- Add support for syscall stack randomization. - Add support for atomic operations to the 32 & 64-bit BPF JIT. - Full support for KASAN on 64-bit Book3E. - Add a watchdog driver for the new PowerVM hypervisor watchdog. - Add a number of new selftests for the Power10 PMU support. - Add a driver for the PowerVM Platform KeyStore. - Increase the NMI watchdog timeout during live partition migration, to avoid timeouts due to increased memory access latency. - Add support for using the 'linux,pci-domain' device tree property for PCI domain assignment. - Many other small features and fixes. Thanks to: Alexey Kardashevskiy, Andy Shevchenko, Arnd Bergmann, Athira Rajeev, Bagas Sanjaya, Christophe Leroy, Erhard Furtner, Fabiano Rosas, Greg Kroah-Hartman, Greg Kurz, Haowen Bai, Hari Bathini, Jason A. Donenfeld, Jason Wang, Jiang Jian, Joel Stanley, Juerg Haefliger, Kajol Jain, Kees Cook, Laurent Dufour, Madhavan Srinivasan, Masahiro Yamada, Maxime Bizon, Miaoqian Lin, Murilo Opsfelder Araújo, Nathan Lynch, Naveen N. Rao, Nayna Jain, Nicholas Piggin, Ning Qiang, Pali Rohár, Petr Mladek, Rashmica Gupta, Sachin Sant, Scott Cheloha, Segher Boessenkool, Stephen Rothwell, Uwe Kleine-König, Wolfram Sang, Xiu Jianfeng, Zhouyi Zhou. -----BEGIN PGP SIGNATURE----- iQJHBAABCAAxFiEEJFGtCPCthwEv2Y/bUevqPMjhpYAFAmLuAPgTHG1wZUBlbGxl cm1hbi5pZC5hdQAKCRBR6+o8yOGlgBPpD/9kY/T0qlOXABxlZCgtqeAjPX+2xpnY BF+TlsN1TS1auFcEZL2BapmVacsvOeGEFDVuZHZvZJc69Hx+gSjnjFCnZjp6n+Yz wt6y9w9Pu0t/sjD5vNQ46O15/dXqm6RoVI7um12j/WLMN8Ko5+x3gKAyQONjQd2/ 1kPcxVH6FUosAdnCuvIcqCX4e4IIHl2ZkitHOTXoQUvUy9oAK/mOBnwqZ6zLGUKC E5M+Zyt4RFGxhPs48FkX6Nq6crDGU/P0VJpDKkR/t7GHnE67Bm70gZougAPrzrgP nx8zoTWgDKpqDeuqK7pFcyKgNS3dKbxsN3sAfKHOWu/YnV4wMyy+7fmwagMauki7 lXccKN6F/r+8JcMNx80Jp/dAw3ZdLceP38M3Ryf8IL6lTfkNySumUvrKJn6r1Cu1 wvzhgyEuDawss9KHdEmXcA2i3+XVZvitaipO7JWUC8pblrP1SJMoPfIIe9zh3y3M pyZj0TcGJ8XaK+badvI+PW/K/KeRgXEY8HpC3wDHSoIkli3OE4jDwXn6TiZgvm3n k0sKL8YSmQZ8hP8QAkR+r8NQKYqLlfyPxdslK5omDPxfub5Uzk9ZV2Ep7svkaiQn Wqjq27Dpz8+w0XPjsQ0Tkv+ByTkOhrawOH7x9SpFLHpv9g5otcYmS79NkO/htx8C 6LyPNx1VYn5IRA== =tRkm -----END PGP SIGNATURE----- Merge tag 'powerpc-6.0-1' of git://git.kernel.org/pub/scm/linux/kernel/git/powerpc/linux Pull powerpc updates from Michael Ellerman: - Add support for syscall stack randomization - Add support for atomic operations to the 32 & 64-bit BPF JIT - Full support for KASAN on 64-bit Book3E - Add a watchdog driver for the new PowerVM hypervisor watchdog - Add a number of new selftests for the Power10 PMU support - Add a driver for the PowerVM Platform KeyStore - Increase the NMI watchdog timeout during live partition migration, to avoid timeouts due to increased memory access latency - Add support for using the 'linux,pci-domain' device tree property for PCI domain assignment - Many other small features and fixes Thanks to Alexey Kardashevskiy, Andy Shevchenko, Arnd Bergmann, Athira Rajeev, Bagas Sanjaya, Christophe Leroy, Erhard Furtner, Fabiano Rosas, Greg Kroah-Hartman, Greg Kurz, Haowen Bai, Hari Bathini, Jason A. Donenfeld, Jason Wang, Jiang Jian, Joel Stanley, Juerg Haefliger, Kajol Jain, Kees Cook, Laurent Dufour, Madhavan Srinivasan, Masahiro Yamada, Maxime Bizon, Miaoqian Lin, Murilo Opsfelder Araújo, Nathan Lynch, Naveen N. Rao, Nayna Jain, Nicholas Piggin, Ning Qiang, Pali Rohár, Petr Mladek, Rashmica Gupta, Sachin Sant, Scott Cheloha, Segher Boessenkool, Stephen Rothwell, Uwe Kleine-König, Wolfram Sang, Xiu Jianfeng, and Zhouyi Zhou. * tag 'powerpc-6.0-1' of git://git.kernel.org/pub/scm/linux/kernel/git/powerpc/linux: (191 commits) powerpc/64e: Fix kexec build error EDAC/ppc_4xx: Include required of_irq header directly powerpc/pci: Fix PHB numbering when using opal-phbid powerpc/64: