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/linux/drivers/pinctrl/mvebu/
A Dpinctrl-kirkwood.c19 #define V(f6180, f6190, f6192, f6281, f6282, dx4122, dx1135) \ macro
25 VARIANT_MV88F6180 = V(1, 0, 0, 0, 0, 0, 0),
26 VARIANT_MV88F6190 = V(0, 1, 0, 0, 0, 0, 0),
27 VARIANT_MV88F6192 = V(0, 0, 1, 0, 0, 0, 0),
28 VARIANT_MV88F6281 = V(0, 0, 0, 1, 0, 0, 0),
29 VARIANT_MV88F6282 = V(0, 0, 0, 0, 1, 0, 0),
30 VARIANT_MV98DX4122 = V(0, 0, 0, 0, 0, 1, 0),
31 VARIANT_MV98DX1135 = V(0, 0, 0, 0, 0, 0, 1),
36 MPP_VAR_FUNCTION(0x0, "gpio", NULL, V(1, 1, 1, 1, 1, 1, 1)),
37 MPP_VAR_FUNCTION(0x1, "nand", "io2", V(1, 1, 1, 1, 1, 1, 1)),
[all …]
/linux/tools/memory-model/
A Dlinux-kernel.def10 WRITE_ONCE(X,V) { __store{once}(X,V); }
13 smp_store_release(X,V) { __store{release}(*X,V); }
30 xchg(X,V) __xchg{mb}(X,V)
31 xchg_relaxed(X,V) __xchg{once}(X,V)
32 xchg_release(X,V) __xchg{release}(X,V)
33 xchg_acquire(X,V) __xchg{acquire}(X,V)
34 cmpxchg(X,V,W) __cmpxchg{mb}(X,V,W)
59 atomic_set(X,V) { WRITE_ONCE(*X,V); }
63 atomic_add(V,X) { __atomic_op(X,+,V); }
64 atomic_sub(V,X) { __atomic_op(X,-,V); }
[all …]
/linux/Documentation/hwmon/
A Dmc13783-adc.rst47 0 Battery Voltage (BATT) 2.50 - 4.65V -2.40V
49 2 Application Supply (BP) 2.50 - 4.65V -2.40V
51 0 - 20V /10
55 1.50 - 3.50V -1.20V
57 0 - 2.55V / x0.9 / No
58 8 General Purpose ADIN8 0 - 2.30V No
59 9 General Purpose ADIN9 0 - 2.30V No
73 0 Battery Voltage (BATT) 0 - 4.8V /2
77 0 - 20V /10
79 Touchscreen X-plate 1 0 - 2.4V No
[all …]
A Ddme1737.rst94 in0: +5VTR (+5V standby) 0V - 6.64V
97 in3: +5V 0V - 6.64V
98 in4: +12V 0V - 16V
100 in6: Vbat (+3.0V) 0V - 4.38V
104 in0: +2.5V 0V - 3.32V
107 in3: +5V 0V - 6.64V
108 in4: +12V 0V - 16V
110 in6: Vbat (+3.0V) 0V - 4.38V
120 in6: Vbat (+3.0V) 0V - 4.38V
130 in6: Vbat (+3.0V) 0V - 4.38V
[all …]
A Dmax197.rst25 The A/D converters MAX197, and MAX199 are both 8-Channel, Multi-Range, 5V,
28 The available ranges for the MAX197 are {0,-5V} to 5V, and {0,-10V} to 10V,
29 while they are {0,-2V} to 2V, and {0,-4V} to 4V on the MAX199.
