vsprintf.c 74 KB
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/*
 *  linux/lib/vsprintf.c
 *
 *  Copyright (C) 1991, 1992  Linus Torvalds
 */

/* vsprintf.c -- Lars Wirzenius & Linus Torvalds. */
/*
 * Wirzenius wrote this portably, Torvalds fucked it up :-)
 */

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/*
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 * Fri Jul 13 2001 Crutcher Dunnavant <crutcher+kernel@datastacks.com>
 * - changed to provide snprintf and vsnprintf functions
 * So Feb  1 16:51:32 CET 2004 Juergen Quade <quade@hsnr.de>
 * - scnprintf and vscnprintf
 */

#include <stdarg.h>
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#include <linux/clk.h>
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#include <linux/clk-provider.h>
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#include <linux/module.h>	/* for KSYM_SYMBOL_LEN */
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#include <linux/types.h>
#include <linux/string.h>
#include <linux/ctype.h>
#include <linux/kernel.h>
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#include <linux/kallsyms.h>
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#include <linux/math64.h>
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#include <linux/uaccess.h>
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#include <linux/ioport.h>
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#include <linux/dcache.h>
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#include <linux/cred.h>
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#include <linux/uuid.h>
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#include <linux/of.h>
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#include <net/addrconf.h>
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#include <linux/siphash.h>
#include <linux/compiler.h>
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#ifdef CONFIG_BLOCK
#include <linux/blkdev.h>
#endif
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#include "../mm/internal.h"	/* For the trace_print_flags arrays */

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#include <asm/page.h>		/* for PAGE_SIZE */
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#include <asm/sections.h>	/* for dereference_function_descriptor() */
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#include <asm/byteorder.h>	/* cpu_to_le16 */
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#include <linux/string_helpers.h>
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#include "kstrtox.h"
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/**
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 * simple_strtoull - convert a string to an unsigned long long
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 * @cp: The start of the string
 * @endp: A pointer to the end of the parsed string will be placed here
 * @base: The number base to use
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 *
 * This function is obsolete. Please use kstrtoull instead.
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 */
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unsigned long long simple_strtoull(const char *cp, char **endp, unsigned int base)
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{
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	unsigned long long result;
	unsigned int rv;
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	cp = _parse_integer_fixup_radix(cp, &base);
	rv = _parse_integer(cp, base, &result);
	/* FIXME */
	cp += (rv & ~KSTRTOX_OVERFLOW);
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	if (endp)
		*endp = (char *)cp;
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	return result;
}
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EXPORT_SYMBOL(simple_strtoull);
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/**
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 * simple_strtoul - convert a string to an unsigned long
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 * @cp: The start of the string
 * @endp: A pointer to the end of the parsed string will be placed here
 * @base: The number base to use
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 *
 * This function is obsolete. Please use kstrtoul instead.
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 */
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unsigned long simple_strtoul(const char *cp, char **endp, unsigned int base)
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{
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	return simple_strtoull(cp, endp, base);
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}
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EXPORT_SYMBOL(simple_strtoul);
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/**
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 * simple_strtol - convert a string to a signed long
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 * @cp: The start of the string
 * @endp: A pointer to the end of the parsed string will be placed here
 * @base: The number base to use
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 *
 * This function is obsolete. Please use kstrtol instead.
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 */
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long simple_strtol(const char *cp, char **endp, unsigned int base)
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{
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	if (*cp == '-')
		return -simple_strtoul(cp + 1, endp, base);
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	return simple_strtoul(cp, endp, base);
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}
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EXPORT_SYMBOL(simple_strtol);
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/**
 * simple_strtoll - convert a string to a signed long long
 * @cp: The start of the string
 * @endp: A pointer to the end of the parsed string will be placed here
 * @base: The number base to use
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 *
 * This function is obsolete. Please use kstrtoll instead.
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 */
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long long simple_strtoll(const char *cp, char **endp, unsigned int base)
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{
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	if (*cp == '-')
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		return -simple_strtoull(cp + 1, endp, base);
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	return simple_strtoull(cp, endp, base);
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}
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EXPORT_SYMBOL(simple_strtoll);
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static noinline_for_stack
int skip_atoi(const char **s)
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{
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	int i = 0;
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	do {
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		i = i*10 + *((*s)++) - '0';
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	} while (isdigit(**s));
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	return i;
}

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/*
 * Decimal conversion is by far the most typical, and is used for
 * /proc and /sys data. This directly impacts e.g. top performance
 * with many processes running. We optimize it for speed by emitting
 * two characters at a time, using a 200 byte lookup table. This
 * roughly halves the number of multiplications compared to computing
 * the digits one at a time. Implementation strongly inspired by the
 * previous version, which in turn used ideas described at
 * <http://www.cs.uiowa.edu/~jones/bcd/divide.html> (with permission
 * from the author, Douglas W. Jones).
 *
 * It turns out there is precisely one 26 bit fixed-point
 * approximation a of 64/100 for which x/100 == (x * (u64)a) >> 32
 * holds for all x in [0, 10^8-1], namely a = 0x28f5c29. The actual
 * range happens to be somewhat larger (x <= 1073741898), but that's
 * irrelevant for our purpose.
 *
 * For dividing a number in the range [10^4, 10^6-1] by 100, we still
 * need a 32x32->64 bit multiply, so we simply use the same constant.
 *
 * For dividing a number in the range [100, 10^4-1] by 100, there are
 * several options. The simplest is (x * 0x147b) >> 19, which is valid
 * for all x <= 43698.
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 */
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static const u16 decpair[100] = {
#define _(x) (__force u16) cpu_to_le16(((x % 10) | ((x / 10) << 8)) + 0x3030)
	_( 0), _( 1), _( 2), _( 3), _( 4), _( 5), _( 6), _( 7), _( 8), _( 9),
	_(10), _(11), _(12), _(13), _(14), _(15), _(16), _(17), _(18), _(19),
	_(20), _(21), _(22), _(23), _(24), _(25), _(26), _(27), _(28), _(29),
	_(30), _(31), _(32), _(33), _(34), _(35), _(36), _(37), _(38), _(39),
	_(40), _(41), _(42), _(43), _(44), _(45), _(46), _(47), _(48), _(49),
	_(50), _(51), _(52), _(53), _(54), _(55), _(56), _(57), _(58), _(59),
	_(60), _(61), _(62), _(63), _(64), _(65), _(66), _(67), _(68), _(69),
	_(70), _(71), _(72), _(73), _(74), _(75), _(76), _(77), _(78), _(79),
	_(80), _(81), _(82), _(83), _(84), _(85), _(86), _(87), _(88), _(89),
	_(90), _(91), _(92), _(93), _(94), _(95), _(96), _(97), _(98), _(99),
#undef _
};

/*
 * This will print a single '0' even if r == 0, since we would
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 * immediately jump to out_r where two 0s would be written but only
 * one of them accounted for in buf. This is needed by ip4_string
 * below. All other callers pass a non-zero value of r.
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*/
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static noinline_for_stack
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char *put_dec_trunc8(char *buf, unsigned r)
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{
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	unsigned q;

	/* 1 <= r < 10^8 */
	if (r < 100)
		goto out_r;

	/* 100 <= r < 10^8 */
	q = (r * (u64)0x28f5c29) >> 32;
	*((u16 *)buf) = decpair[r - 100*q];
	buf += 2;

	/* 1 <= q < 10^6 */
	if (q < 100)
		goto out_q;

	/*  100 <= q < 10^6 */
	r = (q * (u64)0x28f5c29) >> 32;
	*((u16 *)buf) = decpair[q - 100*r];
	buf += 2;

	/* 1 <= r < 10^4 */
	if (r < 100)
		goto out_r;

	/* 100 <= r < 10^4 */
	q = (r * 0x147b) >> 19;
	*((u16 *)buf) = decpair[r - 100*q];
	buf += 2;
out_q:
	/* 1 <= q < 100 */
	r = q;
out_r:
	/* 1 <= r < 100 */
	*((u16 *)buf) = decpair[r];
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	buf += r < 10 ? 1 : 2;
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	return buf;
}
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#if BITS_PER_LONG == 64 && BITS_PER_LONG_LONG == 64
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static noinline_for_stack
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char *put_dec_full8(char *buf, unsigned r)
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{
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	unsigned q;

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	/* 0 <= r < 10^8 */
	q = (r * (u64)0x28f5c29) >> 32;
	*((u16 *)buf) = decpair[r - 100*q];
	buf += 2;
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	/* 0 <= q < 10^6 */
	r = (q * (u64)0x28f5c29) >> 32;
	*((u16 *)buf) = decpair[q - 100*r];
	buf += 2;
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	/* 0 <= r < 10^4 */
	q = (r * 0x147b) >> 19;
	*((u16 *)buf) = decpair[r - 100*q];
	buf += 2;
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	/* 0 <= q < 100 */
	*((u16 *)buf) = decpair[q];
	buf += 2;
	return buf;
}
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static noinline_for_stack
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char *put_dec(char *buf, unsigned long long n)
{
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	if (n >= 100*1000*1000)
		buf = put_dec_full8(buf, do_div(n, 100*1000*1000));
	/* 1 <= n <= 1.6e11 */
	if (n >= 100*1000*1000)
		buf = put_dec_full8(buf, do_div(n, 100*1000*1000));
	/* 1 <= n < 1e8 */
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	return put_dec_trunc8(buf, n);
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}
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#elif BITS_PER_LONG == 32 && BITS_PER_LONG_LONG == 64
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static void
put_dec_full4(char *buf, unsigned r)
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{
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	unsigned q;

	/* 0 <= r < 10^4 */
	q = (r * 0x147b) >> 19;
	*((u16 *)buf) = decpair[r - 100*q];
	buf += 2;
	/* 0 <= q < 100 */
	*((u16 *)buf) = decpair[q];
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}

/*
 * Call put_dec_full4 on x % 10000, return x / 10000.
 * The approximation x/10000 == (x * 0x346DC5D7) >> 43
 * holds for all x < 1,128,869,999.  The largest value this
 * helper will ever be asked to convert is 1,125,520,955.
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 * (second call in the put_dec code, assuming n is all-ones).
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 */
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static noinline_for_stack
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unsigned put_dec_helper4(char *buf, unsigned x)
{
        uint32_t q = (x * (uint64_t)0x346DC5D7) >> 43;

        put_dec_full4(buf, x - q * 10000);
        return q;
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}

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/* Based on code by Douglas W. Jones found at
 * <http://www.cs.uiowa.edu/~jones/bcd/decimal.html#sixtyfour>
 * (with permission from the author).
 * Performs no 64-bit division and hence should be fast on 32-bit machines.
 */
static
char *put_dec(char *buf, unsigned long long n)
{
	uint32_t d3, d2, d1, q, h;

	if (n < 100*1000*1000)
		return put_dec_trunc8(buf, n);

	d1  = ((uint32_t)n >> 16); /* implicit "& 0xffff" */
	h   = (n >> 32);
	d2  = (h      ) & 0xffff;
	d3  = (h >> 16); /* implicit "& 0xffff" */

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	/* n = 2^48 d3 + 2^32 d2 + 2^16 d1 + d0
	     = 281_4749_7671_0656 d3 + 42_9496_7296 d2 + 6_5536 d1 + d0 */
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	q   = 656 * d3 + 7296 * d2 + 5536 * d1 + ((uint32_t)n & 0xffff);
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	q = put_dec_helper4(buf, q);

	q += 7671 * d3 + 9496 * d2 + 6 * d1;
	q = put_dec_helper4(buf+4, q);

	q += 4749 * d3 + 42 * d2;
	q = put_dec_helper4(buf+8, q);
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	q += 281 * d3;
	buf += 12;
	if (q)
		buf = put_dec_trunc8(buf, q);
	else while (buf[-1] == '0')
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		--buf;

	return buf;
}

#endif

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/*
 * Convert passed number to decimal string.
 * Returns the length of string.  On buffer overflow, returns 0.
 *
 * If speed is not important, use snprintf(). It's easy to read the code.
 */
int num_to_str(char *buf, int size, unsigned long long num)
{
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	/* put_dec requires 2-byte alignment of the buffer. */
	char tmp[sizeof(num) * 3] __aligned(2);
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	int idx, len;

