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/* SPDX-License-Identifier: GPL-2.0-or-later */
/*
 * Copyright (C) 2001 PPC64 Team, IBM Corp
 *
 * This struct defines the way the registers are stored on the
 * kernel stack during a system call or other kernel entry.
 *
 * this should only contain volatile regs
 * since we can keep non-volatile in the thread_struct
 * should set this up when only volatiles are saved
 * by intr code.
 *
 * Since this is going on the stack, *CARE MUST BE TAKEN* to insure
 * that the overall structure is a multiple of 16 bytes in length.
 *
 * Note that the offsets of the fields in this struct correspond with
 * the PT_* values below.  This simplifies arch/powerpc/kernel/ptrace.c.
 */
#ifndef _ASM_POWERPC_PTRACE_H
#define _ASM_POWERPC_PTRACE_H

#include <linux/err.h>
#include <uapi/asm/ptrace.h>
#include <asm/asm-const.h>
#include <asm/reg.h>

#ifndef __ASSEMBLY__
struct pt_regs
{
	union {
		struct user_pt_regs user_regs;
		struct {
			unsigned long gpr[32];
			unsigned long nip;
			unsigned long msr;
			unsigned long orig_gpr3;
			unsigned long ctr;
			unsigned long link;
			unsigned long xer;
			unsigned long ccr;
#ifdef CONFIG_PPC64
			unsigned long softe;
#else
			unsigned long mq;
#endif
			unsigned long trap;
			union {
				unsigned long dar;
				unsigned long dear;
			};
			union {
				unsigned long dsisr;
				unsigned long esr;
			};
			unsigned long result;
		};
	};
#if defined(CONFIG_PPC64) || defined(CONFIG_PPC_KUAP)
	union {
		struct {
#ifdef CONFIG_PPC64
			unsigned long ppr;
			unsigned long exit_result;
#endif
			union {
#ifdef CONFIG_PPC_KUAP
				unsigned long kuap;
#endif
#ifdef CONFIG_PPC_PKEY
				unsigned long amr;
#endif
			};
#ifdef CONFIG_PPC_PKEY
			unsigned long iamr;
#endif
		};
		unsigned long __pad[4];	/* Maintain 16 byte interrupt stack alignment */
	};
#endif
#if defined(CONFIG_PPC32) && defined(CONFIG_BOOKE)
	struct { /* Must be a multiple of 16 bytes */
		unsigned long mas0;
		unsigned long mas1;
		unsigned long mas2;
		unsigned long mas3;
		unsigned long mas6;
		unsigned long mas7;
		unsigned long srr0;
		unsigned long srr1;
		unsigned long csrr0;
		unsigned long csrr1;
		unsigned long dsrr0;
		unsigned long dsrr1;
	};
#endif
};
#endif


// Always displays as "REGS" in memory dumps
#ifdef CONFIG_CPU_BIG_ENDIAN
#define STACK_FRAME_REGS_MARKER	ASM_CONST(0x52454753)
#else
#define STACK_FRAME_REGS_MARKER	ASM_CONST(0x53474552)
#endif

#ifdef __powerpc64__

/*
 * Size of redzone that userspace is allowed to use below the stack
 * pointer.  This is 288 in the 64-bit big-endian ELF ABI, and 512 in
 * the new ELFv2 little-endian ABI, so we allow the larger amount.
 *
 * For kernel code we allow a 288-byte redzone, in order to conserve
 * kernel stack space; gcc currently only uses 288 bytes, and will
 * hopefully allow explicit control of the redzone size in future.
 */
#define USER_REDZONE_SIZE	512
#define KERNEL_REDZONE_SIZE	288

