
60 	struct sandbox_state *state = state_get_current();
61 	struct sandbox_cmdline_option **sb_opt = __u_boot_sandbox_option_start;
62 	size_t num_options = __u_boot_sandbox_option_count();
63 	size_t i;
64 	int max_arg_len, max_noarg_len;
65 	struct sandbox_cmdline_option **sorted_opt;
66 	int size;
67 
68 	/* parse_err will be a string of the faulting option */
69 	if (!state->parse_err)
70 		return 0;
71 
72 	if (strcmp(state->parse_err, "help")) {
73 		printf("u-boot: error: failed while parsing option: %s\n"
74 			"\ttry running with --help for more information.\n",
75 			state->parse_err);
76 		os_exit(1);
77 	}
78 
79 	printf(
80 		"u-boot, a command line test interface to U-Boot\n\n"
81 		"Usage: u-boot [options]\n"
82 		"Options:\n");
83 
84 	max_arg_len = 0;
85 	for (i = 0; i < num_options; ++i)
86 		max_arg_len = max((int)strlen(sb_opt[i]->flag), max_arg_len);
87 	max_noarg_len = max_arg_len + 7;
88 
89 	/* Sort the options */
90 	size = sizeof(*sorted_opt) * num_options;
91 	sorted_opt = malloc(size);
92 	if (!sorted_opt) {
93 		printf("No memory to sort options\n");
94 		os_exit(1);
95 	}
96 	memcpy(sorted_opt, sb_opt, size);
97 	qsort(sorted_opt, num_options, sizeof(*sorted_opt), h_compare_opt);
98 
99 	for (i = 0; i < num_options; ++i) {
100 		struct sandbox_cmdline_option *opt = sorted_opt[i];
101 
102 		/* first output the short flag if it has one */
103 		if (opt->flag_short >= 0x100)
104 			printf("      ");
105 		else
106 			printf("  -%c, ", opt->flag_short);
107 
108 		/* then the long flag */
109 		if (opt->has_arg)
110 			printf("--%-*s <arg> ", max_arg_len, opt->flag);
111 		else
112 			printf("--%-*s", max_noarg_len, opt->flag);
113 
114 		/* finally the help text */
115 		printf("  %s\n", opt->help);
116 	}
117 
118 	os_exit(0);
119 }
120 
misc_init_f(void)121 int misc_init_f(void)
122 {
123 	return sandbox_early_getopt_check();
124 }
125 
sandbox_cmdline_cb_help(struct sandbox_state * state,const char * arg)126 static int sandbox_cmdline_cb_help(struct sandbox_state *state, const char *arg)
127 {
128 	/* just flag to sandbox_early_getopt_check to show usage */
129 	return 1;
130 }
131 SANDBOX_CMDLINE_OPT_SHORT(help, 'h', 0, "Display help");
132 
133 #ifndef CONFIG_SPL_BUILD
sandbox_main_loop_init(void)134 int sandbox_main_loop_init(void)
135 {
136 	struct sandbox_state *state = state_get_current();
137 
138 	/* Execute command if required */
139 	if (state->cmd || state->run_distro_boot) {
140 		int retval = 0;
141 
142 		cli_init();
143 
144 #ifdef CONFIG_CMDLINE
145 		if (state->cmd)
146 			retval = run_command_list(state->cmd, -1, 0);
147 
148 		if (state->run_distro_boot)
149 			retval = cli_simple_run_command("run distro_bootcmd",
150 							0);
151 #endif
152 		if (!state->interactive)
153 			os_exit(retval);
154 	}
155 
156 	return 0;
157 }
158 #endif
159 
sandbox_cmdline_cb_boot(struct sandbox_state * state,const char * arg)160 static int sandbox_cmdline_cb_boot(struct sandbox_state *state,
161 				      const char *arg)
162 {
163 	state->run_distro_boot = true;
164 	return 0;
165 }
166 SANDBOX_CMDLINE_OPT_SHORT(boot, 'b', 0, "Run distro boot commands");
167 
sandbox_cmdline_cb_command(struct sandbox_state * state,const char * arg)168 static int sandbox_cmdline_cb_command(struct sandbox_state *state,
169 				      const char *arg)
170 {
171 	state->cmd = arg;
172 	return 0;
173 }
174 SANDBOX_CMDLINE_OPT_SHORT(command, 'c', 1, "Execute U-Boot command");
175 
