| /OK3568_Linux_fs/external/common_algorithm/misc/lib/arm-rockchip830-linux-uclibcgnueabihf/ |
| HD | librkaudio.so | ... %s-%d: Success %s 0x%lx 0x%lx 0x%lx ... |
| /OK3568_Linux_fs/prebuilts/gcc/linux-x86/arm/gcc-arm-10.3-2021.07-x86_64-arm-none-linux-gnueabihf/arm-none-linux-gnueabihf/libc/usr/lib/gconv/ |
| HD | GB18030.so | ... x x x x x x x x x x x x x x x x x x x x x ... |
| HD | IBM1388.so | ... O P Q R $ S T U V W X Y Z 0 1 2 3 4 5 6 7 ... |
| HD | EUC-JP-MS.so | ... - 0 0 " B 7 7 6 6 8 8 5 5 : : ; ; = = < > > ... |
| HD | libCNS.so | ... su s{ stsw vO vTvU vN vR vQ vSvP x? x>sv x= x< ys zrzp ... |
| HD | libJISX0213.so | ... *q*h*'+ m*-+5+f* +;+x* r* ... |
| HD | libJIS.so | ... 6r0& 46 X; XCXB XGXHXFXIXAXE XJ XK X@;| XDBV92X2?5 XX Ji XNXOXP XW ... |
| /OK3568_Linux_fs/external/common_algorithm/misc/lib/arm-rockchip830-linux-gnueabihf/ |
| HD | librkaudio.so | ... %s-%d: Success %s 0x%lx 0x%lx 0x%lx ... |
| /OK3568_Linux_fs/buildroot/dl/qt5location/git/src/3rdparty/mapbox-gl-native/deps/boost/1.65.1/include/boost/math/tools/detail/ |
| H A D | rational_horner1_17.hpp | 27 inline V evaluate_rational_c_imp(const T* a, const U* b, const V& x, const mpl::int_<2>*) BOOST_MAT… in evaluate_rational_c_imp() argument 29 if(x <= 1) in evaluate_rational_c_imp() 30 return static_cast<V>((a[1] * x + a[0]) / (b[1] * x + b[0])); in evaluate_rational_c_imp() 33 V z = 1 / x; in evaluate_rational_c_imp() 39 inline V evaluate_rational_c_imp(const T* a, const U* b, const V& x, const mpl::int_<3>*) BOOST_MAT… in evaluate_rational_c_imp() argument 41 if(x <= 1) in evaluate_rational_c_imp() 42 return static_cast<V>(((a[2] * x + a[1]) * x + a[0]) / ((b[2] * x + b[1]) * x + b[0])); in evaluate_rational_c_imp() 45 V z = 1 / x; in evaluate_rational_c_imp() 51 inline V evaluate_rational_c_imp(const T* a, const U* b, const V& x, const mpl::int_<4>*) BOOST_MAT… in evaluate_rational_c_imp() argument 53 if(x <= 1) in evaluate_rational_c_imp() [all …]
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| H A D | rational_horner1_20.hpp | 27 inline V evaluate_rational_c_imp(const T* a, const U* b, const V& x, const mpl::int_<2>*) BOOST_MAT… in evaluate_rational_c_imp() argument 29 if(x <= 1) in evaluate_rational_c_imp() 30 return static_cast<V>((a[1] * x + a[0]) / (b[1] * x + b[0])); in evaluate_rational_c_imp() 33 V z = 1 / x; in evaluate_rational_c_imp() 39 inline V evaluate_rational_c_imp(const T* a, const U* b, const V& x, const mpl::int_<3>*) BOOST_MAT… in evaluate_rational_c_imp() argument 41 if(x <= 1) in evaluate_rational_c_imp() 42 return static_cast<V>(((a[2] * x + a[1]) * x + a[0]) / ((b[2] * x + b[1]) * x + b[0])); in evaluate_rational_c_imp() 45 V z = 1 / x; in evaluate_rational_c_imp() 51 inline V evaluate_rational_c_imp(const T* a, const U* b, const V& x, const mpl::int_<4>*) BOOST_MAT… in evaluate_rational_c_imp() argument 53 if(x <= 1) in evaluate_rational_c_imp() [all …]