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	/* put_dec() may work incorrectly for num = 0 (generate "", not "0") */
	if (num <= 9) {
		tmp[0] = '0' + num;
		len = 1;
	} else {
		len = put_dec(tmp, num) - tmp;
	}
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	if (len > size)
		return 0;
	for (idx = 0; idx < len; ++idx)
		buf[idx] = tmp[len - idx - 1];
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	return len;
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}

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#define SIGN	1		/* unsigned/signed, must be 1 */
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#define LEFT	2		/* left justified */
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#define PLUS	4		/* show plus */
#define SPACE	8		/* space if plus */
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#define ZEROPAD	16		/* pad with zero, must be 16 == '0' - ' ' */
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#define SMALL	32		/* use lowercase in hex (must be 32 == 0x20) */
#define SPECIAL	64		/* prefix hex with "0x", octal with "0" */
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enum format_type {
	FORMAT_TYPE_NONE, /* Just a string part */
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	FORMAT_TYPE_WIDTH,
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	FORMAT_TYPE_PRECISION,
	FORMAT_TYPE_CHAR,
	FORMAT_TYPE_STR,
	FORMAT_TYPE_PTR,
	FORMAT_TYPE_PERCENT_CHAR,
	FORMAT_TYPE_INVALID,
	FORMAT_TYPE_LONG_LONG,
	FORMAT_TYPE_ULONG,
	FORMAT_TYPE_LONG,
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	FORMAT_TYPE_UBYTE,
	FORMAT_TYPE_BYTE,
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	FORMAT_TYPE_USHORT,
	FORMAT_TYPE_SHORT,
	FORMAT_TYPE_UINT,
	FORMAT_TYPE_INT,
	FORMAT_TYPE_SIZE_T,
	FORMAT_TYPE_PTRDIFF
};

struct printf_spec {
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	unsigned int	type:8;		/* format_type enum */
	signed int	field_width:24;	/* width of output field */
	unsigned int	flags:8;	/* flags to number() */
	unsigned int	base:8;		/* number base, 8, 10 or 16 only */
	signed int	precision:16;	/* # of digits/chars */
} __packed;
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#define FIELD_WIDTH_MAX ((1 << 23) - 1)
#define PRECISION_MAX ((1 << 15) - 1)
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static noinline_for_stack
char *number(char *buf, char *end, unsigned long long num,
	     struct printf_spec spec)
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{
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	/* put_dec requires 2-byte alignment of the buffer. */
	char tmp[3 * sizeof(num)] __aligned(2);
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	char sign;
	char locase;
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	int need_pfx = ((spec.flags & SPECIAL) && spec.base != 10);
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	int i;
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	bool is_zero = num == 0LL;
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	int field_width = spec.field_width;
	int precision = spec.precision;
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	BUILD_BUG_ON(sizeof(struct printf_spec) != 8);

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	/* locase = 0 or 0x20. ORing digits or letters with 'locase'
	 * produces same digits or (maybe lowercased) letters */
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	locase = (spec.flags & SMALL);
	if (spec.flags & LEFT)
		spec.flags &= ~ZEROPAD;
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	sign = 0;
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	if (spec.flags & SIGN) {
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		if ((signed long long)num < 0) {
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			sign = '-';
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			num = -(signed long long)num;
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			field_width--;
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		} else if (spec.flags & PLUS) {
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			sign = '+';
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			field_width--;
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		} else if (spec.flags & SPACE) {
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			sign = ' ';
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			field_width--;
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		}
	}
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	if (need_pfx) {
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		if (spec.base == 16)
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			field_width -= 2;
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		else if (!is_zero)
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			field_width--;
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	}
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	/* generate full string in tmp[], in reverse order */
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	i = 0;
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	if (num < spec.base)
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		tmp[i++] = hex_asc_upper[num] | locase;
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	else if (spec.base != 10) { /* 8 or 16 */
		int mask = spec.base - 1;
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		int shift = 3;
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		if (spec.base == 16)
			shift = 4;
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		do {
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			tmp[i++] = (hex_asc_upper[((unsigned char)num) & mask] | locase);
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			num >>= shift;
		} while (num);
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	} else { /* base 10 */
		i = put_dec(tmp, num) - tmp;
	}
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	/* printing 100 using %2d gives "100", not "00" */
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	if (i > precision)
		precision = i;
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	/* leading space padding */
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	field_width -= precision;
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	if (!(spec.flags & (ZEROPAD | LEFT))) {
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		while (--field_width >= 0) {
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			if (buf < end)
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				*buf = ' ';
			++buf;
		}
	}
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	/* sign */
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	if (sign) {
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		if (buf < end)
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			*buf = sign;
		++buf;
	}
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	/* "0x" / "0" prefix */
	if (need_pfx) {
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		if (spec.base == 16 || !is_zero) {
			if (buf < end)
				*buf = '0';
			++buf;
		}
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		if (spec.base == 16) {
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			if (buf < end)
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				*buf = ('X' | locase);
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			++buf;
		}
	}
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	/* zero or space padding */
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	if (!(spec.flags & LEFT)) {
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		char c = ' ' + (spec.flags & ZEROPAD);
		BUILD_BUG_ON(' ' + ZEROPAD != '0');
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		while (--field_width >= 0) {
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			if (buf < end)
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				*buf = c;
			++buf;
		}
	}
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	/* hmm even more zero padding? */
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	while (i <= --precision) {
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		if (buf < end)
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			*buf = '0';
		++buf;
	}
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	/* actual digits of result */
	while (--i >= 0) {
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		if (buf < end)
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			*buf = tmp[i];
		++buf;
	}
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	/* trailing space padding */
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	while (--field_width >= 0) {
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		if (buf < end)
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			*buf = ' ';
		++buf;
	}
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	return buf;
}

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static noinline_for_stack
char *special_hex_number(char *buf, char *end, unsigned long long num, int size)
{
	struct printf_spec spec;

	spec.type = FORMAT_TYPE_PTR;
	spec.field_width = 2 + 2 * size;	/* 0x + hex */
	spec.flags = SPECIAL | SMALL | ZEROPAD;
	spec.base = 16;
	spec.precision = -1;

	return number(buf, end, num, spec);
}

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static void move_right(char *buf, char *end, unsigned len, unsigned spaces)
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{
	size_t size;
	if (buf >= end)	/* nowhere to put anything */
		return;
	size = end - buf;
	if (size <= spaces) {
		memset(buf, ' ', size);
		return;
	}
	if (len) {
		if (len > size - spaces)
			len = size - spaces;
		memmove(buf + spaces, buf, len);
	}
	memset(buf, ' ', spaces);
}

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/*
 * Handle field width padding for a string.
 * @buf: current buffer position
 * @n: length of string
 * @end: end of output buffer
 * @spec: for field width and flags
 * Returns: new buffer position after padding.
 */
static noinline_for_stack
char *widen_string(char *buf, int n, char *end, struct printf_spec spec)
{
	unsigned spaces;

	if (likely(n >= spec.field_width))
		return buf;
	/* we want to pad the sucker */
	spaces = spec.field_width - n;
	if (!(spec.flags & LEFT)) {
		move_right(buf - n, end, n, spaces);
		return buf + spaces;
	}
	while (spaces--) {
		if (buf < end)
			*buf = ' ';
		++buf;
	}
	return buf;
}

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static noinline_for_stack
char *string(char *buf, char *end, const char *s, struct printf_spec spec)
{
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	int len = 0;
	size_t lim = spec.precision;
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	if ((unsigned long)s < PAGE_SIZE)
		s = "(null)";

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	while (lim--) {
		char c = *s++;
		if (!c)
			break;
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		if (buf < end)
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			*buf = c;
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		++buf;
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		++len;
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	}
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	return widen_string(buf, len, end, spec);
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}

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static noinline_for_stack
char *dentry_name(char *buf, char *end, const struct dentry *d, struct printf_spec spec,
		  const char *fmt)
{
	const char *array[4], *s;
	const struct dentry *p;
	int depth;
	int i, n;

	switch (fmt[1]) {
		case '2': case '3': case '4':
			depth = fmt[1] - '0';
			break;
		default:
			depth = 1;
	}

	rcu_read_lock();
	for (i = 0; i < depth; i++, d = p) {
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		p = READ_ONCE(d->d_parent);
		array[i] = READ_ONCE(d->d_name.name);
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		if (p == d) {
			if (i)
				array[i] = "";
			i++;
			break;
		}
	}
	s = array[--i];
	for (n = 0; n != spec.precision; n++, buf++) {
		char c = *s++;
		if (!c) {
			if (!i)
				break;
			c = '/';
			s = array[--i];
		}
		if (buf < end)
			*buf = c;
	}
	rcu_read_unlock();
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	return widen_string(buf, n, end, spec);
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}

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#ifdef CONFIG_BLOCK
static noinline_for_stack
char *bdev_name(char *buf, char *end, struct block_device *bdev,
		struct printf_spec spec, const char *fmt)
{
	struct gendisk *hd = bdev->bd_disk;
	
	buf = string(buf, end, hd->disk_name, spec);
	if (bdev->bd_part->partno) {
		if (isdigit(hd->disk_name[strlen(hd->disk_name)-1])) {
			if (buf < end)
				*buf = 'p';
			buf++;
		}
		buf = number(buf, end, bdev->bd_part->partno, spec);
	}
	return buf;
}
#endif

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static noinline_for_stack
char *symbol_string(char *buf, char *end, void *ptr,
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		    struct printf_spec spec, const char *fmt)
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{
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	unsigned long value;
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#ifdef CONFIG_KALLSYMS
	char sym[KSYM_SYMBOL_LEN];
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#endif

	if (fmt[1] == 'R')
		ptr = __builtin_extract_return_addr(ptr);
	value = (unsigned long)ptr;

#ifdef CONFIG_KALLSYMS
	if (*fmt == 'B')
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		sprint_backtrace(sym, value);
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	else if (*fmt != 'f' && *fmt != 's')
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		sprint_symbol(sym, value);
	else
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		sprint_symbol_no_offset(sym, value);
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	return string(buf, end, sym, spec);
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#else
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	return special_hex_number(buf, end, value, sizeof(void *));
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#endif
}

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static noinline_for_stack
char *resource_string(char *buf, char *end, struct resource *res,
		      struct printf_spec spec, const char *fmt)
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{
#ifndef IO_RSRC_PRINTK_SIZE
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#define IO_RSRC_PRINTK_SIZE	6
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#endif

#ifndef MEM_RSRC_PRINTK_SIZE
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#define MEM_RSRC_PRINTK_SIZE	10
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#endif
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	static const struct printf_spec io_spec = {
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		.base = 16,
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		.field_width = IO_RSRC_PRINTK_SIZE,
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		.precision = -1,
		.flags = SPECIAL | SMALL | ZEROPAD,
	};
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	static const struct printf_spec mem_spec = {
		.base = 16,
		.field_width = MEM_RSRC_PRINTK_SIZE,
		.precision = -1,
		.flags = SPECIAL | SMALL | ZEROPAD,
	};
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	static const struct printf_spec bus_spec = {
		.base = 16,
		.field_width = 2,
		.precision = -1,
		.flags = SMALL | ZEROPAD,
	};
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	static const struct printf_spec dec_spec = {
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		.base = 10,
		.precision = -1,
		.flags = 0,
	};
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	static const struct printf_spec str_spec = {
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		.field_width = -1,
		.precision = 10,
		.flags = LEFT,
	};
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	static const struct printf_spec flag_spec = {
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		.base = 16,
		.precision = -1,
		.flags = SPECIAL | SMALL,
	};
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	/* 32-bit res (sizeof==4): 10 chars in dec, 10 in hex ("0x" + 8)
	 * 64-bit res (sizeof==8): 20 chars in dec, 18 in hex ("0x" + 16) */
#define RSRC_BUF_SIZE		((2 * sizeof(resource_size_t)) + 4)
#define FLAG_BUF_SIZE		(2 * sizeof(res->flags))
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#define DECODED_BUF_SIZE	sizeof("[mem - 64bit pref window disabled]")
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#define RAW_BUF_SIZE		sizeof("[mem - flags 0x]")
	char sym[max(2*RSRC_BUF_SIZE + DECODED_BUF_SIZE,
		     2*RSRC_BUF_SIZE + FLAG_BUF_SIZE + RAW_BUF_SIZE)];