#define STACK_FRAME_LR_SAVE	2	/* Location of LR in stack frame */

#ifdef CONFIG_PPC64_ELF_ABI_V2
#define STACK_FRAME_MIN_SIZE	32
#define STACK_USER_INT_FRAME_SIZE	(sizeof(struct pt_regs) + STACK_FRAME_MIN_SIZE + 16)
#define STACK_INT_FRAME_REGS	(STACK_FRAME_MIN_SIZE + 16)
#define STACK_INT_FRAME_MARKER	STACK_FRAME_MIN_SIZE
#define STACK_SWITCH_FRAME_SIZE (sizeof(struct pt_regs) + STACK_FRAME_MIN_SIZE + 16)
#define STACK_SWITCH_FRAME_REGS	(STACK_FRAME_MIN_SIZE + 16)
#else
/*
 * The ELFv1 ABI specifies 48 bytes plus a minimum 64 byte parameter save
 * area. This parameter area is not used by calls to C from interrupt entry,
 * so the second from last one of those is used for the frame marker.
 */
#define STACK_FRAME_MIN_SIZE	112
#define STACK_USER_INT_FRAME_SIZE	(sizeof(struct pt_regs) + STACK_FRAME_MIN_SIZE)
#define STACK_INT_FRAME_REGS	STACK_FRAME_MIN_SIZE
#define STACK_INT_FRAME_MARKER	(STACK_FRAME_MIN_SIZE - 16)
#define STACK_SWITCH_FRAME_SIZE	(sizeof(struct pt_regs) + STACK_FRAME_MIN_SIZE)
#define STACK_SWITCH_FRAME_REGS	STACK_FRAME_MIN_SIZE
#endif

/* Size of dummy stack frame allocated when calling signal handler. */
#define __SIGNAL_FRAMESIZE	128
#define __SIGNAL_FRAMESIZE32	64

#else /* __powerpc64__ */

#define USER_REDZONE_SIZE	0
#define KERNEL_REDZONE_SIZE	0
#define STACK_FRAME_MIN_SIZE	16
#define STACK_FRAME_LR_SAVE	1	/* Location of LR in stack frame */
#define STACK_USER_INT_FRAME_SIZE	(sizeof(struct pt_regs) + STACK_FRAME_MIN_SIZE)
#define STACK_INT_FRAME_REGS	STACK_FRAME_MIN_SIZE
#define STACK_INT_FRAME_MARKER	(STACK_FRAME_MIN_SIZE - 8)
#define STACK_SWITCH_FRAME_SIZE	(sizeof(struct pt_regs) + STACK_FRAME_MIN_SIZE)
#define STACK_SWITCH_FRAME_REGS	STACK_FRAME_MIN_SIZE

/* Size of stack frame allocated when calling signal handler. */
#define __SIGNAL_FRAMESIZE	64

#endif /* __powerpc64__ */

#define STACK_INT_FRAME_SIZE	(KERNEL_REDZONE_SIZE + STACK_USER_INT_FRAME_SIZE)
#define STACK_INT_FRAME_MARKER_LONGS	(STACK_INT_FRAME_MARKER/sizeof(long))

#ifndef __ASSEMBLY__
#include <asm/paca.h>

#ifdef CONFIG_SMP
extern unsigned long profile_pc(struct pt_regs *regs);
#else
#define profile_pc(regs) instruction_pointer(regs)
#endif

long do_syscall_trace_enter(struct pt_regs *regs);
void do_syscall_trace_leave(struct pt_regs *regs);

static inline void set_return_regs_changed(void)
{
#ifdef CONFIG_PPC_BOOK3S_64
	WRITE_ONCE(local_paca->hsrr_valid, 0);
	WRITE_ONCE(local_paca->srr_valid, 0);
#endif
}

static inline void regs_set_return_ip(struct pt_regs *regs, unsigned long ip)
{
	regs->nip = ip;
	set_return_regs_changed();
}

static inline void regs_set_return_msr(struct pt_regs *regs, unsigned long msr)
{
	regs->msr = msr;
	set_return_regs_changed();
}

static inline void regs_add_return_ip(struct pt_regs *regs, long offset)
{
	regs_set_return_ip(regs, regs->nip + offset);
}

static inline unsigned long instruction_pointer(struct pt_regs *regs)
{
	return regs->nip;
}

static inline void instruction_pointer_set(struct pt_regs *regs,
		unsigned long val)
{
	regs_set_return_ip(regs, val);
}

static inline unsigned long user_stack_pointer(struct pt_regs *regs)
{
	return regs->gpr[1];
}

static inline unsigned long frame_pointer(struct pt_regs *regs)
{
	return 0;
}

#define user_mode(regs) (((regs)->msr & MSR_PR) != 0)

