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/Linux-v6.1/tools/perf/pmu-events/arch/x86/haswellx/
Duncore-power.json4 "Counter": "0,1,2,3",
10 "BriefDescription": "Core C State Transition Cycles",
11 "Counter": "0,1,2,3",
18 "BriefDescription": "Core C State Transition Cycles",
19 "Counter": "0,1,2,3",
26 "BriefDescription": "Core C State Transition Cycles",
27 "Counter": "0,1,2,3",
34 "BriefDescription": "Core C State Transition Cycles",
35 "Counter": "0,1,2,3",
42 "BriefDescription": "Core C State Transition Cycles",
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/Linux-v6.1/tools/perf/pmu-events/arch/x86/broadwellx/
Duncore-power.json4 "Counter": "0,1,2,3",
10 "BriefDescription": "Core C State Transition Cycles",
11 "Counter": "0,1,2,3",
18 "BriefDescription": "Core C State Transition Cycles",
19 "Counter": "0,1,2,3",
26 "BriefDescription": "Core C State Transition Cycles",
27 "Counter": "0,1,2,3",
34 "BriefDescription": "Core C State Transition Cycles",
35 "Counter": "0,1,2,3",
42 "BriefDescription": "Core C State Transition Cycles",
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/Linux-v6.1/tools/perf/pmu-events/arch/x86/ivytown/
Duncore-power.json4 "Counter": "0,1,2,3",
11 "BriefDescription": "Core 0 C State Transition Cycles",
12 "Counter": "0,1,2,3",
16 …"PublicDescription": "Number of cycles spent performing core C state transitions. There is one ev…
20 "BriefDescription": "Core 10 C State Transition Cycles",
21 "Counter": "0,1,2,3",
25 …"PublicDescription": "Number of cycles spent performing core C state transitions. There is one ev…
29 "BriefDescription": "Core 11 C State Transition Cycles",
30 "Counter": "0,1,2,3",
34 …"PublicDescription": "Number of cycles spent performing core C state transitions. There is one ev…
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/Linux-v6.1/tools/perf/pmu-events/arch/x86/broadwellde/
Duncore-power.json4 "Counter": "0,1,2,3",
11 "BriefDescription": "Core C State Transition Cycles",
12 "Counter": "0,1,2,3",
16 …"PublicDescription": "Number of cycles spent performing core C state transitions. There is one ev…
20 "BriefDescription": "Core C State Transition Cycles",
21 "Counter": "0,1,2,3",
25 …"PublicDescription": "Number of cycles spent performing core C state transitions. There is one ev…
29 "BriefDescription": "Core C State Transition Cycles",
30 "Counter": "0,1,2,3",
34 …"PublicDescription": "Number of cycles spent performing core C state transitions. There is one ev…
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/Linux-v6.1/drivers/media/platform/mediatek/mdp3/
Dmtk-mdp3-regs.h3 * Copyright (c) 2022 MediaTek Inc.
16 * Plane count: 1, 2, 3
17 * H-subsample: 0, 1, 2
19 * Color group: 0-RGB, 1-YUV, 2-raw
26 #define MDP_COLOR_IS_10BIT_PACKED(c) ((0x08000000 & (c)) >> 27) argument
27 #define MDP_COLOR_IS_10BIT_LOOSE(c) (((0x0c000000 & (c)) >> 26) == 1) argument
28 #define MDP_COLOR_IS_10BIT_TILE(c) (((0x0c000000 & (c)) >> 26) == 3) argument
29 #define MDP_COLOR_IS_UFP(c) ((0x02000000 & (c)) >> 25) argument
30 #define MDP_COLOR_IS_INTERLACED(c) ((0x01000000 & (c)) >> 24) argument
31 #define MDP_COLOR_IS_BLOCK_MODE(c) ((0x00800000 & (c)) >> 23) argument
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/Linux-v6.1/arch/sparc/crypto/
Dopcodes.h18 #define CRC32C(a,b,c) \ argument
19 .word (F3F(2,0x36,0x147)|RS1(a)|RS2(b)|RD(c));
30 #define AES_EROUND01(a,b,c,d) \ argument
31 .word (F3F(2, 0x19, 0)|RS1(a)|RS2(b)|RS3(c)|RD(d));
32 #define AES_EROUND23(a,b,c,d) \ argument
33 .word (F3F(2, 0x19, 1)|RS1(a)|RS2(b)|RS3(c)|RD(d));
34 #define AES_DROUND01(a,b,c,d) \ argument
35 .word (F3F(2, 0x19, 2)|RS1(a)|RS2(b)|RS3(c)|RD(d));
36 #define AES_DROUND23(a,b,c,d) \ argument
37 .word (F3F(2, 0x19, 3)|RS1(a)|RS2(b)|RS3(c)|RD(d));
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/Linux-v6.1/lib/crypto/
Ddes.c7 * Copyright (c) 2005 Dag Arne Osvik <da@osvik.no>
596 * PC2 lookup tables are organized as 2 consecutive sets of 4 interleaved
600 * After PC1 each of the variables a,b,c,d contains a 7 bit subset of C_i
604 #define T1(x) pt[2 * (x) + 0]
605 #define T2(x) pt[2 * (x) + 1]
606 #define T3(x) pt[2 * (x) + 2]
607 #define T4(x) pt[2 * (x) + 3]
609 #define DES_PC2(a, b, c, d) (T4(d) | T3(c) | T2(b) | T1(a)) argument
619 * alternating zero-one patterns in the C and D registers after Permuted
626 unsigned long a, b, c, d, w; in des_ekey() local
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/Linux-v6.1/Documentation/userspace-api/media/v4l/
Dyuv-formats.rst29 direction are possible, common factors are 1 (no subsampling), 2 and 4, with
34 - `4:2:2`: Horizontal subsampling by 2, no vertical subsampling
35 - `4:2:0`: Horizontal subsampling by 2, vertical subsampling by 2
59 .. flat-table:: 4:2:2 subsampling, interstitially sited
68 - 2
73 - C
77 - C
81 - C
85 - C
87 * - 2
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/Linux-v6.1/tools/testing/selftests/kvm/aarch64/
Dget-reg-list.c5 * Copyright (C) 2020, Red Hat, Inc.