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	char *p = sym, *pend = sym + sizeof(sym);
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	int decode = (fmt[0] == 'R') ? 1 : 0;
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	const struct printf_spec *specp;
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	*p++ = '[';
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	if (res->flags & IORESOURCE_IO) {
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		p = string(p, pend, "io  ", str_spec);
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		specp = &io_spec;
	} else if (res->flags & IORESOURCE_MEM) {
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		p = string(p, pend, "mem ", str_spec);
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		specp = &mem_spec;
	} else if (res->flags & IORESOURCE_IRQ) {
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		p = string(p, pend, "irq ", str_spec);
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		specp = &dec_spec;
	} else if (res->flags & IORESOURCE_DMA) {
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		p = string(p, pend, "dma ", str_spec);
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		specp = &dec_spec;
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	} else if (res->flags & IORESOURCE_BUS) {
		p = string(p, pend, "bus ", str_spec);
		specp = &bus_spec;
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	} else {
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		p = string(p, pend, "??? ", str_spec);
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		specp = &mem_spec;
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		decode = 0;
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	}
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	if (decode && res->flags & IORESOURCE_UNSET) {
		p = string(p, pend, "size ", str_spec);
		p = number(p, pend, resource_size(res), *specp);
	} else {
		p = number(p, pend, res->start, *specp);
		if (res->start != res->end) {
			*p++ = '-';
			p = number(p, pend, res->end, *specp);
		}
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	}
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	if (decode) {
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		if (res->flags & IORESOURCE_MEM_64)
			p = string(p, pend, " 64bit", str_spec);
		if (res->flags & IORESOURCE_PREFETCH)
			p = string(p, pend, " pref", str_spec);
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		if (res->flags & IORESOURCE_WINDOW)
			p = string(p, pend, " window", str_spec);
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		if (res->flags & IORESOURCE_DISABLED)
			p = string(p, pend, " disabled", str_spec);
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	} else {
		p = string(p, pend, " flags ", str_spec);
		p = number(p, pend, res->flags, flag_spec);
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	}
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	*p++ = ']';
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	*p = '\0';
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	return string(buf, end, sym, spec);
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}

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static noinline_for_stack
char *hex_string(char *buf, char *end, u8 *addr, struct printf_spec spec,
		 const char *fmt)
{
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	int i, len = 1;		/* if we pass '%ph[CDN]', field width remains
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				   negative value, fallback to the default */
	char separator;

	if (spec.field_width == 0)
		/* nothing to print */
		return buf;

	if (ZERO_OR_NULL_PTR(addr))
		/* NULL pointer */
		return string(buf, end, NULL, spec);

	switch (fmt[1]) {
	case 'C':
		separator = ':';
		break;
	case 'D':
		separator = '-';
		break;
	case 'N':
		separator = 0;
		break;
	default:
		separator = ' ';
		break;
	}

	if (spec.field_width > 0)
		len = min_t(int, spec.field_width, 64);

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	for (i = 0; i < len; ++i) {
		if (buf < end)
			*buf = hex_asc_hi(addr[i]);
		++buf;
		if (buf < end)
			*buf = hex_asc_lo(addr[i]);
		++buf;
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		if (separator && i != len - 1) {
			if (buf < end)
				*buf = separator;
			++buf;
		}
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	}

	return buf;
}

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static noinline_for_stack
char *bitmap_string(char *buf, char *end, unsigned long *bitmap,
		    struct printf_spec spec, const char *fmt)
{
	const int CHUNKSZ = 32;
	int nr_bits = max_t(int, spec.field_width, 0);
	int i, chunksz;
	bool first = true;

	/* reused to print numbers */
	spec = (struct printf_spec){ .flags = SMALL | ZEROPAD, .base = 16 };

	chunksz = nr_bits & (CHUNKSZ - 1);
	if (chunksz == 0)
		chunksz = CHUNKSZ;

	i = ALIGN(nr_bits, CHUNKSZ) - CHUNKSZ;
	for (; i >= 0; i -= CHUNKSZ) {
		u32 chunkmask, val;
		int word, bit;

		chunkmask = ((1ULL << chunksz) - 1);
		word = i / BITS_PER_LONG;
		bit = i % BITS_PER_LONG;
		val = (bitmap[word] >> bit) & chunkmask;

		if (!first) {
			if (buf < end)
				*buf = ',';
			buf++;
		}
		first = false;

		spec.field_width = DIV_ROUND_UP(chunksz, 4);
		buf = number(buf, end, val, spec);

		chunksz = CHUNKSZ;
	}
	return buf;
}

static noinline_for_stack
char *bitmap_list_string(char *buf, char *end, unsigned long *bitmap,
			 struct printf_spec spec, const char *fmt)
{
	int nr_bits = max_t(int, spec.field_width, 0);
	/* current bit is 'cur', most recently seen range is [rbot, rtop] */
	int cur, rbot, rtop;
	bool first = true;

	/* reused to print numbers */
	spec = (struct printf_spec){ .base = 10 };

	rbot = cur = find_first_bit(bitmap, nr_bits);
	while (cur < nr_bits) {
		rtop = cur;
		cur = find_next_bit(bitmap, nr_bits, cur + 1);
		if (cur < nr_bits && cur <= rtop + 1)
			continue;

		if (!first) {
			if (buf < end)
				*buf = ',';
			buf++;
		}
		first = false;

		buf = number(buf, end, rbot, spec);
		if (rbot < rtop) {
			if (buf < end)
				*buf = '-';
			buf++;

			buf = number(buf, end, rtop, spec);
		}

		rbot = cur;
	}
	return buf;
}

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static noinline_for_stack
char *mac_address_string(char *buf, char *end, u8 *addr,
			 struct printf_spec spec, const char *fmt)
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{
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	char mac_addr[sizeof("xx:xx:xx:xx:xx:xx")];
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	char *p = mac_addr;
	int i;
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	char separator;
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	bool reversed = false;
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	switch (fmt[1]) {
	case 'F':
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		separator = '-';
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		break;

	case 'R':
		reversed = true;
		/* fall through */

	default:
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		separator = ':';
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		break;
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	}
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	for (i = 0; i < 6; i++) {
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		if (reversed)
			p = hex_byte_pack(p, addr[5 - i]);
		else
			p = hex_byte_pack(p, addr[i]);

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		if (fmt[0] == 'M' && i != 5)
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			*p++ = separator;
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	}
	*p = '\0';

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	return string(buf, end, mac_addr, spec);
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}

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static noinline_for_stack
char *ip4_string(char *p, const u8 *addr, const char *fmt)
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{
	int i;
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	bool leading_zeros = (fmt[0] == 'i');
	int index;
	int step;

	switch (fmt[2]) {
	case 'h':
#ifdef __BIG_ENDIAN
		index = 0;
		step = 1;
#else
		index = 3;
		step = -1;
#endif
		break;
	case 'l':
		index = 3;
		step = -1;
		break;
	case 'n':
	case 'b':
	default:
		index = 0;
		step = 1;
		break;
	}
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	for (i = 0; i < 4; i++) {
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		char temp[4] __aligned(2);	/* hold each IP quad in reverse order */
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		int digits = put_dec_trunc8(temp, addr[index]) - temp;
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		if (leading_zeros) {
			if (digits < 3)
				*p++ = '0';
			if (digits < 2)
				*p++ = '0';
		}
		/* reverse the digits in the quad */
		while (digits--)
			*p++ = temp[digits];
		if (i < 3)
			*p++ = '.';
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		index += step;
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	}
	*p = '\0';
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	return p;
}

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static noinline_for_stack
char *ip6_compressed_string(char *p, const char *addr)
1028
{
1029
	int i, j, range;
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	unsigned char zerolength[8];
	int longest = 1;
	int colonpos = -1;
	u16 word;
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	u8 hi, lo;
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	bool needcolon = false;
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	bool useIPv4;
	struct in6_addr in6;

	memcpy(&in6, addr, sizeof(struct in6_addr));

	useIPv4 = ipv6_addr_v4mapped(&in6) || ipv6_addr_is_isatap(&in6);
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	memset(zerolength, 0, sizeof(zerolength));

	if (useIPv4)
		range = 6;
	else
		range = 8;

	/* find position of longest 0 run */
	for (i = 0; i < range; i++) {
		for (j = i; j < range; j++) {
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			if (in6.s6_addr16[j] != 0)
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				break;
			zerolength[i]++;
		}
	}
	for (i = 0; i < range; i++) {
		if (zerolength[i] > longest) {
			longest = zerolength[i];
			colonpos = i;
		}
	}
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	if (longest == 1)		/* don't compress a single 0 */
		colonpos = -1;
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	/* emit address */
	for (i = 0; i < range; i++) {
		if (i == colonpos) {
			if (needcolon || i == 0)
				*p++ = ':';
			*p++ = ':';
			needcolon = false;
			i += longest - 1;
			continue;
		}
		if (needcolon) {
			*p++ = ':';
			needcolon = false;
		}
		/* hex u16 without leading 0s */
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		word = ntohs(in6.s6_addr16[i]);
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		hi = word >> 8;
		lo = word & 0xff;
		if (hi) {
			if (hi > 0x0f)
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				p = hex_byte_pack(p, hi);
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			else
				*p++ = hex_asc_lo(hi);
1090
			p = hex_byte_pack(p, lo);
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		}
1092
		else if (lo > 0x0f)
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			p = hex_byte_pack(p, lo);
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		else
			*p++ = hex_asc_lo(lo);
		needcolon = true;
	}

	if (useIPv4) {
		if (needcolon)
			*p++ = ':';
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		p = ip4_string(p, &in6.s6_addr[12], "I4");
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	}
	*p = '\0';
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	return p;
}

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static noinline_for_stack
char *ip6_string(char *p, const char *addr, const char *fmt)
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{
	int i;
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1114
	for (i = 0; i < 8; i++) {
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		p = hex_byte_pack(p, *addr++);
		p = hex_byte_pack(p, *addr++);
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		if (fmt[0] == 'I' && i != 7)
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			*p++ = ':';
	}
	*p = '\0';
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	return p;
}

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static noinline_for_stack
char *ip6_addr_string(char *buf, char *end, const u8 *addr,
		      struct printf_spec spec, const char *fmt)
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{
	char ip6_addr[sizeof("xxxx:xxxx:xxxx:xxxx:xxxx:xxxx:255.255.255.255")];

	if (fmt[0] == 'I' && fmt[2] == 'c')
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		ip6_compressed_string(ip6_addr, addr);
1133
	else
1134
		ip6_string(ip6_addr, addr, fmt);
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1136
	return string(buf, end, ip6_addr, spec);
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}

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static noinline_for_stack
char *ip4_addr_string(char *buf, char *end, const u8 *addr,
		      struct printf_spec spec, const char *fmt)
1142
{
1143
	char ip4_addr[sizeof("255.255.255.255")];
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1145
	ip4_string(ip4_addr, addr, fmt);
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1147
	return string(buf, end, ip4_addr, spec);
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}

