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/linux/Documentation/userspace-api/media/v4l/
H A Dpixfmt-rgb.rst46 - 'r', 'g' and 'b' denote bits of the red, green and blue components
57 noted by the presence of bit 31 in the 4CC value), and on the number of bits
59 word [15:0] laid out at as [R\ :sub:`4` R\ :sub:`3` R\ :sub:`2` R\ :sub:`1`
60 R\ :sub:`0` G\ :sub:`5` G\ :sub:`4` G\ :sub:`3` G\ :sub:`2` G\ :sub:`1`
61 G\ :sub:`0` B\ :sub:`4` B\ :sub:`3` B\ :sub:`2` B\ :sub:`1` B\ :sub:`0`], and
62 stored in memory in two bytes, [R\ :sub:`4` R\ :sub:`3` R\ :sub:`2` R\ :sub:`1`
63 R\ :sub:`0` G\ :sub:`5` G\ :sub:`4` G\ :sub:`3`] followed by [G\ :sub:`2`
64 G\ :sub:`1` G\ :sub:`0` B\ :sub:`4` B\ :sub:`3` B\ :sub:`2` B\ :sub:`1`
91 - 4
100 - 4
[all …]
H A Dpixfmt-srggb10-ipu3.rst41 - G\ :sub:`0001low`\ (bits 7--2)
44 - B\ :sub:`0002low`\ (bits 7--4)
46 G\ :sub:`0001high`\ (bits 3--0)
47 - G\ :sub:`0003low`\ (bits 7--6)
50 * - start + 4:
51 - G\ :sub:`0003high`
53 - G\ :sub:`0005low`\ (bits 7--2)
56 - B\ :sub:`0006low`\ (bits 7--4)
58 G\ :sub:`0005high`\ (bits 3--0)
60 - G\ :sub:`0007low`\ (bits 7--6)
[all …]
H A Dmetafmt-vsp1-hgo.rst32 - In *64 bins maximum mode*, the HGO operates on the maximum of the (R, G, B)
37 - In *256 bins maximum mode*, the HGO operates on the maximum of the (R, G, B)
50 - :cspan:`4` Memory
61 * - 4
63 - G/Y/S max [7:0]
65 - G/Y/S min [7:0]
72 - :cspan:`4` R/Cr/H sum [31:0]
74 - :cspan:`4` G/Y/S sum [31:0]
76 - :cspan:`4` B/Cb/V sum [31:0]
78 - :cspan:`4` R/Cr/H bin 0 [31:0]
[all …]
H A Dpixfmt-srggb14p.rst58 - G\ :sub:`01high`
62 - G\ :sub:`03high`
64 - G\ :sub:`01low bits 1--0`\ (bits 7--6)
68 - B\ :sub:`02low bits 3--0`\ (bits 7--4)
70 G\ :sub:`01low bits 5--2`\ (bits 3--0)
72 - G\ :sub:`03low bits 5--0`\ (bits 7--2)
74 B\ :sub:`02low bits 5--4`\ (bits 1--0)
80 - G\ :sub:`10high`
84 - G\ :sub:`12high`
90 G\ :sub:`10low bits 5--0`\ (bits 5--0)
[all …]
H A Dpixfmt-srggb12p.rst46 - G\ :sub:`01high`
47 - G\ :sub:`01low`\ (bits 7--4)
51 - G\ :sub:`03high`
52 - G\ :sub:`03low`\ (bits 7--4)
57 - G\ :sub:`10high`
59 - R\ :sub:`11low`\ (bits 7--4)
61 G\ :sub:`10low`\ (bits 3--0)
62 - G\ :sub:`12high`
64 - R\ :sub:`13low`\ (bits 7--4)
66 G\ :sub:`12low`\ (bits 3--0)
[all …]
H A Dmt2110t.svg20 …830,59 829,78 828,97 826,132 825,185 L 822,185 C 781,110 733,58 679,27 624,-4 557,-20 476,-20 357,…
33 …<glyph unicode="4" horiz-adv-x="1060" d="M 881,319 L 881,0 711,0 711,319 47,319 47,459 692,1409 88…
41 …<g ooo:slide="id1" ooo:id-list="id3 id4 id5 id6 id7 id8 id9 id10 id11 id12 id13 id14 id15 id16 id1…
44 <g id="bullet-char-template-57356" transform="scale(0.00048828125,-0.00048828125)">
45 <path d="M 580,1141 L 1163,571 580,0 -4,571 580,1141 Z"/>
46 </g>