#define force_successful_syscall_return()   \
	do { \
		set_thread_flag(TIF_NOERROR); \
	} while(0)

#define current_pt_regs() \
	((struct pt_regs *)((unsigned long)task_stack_page(current) + THREAD_SIZE) - 1)

/*
 * The 4 low bits (0xf) are available as flags to overload the trap word,
 * because interrupt vectors have minimum alignment of 0x10. TRAP_FLAGS_MASK
 * must cover the bits used as flags, including bit 0 which is used as the
 * "norestart" bit.
 */
#ifdef __powerpc64__
#define TRAP_FLAGS_MASK		0x1
#else
/*
 * On 4xx we use bit 1 in the trap word to indicate whether the exception
 * is a critical exception (1 means it is).
 */
#define TRAP_FLAGS_MASK		0xf
#define IS_CRITICAL_EXC(regs)	(((regs)->trap & 2) != 0)
#define IS_MCHECK_EXC(regs)	(((regs)->trap & 4) != 0)
#define IS_DEBUG_EXC(regs)	(((regs)->trap & 8) != 0)
#endif /* __powerpc64__ */
#define TRAP(regs)		((regs)->trap & ~TRAP_FLAGS_MASK)

static __always_inline void set_trap(struct pt_regs *regs, unsigned long val)
{
	regs->trap = (regs->trap & TRAP_FLAGS_MASK) | (val & ~TRAP_FLAGS_MASK);
}

static inline bool trap_is_scv(struct pt_regs *regs)
{
	return (IS_ENABLED(CONFIG_PPC_BOOK3S_64) && TRAP(regs) == 0x3000);
}

static inline bool trap_is_unsupported_scv(struct pt_regs *regs)
{
	return IS_ENABLED(CONFIG_PPC_BOOK3S_64) && TRAP(regs) == 0x7ff0;
}

static inline bool trap_is_syscall(struct pt_regs *regs)
{
	return (trap_is_scv(regs) || TRAP(regs) == 0xc00);
}

static inline bool trap_norestart(struct pt_regs *regs)
{
	return regs->trap & 0x1;
}

static __always_inline void set_trap_norestart(struct pt_regs *regs)
{
	regs->trap |= 0x1;
}

#define kernel_stack_pointer(regs) ((regs)->gpr[1])
static inline int is_syscall_success(struct pt_regs *regs)
{
	if (trap_is_scv(regs))
		return !IS_ERR_VALUE((unsigned long)regs->gpr[3]);
	else
		return !(regs->ccr & 0x10000000);
}

static inline long regs_return_value(struct pt_regs *regs)
{
	if (trap_is_scv(regs))
		return regs->gpr[3];

	if (is_syscall_success(regs))
		return regs->gpr[3];
	else
		return -regs->gpr[3];
}

static inline void regs_set_return_value(struct pt_regs *regs, unsigned long rc)
{
	regs->gpr[3] = rc;
}

static inline bool cpu_has_msr_ri(void)
{
	return !IS_ENABLED(CONFIG_BOOKE);
}

static inline bool regs_is_unrecoverable(struct pt_regs *regs)
{
	return unlikely(cpu_has_msr_ri() && !(regs->msr & MSR_RI));
}

static inline void regs_set_recoverable(struct pt_regs *regs)
{
	if (cpu_has_msr_ri())
		regs_set_return_msr(regs, regs->msr | MSR_RI);
}

static inline void regs_set_unrecoverable(struct pt_regs *regs)
{
	if (cpu_has_msr_ri())
		regs_set_return_msr(regs, regs->msr & ~MSR_RI);
}

#define arch_has_single_step()	(1)
#define arch_has_block_step()	(true)
#define ARCH_HAS_USER_SINGLE_STEP_REPORT