59 #define for_each_sublist(c, s) \ argument
60 for ((s) = &(c)->sublists[0]; (s)->regs; ++(s))
77 static const char *config_name(struct vcpu_config *c) in config_name() argument
82 if (c->name) in config_name()
83 return c->name; in config_name()
85 for_each_sublist(c, s) in config_name()
88 c->name = malloc(len); in config_name()
91 for_each_sublist(c, s) { in config_name()
94 strcat(c->name + len, s->name); in config_name()
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/Linux-v6.1/tools/perf/pmu-events/arch/x86/jaketown/
Duncore-power.json4 "Counter": "0,1,2,3",
11 "BriefDescription": "Core C State Transition Cycles",
12 "Counter": "0,1,2,3",
17 …"PublicDescription": "Number of cycles spent performing core C state transitions. There is one ev…
21 "BriefDescription": "Core C State Transition Cycles",
22 "Counter": "0,1,2,3",
27 …"PublicDescription": "Number of cycles spent performing core C state transitions. There is one ev…
31 "BriefDescription": "Core C State Transition Cycles",
32 "Counter": "0,1,2,3",
37 …"PublicDescription": "Number of cycles spent performing core C state transitions. There is one ev…
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/Linux-v6.1/tools/testing/selftests/drivers/net/mlxsw/
Ddevlink_trap_control.sh15 # | | default via 2001:db8:1::2 |
22 # | 2001:db8:1::2/64 |
24 # | 2001:db8:2::2/64 |
32 # | | default via 2001:db8:2::2 |
34 # | | 2001:db8:2::1/64 |
97 ip -6 route add default vrf v$h1 nexthop via 2001:db8:1::2
102 ip -6 route del default vrf v$h1 nexthop via 2001:db8:1::2
110 simple_if_init $h2 198.51.100.1/24 2001:db8:2::1/64
113 ip -6 route add default vrf v$h2 nexthop via 2001:db8:2::2
118 ip -6 route del default vrf v$h2 nexthop via 2001:db8:2::2
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/Linux-v6.1/include/linux/input/
Dadp5589.h86 #define ADP5589_SCAN_CYCLE_30ms 2
92 #define RESET_PULSE_WIDTH_2ms 2
95 #define RESET_TRIG_TIME_0ms (0 << 2)
96 #define RESET_TRIG_TIME_1000ms (1 << 2)
97 #define RESET_TRIG_TIME_1500ms (2 << 2)
98 #define RESET_TRIG_TIME_2000ms (3 << 2)
99 #define RESET_TRIG_TIME_2500ms (4 << 2)
100 #define RESET_TRIG_TIME_3000ms (5 << 2)
101 #define RESET_TRIG_TIME_3500ms (6 << 2)
102 #define RESET_TRIG_TIME_4000ms (7 << 2)
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/Linux-v6.1/tools/build/tests/
Drun.sh5 make -C ex V=1 clean > ex.out 2>&1
6 make -C ex V=1 >> ex.out 2>&1
13 make -C ex V=1 clean > /dev/null 2>&1
18 make -C ex V=1 clean > ex.out 2>&1
21 make -rR -C ex V=1 ex.o >> ex.out 2>&1
22 make -rR -C ex V=1 ex.i >> ex.out 2>&1
23 make -rR -C ex V=1 ex.s >> ex.out 2>&1
35 make -C ex V=1 clean > /dev/null 2>&1
40 make -C ex V=1 clean > ex.out 2>&1
44 make -C ex V=1 CFLAGS=-DINCLUDE >> ex.out 2>&1
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/Linux-v6.1/tools/testing/selftests/drivers/net/mlxsw/spectrum-2/
Dtc_flower.sh4 # This test is for checking the A-TCAM and C-TCAM operation in Spectrum-2.
