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/linux/arch/arm/probes/kprobes/
H A Dtest-arm.c1176 #define COPROCESSOR_INSTRUCTIONS_ST_LD(two,cc) \ in kprobe_arm_test_cases() argument
1177 TEST_COPROCESSOR("stc"two" p0, cr0, [r13, #4]") \ in kprobe_arm_test_cases()
1178 TEST_COPROCESSOR("stc"two" p0, cr0, [r13, #-4]") \ in kprobe_arm_test_cases()
1179 TEST_COPROCESSOR("stc"two" p0, cr0, [r13, #4]!") \ in kprobe_arm_test_cases()
1180 TEST_COPROCESSOR("stc"two" p0, cr0, [r13, #-4]!") \ in kprobe_arm_test_cases()
1181 TEST_COPROCESSOR("stc"two" p0, cr0, [r13], #4") \ in kprobe_arm_test_cases()
1182 TEST_COPROCESSOR("stc"two" p0, cr0, [r13], #-4") \ in kprobe_arm_test_cases()
1183 TEST_COPROCESSOR("stc"two" p0, cr0, [r13], {1}") \ in kprobe_arm_test_cases()
1184 TEST_COPROCESSOR("stc"two"l p0, cr0, [r13, #4]") \ in kprobe_arm_test_cases()
1185 TEST_COPROCESSOR("stc"two"l p0, cr0, [r13, #-4]") \ in kprobe_arm_test_cases()
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/linux/tools/testing/selftests/seccomp/
H A Dseccomp_benchmark.c86 double two = i_two, two_bump = two * 0.1; in approx() local
89 two_bump = two + MAX(two_bump, 2.0); in approx()
92 if (one == two || in approx()
93 (one > two && one <= two_bump) || in approx()
94 (two > one && two <= one_bump)) in approx()
107 unsigned long long one, bool (*eval)(int, int), unsigned long long two, in compare() argument
119 (long long)one, name_eval, (long long)two); in compare()
125 if (two > INT_MAX) { in compare()
126 ksft_print_msg("Miscalculation! Measurement went negative: %lld\n", (long long)two); in compare()
131 good = eval(one, two); in compare()
/linux/lib/tests/
H A Dstackinit_kunit.c99 zero.two = 0; \
116 #define __static_partial { .two = 0, }
118 .two = 0, \
122 #define __dynamic_partial { .two = arg->two, }
124 .two = arg->two, \
128 #define __runtime_partial var.two = 0
130 var.two = 0; \
306 unsigned long two; member
314 char two; member
323 u8 two; member
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/linux/arch/sh/boards/mach-r2d/
H A DKconfig11 R2D-PLUS is the smaller of the two R2D board versions, equipped
19 R2D-1 is the larger of the two R2D board versions, equipped
20 with two PCI slots.
/linux/tools/testing/selftests/bpf/progs/
H A Dtest_sockmap_kern.h91 int *f, two = 2;
93 f = bpf_map_lookup_elem(&sock_skb_opts, &two);
180 int *bytes, zero = 0, one = 1, two = 2, three = 3, four = 4, five = 5; in bpf_prog3()
193 start_push = bpf_map_lookup_elem(&sock_bytes, &two); in bpf_sockmap()
210 int zero = 0, one = 1, two = 2, three = 3, four = 4, five = 5, key = 0; in bpf_sockmap()
227 start_push = bpf_map_lookup_elem(&sock_bytes, &two); in bpf_sockmap()
296 int zero = 0, one = 1, two = 2, three = 3, four = 4, five = 5, err = 0; in bpf_prog6()
308 start_push = bpf_map_lookup_elem(&sock_bytes, &two);
98 int *f, two = 2; bpf_prog1() local
236 int *bytes, zero = 0, one = 1, two = 2, three = 3, four = 4, five = 5; bpf_prog4() local
266 int zero = 0, one = 1, two = 2, three = 3, four = 4, five = 5, key = 0; bpf_prog6() local
352 int zero = 0, one = 1, two = 2, three = 3, four = 4, five = 5, err = 0; bpf_prog10() local
H A Dtest_mmap.c30 int zero = 0, one = 1, two = 2, far = 1500; in test_mmap() local
36 bpf_map_update_elem(&data_map, &two, (const void *)&in_val, 0); in test_mmap()
H A Dtest_sockmap_ktls.c
/linux/include/net/psp/
H A Dfunctions.h55 __psp_skb_coalesce_diff(const struct sk_buff *one, const struct sk_buff *two, in __psp_skb_coalesce_diff() argument
61 b = skb_ext_find(two, SKB_EXT_PSP); in __psp_skb_coalesce_diff()
174 __psp_skb_coalesce_diff(const struct sk_buff *one, const struct sk_buff *two, in __psp_skb_coalesce_diff() argument
204 psp_skb_coalesce_diff(const struct sk_buff *one, const struct sk_buff *two) in psp_skb_coalesce_diff() argument
206 return __psp_skb_coalesce_diff(one, two, 0); in psp_skb_coalesce_diff()
/linux/tools/testing/selftests/splice/
H A Dshort_splice_read.sh100 two=$(echo "$full" | grep -m1 . | cut -c-2)
110 if ! do_splice "$filename" 2 "$two" "'$two'" ; then
/linux/tools/testing/selftests/bpf/prog_tests/
H A Dsubprogs.c15 char two = '2'; in toggle_jit_harden() local
20 write(ctx->fd, &two, sizeof(two)); in toggle_jit_harden()
/linux/Documentation/admin-guide/device-mapper/
H A Dunstriped.rst85 Intel NVMe drives contain two cores on the physical device.
