diff options
| author | Linus Torvalds <torvalds@linux-foundation.org> | 2018-04-02 20:20:12 -0700 |
|---|---|---|
| committer | Linus Torvalds <torvalds@linux-foundation.org> | 2018-04-02 20:20:12 -0700 |
| commit | f5a8eb632b562bd9c16c389f5db3a5260fba4157 (patch) | |
| tree | 82687234d772ff8f72a31e598fe16553885c56c9 /arch/m32r/include/asm/bitops.h | |
| parent | c9297d284126b80c9cfd72c690e0da531c99fc48 (diff) | |
| parent | dd3b8c329aa270027fba61a02a12600972dc3983 (diff) | |
Merge tag 'arch-removal' of git://git.kernel.org/pub/scm/linux/kernel/git/arnd/asm-generic
Pul removal of obsolete architecture ports from Arnd Bergmann:
"This removes the entire architecture code for blackfin, cris, frv,
m32r, metag, mn10300, score, and tile, including the associated device
drivers.
I have been working with the (former) maintainers for each one to
ensure that my interpretation was right and the code is definitely
unused in mainline kernels. Many had fond memories of working on the
respective ports to start with and getting them included in upstream,
but also saw no point in keeping the port alive without any users.
In the end, it seems that while the eight architectures are extremely
different, they all suffered the same fate: There was one company in
charge of an SoC line, a CPU microarchitecture and a software
ecosystem, which was more costly than licensing newer off-the-shelf
CPU cores from a third party (typically ARM, MIPS, or RISC-V). It
seems that all the SoC product lines are still around, but have not
used the custom CPU architectures for several years at this point. In
contrast, CPU instruction sets that remain popular and have actively
maintained kernel ports tend to all be used across multiple licensees.
[ See the new nds32 port merged in the previous commit for the next
generation of "one company in charge of an SoC line, a CPU
microarchitecture and a software ecosystem" - Linus ]
The removal came out of a discussion that is now documented at
https://lwn.net/Articles/748074/. Unlike the original plans, I'm not
marking any ports as deprecated but remove them all at once after I
made sure that they are all unused. Some architectures (notably tile,
mn10300, and blackfin) are still being shipped in products with old
kernels, but those products will never be updated to newer kernel
releases.
After this series, we still have a few architectures without mainline
gcc support:
- unicore32 and hexagon both have very outdated gcc releases, but the
maintainers promised to work on providing something newer. At least
in case of hexagon, this will only be llvm, not gcc.
- openrisc, risc-v and nds32 are still in the process of finishing
their support or getting it added to mainline gcc in the first
place. They all have patched gcc-7.3 ports that work to some
degree, but complete upstream support won't happen before gcc-8.1.
Csky posted their first kernel patch set last week, their situation
will be similar
[ Palmer Dabbelt points out that RISC-V support is in mainline gcc
since gcc-7, although gcc-7.3.0 is the recommended minimum - Linus ]"
This really says it all:
2498 files changed, 95 insertions(+), 467668 deletions(-)
* tag 'arch-removal' of git://git.kernel.org/pub/scm/linux/kernel/git/arnd/asm-generic: (74 commits)
MAINTAINERS: UNICORE32: Change email account
staging: iio: remove iio-trig-bfin-timer driver
tty: hvc: remove tile driver
tty: remove bfin_jtag_comm and hvc_bfin_jtag drivers
serial: remove tile uart driver
serial: remove m32r_sio driver
serial: remove blackfin drivers
serial: remove cris/etrax uart drivers
usb: Remove Blackfin references in USB support
usb: isp1362: remove blackfin arch glue
usb: musb: remove blackfin port
usb: host: remove tilegx platform glue
pwm: remove pwm-bfin driver
i2c: remove bfin-twi driver
spi: remove blackfin related host drivers
watchdog: remove bfin_wdt driver
can: remove bfin_can driver
mmc: remove bfin_sdh driver
input: misc: remove blackfin rotary driver
input: keyboard: remove bf54x driver
...