14 NUM_NETIFS=2
46 local cmd=$2
55 local seconds=$2
72 local count=$2
103 $MZ $h1 -c 1 -p 64 -a $h1mac -b $h2mac -A 192.0.2.1 -B 192.0.2.2 \
109 tc filter add dev $h2 ingress protocol ip pref 2 handle 102 flower \
112 $MZ $h1 -c 1 -p 64 -a $h1mac -b $h2mac -A 192.0.2.1 -B 192.0.2.2 \
115 tc_check_packets "dev $h2 ingress" 101 2
118 $MZ $h1 -c 1 -p 64 -a $h1mac -b $h2mac -A 198.51.100.1 -B 198.51.100.2 \
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/Linux-v6.1/arch/x86/crypto/
Dnh-avx2-x86_64.S107 // 2 or 3 strides remain; do 2 more.
120 // don't affect the result when processing them like 2 strides.
131 // PASS0_SUMS is (0A 0B 0C 0D)
132 // PASS1_SUMS is (1A 1B 1C 1D)
133 // PASS2_SUMS is (2A 2B 2C 2D)
134 // PASS3_SUMS is (3A 3B 3C 3D)
136 // (0A + 0B + 0C + 0D,
137 // 1A + 1B + 1C + 1D,
138 // 2A + 2B + 2C + 2D,
139 // 3A + 3B + 3C + 3D)
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Dsha256-ssse3-asm.S4 # Copyright (C) 2013 Intel Corporation.
9 # Tim Chen <tim.c.chen@linux.intel.com>
13 # General Public License (GPL) Version 2, available from the file
91 INP = %rsi # 2nd arg
95 c = %ecx define
141 d = c
142 c = b define
165 ror $(13-2), y1 # y1 = (a >> (13-2)) ^ (a >> (22-2))
168 xor a, y1 # y1 = a ^ (a >> (13-2)) ^ (a >> (22-2))
172 ror $2, y1 # y1 = S0 = (a>>2) ^ (a>>13) ^ (a>>22)
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Dsha256-avx-asm.S4 # Copyright (C) 2013 Intel Corporation.
9 # Tim Chen <tim.c.chen@linux.intel.com>
13 # General Public License (GPL) Version 2, available from the file
98 INP = %rsi # 2nd arg
102 c = %ecx define
147 d = c
148 c = b define
170 MY_ROR (13-2), y1 # y1 = (a >> (13-2)) ^ (a >> (22-2))
173 xor a, y1 # y1 = a ^ (a >> (13-2)) ^ (a >> (22-2))
176 MY_ROR 2, y1 # y1 = S0 = (a>>2) ^ (a>>13) ^ (a>>22)
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/Linux-v6.1/drivers/media/dvb-frontends/
Dmn88473.c3 * Panasonic MN88473 DVB-T/T2/C demodulator driver
5 * Copyright (C) 2014 Antti Palosaari <crope@iki.fi>
21 struct dtv_frontend_properties *c = &fe->dtv_property_cache; in mn88473_set_frontend() local
30 c->delivery_system, c->modulation, c->frequency, in mn88473_set_frontend()
31 c->bandwidth_hz, c->symbol_rate, c->inversion, c->stream_id); in mn88473_set_frontend()
38 switch (c->delivery_system) { in mn88473_set_frontend()
59 switch (c->delivery_system) { in mn88473_set_frontend()
62 switch (c->bandwidth_hz) { in mn88473_set_frontend()
106 if_val[2] = (uitmp >> 0) & 0xff; in mn88473_set_frontend()
108 ret = regmap_write(dev->regmap[2], 0x05, 0x00); in mn88473_set_frontend()
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Dmn88472.c3 * Panasonic MN88472 DVB-T/T2/C demodulator driver
5 * Copyright (C) 2013 Antti Palosaari <crope@iki.fi>
21 struct dtv_frontend_properties *c = &fe->dtv_property_cache; in mn88472_read_status() local
31 switch (c->delivery_system) { in mn88472_read_status()
43 ret = regmap_read(dev->regmap[2], 0x92, &utmp); in mn88472_read_status()
74 for (i = 0; i < 2; i++) { in mn88472_read_status()
75 ret = regmap_bulk_read(dev->regmap[2], 0x8e + i, in mn88472_read_status()
81 utmp1 = buf[0] << 8 | buf[1] << 0 | buf[0] >> 2; in mn88472_read_status()
84 c->strength.stat[0].scale = FE_SCALE_RELATIVE; in mn88472_read_status()
85 c->strength.stat[0].uvalue = utmp1; in mn88472_read_status()
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/Linux-v6.1/arch/m68k/lib/
Dmemset.c10 void *memset(void *s, int c, size_t count) in memset() argument
17 c &= 0xff; in memset()
18 c |= c << 8; in memset()
19 c |= c << 16; in memset()
22 *cs++ = c; in memset()
26 if (count > 2 && (long)s & 2) { in memset()
28 *ss++ = c; in memset()
30 count -= 2; in memset()
32 temp = count >> 2; in memset()
37 *ls++ = c; in memset()
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/Linux-v6.1/crypto/
Dcast6_generic.c3 * cast6.c - Cast6 cipher algorithm [rfc2612].