sandbox_cmdline_cb_fdt(struct sandbox_state * state,const char * arg)176 static int sandbox_cmdline_cb_fdt(struct sandbox_state *state, const char *arg)
177 {
178 	state->fdt_fname = arg;
179 	return 0;
180 }
181 SANDBOX_CMDLINE_OPT_SHORT(fdt, 'd', 1, "Specify U-Boot's control FDT");
182 
sandbox_cmdline_cb_default_fdt(struct sandbox_state * state,const char * arg)183 static int sandbox_cmdline_cb_default_fdt(struct sandbox_state *state,
184 					  const char *arg)
185 {
186 	const char *fmt = "%s.dtb";
187 	char *fname;
188 	int len;
189 
190 	len = strlen(state->argv[0]) + strlen(fmt) + 1;
191 	fname = malloc(len);
192 	if (!fname)
193 		return -ENOMEM;
194 	snprintf(fname, len, fmt, state->argv[0]);
195 	state->fdt_fname = fname;
196 
197 	return 0;
198 }
199 SANDBOX_CMDLINE_OPT_SHORT(default_fdt, 'D', 0,
200 		"Use the default u-boot.dtb control FDT in U-Boot directory");
201 
sandbox_cmdline_cb_test_fdt(struct sandbox_state * state,const char * arg)202 static int sandbox_cmdline_cb_test_fdt(struct sandbox_state *state,
203 				       const char *arg)
204 {
205 	const char *fmt = "/arch/sandbox/dts/test.dtb";
206 	char *p;
207 	char *fname;
208 	int len;
209 
210 	len = strlen(state->argv[0]) + strlen(fmt) + 1;
211 	fname = malloc(len);
212 	if (!fname)
213 		return -ENOMEM;
214 	strcpy(fname, state->argv[0]);
215 	p = strrchr(fname, '/');
216 	if (!p)
217 		p = fname + strlen(fname);
218 	len -= p - fname;
219 	snprintf(p, len, fmt);
220 	state->fdt_fname = fname;
221 
222 	return 0;
223 }
224 SANDBOX_CMDLINE_OPT_SHORT(test_fdt, 'T', 0,
225 			  "Use the test.dtb control FDT in U-Boot directory");
226 
sandbox_cmdline_cb_interactive(struct sandbox_state * state,const char * arg)227 static int sandbox_cmdline_cb_interactive(struct sandbox_state *state,
228 					  const char *arg)
229 {
230 	state->interactive = true;
231 	return 0;
232 }
233 
234 SANDBOX_CMDLINE_OPT_SHORT(interactive, 'i', 0, "Enter interactive mode");
235 
sandbox_cmdline_cb_jump(struct sandbox_state * state,const char * arg)236 static int sandbox_cmdline_cb_jump(struct sandbox_state *state,
237 				   const char *arg)
238 {
239 	/* Remember to delete this U-Boot image later */
240 	state->jumped_fname = arg;
241 
242 	return 0;
243 }
244 SANDBOX_CMDLINE_OPT_SHORT(jump, 'j', 1, "Jumped from previous U-Boot");
245 
sandbox_cmdline_cb_memory(struct sandbox_state * state,const char * arg)246 static int sandbox_cmdline_cb_memory(struct sandbox_state *state,
247 				     const char *arg)
248 {
249 	int err;
250 
251 	/* For now assume we always want to write it */
252 	state->write_ram_buf = true;
253 	state->ram_buf_fname = arg;
254 
255 	err = os_read_ram_buf(arg);
256 	if (err) {
257 		printf("Failed to read RAM buffer '%s': %d\n", arg, err);
258 		return err;
259 	}
260 	state->ram_buf_read = true;
261 
262 	return 0;
263 }
264 SANDBOX_CMDLINE_OPT_SHORT(memory, 'm', 1,
265 			  "Read/write ram_buf memory contents from file");
266 
sandbox_cmdline_cb_rm_memory(struct sandbox_state * state,const char * arg)267 static int sandbox_cmdline_cb_rm_memory(struct sandbox_state *state,
268 					const char *arg)
269 {
270 	state->ram_buf_rm = true;
271 
272 	return 0;
273 }
274 SANDBOX_CMDLINE_OPT(rm_memory, 0, "Remove memory file after reading");
275 
sandbox_cmdline_cb_state(struct sandbox_state * state,const char * arg)276 static int sandbox_cmdline_cb_state(struct sandbox_state *state,
277 				    const char *arg)
278 {
279 	state->state_fname = arg;
280 	return 0;
281 }