/linux/arch/powerpc/lib/
A Dxor_vmx.c25 unative_t *V = (unative_t *)V##_in; \
26 unative_t V##_0, V##_1, V##_2, V##_3
28 #define LOAD(V) \ argument
30 V##_0 = V[0]; \
31 V##_1 = V[1]; \
32 V##_2 = V[2]; \
33 V##_3 = V[3]; \
38 V[0] = V##_0; \
39 V[1] = V##_1; \
40 V[2] = V##_2; \
[all …]
/linux/arch/m68k/fpsp040/
A Dslogn.S389 |--[U + V*(A1+V*(A3+V*A5))] + [U*V*(A2+V*(A4+V*A6))]
400 fmulx %fp3,%fp1 | ...V*(A4+V*A6)
401 fmulx %fp3,%fp2 | ...V*(A3+V*A5)
403 faddd LOGA2,%fp1 | ...A2+V*(A4+V*A6)
406 fmulx %fp3,%fp1 | ...V*(A2+V*(A4+V*A6))
408 fmulx %fp3,%fp2 | ...V*(A1+V*(A3+V*A5)), FP3 RELEASED
410 fmulx %fp0,%fp1 | ...U*V*(A2+V*(A4+V*A6))
411 faddx %fp2,%fp0 | ...U+V*(A1+V*(A3+V*A5)), FP2 RELEASED
413 faddx (%a0),%fp1 | ...LOG(F)+U*V*(A2+V*(A4+V*A6))
436 |--LET V=U*U, W=V*V, CALCULATE
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/linux/drivers/media/dvb-frontends/
A Dmb86a16.c776 (*(V + 30 + v) > *(V + 30 + v - 1)) && in swp_freq_calcuation()
785 (*(V + 30 + v - 1) > *(V + 30 + v)) && in swp_freq_calcuation()
801 (*(V + 30 + v) > *(V + 30 + v - 2)) && in swp_freq_calcuation()
806 if (*(V + 30 + v) >= *(V + 30 + v - 1)) { in swp_freq_calcuation()
830 (*(V + 30 + v + 1) > *(V + 30 + v)) && in swp_freq_calcuation()
839 (*(V + 30 + v) > *(V + 30 + v + 1)) && in swp_freq_calcuation()
840 (*(V + 30 + v) > *(V + 30 + v + 2)) && in swp_freq_calcuation()
849 (*(V + 30 + v + 1) > *(V + 30 + v)) && in swp_freq_calcuation()
865 (*(V + 30 + v) > *(V + 30 + v + 2)) && in swp_freq_calcuation()
867 (*(V + 30 + v) > *(V + 30 + v + 3)) && in swp_freq_calcuation()
[all …]
/linux/tools/build/tests/
A 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
53 make -C ex V=1 >> ex.out 2>&1
[all …]
/linux/drivers/gpu/drm/nouveau/
A Dnv50_fbcon.c56 NVDEF(NV502D, SET_OPERATION, V, ROP_AND)); in nv50_fbcon_fillrect()
68 NVDEF(NV502D, SET_OPERATION, V, SRCCOPY)); in nv50_fbcon_fillrect()
214 NVVAL(NV502D, SET_DST_FORMAT, V, format), in nv50_fbcon_accel_init()
217 NVDEF(NV502D, SET_DST_MEMORY_LAYOUT, V, PITCH)); in nv50_fbcon_accel_init()
230 NVVAL(NV502D, SET_SRC_FORMAT, V, format), in nv50_fbcon_accel_init()
233 NVDEF(NV502D, SET_SRC_MEMORY_LAYOUT, V, PITCH)); in nv50_fbcon_accel_init()
246 NVDEF(NV502D, SET_CLIP_ENABLE, V, FALSE)); in nv50_fbcon_accel_init()
249 NVVAL(NV502D, SET_ROP, V, 0x55)); in nv50_fbcon_accel_init()
252 NVDEF(NV502D, SET_OPERATION, V, SRCCOPY)); in nv50_fbcon_accel_init()
261 NVDEF(NV502D, RENDER_SOLID_PRIM_MODE, V, RECTS), in nv50_fbcon_accel_init()
[all …]
A Dnvc0_fbcon.c56 NVDEF(NV902D, SET_OPERATION, V, ROP_AND)); in nvc0_fbcon_fillrect()
68 NVDEF(NV902D, SET_OPERATION, V, SRCCOPY)); in nvc0_fbcon_fillrect()
212 NVVAL(NV902D, SET_DST_FORMAT, V, format), in nvc0_fbcon_accel_init()
215 NVDEF(NV902D, SET_DST_MEMORY_LAYOUT, V, PITCH)); in nvc0_fbcon_accel_init()
