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v6.13.7
  1// SPDX-License-Identifier: GPL-2.0
  2#include <linux/init.h>
  3#include <linux/async.h>
  4#include <linux/fs.h>
  5#include <linux/slab.h>
  6#include <linux/types.h>
  7#include <linux/fcntl.h>
  8#include <linux/delay.h>
  9#include <linux/string.h>
 10#include <linux/dirent.h>
 11#include <linux/syscalls.h>
 12#include <linux/utime.h>
 13#include <linux/file.h>
 14#include <linux/kstrtox.h>
 15#include <linux/memblock.h>
 16#include <linux/mm.h>
 17#include <linux/namei.h>
 18#include <linux/init_syscalls.h>
 19#include <linux/umh.h>
 20#include <linux/security.h>
 21
 22#include "do_mounts.h"
 23
 24static __initdata bool csum_present;
 25static __initdata u32 io_csum;
 26
 27static ssize_t __init xwrite(struct file *file, const unsigned char *p,
 28		size_t count, loff_t *pos)
 29{
 30	ssize_t out = 0;
 31
 32	/* sys_write only can write MAX_RW_COUNT aka 2G-4K bytes at most */
 33	while (count) {
 34		ssize_t rv = kernel_write(file, p, count, pos);
 35
 36		if (rv < 0) {
 37			if (rv == -EINTR || rv == -EAGAIN)
 38				continue;
 39			return out ? out : rv;
 40		} else if (rv == 0)
 41			break;
 42
 43		if (csum_present) {
 44			ssize_t i;
 45
 46			for (i = 0; i < rv; i++)
 47				io_csum += p[i];
 48		}
 49
 50		p += rv;
 51		out += rv;
 52		count -= rv;
 53	}
 54
 55	return out;
 56}
 57
 58static __initdata char *message;
 59static void __init error(char *x)
 60{
 61	if (!message)
 62		message = x;
 63}
 64
 65#define panic_show_mem(fmt, ...) \
 66	({ show_mem(); panic(fmt, ##__VA_ARGS__); })
 67
 68/* link hash */
 69
 70#define N_ALIGN(len) ((((len) + 1) & ~3) + 2)
 71
 72static __initdata struct hash {
 73	int ino, minor, major;
 74	umode_t mode;
 75	struct hash *next;
 76	char name[N_ALIGN(PATH_MAX)];
 77} *head[32];
 78
 79static inline int hash(int major, int minor, int ino)
 80{
 81	unsigned long tmp = ino + minor + (major << 3);
 82	tmp += tmp >> 5;
 83	return tmp & 31;
 84}
 85
 86static char __init *find_link(int major, int minor, int ino,
 87			      umode_t mode, char *name)
 88{
 89	struct hash **p, *q;
 90	for (p = head + hash(major, minor, ino); *p; p = &(*p)->next) {
 91		if ((*p)->ino != ino)
 92			continue;
 93		if ((*p)->minor != minor)
 94			continue;
 95		if ((*p)->major != major)
 96			continue;
 97		if (((*p)->mode ^ mode) & S_IFMT)
 98			continue;
 99		return (*p)->name;
100	}
101	q = kmalloc(sizeof(struct hash), GFP_KERNEL);
102	if (!q)
103		panic_show_mem("can't allocate link hash entry");
104	q->major = major;
105	q->minor = minor;
106	q->ino = ino;
107	q->mode = mode;
108	strcpy(q->name, name);
109	q->next = NULL;
110	*p = q;
111	return NULL;
112}
113
114static void __init free_hash(void)
115{
116	struct hash **p, *q;
117	for (p = head; p < head + 32; p++) {
118		while (*p) {
119			q = *p;
120			*p = q->next;
121			kfree(q);
122		}
123	}
124}
125
126#ifdef CONFIG_INITRAMFS_PRESERVE_MTIME
127static void __init do_utime(char *filename, time64_t mtime)
128{
129	struct timespec64 t[2] = { { .tv_sec = mtime }, { .tv_sec = mtime } };
130	init_utimes(filename, t);
131}
132
133static void __init do_utime_path(const struct path *path, time64_t mtime)
134{
135	struct timespec64 t[2] = { { .tv_sec = mtime }, { .tv_sec = mtime } };
136	vfs_utimes(path, t);
 
 
137}
138
139static __initdata LIST_HEAD(dir_list);
140struct dir_entry {
141	struct list_head list;
 
142	time64_t mtime;
143	char name[];
144};
145
146static void __init dir_add(const char *name, time64_t mtime)
147{
148	size_t nlen = strlen(name) + 1;
149	struct dir_entry *de;
150
151	de = kmalloc(sizeof(struct dir_entry) + nlen, GFP_KERNEL);
152	if (!de)
153		panic_show_mem("can't allocate dir_entry buffer");
154	INIT_LIST_HEAD(&de->list);
155	strscpy(de->name, name, nlen);
156	de->mtime = mtime;
157	list_add(&de->list, &dir_list);
158}
159
160static void __init dir_utime(void)
161{
162	struct dir_entry *de, *tmp;
163	list_for_each_entry_safe(de, tmp, &dir_list, list) {
164		list_del(&de->list);
165		do_utime(de->name, de->mtime);
 
