xref: /linux/init/main.c (revision 546b928da0427b0d6c663cbb992bd7bfa9ac7971)
1 // SPDX-License-Identifier: GPL-2.0-only
2 /*
3  *  linux/init/main.c
4  *
5  *  Copyright (C) 1991, 1992  Linus Torvalds
6  *
7  *  GK 2/5/95  -  Changed to support mounting root fs via NFS
8  *  Added initrd & change_root: Werner Almesberger & Hans Lermen, Feb '96
9  *  Moan early if gcc is old, avoiding bogus kernels - Paul Gortmaker, May '96
10  *  Simplified starting of init:  Michael A. Griffith <grif@acm.org>
11  */
12 
13 #define DEBUG		/* Enable initcall_debug */
14 
15 #include <linux/types.h>
16 #include <linux/export.h>
17 #include <linux/extable.h>
18 #include <linux/module.h>
19 #include <linux/proc_fs.h>
20 #include <linux/binfmts.h>
21 #include <linux/kernel.h>
22 #include <linux/syscalls.h>
23 #include <linux/stackprotector.h>
24 #include <linux/string.h>
25 #include <linux/ctype.h>
26 #include <linux/delay.h>
27 #include <linux/ioport.h>
28 #include <linux/init.h>
29 #include <linux/initrd.h>
30 #include <linux/memblock.h>
31 #include <linux/acpi.h>
32 #include <linux/bootconfig.h>
33 #include <linux/console.h>
34 #include <linux/nmi.h>
35 #include <linux/percpu.h>
36 #include <linux/kmod.h>
37 #include <linux/kprobes.h>
38 #include <linux/kmsan.h>
39 #include <linux/ksysfs.h>
40 #include <linux/vmalloc.h>
41 #include <linux/kernel_stat.h>
42 #include <linux/start_kernel.h>
43 #include <linux/security.h>
44 #include <linux/smp.h>
45 #include <linux/profile.h>
46 #include <linux/kfence.h>
47 #include <linux/rcupdate.h>
48 #include <linux/srcu.h>
49 #include <linux/moduleparam.h>
50 #include <linux/kallsyms.h>
51 #include <linux/buildid.h>
52 #include <linux/writeback.h>
53 #include <linux/cpu.h>
54 #include <linux/cpuset.h>
55 #include <linux/memcontrol.h>
56 #include <linux/cgroup.h>
57 #include <linux/tick.h>
58 #include <linux/sched/isolation.h>
59 #include <linux/interrupt.h>
60 #include <linux/taskstats_kern.h>
61 #include <linux/delayacct.h>
62 #include <linux/unistd.h>
63 #include <linux/utsname.h>
64 #include <linux/rmap.h>
65 #include <linux/mempolicy.h>
66 #include <linux/key.h>
67 #include <linux/debug_locks.h>
68 #include <linux/debugobjects.h>
69 #include <linux/lockdep.h>
70 #include <linux/kmemleak.h>
71 #include <linux/padata.h>
72 #include <linux/pid_namespace.h>
73 #include <linux/device/driver.h>
74 #include <linux/kthread.h>
75 #include <linux/sched.h>
76 #include <linux/sched/init.h>
77 #include <linux/signal.h>
78 #include <linux/idr.h>
79 #include <linux/kgdb.h>
80 #include <linux/ftrace.h>
81 #include <linux/async.h>
82 #include <linux/shmem_fs.h>
83 #include <linux/slab.h>
84 #include <linux/perf_event.h>
85 #include <linux/ptrace.h>
86 #include <linux/pti.h>
87 #include <linux/blkdev.h>
88 #include <linux/sched/clock.h>
89 #include <linux/sched/task.h>
90 #include <linux/sched/task_stack.h>
91 #include <linux/context_tracking.h>
92 #include <linux/random.h>
93 #include <linux/moduleloader.h>
94 #include <linux/list.h>
95 #include <linux/integrity.h>
96 #include <linux/proc_ns.h>
97 #include <linux/io.h>
98 #include <linux/cache.h>
99 #include <linux/rodata_test.h>
100 #include <linux/jump_label.h>
101 #include <linux/kcsan.h>
102 #include <linux/init_syscalls.h>
103 #include <linux/stackdepot.h>
104 #include <linux/randomize_kstack.h>
105 #include <linux/pidfs.h>
106 #include <linux/fs_struct.h>
107 #include <linux/ptdump.h>
108 #include <linux/time_namespace.h>
109 #include <linux/unaligned.h>
110 #include <linux/vdso_datastore.h>
111 #include <net/net_namespace.h>
112 
113 #include <asm/io.h>
114 #include <asm/setup.h>
115 #include <asm/sections.h>
116 #include <asm/cacheflush.h>
117 
118 #define CREATE_TRACE_POINTS
119 #include <trace/events/initcall.h>
120 
121 #include <kunit/test.h>
122 
123 static int kernel_init(void *);
124 
125 /*
126  * Debug helper: via this flag we know that we are in 'early bootup code'
127  * where only the boot processor is running with IRQ disabled.  This means
128  * two things - IRQ must not be enabled before the flag is cleared and some
129  * operations which are not allowed with IRQ disabled are allowed while the
130  * flag is set.
131  */
132 bool early_boot_irqs_disabled __read_mostly;
133 
134 enum system_states system_state __read_mostly;
135 EXPORT_SYMBOL(system_state);
136 
137 /*
138  * Boot command-line arguments
139  */
140 #define MAX_INIT_ARGS CONFIG_INIT_ENV_ARG_LIMIT
141 #define MAX_INIT_ENVS CONFIG_INIT_ENV_ARG_LIMIT
142 
143 /* Default late time init is NULL. archs can override this later. */
144 void (*__initdata late_time_init)(void);
145 
146 /* Untouched command line saved by arch-specific code. */
147 char __initdata boot_command_line[COMMAND_LINE_SIZE];
148 /* Untouched saved command line (eg. for /proc) */
149 char *saved_command_line __ro_after_init;
150 unsigned int saved_command_line_len __ro_after_init;
151 /* Command line for parameter parsing */
152 static char *static_command_line;
153 /* Untouched extra command line */
154 static char *extra_command_line;
155 /* Extra init arguments */
156 static char *extra_init_args;
157 
158 #ifdef CONFIG_BOOT_CONFIG
159 /* Is bootconfig on command line? */
160 static bool bootconfig_found;
161 static size_t initargs_offs;
162 #else
163 # define bootconfig_found false
164 # define initargs_offs 0
165 #endif
166 
167 static char *execute_command;
168 static char *ramdisk_execute_command = "/init";
169 static bool __initdata ramdisk_execute_command_set;
170 
171 /*
172  * Used to generate warnings if static_key manipulation functions are used
173  * before jump_label_init is called.
174  */
175 bool static_key_initialized __read_mostly;
176 EXPORT_SYMBOL_GPL(static_key_initialized);
177 
178 /*
179  * If set, this is an indication to the drivers that reset the underlying
180  * device before going ahead with the initialization otherwise driver might
181  * rely on the BIOS and skip the reset operation.
182  *
183  * This is useful if kernel is booting in an unreliable environment.
184  * For ex. kdump situation where previous kernel has crashed, BIOS has been
185  * skipped and devices will be in unknown state.
186  */
187 unsigned int reset_devices;
188 EXPORT_SYMBOL(reset_devices);
189 
set_reset_devices(char * str)190 static int __init set_reset_devices(char *str)
191 {
192 	reset_devices = 1;
193 	return 1;
194 }
195 
196 __setup("reset_devices", set_reset_devices);
197 
198 static const char *argv_init[MAX_INIT_ARGS+2] = { "init", NULL, };
199 const char *envp_init[MAX_INIT_ENVS+2] = { "HOME=/", "TERM=linux", NULL, };
200 static const char *panic_later, *panic_param;
201 
obsolete_checksetup(char * line)202 static bool __init obsolete_checksetup(char *line)
203 {
204 	const struct obs_kernel_param *p;
205 	bool had_early_param = false;
206 
207 	p = __setup_start;
208 	do {
209 		int n = strlen(p->str);
210 		if (parameqn(line, p->str, n)) {
211 			if (p->early) {
212 				/* Already done in parse_early_param?