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static noinline_for_stack
char *ip6_addr_string_sa(char *buf, char *end, const struct sockaddr_in6 *sa,
			 struct printf_spec spec, const char *fmt)
{
	bool have_p = false, have_s = false, have_f = false, have_c = false;
	char ip6_addr[sizeof("[xxxx:xxxx:xxxx:xxxx:xxxx:xxxx:255.255.255.255]") +
		      sizeof(":12345") + sizeof("/123456789") +
		      sizeof("%1234567890")];
	char *p = ip6_addr, *pend = ip6_addr + sizeof(ip6_addr);
	const u8 *addr = (const u8 *) &sa->sin6_addr;
	char fmt6[2] = { fmt[0], '6' };
	u8 off = 0;

	fmt++;
	while (isalpha(*++fmt)) {
		switch (*fmt) {
		case 'p':
			have_p = true;
			break;
		case 'f':
			have_f = true;
			break;
		case 's':
			have_s = true;
			break;
		case 'c':
			have_c = true;
			break;
		}
	}

	if (have_p || have_s || have_f) {
		*p = '[';
		off = 1;
	}

	if (fmt6[0] == 'I' && have_c)
		p = ip6_compressed_string(ip6_addr + off, addr);
	else
		p = ip6_string(ip6_addr + off, addr, fmt6);

	if (have_p || have_s || have_f)
		*p++ = ']';

	if (have_p) {
		*p++ = ':';
		p = number(p, pend, ntohs(sa->sin6_port), spec);
	}
	if (have_f) {
		*p++ = '/';
		p = number(p, pend, ntohl(sa->sin6_flowinfo &
					  IPV6_FLOWINFO_MASK), spec);
	}
	if (have_s) {
		*p++ = '%';
		p = number(p, pend, sa->sin6_scope_id, spec);
	}
	*p = '\0';

	return string(buf, end, ip6_addr, spec);
}

static noinline_for_stack
char *ip4_addr_string_sa(char *buf, char *end, const struct sockaddr_in *sa,
			 struct printf_spec spec, const char *fmt)
{
	bool have_p = false;
	char *p, ip4_addr[sizeof("255.255.255.255") + sizeof(":12345")];
	char *pend = ip4_addr + sizeof(ip4_addr);
	const u8 *addr = (const u8 *) &sa->sin_addr.s_addr;
	char fmt4[3] = { fmt[0], '4', 0 };

	fmt++;
	while (isalpha(*++fmt)) {
		switch (*fmt) {
		case 'p':
			have_p = true;
			break;
		case 'h':
		case 'l':
		case 'n':
		case 'b':
			fmt4[2] = *fmt;
			break;
		}
	}

	p = ip4_string(ip4_addr, addr, fmt4);
	if (have_p) {
		*p++ = ':';
		p = number(p, pend, ntohs(sa->sin_port), spec);
	}
	*p = '\0';

	return string(buf, end, ip4_addr, spec);
}

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static noinline_for_stack
char *escaped_string(char *buf, char *end, u8 *addr, struct printf_spec spec,
		     const char *fmt)
{
	bool found = true;
	int count = 1;
	unsigned int flags = 0;
	int len;

	if (spec.field_width == 0)
		return buf;				/* nothing to print */

	if (ZERO_OR_NULL_PTR(addr))
		return string(buf, end, NULL, spec);	/* NULL pointer */


	do {
		switch (fmt[count++]) {
		case 'a':
			flags |= ESCAPE_ANY;
			break;
		case 'c':
			flags |= ESCAPE_SPECIAL;
			break;
		case 'h':
			flags |= ESCAPE_HEX;
			break;
		case 'n':
			flags |= ESCAPE_NULL;
			break;
		case 'o':
			flags |= ESCAPE_OCTAL;
			break;
		case 'p':
			flags |= ESCAPE_NP;
			break;
		case 's':
			flags |= ESCAPE_SPACE;
			break;
		default:
			found = false;
			break;
		}
	} while (found);

	if (!flags)
		flags = ESCAPE_ANY_NP;

	len = spec.field_width < 0 ? 1 : spec.field_width;

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	/*
	 * string_escape_mem() writes as many characters as it can to
	 * the given buffer, and returns the total size of the output
	 * had the buffer been big enough.
	 */
	buf += string_escape_mem(addr, len, buf, buf < end ? end - buf : 0, flags, NULL);
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	return buf;
}

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static noinline_for_stack
char *uuid_string(char *buf, char *end, const u8 *addr,
		  struct printf_spec spec, const char *fmt)
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{
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	char uuid[UUID_STRING_LEN + 1];
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	char *p = uuid;
	int i;
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	const u8 *index = uuid_index;
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	bool uc = false;

	switch (*(++fmt)) {
	case 'L':
		uc = true;		/* fall-through */
	case 'l':
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		index = guid_index;
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		break;
	case 'B':
		uc = true;
		break;
	}

	for (i = 0; i < 16; i++) {
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		if (uc)
			p = hex_byte_pack_upper(p, addr[index[i]]);
		else
			p = hex_byte_pack(p, addr[index[i]]);
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		switch (i) {
		case 3:
		case 5:
		case 7:
		case 9:
			*p++ = '-';
			break;
		}
	}

	*p = 0;

	return string(buf, end, uuid, spec);
}

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int kptr_restrict __read_mostly;

static noinline_for_stack
char *restricted_pointer(char *buf, char *end, const void *ptr,
			 struct printf_spec spec)
{
	spec.base = 16;
	spec.flags |= SMALL;
	if (spec.field_width == -1) {
		spec.field_width = 2 * sizeof(ptr);
		spec.flags |= ZEROPAD;
	}

	switch (kptr_restrict) {
	case 0:
		/* Always print %pK values */
		break;
	case 1: {
		const struct cred *cred;

		/*
		 * kptr_restrict==1 cannot be used in IRQ context
		 * because its test for CAP_SYSLOG would be meaningless.
		 */
		if (in_irq() || in_serving_softirq() || in_nmi())
			return string(buf, end, "pK-error", spec);

		/*
		 * Only print the real pointer value if the current
		 * process has CAP_SYSLOG and is running with the
		 * same credentials it started with. This is because
		 * access to files is checked at open() time, but %pK
		 * checks permission at read() time. We don't want to
		 * leak pointer values if a binary opens a file using
		 * %pK and then elevates privileges before reading it.
		 */
		cred = current_cred();
		if (!has_capability_noaudit(current, CAP_SYSLOG) ||
		    !uid_eq(cred->euid, cred->uid) ||
		    !gid_eq(cred->egid, cred->gid))
			ptr = NULL;
		break;
	}
	case 2:
	default:
		/* Always print 0's for %pK */
		ptr = NULL;
		break;
	}

	return number(buf, end, (unsigned long)ptr, spec);
}

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static noinline_for_stack
char *netdev_bits(char *buf, char *end, const void *addr, const char *fmt)
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{
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	unsigned long long num;
	int size;

	switch (fmt[1]) {
	case 'F':
		num = *(const netdev_features_t *)addr;
		size = sizeof(netdev_features_t);
		break;
	default:
		num = (unsigned long)addr;
		size = sizeof(unsigned long);
		break;
	}
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	return special_hex_number(buf, end, num, size);
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}

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static noinline_for_stack
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char *address_val(char *buf, char *end, const void *addr, const char *fmt)
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{
	unsigned long long num;
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	int size;
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	switch (fmt[1]) {
	case 'd':
		num = *(const dma_addr_t *)addr;
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		size = sizeof(dma_addr_t);
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		break;
	case 'p':
	default:
		num = *(const phys_addr_t *)addr;
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		size = sizeof(phys_addr_t);
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		break;
	}

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	return special_hex_number(buf, end, num, size);
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}

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static noinline_for_stack
char *clock(char *buf, char *end, struct clk *clk, struct printf_spec spec,
	    const char *fmt)
{
	if (!IS_ENABLED(CONFIG_HAVE_CLK) || !clk)
		return string(buf, end, NULL, spec);

	switch (fmt[1]) {
	case 'r':
		return number(buf, end, clk_get_rate(clk), spec);

	case 'n':
	default:
#ifdef CONFIG_COMMON_CLK
		return string(buf, end, __clk_get_name(clk), spec);
#else
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		return special_hex_number(buf, end, (unsigned long)clk, sizeof(unsigned long));
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#endif
	}
}

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static
char *format_flags(char *buf, char *end, unsigned long flags,
					const struct trace_print_flags *names)
{
	unsigned long mask;
	const struct printf_spec strspec = {
		.field_width = -1,
		.precision = -1,
	};
	const struct printf_spec numspec = {
		.flags = SPECIAL|SMALL,
		.field_width = -1,
		.precision = -1,
		.base = 16,
	};

	for ( ; flags && names->name; names++) {
		mask = names->mask;
		if ((flags & mask) != mask)
			continue;

		buf = string(buf, end, names->name, strspec);

		flags &= ~mask;
		if (flags) {
			if (buf < end)
				*buf = '|';
			buf++;
		}
	}

	if (flags)
		buf = number(buf, end, flags, numspec);

	return buf;
}

static noinline_for_stack
char *flags_string(char *buf, char *end, void *flags_ptr, const char *fmt)
{
	unsigned long flags;
	const struct trace_print_flags *names;

	switch (fmt[1]) {
	case 'p':
		flags = *(unsigned long *)flags_ptr;
		/* Remove zone id */
		flags &= (1UL << NR_PAGEFLAGS) - 1;
		names = pageflag_names;
		break;
	case 'v':
		flags = *(unsigned long *)flags_ptr;
		names = vmaflag_names;
		break;
	case 'g':
		flags = *(gfp_t *)flags_ptr;
		names = gfpflag_names;
		break;
	default:
		WARN_ONCE(1, "Unsupported flags modifier: %c\n", fmt[1]);
		return buf;
	}

	return format_flags(buf, end, flags, names);
}

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static const char *device_node_name_for_depth(const struct device_node *np, int depth)
{
	for ( ; np && depth; depth--)
		np = np->parent;

	return kbasename(np->full_name);
}

static noinline_for_stack
char *device_node_gen_full_name(const struct device_node *np, char *buf, char *end)
{
	int depth;
	const struct device_node *parent = np->parent;
	static const struct printf_spec strspec = {
		.field_width = -1,
		.precision = -1,
	};

	/* special case for root node */
	if (!parent)
		return string(buf, end, "/", strspec);

	for (depth = 0; parent->parent; depth++)
		parent = parent->parent;

	for ( ; depth >= 0; depth--) {
		buf = string(buf, end, "/", strspec);
		buf = string(buf, end, device_node_name_for_depth(np, depth),
			     strspec);
	}
	return buf;
}

static noinline_for_stack
char *device_node_string(char *buf, char *end, struct device_node *dn,
			 struct printf_spec spec, const char *fmt)
{
	char tbuf[sizeof("xxxx") + 1];
	const char *p;
	int ret;
	char *buf_start = buf;
	struct property *prop;
	bool has_mult, pass;
	static const struct printf_spec num_spec = {
		.flags = SMALL,
		.field_width = -1,
		.precision = -1,
		.base = 10,
	};

	struct printf_spec str_spec = spec;
	str_spec.field_width = -1;

	if (!IS_ENABLED(CONFIG_OF))
		return string(buf, end, "(!OF)", spec);

	if ((unsigned long)dn < PAGE_SIZE)
		return string(buf, end, "(null)", spec);

	/* simple case without anything any more format specifiers */
	fmt++;
	if (fmt[0] == '\0' || strcspn(fmt,"fnpPFcC") > 0)
		fmt = "f";

	for (pass = false; strspn(fmt,"fnpPFcC"); fmt++, pass = true) {
		if (pass) {
			if (buf < end)
				*buf = ':';
			buf++;
		}

		switch (*fmt) {
		case 'f':	/* full_name */
			buf = device_node_gen_full_name(dn, buf, end);
			break;
		case 'n':	/* name */
			buf = string(buf, end, dn->name, str_spec);
			break;
		case 'p':	/* phandle */
			buf = number(buf, end, (unsigned int)dn->phandle, num_spec);
			break;
		case 'P':	/* path-spec */
			p = kbasename(of_node_full_name(dn));
			if (!p[1])
				p = "/";
			buf = string(buf, end, p, str_spec);
			break;
		case 'F':	/* flags */
			tbuf[0] = of_node_check_flag(dn, OF_DYNAMIC) ? 'D' : '-';
			tbuf[1] = of_node_check_flag(dn, OF_DETACHED) ? 'd' : '-';
			tbuf[2] = of_node_check_flag(dn, OF_POPULATED) ? 'P' : '-';
			tbuf[3] = of_node_check_flag(dn, OF_POPULATED_BUS) ? 'B' : '-';
			tbuf[4] = 0;
			buf = string(buf, end, tbuf, str_spec);
			break;
		case 'c':	/* major compatible string */
			ret = of_property_read_string(dn, "compatible", &p);
			if (!ret)
				buf = string(buf, end, p, str_spec);
			break;
		case 'C':	/* full compatible string */
			has_mult = false;
			of_property_for_each_string(dn, "compatible", prop, p) {
				if (has_mult)
					buf = string(buf, end, ",", str_spec);
				buf = string(buf, end, "\"", str_spec);
				buf = string(buf, end, p, str_spec);
				buf = string(buf, end, "\"", str_spec);

				has_mult = true;
			}
			break;
		default:
			break;
		}
	}

	return widen_string(buf, buf - buf_start, end, spec);
}

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static noinline_for_stack
char *pointer_string(char *buf, char *end, const void *ptr,
		     struct printf_spec spec)
{
	spec.base = 16;
	spec.flags |= SMALL;
	if (spec.field_width == -1) {
		spec.field_width = 2 * sizeof(ptr);
		spec.flags |= ZEROPAD;
	}

	return number(buf, end, (unsigned long int)ptr, spec);
}

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static bool have_filled_random_ptr_key __read_mostly;
static siphash_key_t ptr_key __read_mostly;

static void fill_random_ptr_key(struct random_ready_callback *unused)
{
	get_random_bytes(&ptr_key, sizeof(ptr_key));
	/*
	 * have_filled_random_ptr_key==true is dependent on get_random_bytes().
	 * ptr_to_id() needs to see have_filled_random_ptr_key==true
	 * after get_random_bytes() returns.
	 */
	smp_mb();
	WRITE_ONCE(have_filled_random_ptr_key, true);
}

static struct random_ready_callback random_ready = {
	.func = fill_random_ptr_key
};

static int __init initialize_ptr_random(void)
{
	int ret = add_random_ready_callback(&random_ready);

	if (!ret) {
		return 0;
	} else if (ret == -EALREADY) {
		fill_random_ptr_key(&random_ready);
		return 0;
	}

	return ret;
}
early_initcall(initialize_ptr_random);