166		kfree(de);
167	}
168}
169#else
170static void __init do_utime(char *filename, time64_t mtime) {}
171static void __init do_utime_path(const struct path *path, time64_t mtime) {}
172static void __init dir_add(const char *name, time64_t mtime) {}
173static void __init dir_utime(void) {}
174#endif
175
176static __initdata time64_t mtime;
177
178/* cpio header parsing */
179
180static __initdata unsigned long ino, major, minor, nlink;
181static __initdata umode_t mode;
182static __initdata unsigned long body_len, name_len;
183static __initdata uid_t uid;
184static __initdata gid_t gid;
185static __initdata unsigned rdev;
186static __initdata u32 hdr_csum;
187
188static void __init parse_header(char *s)
189{
190	unsigned long parsed[13];
191	char buf[9];
192	int i;
193
194	buf[8] = '\0';
195	for (i = 0, s += 6; i < 13; i++, s += 8) {
196		memcpy(buf, s, 8);
197		parsed[i] = simple_strtoul(buf, NULL, 16);
198	}
199	ino = parsed[0];
200	mode = parsed[1];
201	uid = parsed[2];
202	gid = parsed[3];
203	nlink = parsed[4];
204	mtime = parsed[5]; /* breaks in y2106 */
205	body_len = parsed[6];
206	major = parsed[7];
207	minor = parsed[8];
208	rdev = new_encode_dev(MKDEV(parsed[9], parsed[10]));
209	name_len = parsed[11];
210	hdr_csum = parsed[12];
211}
212
213/* FSM */
214
215static __initdata enum state {
216	Start,
217	Collect,
218	GotHeader,
219	SkipIt,
220	GotName,
221	CopyFile,
222	GotSymlink,
223	Reset
224} state, next_state;
225
226static __initdata char *victim;
227static unsigned long byte_count __initdata;
228static __initdata loff_t this_header, next_header;
229
230static inline void __init eat(unsigned n)
231{
232	victim += n;
233	this_header += n;
234	byte_count -= n;
235}
236
 
