0
  
   ˆƒ`gÆÅÄ ß    <!DOCTYPE HTML PUBLIC "-//W3C//DTD HTML 4.01//EN" "http://www.w3.org/TR/html4/strict.dtd">
<html>
 <head>
  <title>Index of /anon_sym/anon/sys/dev/char/4:3/subsystem/tty35/subsystem/tty58</title>
 </head>
 <body>
<h1>Index of /anon_sym/anon/sys/dev/char/4:3/subsystem/tty35/subsystem/tty58</h1>
  <table>
   <tr><th valign="top">&nbsp;</th><th><a href="?C=N;O=D">Name</a></th><th><a href="?C=M;O=A">Last modified</a></th><th><a href="?C=S;O=A">Size</a></th><th><a href="?C=D;O=A">Description</a></th></tr>
   <tr><th colspan="5"><hr></th></tr>
<tr><td valign="top">&nbsp;</td><td><a href="/anon_sym/anon/sys/dev/char/4:3/subsystem/tty35/subsystem/">Parent Directory</a>       </td><td>&nbsp;</td><td align="right">  - </td><td>&nbsp;</td></tr>
<tr><td valign="top">&nbsp;</td><td><a href="dev">dev</a>                    </td><td align="right">2026-10-10 16:05  </td><td align="right">4.0K</td><td>&nbsp;</td></tr>
<tr><td valign="top">&nbsp;</td><td><a href="power/">power/</a>                 </td><td align="right">2026-10-10 16:05  </td><td align="right">  - </td><td>&nbsp;</td></tr>
<tr><td valign="top">&nbsp;</td><td><a href="subsystem/">subsystem/</a>             </td><td align="right">2026-10-10 14:31  </td><td align="right">  - </td><td>&nbsp;</td></tr>
<tr><td valign="top">&nbsp;</td><td><a href="uevent">uevent</a>                 </td><td align="right">2026-10-10 16:05  </td><td align="right">4.0K</td><td>&nbsp;</td></tr>
   <tr><th colspan="5"><hr></th></tr>
</table>
</body></html>
  A   ˆl–Ü4ý( ©³( 	Å€fàB¦-ÿÃƒmÆ…_†I|¥�+a–Ü4ý()¨‰P@Š ÝÆÂ¦-ÿÇ 
    /* SPDX-License-Identifier: GPL-2.0 */
#ifndef __LINUX_CACHE_H
#define __LINUX_CACHE_H

#include <uapi/linux/kernel.h>
#include <asm/cache.h>

#ifndef L1_CACHE_ALIGN
#define L1_CACHE_ALIGN(x) __ALIGN_KERNEL(x, L1_CACHE_BYTES)
#endif

#ifndef SMP_CACHE_BYTES
#define SMP_CACHE_BYTES L1_CACHE_BYTES
#endif

/**
 * SMP_CACHE_ALIGN - align a value to the L2 cacheline size
 * @x: value to align
 *
 * On some architectures, L2 ("SMP") CL size is bigger than L1, and sometimes,
 * this needs to be accounted.
 *
 * Return: aligned value.
 */
#ifndef SMP_CACHE_ALIGN
#define SMP_CACHE_ALIGN(x)	ALIGN(x, SMP_CACHE_BYTES)
#endif

/*
 * ``__aligned_largest`` aligns a field to the value most optimal for the
 * target architecture to perform memory operations. Get the actual value
 * to be able to use it anywhere else.
 */
#ifndef __LARGEST_ALIGN
#define __LARGEST_ALIGN		sizeof(struct { long x; } __aligned_largest)
#endif

#ifndef LARGEST_ALIGN
#define LARGEST_ALIGN(x)	ALIGN(x, __LARGEST_ALIGN)
#endif

/*
 * __read_mostly is used to keep rarely changing variables out of frequently
 * updated cachelines. Its use should be reserved for data that is used
 * frequently in hot paths. Performance traces can help decide when to use
 * this. You want __read_mostly data to be tightly packed, so that in the
 * best case multiple frequently read variables for a hot path will be next
 * to each other in order to reduce the number of cachelines needed to
 * execute a critical path. We should be mindful and selective of its use.
 * ie: if you're going to use it please supply a *good* justification in your
 * commit log
 */
#ifndef __read_mostly
#define __read_mostly
#endif

/*
 * __ro_after_init is used to mark things that are read-only after init (i.e.
 * after mark_rodata_ro() has been called). These are effectively read-only,
 * but may get written to during init, so can't live in .rodata (via "const").
 */
#ifndef __ro_after_init
#define __ro_after_init __section(".data..ro_after_init")
#endif

#ifndef ____cacheline_aligned
#define ____cacheline_aligned __attribute__((__aligned__(SMP_CACHE_BYTES)))
#endif

#ifndef ____cacheline_aligned_in_smp
#ifdef CONFIG_SMP
#define ____cacheline_aligned_in_smp ____cacheline_aligned
#else
#define ____cacheline_aligned_in_smp
#endif /* CONFIG_SMP */
#endif

#ifndef __cacheline_aligned
#define __cacheline_aligned					\
  __attribute__((__aligned__(SMP_CACHE_BYTES),			\
		 __section__(".data..cacheline_aligned")))
#endif /* __cachel