/* Maps a pointer to a 32 bit unique identifier. */
static char *ptr_to_id(char *buf, char *end, void *ptr, struct printf_spec spec)
{
	unsigned long hashval;
	const int default_width = 2 * sizeof(ptr);

	if (unlikely(!have_filled_random_ptr_key)) {
		spec.field_width = default_width;
		/* string length must be less than default_width */
		return string(buf, end, "(ptrval)", spec);
	}

#ifdef CONFIG_64BIT
	hashval = (unsigned long)siphash_1u64((u64)ptr, &ptr_key);
	/*
	 * Mask off the first 32 bits, this makes explicit that we have
	 * modified the address (and 32 bits is plenty for a unique ID).
	 */
	hashval = hashval & 0xffffffff;
#else
	hashval = (unsigned long)siphash_1u32((u32)ptr, &ptr_key);
#endif

	spec.flags |= SMALL;
	if (spec.field_width == -1) {
		spec.field_width = default_width;
		spec.flags |= ZEROPAD;
	}
	spec.base = 16;

	return number(buf, end, hashval, spec);
}

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/*
 * Show a '%p' thing.  A kernel extension is that the '%p' is followed
 * by an extra set of alphanumeric characters that are extended format
 * specifiers.
 *
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 * Please update scripts/checkpatch.pl when adding/removing conversion
 * characters.  (Search for "check for vsprintf extension").
 *
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 * Right now we handle:
 *
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 * - 'F' For symbolic function descriptor pointers with offset
 * - 'f' For simple symbolic function names without offset
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 * - 'S' For symbolic direct pointers with offset
 * - 's' For symbolic direct pointers without offset
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 * - '[FfSs]R' as above with __builtin_extract_return_addr() translation
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 * - 'B' For backtraced symbolic direct pointers with offset
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 * - 'R' For decoded struct resource, e.g., [mem 0x0-0x1f 64bit pref]
 * - 'r' For raw struct resource, e.g., [mem 0x0-0x1f flags 0x201]
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 * - 'b[l]' For a bitmap, the number of bits is determined by the field
 *       width which must be explicitly specified either as part of the
 *       format string '%32b[l]' or through '%*b[l]', [l] selects
 *       range-list format instead of hex format
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 * - 'M' For a 6-byte MAC address, it prints the address in the
 *       usual colon-separated hex notation
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 * - 'm' For a 6-byte MAC address, it prints the hex address without colons
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 * - 'MF' For a 6-byte MAC FDDI address, it prints the address
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 *       with a dash-separated hex notation
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 * - '[mM]R' For a 6-byte MAC address, Reverse order (Bluetooth)
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 * - 'I' [46] for IPv4/IPv6 addresses printed in the usual way
 *       IPv4 uses dot-separated decimal without leading 0's (1.2.3.4)
 *       IPv6 uses colon separated network-order 16 bit hex with leading 0's
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 *       [S][pfs]
 *       Generic IPv4/IPv6 address (struct sockaddr *) that falls back to
 *       [4] or [6] and is able to print port [p], flowinfo [f], scope [s]
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 * - 'i' [46] for 'raw' IPv4/IPv6 addresses
 *       IPv6 omits the colons (01020304...0f)
 *       IPv4 uses dot-separated decimal with leading 0's (010.123.045.006)
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 *       [S][pfs]
 *       Generic IPv4/IPv6 address (struct sockaddr *) that falls back to
 *       [4] or [6] and is able to print port [p], flowinfo [f], scope [s]
 * - '[Ii][4S][hnbl]' IPv4 addresses in host, network, big or little endian order
 * - 'I[6S]c' for IPv6 addresses printed as specified by
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 *       http://tools.ietf.org/html/rfc5952
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 * - 'E[achnops]' For an escaped buffer, where rules are defined by combination
 *                of the following flags (see string_escape_mem() for the
 *                details):
 *                  a - ESCAPE_ANY
 *                  c - ESCAPE_SPECIAL
 *                  h - ESCAPE_HEX
 *                  n - ESCAPE_NULL
 *                  o - ESCAPE_OCTAL
 *                  p - ESCAPE_NP
 *                  s - ESCAPE_SPACE
 *                By default ESCAPE_ANY_NP is used.
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 * - 'U' For a 16 byte UUID/GUID, it prints the UUID/GUID in the form
 *       "xxxxxxxx-xxxx-xxxx-xxxx-xxxxxxxxxxxx"
 *       Options for %pU are:
 *         b big endian lower case hex (default)
 *         B big endian UPPER case hex
 *         l little endian lower case hex
 *         L little endian UPPER case hex
 *           big endian output byte order is:
 *             [0][1][2][3]-[4][5]-[6][7]-[8][9]-[10][11][12][13][14][15]
 *           little endian output byte order is:
 *             [3][2][1][0]-[5][4]-[7][6]-[8][9]-[10][11][12][13][14][15]
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 * - 'V' For a struct va_format which contains a format string * and va_list *,
 *       call vsnprintf(->format, *->va_list).
 *       Implements a "recursive vsnprintf".
 *       Do not use this feature without some mechanism to verify the
 *       correctness of the format string and va_list arguments.
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 * - 'K' For a kernel pointer that should be hidden from unprivileged users
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 * - 'NF' For a netdev_features_t
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 * - 'h[CDN]' For a variable-length buffer, it prints it as a hex string with
 *            a certain separator (' ' by default):
 *              C colon
 *              D dash
 *              N no separator
 *            The maximum supported length is 64 bytes of the input. Consider
 *            to use print_hex_dump() for the larger input.
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 * - 'a[pd]' For address types [p] phys_addr_t, [d] dma_addr_t and derivatives
 *           (default assumed to be phys_addr_t, passed by reference)
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 * - 'd[234]' For a dentry name (optionally 2-4 last components)
 * - 'D[234]' Same as 'd' but for a struct file
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 * - 'g' For block_device name (gendisk + partition number)
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 * - 'C' For a clock, it prints the name (Common Clock Framework) or address
 *       (legacy clock framework) of the clock
 * - 'Cn' For a clock, it prints the name (Common Clock Framework) or address
 *        (legacy clock framework) of the clock
 * - 'Cr' For a clock, it prints the current rate of the clock
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 * - 'G' For flags to be printed as a collection of symbolic strings that would
 *       construct the specific value. Supported flags given by option:
 *       p page flags (see struct page) given as pointer to unsigned long
 *       g gfp flags (GFP_* and __GFP_*) given as pointer to gfp_t
 *       v vma flags (VM_*) given as pointer to unsigned long
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 * - 'O' For a kobject based struct. Must be one of the following:
 *       - 'OF[fnpPcCF]'  For a device tree object
 *                        Without any optional arguments prints the full_name
 *                        f device node full_name
 *                        n device node name
 *                        p device node phandle
 *                        P device node path spec (name + @unit)
 *                        F device node flags
 *                        c major compatible string
 *                        C full compatible string
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 *
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 * - 'x' For printing the address. Equivalent to "%lx".
 *
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 * ** Please update also Documentation/printk-formats.txt when making changes **
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 *
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 * Note: The difference between 'S' and 'F' is that on ia64 and ppc64
 * function pointers are really function descriptors, which contain a
 * pointer to the real address.
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 *
 * Note: The default behaviour (unadorned %p) is to hash the address,
 * rendering it useful as a unique identifier.
1845
 */
1846 1847 1848
static noinline_for_stack
char *pointer(const char *fmt, char *buf, char *end, void *ptr,
	      struct printf_spec spec)
1849
{
1850
	const int default_width = 2 * sizeof(void *);
1851

1852
	if (!ptr && *fmt != 'K') {
1853 1854 1855 1856 1857
		/*
		 * Print (null) with the same width as a pointer so it makes
		 * tabular output look nice.
		 */
		if (spec.field_width == -1)
1858
			spec.field_width = default_width;
1859
		return string(buf, end, "(null)", spec);
1860
	}
1861

1862 1863
	switch (*fmt) {
	case 'F':
1864
	case 'f':
1865 1866 1867
		ptr = dereference_function_descriptor(ptr);
		/* Fallthrough */
	case 'S':
1868
	case 's':
1869
	case 'B':
1870
		return symbol_string(buf, end, ptr, spec, fmt);
1871
	case 'R':
1872
	case 'r':
1873
		return resource_string(buf, end, ptr, spec, fmt);
1874 1875
	case 'h':
		return hex_string(buf, end, ptr, spec, fmt);
1876 1877 1878 1879 1880 1881 1882
	case 'b':
		switch (fmt[1]) {
		case 'l':
			return bitmap_list_string(buf, end, ptr, spec, fmt);
		default:
			return bitmap_string(buf, end, ptr, spec, fmt);
		}
1883 1884
	case 'M':			/* Colon separated: 00:01:02:03:04:05 */
	case 'm':			/* Contiguous: 000102030405 */
1885 1886
					/* [mM]F (FDDI) */
					/* [mM]R (Reverse order; Bluetooth) */
1887 1888 1889 1890 1891 1892 1893 1894 1895 1896 1897 1898 1899 1900 1901
		return mac_address_string(buf, end, ptr, spec, fmt);
	case 'I':			/* Formatted IP supported
					 * 4:	1.2.3.4
					 * 6:	0001:0203:...:0708
					 * 6c:	1::708 or 1::1.2.3.4
					 */
	case 'i':			/* Contiguous:
					 * 4:	001.002.003.004
					 * 6:   000102...0f
					 */
		switch (fmt[1]) {
		case '6':
			return ip6_addr_string(buf, end, ptr, spec, fmt);
		case '4':
			return ip4_addr_string(buf, end, ptr, spec, fmt);
1902 1903 1904 1905 1906 1907 1908 1909 1910 1911 1912 1913 1914 1915 1916
		case 'S': {
			const union {
				struct sockaddr		raw;
				struct sockaddr_in	v4;
				struct sockaddr_in6	v6;
			} *sa = ptr;

			switch (sa->raw.sa_family) {
			case AF_INET:
				return ip4_addr_string_sa(buf, end, &sa->v4, spec, fmt);
			case AF_INET6:
				return ip6_addr_string_sa(buf, end, &sa->v6, spec, fmt);
			default:
				return string(buf, end, "(invalid address)", spec);
			}}
1917
		}
1918
		break;
1919 1920
	case 'E':
		return escaped_string(buf, end, ptr, spec, fmt);
1921 1922
	case 'U':
		return uuid_string(buf, end, ptr, spec, fmt);
1923
	case 'V':
1924 1925 1926 1927 1928 1929 1930 1931 1932
		{
			va_list va;

			va_copy(va, *((struct va_format *)ptr)->va);
			buf += vsnprintf(buf, end > buf ? end - buf : 0,
					 ((struct va_format *)ptr)->fmt, va);
			va_end(va);
			return buf;
		}
1933
	case 'K':
1934 1935
		if (!kptr_restrict)
			break;
1936
		return restricted_pointer(buf, end, ptr, spec);
1937
	case 'N':
1938
		return netdev_bits(buf, end, ptr, fmt);
1939
	case 'a':
1940
		return address_val(buf, end, ptr, fmt);
1941 1942
	case 'd':
		return dentry_name(buf, end, ptr, spec, fmt);
1943 1944
	case 'C':
		return clock(buf, end, ptr, spec, fmt);
1945 1946 1947 1948
	case 'D':
		return dentry_name(buf, end,
				   ((const struct file *)ptr)->f_path.dentry,
				   spec, fmt);
1949 1950 1951 1952 1953
#ifdef CONFIG_BLOCK
	case 'g':
		return bdev_name(buf, end, ptr, spec, fmt);
#endif