237static __initdata char *collected;
238static long remains __initdata;
239static __initdata char *collect;
240
241static void __init read_into(char *buf, unsigned size, enum state next)
242{
243	if (byte_count >= size) {
244		collected = victim;
245		eat(size);
246		state = next;
247	} else {
248		collect = collected = buf;
249		remains = size;
250		next_state = next;
251		state = Collect;
252	}
253}
254
255static __initdata char *header_buf, *symlink_buf, *name_buf;
256
257static int __init do_start(void)
258{
259	read_into(header_buf, 110, GotHeader);
260	return 0;
261}
262
263static int __init do_collect(void)
264{
265	unsigned long n = remains;
266	if (byte_count < n)
267		n = byte_count;
268	memcpy(collect, victim, n);
269	eat(n);
270	collect += n;
271	if ((remains -= n) != 0)
272		return 1;
273	state = next_state;
274	return 0;
275}
276
277static int __init do_header(void)
278{
279	if (!memcmp(collected, "070701", 6)) {
280		csum_present = false;
281	} else if (!memcmp(collected, "070702", 6)) {
282		csum_present = true;
283	} else {
284		if (memcmp(collected, "070707", 6) == 0)
285			error("incorrect cpio method used: use -H newc option");
286		else
287			error("no cpio magic");
288		return 1;
289	}
290	parse_header(collected);
291	next_header = this_header + N_ALIGN(name_len) + body_len;
292	next_header = (next_header + 3) & ~3;
293	state = SkipIt;
294	if (name_len <= 0 || name_len > PATH_MAX)
295		return 0;
296	if (S_ISLNK(mode)) {
297		if (body_len > PATH_MAX)
298			return 0;
299		collect = collected = symlink_buf;
300		remains = N_ALIGN(name_len) + body_len;
301		next_state = GotSymlink;
302		state = Collect;
303		return 0;
304	}
305	if (S_ISREG(mode) || !body_len)
306		read_into(name_buf, N_ALIGN(name_len), GotName);
307	return 0;
308}
309
310static int __init do_skip(void)
311{
312	if (this_header + byte_count < next_header) {
313		eat(byte_count);
314		return 1;
315	} else {
316		eat(next_header - this_header);
317		state = next_state;
318		return 0;
319	}
320}
321
322static int __init do_reset(void)
323{
324	while (byte_count && *victim == '\0')
325		eat(1);
326	if (byte_count && (this_header & 3))
327		error("broken padding");
328	return 1;
329}
330
331static void __init clean_path(char *path, umode_t fmode)
332{
333	struct kstat st;
334
335	if (!init_stat(path, &st, AT_SYMLINK_NOFOLLOW) &&
336	    (st.mode ^ fmode) & S_IFMT) {
337		if (S_ISDIR(st.mode))
338			init_rmdir(path);
339		else
340			init_unlink(path);
341	}
342}
343
344static int __init maybe_link(void)
345{
346	if (nlink >= 2) {
347		char *old = find_link(major, minor, ino, mode, collected);
348		if (old) {
349			clean_path(collected, 0);
350			return (init_link(old, collected) < 0) ? -1 : 1;
351		}
352	}
353	return 0;
354}
355
356static __initdata struct file *wfile;
357static __initdata loff_t wfile_pos;
358
359static int __init do_name(void)
360{
361	state = SkipIt;
362	next_state = Reset;
363
364	/* name_len > 0 && name_len <= PATH_MAX checked in do_header */
365	if (collected[name_len - 1] != '\0') {
366		pr_err("initramfs name without nulterm: %.*s\n",
367		       (int)name_len, collected);
368		error("malformed archive");
369		return 1;
370	}
371
372	if (strcmp(collected, "TRAILER!!!") == 0) {
373		free_hash();
374		return 0;
375	}
376	clean_path(collected, mode);
377	if (S_ISREG(mode)) {
378		int ml = maybe_link();
379		if (ml >= 0) {
380			int openflags = O_WRONLY|O_CREAT|O_LARGEFILE;
381			if (ml != 1)
382				openflags |= O_TRUNC;
383			wfile = filp_open(collected, openflags, mode);
384			if (IS_ERR(wfile))
385				return 0;
386			wfile_pos = 0;
387			io_csum = 0;
388
389			vfs_fchown(wfile, uid, gid);
390			vfs_fchmod(wfile, mode);
391			if (body_len)
392				vfs_truncate(&wfile->f_path, body_len);
393			state = CopyFile;
394		}
395	} else if (S_ISDIR(mode)) {
396		init_mkdir(collected, mode);
397		init_chown(collected, uid, gid, 0);
398		init_chmod(collected, mode);
399		dir_add(collected, mtime);
400	} else if (S_ISBLK(mode) || S_ISCHR(mode) ||
401		   S_ISFIFO(mode) || S_ISSOCK(mode)) {
402		if (maybe_link() == 0) {
403			init_mknod(collected, mode, rdev);
404			init_chown(collected, uid, gid, 0);
405			init_chmod(collected, mode);
406			do_utime(collected, mtime);
407		}
408	}
409	return 0;
410}
411
412static int __init do_copy(void)
413{
414	if (byte_count >= body_len) {
415		if (xwrite(wfile, victim, body_len, &wfile_pos) != body_len)
416			error("write error");
417
418		do_utime_path(&wfile->f_path, mtime);
419		fput(wfile);
420		if (csum_present && io_csum != hdr_csum)
421			error("bad data checksum");
422		eat(body_len);
423		state = SkipIt;
424		return 0;
425	} else {
426		if (xwrite(wfile, victim, byte_count, &wfile_pos) != byte_count)
427			error("write error");
428		body_len -= byte_count;
429		eat(byte_count);
430		return 1;
431	}
432}
433
434static int __init do_symlink(void)
435{
436	if (collected[name_len - 1] != '\0') {
437		pr_err("initramfs symlink without nulterm: %.*s\n",
438		       (int)name_len, collected);
439		error("malformed archive");
440		return 1;
441	}
442	collected[N_ALIGN(name_len) + body_len] = '\0';
443	clean_path(collected, 0);
444	init_symlink(collected + N_ALIGN(name_len), collected);
445	init_chown(collected, uid, gid, AT_SYMLINK_NOFOLLOW);
446	do_utime(collected, mtime);
447	state = SkipIt;
448	next_state = Reset;
449	return 0;
450}
451
452static __initdata int (*actions[])(void) = {
453	[Start]		= do_start,
454	[Collect]	= do_collect,
455	[GotHeader]	= do_header,
456	[SkipIt]	= do_skip,
457	[GotName]	= do_name,
458	[CopyFile]	= do_copy,
459	[GotSymlink]	= do_symlink,
460	[Reset]		= do_reset,
461};
462
463static long __init write_buffer(char *buf, unsigned long len)
464{
465	byte_count = len;
466	victim = buf;
467
468	while (!actions[state]())
469		;
470	return len - byte_count;
471}
472
473static long __init flush_buffer(void *bufv, unsigned long len)
474{
475	char *buf = bufv;
476	long written;
477	long origLen = len;
478	if (message)
479		return -1;
480	while ((written = write_buffer(buf, len)) < len && !message) {
