__  __    __   __  _____      _            _          _____ _          _ _ 
 |  \/  |   \ \ / / |  __ \    (_)          | |        / ____| |        | | |
 | \  / |_ __\ V /  | |__) | __ ___   ____ _| |_ ___  | (___ | |__   ___| | |
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 | |  | | |_ / . \  | |   | |  | |\ V / (_| | ||  __/  ____) | | | |  __/ | |
 |_|  |_|_(_)_/ \_\ |_|   |_|  |_| \_/ \__,_|\__\___| |_____/|_| |_|\___V 2.1
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/* SPDX-License-Identifier: GPL-2.0 */
/*
 * uClinux flat-format executables
 *
 * Copyright (C) 2005 John Williams <[email protected]>
 */

#ifndef _ASM_MICROBLAZE_FLAT_H
#define _ASM_MICROBLAZE_FLAT_H

#include <linux/unaligned.h>

/*
 * Microblaze works a little differently from other arches, because
 * of the MICROBLAZE_64 reloc type. Here, a 32 bit address is split
 * over two instructions, an 'imm' instruction which provides the top
 * 16 bits, then the instruction "proper" which provides the low 16
 * bits.
 */

/*
 * Crack open a symbol reference and extract the address to be
 * relocated. rp is a potentially unaligned pointer to the
 * reference
 */

static inline int flat_get_addr_from_rp(u32 __user *rp, u32 relval, u32 flags,
					u32 *addr)
{
	u32 *p = (__force u32 *)rp;

	/* Is it a split 64/32 reference? */
	if (relval & 0x80000000) {
		/* Grab the two halves of the reference */
		u32 val_hi, val_lo;

		val_hi = get_unaligned(p);
		val_lo = get_unaligned(p+1);

		/* Crack the address out */
		*addr = ((val_hi & 0xffff) << 16) + (val_lo & 0xffff);
	} else {
		/* Get the address straight out */
		*addr = get_unaligned(p);
	}

	return 0;
}

/*
 * Insert an address into the symbol reference at rp. rp is potentially
 * unaligned.
 */

static inline int
flat_put_addr_at_rp(u32 __user *rp, u32 addr, u32 relval)
{
	u32 *p = (__force u32 *)rp;
	/* Is this a split 64/32 reloc? */
	if (relval & 0x80000000) {
		/* Get the two "halves" */
		unsigned long val_hi = get_unaligned(p);
		unsigned long val_lo = get_unaligned(p + 1);

		/* insert the address */
		val_hi = (val_hi & 0xffff0000) | addr >> 16;
		val_lo = (val_lo & 0xffff0000) | (addr & 0xffff);

		/* store the two halves back into memory */
		put_unaligned(val_hi, p);
		put_unaligned(val_lo, p+1);
	} else {
		/* Put it straight in, no messing around */
		put_unaligned(addr, p);
	}
	return 0;
}

#define	flat_get_relocate_addr(rel)	(rel & 0x7fffffff)

#endif /* _ASM_MICROBLAZE_FLAT_H */

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Name Type Size Permission Actions
Kbuild File 279 B 0644
asm-compat.h File 518 B 0644
asm-offsets.h File 35 B 0644
barrier.h File 313 B 0644
cache.h File 648 B 0644
cacheflush.h File 3.35 KB 0644
checksum.h File 806 B 0644
cpuinfo.h File 2 KB 0644
current.h File 714 B 0644
delay.h File 2.09 KB 0644
dma.h File 330 B 0644
elf.h File 602 B 0644
entry.h File 1018 B 0644
exceptions.h File 1.88 KB 0644
fixmap.h File 1.83 KB 0644
flat.h File 1.94 KB 0644
ftrace.h File 718 B 0644
futex.h File 2.13 KB 0644
hash.h File 2.37 KB 0644
highmem.h File 1.76 KB 0644
io.h File 1.6 KB 0644
irq.h File 274 B 0644
irqflags.h File 2.47 KB 0644
kgdb.h File 739 B 0644
mmu.h File 3.96 KB 0644
mmu_context.h File 72 B 0644
mmu_context_mm.h File 3.8 KB 0644
module.h File 704 B 0644
page.h File 3.7 KB 0644
pci-bridge.h File 1.02 KB 0644
pci.h File 1 KB 0644
pgalloc.h File 950 B 0644
pgtable.h File 14.19 KB 0644
processor.h File 2.52 KB 0644
ptrace.h File 591 B 0644
pvr.h File 8.58 KB 0644
registers.h File 1.47 KB 0644
seccomp.h File 256 B 0644
sections.h File 501 B 0644
setup.h File 719 B 0644
string.h File 532 B 0644
switch_to.h File 493 B 0644
syscall.h File 1.74 KB 0644
thread_info.h File 3.75 KB 0644
timex.h File 266 B 0644
tlbflush.h File 1.65 KB 0644
uaccess.h File 6.96 KB 0644
unistd.h File 1.03 KB 0644
unwind.h File 611 B 0644
vmalloc.h File 108 B 0644
xilinx_mb_manager.h File 859 B 0644
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