213 				 * (Needs exact match on param part).
214 				 * Keep iterating, as we can have early
215 				 * params and __setups of same names 8( */
216 				if (line[n] == '\0' || line[n] == '=')
217 					had_early_param = true;
218 			} else if (!p->setup_func) {
219 				pr_warn("Parameter %s is obsolete, ignored\n",
220 					p->str);
221 				return true;
222 			} else if (p->setup_func(line + n))
223 				return true;
224 		}
225 		p++;
226 	} while (p < __setup_end);
227 
228 	return had_early_param;
229 }
230 
231 /*
232  * This should be approx 2 Bo*oMips to start (note initial shift), and will
233  * still work even if initially too large, it will just take slightly longer
234  */
235 unsigned long loops_per_jiffy = (1<<12);
236 EXPORT_SYMBOL(loops_per_jiffy);
237 
debug_kernel(char * str)238 static int __init debug_kernel(char *str)
239 {
240 	console_loglevel = CONSOLE_LOGLEVEL_DEBUG;
241 	return 0;
242 }
243 
quiet_kernel(char * str)244 static int __init quiet_kernel(char *str)
245 {
246 	console_loglevel = CONSOLE_LOGLEVEL_QUIET;
247 	return 0;
248 }
249 
250 early_param("debug", debug_kernel);
251 early_param("quiet", quiet_kernel);
252 
loglevel(char * str)253 static int __init loglevel(char *str)
254 {
255 	int newlevel;
256 
257 	/*
258 	 * Only update loglevel value when a correct setting was passed,
259 	 * to prevent blind crashes (when loglevel being set to 0) that
260 	 * are quite hard to debug
261 	 */
262 	if (get_option(&str, &newlevel)) {
263 		console_loglevel = newlevel;
264 		return 0;
265 	}
266 
267 	return -EINVAL;
268 }
269 
270 early_param("loglevel", loglevel);
271 
272 #ifdef CONFIG_BLK_DEV_INITRD
get_boot_config_from_initrd(size_t * _size)273 static void * __init get_boot_config_from_initrd(size_t *_size)
274 {
275 	u32 size, csum;
276 	char *data;
277 	u8 *hdr;
278 	int i;
279 
280 	if (!initrd_end || initrd_end < initrd_start ||
281 	    initrd_end - initrd_start < BOOTCONFIG_MAGIC_LEN + 8)
282 		return NULL;
283 
284 	data = (char *)initrd_end - BOOTCONFIG_MAGIC_LEN;
285 	/*
286 	 * Since Grub may align the size of initrd to 4, we must
287 	 * check the preceding 3 bytes as well.
288 	 */
289 	for (i = 0; i < 4; i++) {
290 		if (!memcmp(data, BOOTCONFIG_MAGIC, BOOTCONFIG_MAGIC_LEN))
291 			goto found;
292 		data--;
293 	}
294 	return NULL;
295 
296 found:
297 	hdr = (u8 *)(data - 8);
298 	if ((unsigned long)hdr < initrd_start)
299 		return NULL;
300 
301 	size = get_unaligned_le32(hdr);
302 	csum = get_unaligned_le32(hdr + 4);
303 
304 	if (size > XBC_DATA_MAX) {
305 		pr_err("bootconfig size %u is greater than max size %d\n",
306 			size, XBC_DATA_MAX);
307 		return NULL;
308 	}
309 
310 	if (size > ((unsigned long)hdr - initrd_start)) {
311 		pr_err("bootconfig size %u is greater than initrd size %lu\n",
312 			size, initrd_end - initrd_start);
313 		return NULL;
314 	}
315 
316 	data = ((void *)hdr) - size;
317 
318 	if (xbc_calc_checksum(data, size) != csum) {
319 		pr_err("bootconfig checksum failed\n");
320 		return NULL;
321 	}
322 
323 	/* Remove bootconfig from initramfs/initrd */
324 	initrd_end = (unsigned long)data;
325 	if (_size)
326 		*_size = size;
327 
328 	return data;
329 }
330 #else
get_boot_config_from_initrd(size_t * _size)331 static void * __init get_boot_config_from_initrd(size_t *_size)
332 {
333 	return NULL;
334 }
335 #endif
336 
337 #ifdef CONFIG_BOOT_CONFIG
338 
339 /* Make an extra command line under given key word */
xbc_make_cmdline(const char * key)340 static char * __init xbc_make_cmdline(const char *key)
341 {
342 	struct xbc_node *root;
343 	char *new_cmdline;
344 	int ret, len = 0;
345 
346 	root = xbc_find_node(key);
347 	if (!root)
348 		return NULL;
349 
350 	/* Count required buffer size */
351 	len = xbc_snprint_cmdline(NULL, 0, root);
352 	if (len <= 0)
353 		return NULL;
354 
355 	new_cmdline = memblock_alloc(len + 1, SMP_CACHE_BYTES);
356 	if (!new_cmdline) {
357 		pr_err("Failed to allocate memory for extra kernel cmdline.\n");
358 		return NULL;
359 	}
360 
361 	ret = xbc_snprint_cmdline(new_cmdline, len + 1, root);
362 	if (ret < 0 || ret > len) {
363 		pr_err("Failed to print extra kernel cmdline.\n");
364 		memblock_free(new_cmdline, len + 1);
365 		return NULL;
366 	}
367 
368 	return new_cmdline;
369 }
370 
warn_bootconfig(char * str)371 static int __init warn_bootconfig(char *str)
372 {
373 	/* The 'bootconfig' option is handled by setup_boot_config(). */
374 	return 0;
375 }
376 
setup_boot_config(void)377 static void __init setup_boot_config(void)
378 {
379 	const char *msg, *data;
380 	int pos, ret, offs;
381 	size_t size;
382 	bool from_embedded = false;
383 
384 	/* Cut out the bootconfig data even if we have no bootconfig option */
385 	data = get_boot_config_from_initrd(&size);
386 	/* If there is no bootconfig in initrd, try embedded one. */
387 	if (!data) {
388 		data = xbc_get_embedded_bootconfig(&size);
389 		from_embedded = true;
390 	}
391 
392 	bootconfig_found = bootconfig_cmdline_requested(boot_command_line, &offs);
393 	if (!(bootconfig_found || IS_ENABLED(CONFIG_BOOT_CONFIG_FORCE)))
394 		return;
395 
396 	/* Offset of the init arguments after a "--", located by the helper. */
397 	initargs_offs = offs;
398 
399 	if (!data) {
400 		/* If user intended to use bootconfig, show an error level message */
401 		if (bootconfig_found)
402 			pr_err("'bootconfig' found on command line, but no bootconfig found\n");
403 		else
404 			pr_info("No bootconfig data provided, so skipping bootconfig");
405 		return;
406 	}
407 
408 	ret = xbc_init(data, size, &msg, &pos);
409 	if (ret < 0) {
410 		if (pos < 0)
411 			pr_err("Failed to init bootconfig: %s.\n", msg);
412 		else
413 			pr_err("Failed to parse bootconfig: %s at %d.\n",
414 				msg, pos);
415 	} else {
416 		xbc_get_info(&ret, NULL);
417 		pr_info("Load bootconfig: %ld bytes %d nodes\n", (long)size, ret);
418 		/*
419 		 * keys starting with "kernel." are passed via cmdline. When
420 		 * this bootconfig came from the embedded source and
421 		 * setup_arch() already prepended the rendered "kernel" subtree
422 		 * to boot_command_line, rendering again here would duplicate
423 		 * the keys in saved_command_line and make accumulating handlers
424 		 * (console=, earlycon=, ...) re-register the same value. Skip
425 		 * only when the prepend really happened.
426 		 *
427 		 * On arches that do not select ARCH_SUPPORTS_CMDLINE_FROM_BOOTCONFIG,
428 		 * CONFIG_CMDLINE_FROM_BOOTCONFIG is unselectable and
429 		 * xbc_embedded_cmdline_applied() collapses to a stub returning
430 		 * false, so this path still runs and the embedded "kernel"
431 		 * keys reach the cmdline via the runtime parser exactly as
432 		 * before this series.