Init jump labels before parse_early_param() selftests/powerpc: Avoid GCC 12 uninitialised variable warning powerpc/cell/axon_msi: Fix refcount leak in setup_msi_msg_address powerpc/xive: Fix refcount leak in xive_get_max_prio powerpc/spufs: Fix refcount leak in spufs_init_isolated_loader powerpc/perf: Include caps feature for power10 DD1 version powerpc: add support for syscall stack randomization powerpc: Move system_call_exception() to syscall.c powerpc/powernv: rename remaining rng powernv_ functions to pnv_ powerpc/powernv/kvm: Use darn for H_RANDOM on Power9 powerpc/powernv: Avoid crashing if rng is NULL selftests/powerpc: Fix matrix multiply assist test powerpc/signal: Update comment for clarity powerpc: make facility_unavailable_exception 64s powerpc/platforms/83xx/suspend: Remove write-only global variable powerpc/platforms/83xx/suspend: Prevent unloading the driver powerpc/platforms/83xx/suspend: Reorder to get rid of a forward declaration ...
471 lines
13 KiB
C
471 lines
13 KiB
C
/* SPDX-License-Identifier: GPL-2.0 */
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#ifndef _ARCH_POWERPC_UACCESS_H
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#define _ARCH_POWERPC_UACCESS_H
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#include <asm/processor.h>
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#include <asm/page.h>
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#include <asm/extable.h>
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#include <asm/kup.h>
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#ifdef __powerpc64__
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/* We use TASK_SIZE_USER64 as TASK_SIZE is not constant */
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#define TASK_SIZE_MAX TASK_SIZE_USER64
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#endif
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#include <asm-generic/access_ok.h>
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/*
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* These are the main single-value transfer routines. They automatically
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* use the right size if we just have the right pointer type.
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*
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* This gets kind of ugly. We want to return _two_ values in "get_user()"
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* and yet we don't want to do any pointers, because that is too much
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* of a performance impact. Thus we have a few rather ugly macros here,
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* and hide all the ugliness from the user.
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*
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* The "__xxx" versions of the user access functions are versions that
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* do not verify the address space, that must have been done previously
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* with a separate "access_ok()" call (this is used when we do multiple
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* accesses to the same area of user memory).
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*
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* As we use the same address space for kernel and user data on the
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* PowerPC, we can just do these as direct assignments. (Of course, the
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* exception handling means that it's no longer "just"...)