/*
 * kprobe-based event tracer support
 */

#include <linux/stddef.h>
#include <linux/thread_info.h>
extern int regs_query_register_offset(const char *name);
extern const char *regs_query_register_name(unsigned int offset);
#define MAX_REG_OFFSET (offsetof(struct pt_regs, dsisr))

/**
 * regs_get_register() - get register value from its offset
 * @regs:	   pt_regs from which register value is gotten
 * @offset:    offset number of the register.
 *
 * regs_get_register returns the value of a register whose offset from @regs.
 * The @offset is the offset of the register in struct pt_regs.
 * If @offset is bigger than MAX_REG_OFFSET, this returns 0.
 */
static inline unsigned long regs_get_register(struct pt_regs *regs,
						unsigned int offset)
{
	if (unlikely(offset > MAX_REG_OFFSET))
		return 0;
	return *(unsigned long *)((unsigned long)regs + offset);
}

/**
 * regs_within_kernel_stack() - check the address in the stack
 * @regs:      pt_regs which contains kernel stack pointer.
 * @addr:      address which is checked.
 *
 * regs_within_kernel_stack() checks @addr is within the kernel stack page(s).
 * If @addr is within the kernel stack, it returns true. If not, returns false.
 */

static inline bool regs_within_kernel_stack(struct pt_regs *regs,
						unsigned long addr)
{
	return ((addr & ~(THREAD_SIZE - 1))  ==
		(kernel_stack_pointer(regs) & ~(THREAD_SIZE - 1)));
}

/**
 * regs_get_kernel_stack_nth() - get Nth entry of the stack
 * @regs:	pt_regs which contains kernel stack pointer.
 * @n:		stack entry number.
 *
 * regs_get_kernel_stack_nth() returns @n th entry of the kernel stack which
 * is specified by @regs. If the @n th entry is NOT in the kernel stack,
 * this returns 0.
 */
static inline unsigned long regs_get_kernel_stack_nth(struct pt_regs *regs,
						      unsigned int n)
{
	unsigned long *addr = (unsigned long *)kernel_stack_pointer(regs);
	addr += n;
	if (regs_within_kernel_stack(regs, (unsigned long)addr))
		return *addr;
	else
		return 0;
}

/**
 * regs_get_kernel_argument() - get Nth function argument in kernel
 * @regs:	pt_regs of that context
 * @n:		function argument number (start from 0)
 *
 * We support up to 8 arguments and assume they are sent in through the GPRs.
 * This will fail for fp/vector arguments, but those aren't usually found in
 * kernel code. This is expected to be called from kprobes or ftrace with regs.
 */
static inline unsigned long regs_get_kernel_argument(struct pt_regs *regs, unsigned int n)
{
#define NR_REG_ARGUMENTS 8
	if (n < NR_REG_ARGUMENTS)
		return regs_get_register(regs, offsetof(struct pt_regs, gpr[3 + n]));
	return 0;
}

#endif /* __ASSEMBLY__ */

#ifndef __powerpc64__
/* We need PT_SOFTE defined at all time to avoid #ifdefs */
#define PT_SOFTE PT_MQ
#else /* __powerpc64__ */
#define PT_FPSCR32 (PT_FPR0 + 2*32 + 1)	/* each FP reg occupies 2 32-bit userspace slots */
#define PT_VR0_32 164	/* each Vector reg occupies 4 slots in 32-bit */
#define PT_VSCR_32 (PT_VR0 + 32*4 + 3)
#define PT_VRSAVE_32 (PT_VR0 + 33*4)
#define PT_VSR0_32 300 	/* each VSR reg occupies 4 slots in 32-bit */
#endif /* __powerpc64__ */
#endif /* _ASM_POWERPC_PTRACE_H */