88 in a 256k stripe across the two cores::
97 neighbor environments. When two partitions are created on the
100 are striped across the two cores. When we unstripe this hardware RAID 0
101 and make partitions on each new exposed device the two partitions are now
121 There will now be two devices that expose Intel NVMe core 0 and 1
/linux/Documentation/devicetree/bindings/soc/fsl/cpm_qe/qe/
H A Dusb.txt5 - reg : the first two cells should contain usb registers location and
6 length, the next two two cells should contain PRAM location and
/linux/arch/sh/lib/
H A Dchecksum.S54 add #-2, r5 ! Alignment uses up two bytes.
56 bt/s 1f ! Jump if we had at least two bytes.
178 add #-2,r6 ! Alignment uses up two bytes.
179 cmp/pz r6 ! Jump if we had at least two bytes.
224 ! src and dest equally aligned, but to a two byte boundary.
225 ! Handle first two bytes as a special case
/linux/drivers/misc/lkdtm/
H A Dusercopy.c137 unsigned char *one, *two; in do_usercopy_slab_size() local
143 two = kmalloc(size, GFP_KERNEL); in do_usercopy_slab_size()
144 if (!one || !two) { in do_usercopy_slab_size()
158 memset(two, 'B', size); in do_usercopy_slab_size()
195 kfree(two); in do_usercopy_slab_size()
/linux/Documentation/devicetree/bindings/sound/
H A Dmvebu-audio.txt13 With "marvell,armada-380-audio" two other regions are required:
20 with "marvell,dove-audio", a list of two interrupts, the first for
23 - clocks: one or two phandles.
H A Dcs35l32.txt20 of the two: Class G or adaptive LED voltage.
28 Determines the data packed in a two-CS35L32 configuration.
34 - cirrus,sdout-share : SDOUT sharing. Determines whether one or two CS35L32
H A Dmt6358.txt16 - mediatek,dmic-mode : Indicates how many data pins are used to transmit two
17 channels of PDM signal. 0 means two wires, 1 means one wire. Default
/linux/tools/perf/Documentation/
H A Dintel-hybrid.txt10 Kernel exports two new cpu pmus via sysfs:
49 Create two events for one hardware event automatically
52 two events are created automatically. One is for atom, the other is for
84 perf stat -e cycles -a (use system-wide in this example), two events
118 For perf-stat result, it displays two events:
137 As previous, two events are created.
173 it creates two default 'cycles' and adds them to event list. One
/linux/arch/arm/boot/dts/microchip/
H A Dat91-kizbox2-2.dts4 * two head board
15 model = "Overkiz Kizbox 2 with two heads";
/linux/Documentation/maintainer/
H A Dmessy-diffstat.rst25 If one wants to see what has changed between two points, a command like
30 Here, there are two clear points in the history; Git will essentially
43 the mainline branch (let's call it "linus") and cN, there are still two
55 two were then subsequently merged into c2. Now a pull request generated
59 What is happening here is that there are no longer two clear end points for
61 started in two different places; to generate the diffstat, ``git diff``
/linux/Documentation/userspace-api/media/drivers/
H A Dvgxy61.rst10 Change the sensor HDR mode. A HDR picture is obtained by merging two
11 captures of the same scene using two different exposure periods.
/linux/Documentation/userspace-api/media/v4l/
H A Dselections-common.rst11 similar, there's one fundamental difference between the two. On
17 on the two APIs.
/linux/arch/arm64/boot/dts/rockchip/
H A Drk3588-jaguar-ethernet-switch.dtso10 * two user controllable LEDs, and an M12 12-pin connector which exposes the
13 * - two digital inputs (pin4 routed to GPIO3_C5 on SoC, pin5 to GPIO4_B4)
14 * - two digital outputs (pin7 routed to GPIO3_D3 on SoC, pin8 to GPIO3_D1)
15 * - two analog inputs (pin10 to channel1 of ADS1015, pin11 to channel2)
/linux/Documentation/locking/
H A Dlockstat.rst139 This excerpt shows the first two lock class statistics. Line 01 shows the
142 statistics. These statistics come in two parts; the actual stats separated by a
150 The first lock (05-18) is a read/write lock, and shows two lines above the
152 they have two: contentions and [<IP>] symbol. The second set of contention
186 double_rq_lock actually acquires a nested lock of two spinlocks.
/linux/Documentation/hwmon/
H A Dlm93.rst58 The LM93 hardware monitor has a two wire digital interface compatible with
59 SMBus 2.0. Using an 8-bit ADC, the LM93 measures the temperature of two remote
61 voltages. To set fan speed, the LM93 has two PWM outputs that are each
82 The LM93 can monitor two #PROCHOT signals. The results are found in the
92 The monitoring intervals for the two #PROCHOT signals is also configurable.
102 It is possible to configure the LM93 to logically short the two #PROCHOT
122 The LM93 can monitor two #VRD_HOT signals. The results are found in the
143 The LM93 has a fixed or override mode for the two PWM outputs (although, there
220 however, there are only two tables of offsets: one each for temp[12] and
225 oscillation between two steps in the offsets table. These values are found in
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