433 		 */
434 		if (!from_embedded || !xbc_embedded_cmdline_applied())
435 			extra_command_line = xbc_make_cmdline("kernel");
436 		/* Also, "init." keys are init arguments */
437 		extra_init_args = xbc_make_cmdline("init");
438 	}
439 	return;
440 }
441 
exit_boot_config(void)442 static void __init exit_boot_config(void)
443 {
444 	xbc_exit();
445 }
446 
447 #else	/* !CONFIG_BOOT_CONFIG */
448 
setup_boot_config(void)449 static void __init setup_boot_config(void)
450 {
451 	/* Remove bootconfig data from initrd */
452 	get_boot_config_from_initrd(NULL);
453 }
454 
warn_bootconfig(char * str)455 static int __init warn_bootconfig(char *str)
456 {
457 	pr_warn("WARNING: 'bootconfig' found on the kernel command line but CONFIG_BOOT_CONFIG is not set.\n");
458 	return 0;
459 }
460 
461 #define exit_boot_config()	do {} while (0)
462 
463 #endif	/* CONFIG_BOOT_CONFIG */
464 
465 early_param("bootconfig", warn_bootconfig);
466 
cmdline_has_extra_options(void)467 bool __init cmdline_has_extra_options(void)
468 {
469 	return extra_command_line || extra_init_args;
470 }
471 
472 /* Change NUL term back to "=", to make "param" the whole string. */
repair_env_string(char * param,char * val)473 static void __init repair_env_string(char *param, char *val)
474 {
475 	if (val) {
476 		/* param=val or param="val"? */
477 		if (val == param+strlen(param)+1)
478 			val[-1] = '=';
479 		else if (val == param+strlen(param)+2) {
480 			val[-2] = '=';
481 			memmove(val-1, val, strlen(val)+1);
482 		} else
483 			BUG();
484 	}
485 }
486 
487 /* Anything after -- gets handed straight to init. */
set_init_arg(char * param,char * val,const char * unused,void * arg)488 static int __init set_init_arg(char *param, char *val,
489 			       const char *unused, void *arg)
490 {
491 	unsigned int i;
492 
493 	if (panic_later)
494 		return 0;
495 
496 	repair_env_string(param, val);
497 
498 	for (i = 0; argv_init[i]; i++) {
499 		if (i == MAX_INIT_ARGS) {
500 			panic_later = "init";
501 			panic_param = param;
502 			return 0;
503 		}
504 	}
505 	argv_init[i] = param;
506 	return 0;
507 }
508 
509 /*
510  * Unknown boot options get handed to init, unless they look like
511  * unused parameters (modprobe will find them in /proc/cmdline).
512  */
unknown_bootoption(char * param,char * val,const char * unused,void * arg)513 static int __init unknown_bootoption(char *param, char *val,
514 				     const char *unused, void *arg)
515 {
516 	size_t len = strlen(param);
517 	/*
518 	 * Well-known bootloader identifiers:
519 	 * 1. LILO/Grub pass "BOOT_IMAGE=...";
520 	 * 2. kexec/kdump (kexec-tools) pass "kexec".
521 	 */
522 	const char *bootloader[] = { "BOOT_IMAGE=", "kexec", NULL };
523 
524 	/* Handle params aliased to sysctls */
525 	if (sysctl_is_alias(param))
526 		return 0;
527 
528 	repair_env_string(param, val);
529 
530 	/* Handle bootloader identifier */
531 	for (int i = 0; bootloader[i]; i++) {
532 		if (strstarts(param, bootloader[i]))
533 			return 0;
534 	}
535 
536 	/* Handle obsolete-style parameters */
537 	if (obsolete_checksetup(param))
538 		return 0;
539 
540 	/* Unused module parameter. */
541 	if (strnchr(param, len, '.'))
542 		return 0;
543 
544 	if (panic_later)
545 		return 0;
546 
547 	if (val) {
548 		/* Environment option */
549 		unsigned int i;
550 		for (i = 0; envp_init[i]; i++) {
551 			if (i == MAX_INIT_ENVS) {
552 				panic_later = "env";
553 				panic_param = param;
554 			}
555 			if (!strncmp(param, envp_init[i], len+1))
556 				break;
557 		}
558 		envp_init[i] = param;
559 	} else {
560 		/* Command line option */
561 		unsigned int i;
562 		for (i = 0; argv_init[i]; i++) {
563 			if (i == MAX_INIT_ARGS) {
564 				panic_later = "init";
565 				panic_param = param;
566 			}
567 		}
568 		argv_init[i] = param;
569 	}
570 	return 0;
571 }
572 
init_setup(char * str)573 static int __init init_setup(char *str)
574 {
575 	unsigned int i;
576 
577 	execute_command = str;
578 	/*
579 	 * In case LILO is going to boot us with default command line,
580 	 * it prepends "auto" before the whole cmdline which makes
581 	 * the shell think it should execute a script with such name.
582 	 * So we ignore all arguments entered _before_ init=... [MJ]
583 	 */
584 	for (i = 1; i < MAX_INIT_ARGS; i++)
585 		argv_init[i] = NULL;
586 	return 1;
587 }
588 __setup("init=", init_setup);
589 
rdinit_setup(char * str)590 static int __init rdinit_setup(char *str)
591 {
592 	unsigned int i;
593 
594 	ramdisk_execute_command = str;
595 	ramdisk_execute_command_set = true;
596 	/* See "auto" comment in init_setup */
597 	for (i = 1; i < MAX_INIT_ARGS; i++)
598 		argv_init[i] = NULL;
599 	return 1;
600 }
601 __setup("rdinit=", rdinit_setup);
602 
603 #ifndef CONFIG_SMP
setup_nr_cpu_ids(void)604 static inline void setup_nr_cpu_ids(void) { }
smp_prepare_cpus(unsigned int maxcpus)605 static inline void smp_prepare_cpus(unsigned int maxcpus) { }
606 #endif
607 
608 /*
609  * We need to store the untouched command line for future reference.
610  * We also need to store the touched command line since the parameter
611  * parsing is performed in place, and we should allow a component to
612  * store reference of name/value for future reference.
613  */
setup_command_line(char * command_line)614 static void __init setup_command_line(char *command_line)
615 {
616 	size_t len, xlen = 0, ilen = 0;
617 
618 	if (extra_command_line)
619 		xlen = strlen(extra_command_line);
620 	if (extra_init_args) {
621 		extra_init_args = strim(extra_init_args); /* remove trailing space */
622 		ilen = strlen(extra_init_args) + 4; /* for " -- " */
623 	}
624 
625 	len = xlen + strlen(boot_command_line) + ilen + 1;
626 
627 	saved_command_line = memblock_alloc_or_panic(len, SMP_CACHE_BYTES);
628 
629 	len = xlen + strlen(command_line) + 1;
630 
631 	static_command_line = memblock_alloc_or_panic(len, SMP_CACHE_BYTES);
632 
633 	if (xlen) {
634 		/*
635 		 * We have to put extra_command_line before boot command
636 		 * lines because there could be dashes (separator of init
637 		 * command line) in the command lines.
638 		 */
639 		strcpy(saved_command_line, extra_command_line);
640 		strcpy(static_command_line, extra_command_line);
641 	}
642 	strcpy(saved_command_line + xlen, boot_command_line);
643 	strcpy(static_command_line + xlen, command_line);
644 
645 	if (ilen) {
646 		/*
647 		 * Append supplemental init boot args to saved_command_line
648 		 * so that user can check what command line options passed
649 		 * to init.
