MAJOR=4
MINOR=44
DEVNAME=tty44
  *   ˆl–Ü4ý( ©³( 	Å€fàB¦-ÿÆƒO³_†I|¥�+ÂÄ Õ    /* SPDX-License-Identifier: GPL-2.0 */
#ifndef _LINUX_SCHED_NUMA_BALANCING_H
#define _LINUX_SCHED_NUMA_BALANCING_H

/*
 * This is the interface between the scheduler and the MM that
 * implements memory access pattern based NUMA-balancing:
 */

#include <linux/sched.h>

#define TNF_MIGRATED	0x01
#define TNF_NO_GROUP	0x02
#define TNF_SHARED	0x04
#define TNF_FAULT_LOCAL	0x08
#define TNF_MIGRATE_FAIL 0x10

enum numa_vmaskip_reason {
	NUMAB_SKIP_UNSUITABLE,
	NUMAB_SKIP_SHARED_RO,
	NUMAB_SKIP_INACCESSIBLE,
	NUMAB_SKIP_SCAN_DELAY,
	NUMAB_SKIP_PID_INACTIVE,
	NUMAB_SKIP_IGNORE_PID,
	NUMAB_SKIP_SEQ_COMPLETED,
};

#ifdef CONFIG_NUMA_BALANCING
extern void task_numa_fault(int last_node, int node, int pages, int flags);
extern pid_t task_numa_group_id(struct task_struct *p);
extern void set_numabalancing_state(bool enabled);
extern void task_numa_free(struct task_struct *p, bool final);
bool should_numa_migrate_memory(struct task_struct *p, struct folio *folio,
				int src_nid, int dst_cpu);
#else
static inline void task_numa_fault(int last_node, int node, int pages,
				   int flags)
{
}
static inline pid_t task_numa_group_id(struct task_struct *p)
{
	return 0;
}
static inline void set_numabalancing_state(bool enabled)
{
}
static inline void task_numa_free(struct task_struct *p, bool final)
{
}
static inline bool should_numa_migrate_memory(struct task_struct *p,
				struct folio *folio, int src_nid, int dst_cpu)
{
	return true;
}
#endif

#endif /* _LINUX_SCHED_NUMA_BALANCING_H */
     ˆ¿Ç„l¼ï¾ÂÄ <    /* SPDX-License-Identifier: GPL-2.0-only */
/*
 * Copyright (C) 2021 ARM Ltd.
 */

#ifndef _LINUX_ARM_FFA_H
#define _LINUX_ARM_FFA_H

#include <linux/bitfield.h>
#include <linux/device.h>
#include <linux/module.h>
#include <linux/types.h>
#include <linux/uuid.h>

#define FFA_SMC(calling_convention, func_num)				\
	ARM_SMCCC_CALL_VAL(ARM_SMCCC_FAST_CALL, (calling_convention),	\
			   ARM_SMCCC_OWNER_STANDARD, (func_num))

#define FFA_SMC_32(func_num)	FFA_SMC(ARM_SMCCC_SMC_32, (func_num))
#define FFA_SMC_64(func_num)	FFA_SMC(ARM_SMCCC_SMC_64, (func_num))

#define FFA_ERROR			FFA_SMC_32(0x60)
#define FFA_SUCCESS			FFA_SMC_32(0x61)
#define FFA_FN64_SUCCESS		FFA_SMC_64(0x61)
#define FFA_INTERRUPT			FFA_SMC_32(0x62)
#define FFA_VERSION			FFA_SMC_32(0x63)
#define FFA_FEATURES			FFA_SMC_32(0x64)
#define FFA_RX_RELEASE			FFA_SMC_32(0x65)
#define FFA_RXTX_MAP			FFA_SMC_32(0x66)
#define FFA_FN64_RXTX_MAP		FFA_SMC_64(0x66)
#define FFA_RXTX_UNMAP			FFA_SMC_32(0x67)
#define FFA_PARTITION_INFO_GET		FFA_SMC_32(0x68)
#define FFA_ID_GET			FFA_SMC_32(0x69)
#define FFA_MSG_POLL			FFA_SMC_32(0x6A)
#define FFA_MSG_WAIT			FFA_SMC_32(0x6B)
#define FFA_YIELD			FFA_SMC_32(0x6C)
#define FFA_RUN				FFA_SMC_32(0x6D)
#define FFA_MSG_SEND			FFA_SMC_32(0x6E)
#define FFA_MSG_SEND_DIRECT_REQ		FFA_SMC_32(0x6F)
#define FFA_FN64_MSG_SEND_DIRECT_REQ	FFA_SMC_64(0x6F)
#define FFA_MSG_SEND_DIRECT_RESP	FFA_SMC_32(0x70)
#define FFA_FN64_MSG_SEND_DIRECT_RESP	FFA_SMC_64(0x70)
#define FFA_MEM_DONATE			FFA_SMC_32(0x71)
#define FFA_FN64_MEM_DONATE		FFA_SMC_64(0x71)
#define FFA_MEM_LEND			FFA_SMC_32(0x72)
#define FFA_FN64_MEM_LEND		FFA_SMC_64(0x72)
#define FFA_MEM_SHARE			FFA_SMC_32(0x73)
#define FFA_FN64_MEM_SHARE		FFA_SMC_64(0x73)
#define FFA_MEM_RETRIEVE_REQ		FFA_SMC_32(0x74)
#define FFA_FN64_MEM_RETRIEVE_REQ	FFA_SMC_64(0x74)
#define FFA_MEM_RETRIEVE_RESP		FFA_SMC_32(0x75)
#define FFA_MEM_RELINQUISH		FFA_SMC_32(0x76)
#define FFA_MEM_RECLAIM			FFA_SMC_32(0x77)
#define FFA_MEM_OP_PAUSE		FFA_SMC_32(0x78)
#define FFA_MEM_OP_RESUME		FFA_SMC_32(0x79)
#define FFA_MEM_FRAG_RX			FFA_SMC_32(0x7A)
#define FFA_MEM_FRAG_TX			FFA_SMC_32(0x7B)
#define FFA_NORMAL_WORLD_RESUME		FFA_SMC_32(0x7C)
#define FFA_NOTIFICATION_BITMAP_CREATE	FFA_SMC_32(0x7D)
#define FFA_NOTIFICATION_BITMAP_DESTROY FFA_SMC_32(0x7E)
#define FFA_NOTIFICATION_BIND		FFA_SMC_32(0x7F)
#define FFA_NOTIFICATION_UNBIND		FFA_SMC_32(0x80)
#define FFA_NOTIFICATION_SET		FFA_SMC_32(0x81)
#define FFA_NOTIFICATION_GET		FFA_SMC_32(0x82)
#defi