9 * Copyright (C) 2003 Kartikey Mahendra Bhatt <kartik_me@hotmail.com>.
98 key[4] ^= F3(key[5], Tr[i % 4][2], Tm[i][2]); in W()
100 key[2] ^= F2(key[3], Tr[i % 4][4], Tm[i][4]); in W()
101 key[1] ^= F3(key[2], Tr[i % 4][5], Tm[i][5]); in W()
106 int __cast6_setkey(struct cast6_ctx *c, const u8 *in_key, unsigned int key_len) in __cast6_setkey() argument
120 key[2] = be32_to_cpu(p_key[2]); /* C */ in __cast6_setkey()
128 W(key, 2 * i); in __cast6_setkey()
129 W(key, 2 * i + 1); in __cast6_setkey()
131 c->Kr[i][0] = key[0] & 0x1f; in __cast6_setkey()
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/Linux-v6.1/drivers/media/v4l2-core/
Dv4l2-vp9.c5 * Copyright (C) 2021 Collabora, Ltd.
198 { 2, 44, 76 },
201 { /* Coeff Band 2 */
222 { 2, 39, 75 },
247 { 2, 68, 118 },
251 { /* Coeff Band 2 */
300 { 2, 49, 87 },
303 { /* Coeff Band 2 */
308 { 2, 42, 81 },
333 { 2, 20, 47 },
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/Linux-v6.1/drivers/media/usb/pwc/
Dpwc-dec23.c3 Decompression for chipset version 2 et 3
4 (C) 2004-2006 Luc Saillard (luc@saillard.org)
24 * 0: use a C version of this tests: { a<0?0:(a>255?255:a) }
127 p0[k + 0x10] = (2 * pw) + 0x80; in build_table_color()
131 p0[k + 0x50] = (-2 * pw) + 0x80; in build_table_color()
161 * if look_bits(2) == 0: # op == 2 in the lookup table
162 * skip_bits(2)
181 * op == 2 when (i%4)==0
258 {0, 1, 2, 3, 0, 1, 2, 3, 0, 1, 2, 3, 0, 1, 2, 3,},
259 {0, 0, 0, 0, 1, 1, 1, 1, 2, 2, 2, 2, 3, 3, 3, 3,},
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/Linux-v6.1/tools/testing/selftests/net/
Dsrv6_end_next_csid_l3vpn_test.sh6 # This script is designed for testing the support of NEXT-C-SID flavor for SRv6
9 # [2] is assumed for the reader.
12 # two hosts and four routers. Hosts hs-1 and hs-2 are connected through an
13 # IPv4/IPv6 L3 VPN service, offered by routers rt-1, rt-2, rt-3 and rt-4 using
14 # the NEXT-C-SID flavor. The key components for such VPNs are:
22 # iii) The NEXT-C-SID mechanism [2] offers the possibility of encoding several
24 # Compressed SID (C-SID) container. In this way, the length of the SID
26 # The NEXT-C-SID is provided as a "flavor" of the SRv6 End behavior
27 # which advances the current C-SID (i.e. the Locator-Node Function defined
28 # in [2]) with the next one carried in the Argument, if available.
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/Linux-v6.1/arch/mips/alchemy/common/
Dclock.c14 * * output divided between [2 .. 512 in steps of 2] (!Au1300)
20 * * divide this input by 1, 2, or 4 (and 3 on Au1300).
24 * - sysbus clock: CPU core clock (CPUPLL) divided by 2, 3 or 4.
143 preset_lpj /= 2 * HZ; in alchemy_set_lpj()
245 struct clk *c; in alchemy_clk_setup_aux() local
262 c = clk_register(NULL, &a->hw); in alchemy_clk_setup_aux()
263 if (!IS_ERR(c)) in alchemy_clk_setup_aux()
264 clk_register_clkdev(c, name, NULL); in alchemy_clk_setup_aux()
268 return c; in alchemy_clk_setup_aux()
275 unsigned long v = (alchemy_rdsys(AU1000_SYS_POWERCTRL) & 3) + 2; in alchemy_clk_setup_sysbus()
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