481		char c = buf[written];
482		if (c == '0') {
483			buf += written;
484			len -= written;
485			state = Start;
486		} else if (c == 0) {
487			buf += written;
488			len -= written;
489			state = Reset;
490		} else
491			error("junk within compressed archive");
492	}
493	return origLen;
494}
495
496static unsigned long my_inptr __initdata; /* index of next byte to be processed in inbuf */
497
498#include <linux/decompress/generic.h>
499
500static char * __init unpack_to_rootfs(char *buf, unsigned long len)
501{
502	long written;
503	decompress_fn decompress;
504	const char *compress_name;
505	static __initdata char msg_buf[64];
506
507	header_buf = kmalloc(110, GFP_KERNEL);
508	symlink_buf = kmalloc(PATH_MAX + N_ALIGN(PATH_MAX) + 1, GFP_KERNEL);
509	name_buf = kmalloc(N_ALIGN(PATH_MAX), GFP_KERNEL);
510
511	if (!header_buf || !symlink_buf || !name_buf)
512		panic_show_mem("can't allocate buffers");
513
514	state = Start;
515	this_header = 0;
516	message = NULL;
517	while (!message && len) {
518		loff_t saved_offset = this_header;
519		if (*buf == '0' && !(this_header & 3)) {
520			state = Start;
521			written = write_buffer(buf, len);
522			buf += written;
523			len -= written;
524			continue;
525		}
526		if (!*buf) {
527			buf++;
528			len--;
529			this_header++;
530			continue;
531		}
532		this_header = 0;
533		decompress = decompress_method(buf, len, &compress_name);
534		pr_debug("Detected %s compressed data\n", compress_name);
535		if (decompress) {
536			int res = decompress(buf, len, NULL, flush_buffer, NULL,
537				   &my_inptr, error);
538			if (res)
539				error("decompressor failed");
540		} else if (compress_name) {
541			if (!message) {
542				snprintf(msg_buf, sizeof msg_buf,
543					 "compression method %s not configured",
544					 compress_name);
545				message = msg_buf;
546			}
547		} else
548			error("invalid magic at start of compressed archive");
549		if (state != Reset)
550			error("junk at the end of compressed archive");
551		this_header = saved_offset + my_inptr;
552		buf += my_inptr;
553		len -= my_inptr;
554	}
555	dir_utime();
556	kfree(name_buf);
557	kfree(symlink_buf);
558	kfree(header_buf);
559	return message;
560}
561
562static int __initdata do_retain_initrd;
563
564static int __init retain_initrd_param(char *str)
565{
566	if (*str)
567		return 0;
568	do_retain_initrd = 1;
569	return 1;
570}
571__setup("retain_initrd", retain_initrd_param);
572
573#ifdef CONFIG_ARCH_HAS_KEEPINITRD
574static int __init keepinitrd_setup(char *__unused)
575{
576	do_retain_initrd = 1;
577	return 1;
578}
579__setup("keepinitrd", keepinitrd_setup);
580#endif
581
582static bool __initdata initramfs_async = true;
583static int __init initramfs_async_setup(char *str)
584{
585	return kstrtobool(str, &initramfs_async) == 0;
586}
587__setup("initramfs_async=", initramfs_async_setup);
588
589extern char __initramfs_start[];
590extern unsigned long __initramfs_size;
591#include <linux/initrd.h>
592#include <linux/kexec.h>
593
594static BIN_ATTR(initrd, 0440, sysfs_bin_attr_simple_read, NULL, 0);
595
596void __init reserve_initrd_mem(void)
597{
598	phys_addr_t start;
599	unsigned long size;
600
601	/* Ignore the virtul address computed during device tree parsing */
602	initrd_start = initrd_end = 0;
603
604	if (!phys_initrd_size)
605		return;
606	/*
607	 * Round the memory region to page boundaries as per free_initrd_mem()
608	 * This allows us to detect whether the pages overlapping the initrd
609	 * are in use, but more importantly, reserves the entire set of pages
610	 * as we don't want these pages allocated for other purposes.
611	 */
612	start = round_down(phys_initrd_start, PAGE_SIZE);
613	size = phys_initrd_size + (phys_initrd_start - start);
614	size = round_up(size, PAGE_SIZE);
615
616	if (!memblock_is_region_memory(start, size)) {
617		pr_err("INITRD: 0x%08llx+0x%08lx is not a memory region",
618		       (u64)start, size);
619		goto disable;
620	}
621
622	if (memblock_is_region_reserved(start, size)) {
623		pr_err("INITRD: 0x%08llx+0x%08lx overlaps in-use memory region\n",
624		       (u64)start, size);
625		goto disable;
626	}
627
628	memblock_reserve(start, size);
629	/* Now convert initrd to virtual addresses */
630	initrd_start = (unsigned long)__va(phys_initrd_start);
631	initrd_end = initrd_start + phys_initrd_size;
632	initrd_below_start_ok = 1;
633
634	return;
635disable:
636	pr_cont(" - disabling initrd\n");
637	initrd_start = 0;
638	initrd_end = 0;
639}
640
641void __weak __init free_initrd_mem(unsigned long start, unsigned long end)
642{
643#ifdef CONFIG_ARCH_KEEP_MEMBLOCK
644	unsigned long aligned_start = ALIGN_DOWN(start, PAGE_SIZE);
645	unsigned long aligned_end = ALIGN(end, PAGE_SIZE);
646
647	memblock_free((void *)aligned_start, aligned_end - aligned_start);
648#endif
649
650	free_reserved_area((void *)start, (void *)end, POISON_FREE_INITMEM,
651			"initrd");
652}
653
654#ifdef CONFIG_CRASH_RESERVE
655static bool __init kexec_free_initrd(void)
656{
657	unsigned long crashk_start = (unsigned long)__va(crashk_res.start);
658	unsigned long crashk_end   = (unsigned long)__va(crashk_res.end);
659
660	/*
661	 * If the initrd region is overlapped with crashkernel reserved region,
662	 * free only memory that is not part of crashkernel region.
663	 */
664	if (initrd_start >= crashk_end || initrd_end <= crashk_start)
665		return false;
666
667	/*
668	 * Initialize initrd memory region since the kexec boot does not do.
669	 */
670	memset((void *)initrd_start, 0, initrd_end - initrd_start);
671	if (initrd_start < crashk_start)
672		free_initrd_mem(initrd_start, crashk_start);
673	if (initrd_end > crashk_end)
674		free_initrd_mem(crashk_end, initrd_end);
675	return true;
676}
677#else
678static inline bool kexec_free_initrd(void)
679{
680	return false;
681}
682#endif /* CONFIG_KEXEC_CORE */
683
684#ifdef CONFIG_BLK_DEV_RAM
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
685static void __init populate_initrd_image(char *err)
686{
687	ssize_t written;
688	struct file *file;
689	loff_t pos = 0;
 