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*
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*/
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#define __put_user(x, ptr) \
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({ \
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long __pu_err; \
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__typeof__(*(ptr)) __user *__pu_addr = (ptr); \
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__typeof__(*(ptr)) __pu_val = (__typeof__(*(ptr)))(x); \
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__typeof__(sizeof(*(ptr))) __pu_size = sizeof(*(ptr)); \
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\
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might_fault(); \
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do { \
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__label__ __pu_failed; \
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\
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allow_write_to_user(__pu_addr, __pu_size); \
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__put_user_size_goto(__pu_val, __pu_addr, __pu_size, __pu_failed); \
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prevent_write_to_user(__pu_addr, __pu_size); \
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__pu_err = 0; \
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break; \
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\
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__pu_failed: \
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prevent_write_to_user(__pu_addr, __pu_size); \
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__pu_err = -EFAULT; \
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} while (0); \
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\
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__pu_err; \
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})
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#define put_user(x, ptr) \
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({ \
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__typeof__(*(ptr)) __user *_pu_addr = (ptr); \
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\
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access_ok(_pu_addr, sizeof(*(ptr))) ? \
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__put_user(x, _pu_addr) : -EFAULT; \
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})
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/*
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* We don't tell gcc that we are accessing memory, but this is OK
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* because we do not write to any memory gcc knows about, so there
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* are no aliasing issues.
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*/
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#define __put_user_asm_goto(x, addr, label, op) \
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asm_volatile_goto( \
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"1: " op "%U1%X1 %0,%1 # put_user\n" \
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EX_TABLE(1b, %l2) \
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: \
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: "r" (x), "m<>" (*addr) \
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: \
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: label)
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#ifdef __powerpc64__
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#define __put_user_asm2_goto(x, ptr, label) \
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__put_user_asm_goto(x, ptr, label, "std")
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#else /* __powerpc64__ */
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#define __put_user_asm2_goto(x, addr, label) \
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asm_volatile_goto( \
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"1: stw%X1 %0, %1\n" \
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"2: stw%X1 %L0, %L1\n" \
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EX_TABLE(1b, %l2) \
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EX_TABLE(2b, %l2) \
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: \
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: "r" (x), "m" (*addr) \
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: \
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: label)
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#endif /* __powerpc64__ */
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#define __put_user_size_goto(x, ptr, size, label) \
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do { \
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__typeof__(*(ptr)) __user *__pus_addr = (ptr); \
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\
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switch (size) { \
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case 1: __put_user_asm_goto(x, __pus_addr, label, "stb"); break; \
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case 2: __put_user_asm_goto(x, __pus_addr, label, "sth"); break; \
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case 4: __put_user_asm_goto(x, __pus_addr, label, "stw"); break; \
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case 8: __put_user_asm2_goto(x, __pus_addr, label); break; \
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default: BUILD_BUG(); \
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} \
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} while (0)
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/*
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* This does an atomic 128 byte aligned load from userspace.
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* Upto caller to do enable_kernel_vmx() before calling!
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*/
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#define __get_user_atomic_128_aligned(kaddr, uaddr, err) \
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__asm__ __volatile__( \
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".machine push\n" \
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".machine altivec\n" \
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"1: lvx 0,0,%1 # get user\n" \
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" stvx 0,0,%2 # put kernel\n" \
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".machine pop\n" \
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"2:\n" \
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".section .fixup,\"ax\"\n" \
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"3: li %0,%3\n" \
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" b 2b\n" \
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".previous\n" \
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EX_TABLE(1b, 3b) \
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: "=r" (err) \
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: "b" (uaddr), "b" (kaddr), "i" (-EFAULT), "0" (err))
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#ifdef CONFIG_CC_HAS_ASM_GOTO_OUTPUT
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#define __get_user_asm_goto(x, addr, label, op) \
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asm_volatile_goto( \
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"1: "op"%U1%X1 %0, %1 # get_user\n" \
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EX_TABLE(1b, %l2) \
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: "=r" (x) \