650 		 * The order should always be
651 		 * " -- "[bootconfig init-param][cmdline init-param]
652 		 */
653 		if (initargs_offs) {
654 			len = xlen + initargs_offs;
655 			strcpy(saved_command_line + len, extra_init_args);
656 			len += ilen - 4;	/* strlen(extra_init_args) */
657 			strcpy(saved_command_line + len,
658 				boot_command_line + initargs_offs - 1);
659 		} else {
660 			len = strlen(saved_command_line);
661 			strcpy(saved_command_line + len, " -- ");
662 			len += 4;
663 			strcpy(saved_command_line + len, extra_init_args);
664 		}
665 	}
666 
667 	saved_command_line_len = strlen(saved_command_line);
668 }
669 
670 /*
671  * We need to finalize in a non-__init function or else race conditions
672  * between the root thread and the init thread may cause start_kernel to
673  * be reaped by free_initmem before the root thread has proceeded to
674  * cpu_idle.
675  *
676  * gcc-3.4 accidentally inlines this function, so use noinline.
677  */
678 
679 static __initdata DECLARE_COMPLETION(kthreadd_done);
680 
rest_init(void)681 static noinline void __ref __noreturn rest_init(void)
682 {
683 	struct kernel_clone_args init_args = {
684 		.flags		= (CLONE_VM | CLONE_UNTRACED),
685 		.fn		= kernel_init,
686 		.fn_arg		= NULL,
687 	};
688 	struct task_struct *tsk;
689 	int pid;
690 
691 	rcu_scheduler_starting();
692 	/*
693 	 * We need to spawn init first so that it obtains pid 1, however
694 	 * the init task will end up wanting to create kthreads, which, if
695 	 * we schedule it before we create kthreadd, will OOPS.
696 	 */
697 	pid = kernel_clone(&init_args);
698 	/*
699 	 * Pin init on the boot CPU. Task migration is not properly working
700 	 * until sched_init_smp() has been run. It will set the allowed
701 	 * CPUs for init to the non isolated CPUs.
702 	 */
703 	rcu_read_lock();
704 	tsk = find_task_by_pid_ns(pid, &init_pid_ns);
705 	tsk->flags |= PF_NO_SETAFFINITY;
706 	set_cpus_allowed_ptr(tsk, cpumask_of(smp_processor_id()));
707 	rcu_read_unlock();
708 
709 	numa_default_policy();
710 	pid = kernel_thread(kthreadd, NULL, NULL, CLONE_FS | CLONE_FILES);
711 	rcu_read_lock();
712 	kthreadd_task = find_task_by_pid_ns(pid, &init_pid_ns);
713 	rcu_read_unlock();
714 
715 	/*
716 	 * Enable might_sleep() and smp_processor_id() checks.
717 	 * They cannot be enabled earlier because with CONFIG_PREEMPTION=y
718 	 * kernel_thread() would trigger might_sleep() splats. With
719 	 * CONFIG_PREEMPT_VOLUNTARY=y the init task might have scheduled
720 	 * already, but it's stuck on the kthreadd_done completion.
721 	 */
722 	system_state = SYSTEM_SCHEDULING;
723 
724 	complete(&kthreadd_done);
725 
726 	/*
727 	 * The boot idle thread must execute schedule()
728 	 * at least once to get things moving:
729 	 */
730 	schedule_preempt_disabled();
731 	/* Call into cpu_idle with preempt disabled */
732 	cpu_startup_entry(CPUHP_ONLINE);
733 }
734 
735 /* Check for early params. */
do_early_param(char * param,char * val,const char * unused,void * arg)736 static int __init do_early_param(char *param, char *val,
737 				 const char *unused, void *arg)
738 {
739 	const struct obs_kernel_param *p;
740 
741 	for (p = __setup_start; p < __setup_end; p++) {
742 		if (p->early && parameq(param, p->str)) {
743 			if (p->setup_func(val) != 0)
744 				pr_warn("Malformed early option '%s'\n", param);
745 		}
746 	}
747 	/* We accept everything at this stage. */
748 	return 0;
749 }
750 
parse_early_options(char * cmdline)751 void __init parse_early_options(char *cmdline)
752 {
753 	parse_args("early options", cmdline, NULL, 0, 0, 0, NULL,
754 		   do_early_param);
755 }
756 
757 /* Arch code calls this early on, or if not, just before other parsing. */
parse_early_param(void)758 void __init parse_early_param(void)
759 {
760 	static int done __initdata;
761 	static char tmp_cmdline[COMMAND_LINE_SIZE] __initdata;
762 
763 	if (done)
764 		return;
765 
766 	/* All fall through to do_early_param. */
767 	strscpy(tmp_cmdline, boot_command_line, COMMAND_LINE_SIZE);
768 	parse_early_options(tmp_cmdline);
769 	done = 1;
770 }
771 
arch_post_acpi_subsys_init(void)772 void __init __weak arch_post_acpi_subsys_init(void) { }
773 
smp_setup_processor_id(void)774 void __init __weak smp_setup_processor_id(void)
775 {
776 }
777 
smp_prepare_boot_cpu(void)778 void __init __weak smp_prepare_boot_cpu(void)
779 {
780 }
781 
782 # if THREAD_SIZE >= PAGE_SIZE
thread_stack_cache_init(void)783 void __init __weak thread_stack_cache_init(void)
784 {
785 }
786 #endif
787 
poking_init(void)788 void __init __weak poking_init(void) { }
789 
pgtable_cache_init(void)790 void __init __weak pgtable_cache_init(void) { }
791 
trap_init(void)792 void __init __weak trap_init(void) { }
793 
794 bool initcall_debug;
795 core_param(initcall_debug, initcall_debug, bool, 0644);
796 
797 #ifdef TRACEPOINTS_ENABLED
798 static void __init initcall_debug_enable(void);
799 #else
initcall_debug_enable(void)800 static inline void initcall_debug_enable(void)
801 {
802 }
803 #endif
804 
805 #ifdef CONFIG_RANDOMIZE_KSTACK_OFFSET
806 DEFINE_STATIC_KEY_MAYBE_RO(CONFIG_RANDOMIZE_KSTACK_OFFSET_DEFAULT,
807 			   randomize_kstack_offset);
808 DEFINE_PER_CPU(struct rnd_state, kstack_rnd_state);
809 
random_kstack_init(void)810 static int __init random_kstack_init(void)
811 {
812 	prandom_seed_full_state(&kstack_rnd_state);
813 	return 0;
814 }
815 late_initcall(random_kstack_init);
816 
early_randomize_kstack_offset(char * buf)817 static int __init early_randomize_kstack_offset(char *buf)
818 {
819 	int ret;
820 	bool bool_result;
821 
822 	ret = kstrtobool(buf, &bool_result);
823 	if (ret)
824 		return ret;
825 
826 	if (bool_result)
827 		static_branch_enable(&randomize_kstack_offset);
828 	else
829 		static_branch_disable(&randomize_kstack_offset);
830 	return 0;
831 }
832 early_param("randomize_kstack_offset", early_randomize_kstack_offset);
833 #endif
834 
print_unknown_bootoptions(void)835 static void __init print_unknown_bootoptions(void)
836 {
837 	char *unknown_options;
838 	char *end;
839 	const char *const *p;
840 	size_t len;
841 
842 	if (panic_later || (!argv_init[1] && !envp_init[2]))
843 		return;
844 
845 	/*
846 	 * Determine how many options we have to print out, plus a space
847 	 * before each
848 	 */
849 	len = 1; /* null terminator */
850 	for (p = &argv_init[1]; *p; p++) {
851 		len++;
852 		len += strlen(*p);
853 	}
854 	for (p = &envp_init[2]; *p; p++) {
855 		len++;
856 		len += strlen(*p);
857 	}
858 
859 	unknown_options = memblock_alloc(len, SMP_CACHE_BYTES);
860 	if (!unknown_options) {
861 		pr_err("%s: Failed to allocate %zu bytes\n",
862 			__func__, len);
863 		return;
864 	}
865 	end = unknown_options;
866 
867 	for (p = &argv_init[1]; *p; p++)
868 		end += sprintf(end, " %s", *p);
869 	for (p = &envp_init[2]; *p; p++)
870 		end += sprintf(end, " %s", *p);
871 
872 	/* Start at unknown_options[1] to skip the initial space */
873 	pr_notice("Unknown kernel command line parameters \"%s\", will be passed to user space.\n",
874 		&unknown_options[1]);
875 	memblock_free(unknown_options, len);
876 }
877 
early_numa_node_init(void)878 static void __init early_numa_node_init(void)
879 {
880 #ifdef CONFIG_USE_PERCPU_NUMA_NODE_ID
881 #ifndef cpu_to_node
882 	int cpu;
883 
884 	/* The early_cpu_to_node() should be ready here. */
885 	for_each_possible_cpu(cpu)
886 		set_cpu_numa_node(cpu, early_cpu_to_node(cpu));
887 #endif
888 #endif
889 }
890 
891 #define KERNEL_CMDLINE_PREFIX		"Kernel command line: "
892 #define KERNEL_CMDLINE_PREFIX_LEN	(sizeof(KERNEL_CMDLINE_PREFIX) - 1)
893 #define KERNEL_CMDLINE_CONTINUATION	" \\"
894 #define KERNEL_CMDLINE_CONTINUATION_LEN	(sizeof(KERNEL_CMDLINE_CONTINUATION) - 1)
895 
896 #define MIN_CMDLINE_LOG_WRAP_IDEAL_LEN	(KERNEL_CMDLINE_PREFIX_LEN + \
897 					 KERNEL_CMDLINE_CONTINUATION_LEN)
898 #define CMDLINE_LOG_WRAP_IDEAL_LEN	(CONFIG_CMDLINE_LOG_WRAP_IDEAL_LEN > \
899 					 MIN_CMDLINE_LOG_WRAP_IDEAL_LEN ? \
900 					 CONFIG_CMDLINE_LOG_WRAP_IDEAL_LEN : \
901 					 MIN_CMDLINE_LOG_WRAP_IDEAL_LEN)
902 
903 #define IDEAL_CMDLINE_LEN		(CMDLINE_LOG_WRAP_IDEAL_LEN - KERNEL_CMDLINE_PREFIX_LEN)
904 #define IDEAL_CMDLINE_SPLIT_LEN		(IDEAL_CMDLINE_LEN - KERNEL_CMDLINE_CONTINUATION_LEN)
905 
906 /**
907  * print_kernel_cmdline() - Print the kernel cmdline with wrapping.
