/Linux-v6.1/arch/powerpc/platforms/cell/ |
D | spu_syscalls.c | 26 struct spufs_calls *calls = NULL; in spufs_calls_get() local 29 calls = rcu_dereference(spufs_calls); in spufs_calls_get() 30 if (calls && !try_module_get(calls->owner)) in spufs_calls_get() 31 calls = NULL; in spufs_calls_get() 34 return calls; in spufs_calls_get() 37 static inline void spufs_calls_put(struct spufs_calls *calls) in spufs_calls_put() argument 39 BUG_ON(calls != spufs_calls); in spufs_calls_put() 52 static inline void spufs_calls_put(struct spufs_calls *calls) { } in spufs_calls_put() argument 60 struct spufs_calls *calls; in SYSCALL_DEFINE4() local 62 calls = spufs_calls_get(); in SYSCALL_DEFINE4() [all …]
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/Linux-v6.1/drivers/misc/cxl/ |
D | base.c | 23 struct cxl_calls *calls = NULL; in cxl_calls_get() local 26 calls = rcu_dereference(cxl_calls); in cxl_calls_get() 27 if (calls && !try_module_get(calls->owner)) in cxl_calls_get() 28 calls = NULL; in cxl_calls_get() 31 return calls; in cxl_calls_get() 34 static inline void cxl_calls_put(struct cxl_calls *calls) in cxl_calls_put() argument 36 BUG_ON(calls != cxl_calls); in cxl_calls_put() 49 static inline void cxl_calls_put(struct cxl_calls *calls) { } in cxl_calls_put() argument 68 struct cxl_calls *calls; in cxl_slbia() local 70 calls = cxl_calls_get(); in cxl_slbia() [all …]
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/Linux-v6.1/net/ax25/ |
D | ax25_addr.c | 146 if (ax25cmp(&digi1->calls[i], &digi2->calls[i]) != 0) in ax25digicmp() 194 memcpy(&digi->calls[d], buf, AX25_ADDR_LEN); in ax25_addr_parse() 253 memcpy(buf, &d->calls[ct], AX25_ADDR_LEN); in ax25_addr_build() 293 out->calls[ct] = in->calls[in->ndigi - ct - 1]; in ax25_digi_invert() 296 out->calls[ct].ax25_call[6] |= AX25_HBIT; in ax25_digi_invert() 299 out->calls[ct].ax25_call[6] &= ~AX25_HBIT; in ax25_digi_invert()
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/Linux-v6.1/Documentation/powerpc/ |
D | eeh-pci-error-recovery.rst | 177 It saves the device BAR's and then calls rpaphp_unconfig_pci_adapter(). 184 any bridges underneath. It then calls rpaphp_enable_pci_slot(), 201 calls 204 calls 207 calls 210 calls 213 calls 216 calls 219 calls 223 calls [all …]
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/Linux-v6.1/arch/m68k/include/asm/ |
D | sun3xflop.h | 122 static int calls=0; in sun3xflop_hardint() local 134 if(!calls) in sun3xflop_hardint() 173 calls++; in sun3xflop_hardint() 185 virtual_dma_count, virtual_dma_residue, calls, bytes, in sun3xflop_hardint() 187 calls = 0; in sun3xflop_hardint()
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D | floppy.h | 191 static int calls=0; in floppy_hardint() local 201 if(!calls) in floppy_hardint() 230 calls++; in floppy_hardint() 239 virtual_dma_count, virtual_dma_residue, calls, bytes, in floppy_hardint() 241 calls = 0; in floppy_hardint()
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/Linux-v6.1/Documentation/mm/ |
D | page_frags.rst | 20 and tracks allows multiple calls to make use of a cached page. The 21 advantage to doing this is that multiple calls to get_page can be avoided 23 this caching it is required that any calls to the cache be protected by 29 netdev_alloc_frag and __netdev_alloc_skb calls. The napi_alloc_cache is 30 used by callers of the __napi_alloc_frag and __napi_alloc_skb calls. The 31 main difference between these two calls is the context in which they may be
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/Linux-v6.1/scripts/ |
D | checksyscalls.sh | 78 /* System calls for 32-bit kernels only */ 154 /* i386-specific or historical system calls */ 227 /* these can be expressed using other calls */
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/Linux-v6.1/Documentation/i2c/ |
D | dev-interface.rst | 93 the means of read() and write() calls. In particular, so-called combined 147 You can do plain I2C transactions by using read(2) and write(2) calls. 185 1) Your program opens /dev/i2c-N and calls ioctl() on it, as described in 188 2) These open() and ioctl() calls are handled by the i2c-dev kernel 193 3) Some ioctl() calls are for administrative tasks and are handled by 198 4) Other ioctl() calls are converted to in-kernel function calls by 205 difference between these calls that came from user-space through i2c-dev 206 and calls that would have been performed by kernel I2C chip drivers 212 implementing these standard calls. i2c.h:i2c_get_functionality() calls 214 i2c-core-smbus.c:i2c_smbus_xfer() calls either [all …]
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/Linux-v6.1/arch/parisc/include/asm/ |
D | floppy.h | 59 static int calls=0; in floppy_hardint() local 69 if(!calls) in floppy_hardint() 95 calls++; in floppy_hardint() 104 virtual_dma_count, virtual_dma_residue, calls, bytes, in floppy_hardint() 106 calls = 0; in floppy_hardint()