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: "m<>" (*addr) \
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: \
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: label)
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#ifdef __powerpc64__
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#define __get_user_asm2_goto(x, addr, label) \
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__get_user_asm_goto(x, addr, label, "ld")
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#else /* __powerpc64__ */
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#define __get_user_asm2_goto(x, addr, label) \
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asm_volatile_goto( \
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"1: lwz%X1 %0, %1\n" \
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"2: lwz%X1 %L0, %L1\n" \
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EX_TABLE(1b, %l2) \
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EX_TABLE(2b, %l2) \
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: "=&r" (x) \
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: "m" (*addr) \
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: \
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: label)
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#endif /* __powerpc64__ */
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#define __get_user_size_goto(x, ptr, size, label) \
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do { \
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BUILD_BUG_ON(size > sizeof(x)); \
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switch (size) { \
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case 1: __get_user_asm_goto(x, (u8 __user *)ptr, label, "lbz"); break; \
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case 2: __get_user_asm_goto(x, (u16 __user *)ptr, label, "lhz"); break; \
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case 4: __get_user_asm_goto(x, (u32 __user *)ptr, label, "lwz"); break; \
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case 8: __get_user_asm2_goto(x, (u64 __user *)ptr, label); break; \
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default: x = 0; BUILD_BUG(); \
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} \
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} while (0)
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#define __get_user_size_allowed(x, ptr, size, retval) \
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do { \
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__label__ __gus_failed; \
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\
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__get_user_size_goto(x, ptr, size, __gus_failed); \
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retval = 0; \
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break; \
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__gus_failed: \
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x = 0; \
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retval = -EFAULT; \
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} while (0)
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#else /* CONFIG_CC_HAS_ASM_GOTO_OUTPUT */
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#define __get_user_asm(x, addr, err, op) \
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__asm__ __volatile__( \
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"1: "op"%U2%X2 %1, %2 # get_user\n" \
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"2:\n" \
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".section .fixup,\"ax\"\n" \
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"3: li %0,%3\n" \
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" li %1,0\n" \
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" b 2b\n" \
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".previous\n" \
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EX_TABLE(1b, 3b) \
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: "=r" (err), "=r" (x) \
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: "m<>" (*addr), "i" (-EFAULT), "0" (err))
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#ifdef __powerpc64__
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#define __get_user_asm2(x, addr, err) \
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__get_user_asm(x, addr, err, "ld")
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#else /* __powerpc64__ */
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#define __get_user_asm2(x, addr, err) \
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__asm__ __volatile__( \
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"1: lwz%X2 %1, %2\n" \
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"2: lwz%X2 %L1, %L2\n" \
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"3:\n" \
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".section .fixup,\"ax\"\n" \
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"4: li %0,%3\n" \
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" li %1,0\n" \
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" li %1+1,0\n" \
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" b 3b\n" \
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".previous\n" \
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EX_TABLE(1b, 4b) \
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EX_TABLE(2b, 4b) \
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: "=r" (err), "=&r" (x) \
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: "m" (*addr), "i" (-EFAULT), "0" (err))
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#endif /* __powerpc64__ */
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#define __get_user_size_allowed(x, ptr, size, retval) \
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do { \
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retval = 0; \
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BUILD_BUG_ON(size > sizeof(x)); \
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switch (size) { \
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case 1: __get_user_asm(x, (u8 __user *)ptr, retval, "lbz"); break; \
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case 2: __get_user_asm(x, (u16 __user *)ptr, retval, "lhz"); break; \
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case 4: __get_user_asm(x, (u32 __user *)ptr, retval, "lwz"); break; \
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case 8: __get_user_asm2(x, (u64 __user *)ptr, retval); break; \
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default: x = 0; BUILD_BUG(); \
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} \
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} while (0)
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#define __get_user_size_goto(x, ptr, size, label) \
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do { \
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long __gus_retval; \
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\
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__get_user_size_allowed(x, ptr, size, __gus_retval); \
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if (__gus_retval) \
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goto label; \
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} while (0)
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#endif /* CONFIG_CC_HAS_ASM_GOTO_OUTPUT */
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/*
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* This is a type: either unsigned long, if the argument fits into
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* that type, or otherwise unsigned long long.