908  * @cmdline: The cmdline to print.
909  *
910  * Print the kernel command line, trying to wrap based on the Kconfig knob
911  * CONFIG_CMDLINE_LOG_WRAP_IDEAL_LEN.
912  *
913  * Wrapping is based on spaces, ignoring quotes. All lines are prefixed
914  * with "Kernel command line: " and lines that are not the last line have
915  * a " \" suffix added to them. The prefix and suffix count towards the
916  * line length for wrapping purposes. The ideal length will be exceeded
917  * if no appropriate place to wrap is found.
918  *
919  * Example output if CONFIG_CMDLINE_LOG_WRAP_IDEAL_LEN is 40:
920  *   Kernel command line: loglevel=7 \
921  *   Kernel command line: init=/sbin/init \
922  *   Kernel command line: root=PARTUUID=8c3efc1a-768b-6642-8d0c-89eb782f19f0/PARTNROFF=1 \
923  *   Kernel command line: rootwait ro \
924  *   Kernel command line: my_quoted_arg="The \
925  *   Kernel command line: quick brown fox \
926  *   Kernel command line: jumps over the \
927  *   Kernel command line: lazy dog."
928  */
print_kernel_cmdline(const char * cmdline)929 static void __init print_kernel_cmdline(const char *cmdline)
930 {
931 	size_t len;
932 
933 	/* Config option of 0 or anything longer than the max disables wrapping */
934 	if (CONFIG_CMDLINE_LOG_WRAP_IDEAL_LEN == 0 ||
935 	    IDEAL_CMDLINE_LEN >= COMMAND_LINE_SIZE - 1) {
936 		pr_notice("%s%s\n", KERNEL_CMDLINE_PREFIX, cmdline);
937 		return;
938 	}
939 
940 	len = strlen(cmdline);
941 	while (len > IDEAL_CMDLINE_LEN) {
942 		const char *first_space;
943 		const char *prev_cutoff;
944 		const char *cutoff;
945 		int to_print;
946 		size_t used;
947 
948 		/* Find the last ' ' that wouldn't make the line too long */
949 		prev_cutoff = NULL;
950 		cutoff = cmdline;
951 		while (true) {
952 			cutoff = strchr(cutoff + 1, ' ');
953 			if (!cutoff || cutoff - cmdline > IDEAL_CMDLINE_SPLIT_LEN)
954 				break;
955 			prev_cutoff = cutoff;
956 		}
957 		if (prev_cutoff)
958 			cutoff = prev_cutoff;
959 		else if (!cutoff)
960 			break;
961 
962 		/* Find the beginning and end of the string of spaces */
963 		first_space = cutoff;
964 		while (first_space > cmdline && first_space[-1] == ' ')
965 			first_space--;
966 		to_print = first_space - cmdline;
967 		while (*cutoff == ' ')
968 			cutoff++;
969 		used = cutoff - cmdline;
970 
971 		/* If the whole string is used, break and do the final printout */
972 		if (len == used)
973 			break;
974 
975 		if (to_print)
976 			pr_notice("%s%.*s%s\n", KERNEL_CMDLINE_PREFIX,
977 				  to_print, cmdline, KERNEL_CMDLINE_CONTINUATION);
978 
979 		len -= used;
980 		cmdline += used;
981 	}
982 	if (len)
983 		pr_notice("%s%s\n", KERNEL_CMDLINE_PREFIX, cmdline);
984 }
985 
986 asmlinkage __visible __init __no_sanitize_address __noreturn __no_stack_protector
start_kernel(void)987 void start_kernel(void)
988 {
989 	char *command_line;
990 	char *after_dashes;
991 
992 	set_task_stack_end_magic(&init_task);
993 	smp_setup_processor_id();
994 	debug_objects_early_init();
995 	init_vmlinux_build_id();
996 
997 	cgroup_init_early();
998 
999 	local_irq_disable();
1000 	early_boot_irqs_disabled = true;
1001 
1002 	/*
1003 	 * Interrupts are still disabled. Do necessary setups, then
1004 	 * enable them.
1005 	 */
1006 	boot_cpu_init();
1007 	page_address_init();
1008 	pr_notice("%s", linux_banner);
1009 	setup_arch(&command_line);
1010 	mm_core_init_early();
1011 	/* Static keys and static calls are needed by LSMs */
1012 	jump_label_init();
1013 	static_call_init();
1014 	early_security_init();
1015 	setup_boot_config();
1016 	setup_command_line(command_line);
1017 	setup_nr_cpu_ids();
1018 	setup_per_cpu_areas();
1019 	smp_prepare_boot_cpu();	/* arch-specific boot-cpu hooks */
1020 	early_numa_node_init();
1021 	boot_cpu_hotplug_init();
1022 
1023 	print_kernel_cmdline(saved_command_line);
1024 	/* parameters may set static keys */
1025 	parse_early_param();
1026 	after_dashes = parse_args("Booting kernel",
1027 				  static_command_line, __start___param,
1028 				  __stop___param - __start___param,
1029 				  -1, -1, NULL, &unknown_bootoption);
1030 	print_unknown_bootoptions();
1031 	if (!IS_ERR_OR_NULL(after_dashes))
1032 		parse_args("Setting init args", after_dashes, NULL, 0, -1, -1,
1033 			   NULL, set_init_arg);
1034 	if (extra_init_args)
1035 		parse_args("Setting extra init args", extra_init_args,
1036 			   NULL, 0, -1, -1, NULL, set_init_arg);
1037 
1038 	/* Architectural and non-timekeeping rng init, before allocator init */
1039 	random_init_early(command_line);
1040 
1041 	/*
1042 	 * These use large bootmem allocations and must precede
1043 	 * initalization of page allocator
1044 	 */
1045 	setup_log_buf(0);
1046 	vfs_caches_init_early();
1047 	sort_main_extable();
1048 	trap_init();
1049 	mm_core_init();
1050 	maple_tree_init();
1051 	poking_init();
1052 	ftrace_init();
1053 
1054 	/* trace_printk can be enabled here */
1055 	early_trace_init();
1056 
1057 	/*
1058 	 * Set up the scheduler prior starting any interrupts (such as the
1059 	 * timer interrupt). Full topology setup happens at smp_init()
1060 	 * time - but meanwhile we still have a functioning scheduler.