282 SANDBOX_CMDLINE_OPT_SHORT(state, 's', 1, "Specify the sandbox state FDT");
283 
sandbox_cmdline_cb_read(struct sandbox_state * state,const char * arg)284 static int sandbox_cmdline_cb_read(struct sandbox_state *state,
285 				   const char *arg)
286 {
287 	state->read_state = true;
288 	return 0;
289 }
290 SANDBOX_CMDLINE_OPT_SHORT(read, 'r', 0, "Read the state FDT on startup");
291 
sandbox_cmdline_cb_write(struct sandbox_state * state,const char * arg)292 static int sandbox_cmdline_cb_write(struct sandbox_state *state,
293 				    const char *arg)
294 {
295 	state->write_state = true;
296 	return 0;
297 }
298 SANDBOX_CMDLINE_OPT_SHORT(write, 'w', 0, "Write state FDT on exit");
299 
sandbox_cmdline_cb_ignore_missing(struct sandbox_state * state,const char * arg)300 static int sandbox_cmdline_cb_ignore_missing(struct sandbox_state *state,
301 					     const char *arg)
302 {
303 	state->ignore_missing_state_on_read = true;
304 	return 0;
305 }
306 SANDBOX_CMDLINE_OPT_SHORT(ignore_missing, 'n', 0,
307 			  "Ignore missing state on read");
308 
sandbox_cmdline_cb_show_lcd(struct sandbox_state * state,const char * arg)309 static int sandbox_cmdline_cb_show_lcd(struct sandbox_state *state,
310 				       const char *arg)
311 {
312 	state->show_lcd = true;
313 	return 0;
314 }
315 SANDBOX_CMDLINE_OPT_SHORT(show_lcd, 'l', 0,
316 			  "Show the sandbox LCD display");
317 
sandbox_cmdline_cb_double_lcd(struct sandbox_state * state,const char * arg)318 static int sandbox_cmdline_cb_double_lcd(struct sandbox_state *state,
319 					 const char *arg)
320 {
321 	state->double_lcd = true;
322 
323 	return 0;
324 }
325 SANDBOX_CMDLINE_OPT_SHORT(double_lcd, 'K', 0,
326 			  "Double the LCD display size in each direction");
327 
328 static const char *term_args[STATE_TERM_COUNT] = {
329 	"raw-with-sigs",
330 	"raw",
331 	"cooked",
332 };
333 
sandbox_cmdline_cb_terminal(struct sandbox_state * state,const char * arg)334 static int sandbox_cmdline_cb_terminal(struct sandbox_state *state,
335 				       const char *arg)
336 {
337 	int i;
338 
339 	for (i = 0; i < STATE_TERM_COUNT; i++) {
340 		if (!strcmp(arg, term_args[i])) {
341 			state->term_raw = i;
342 			return 0;
343 		}
344 	}
345 
346 	printf("Unknown terminal setting '%s' (", arg);
347 	for (i = 0; i < STATE_TERM_COUNT; i++)
348 		printf("%s%s", i ? ", " : "", term_args[i]);
349 	puts(")\n");
350 
351 	return 1;
352 }
353 SANDBOX_CMDLINE_OPT_SHORT(terminal, 't', 1,
354 			  "Set terminal to raw/cooked mode");
355 
sandbox_cmdline_cb_verbose(struct sandbox_state * state,const char * arg)356 static int sandbox_cmdline_cb_verbose(struct sandbox_state *state,
357 				      const char *arg)
358 {
359 	state->show_test_output = true;
360 	return 0;
361 }
362 SANDBOX_CMDLINE_OPT_SHORT(verbose, 'v', 0, "Show test output");
363 
sandbox_cmdline_cb_log_level(struct sandbox_state * state,const char * arg)364 static int sandbox_cmdline_cb_log_level(struct sandbox_state *state,
365 					const char *arg)
366 {
367 	state->default_log_level = simple_strtol(arg, NULL, 10);
368 
369 	return 0;
370 }
371 SANDBOX_CMDLINE_OPT_SHORT(log_level, 'L', 1,
372 			  "Set log level (0=panic, 7=debug)");
373 
sandbox_cmdline_cb_unittests(struct sandbox_state * state,const char * arg)374 static int sandbox_cmdline_cb_unittests(struct sandbox_state *state,
375 					const char *arg)
376 {
377 	state->run_unittests = true;
378 
379 	return 0;
380 }
381 SANDBOX_CMDLINE_OPT_SHORT(unittests, 'u', 0, "Run unit tests");
382 