228 NVVAL(NV902D, SET_SRC_FORMAT, V, format), in nvc0_fbcon_accel_init()
231 NVDEF(NV902D, SET_SRC_MEMORY_LAYOUT, V, PITCH)); in nvc0_fbcon_accel_init()
244 NVDEF(NV902D, SET_CLIP_ENABLE, V, FALSE)); in nvc0_fbcon_accel_init()
247 NVVAL(NV902D, SET_ROP, V, 0x55)); in nvc0_fbcon_accel_init()
250 NVDEF(NV902D, SET_OPERATION, V, SRCCOPY)); in nvc0_fbcon_accel_init()
259 NVDEF(NV902D, RENDER_SOLID_PRIM_MODE, V, RECTS), in nvc0_fbcon_accel_init()
[all …]
/linux/Documentation/devicetree/bindings/media/
A Dsamsung-s5k5baf.txt8 - vdda-supply : analog power supply 2.8V (2.6V to 3.0V);
9 - vddreg-supply : regulator input power supply 1.8V (1.7V to 1.9V)
10 or 2.8V (2.6V to 3.0);
11 - vddio-supply : I/O power supply 1.8V (1.65V to 1.95V)
12 or 2.8V (2.5V to 3.1V);
/linux/arch/arm/boot/dts/
A Dexynos3250-artik5.dtsi97 regulator-name = "VLDO1_1.0V";
105 regulator-name = "VLDO2_1.2V";
116 regulator-name = "VLDO3_1.8V";
124 regulator-name = "VLDO4_1.8V";
132 regulator-name = "VLDO5_1.0V";
140 regulator-name = "VLDO6_1.0V";
151 regulator-name = "VLDO7_1.8V";
159 regulator-name = "VLDO8_3.0V";
167 regulator-name = "VLDO9_1.2V";
174 regulator-name = "VLDO10_1.0V";
[all …]
A Ds5pv210-aquila.dts45 regulator-name = "V_TF_2.8V";
90 regulator-name = "VALIVE_1.1V";
104 regulator-name = "VADC_3.3V";
110 regulator-name = "VTF_2.8V";
117 regulator-name = "VCC_3.3V";
124 regulator-name = "VCC_3.0V";
146 regulator-name = "VPLL_1.1V";
168 regulator-name = "CAM_A_2.8V";
203 regulator-name = "VARM_1.2V";
210 regulator-name = "VINT_1.2V";
[all …]
A Dexynos4210-origen.dts39 regulator-name = "VMEM_VDD_2.8V";
188 regulator-name = "VDD_ABB_3.3V";
201 regulator-name = "VMIPI_1.1V";
207 regulator-name = "VDD_RTC_1.8V";
214 regulator-name = "VMIPI_1.8V";
221 regulator-name = "VDD_AUD_1.8V";
227 regulator-name = "VADC_3.3V";
240 regulator-name = "VDD_PLL_1.1V";
260 regulator-name = "VDD_SWB_3.3V";
267 regulator-name = "VDD_MIF_1.2V";
[all …]
A Ds5pv210-goni.dts47 regulator-name = "V_TF_2.8V";
101 regulator-name = "VALIVE_1.1V";
115 regulator-name = "VADC_3.3V";
121 regulator-name = "VTF_2.8V";
127 regulator-name = "VCC_3.3V";
133 regulator-name = "VLCD_1.8V";
152 regulator-name = "VPLL_1.1V";
171 regulator-name = "CAM_A_2.8V";
202 regulator-name = "VARM_1.2V";
208 regulator-name = "VINT_1.2V";
[all …]
A Daspeed-bmc-opp-zaius.dts313 /* CPU0 PRM 0.7V */
314 /* CPU0 PRM 1.2V CH03 */
315 /* CPU0 PRM 0.8V */
316 /* CPU0 PRM 1.2V CH47 */
322 /* CPU1 PRM 0.7V */
323 /* CPU1 PRM 1.2V CH03 */
324 /* CPU1 PRM 0.8V */
325 /* CPU1 PRM 1.2V CH47 */
393 /* CPU0 VR ISL68137 0.7V, 0.96V PMBUS @64h */
395 /* CPU0 VR ISL68137 0.8V PMBUS @60h */
[all …]
/linux/Documentation/translations/zh_CN/riscv/
A Dpatch-acceptance.rst18 RISC-V指令集体系结构是公开开发的:
20 生更改---有时以不兼容的方式对以前的草案进行更改。这种灵活性可能会给RISC-V Linux