1061 	 */
1062 	sched_init();
1063 
1064 	if (WARN(!irqs_disabled(),
1065 		 "Interrupts were enabled *very* early, fixing it\n"))
1066 		local_irq_disable();
1067 	radix_tree_init();
1068 
1069 	/*
1070 	 * Set up housekeeping before setting up workqueues to allow the unbound
1071 	 * workqueue to take non-housekeeping into account.
1072 	 */
1073 	housekeeping_init();
1074 
1075 	/*
1076 	 * Allow workqueue creation and work item queueing/cancelling
1077 	 * early.  Work item execution depends on kthreads and starts after
1078 	 * workqueue_init().
1079 	 */
1080 	workqueue_init_early();
1081 
1082 	rcu_init();
1083 	kvfree_rcu_init();
1084 
1085 	/* Trace events are available after this */
1086 	trace_init();
1087 
1088 	if (initcall_debug)
1089 		initcall_debug_enable();
1090 
1091 	context_tracking_init();
1092 	/* init some links before init_ISA_irqs() */
1093 	early_irq_init();
1094 	init_IRQ();
1095 	tick_init();
1096 	rcu_init_nohz();
1097 	timers_init();
1098 	srcu_init();
1099 	hrtimers_init();
1100 	softirq_init();
1101 	vdso_setup_data_pages();
1102 	timekeeping_init();
1103 	time_init();
1104 
1105 	/* This must be after timekeeping is initialized */
1106 	random_init();
1107 
1108 	/* These make use of the fully initialized rng */
1109 	kfence_init();
1110 	boot_init_stack_canary();
1111 
1112 	perf_event_init();
1113 	profile_init();
1114 	call_function_init();
1115 	WARN(!irqs_disabled(), "Interrupts were enabled early\n");
1116 
1117 	early_boot_irqs_disabled = false;
1118 	local_irq_enable();
1119 
1120 	kmem_cache_init_late();
1121 
1122 	/*
1123 	 * HACK ALERT! This is early. We're enabling the console before
1124 	 * we've done PCI setups etc, and console_init() must be aware of
1125 	 * this. But we do want output early, in case something goes wrong.
1126 	 */
1127 	console_init();
1128 	if (panic_later)
1129 		panic("Too many boot %s vars at `%s'", panic_later,
1130 		      panic_param);
1131 
1132 	lockdep_init();
1133 
1134 	/*
1135 	 * Need to run this when irqs are enabled, because it wants
1136 	 * to self-test [hard/soft]-irqs on/off lock inversion bugs
1137 	 * too:
1138 	 */
1139 	locking_selftest();
1140 
1141 #ifdef CONFIG_BLK_DEV_INITRD
1142 	if (initrd_start && !initrd_below_start_ok &&
1143 	    page_to_pfn(virt_to_page((void *)initrd_start)) < min_low_pfn) {
1144 		pr_crit("initrd overwritten (0x%08lx < 0x%08lx) - disabling it.\n",
1145 		    page_to_pfn(virt_to_page((void *)initrd_start)),
1146 		    min_low_pfn);
1147 		initrd_start = 0;
1148 	}
1149 #endif
1150 	setup_per_cpu_pageset();
1151 	numa_policy_init();
1152 	acpi_early_init();
1153 	if (late_time_init)
1154 		late_time_init();
1155 	sched_clock_init();
1156 	calibrate_delay();
1157 
1158 	arch_cpu_finalize_init();
1159 
1160 	pid_idr_init();
1161 	anon_vma_init();
1162 	thread_stack_cache_init();
1163 	cred_init();
1164 	fork_init();
1165 	proc_caches_init();
1166 	uts_ns_init();
1167 	time_ns_init();
1168 	key_init();
1169 	security_init();
1170 	dbg_late_init();
1171 	net_ns_init();
1172 	vfs_caches_init();
1173 	pagecache_init();
1174 	signals_init();
1175 	seq_file_init();
1176 	proc_root_init();
1177 	nsfs_init();
1178 	pidfs_init();
1179 	cpuset_init();
1180 	mem_cgroup_init();
1181 	cgroup_init();
1182 	taskstats_init_early();
1183 	delayacct_init();
1184 
1185 	acpi_subsystem_init();
1186 	arch_post_acpi_subsys_init();
1187 	kcsan_init();
1188 
1189 	/* Do the rest non-__init'ed, we're now alive */
1190 	rest_init();
1191 
1192 	/*
1193 	 * Avoid stack canaries in callers of boot_init_stack_canary for gcc-10
1194 	 * and older.
1195 	 */
1196 #if !__has_attribute(__no_stack_protector__)
1197 	prevent_tail_call_optimization();
1198 #endif
1199 }
1200 
1201 /* Call all constructor functions linked into the kernel. */
do_ctors(void)1202 static void __init do_ctors(void)
1203 {
1204 /*
1205  * For UML, the constructors have already been called by the
1206  * normal setup code as it's just a normal ELF binary, so we
1207  * cannot do it again - but we do need CONFIG_CONSTRUCTORS
1208  * even on UML for modules.
1209  */
1210 #if defined(CONFIG_CONSTRUCTORS) && !defined(CONFIG_UML)
1211 	ctor_fn_t *fn = (ctor_fn_t *) __ctors_start;
1212 
1213 	for (; fn < (ctor_fn_t *) __ctors_end; fn++)
1214 		(*fn)();
1215 #endif
1216 }
1217 
1218 #ifdef CONFIG_KALLSYMS
1219 struct blacklist_entry {
1220 	struct list_head next;
1221 	char *buf;
1222 };
1223 
1224 static __initdata_or_module LIST_HEAD(blacklisted_initcalls);
1225 
initcall_blacklist(char * str)1226 static int __init initcall_blacklist(char *str)
1227 {
1228 	char *str_entry;
1229 	struct blacklist_entry *entry;
1230 
1231 	/* str argument is a comma-separated list of functions */
1232 	do {
1233 		str_entry = strsep(&str, ",");
1234 		if (str_entry) {
1235 			pr_debug("blacklisting initcall %s\n", str_entry);
1236 			entry = memblock_alloc_or_panic(sizeof(*entry),
1237 					       SMP_CACHE_BYTES);
1238 			entry->buf = memblock_alloc_or_panic(strlen(str_entry) + 1,
1239 						    SMP_CACHE_BYTES);
1240 			strcpy(entry->buf, str_entry);
1241 			list_add(&entry->next, &blacklisted_initcalls);
1242 		}
1243 	} while (str_entry);
1244 
1245 	return 1;
1246 }
1247 
initcall_blacklisted(initcall_t fn)1248 static bool __init_or_module initcall_blacklisted(initcall_t fn)
1249 {
1250 	struct blacklist_entry *entry;
1251 	char fn_name[KSYM_SYMBOL_LEN];
1252 	unsigned long addr;
1253 
1254 	if (list_empty(&blacklisted_initcalls))
1255 		return false;
1256 
1257 	addr = (unsigned long) dereference_function_descriptor(fn);
1258 	sprint_symbol_no_offset(fn_name, addr);
1259 
1260 	/*
1261 	 * fn will be "function_name [module_name]" where [module_name] is not
1262 	 * displayed for built-in init functions.  Strip off the [module_name].