sandbox_cmdline_cb_select_unittests(struct sandbox_state * state,const char * arg)383 static int sandbox_cmdline_cb_select_unittests(struct sandbox_state *state,
384 					       const char *arg)
385 {
386 	state->select_unittests = arg;
387 
388 	return 0;
389 }
390 SANDBOX_CMDLINE_OPT_SHORT(select_unittests, 'k', 1, "Select unit tests to run");
391 
setup_ram_buf(struct sandbox_state * state)392 static void setup_ram_buf(struct sandbox_state *state)
393 {
394 	/* Zero the RAM buffer if we didn't read it, to keep valgrind happy */
395 	if (!state->ram_buf_read)
396 		memset(state->ram_buf, '\0', state->ram_size);
397 
398 	gd->arch.ram_buf = state->ram_buf;
399 	gd->ram_size = state->ram_size;
400 }
401 
state_show(struct sandbox_state * state)402 void state_show(struct sandbox_state *state)
403 {
404 	char **p;
405 
406 	printf("Arguments:\n");
407 	for (p = state->argv; *p; p++)
408 		printf("%s ", *p);
409 	printf("\n");
410 }
411 
efi_reset_system(enum efi_reset_type reset_type,efi_status_t reset_status,unsigned long data_size,void * reset_data)412 void __efi_runtime EFIAPI efi_reset_system(
413 		enum efi_reset_type reset_type,
414 		efi_status_t reset_status,
415 		unsigned long data_size, void *reset_data)
416 {
417 	os_fd_restore();
418 	os_relaunch(os_argv);
419 }
420 
sandbox_reset(void)421 void sandbox_reset(void)
422 {
423 	/* Do this here while it still has an effect */
424 	os_fd_restore();
425 	if (state_uninit())
426 		os_exit(2);
427 
428 	if (dm_uninit())
429 		os_exit(2);
430 
431 	/* Restart U-Boot */
432 	os_relaunch(os_argv);
433 }
434 
main(int argc,char * argv[])435 int main(int argc, char *argv[])
436 {
437 	struct sandbox_state *state;
438 	gd_t data;
439 	int ret;
440 
441 	/*
442 	 * Copy argv[] so that we can pass the arguments in the original
443 	 * sequence when resetting the sandbox.
444 	 */
445 	os_argv = calloc(argc + 1, sizeof(char *));
446 	if (!os_argv)
447 		os_exit(1);
448 	memcpy(os_argv, argv, sizeof(char *) * (argc + 1));
449 
450 	memset(&data, '\0', sizeof(data));
451 	gd = &data;
452 	gd->arch.text_base = os_find_text_base();
453 
454 	ret = state_init();
455 	if (ret)
456 		goto err;
457 
458 	state = state_get_current();
459 	if (os_parse_args(state, argc, argv))
460 		return 1;
461 
462 	/* Remove old memory file if required */
463 	if (state->ram_buf_rm && state->ram_buf_fname) {
464 		os_unlink(state->ram_buf_fname);
465 		state->write_ram_buf = false;
466 		state->ram_buf_fname = NULL;
467 	}
468 
469 	ret = sandbox_read_state(state, state->state_fname);
470 	if (ret)
471 		goto err;
472 
473 	ret = os_setup_signal_handlers();
474 	if (ret)
475 		goto err;
476 
477 #if CONFIG_VAL(SYS_MALLOC_F_LEN)
478 	gd->malloc_base = CONFIG_MALLOC_F_ADDR;
479 #endif
480 #if CONFIG_IS_ENABLED(LOG)
481 	gd->default_log_level = state->default_log_level;
482 #endif
483 	setup_ram_buf(state);
484 
485 	/*
486 	 * Set up the relocation offset here, since sandbox symbols are always
487 	 * relocated by the OS before sandbox is entered.
488 	 */
489 	gd->reloc_off = (ulong)gd->arch.text_base;
490 
491 	/* sandbox test: log functions called before log_init in board_init_f */
492 	log_info("sandbox: starting...\n");
493 	log_debug("debug: %s\n", __func__);
494 
495 	/* Do pre- and post-relocation init */
496 	board_init_f(0);
497 
498 	board_init_r(gd->new_gd, 0);
499 
500 	/* NOTREACHED - board_init_r() does not return */
501 	return 0;
502 
503 err:
504 	printf("Error %d\n", ret);
505 	return 1;
506 }
507