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*/
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#define __long_type(x) \
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__typeof__(__builtin_choose_expr(sizeof(x) > sizeof(0UL), 0ULL, 0UL))
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#define __get_user(x, ptr) \
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({ \
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long __gu_err; \
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__long_type(*(ptr)) __gu_val; \
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__typeof__(*(ptr)) __user *__gu_addr = (ptr); \
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__typeof__(sizeof(*(ptr))) __gu_size = sizeof(*(ptr)); \
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\
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might_fault(); \
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allow_read_from_user(__gu_addr, __gu_size); \
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__get_user_size_allowed(__gu_val, __gu_addr, __gu_size, __gu_err); \
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prevent_read_from_user(__gu_addr, __gu_size); \
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(x) = (__typeof__(*(ptr)))__gu_val; \
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\
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__gu_err; \
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})
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#define get_user(x, ptr) \
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({ \
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__typeof__(*(ptr)) __user *_gu_addr = (ptr); \
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\
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access_ok(_gu_addr, sizeof(*(ptr))) ? \
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__get_user(x, _gu_addr) : \
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((x) = (__force __typeof__(*(ptr)))0, -EFAULT); \
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})
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/* more complex routines */
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extern unsigned long __copy_tofrom_user(void __user *to,
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const void __user *from, unsigned long size);
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#ifdef __powerpc64__
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static inline unsigned long
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raw_copy_in_user(void __user *to, const void __user *from, unsigned long n)
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{
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unsigned long ret;
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allow_read_write_user(to, from, n);
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ret = __copy_tofrom_user(to, from, n);
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prevent_read_write_user(to, from, n);
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return ret;
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}
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#endif /* __powerpc64__ */
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static inline unsigned long raw_copy_from_user(void *to,
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const void __user *from, unsigned long n)
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{
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unsigned long ret;
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allow_read_from_user(from, n);
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ret = __copy_tofrom_user((__force void __user *)to, from, n);
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prevent_read_from_user(from, n);
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return ret;
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}
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static inline unsigned long
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raw_copy_to_user(void __user *to, const void *from, unsigned long n)
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{
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unsigned long ret;
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allow_write_to_user(to, n);
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ret = __copy_tofrom_user(to, (__force const void __user *)from, n);
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prevent_write_to_user(to, n);
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return ret;
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}
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unsigned long __arch_clear_user(void __user *addr, unsigned long size);
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static inline unsigned long __clear_user(void __user *addr, unsigned long size)
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{
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unsigned long ret;
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might_fault();
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allow_write_to_user(addr, size);
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ret = __arch_clear_user(addr, size);
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prevent_write_to_user(addr, size);
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return ret;
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}
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static inline unsigned long clear_user(void __user *addr, unsigned long size)
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{
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return likely(access_ok(addr, size)) ? __clear_user(addr, size) : size;