690
691	printk(KERN_INFO "rootfs image is not initramfs (%s); looks like an initrd\n",
692			err);
693	file = filp_open("/initrd.image", O_WRONLY|O_CREAT|O_LARGEFILE, 0700);
694	if (IS_ERR(file))
695		return;
696
697	written = xwrite(file, (char *)initrd_start, initrd_end - initrd_start,
698			&pos);
699	if (written != initrd_end - initrd_start)
700		pr_err("/initrd.image: incomplete write (%zd != %ld)\n",
701		       written, initrd_end - initrd_start);
702	fput(file);
 
 
 
 
 
703}
704#endif /* CONFIG_BLK_DEV_RAM */
705
706static void __init do_populate_rootfs(void *unused, async_cookie_t cookie)
707{
708	/* Load the built in initramfs */
709	char *err = unpack_to_rootfs(__initramfs_start, __initramfs_size);
710	if (err)
711		panic_show_mem("%s", err); /* Failed to decompress INTERNAL initramfs */
712
713	if (!initrd_start || IS_ENABLED(CONFIG_INITRAMFS_FORCE))
714		goto done;
715
716	if (IS_ENABLED(CONFIG_BLK_DEV_RAM))
717		printk(KERN_INFO "Trying to unpack rootfs image as initramfs...\n");
718	else
719		printk(KERN_INFO "Unpacking initramfs...\n");
720
721	err = unpack_to_rootfs((char *)initrd_start, initrd_end - initrd_start);
722	if (err) {
723#ifdef CONFIG_BLK_DEV_RAM
724		populate_initrd_image(err);
725#else
726		printk(KERN_EMERG "Initramfs unpacking failed: %s\n", err);
727#endif
728	}
729
730done:
731	security_initramfs_populated();
732
733	/*
734	 * If the initrd region is overlapped with crashkernel reserved region,
735	 * free only memory that is not part of crashkernel region.
736	 */
737	if (!do_retain_initrd && initrd_start && !kexec_free_initrd()) {
738		free_initrd_mem(initrd_start, initrd_end);
739	} else if (do_retain_initrd && initrd_start) {
740		bin_attr_initrd.size = initrd_end - initrd_start;
741		bin_attr_initrd.private = (void *)initrd_start;
742		if (sysfs_create_bin_file(firmware_kobj, &bin_attr_initrd))
743			pr_err("Failed to create initrd sysfs file");
744	}
745	initrd_start = 0;
746	initrd_end = 0;
747
748	init_flush_fput();
749}
750
751static ASYNC_DOMAIN_EXCLUSIVE(initramfs_domain);
752static async_cookie_t initramfs_cookie;
753
754void wait_for_initramfs(void)
755{
756	if (!initramfs_cookie) {
757		/*
758		 * Something before rootfs_initcall wants to access
759		 * the filesystem/initramfs. Probably a bug. Make a
760		 * note, avoid deadlocking the machine, and let the
761		 * caller's access fail as it used to.
762		 */
763		pr_warn_once("wait_for_initramfs() called before rootfs_initcalls\n");
764		return;
765	}
766	async_synchronize_cookie_domain(initramfs_cookie + 1, &initramfs_domain);
767}
768EXPORT_SYMBOL_GPL(wait_for_initramfs);
769
770static int __init populate_rootfs(void)
771{
772	initramfs_cookie = async_schedule_domain(do_populate_rootfs, NULL,
773						 &initramfs_domain);
774	usermodehelper_enable();
775	if (!initramfs_async)
776		wait_for_initramfs();
777	return 0;
778}
779rootfs_initcall(populate_rootfs);
v5.4
  1// SPDX-License-Identifier: GPL-2.0
  2#include <linux/init.h>
 
  3#include <linux/fs.h>
  4#include <linux/slab.h>
  5#include <linux/types.h>
  6#include <linux/fcntl.h>
  7#include <linux/delay.h>
  8#include <linux/string.h>
  9#include <linux/dirent.h>
 10#include <linux/syscalls.h>
 11#include <linux/utime.h>
 12#include <linux/file.h>
 
 
 
 
 
 
 
 13
 14static ssize_t __init xwrite(int fd, const char *p, size_t count)
 
 
 
 
 
 
 15{
 16	ssize_t out = 0;
 17
 18	/* sys_write only can write MAX_RW_COUNT aka 2G-4K bytes at most */
 19	while (count) {
 20		ssize_t rv = ksys_write(fd, p, count);
 21
 22		if (rv < 0) {
 23			if (rv == -EINTR || rv == -EAGAIN)
 24				continue;
 25			return out ? out : rv;
 26		} else if (rv == 0)
 27			break;
 28
 
 
 
 
 
 
 
 29		p += rv;
 30		out += rv;
 31		count -= rv;
 32	}
 33
 34	return out;
 35}
 36
 37static __initdata char *message;
 38static void __init error(char *x)
 39{
 40	if (!message)
 41		message = x;
 42}
 43
 
 
 
 44/* link hash */
 45
 46#define N_ALIGN(len) ((((len) + 1) & ~3) + 2)
 47
 48static __initdata struct hash {
 49	int ino, minor, major;
 50	umode_t mode;
 51	struct hash *next;
 52	char name[N_ALIGN(PATH_MAX)];
 53} *head[32];
 54
 55static inline int hash(int major, int minor, int ino)
 56{
 57	unsigned long tmp = ino + minor + (major << 3);
 58	tmp += tmp >> 5;
 59	return tmp & 31;
 60}
 61
 62static char __init *find_link(int major, int minor, int ino,
 63			      umode_t mode, char *name)
 64{
 65	struct hash **p, *q;
 66	for (p = head + hash(major, minor, ino); *p; p = &(*p)->next) {
 67		if ((*p)->ino != ino)
 68			continue;
 69		if ((*p)->minor != minor)
 70			continue;
 71		if ((*p)->major != major)
 72			continue;
 73		if (((*p)->mode ^ mode) & S_IFMT)
 74			continue;
 75		return (*p)->name;
 76	}
 77	q = kmalloc(sizeof(struct hash), GFP_KERNEL);
 78	if (!q)
 79		panic("can't allocate link hash entry");
 80	q->major = major;
 81	q->minor = minor;
 82	q->ino = ino;
 83	q->mode = mode;
 84	strcpy(q->name, name);
 85	q->next = NULL;
 86	*p = q;
 87	return NULL;
 88}
 89
 90static void __init free_hash(void)
 91{
 92	struct hash **p, *q;
 93	for (p = head; p < head + 32; p++) {
 94		while (*p) {
 95			q = *p;
 96			*p = q->next;
 97			kfree(q);
 98		}
 99	}
100}
101
102static long __init do_utime(char *filename, time64_t mtime)
 
103{
104	struct timespec64 t[2];
 
 
105
106	t[0].tv_sec = mtime;
107	t[0].tv_nsec = 0;
108	t[1].tv_sec = mtime;
109	t[1].tv_nsec = 0;
110
111	return do_utimes(AT_FDCWD, filename, t, AT_SYMLINK_NOFOLLOW);
112}
113
114static __initdata LIST_HEAD(dir_list);
115struct dir_entry {
116	struct list_head list;
117	char *name;
118	time64_t mtime;
 
119};
120
121static void __init dir_add(const char *name, time64_t mtime)
122{
123	struct dir_entry *de = kmalloc(sizeof(struct dir_entry), GFP_KERNEL);
 