47 <g id="bullet-char-template-57354" transform="scale(0.00048828125,-0.00048828125)">
49 </g>
50 <g id="bullet-char-template-10146" transform="scale(0.00048828125,-0.00048828125)">
52 </g>
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H A Dsubdev-image-processing-full.svg56 <g
73 </g>
81 <g
102 </g>
103 <g
124 </g>
125 <g
143 </g>
144 <g
162 </g>
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H A Dpixfmt-srggb10p.rst25 bytes. Each of the first 4 bytes contain the 8 high order bits
46 - G\ :sub:`01high`
48 - G\ :sub:`03high`
49 - G\ :sub:`03low`\ (bits 7--6) B\ :sub:`02low`\ (bits 5--4)
51 G\ :sub:`01low`\ (bits 3--2) B\ :sub:`00low`\ (bits 1--0)
53 - G\ :sub:`10high`
55 - G\ :sub:`12high`
57 - R\ :sub:`13low`\ (bits 7--6) G\ :sub:`12low`\ (bits 5--4)
59 R\ :sub:`11low`\ (bits 3--2) G\ :sub:`10low`\ (bits 1--0)
62 - G\ :sub:`21high`
[all …]
/linux/drivers/gpu/drm/exynos/
H A Dregs-gsc.h7 * Register definition file for Samsung G-Scaler driver
13 /* G-Scaler enable */
26 #define GSC_ENABLE_ON_CLEAR_MASK (1 << 4)
27 #define GSC_ENABLE_ON_CLEAR_ONESHOT (1 << 4)
33 /* G-Scaler S/W reset */
37 /* G-Scaler IRQ */
45 /* G-Scaler input control */
55 #define GSC_IN_ROT_90 (4 << 16)
75 #define GSC_IN_YUV422_1P (4 << 8)
78 #define GSC_IN_TILE_TYPE_MASK (1 << 4)
[all …]
/linux/drivers/media/platform/samsung/exynos-gsc/
H A Dgsc-regs.h6 * Register definition file for Samsung G-Scaler driver
12 /* G-Scaler enable */
18 /* G-Scaler S/W reset */
22 /* G-Scaler IRQ */
29 /* G-Scaler input control */
35 #define GSC_IN_ROT_90 (4 << 16)
55 #define GSC_IN_YUV422_1P (4 << 8)
58 #define GSC_IN_TILE_TYPE_MASK (1 << 4)
59 #define GSC_IN_TILE_C_16x8 (0 << 4)
65 /* G-Scaler source image size */
[all …]
/linux/lib/crc/x86/
H A Dcrc-pclmul-consts.h12 * G(x) = x^16 + x^15 + x^11 + x^9 + x^8 + x^7 + x^5 + x^4 + x^2 + x^1 + x^0
24 .bswap_mask = {15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0},
26 0xdccf000000000000, /* LO64_TERMS: (x^2000 mod G) * x^48 */
27 0x4b0b000000000000, /* HI64_TERMS: (x^2064 mod G) * x^48 */
30 0x9d9d000000000000, /* LO64_TERMS: (x^976 mod G) * x^48 */
31 0x7cf5000000000000, /* HI64_TERMS: (x^1040 mod G) * x^48 */
34 0x044c000000000000, /* LO64_TERMS: (x^464 mod G) * x^48 */
35 0xe658000000000000, /* HI64_TERMS: (x^528 mod G) * x^48 */
38 0x6ee3000000000000, /* LO64_TERMS: (x^208 mod G) * x^48 */
39 0xe7b5000000000000, /* HI64_TERMS: (x^272 mod G) * x^48 */
[all …]
/linux/drivers/gpu/drm/msm/dp/
H A Ddp_utils.c14 u8 c[4]; in msm_dp_utils_get_g0_value()
15 u8 g[4]; in msm_dp_utils_get_g0_value() local
19 for (i = 0; i < 4; i++) in msm_dp_utils_get_g0_value()
22 g[0] = c[3]; in msm_dp_utils_get_g0_value()
23 g[1] = c[0] ^ c[3]; in msm_dp_utils_get_g0_value()
24 g[2] = c[1]; in msm_dp_utils_get_g0_value()
25 g[3] = c[2]; in msm_dp_utils_get_g0_value()