1954 1955
	case 'G':
		return flags_string(buf, end, ptr, fmt);
1956 1957 1958 1959 1960
	case 'O':
		switch (fmt[1]) {
		case 'F':
			return device_node_string(buf, end, ptr, spec, fmt + 1);
		}
1961 1962
	case 'x':
		return pointer_string(buf, end, ptr, spec);
1963 1964
	}

1965 1966
	/* default is to _not_ leak addresses, hash before printing */
	return ptr_to_id(buf, end, ptr, spec);
1967 1968 1969 1970 1971 1972 1973 1974 1975 1976 1977 1978
}

/*
 * Helper function to decode printf style format.
 * Each call decode a token from the format and return the
 * number of characters read (or likely the delta where it wants
 * to go on the next call).
 * The decoded token is returned through the parameters
 *
 * 'h', 'l', or 'L' for integer fields
 * 'z' support added 23/7/1999 S.H.
 * 'z' changed to 'Z' --davidm 1/25/99
1979
 * 'Z' changed to 'z' --adobriyan 2017-01-25
1980 1981 1982 1983 1984 1985 1986 1987 1988 1989
 * 't' added for ptrdiff_t
 *
 * @fmt: the format string
 * @type of the token returned
 * @flags: various flags such as +, -, # tokens..
 * @field_width: overwritten width
 * @base: base of the number (octal, hex, ...)
 * @precision: precision of a number
 * @qualifier: qualifier of a number (long, size_t, ...)
 */
1990 1991
static noinline_for_stack
int format_decode(const char *fmt, struct printf_spec *spec)
1992 1993
{
	const char *start = fmt;
1994
	char qualifier;
1995 1996

	/* we finished early by reading the field width */
1997
	if (spec->type == FORMAT_TYPE_WIDTH) {
1998 1999 2000 2001 2002 2003 2004 2005 2006 2007 2008 2009 2010 2011 2012 2013 2014 2015 2016 2017 2018 2019 2020 2021 2022 2023 2024 2025 2026 2027 2028 2029 2030 2031 2032 2033 2034 2035 2036 2037 2038 2039 2040 2041 2042 2043 2044 2045 2046 2047 2048 2049 2050 2051 2052 2053 2054
		if (spec->field_width < 0) {
			spec->field_width = -spec->field_width;
			spec->flags |= LEFT;
		}
		spec->type = FORMAT_TYPE_NONE;
		goto precision;
	}

	/* we finished early by reading the precision */
	if (spec->type == FORMAT_TYPE_PRECISION) {
		if (spec->precision < 0)
			spec->precision = 0;

		spec->type = FORMAT_TYPE_NONE;
		goto qualifier;
	}

	/* By default */
	spec->type = FORMAT_TYPE_NONE;

	for (; *fmt ; ++fmt) {
		if (*fmt == '%')
			break;
	}

	/* Return the current non-format string */
	if (fmt != start || !*fmt)
		return fmt - start;

	/* Process flags */
	spec->flags = 0;

	while (1) { /* this also skips first '%' */
		bool found = true;

		++fmt;

		switch (*fmt) {
		case '-': spec->flags |= LEFT;    break;
		case '+': spec->flags |= PLUS;    break;
		case ' ': spec->flags |= SPACE;   break;
		case '#': spec->flags |= SPECIAL; break;
		case '0': spec->flags |= ZEROPAD; break;
		default:  found = false;
		}

		if (!found)
			break;
	}

	/* get field width */
	spec->field_width = -1;

	if (isdigit(*fmt))
		spec->field_width = skip_atoi(&fmt);
	else if (*fmt == '*') {
		/* it's the next argument */
2055
		spec->type = FORMAT_TYPE_WIDTH;
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		return ++fmt - start;
	}

precision:
	/* get the precision */
	spec->precision = -1;
	if (*fmt == '.') {
		++fmt;
		if (isdigit(*fmt)) {
			spec->precision = skip_atoi(&fmt);
			if (spec->precision < 0)
				spec->precision = 0;
		} else if (*fmt == '*') {
			/* it's the next argument */
2070
			spec->type = FORMAT_TYPE_PRECISION;
2071 2072 2073 2074 2075 2076
			return ++fmt - start;
		}
	}

qualifier:
	/* get the conversion qualifier */
2077
	qualifier = 0;
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	if (*fmt == 'h' || _tolower(*fmt) == 'l' ||
2079
	    *fmt == 'z' || *fmt == 't') {
2080 2081 2082 2083
		qualifier = *fmt++;
		if (unlikely(qualifier == *fmt)) {
			if (qualifier == 'l') {
				qualifier = 'L';
2084
				++fmt;
2085 2086
			} else if (qualifier == 'h') {
				qualifier = 'H';
2087 2088
				++fmt;
			}
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		}
	}

	/* default base */
	spec->base = 10;
	switch (*fmt) {
	case 'c':
		spec->type = FORMAT_TYPE_CHAR;
		return ++fmt - start;

	case 's':
		spec->type = FORMAT_TYPE_STR;
		return ++fmt - start;

	case 'p':
		spec->type = FORMAT_TYPE_PTR;
2105
		return ++fmt - start;
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	case '%':
		spec->type = FORMAT_TYPE_PERCENT_CHAR;
		return ++fmt - start;

	/* integer number formats - set up the flags and "break" */
	case 'o':
		spec->base = 8;
		break;

	case 'x':
		spec->flags |= SMALL;

	case 'X':
		spec->base = 16;
		break;

	case 'd':
	case 'i':
2125
		spec->flags |= SIGN;
2126
	case 'u':
2127
		break;
2128

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	case 'n':
		/*
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		 * Since %n poses a greater security risk than
		 * utility, treat it as any other invalid or
		 * unsupported format specifier.
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		 */
		/* Fall-through */

2137
	default:
2138
		WARN_ONCE(1, "Please remove unsupported %%%c in format string\n", *fmt);
2139 2140
		spec->type = FORMAT_TYPE_INVALID;
		return fmt - start;
2141
	}
2142

2143
	if (qualifier == 'L')
2144
		spec->type = FORMAT_TYPE_LONG_LONG;
2145
	else if (qualifier == 'l') {
2146 2147
		BUILD_BUG_ON(FORMAT_TYPE_ULONG + SIGN != FORMAT_TYPE_LONG);
		spec->type = FORMAT_TYPE_ULONG + (spec->flags & SIGN);
2148
	} else if (qualifier == 'z') {
2149
		spec->type = FORMAT_TYPE_SIZE_T;
2150
	} else if (qualifier == 't') {
2151
		spec->type = FORMAT_TYPE_PTRDIFF;
2152
	} else if (qualifier == 'H') {
2153 2154
		BUILD_BUG_ON(FORMAT_TYPE_UBYTE + SIGN != FORMAT_TYPE_BYTE);
		spec->type = FORMAT_TYPE_UBYTE + (spec->flags & SIGN);
2155
	} else if (qualifier == 'h') {
2156 2157
		BUILD_BUG_ON(FORMAT_TYPE_USHORT + SIGN != FORMAT_TYPE_SHORT);
		spec->type = FORMAT_TYPE_USHORT + (spec->flags & SIGN);
2158
	} else {
2159 2160
		BUILD_BUG_ON(FORMAT_TYPE_UINT + SIGN != FORMAT_TYPE_INT);
		spec->type = FORMAT_TYPE_UINT + (spec->flags & SIGN);
2161
	}
2162 2163

	return ++fmt - start;
2164 2165
}

2166 2167 2168 2169 2170 2171 2172 2173 2174 2175 2176 2177 2178 2179 2180 2181 2182 2183
static void
set_field_width(struct printf_spec *spec, int width)
{
	spec->field_width = width;
	if (WARN_ONCE(spec->field_width != width, "field width %d too large", width)) {
		spec->field_width = clamp(width, -FIELD_WIDTH_MAX, FIELD_WIDTH_MAX);
	}
}

static void
set_precision(struct printf_spec *spec, int prec)
{
	spec->precision = prec;
	if (WARN_ONCE(spec->precision != prec, "precision %d too large", prec)) {
		spec->precision = clamp(prec, 0, PRECISION_MAX);
	}
}

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/**
 * vsnprintf - Format a string and place it in a buffer
 * @buf: The buffer to place the result into
 * @size: The size of the buffer, including the trailing null space
 * @fmt: The format string to use
 * @args: Arguments for the format string
 *
2191 2192 2193
 * This function generally follows C99 vsnprintf, but has some
 * extensions and a few limitations:
 *
2194 2195
 *  - ``%n`` is unsupported
 *  - ``%p*`` is handled by pointer()
2196 2197 2198
 *
 * See pointer() or Documentation/printk-formats.txt for more
 * extensive description.
2199
 *
2200
 * **Please update the documentation in both places when making changes**
2201
 *
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 * The return value is the number of characters which would
 * be generated for the given input, excluding the trailing
 * '\0', as per ISO C99. If you want to have the exact
 * number of characters written into @buf as return value
2206
 * (not including the trailing '\0'), use vscnprintf(). If the
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 * return is greater than or equal to @size, the resulting
 * string is truncated.
 *
2210
 * If you're not already dealing with a va_list consider using snprintf().
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 */
int vsnprintf(char *buf, size_t size, const char *fmt, va_list args)
{
	unsigned long long num;
2215
	char *str, *end;
2216
	struct printf_spec spec = {0};
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2218 2219
	/* Reject out-of-range values early.  Large positive sizes are
	   used for unknown buffer sizes. */
2220
	if (WARN_ON_ONCE(size > INT_MAX))
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		return 0;

	str = buf;
2224
	end = buf + size;
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2226 2227 2228 2229
	/* Make sure end is always >= buf */
	if (end < buf) {
		end = ((void *)-1);
		size = end - buf;
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	}

2232 2233
	while (*fmt) {
		const char *old_fmt = fmt;
2234
		int read = format_decode(fmt, &spec);
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2236
		fmt += read;
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2238 2239 2240 2241 2242 2243 2244
		switch (spec.type) {
		case FORMAT_TYPE_NONE: {
			int copy = read;
			if (str < end) {
				if (copy > end - str)
					copy = end - str;
				memcpy(str, old_fmt, copy);
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			}
2246 2247
			str += read;
			break;
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		}

2250
		case FORMAT_TYPE_WIDTH:
2251
			set_field_width(&spec, va_arg(args, int));
2252
			break;
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2254
		case FORMAT_TYPE_PRECISION:
2255
			set_precision(&spec, va_arg(args, int));
2256
			break;
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2258 2259 2260
		case FORMAT_TYPE_CHAR: {
			char c;

2261 2262
			if (!(spec.flags & LEFT)) {
				while (--spec.field_width > 0) {
2263
					if (str < end)
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						*str = ' ';
					++str;