 
 
124	if (!de)
125		panic("can't allocate dir_entry buffer");
126	INIT_LIST_HEAD(&de->list);
127	de->name = kstrdup(name, GFP_KERNEL);
128	de->mtime = mtime;
129	list_add(&de->list, &dir_list);
130}
131
132static void __init dir_utime(void)
133{
134	struct dir_entry *de, *tmp;
135	list_for_each_entry_safe(de, tmp, &dir_list, list) {
136		list_del(&de->list);
137		do_utime(de->name, de->mtime);
138		kfree(de->name);
139		kfree(de);
140	}
141}
 
 
 
 
 
 
142
143static __initdata time64_t mtime;
144
145/* cpio header parsing */
146
147static __initdata unsigned long ino, major, minor, nlink;
148static __initdata umode_t mode;
149static __initdata unsigned long body_len, name_len;
150static __initdata uid_t uid;
151static __initdata gid_t gid;
152static __initdata unsigned rdev;
 
153
154static void __init parse_header(char *s)
155{
156	unsigned long parsed[12];
157	char buf[9];
158	int i;
159
160	buf[8] = '\0';
161	for (i = 0, s += 6; i < 12; i++, s += 8) {
162		memcpy(buf, s, 8);
163		parsed[i] = simple_strtoul(buf, NULL, 16);
164	}
165	ino = parsed[0];
166	mode = parsed[1];
167	uid = parsed[2];
168	gid = parsed[3];
169	nlink = parsed[4];
170	mtime = parsed[5]; /* breaks in y2106 */
171	body_len = parsed[6];
172	major = parsed[7];
173	minor = parsed[8];
174	rdev = new_encode_dev(MKDEV(parsed[9], parsed[10]));
175	name_len = parsed[11];
 
176}
177
178/* FSM */
179
180static __initdata enum state {
181	Start,
182	Collect,
183	GotHeader,
184	SkipIt,
185	GotName,
186	CopyFile,
187	GotSymlink,
188	Reset
189} state, next_state;
190
191static __initdata char *victim;
192static unsigned long byte_count __initdata;
193static __initdata loff_t this_header, next_header;
194
195static inline void __init eat(unsigned n)
196{
197	victim += n;
198	this_header += n;
199	byte_count -= n;
200}
201
202static __initdata char *vcollected;
203static __initdata char *collected;
204static long remains __initdata;
205static __initdata char *collect;
206
207static void __init read_into(char *buf, unsigned size, enum state next)
208{
209	if (byte_count >= size) {
210		collected = victim;
211		eat(size);
212		state = next;
213	} else {
214		collect = collected = buf;
215		remains = size;
216		next_state = next;
217		state = Collect;
218	}
219}
220
221static __initdata char *header_buf, *symlink_buf, *name_buf;
222
223static int __init do_start(void)
224{
225	read_into(header_buf, 110, GotHeader);
226	return 0;
227}
228
229static int __init do_collect(void)
230{
231	unsigned long n = remains;
232	if (byte_count < n)
233		n = byte_count;
234	memcpy(collect, victim, n);
235	eat(n);
236	collect += n;
237	if ((remains -= n) != 0)
238		return 1;
239	state = next_state;
240	return 0;
241}
242
243static int __init do_header(void)
244{
245	if (memcmp(collected, "070707", 6)==0) {
246		error("incorrect cpio method used: use -H newc option");
247		return 1;
248	}
249	if (memcmp(collected, "070701", 6)) {
250		error("no cpio magic");
 
 
 
251		return 1;
252	}
253	parse_header(collected);
254	next_header = this_header + N_ALIGN(name_len) + body_len;
255	next_header = (next_header + 3) & ~3;
256	state = SkipIt;
257	if (name_len <= 0 || name_len > PATH_MAX)
258		return 0;
259	if (S_ISLNK(mode)) {
260		if (body_len > PATH_MAX)
261			return 0;
262		collect = collected = symlink_buf;
263		remains = N_ALIGN(name_len) + body_len;
264		next_state = GotSymlink;
265		state = Collect;
266		return 0;
267	}
268	if (S_ISREG(mode) || !body_len)
269		read_into(name_buf, N_ALIGN(name_len), GotName);
270	return 0;
271}
272
273static int __init do_skip(void)
274{
275	if (this_header + byte_count < next_header) {
276		eat(byte_count);
277		return 1;
278	} else {
279		eat(next_header - this_header);
280		state = next_state;
281		return 0;
282	}
283}
284
285static int __init do_reset(void)
286{
287	while (byte_count && *victim == '\0')
288		eat(1);
289	if (byte_count && (this_header & 3))
290		error("broken padding");
291	return 1;
292}
293
294static void __init clean_path(char *path, umode_t fmode)
295{
296	struct kstat st;
297
298	if (!vfs_lstat(path, &st) && (st.mode ^ fmode) & S_IFMT) {
 
299		if (S_ISDIR(st.mode))
300			ksys_rmdir(path);
301		else
302			ksys_unlink(path);
303	}
304}
305
306static int __init maybe_link(void)
307{
308	if (nlink >= 2) {
309		char *old = find_link(major, minor, ino, mode, collected);
310		if (old) {
311			clean_path(collected, 0);
312			return (ksys_link(old, collected) < 0) ? -1 : 1;
313		}
314	}
315	return 0;
316}
317
318static __initdata int wfd;
 
319
320static int __init do_name(void)
321{
322	state = SkipIt;
323	next_state = Reset;
 
 
 
 
 
 
 
 
 