27 for (i = 0; i < 4; i++) in msm_dp_utils_get_g0_value()
28 ret_data = ((g[i] & 0x01) << i) | ret_data; in msm_dp_utils_get_g0_value()
35 u8 c[4]; in msm_dp_utils_get_g1_value()
[all …]
/linux/Documentation/sound/soc/
H A Ddapm-graph.svg6 <!-- Title: G Pages: 1 -->
9 <g id="graph0" class="graph" transform="scale(1 1) rotate(0) translate(4 626)">
10 <title>G</title>
11 <polygon fill="white" stroke="transparent" points="-4,4 -4,-626 896,-626 896,4 -4,4"/>
12 <g id="clust1" class="cluster">
16 </g>
17 <g id="clust2" class="cluster">
21 </g>
22 <g id="clust5" class="cluster">
26 </g>
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/linux/include/dt-bindings/memory/
H A Dmt8186-memory-port.h15 * 0 ~ 4G; 4G ~ 8G; 8G ~ 12G; 12G ~ 16G, we could adjust these masters
18 * b) The iova of any master can NOT cross the 4G/8G/12G boundary.
23 * disp 0 ~ 4G larb0/1/2
24 * vcodec 4G ~ 8G larb4/7
25 * cam/mdp 8G ~ 12G the other larbs.
26 * N/A 12G ~ 16G
28 * CCU1 0x24400_0000 ~ 0x247ff_ffff larb14: port 4/5
43 #define IOMMU_PORT_L1_DISP_FAKE1 MTK_M4U_ID(1, 4)
50 #define IOMMU_PORT_L2_DISP_FAKE0 MTK_M4U_ID(2, 4)
52 /* LARB 4 -- VDEC */
[all …]
H A Dmediatek,mt8189-memory-port.h15 #define SMI_L7_ID (4)
27 * 0 ~ 4G; 4G ~ 8G; 8G ~ 12G; 12G ~ 16G, we could adjust these masters
30 * b) The iova of any master can NOT cross the 4G/8G/12G boundary.
35 * disp/mdp 0 ~ 4G larb0/1/2
36 * vcodec 4G ~ 8G larb4/7
37 * imgsys/cam/ipesys 8G ~ 12G the other larbs.
38 * N/A 12G ~ 16G
46 #define M4U_L0_P4_DISP_OVL1_4L_RDMA3 MTK_M4U_ID(SMI_L0_ID, 4)
56 #define M4U_L1_P4_DISP_OVL0_4L_RDMA3 MTK_M4U_ID(SMI_L1_ID, 4)
66 #define M4U_L2_P4_MDP_DUMMY0 MTK_M4U_ID(SMI_L2_ID, 4)
[all …]
/linux/drivers/net/ethernet/microchip/lan966x/
H A Dlan966x_regs.h35 #define AFI_PORT_FRM_OUT(g) __REG(TARGET_AFI, 0, 1, 98816, g, 10, 8, 0, 0, 1, 4) argument
44 #define AFI_PORT_CFG(g) __REG(TARGET_AFI, 0, 1, 98816, g, 10, 8, 4, 0, 1, 4) argument
59 #define ANA_ADVLEARN __REG(TARGET_ANA, 0, 1, 29824, 0, 1, 244, 0, 0, 1, 4)
68 #define ANA_VLANMASK __REG(TARGET_ANA, 0, 1, 29824, 0, 1, 244, 8, 0, 1, 4)
71 #define ANA_ANAINTR __REG(TARGET_ANA, 0, 1, 29824, 0, 1, 244, 16, 0, 1, 4)
86 #define ANA_AUTOAGE __REG(TARGET_ANA, 0, 1, 29824, 0, 1, 244, 44, 0, 1, 4)
95 #define ANA_MIRRORPORTS __REG(TARGET_ANA, 0, 1, 29824, 0, 1, 244, 60, 0, 1, 4)
104 #define ANA_EMIRRORPORTS __REG(TARGET_ANA, 0, 1, 29824, 0, 1, 244, 64, 0, 1, 4)
113 #define ANA_FLOODING(r) __REG(TARGET_ANA, 0, 1, 29824, 0, 1, 244, 68, r, 8, 4)
134 #define ANA_FLOODING_IPMC __REG(TARGET_ANA, 0, 1, 29824, 0, 1, 244, 100, 0, 1, 4)
[all …]
/linux/lib/crypto/x86/
H A Dsha256-avx2-asm.S48 # This code schedules 2 blocks at a time, with 4 lanes per block
105 g = %r10d define
115 _XFER_SIZE = 2*64*4 # 2 blocks, 64 rounds, 4 bytes/round