2267 2268 2269 2270 2271 2272 2273
				}
			}
			c = (unsigned char) va_arg(args, int);
			if (str < end)
				*str = c;
			++str;
			while (--spec.field_width > 0) {
2274
				if (str < end)
2275
					*str = ' ';
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				++str;
2277 2278
			}
			break;
2279
		}
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2281 2282 2283
		case FORMAT_TYPE_STR:
			str = string(str, end, va_arg(args, char *), spec);
			break;
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2285
		case FORMAT_TYPE_PTR:
2286
			str = pointer(fmt, str, end, va_arg(args, void *),
2287 2288 2289 2290
				      spec);
			while (isalnum(*fmt))
				fmt++;
			break;
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2292 2293 2294 2295 2296
		case FORMAT_TYPE_PERCENT_CHAR:
			if (str < end)
				*str = '%';
			++str;
			break;
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2298
		case FORMAT_TYPE_INVALID:
2299 2300 2301 2302 2303 2304 2305 2306 2307
			/*
			 * Presumably the arguments passed gcc's type
			 * checking, but there is no safe or sane way
			 * for us to continue parsing the format and
			 * fetching from the va_list; the remaining
			 * specifiers and arguments would be out of
			 * sync.
			 */
			goto out;
2308 2309 2310 2311 2312 2313 2314 2315 2316 2317 2318 2319 2320

		default:
			switch (spec.type) {
			case FORMAT_TYPE_LONG_LONG:
				num = va_arg(args, long long);
				break;
			case FORMAT_TYPE_ULONG:
				num = va_arg(args, unsigned long);
				break;
			case FORMAT_TYPE_LONG:
				num = va_arg(args, long);
				break;
			case FORMAT_TYPE_SIZE_T:
2321 2322 2323 2324
				if (spec.flags & SIGN)
					num = va_arg(args, ssize_t);
				else
					num = va_arg(args, size_t);
2325 2326 2327 2328
				break;
			case FORMAT_TYPE_PTRDIFF:
				num = va_arg(args, ptrdiff_t);
				break;
2329 2330 2331 2332 2333 2334
			case FORMAT_TYPE_UBYTE:
				num = (unsigned char) va_arg(args, int);
				break;
			case FORMAT_TYPE_BYTE:
				num = (signed char) va_arg(args, int);
				break;
2335 2336 2337 2338 2339 2340
			case FORMAT_TYPE_USHORT:
				num = (unsigned short) va_arg(args, int);
				break;
			case FORMAT_TYPE_SHORT:
				num = (short) va_arg(args, int);
				break;
2341 2342
			case FORMAT_TYPE_INT:
				num = (int) va_arg(args, int);
2343 2344 2345 2346 2347 2348
				break;
			default:
				num = va_arg(args, unsigned int);
			}

			str = number(str, end, num, spec);
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		}
	}
2351

2352
out:
2353 2354 2355 2356
	if (size > 0) {
		if (str < end)
			*str = '\0';
		else
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			end[-1] = '\0';
2358
	}
2359

2360
	/* the trailing null byte doesn't count towards the total */
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	return str-buf;
2362

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}
EXPORT_SYMBOL(vsnprintf);

/**
 * vscnprintf - Format a string and place it in a buffer
 * @buf: The buffer to place the result into
 * @size: The size of the buffer, including the trailing null space
 * @fmt: The format string to use
 * @args: Arguments for the format string
 *
 * The return value is the number of characters which have been written into
2374
 * the @buf not including the trailing '\0'. If @size is == 0 the function
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 * returns 0.
 *
2377
 * If you're not already dealing with a va_list consider using scnprintf().
2378 2379
 *
 * See the vsnprintf() documentation for format string extensions over C99.
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 */
int vscnprintf(char *buf, size_t size, const char *fmt, va_list args)
{
	int i;

2385 2386
	i = vsnprintf(buf, size, fmt, args);

2387 2388 2389 2390 2391
	if (likely(i < size))
		return i;
	if (size != 0)
		return size - 1;
	return 0;
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}
EXPORT_SYMBOL(vscnprintf);

/**
 * snprintf - Format a string and place it in a buffer
 * @buf: The buffer to place the result into
 * @size: The size of the buffer, including the trailing null space
 * @fmt: The format string to use
 * @...: Arguments for the format string
 *
 * The return value is the number of characters which would be
 * generated for the given input, excluding the trailing null,
 * as per ISO C99.  If the return is greater than or equal to
 * @size, the resulting string is truncated.
2406 2407
 *
 * See the vsnprintf() documentation for format string extensions over C99.
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 */
2409
int snprintf(char *buf, size_t size, const char *fmt, ...)
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{
	va_list args;
	int i;

	va_start(args, fmt);
2415
	i = vsnprintf(buf, size, fmt, args);
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	va_end(args);
2417

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	return i;
}
EXPORT_SYMBOL(snprintf);

/**
 * scnprintf - Format a string and place it in a buffer
 * @buf: The buffer to place the result into
 * @size: The size of the buffer, including the trailing null space
 * @fmt: The format string to use
 * @...: Arguments for the format string
 *
 * The return value is the number of characters written into @buf not including
2430
 * the trailing '\0'. If @size is == 0 the function returns 0.
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 */

2433
int scnprintf(char *buf, size_t size, const char *fmt, ...)
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{
	va_list args;
	int i;

	va_start(args, fmt);
2439
	i = vscnprintf(buf, size, fmt, args);
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	va_end(args);
2441

2442
	return i;
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}
EXPORT_SYMBOL(scnprintf);

/**
 * vsprintf - Format a string and place it in a buffer
 * @buf: The buffer to place the result into
 * @fmt: The format string to use
 * @args: Arguments for the format string
 *
 * The function returns the number of characters written
2453
 * into @buf. Use vsnprintf() or vscnprintf() in order to avoid
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 * buffer overflows.
 *
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 * If you're not already dealing with a va_list consider using sprintf().
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 *
 * See the vsnprintf() documentation for format string extensions over C99.
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 */
int vsprintf(char *buf, const char *fmt, va_list args)
{
	return vsnprintf(buf, INT_MAX, fmt, args);
}
EXPORT_SYMBOL(vsprintf);

/**
 * sprintf - Format a string and place it in a buffer
 * @buf: The buffer to place the result into
 * @fmt: The format string to use
 * @...: Arguments for the format string
 *
 * The function returns the number of characters written
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 * into @buf. Use snprintf() or scnprintf() in order to avoid
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 * buffer overflows.
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 *
 * See the vsnprintf() documentation for format string extensions over C99.
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 */
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int sprintf(char *buf, const char *fmt, ...)
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{
	va_list args;
	int i;

	va_start(args, fmt);
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	i = vsnprintf(buf, INT_MAX, fmt, args);
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	va_end(args);
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	return i;
}
EXPORT_SYMBOL(sprintf);

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#ifdef CONFIG_BINARY_PRINTF
/*
 * bprintf service:
 * vbin_printf() - VA arguments to binary data
 * bstr_printf() - Binary data to text string
 */

/**
 * vbin_printf - Parse a format string and place args' binary value in a buffer
 * @bin_buf: The buffer to place args' binary value
 * @size: The size of the buffer(by words(32bits), not characters)
 * @fmt: The format string to use
 * @args: Arguments for the format string
 *
 * The format follows C99 vsnprintf, except %n is ignored, and its argument
2506
 * is skipped.
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 *
 * The return value is the number of words(32bits) which would be generated for
 * the given input.
 *
 * NOTE:
 * If the return value is greater than @size, the resulting bin_buf is NOT
 * valid for bstr_printf().
 */
int vbin_printf(u32 *bin_buf, size_t size, const char *fmt, va_list args)
{
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	struct printf_spec spec = {0};
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	char *str, *end;
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	int width;
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	str = (char *)bin_buf;
	end = (char *)(bin_buf + size);

#define save_arg(type)							\
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({									\
	unsigned long long value;					\
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	if (sizeof(type) == 8) {					\
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		unsigned long long val8;				\
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		str = PTR_ALIGN(str, sizeof(u32));			\
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		val8 = va_arg(args, unsigned long long);		\
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		if (str + sizeof(type) <= end) {			\
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			*(u32 *)str = *(u32 *)&val8;			\
			*(u32 *)(str + 4) = *((u32 *)&val8 + 1);	\
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		}							\
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		value = val8;						\
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	} else {							\
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		unsigned int val4;					\
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		str = PTR_ALIGN(str, sizeof(type));			\
2539
		val4 = va_arg(args, int);				\
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		if (str + sizeof(type) <= end)				\
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			*(typeof(type) *)str = (type)(long)val4;	\
		value = (unsigned long long)val4;			\
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	}								\
	str += sizeof(type);						\
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	value;								\
})
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	while (*fmt) {
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		int read = format_decode(fmt, &spec);
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		fmt += read;
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		switch (spec.type) {
		case FORMAT_TYPE_NONE:
2555
		case FORMAT_TYPE_PERCENT_CHAR:
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			break;
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		case FORMAT_TYPE_INVALID:
			goto out;
2559

2560
		case FORMAT_TYPE_WIDTH:
2561
		case FORMAT_TYPE_PRECISION:
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			width = (int)save_arg(int);
			/* Pointers may require the width */
			if (*fmt == 'p')
				set_field_width(&spec, width);
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			break;

		case FORMAT_TYPE_CHAR:
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			save_arg(char);
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			break;

		case FORMAT_TYPE_STR: {
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			const char *save_str = va_arg(args, char *);
			size_t len;
2575

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			if ((unsigned long)save_str > (unsigned long)-PAGE_SIZE
					|| (unsigned long)save_str < PAGE_SIZE)
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				save_str = "(null)";
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			len = strlen(save_str) + 1;
			if (str + len < end)
				memcpy(str, save_str, len);
			str += len;
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			break;
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		}
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		case FORMAT_TYPE_PTR:
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			/* Dereferenced pointers must be done now */
			switch (*fmt) {
			/* Dereference of functions is still OK */
			case 'S':
			case 's':
			case 'F':
			case 'f':
				save_arg(void *);
				break;
			default:
				if (!isalnum(*fmt)) {
					save_arg(void *);
					break;
				}
				str = pointer(fmt, str, end, va_arg(args, void *),
					      spec);
				if (str + 1 < end)
					*str++ = '\0';
				else
					end[-1] = '\0'; /* Must be nul terminated */
			}
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			/* skip all alphanumeric pointer suffixes */
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			while (isalnum(*fmt))
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				fmt++;
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			break;

		default:
			switch (spec.type) {

			case FORMAT_TYPE_LONG_LONG:
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				save_arg(long long);
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				break;
			case FORMAT_TYPE_ULONG:
			case FORMAT_TYPE_LONG:
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				save_arg(unsigned long);
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				break;
			case FORMAT_TYPE_SIZE_T:
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				save_arg(size_t);
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				break;
			case FORMAT_TYPE_PTRDIFF:
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				save_arg(ptrdiff_t);
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				break;
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			case FORMAT_TYPE_UBYTE:
			case FORMAT_TYPE_BYTE:
				save_arg(char);
				break;
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			case FORMAT_TYPE_USHORT:
			case FORMAT_TYPE_SHORT:
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				save_arg(short);
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				break;
			default:
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				save_arg(int);
2639
			}
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		}
	}
2642

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out:
2644
	return (u32 *)(PTR_ALIGN(str, sizeof(u32))) - bin_buf;
2645
#undef save_arg
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}
EXPORT_SYMBOL_GPL(vbin_printf);

/**
 * bstr_printf - Format a string from binary arguments and place it in a buffer
 * @buf: The buffer to place the result into
 * @size: The size of the buffer, including the trailing null space
 * @fmt: The format string to use
 * @bin_buf: Binary arguments for the format string
 *
 * This function like C99 vsnprintf, but the difference is that vsnprintf gets
 * arguments from stack, and bstr_printf gets arguments from @bin_buf which is
 * a binary buffer that generated by vbin_printf.
 *
 * The format follows C99 vsnprintf, but has some extensions:
2661
 *  see vsnprintf comment for details.
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 *
 * The return value is the number of characters which would
 * be generated for the given input, excluding the trailing
 * '\0', as per ISO C99. If you want to have the exact
 * number of characters written into @buf as return value
 * (not including the trailing '\0'), use vscnprintf(). If the
 * return is greater than or equal to @size, the resulting
 * string is truncated.
 */
int bstr_printf(char *buf, size_t size, const char *fmt, const u32 *bin_buf)
{
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	struct printf_spec spec = {0};
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	char *str, *end;
	const char *args = (const char *)bin_buf;
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2677
	if (WARN_ON_ONCE(size > INT_MAX))
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		return 0;

	str = buf;
	end = buf + size;