324	if (strcmp(collected, "TRAILER!!!") == 0) {
325		free_hash();
326		return 0;
327	}
328	clean_path(collected, mode);
329	if (S_ISREG(mode)) {
330		int ml = maybe_link();
331		if (ml >= 0) {
332			int openflags = O_WRONLY|O_CREAT;
333			if (ml != 1)
334				openflags |= O_TRUNC;
335			wfd = ksys_open(collected, openflags, mode);
336
337			if (wfd >= 0) {
338				ksys_fchown(wfd, uid, gid);
339				ksys_fchmod(wfd, mode);
340				if (body_len)
341					ksys_ftruncate(wfd, body_len);
342				vcollected = kstrdup(collected, GFP_KERNEL);
343				state = CopyFile;
344			}
 
345		}
346	} else if (S_ISDIR(mode)) {
347		ksys_mkdir(collected, mode);
348		ksys_chown(collected, uid, gid);
349		ksys_chmod(collected, mode);
350		dir_add(collected, mtime);
351	} else if (S_ISBLK(mode) || S_ISCHR(mode) ||
352		   S_ISFIFO(mode) || S_ISSOCK(mode)) {
353		if (maybe_link() == 0) {
354			ksys_mknod(collected, mode, rdev);
355			ksys_chown(collected, uid, gid);
356			ksys_chmod(collected, mode);
357			do_utime(collected, mtime);
358		}
359	}
360	return 0;
361}
362
363static int __init do_copy(void)
364{
365	if (byte_count >= body_len) {
366		if (xwrite(wfd, victim, body_len) != body_len)
367			error("write error");
368		ksys_close(wfd);
369		do_utime(vcollected, mtime);
370		kfree(vcollected);
 
 
371		eat(body_len);
372		state = SkipIt;
373		return 0;
374	} else {
375		if (xwrite(wfd, victim, byte_count) != byte_count)
376			error("write error");
377		body_len -= byte_count;
378		eat(byte_count);
379		return 1;
380	}
381}
382
383static int __init do_symlink(void)
384{
 
 
 
 
 
 
385	collected[N_ALIGN(name_len) + body_len] = '\0';
386	clean_path(collected, 0);
387	ksys_symlink(collected + N_ALIGN(name_len), collected);
388	ksys_lchown(collected, uid, gid);
389	do_utime(collected, mtime);
390	state = SkipIt;
391	next_state = Reset;
392	return 0;
393}
394
395static __initdata int (*actions[])(void) = {
396	[Start]		= do_start,
397	[Collect]	= do_collect,
398	[GotHeader]	= do_header,
399	[SkipIt]	= do_skip,
400	[GotName]	= do_name,
401	[CopyFile]	= do_copy,
402	[GotSymlink]	= do_symlink,
403	[Reset]		= do_reset,
404};
405
406static long __init write_buffer(char *buf, unsigned long len)
407{
408	byte_count = len;
409	victim = buf;
410
411	while (!actions[state]())
412		;
413	return len - byte_count;
414}
415
416static long __init flush_buffer(void *bufv, unsigned long len)
417{
418	char *buf = (char *) bufv;
419	long written;
420	long origLen = len;
421	if (message)
422		return -1;
423	while ((written = write_buffer(buf, len)) < len && !message) {
424		char c = buf[written];
425		if (c == '0') {
426			buf += written;
427			len -= written;
428			state = Start;
429		} else if (c == 0) {
430			buf += written;
431			len -= written;
432			state = Reset;
433		} else
434			error("junk within compressed archive");
435	}
436	return origLen;
437}
438
439static unsigned long my_inptr; /* index of next byte to be processed in inbuf */
440
441#include <linux/decompress/generic.h>
442
443static char * __init unpack_to_rootfs(char *buf, unsigned long len)
444{
445	long written;
446	decompress_fn decompress;
447	const char *compress_name;
448	static __initdata char msg_buf[64];
449
450	header_buf = kmalloc(110, GFP_KERNEL);
451	symlink_buf = kmalloc(PATH_MAX + N_ALIGN(PATH_MAX) + 1, GFP_KERNEL);
452	name_buf = kmalloc(N_ALIGN(PATH_MAX), GFP_KERNEL);
453
454	if (!header_buf || !symlink_buf || !name_buf)
455		panic("can't allocate buffers");
456
457	state = Start;
458	this_header = 0;
459	message = NULL;
460	while (!message && len) {
461		loff_t saved_offset = this_header;
462		if (*buf == '0' && !(this_header & 3)) {
463			state = Start;
464			written = write_buffer(buf, len);
465			buf += written;
466			len -= written;
467			continue;
468		}
469		if (!*buf) {
470			buf++;
471			len--;
472			this_header++;
473			continue;
474		}
475		this_header = 0;
476		decompress = decompress_method(buf, len, &compress_name);
477		pr_debug("Detected %s compressed data\n", compress_name);
478		if (decompress) {
479			int res = decompress(buf, len, NULL, flush_buffer, NULL,
480				   &my_inptr, error);
481			if (res)
482				error("decompressor failed");
483		} else if (compress_name) {
484			if (!message) {
485				snprintf(msg_buf, sizeof msg_buf,
486					 "compression method %s not configured",
487					 compress_name);
488				message = msg_buf;
489			}
490		} else
491			error("invalid magic at start of compressed archive");
492		if (state != Reset)
493			error("junk at the end of compressed archive");
494		this_header = saved_offset + my_inptr;
495		buf += my_inptr;
496		len -= my_inptr;
497	}
498	dir_utime();
499	kfree(name_buf);
500	kfree(symlink_buf);
501	kfree(header_buf);
502	return message;
503}
504
505static int __initdata do_retain_initrd;
506
507static int __init retain_initrd_param(char *str)
508{
509	if (*str)
510		return 0;
511	do_retain_initrd = 1;
512	return 1;
513}
514__setup("retain_initrd", retain_initrd_param);
515
516#ifdef CONFIG_ARCH_HAS_KEEPINITRD
517static int __init keepinitrd_setup(char *__unused)
518{
519	do_retain_initrd = 1;
520	return 1;
521}
522__setup("keepinitrd", keepinitrd_setup);
523#endif
524
 