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book3s Folder 0755
nohash Folder 0755
vdso Folder 0755
8xx_immap.h File 13.81 KB 0644
Kbuild File 262 B 0644
accounting.h File 908 B 0644
archrandom.h File 417 B 0644
asm-compat.h File 1.94 KB 0644
asm-const.h File 443 B 0644
asm-offsets.h File 35 B 0644
asm-prototypes.h File 2.17 KB 0644
asm.h File 154 B 0644
async_tx.h File 908 B 0644
atomic.h File 11.55 KB 0644
backlight.h File 1.02 KB 0644
barrier.h File 3.95 KB 0644
bitops.h File 9.13 KB 0644
bootx.h File 1.12 KB 0644
bpf_perf_event.h File 233 B 0644
btext.h File 1006 B 0644
bug.h File 3.23 KB 0644
cache.h File 2.9 KB 0644
cacheflush.h File 3.91 KB 0644
cell-pmu.h File 3.41 KB 0644
cell-regs.h File 9.57 KB 0644
checksum.h File 5.73 KB 0644
clocksource.h File 185 B 0644
cmpxchg.h File 16.28 KB 0644
code-patching-asm.h File 397 B 0644
compat.h File 2.5 KB 0644
context_tracking.h File 250 B 0644
copro.h File 593 B 0644
cpm.h File 25 B 0644
cpm1.h File 21.06 KB 0644
cpm2.h File 48.4 KB 0644
cpu_has_feature.h File 1.31 KB 0644
cpu_setup.h File 2.48 KB 0644
cpufeature.h File 1.04 KB 0644
cpuidle.h File 3.33 KB 0644
cputable.h File 23.17 KB 0644
cputhreads.h File 2.83 KB 0644
cputime.h File 2.22 KB 0644
crashdump-ppc64.h File 624 B 0644
current.h File 680 B 0644
dbdma.h File 3.72 KB 0644
dbell.h File 3.93 KB 0644
dcr-generic.h File 930 B 0644
dcr-mmio.h File 1 KB 0644
dcr-native.h File 3.77 KB 0644
dcr-regs.h File 5.71 KB 0644
dcr.h File 2.06 KB 0644
debug.h File 1.9 KB 0644
delay.h File 3.22 KB 0644
device.h File 1.09 KB 0644
disassemble.h File 2.14 KB 0644
dma-direct.h File 391 B 0644
dma.h File 10.38 KB 0644
drmem.h File 2.94 KB 0644
dt_cpu_ftrs.h File 756 B 0644
dtl.h File 1.06 KB 0644
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eeh.h File 14.79 KB 0644
eeh_event.h File 826 B 0644
ehv_pic.h File 963 B 0644
elf.h File 6.48 KB 0644
elfnote.h File 527 B 0644
emergency-restart.h File 43 B 0644
emulated_ops.h File 2.02 KB 0644
epapr_hcalls.h File 16.43 KB 0644
exception-64e.h File 5.72 KB 0644
exception-64s.h File 4.25 KB 0644
exec.h File 246 B 0644
extable.h File 1.18 KB 0644
fadump-internal.h File 5.35 KB 0644
fadump.h File 1.38 KB 0644
feature-fixups.h File 9.7 KB 0644
firmware.h File 5.47 KB 0644
fixmap.h File 3.46 KB 0644
floppy.h File 5.01 KB 0644
fpu.h File 509 B 0644
fsl_gtm.h File 1.17 KB 0644
fsl_hcalls.h File 17.2 KB 0644
fsl_lbc.h File 10.24 KB 0644
fsl_pamu_stash.h File 411 B 0644
fsl_pm.h File 1.16 KB 0644
ftrace.h File 5.08 KB 0644
futex.h File 2.19 KB 0644
grackle.h File 331 B 0644
guest-state-buffer.h File 27.38 KB 0644
hardirq.h File 948 B 0644
head-64.h File 5.36 KB 0644
heathrow.h File 2.53 KB 0644
highmem.h File 2.03 KB 0644
hmi.h File 971 B 0644
hugetlb.h File 2.3 KB 0644
hvcall.h File 22.61 KB 0644
hvconsole.h File 800 B 0644
hvcserver.h File 1.44 KB 0644
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hw_breakpoint.h File 3.69 KB 0644
hw_irq.h File 12.64 KB 0644
hydra.h File 2.88 KB 0644
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ibmebus.h File 2.18 KB 0644