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| H A D | rational_horner1_16.hpp | 27 inline V evaluate_rational_c_imp(const T* a, const U* b, const V& x, const mpl::int_<2>*) BOOST_MAT… in evaluate_rational_c_imp() argument 29 if(x <= 1) in evaluate_rational_c_imp() 30 return static_cast<V>((a[1] * x + a[0]) / (b[1] * x + b[0])); in evaluate_rational_c_imp() 33 V z = 1 / x; in evaluate_rational_c_imp() 39 inline V evaluate_rational_c_imp(const T* a, const U* b, const V& x, const mpl::int_<3>*) BOOST_MAT… in evaluate_rational_c_imp() argument 41 if(x <= 1) in evaluate_rational_c_imp() 42 return static_cast<V>(((a[2] * x + a[1]) * x + a[0]) / ((b[2] * x + b[1]) * x + b[0])); in evaluate_rational_c_imp() 45 V z = 1 / x; in evaluate_rational_c_imp() 51 inline V evaluate_rational_c_imp(const T* a, const U* b, const V& x, const mpl::int_<4>*) BOOST_MAT… in evaluate_rational_c_imp() argument 53 if(x <= 1) in evaluate_rational_c_imp() [all …]
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| H A D | rational_horner1_19.hpp | 27 inline V evaluate_rational_c_imp(const T* a, const U* b, const V& x, const mpl::int_<2>*) BOOST_MAT… in evaluate_rational_c_imp() argument 29 if(x <= 1) in evaluate_rational_c_imp() 30 return static_cast<V>((a[1] * x + a[0]) / (b[1] * x + b[0])); in evaluate_rational_c_imp() 33 V z = 1 / x; in evaluate_rational_c_imp() 39 inline V evaluate_rational_c_imp(const T* a, const U* b, const V& x, const mpl::int_<3>*) BOOST_MAT… in evaluate_rational_c_imp() argument 41 if(x <= 1) in evaluate_rational_c_imp() 42 return static_cast<V>(((a[2] * x + a[1]) * x + a[0]) / ((b[2] * x + b[1]) * x + b[0])); in evaluate_rational_c_imp() 45 V z = 1 / x; in evaluate_rational_c_imp() 51 inline V evaluate_rational_c_imp(const T* a, const U* b, const V& x, const mpl::int_<4>*) BOOST_MAT… in evaluate_rational_c_imp() argument 53 if(x <= 1) in evaluate_rational_c_imp() [all …]
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| H A D | rational_horner1_15.hpp | 27 inline V evaluate_rational_c_imp(const T* a, const U* b, const V& x, const mpl::int_<2>*) BOOST_MAT… in evaluate_rational_c_imp() argument 29 if(x <= 1) in evaluate_rational_c_imp() 30 return static_cast<V>((a[1] * x + a[0]) / (b[1] * x + b[0])); in evaluate_rational_c_imp() 33 V z = 1 / x; in evaluate_rational_c_imp() 39 inline V evaluate_rational_c_imp(const T* a, const U* b, const V& x, const mpl::int_<3>*) BOOST_MAT… in evaluate_rational_c_imp() argument 41 if(x <= 1) in evaluate_rational_c_imp() 42 return static_cast<V>(((a[2] * x + a[1]) * x + a[0]) / ((b[2] * x + b[1]) * x + b[0])); in evaluate_rational_c_imp() 45 V z = 1 / x; in evaluate_rational_c_imp() 51 inline V evaluate_rational_c_imp(const T* a, const U* b, const V& x, const mpl::int_<4>*) BOOST_MAT… in evaluate_rational_c_imp() argument 53 if(x <= 1) in evaluate_rational_c_imp() [all …]