143 h = g
144 g = f define
162 vpalignr $4, X2, X3, XTMP0 # XTMP0 = W[-7]
167 xor g, y2 # y2 = f^g # CH
171 and e, y2 # y2 = (f^g)&e # CH
177 vpalignr $4, X0, X1, XTMP1 # XTMP1 = W[-15]
181 xor g, y2 # y2 = CH = ((f^g)&e)^g # CH
[all …]
H A Dsha256-avx-asm.S47 # This code schedules 1 block at a time, with 4 lanes per block
110 g = %r10d define
143 h = g
144 g = f define
155 ## compute W[-16] + W[-7] 4 at a time
160 vpalignr $4, X2, X3, XTMP0 # XTMP0 = W[-7]
166 xor g, y2 # y2 = f^g
169 and e, y2 # y2 = (f^g)&e
172 vpalignr $4, X0, X1, XTMP1 # XTMP1 = W[-15]
175 xor g, y2 # y2 = CH = ((f^g)&e)^g
[all …]
H A Dsha256-ssse3-asm.S103 g = %r10d define
137 h = g
138 g = f define
149 ## compute W[-16] + W[-7] 4 at a time
154 palignr $4, X2, XTMP0 # XTMP0 = W[-7]
161 xor g, y2 # y2 = f^g
164 and e, y2 # y2 = (f^g)&e
167 palignr $4, X0, XTMP1 # XTMP1 = W[-15]
170 xor g, y2 # y2 = CH = ((f^g)&e)^g
202 xor g, y2 # y2 = f^g
[all …]
/linux/drivers/platform/raspberrypi/vchiq-mmal/
H A Dmmal-encodings.h16 #define MMAL_ENCODING_H264 MMAL_FOURCC('H', '2', '6', '4')
18 #define MMAL_ENCODING_MP4V MMAL_FOURCC('M', 'P', '4', 'V')
30 #define MMAL_ENCODING_MJPEG MMAL_FOURCC('M', 'J', 'P', 'G')
32 #define MMAL_ENCODING_JPEG MMAL_FOURCC('J', 'P', 'E', 'G')
33 #define MMAL_ENCODING_GIF MMAL_FOURCC('G', 'I', 'F', ' ')
34 #define MMAL_ENCODING_PNG MMAL_FOURCC('P', 'N', 'G', ' ')
36 #define MMAL_ENCODING_TGA MMAL_FOURCC('T', 'G', 'A', ' ')
39 #define MMAL_ENCODING_I420 MMAL_FOURCC('I', '4', '2', '0')
40 #define MMAL_ENCODING_I420_SLICE MMAL_FOURCC('S', '4', '2', '0')
42 #define MMAL_ENCODING_I422 MMAL_FOURCC('I', '4', '2', '2')
[all …]
/linux/lib/crc/riscv/
H A Dcrc-clmul-consts.h19 * G(x) = x^16 + x^15 + x^11 + x^9 + x^8 + x^7 + x^5 + x^4 + x^2 + x^1 + x^0
23 .fold_across_2_longs_const_hi = 0x0000000000001faa, /* x^192 mod G */
24 .fold_across_2_longs_const_lo = 0x000000000000a010, /* x^128 mod G */
25 .barrett_reduction_const_1 = 0xfb2d2bfc0e99d245, /* floor(x^79 / G) */
26 .barrett_reduction_const_2 = 0x0000000000008bb7, /* G - x^16 */
28 .fold_across_2_longs_const_hi = 0x00005890, /* x^96 mod G */
29 .fold_across_2_longs_const_lo = 0x0000f249, /* x^64 mod G */
30 .barrett_reduction_const_1 = 0xfb2d2bfc, /* floor(x^47 / G) */
31 .barrett_reduction_const_2 = 0x00008bb7, /* G - x^16 */
37 * G(x) = x^32 + x^26 + x^23 + x^22 + x^16 + x^12 + x^11 + x^10 + x^8 + x^7 +
[all …]
/linux/drivers/iio/accel/
H A Dbma400.h56 #define BMA400_INT_STAT_ENG_OVRRUN_MASK BIT(4)
87 #define BMA400_ACC_CONFIG1_NP_OSR_MASK GENMASK(5, 4)
123 #define BMA400_GENINT_CONFIG0_DATA_SRC_MASK BIT(4)
161 #define BMA400_TAP_CONFIG1_QUIETDT_MASK GENMASK(5, 4)
162 #define BMA400_TAP_TIM_LIST_LEN 4
167 * converting to micro values for +-2g range.