1263 	 */
1264 	strreplace(fn_name, ' ', '\0');
1265 
1266 	list_for_each_entry(entry, &blacklisted_initcalls, next) {
1267 		if (!strcmp(fn_name, entry->buf)) {
1268 			pr_debug("initcall %s blacklisted\n", fn_name);
1269 			return true;
1270 		}
1271 	}
1272 
1273 	return false;
1274 }
1275 #else
initcall_blacklist(char * str)1276 static int __init initcall_blacklist(char *str)
1277 {
1278 	pr_warn("initcall_blacklist requires CONFIG_KALLSYMS\n");
1279 	return 0;
1280 }
1281 
initcall_blacklisted(initcall_t fn)1282 static bool __init_or_module initcall_blacklisted(initcall_t fn)
1283 {
1284 	return false;
1285 }
1286 #endif
1287 __setup("initcall_blacklist=", initcall_blacklist);
1288 
1289 static __init_or_module void
trace_initcall_start_cb(void * data,initcall_t fn)1290 trace_initcall_start_cb(void *data, initcall_t fn)
1291 {
1292 	ktime_t *calltime = data;
1293 
1294 	printk(KERN_DEBUG "calling  %pS @ %i\n", fn, task_pid_nr(current));
1295 	*calltime = ktime_get();
1296 }
1297 
1298 static __init_or_module void
trace_initcall_finish_cb(void * data,initcall_t fn,int ret)1299 trace_initcall_finish_cb(void *data, initcall_t fn, int ret)
1300 {
1301 	ktime_t rettime, *calltime = data;
1302 
1303 	rettime = ktime_get();
1304 	printk(KERN_DEBUG "initcall %pS returned %d after %lld usecs\n",
1305 		 fn, ret, (unsigned long long)ktime_us_delta(rettime, *calltime));
1306 }
1307 
1308 static __init_or_module void
trace_initcall_level_cb(void * data,const char * level)1309 trace_initcall_level_cb(void *data, const char *level)
1310 {
1311 	printk(KERN_DEBUG "entering initcall level: %s\n", level);
1312 }
1313 
1314 static ktime_t initcall_calltime;
1315 
1316 #ifdef TRACEPOINTS_ENABLED
initcall_debug_enable(void)1317 static void __init initcall_debug_enable(void)
1318 {
1319 	int ret;
1320 
1321 	ret = register_trace_initcall_start(trace_initcall_start_cb,
1322 					    &initcall_calltime);
1323 	ret |= register_trace_initcall_finish(trace_initcall_finish_cb,
1324 					      &initcall_calltime);
1325 	ret |= register_trace_initcall_level(trace_initcall_level_cb, NULL);
1326 	WARN(ret, "Failed to register initcall tracepoints\n");
1327 }
1328 # define do_trace_initcall_start	trace_initcall_start
1329 # define do_trace_initcall_finish	trace_initcall_finish
1330 # define do_trace_initcall_level	trace_initcall_level
1331 #else
do_trace_initcall_start(initcall_t fn)1332 static inline void do_trace_initcall_start(initcall_t fn)
1333 {
1334 	if (!initcall_debug)
1335 		return;
1336 	trace_initcall_start_cb(&initcall_calltime, fn);
1337 }
do_trace_initcall_finish(initcall_t fn,int ret)1338 static inline void do_trace_initcall_finish(initcall_t fn, int ret)
1339 {
1340 	if (!initcall_debug)
1341 		return;
1342 	trace_initcall_finish_cb(&initcall_calltime, fn, ret);
1343 }
do_trace_initcall_level(const char * level)1344 static inline void do_trace_initcall_level(const char *level)
1345 {
1346 	if (!initcall_debug)
1347 		return;
1348 	trace_initcall_level_cb(NULL, level);
1349 }
1350 #endif /* !TRACEPOINTS_ENABLED */
1351 
do_one_initcall(initcall_t fn)1352 int __init_or_module do_one_initcall(initcall_t fn)
1353 {
1354 	int count = preempt_count();
1355 	char msgbuf[64];
1356 	int ret;
1357 
1358 	if (initcall_blacklisted(fn))
1359 		return -EPERM;
1360 
1361 	do_trace_initcall_start(fn);
1362 	ret = fn();
1363 	do_trace_initcall_finish(fn, ret);
1364 
1365 	msgbuf[0] = 0;
1366 
1367 	if (preempt_count() != count) {
1368 		sprintf(msgbuf, "preemption imbalance ");
1369 		preempt_count_set(count);
1370 	}
1371 	if (irqs_disabled()) {
1372 		strlcat(msgbuf, "disabled interrupts ", sizeof(msgbuf));
1373 		local_irq_enable();
1374 	}
1375 	WARN(msgbuf[0], "initcall %pS returned with %s\n", fn, msgbuf);
1376 
1377 	add_latent_entropy();
1378 	return ret;
1379 }
1380 
1381 
1382 static initcall_entry_t *initcall_levels[] __initdata = {
1383 	__initcall0_start,
1384 	__initcall1_start,
1385 	__initcall2_start,
1386 	__initcall3_start,
1387 	__initcall4_start,
1388 	__initcall5_start,
1389 	__initcall6_start,
1390 	__initcall7_start,
1391 	__initcall_end,
1392 };
1393 
1394 /* Keep these in sync with initcalls in include/linux/init.h */
1395 static const char *initcall_level_names[] __initdata = {
1396 	"pure",
1397 	"core",
1398 	"postcore",
1399 	"arch",
1400 	"subsys",
1401 	"fs",
1402 	"device",
1403 	"late",
1404 };
1405 
ignore_unknown_bootoption(char * param,char * val,const char * unused,void * arg)1406 static int __init ignore_unknown_bootoption(char *param, char *val,
1407 			       const char *unused, void *arg)
1408 {
1409 	return 0;
1410 }
1411 
do_initcall_level(int level,char * command_line)1412 static void __init do_initcall_level(int level, char *command_line)
1413 {
1414 	initcall_entry_t *fn;
1415 
1416 	parse_args(initcall_level_names[level],
1417 		   command_line, __start___param,
1418 		   __stop___param - __start___param,
1419 		   level, level,
1420 		   NULL, ignore_unknown_bootoption);
1421 
1422 	do_trace_initcall_level(initcall_level_names[level]);
1423 	for (fn = initcall_levels[level]; fn < initcall_levels[level+1]; fn++)
1424 		do_one_initcall(initcall_from_entry(fn));
1425 }
1426 
do_initcalls(void)1427 static void __init do_initcalls(void)
1428 {
1429 	int level;
1430 	size_t len = saved_command_line_len + 1;
1431 	char *command_line;
1432 
1433 	command_line = kzalloc(len, GFP_KERNEL);
1434 	if (!command_line)
1435 		panic("%s: Failed to allocate %zu bytes\n", __func__, len);
1436 
1437 	for (level = 0; level < ARRAY_SIZE(initcall_levels) - 1; level++) {
1438 		/* Parser modifies command_line, restore it each time */
1439 		strcpy(command_line, saved_command_line);
1440 		do_initcall_level(level, command_line);
1441 	}
1442 
1443 	kfree(command_line);
1444 }
1445 
1446 /*
1447  * Ok, the machine is now initialized. None of the devices
1448  * have been touched yet, but the CPU subsystem is up and
1449  * running, and memory and process management works.
1450  *
1451  * Now we can finally start doing some real work..