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| H A D | rational_horner1_18.hpp | 27 inline V evaluate_rational_c_imp(const T* a, const U* b, const V& x, const mpl::int_<2>*) BOOST_MAT… in evaluate_rational_c_imp() argument 29 if(x <= 1) in evaluate_rational_c_imp() 30 return static_cast<V>((a[1] * x + a[0]) / (b[1] * x + b[0])); in evaluate_rational_c_imp() 33 V z = 1 / x; in evaluate_rational_c_imp() 39 inline V evaluate_rational_c_imp(const T* a, const U* b, const V& x, const mpl::int_<3>*) BOOST_MAT… in evaluate_rational_c_imp() argument 41 if(x <= 1) in evaluate_rational_c_imp() 42 return static_cast<V>(((a[2] * x + a[1]) * x + a[0]) / ((b[2] * x + b[1]) * x + b[0])); in evaluate_rational_c_imp() 45 V z = 1 / x; in evaluate_rational_c_imp() 51 inline V evaluate_rational_c_imp(const T* a, const U* b, const V& x, const mpl::int_<4>*) BOOST_MAT… in evaluate_rational_c_imp() argument 53 if(x <= 1) in evaluate_rational_c_imp() [all …]
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| H A D | rational_horner1_14.hpp | 27 inline V evaluate_rational_c_imp(const T* a, const U* b, const V& x, const mpl::int_<2>*) BOOST_MAT… in evaluate_rational_c_imp() argument 29 if(x <= 1) in evaluate_rational_c_imp() 30 return static_cast<V>((a[1] * x + a[0]) / (b[1] * x + b[0])); in evaluate_rational_c_imp() 33 V z = 1 / x; in evaluate_rational_c_imp() 39 inline V evaluate_rational_c_imp(const T* a, const U* b, const V& x, const mpl::int_<3>*) BOOST_MAT… in evaluate_rational_c_imp() argument 41 if(x <= 1) in evaluate_rational_c_imp() 42 return static_cast<V>(((a[2] * x + a[1]) * x + a[0]) / ((b[2] * x + b[1]) * x + b[0])); in evaluate_rational_c_imp() 45 V z = 1 / x; in evaluate_rational_c_imp() 51 inline V evaluate_rational_c_imp(const T* a, const U* b, const V& x, const mpl::int_<4>*) BOOST_MAT… in evaluate_rational_c_imp() argument 53 if(x <= 1) in evaluate_rational_c_imp() [all …]
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| H A D | rational_horner1_13.hpp | 27 inline V evaluate_rational_c_imp(const T* a, const U* b, const V& x, const mpl::int_<2>*) BOOST_MAT… in evaluate_rational_c_imp() argument 29 if(x <= 1) in evaluate_rational_c_imp() 30 return static_cast<V>((a[1] * x + a[0]) / (b[1] * x + b[0])); in evaluate_rational_c_imp() 33 V z = 1 / x; in evaluate_rational_c_imp() 39 inline V evaluate_rational_c_imp(const T* a, const U* b, const V& x, const mpl::int_<3>*) BOOST_MAT… in evaluate_rational_c_imp() argument 41 if(x <= 1) in evaluate_rational_c_imp() 42 return static_cast<V>(((a[2] * x + a[1]) * x + a[0]) / ((b[2] * x + b[1]) * x + b[0])); in evaluate_rational_c_imp() 45 V z = 1 / x; in evaluate_rational_c_imp() 51 inline V evaluate_rational_c_imp(const T* a, const U* b, const V& x, const mpl::int_<4>*) BOOST_MAT… in evaluate_rational_c_imp() argument 53 if(x <= 1) in evaluate_rational_c_imp() [all …]