icswx.h File 4.97 KB 0644
idle.h File 2.37 KB 0644
imc-pmu.h File 3.91 KB 0644
immap_cpm2.h File 10.5 KB 0644
inst.h File 3.9 KB 0644
interrupt.h File 20.21 KB 0644
io-defs.h File 3.09 KB 0644
io-workarounds.h File 1.28 KB 0644
io.h File 30.97 KB 0644
io_event_irq.h File 1.71 KB 0644
iommu.h File 10.19 KB 0644
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irq.h File 1.33 KB 0644
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irqflags.h File 239 B 0644
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kexec_ranges.h File 743 B 0644
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kprobes.h File 2.64 KB 0644
kup.h File 4.21 KB 0644
kvm_asm.h File 4.89 KB 0644
kvm_book3s.h File 23.17 KB 0644
kvm_book3s_32.h File 816 B 0644
kvm_book3s_64.h File 18.78 KB 0644
kvm_book3s_asm.h File 3.56 KB 0644
kvm_book3s_uvmem.h File 2.67 KB 0644
kvm_booke.h File 2.41 KB 0644
kvm_booke_hv_asm.h File 1.91 KB 0644
kvm_fpu.h File 2.15 KB 0644
kvm_guest.h File 573 B 0644
kvm_host.h File 22.43 KB 0644
kvm_para.h File 752 B 0644
kvm_ppc.h File 37.63 KB 0644
libata-portmap.h File 249 B 0644
linkage.h File 508 B 0644
livepatch.h File 604 B 0644
local.h File 3.36 KB 0644
lppaca.h File 4.53 KB 0644
lv1call.h File 18.12 KB 0644
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macio.h File 3.93 KB 0644
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paca.h File 8.66 KB 0644
page.h File 8.64 KB 0644
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page_64.h File 2.65 KB 0644
papr-sysparm.h File 1.51 KB 0644
paravirt.h File 6.18 KB 0644
paravirt_api_clock.h File 65 B 0644
parport.h File 960 B 0644
pasemi_dma.h File 22.73 KB 0644
pci-bridge.h File 9.36 KB 0644
pci.h File 3.51 KB 0644
percpu.h File 782 B 0644
perf_event.h File 1.47 KB 0644
perf_event_fsl_emb.h File 1.22 KB 0644
perf_event_server.h File 7.01 KB 0644
pgalloc.h File 2.2 KB 0644
pgtable-be-types.h File 2.37 KB 0644
pgtable-masks.h File 1.11 KB 0644
pgtable-types.h File 2.23 KB 0644
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pkeys.h File 4.18 KB 0644
plpar_wrappers.h File 14.62 KB 0644
plpks.h File 5.09 KB 0644
pmac_feature.h File 13.35 KB 0644
pmac_low_i2c.h File 3.03 KB 0644
pmac_pfunc.h File 8.04 KB 0644
pmc.h File 1.09 KB 0644
pmi.h File 1.15 KB 0644
pnv-ocxl.h File 3 KB 0644
pnv-pci.h File 2.4 KB 0644
powernv.h File 454 B 0644
ppc-opcode.h File 32.59 KB 0644
ppc-pci.h File 2.77 KB 0644
ppc4xx.h File 328 B 0644
ppc_asm.h File 23.13 KB 0644
probes.h File 2.46 KB 0644
processor.h File 13.06 KB 0644
prom.h File 7 KB 0644
ps3.h File 14.84 KB 0644
ps3av.h File 22.81 KB 0644
ps3gpu.h File 1.88 KB 0644
ps3stor.h File 1.38 KB 0644
pte-walk.h File 1.52 KB 0644
ptrace.h File 11.81 KB 0644
qspinlock.h File 4.76 KB 0644
qspinlock_types.h File 1.59 KB 0644
reg.h File 63.24 KB 0644
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shmparam.h File 206 B 0644
signal.h File 506 B 0644
simple_spinlock.h File 6.1 KB 0644
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tsi108_pci.h File 1.16 KB 0644
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