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/Linux-v6.1/arch/x86/include/asm/ |
D | floppy.h | 61 static int calls; in floppy_hardint() local 69 if (!calls) in floppy_hardint() 94 calls++; in floppy_hardint() 103 virtual_dma_count, virtual_dma_residue, calls, bytes, in floppy_hardint() 105 calls = 0; in floppy_hardint()
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/Linux-v6.1/tools/io_uring/ |
D | io_uring-bench.c | 83 unsigned long calls; member 318 s->calls++; in submitter_fn() 483 unsigned long done, calls, reap; in main() local 563 reap = calls = done = 0; in main() 572 this_call += s->calls; in main() 574 if (this_call - calls) { in main() 575 rpc = (this_done - done) / (this_call - calls); in main() 576 ipc = (this_reap - reap) / (this_call - calls); in main() 584 calls = this_call; in main()
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/Linux-v6.1/tools/testing/selftests/bpf/progs/ |
D | test_cgroup_link.c | 6 int calls = 0; variable 12 __sync_fetch_and_add(&calls, 1); in egress()
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/Linux-v6.1/arch/parisc/kernel/vdso32/ |
D | Makefile | 10 ccflags-y := -shared -fno-common -fbuiltin -mno-fast-indirect-calls -O2 -mno-long-calls 45 cmd_vdso32cc = $(CROSS32CC) $(c_flags) -c -fPIC -mno-fast-indirect-calls -o $@ $<
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/Linux-v6.1/scripts/tracing/ |
D | draw_functrace.py | 44 def calls(self, func, calltime): member in CallTree 63 child = CallTree.ROOT.calls(func, None) 124 tree = tree.calls(callee, calltime)
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/Linux-v6.1/arch/arm/tools/ |
D | Makefile | 16 gen-y := $(gen)/calls-oabi.S 17 gen-y += $(gen)/calls-eabi.S 56 $(gen)/calls-%.S: $(syscall) $(systbl) FORCE
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/Linux-v6.1/Documentation/infiniband/ |
D | core_locking.rst | 54 if multiple function calls using the same object are run 57 The IB midlayer does not perform any serialization of function calls. 64 information between different calls of ib_poll_cq() is not defined. 102 consumers when it calls ib_register_device(), all initialization 108 semaphores that could cause deadlock if a consumer calls back into 109 the driver across these calls.
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/Linux-v6.1/tools/perf/Documentation/ |
D | perf-bench.txt | 212 Suite for evaluating wake calls. 215 Suite for evaluating parallel wake calls. 218 Suite for evaluating requeue calls. 221 Suite for evaluating futex lock_pi calls. 226 Suite for evaluating concurrent epoll_wait calls. 229 Suite for evaluating multiple epoll_ctl calls.
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/Linux-v6.1/tools/perf/scripts/python/bin/ |
D | export-to-postgresql-report | 19 calls=$3 29 perf script $@ -s "$PERF_EXEC_PATH"/scripts/python/export-to-postgresql.py $dbname $columns $calls
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D | export-to-sqlite-report | 19 calls=$3 29 perf script $@ -s "$PERF_EXEC_PATH"/scripts/python/export-to-sqlite.py $dbname $columns $calls
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/Linux-v6.1/Documentation/crypto/ |
D | intro.rst | 32 however, does not discuss all API calls available to data transformation 57 following phases that are reflected in the API calls applicable to such 67 When using the initialization API calls, a cipher handle is created and 69 API calls that refer to the data structure type a consumer is expected 70 to receive and subsequently to use. The initialization API calls have
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/Linux-v6.1/arch/hexagon/ |
D | Makefile | 14 KBUILD_CFLAGS += -mlong-calls 20 KBUILD_CFLAGS_MODULE += -mlong-calls
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/Linux-v6.1/arch/sparc/kernel/ |
D | traps_32.c | 201 static int calls; local 271 calls++; 272 if(calls > 2) 297 if(calls > 0) 298 calls=0;
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/Linux-v6.1/Documentation/arm/ |
D | kernel_mode_neon.rst | 11 * Put kernel_neon_begin() and kernel_neon_end() calls around the calls into your 60 If latency is a concern, it is possible to put back to back calls to 62 the NEON registers are live. (Additional calls to kernel_neon_begin() should be 83 between calls to these respective functions. Furthermore, GCC may generate NEON 93 * issue the calls to kernel_neon_begin(), kernel_neon_end() as well as the calls
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/Linux-v6.1/Documentation/driver-api/firmware/ |
D | firmware_cache.rst | 12 calls, automatically behind the scenes. 14 The firmware cache makes using certain firmware API calls safe during a device 15 driver's suspend and resume callback. Users of these API calls needn't cache 49 calls requiring the non-uevent therefore need to implement their own firmware
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