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}
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extern long strncpy_from_user(char *dst, const char __user *src, long count);
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extern __must_check long strnlen_user(const char __user *str, long n);
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#ifdef CONFIG_ARCH_HAS_COPY_MC
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unsigned long __must_check
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copy_mc_generic(void *to, const void *from, unsigned long size);
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static inline unsigned long __must_check
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copy_mc_to_kernel(void *to, const void *from, unsigned long size)
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{
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return copy_mc_generic(to, from, size);
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}
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#define copy_mc_to_kernel copy_mc_to_kernel
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static inline unsigned long __must_check
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copy_mc_to_user(void __user *to, const void *from, unsigned long n)
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{
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if (check_copy_size(from, n, true)) {
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if (access_ok(to, n)) {
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allow_write_to_user(to, n);
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n = copy_mc_generic((void *)to, from, n);
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prevent_write_to_user(to, n);
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}
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}
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return n;
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}
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#endif
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extern long __copy_from_user_flushcache(void *dst, const void __user *src,
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unsigned size);
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extern void memcpy_page_flushcache(char *to, struct page *page, size_t offset,
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size_t len);
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|
|
|
static __must_check inline bool user_access_begin(const void __user *ptr, size_t len)
|
|
{
|
|
if (unlikely(!access_ok(ptr, len)))
|
|
return false;
|
|
|
|
might_fault();
|
|
|
|
allow_read_write_user((void __user *)ptr, ptr, len);
|
|
return true;
|
|
}
|
|
#define user_access_begin user_access_begin
|
|
#define user_access_end prevent_current_access_user
|
|
#define user_access_save prevent_user_access_return
|
|
#define user_access_restore restore_user_access
|
|
|
|
static __must_check inline bool
|
|
user_read_access_begin(const void __user *ptr, size_t len)
|
|
{
|
|
if (unlikely(!access_ok(ptr, len)))
|
|
return false;
|
|
|
|
might_fault();
|
|
|
|
allow_read_from_user(ptr, len);
|
|
return true;
|
|
}
|
|
#define user_read_access_begin user_read_access_begin
|
|
#define user_read_access_end prevent_current_read_from_user
|
|
|
|
static __must_check inline bool
|
|
user_write_access_begin(const void __user *ptr, size_t len)
|
|
{
|
|
if (unlikely(!access_ok(ptr, len)))
|
|
return false;
|
|
|
|
might_fault();
|
|
|
|
allow_write_to_user((void __user *)ptr, len);
|
|
return true;
|
|
}
|
|
#define user_write_access_begin user_write_access_begin
|
|
#define user_write_access_end prevent_current_write_to_user
|
|
|
|
#define unsafe_get_user(x, p, e) do { \
|
|
__long_type(*(p)) __gu_val; \
|
|
__typeof__(*(p)) __user *__gu_addr = (p); \
|
|
\
|
|
__get_user_size_goto(__gu_val, __gu_addr, sizeof(*(p)), e); \
|
|
(x) = (__typeof__(*(p)))__gu_val; \
|
|
} while (0)
|
|
|
|
#define unsafe_put_user(x, p, e) \
|
|
__put_user_size_goto((__typeof__(*(p)))(x), (p), sizeof(*(p)), e)
|
|
|
|
#define unsafe_copy_from_user(d, s, l, e) \
|
|
do { \
|
|
u8 *_dst = (u8 *)(d); \
|
|
const u8 __user *_src = (const u8 __user *)(s); \
|
|
size_t _len = (l); \
|
|
int _i; \
|
|
\
|
|
for (_i = 0; _i < (_len & ~(sizeof(u64) - 1)); _i += sizeof(u64)) \
|
|
unsafe_get_user(*(u64 *)(_dst + _i), (u64 __user *)(_src + _i), e); \
|
|
if (_len & 4) { \
|
|
unsafe_get_user(*(u32 *)(_dst + _i), (u32 __user *)(_src + _i), e); \
|
|
_i += 4; \
|
|
} \
|
|
if (_len & 2) { \
|
|
unsafe_get_user(*(u16 *)(_dst + _i), (u16 __user *)(_src + _i), e); \
|
|
_i += 2; \
|
|
} \
|
|
if (_len & 1) \
|
|
unsafe_get_user(*(u8 *)(_dst + _i), (u8 __user *)(_src + _i), e); \
|
|
} while (0)
|
|
|
|
#define unsafe_copy_to_user(d, s, l, e) \
|
|
do { \
|
|
u8 __user *_dst = (u8 __user *)(d); \
|
|
const u8 *_src = (const u8 *)(s); \
|
|
size_t _len = (l); \
|
|
int _i; \
|
|
\
|
|
for (_i = 0; _i < (_len & ~(sizeof(u64) - 1)); _i += sizeof(u64)) \
|
|
unsafe_put_user(*(u64 *)(_src + _i), (u64 __user *)(_dst + _i), e); \
|
|
if (_len & 4) { \
|
|
unsafe_put_user(*(u32*)(_src + _i), (u32 __user *)(_dst + _i), e); \
|
|
_i += 4; \
|
|
} \
|
|
if (_len & 2) { \
|
|
unsafe_put_user(*(u16*)(_src + _i), (u16 __user *)(_dst + _i), e); \
|
|
_i += 2; \
|
|
} \
|
|
if (_len & 1) \
|
|
unsafe_put_user(*(u8*)(_src + _i), (u8 __user *)(_dst + _i), e); \
|
|
} while (0)
|
|
|
|
#define __get_kernel_nofault(dst, src, type, err_label) \
|
|
__get_user_size_goto(*((type *)(dst)), \
|
|
(__force type __user *)(src), sizeof(type), err_label)
|
|
|
|
#define __put_kernel_nofault(dst, src, type, err_label) \
|
|
__put_user_size_goto(*((type *)(src)), \
|
|
(__force type __user *)(dst), sizeof(type), err_label)
|
|
|
|
#endif /* _ARCH_POWERPC_UACCESS_H */
|