22 们希望推广同样的规则到即将被内核合并的RISC-V相关代码。
26 我们仅接受相关标准已经被RISC-V基金会标准为“已批准”或“已冻结”的扩展或模块的补丁。
29 此外,RISC-V规范允许爱好者创建自己的自定义扩展。这些自定义拓展不需要通过RISC-V
30 基金会的任何审核或批准。为了避免将爱好者一些特别的RISC-V拓展添加进内核代码带来
31 的维护复杂性和对性能的潜在影响,我们将只接受RISC-V基金会正式冻结或批准的的扩展
/linux/Documentation/fb/
A Dviafb.modes29 # D: 25.175 MHz, H: 31.469 kHz, V: 59.94 Hz
32 # D: 24.823 MHz, H: 39.780 kHz, V: 60.00 Hz
53 # D: 31.50 MHz, H: 37.500 kHz, V: 75.00 Hz
74 # D: 36.000 MHz, H: 43.269 kHz, V: 85.00 Hz
95 # D: 43.163 MHz, H: 50.900 kHz, V: 100.00 Hz
116 # D: 52.406 MHz, H: 61.800 kHz, V: 120.00 Hz
137 # D: 26.880 MHz, H: 30.000 kHz, V: 60.24 Hz
158 # D: 29.500 MHz, H: 29.738 kHz, V: 60.00 Hz
179 # D: 32.668 MHz, H: 35.820 kHz, V: 60.00 Hz
200 # D: 40.00 MHz, H: 37.879 kHz, V: 60.32 Hz
[all …]
/linux/Documentation/devicetree/bindings/sound/
A Dts3a227e.txt18 2.1V/2.2V/2.3V/2.4V/2.5V/2.6V/2.7V/2.8V
19 Default value is "1" (2.2V).
A Dcs35l32.txt25 3 = Boost voltage fixed at 5 V.
40 0 = 3.1V
41 1 = 3.2V
42 2 = 3.3V (Default)
43 3 = 3.4V
46 0 = 3.1V
47 1 = 3.2V
48 2 = 3.3V
49 3 = 3.4V (Default)
50 4 = 3.5V
[all …]
/linux/drivers/comedi/drivers/tests/
A Dni_routes_test.c29 #define V(x) ((x) | 0x80) macro
118 [x1] = V(x1), [x2] = V(x2), [x3] = V(x3), [x4] = V(x4), \
119 [x5] = V(x5), [x6] = V(x6), [x7] = V(x7), [x8] = V(x8), \
120 [x9] = V(x9),
135 [B(NI_RGOUT0)] = {[B(rgout0_src0)] = V(0),
136 [B(rgout0_src1)] = V(1)},
137 [B(NI_RTSI_BRD(0))] = {[B(brd0_src0)] = V(0),
138 [B(brd0_src1)] = V(1)},
140 [B(brd1_src1)] = V(1)},
142 [B(brd2_src1)] = V(1)},
[all …]
/linux/Documentation/devicetree/bindings/regulator/
A Dltc3589.txt21 0.3625 V to 0.75 V in 12.5 mV steps. The output voltage thus ranges between
22 0.3625 * (1 + R1/R2) V and 0.75 * (1 + R1/R2) V. Regulators bb-out and ldo1
23 have a fixed 0.8 V reference and thus output 0.8 * (1 + R1/R2) V. The ldo3
24 regulator is fixed to 1.8 V on LTC3589 and to 2.8 V on LTC3589-1,2. The ldo4
25 regulator can output between 1.8 V and 3.3 V on LTC3589 and between 1.2 V
26 and 3.2 V on LTC3589-1,2 in four steps. The ldo1 standby regulator can not
/linux/drivers/hv/
A DKconfig3 menu "Microsoft Hyper-V guest support"
6 tristate "Microsoft Hyper-V client drivers"
13 Select this option to run Linux as a Hyper-V client operating
20 tristate "Microsoft Hyper-V Utilities driver"
24 Select this option to enable the Hyper-V Utilities.
27 tristate "Microsoft Hyper-V Balloon driver"
31 Select this option to enable Hyper-V Balloon driver.
/linux/Documentation/devicetree/bindings/display/bridge/
A Dchipone,icn6211.yaml31 description: A 1.8V/2.5V/3.3V supply that power the MIPI RX.
34 description: A 1.8V/2.5V/3.3V supply that power the PLL.
37 description: A 1.8V/2.5V/3.3V supply that power the RGB output.

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