Diffstat (limited to 'arch/m32r/include/asm/bitops.h')
| -rw-r--r-- | arch/m32r/include/asm/bitops.h | 274 |
1 files changed, 0 insertions, 274 deletions
diff --git a/arch/m32r/include/asm/bitops.h b/arch/m32r/include/asm/bitops.h deleted file mode 100644 index 64e70e57c154..000000000000 --- a/arch/m32r/include/asm/bitops.h +++ /dev/null @@ -1,274 +0,0 @@ -/* SPDX-License-Identifier: GPL-2.0 */ -#ifndef _ASM_M32R_BITOPS_H -#define _ASM_M32R_BITOPS_H - -/* - * linux/include/asm-m32r/bitops.h - * - * Copyright 1992, Linus Torvalds. - * - * M32R version: - * Copyright (C) 2001, 2002 Hitoshi Yamamoto - * Copyright (C) 2004 Hirokazu Takata <takata at linux-m32r.org> - */ - -#ifndef _LINUX_BITOPS_H -#error only <linux/bitops.h> can be included directly -#endif - -#include <linux/compiler.h> -#include <linux/irqflags.h> -#include <asm/assembler.h> -#include <asm/byteorder.h> -#include <asm/dcache_clear.h> -#include <asm/types.h> -#include <asm/barrier.h> - -/* - * These have to be done with inline assembly: that way the bit-setting - * is guaranteed to be atomic. All bit operations return 0 if the bit - * was cleared before the operation and != 0 if it was not. - * - * bit 0 is the LSB of addr; bit 32 is the LSB of (addr+1). - */ - -/** - * set_bit - Atomically set a bit in memory - * @nr: the bit to set - * @addr: the address to start counting from - * - * This function is atomic and may not be reordered. See __set_bit() - * if you do not require the atomic guarantees. - * Note that @nr may be almost arbitrarily large; this function is not - * restricted to acting on a single-word quantity. - */ -static __inline__ void set_bit(int nr, volatile void * addr) -{ - __u32 mask; - volatile __u32 *a = addr; - unsigned long flags; - unsigned long tmp; - - a += (nr >> 5); - mask = (1 << (nr & 0x1F)); - - local_irq_save(flags); - __asm__ __volatile__ ( - DCACHE_CLEAR("%0", "r6", "%1") - M32R_LOCK" %0, @%1; \n\t" - "or %0, %2; \n\t" - M32R_UNLOCK" %0, @%1; \n\t" - : "=&r" (tmp) - : "r" (a), "r" (mask) - : "memory" -#ifdef CONFIG_CHIP_M32700_TS1 - , "r6" -#endif /* CONFIG_CHIP_M32700_TS1 */ - ); - local_irq_restore(flags); -} - -/** - * clear_bit - Clears a bit in memory - * @nr: Bit to clear - * @addr: Address to start counting from - * - * clear_bit() is atomic and may not be reordered. However, it does - * not contain a memory barrier, so if it is used for locking purposes, - * you should call smp_mb__before_atomic() and/or smp_mb__after_atomic() - * in order to ensure changes are visible on other processors. - */ -static __inline__ void clear_bit(int nr, volatile void * addr) -{ - __u32 mask; - volatile __u32 *a = addr; - unsigned long flags; - unsigned long tmp; - - a += (nr >> 5); - mask = (1 << (nr & 0x1F)); - - local_irq_save(flags); - - __asm__ __volatile__ ( - DCACHE_CLEAR("%0", "r6", "%1") - M32R_LOCK" %0, @%1; \n\t" - "and %0, %2; \n\t" - M32R_UNLOCK" %0, @%1; \n\t" - : "=&r" (tmp) - : "r" (a), "r" (~mask) - : "memory" -#ifdef CONFIG_CHIP_M32700_TS1 - , "r6" -#endif /* CONFIG_CHIP_M32700_TS1 */ - ); - local_irq_restore(flags); -} - -/** - * change_bit - Toggle a bit in memory - * @nr: Bit to clear - * @addr: Address to start counting from - * - * change_bit() is atomic and may not be reordered. - * Note that @nr may be almost arbitrarily large; this function is not - * restricted to acting on a single-word quantity. - */ -static __inline__ void change_bit(int nr, volatile void * addr) -{ - __u32 