 
 
 
 
 
 
525extern char __initramfs_start[];
526extern unsigned long __initramfs_size;
527#include <linux/initrd.h>
528#include <linux/kexec.h>
529
530void __weak free_initrd_mem(unsigned long start, unsigned long end)
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
531{
 
 
 
 
 
 
 
532	free_reserved_area((void *)start, (void *)end, POISON_FREE_INITMEM,
533			"initrd");
534}
535
536#ifdef CONFIG_KEXEC_CORE
537static bool kexec_free_initrd(void)
538{
539	unsigned long crashk_start = (unsigned long)__va(crashk_res.start);
540	unsigned long crashk_end   = (unsigned long)__va(crashk_res.end);
541
542	/*
543	 * If the initrd region is overlapped with crashkernel reserved region,
544	 * free only memory that is not part of crashkernel region.
545	 */
546	if (initrd_start >= crashk_end || initrd_end <= crashk_start)
547		return false;
548
549	/*
550	 * Initialize initrd memory region since the kexec boot does not do.
551	 */
552	memset((void *)initrd_start, 0, initrd_end - initrd_start);
553	if (initrd_start < crashk_start)
554		free_initrd_mem(initrd_start, crashk_start);
555	if (initrd_end > crashk_end)
556		free_initrd_mem(crashk_end, initrd_end);
557	return true;
558}
559#else
560static inline bool kexec_free_initrd(void)
561{
562	return false;
563}
564#endif /* CONFIG_KEXEC_CORE */
565
566#ifdef CONFIG_BLK_DEV_RAM
567#define BUF_SIZE 1024
568static void __init clean_rootfs(void)
569{
570	int fd;
571	void *buf;
572	struct linux_dirent64 *dirp;
573	int num;
574
575	fd = ksys_open("/", O_RDONLY, 0);
576	WARN_ON(fd < 0);
577	if (fd < 0)
578		return;
579	buf = kzalloc(BUF_SIZE, GFP_KERNEL);
580	WARN_ON(!buf);
581	if (!buf) {
582		ksys_close(fd);
583		return;
584	}
585
586	dirp = buf;
587	num = ksys_getdents64(fd, dirp, BUF_SIZE);
588	while (num > 0) {
589		while (num > 0) {
590			struct kstat st;
591			int ret;
592
593			ret = vfs_lstat(dirp->d_name, &st);
594			WARN_ON_ONCE(ret);
595			if (!ret) {
596				if (S_ISDIR(st.mode))
597					ksys_rmdir(dirp->d_name);
598				else
599					ksys_unlink(dirp->d_name);
600			}
601
602			num -= dirp->d_reclen;
603			dirp = (void *)dirp + dirp->d_reclen;
604		}
605		dirp = buf;
606		memset(buf, 0, BUF_SIZE);
607		num = ksys_getdents64(fd, dirp, BUF_SIZE);
608	}
609
610	ksys_close(fd);
611	kfree(buf);
612}
613#else
614static inline void clean_rootfs(void)
615{
616}
617#endif /* CONFIG_BLK_DEV_RAM */
618
619#ifdef CONFIG_BLK_DEV_RAM
620static void __init populate_initrd_image(char *err)
621{
622	ssize_t written;
623	int fd;
624
625	unpack_to_rootfs(__initramfs_start, __initramfs_size);
626
627	printk(KERN_INFO "rootfs image is not initramfs (%s); looks like an initrd\n",
628			err);
629	fd = ksys_open("/initrd.image", O_WRONLY | O_CREAT, 0700);
630	if (fd < 0)
631		return;
632
633	written = xwrite(fd, (char *)initrd_start, initrd_end - initrd_start);
 
634	if (written != initrd_end - initrd_start)
635		pr_err("/initrd.image: incomplete write (%zd != %ld)\n",
636		       written, initrd_end - initrd_start);
637	ksys_close(fd);
638}
639#else
640static void __init populate_initrd_image(char *err)
641{
642	printk(KERN_EMERG "Initramfs unpacking failed: %s\n", err);
643}
644#endif /* CONFIG_BLK_DEV_RAM */
645
646static int __init populate_rootfs(void)
647{
648	/* Load the built in initramfs */
649	char *err = unpack_to_rootfs(__initramfs_start, __initramfs_size);
650	if (err)
651		panic("%s", err); /* Failed to decompress INTERNAL initramfs */
652
653	if (!initrd_start || IS_ENABLED(CONFIG_INITRAMFS_FORCE))
654		goto done;
655
656	if (IS_ENABLED(CONFIG_BLK_DEV_RAM))
657		printk(KERN_INFO "Trying to unpack rootfs image as initramfs...\n");
658	else
659		printk(KERN_INFO "Unpacking initramfs...\n");
660
661	err = unpack_to_rootfs((char *)initrd_start, initrd_end - initrd_start);
662	if (err) {
663		clean_rootfs();
664		populate_initrd_image(err);
 
 
 
665	}
666
667done:
 
 
668	/*
669	 * If the initrd region is overlapped with crashkernel reserved region,
670	 * free only memory that is not part of crashkernel region.
671	 */
672	if (!do_retain_initrd && initrd_start && !kexec_free_initrd())
673		free_initrd_mem(initrd_start, initrd_end);
 
 
 
 
 
 
674	initrd_start = 0;
675	initrd_end = 0;
676
677	flush_delayed_fput();
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
678	return 0;
679}
680rootfs_initcall(populate_rootfs);