169 * For +-2g - 1 LSB = 0.976562 milli g = 0.009576 m/s^2
170 * For +-4g - 1 LSB = 1.953125 milli g = 0.019153 m/s^2
171 * For +-16g - 1 LSB = 7.8125 milli g = 0.076614 m/s^2
177 * Scale values for +-2g, +-4g, +-8g and +-16g are populated into bma400_scales
[all …]
/linux/tools/testing/selftests/ublk/
H A Dtest_stress_05.sh24 --rw=readwrite --iodepth=128 --size="${size}" --numjobs=4 \
26 sleep 4
53 ublk_io_and_remove 8G -t null -q 4 -g -r 1 -i "$reissue" &
54 ublk_io_and_remove 256M -t loop -q 4 -g -r 1 -i "$reissue" "${UBLK_BACKFILES[0]}" &
60 ublk_io_and_remove 8G -t null -q 4 -z -r 1 -i "$reissue" &
61 ublk_io_and_remove 256M -t loop -q 4 -z -r 1 -i "$reissue" "${UBLK_BACKFILES[1]}" &
68 ublk_io_and_remove 8G -t null -q 4 --auto_zc -r 1 -i "$reissue" &
69 ublk_io_and_remove 256M -t loop -q 4 --auto_zc -r 1 -i "$reissue" "${UBLK_BACKFILES[1]}" &
70 ublk_io_and_remove 8G -t null -q 4 -z --auto_zc --auto_zc_fallback -r 1 -i "$reissue" &
76 ublk_io_and_remove 8G -t null -q 4 --nthreads 8 --per_io_tasks -r 1 -i "$reissue" &
[all …]
/linux/drivers/net/ethernet/brocade/bna/
H A Dbfa_defs_mfg_comm.h27 #define BFA_MFG_HDR_LEN 4
30 #define STRSZ(_n) (((_n) + 4) & ~3)
35 BFA_MFG_TYPE_FC8P2 = 825, /*!< 8G 2port FC card */
36 BFA_MFG_TYPE_FC8P1 = 815, /*!< 8G 1port FC card */
37 BFA_MFG_TYPE_FC4P2 = 425, /*!< 4G 2port FC card */
38 BFA_MFG_TYPE_FC4P1 = 415, /*!< 4G 1port FC card */
39 BFA_MFG_TYPE_CNA10P2 = 1020, /*!< 10G 2port CNA card */
40 BFA_MFG_TYPE_CNA10P1 = 1010, /*!< 10G 1port CNA card */
65 CB_GPIO_FC8P2 = (2), /*!< 8G 2port FC card */
66 CB_GPIO_FC8P1 = (3), /*!< 8G 1port FC card */
[all …]
/linux/lib/crypto/powerpc/
H A Dcurve25519.h19 asmlinkage void x25519_fe51_mul(fe51 h, const fe51 f, const fe51 g);
32 static void fadd(fe51 h, const fe51 f, const fe51 g) in fadd() argument
34 h[0] = f[0] + g[0]; in fadd()
35 h[1] = f[1] + g[1]; in fadd()
36 h[2] = f[2] + g[2]; in fadd()
37 h[3] = f[3] + g[3]; in fadd()
38 h[4] = f[4] + g[4]; in fadd()
49 static void fsub(fe51 h, const fe51 f, const fe51 g) in fsub() argument
51 h[0] = (f[0] + ((prime51[0] * 2))) - g[0]; in fsub()
52 h[1] = (f[1] + ((prime51[1] * 2))) - g[1]; in fsub()
[all …]

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