mask; - volatile __u32 *a = addr; - unsigned long flags; - unsigned long tmp; - - a += (nr >> 5); - mask = (1 << (nr & 0x1F)); - - local_irq_save(flags); - __asm__ __volatile__ ( - DCACHE_CLEAR("%0", "r6", "%1") - M32R_LOCK" %0, @%1; \n\t" - "xor %0, %2; \n\t" - M32R_UNLOCK" %0, @%1; \n\t" - : "=&r" (tmp) - : "r" (a), "r" (mask) - : "memory" -#ifdef CONFIG_CHIP_M32700_TS1 - , "r6" -#endif /* CONFIG_CHIP_M32700_TS1 */ - ); - local_irq_restore(flags); -} - -/** - * test_and_set_bit - Set a bit and return its old value - * @nr: Bit to set - * @addr: Address to count from - * - * This operation is atomic and cannot be reordered. - * It also implies a memory barrier. - */ -static __inline__ int test_and_set_bit(int nr, volatile void * addr) -{ - __u32 mask, oldbit; - volatile __u32 *a = addr; - unsigned long flags; - unsigned long tmp; - - a += (nr >> 5); - mask = (1 << (nr & 0x1F)); - - local_irq_save(flags); - __asm__ __volatile__ ( - DCACHE_CLEAR("%0", "%1", "%2") - M32R_LOCK" %0, @%2; \n\t" - "mv %1, %0; \n\t" - "and %0, %3; \n\t" - "or %1, %3; \n\t" - M32R_UNLOCK" %1, @%2; \n\t" - : "=&r" (oldbit), "=&r" (tmp) - : "r" (a), "r" (mask) - : "memory" - ); - local_irq_restore(flags); - - return (oldbit != 0); -} - -/** - * test_and_clear_bit - Clear a bit and return its old value - * @nr: Bit to set - * @addr: Address to count from - * - * This operation is atomic and cannot be reordered. - * It also implies a memory barrier. - */ -static __inline__ int test_and_clear_bit(int nr, volatile void * addr) -{ - __u32 mask, oldbit; - volatile __u32 *a = addr; - unsigned long flags; - unsigned long tmp; - - a += (nr >> 5); - mask = (1 << (nr & 0x1F)); - - local_irq_save(flags); - - __asm__ __volatile__ ( - DCACHE_CLEAR("%0", "%1", "%3") - M32R_LOCK" %0, @%3; \n\t" - "mv %1, %0; \n\t" - "and %0, %2; \n\t" - "not %2, %2; \n\t" - "and %1, %2; \n\t" - M32R_UNLOCK" %1, @%3; \n\t" - : "=&r" (oldbit), "=&r" (tmp), "+r" (mask) - : "r" (a) - : "memory" - ); - local_irq_restore(flags); - - return (oldbit != 0); -} - -/** - * test_and_change_bit - Change a bit and return its old value - * @nr: Bit to set - * @addr: Address to count from - * - * This operation is atomic and cannot be reordered. - * It also implies a memory barrier. - */ -static __inline__ int test_and_change_bit(int nr, volatile void * addr) -{ - __u32 mask, oldbit; - volatile __u32 *a = addr; - unsigned long flags; - unsigned long tmp; - - a += (nr >> 5); - mask = (1 << (nr & 0x1F)); - - local_irq_save(flags); - __asm__ __volatile__ ( - DCACHE_CLEAR("%0", "%1", "%2") - M32R_LOCK" %0, @%2; \n\t" - "mv %1, %0; \n\t" - "and %0, %3; \n\t" - "xor %1, %3; \n\t" - M32R_UNLOCK" %1, @%2; \n\t" - : "=&r" (oldbit), "=&r" (tmp) - : "r" (a), "r" (mask) - : "memory" - ); - local_irq_restore(flags); - - return (oldbit != 0); -} - -#include <asm-generic/bitops/non-atomic.h> -#include <asm-generic/bitops/ffz.h> -#include <asm-generic/bitops/__ffs.h> -#include <asm-generic/bitops/fls.h> -#include <asm-generic/bitops/__fls.h> -#include <asm-generic/bitops/fls64.h> - -#ifdef __KERNEL__ - -#include <asm-generic/bitops/sched.h> -#include <asm-generic/bitops/find.h> -#include <asm-generic/bitops/ffs.h> -#include <asm-generic/bitops/hweight.h> -#include <asm-generic/bitops/lock.h> - -#endif /* __KERNEL__ */ - -#ifdef __KERNEL__ - -#include <asm-generic/bitops/le.h> -#include <asm-generic/bitops/ext2-atomic.h> - -#endif /* __KERNEL__ */ - -#endif /* _ASM_M32R_BITOPS_H */ |