#define get_arg(type)							\
({									\
	typeof(type) value;						\
	if (sizeof(type) == 8) {					\
		args = PTR_ALIGN(args, sizeof(u32));			\
		*(u32 *)&value = *(u32 *)args;				\
		*((u32 *)&value + 1) = *(u32 *)(args + 4);		\
	} else {							\
		args = PTR_ALIGN(args, sizeof(type));			\
		value = *(typeof(type) *)args;				\
	}								\
	args += sizeof(type);						\
	value;								\
})

	/* Make sure end is always >= buf */
	if (end < buf) {
		end = ((void *)-1);
		size = end - buf;
	}

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	while (*fmt) {
		const char *old_fmt = fmt;
2706
		int read = format_decode(fmt, &spec);
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2708
		fmt += read;
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		switch (spec.type) {
		case FORMAT_TYPE_NONE: {
			int copy = read;
			if (str < end) {
				if (copy > end - str)
					copy = end - str;
				memcpy(str, old_fmt, copy);
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			}
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			str += read;
			break;
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		}

2722
		case FORMAT_TYPE_WIDTH:
2723
			set_field_width(&spec, get_arg(int));
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			break;
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		case FORMAT_TYPE_PRECISION:
2727
			set_precision(&spec, get_arg(int));
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			break;
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		case FORMAT_TYPE_CHAR: {
			char c;

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			if (!(spec.flags & LEFT)) {
				while (--spec.field_width > 0) {
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					if (str < end)
						*str = ' ';
					++str;
				}
			}
			c = (unsigned char) get_arg(char);
			if (str < end)
				*str = c;
			++str;
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			while (--spec.field_width > 0) {
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				if (str < end)
					*str = ' ';
				++str;
			}
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			break;
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		}
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2752
		case FORMAT_TYPE_STR: {
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			const char *str_arg = args;
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			args += strlen(str_arg) + 1;
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			str = string(str, end, (char *)str_arg, spec);
			break;
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		}

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		case FORMAT_TYPE_PTR: {
			bool process = false;
			int copy, len;
			/* Non function dereferences were already done */
			switch (*fmt) {
			case 'S':
			case 's':
			case 'F':
			case 'f':
				process = true;
				break;
			default:
				if (!isalnum(*fmt)) {
					process = true;
					break;
				}
				/* Pointer dereference was already processed */
				if (str < end) {
					len = copy = strlen(args);
					if (copy > end - str)
						copy = end - str;
					memcpy(str, args, copy);
					str += len;
					args += len;
				}
			}
			if (process)
				str = pointer(fmt, str, end, get_arg(void *), spec);

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			while (isalnum(*fmt))
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				fmt++;
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			break;
2791
		}
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		case FORMAT_TYPE_PERCENT_CHAR:
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			if (str < end)
				*str = '%';
			++str;
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			break;

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		case FORMAT_TYPE_INVALID:
			goto out;

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		default: {
			unsigned long long num;

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			switch (spec.type) {

			case FORMAT_TYPE_LONG_LONG:
				num = get_arg(long long);
				break;
			case FORMAT_TYPE_ULONG:
			case FORMAT_TYPE_LONG:
				num = get_arg(unsigned long);
				break;
			case FORMAT_TYPE_SIZE_T:
				num = get_arg(size_t);
				break;
			case FORMAT_TYPE_PTRDIFF:
				num = get_arg(ptrdiff_t);
				break;
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			case FORMAT_TYPE_UBYTE:
				num = get_arg(unsigned char);
				break;
			case FORMAT_TYPE_BYTE:
				num = get_arg(signed char);
				break;
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			case FORMAT_TYPE_USHORT:
				num = get_arg(unsigned short);
				break;
			case FORMAT_TYPE_SHORT:
				num = get_arg(short);
				break;
			case FORMAT_TYPE_UINT:
				num = get_arg(unsigned int);
				break;
			default:
				num = get_arg(int);
			}

			str = number(str, end, num, spec);
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		} /* default: */
		} /* switch(spec.type) */
	} /* while(*fmt) */
2843

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out:
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	if (size > 0) {
		if (str < end)
			*str = '\0';
		else
			end[-1] = '\0';
	}
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#undef get_arg

	/* the trailing null byte doesn't count towards the total */
	return str - buf;
}
EXPORT_SYMBOL_GPL(bstr_printf);

/**
 * bprintf - Parse a format string and place args' binary value in a buffer
 * @bin_buf: The buffer to place args' binary value
 * @size: The size of the buffer(by words(32bits), not characters)
 * @fmt: The format string to use
 * @...: Arguments for the format string
 *
 * The function returns the number of words(u32) written
 * into @bin_buf.
 */
int bprintf(u32 *bin_buf, size_t size, const char *fmt, ...)
{
	va_list args;
	int ret;

	va_start(args, fmt);
	ret = vbin_printf(bin_buf, size, fmt, args);
	va_end(args);
2877

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	return ret;
}
EXPORT_SYMBOL_GPL(bprintf);

#endif /* CONFIG_BINARY_PRINTF */

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/**
 * vsscanf - Unformat a buffer into a list of arguments
 * @buf:	input buffer
 * @fmt:	format of buffer
 * @args:	arguments
 */
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int vsscanf(const char *buf, const char *fmt, va_list args)
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{
	const char *str = buf;
	char *next;
	char digit;
	int num = 0;
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	u8 qualifier;
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	unsigned int base;
	union {
		long long s;
		unsigned long long u;
	} val;
2902
	s16 field_width;
2903
	bool is_sign;
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	while (*fmt) {
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		/* skip any white space in format */
		/* white space in format matchs any amount of
		 * white space, including none, in the input.
		 */
		if (isspace(*fmt)) {
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			fmt = skip_spaces(++fmt);
			str = skip_spaces(str);
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		}

		/* anything that is not a conversion must match exactly */
		if (*fmt != '%' && *fmt) {
			if (*fmt++ != *str++)
				break;
			continue;
		}

		if (!*fmt)
			break;
		++fmt;
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		/* skip this conversion.
		 * advance both strings to next white space
		 */
		if (*fmt == '*') {
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			if (!*str)
				break;
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			while (!isspace(*fmt) && *fmt != '%' && *fmt) {
				/* '%*[' not yet supported, invalid format */
				if (*fmt == '[')
					return num;
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				fmt++;
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			}
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			while (!isspace(*str) && *str)
				str++;
			continue;
		}

		/* get field width */
		field_width = -1;
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		if (isdigit(*fmt)) {
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			field_width = skip_atoi(&fmt);
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			if (field_width <= 0)
				break;
		}
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		/* get conversion qualifier */
		qualifier = -1;
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		if (*fmt == 'h' || _tolower(*fmt) == 'l' ||
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		    *fmt == 'z') {
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			qualifier = *fmt++;
			if (unlikely(qualifier == *fmt)) {
				if (qualifier == 'h') {
					qualifier = 'H';
					fmt++;
				} else if (qualifier == 'l') {
					qualifier = 'L';
					fmt++;
				}
			}
		}

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		if (!*fmt)
			break;

		if (*fmt == 'n') {
			/* return number of characters read so far */
			*va_arg(args, int *) = str - buf;
			++fmt;
			continue;
		}

		if (!*str)
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			break;

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		base = 10;
2981
		is_sign = false;
2982

2983
		switch (*fmt++) {
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		case 'c':
		{
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			char *s = (char *)va_arg(args, char*);
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			if (field_width == -1)
				field_width = 1;
			do {
				*s++ = *str++;
			} while (--field_width > 0 && *str);
			num++;
		}
		continue;
		case 's':
		{
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			char *s = (char *)va_arg(args, char *);
			if (field_width == -1)
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				field_width = SHRT_MAX;
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			/* first, skip leading white space in buffer */
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			str = skip_spaces(str);
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			/* now copy until next white space */
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			while (*str && !isspace(*str) && field_width--)
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				*s++ = *str++;
			*s = '\0';
			num++;
		}
		continue;
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		/*
		 * Warning: This implementation of the '[' conversion specifier
		 * deviates from its glibc counterpart in the following ways:
		 * (1) It does NOT support ranges i.e. '-' is NOT a special
		 *     character
		 * (2) It cannot match the closing bracket ']' itself
		 * (3) A field width is required
		 * (4) '%*[' (discard matching input) is currently not supported
		 *
		 * Example usage:
		 * ret = sscanf("00:0a:95","%2[^:]:%2[^:]:%2[^:]",
		 *		buf1, buf2, buf3);
		 * if (ret < 3)
		 *    // etc..
		 */
		case '[':
		{
			char *s = (char *)va_arg(args, char *);
			DECLARE_BITMAP(set, 256) = {0};
			unsigned int len = 0;
			bool negate = (*fmt == '^');

			/* field width is required */
			if (field_width == -1)
				return num;

			if (negate)
				++fmt;

			for ( ; *fmt && *fmt != ']'; ++fmt, ++len)
				set_bit((u8)*fmt, set);

			/* no ']' or no character set found */
			if (!*fmt || !len)
				return num;
			++fmt;

			if (negate) {
				bitmap_complement(set, set, 256);
				/* exclude null '\0' byte */
				clear_bit(0, set);
			}

			/* match must be non-empty */
			if (!test_bit((u8)*str, set))
				return num;

			while (test_bit((u8)*str, set) && field_width--)
				*s++ = *str++;
			*s = '\0';
			++num;
		}
		continue;
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		case 'o':
			base = 8;
			break;
		case 'x':
		case 'X':
			base = 16;
			break;
		case 'i':
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			base = 0;
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		case 'd':
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			is_sign = true;
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		case 'u':
			break;
		case '%':
			/* looking for '%' in str */
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			if (*str++ != '%')
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				return num;
			continue;
		default:
			/* invalid format; stop here */
			return num;
		}

		/* have some sort of integer conversion.
		 * first, skip white space in buffer.
		 */
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		str = skip_spaces(str);
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		digit = *str;
		if (is_sign && digit == '-')
			digit = *(str + 1);

		if (!digit
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		    || (base == 16 && !isxdigit(digit))
		    || (base == 10 && !isdigit(digit))
		    || (base == 8 && (!isdigit(digit) || digit > '7'))
		    || (base == 0 && !isdigit(digit)))
			break;
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		if (is_sign)
			val.s = qualifier != 'L' ?
				simple_strtol(str, &next, base) :
				simple_strtoll(str, &next, base);
		else
			val.u = qualifier != 'L' ?
				simple_strtoul(str, &next, base) :
				simple_strtoull(str, &next, base);

		if (field_width > 0 && next - str > field_width) {
			if (base == 0)
				_parse_integer_fixup_radix(str, &base);
			while (next - str > field_width) {
				if (is_sign)
					val.s = div_s64(val.s, base);
				else
					val.u = div_u64(val.u, base);
				--next;
			}
		}

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		switch (qualifier) {
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		case 'H':	/* that's 'hh' in format */
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			if (is_sign)
				*va_arg(args, signed char *) = val.s;
			else
				*va_arg(args, unsigned char *) = val.u;
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			break;
		case 'h':
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			if (is_sign)
				*va_arg(args, short *) = val.s;
			else
				*va_arg(args, unsigned short *) = val.u;
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			break;
		case 'l':
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			if (is_sign)
				*va_arg(args, long *) = val.s;
			else
				*va_arg(args, unsigned long *) = val.u;
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			break;
		case 'L':
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			if (is_sign)
				*va_arg(args, long long *) = val.s;
			else
				*va_arg(args, unsigned long long *) = val.u;
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			break;
		case 'z':
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			*va_arg(args, size_t *) = val.u;
			break;
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		default:
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			if (is_sign)
				*va_arg(args, int *) = val.s;
			else
				*va_arg(args, unsigned int *) = val.u;
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			break;
		}
		num++;

		if (!next)
			break;
		str = next;
	}
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	return num;
}
EXPORT_SYMBOL(vsscanf);

/**
 * sscanf - Unformat a buffer into a list of arguments
 * @buf:	input buffer
 * @fmt:	formatting of buffer
 * @...:	resulting arguments
 */
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int sscanf(const char *buf, const char *fmt, ...)
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{
	va_list args;
	int i;

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	va_start(args, fmt);
	i = vsscanf(buf, fmt, args);
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	va_end(args);
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	return i;
}
EXPORT_SYMBOL(sscanf);