1452  */
do_basic_setup(void)1453 static void __init do_basic_setup(void)
1454 {
1455 	cpuset_init_smp();
1456 	ksysfs_init();
1457 	driver_init();
1458 	init_irq_proc();
1459 	do_ctors();
1460 	do_initcalls();
1461 }
1462 
do_pre_smp_initcalls(void)1463 static void __init do_pre_smp_initcalls(void)
1464 {
1465 	initcall_entry_t *fn;
1466 
1467 	do_trace_initcall_level("early");
1468 	for (fn = __initcall_start; fn < __initcall0_start; fn++)
1469 		do_one_initcall(initcall_from_entry(fn));
1470 }
1471 
run_init_process(const char * init_filename)1472 static int run_init_process(const char *init_filename)
1473 {
1474 	const char *const *p;
1475 
1476 	argv_init[0] = init_filename;
1477 	pr_info("Run %s as init process\n", init_filename);
1478 	pr_debug("  with arguments:\n");
1479 	for (p = argv_init; *p; p++)
1480 		pr_debug("    %s\n", *p);
1481 	pr_debug("  with environment:\n");
1482 	for (p = envp_init; *p; p++)
1483 		pr_debug("    %s\n", *p);
1484 	return kernel_execve(init_filename, argv_init, envp_init);
1485 }
1486 
try_to_run_init_process(const char * init_filename)1487 static int try_to_run_init_process(const char *init_filename)
1488 {
1489 	int ret;
1490 
1491 	ret = run_init_process(init_filename);
1492 
1493 	if (ret && ret != -ENOENT) {
1494 		pr_err("Starting init: %s exists but couldn't execute it (error %d)\n",
1495 		       init_filename, ret);
1496 	}
1497 
1498 	return ret;
1499 }
1500 
1501 static noinline void __init kernel_init_freeable(void);
1502 
1503 #if defined(CONFIG_STRICT_KERNEL_RWX) || defined(CONFIG_STRICT_MODULE_RWX)
1504 bool rodata_enabled __ro_after_init = true;
1505 
1506 #ifndef arch_parse_debug_rodata
arch_parse_debug_rodata(char * str)1507 static inline bool arch_parse_debug_rodata(char *str) { return false; }
1508 #endif
1509 
set_debug_rodata(char * str)1510 static int __init set_debug_rodata(char *str)
1511 {
1512 	if (arch_parse_debug_rodata(str))
1513 		return 0;
1514 
1515 	if (str && !strcmp(str, "on"))
1516 		rodata_enabled = true;
1517 	else if (str && !strcmp(str, "off"))
1518 		rodata_enabled = false;
1519 	else
1520 		pr_warn("Invalid option string for rodata: '%s'\n", str);
1521 	return 0;
1522 }
1523 early_param("rodata", set_debug_rodata);
1524 #endif
1525 
mark_readonly(void)1526 static void mark_readonly(void)
1527 {
1528 	if (IS_ENABLED(CONFIG_STRICT_KERNEL_RWX) && rodata_enabled) {
1529 		/*
1530 		 * load_module() results in W+X mappings, which are cleaned
1531 		 * up with init_free_wq. Let's make sure that queued work is
1532 		 * flushed so that we don't hit false positives looking for
1533 		 * insecure pages which are W+X.
1534 		 */
1535 		flush_module_init_free_work();
1536 		jump_label_init_ro();
1537 		mark_rodata_ro();
1538 		debug_checkwx();
1539 		rodata_test();
1540 	} else if (IS_ENABLED(CONFIG_STRICT_KERNEL_RWX)) {
1541 		pr_info("Kernel memory protection disabled.\n");
1542 	} else if (IS_ENABLED(CONFIG_ARCH_HAS_STRICT_KERNEL_RWX)) {
1543 		pr_warn("Kernel memory protection not selected by kernel config.\n");
1544 	} else {
1545 		pr_warn("This architecture does not have kernel memory protection.\n");
1546 	}
1547 }
1548 
free_initmem(void)1549 void __weak free_initmem(void)
1550 {
1551 	free_initmem_default(POISON_FREE_INITMEM);
1552 }
1553 
kernel_init(void * unused)1554 static int __ref kernel_init(void *unused)
1555 {
1556 	int ret;
1557 
1558 	init_userspace_fs();
1559 
1560 	/*
1561 	 * Wait until kthreadd is all set-up.
1562 	 */
1563 	wait_for_completion(&kthreadd_done);
1564 
1565 	kernel_init_freeable();
1566 	/* need to finish all async __init code before freeing the memory */
1567 	async_synchronize_full();
1568 
1569 	system_state = SYSTEM_FREEING_INITMEM;
1570 	kprobe_free_init_mem();
1571 	ftrace_free_init_mem();
1572 	kgdb_free_init_mem();
1573 	exit_boot_config();
1574 	free_initmem();
1575 	mark_readonly();
1576 
1577 	/*
1578 	 * Kernel mappings are now finalized - update the userspace page-table
1579 	 * to finalize PTI.
1580 	 */
1581 	pti_finalize();
1582 
1583 	system_state = SYSTEM_RUNNING;
1584 	numa_default_policy();
1585 
1586 	rcu_end_inkernel_boot();
1587 
1588 	do_sysctl_args();
1589 
1590 	if (ramdisk_execute_command) {
1591 		ret = run_init_process(ramdisk_execute_command);
1592 		if (!ret)
1593 			return 0;
1594 		pr_err("Failed to execute %s (error %d)\n",
1595 		       ramdisk_execute_command, ret);
1596 	}
1597 
1598 	/*
1599 	 * We try each of these until one succeeds.
1600 	 *
1601 	 * The Bourne shell can be used instead of init if we are
1602 	 * trying to recover a really broken machine.
1603 	 */
1604 	if (execute_command) {
1605 		ret = run_init_process(execute_command);
1606 		if (!ret)
1607 			return 0;
1608 		panic("Requested init %s failed (error %d).",
1609 		      execute_command, ret);
1610 	}
1611 
1612 	if (CONFIG_DEFAULT_INIT[0] != '\0') {
1613 		ret = run_init_process(CONFIG_DEFAULT_INIT);
1614 		if (ret)
1615 			pr_err("Default init %s failed (error %d)\n",
1616 			       CONFIG_DEFAULT_INIT, ret);
1617 		else
1618 			return 0;
1619 	}
1620 
1621 	if (!try_to_run_init_process("/sbin/init") ||
1622 	    !try_to_run_init_process("/etc/init") ||
1623 	    !try_to_run_init_process("/bin/init") ||
1624 	    !try_to_run_init_process("/bin/sh"))
1625 		return 0;
1626 
1627 	panic("No working init found.  Try passing init= option to kernel. "
1628 	      "See Linux Documentation/admin-guide/init.rst for guidance.");
1629 }
1630 
1631 /* Open /dev/console, for stdin/stdout/stderr, this should never fail */
console_on_rootfs(void)1632 void __init console_on_rootfs(void)
1633 {
1634 	struct file *file = filp_open("/dev/console", O_RDWR, 0);
1635 
1636 	if (IS_ERR(file)) {
1637 		pr_err("Warning: unable to open an initial console.\n");
1638 		return;
1639 	}
1640 	init_dup(file);
1641 	init_dup(file);
1642 	init_dup(file);
1643 	fput(file);
1644 }
1645 
kernel_init_freeable(void)1646 static noinline void __init kernel_init_freeable(void)
1647 {
1648 	/* Now the scheduler is fully set up and can do blocking allocations */
1649 	gfp_allowed_mask = __GFP_BITS_MASK;
1650 
1651 	/*
1652 	 * init can allocate pages on any node
1653 	 */
1654 	set_mems_allowed(node_states[N_MEMORY]);
1655 
1656 	rcu_assign_pointer(cad_pid, get_pid(task_pid(current)));
1657 
1658 	smp_prepare_cpus(setup_max_cpus);
1659 
1660 	workqueue_init();
1661 
1662 	init_mm_internals();
1663 
1664 	do_pre_smp_initcalls();
1665 	lockup_detector_init();
1666 
1667 	smp_init();
1668 	sched_init_smp();
1669 
1670 	workqueue_init_topology();
1671 	async_init();
1672 	padata_init();
1673 	page_alloc_init_late();
1674 
1675 	do_basic_setup();
1676 
1677 	kunit_run_all_tests();
1678 
1679 	wait_for_initramfs();
1680 	console_on_rootfs();
1681 
1682 	/*
1683 	 * check if there is an early userspace init.  If yes, let it do all
1684 	 * the work
1685 	 */
1686 	int ramdisk_command_access;
1687 	ramdisk_command_access = init_eaccess(ramdisk_execute_command);
1688 	if (ramdisk_command_access != 0) {
1689 		if (ramdisk_execute_command_set)
1690 			pr_warn("check access for rdinit=%s failed: %i, ignoring\n",
1691 				ramdisk_execute_command, ramdisk_command_access);
1692 		ramdisk_execute_command = NULL;
1693 		prepare_namespace();
1694 	}
1695 
1696 	/*
1697 	 * Ok, we have completed the initial bootup, and
1698 	 * we're essentially up and running. Get rid of the
1699 	 * initmem segments and start the user-mode stuff..
1700 	 *
1701 	 * rootfs is available now, try loading the public keys
1702 	 * and default modules
1703 	 */
1704 
1705 	integrity_load_keys();
1706 }
1707