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     ˆÄÃƒ`ÂÁÀ 	Ä    /* SPDX-License-Identifier: GPL-2.0 */
/*
 * Common values for the Poly1305 algorithm
 */

#ifndef _CRYPTO_POLY1305_H
#define _CRYPTO_POLY1305_H

#include <linux/types.h>
#include <linux/crypto.h>

#define POLY1305_BLOCK_SIZE	16
#define POLY1305_KEY_SIZE	32
#define POLY1305_DIGEST_SIZE	16

/* The poly1305_key and poly1305_state types are mostly opaque and
 * implementation-defined. Limbs might be in base 2^64 or base 2^26, or
 * different yet. The union type provided keeps these 64-bit aligned for the
 * case in which this is implemented using 64x64 multiplies.
 */

struct poly1305_key {
	union {
		u32 r[5];
		u64 r64[3];
	};
};

struct poly1305_core_key {
	struct poly1305_key key;
	struct poly1305_key precomputed_s;
};

struct poly1305_state {
	union {
		u32 h[5];
		u64 h64[3];
	};
};

struct poly1305_desc_ctx {
	/* partial buffer */
	u8 buf[POLY1305_BLOCK_SIZE];
	/* bytes used in partial buffer */
	unsigned int buflen;
	/* how many keys have been set in r[] */
	unsigned short rset;
	/* whether s[] has been set */
	bool sset;
	/* finalize key */
	u32 s[4];
	/* accumulator */
	struct poly1305_state h;
	/* key */
	union {
		struct poly1305_key opaque_r[CONFIG_CRYPTO_LIB_POLY1305_RSIZE];
		struct poly1305_core_key core_r;
	};
};

void poly1305_init_arch(struct poly1305_desc_ctx *desc,
			const u8 key[POLY1305_KEY_SIZE]);
void poly1305_init_generic(struct poly1305_desc_ctx *desc,
			   const u8 key[POLY1305_KEY_SIZE]);

static inline void poly1305_init(struct poly1305_desc_ctx *desc, const u8 *key)
{
	if (IS_ENABLED(CONFIG_CRYPTO_ARCH_HAVE_LIB_POLY1305))
		poly1305_init_arch(desc, key);
	else
		poly1305_init_generic(desc, key);
}

void poly1305_update_arch(struct poly1305_desc_ctx *desc, const u8 *src,
			  unsigned int nbytes);
void poly1305_update_generic(struct poly1305_desc_ctx *desc, const u8 *src,
			     unsigned int nbytes);

static inline void poly1305_update(struct poly1305_desc_ctx *desc,
				   const u8 *src, unsigned int nbytes)
{
	if (IS_ENABLED(CONFIG_CRYPTO_ARCH_HAVE_LIB_POLY1305))
		poly1305_update_arch(desc, src, nbytes);
	else
		poly1305_update_generic(desc, src, nbytes);
}

void poly1305_final_arch(struct poly1305_desc_ctx *desc, u8 *digest);
void poly1305_final_generic(struct poly1305_desc_ctx *desc, u8 *digest);

static inline void poly1305_final(struct poly1305_desc_ctx *desc, u8 *digest)
{
	if (IS_ENABLED(CONFIG_CRYPTO_ARCH_HAVE_LIB_POLY1305))
		poly1305_final_arch(desc, digest);
	else
		poly1305_final_generic(desc, digest);
}

#endif
     	ˆÄÃ„àh_ÂÁÀ ?÷     	/* SPDX-License-Identifier: GPL-2.0-or-later */
/*
 * Universal Interface for Intel High Definition Audio Codec
 *
 * Copyright (c) 2004 Takashi Iwai <tiwai@suse.de>
 */

#ifndef __SOUND_HDA_CODEC_H
#define __SOUND_HDA_CODEC_H

#include <linux/refcount.h>
#include <linux/mod_devicetable.h>
#include <sound/info.h>
#include <sound/control.h>
#include <sound/pcm.h>
#include <sound/hwdep.h>
#include <sound/hdaudio.h>
#include <sound/hda_verbs.h>
#include <sound/hda_regmap.h>

/*
 * Structures
 */

struct hda_bus;
struct hda_beep;
struct hda_codec;
struct hda_pcm;
struct hda_pcm_stream;
struct hda_codec_ops;

/*
 * codec bus
 *
 * each controller needs to creata a hda_bus to assign the accessor.
 * A hda_bus contains several codecs in the list codec_list.
 */
struct hda_bus {
	struct hdac_bus core;

	struct snd_card *card;

	struct pci_dev *pci;
	const char *modelname;

	struct mutex prepare_mutex;

	/* assigned PCMs */
	DECLARE_BITMAP(pcm_dev_bits, SNDRV_PCM_DEVICES);

	/* misc op flags */
	unsigned int allow_bus_reset:1;	/* allow bus reset at fatal error */
	/* status for codec/controller */
	unsigned int shutdown :1;	/* being unloaded */
	unsigned int response_reset:1;	/* controller was reset */
	unsigned int in_reset:1;	/* during reset operation */
	unsigned int no_response_fallback:1; /* don't fallback at RIRB error */
	unsigned int bus_probing :1;	/* during probing process */
	unsigned int keep_power:1;	/* keep power up for notification */
	unsigned int jackpoll_in_suspend:1; /* keep jack polling during
			