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| H A D | rational_horner1_12.hpp | 27 inline V evaluate_rational_c_imp(const T* a, const U* b, const V& x, const mpl::int_<2>*) BOOST_MAT… in evaluate_rational_c_imp() argument 29 if(x <= 1) in evaluate_rational_c_imp() 30 return static_cast<V>((a[1] * x + a[0]) / (b[1] * x + b[0])); in evaluate_rational_c_imp() 33 V z = 1 / x; in evaluate_rational_c_imp() 39 inline V evaluate_rational_c_imp(const T* a, const U* b, const V& x, const mpl::int_<3>*) BOOST_MAT… in evaluate_rational_c_imp() argument 41 if(x <= 1) in evaluate_rational_c_imp() 42 return static_cast<V>(((a[2] * x + a[1]) * x + a[0]) / ((b[2] * x + b[1]) * x + b[0])); in evaluate_rational_c_imp() 45 V z = 1 / x; in evaluate_rational_c_imp() 51 inline V evaluate_rational_c_imp(const T* a, const U* b, const V& x, const mpl::int_<4>*) BOOST_MAT… in evaluate_rational_c_imp() argument 53 if(x <= 1) in evaluate_rational_c_imp() [all …]
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| H A D | rational_horner1_11.hpp | 27 inline V evaluate_rational_c_imp(const T* a, const U* b, const V& x, const mpl::int_<2>*) BOOST_MAT… in evaluate_rational_c_imp() argument 29 if(x <= 1) in evaluate_rational_c_imp() 30 return static_cast<V>((a[1] * x + a[0]) / (b[1] * x + b[0])); in evaluate_rational_c_imp() 33 V z = 1 / x; in evaluate_rational_c_imp() 39 inline V evaluate_rational_c_imp(const T* a, const U* b, const V& x, const mpl::int_<3>*) BOOST_MAT… in evaluate_rational_c_imp() argument 41 if(x <= 1) in evaluate_rational_c_imp() 42 return static_cast<V>(((a[2] * x + a[1]) * x + a[0]) / ((b[2] * x + b[1]) * x + b[0])); in evaluate_rational_c_imp() 45 V z = 1 / x; in evaluate_rational_c_imp() 51 inline V evaluate_rational_c_imp(const T* a, const U* b, const V& x, const mpl::int_<4>*) BOOST_MAT… in evaluate_rational_c_imp() argument 53 if(x <= 1) in evaluate_rational_c_imp() [all …]
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| H A D | rational_horner2_13.hpp | 27 inline V evaluate_rational_c_imp(const T* a, const U* b, const V& x, const mpl::int_<2>*) BOOST_MAT… in evaluate_rational_c_imp() argument 29 return static_cast<V>((a[1] * x + a[0]) / (b[1] * x + b[0])); in evaluate_rational_c_imp() 33 inline V evaluate_rational_c_imp(const T* a, const U* b, const V& x, const mpl::int_<3>*) BOOST_MAT… in evaluate_rational_c_imp() argument 35 return static_cast<V>(((a[2] * x + a[1]) * x + a[0]) / ((b[2] * x + b[1]) * x + b[0])); in evaluate_rational_c_imp() 39 inline V evaluate_rational_c_imp(const T* a, const U* b, const V& x, const mpl::int_<4>*) BOOST_MAT… in evaluate_rational_c_imp() argument 41 …return static_cast<V>((((a[3] * x + a[2]) * x + a[1]) * x + a[0]) / (((b[3] * x + b[2]) * x + b[1]… in evaluate_rational_c_imp() 45 inline V evaluate_rational_c_imp(const T* a, const U* b, const V& x, const mpl::int_<5>*) BOOST_MAT… in evaluate_rational_c_imp() argument 47 if(x <= 1) in evaluate_rational_c_imp() 49 V x2 = x * x; in evaluate_rational_c_imp() 50 …x2 + a[2]) * x2 + a[0] + (a[3] * x2 + a[1]) * x) / ((b[4] * x2 + b[2]) * x2 + b[0] + (b[3] * x2 + … in evaluate_rational_c_imp() [all …]
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| H A D | rational_horner2_17.hpp | 27 inline V evaluate_rational_c_imp(const T* a, const U* b, const V& x, const mpl::int_<2>*) BOOST_MAT… in evaluate_rational_c_imp() argument 29 return static_cast<V>((a[1] * x + a[0]) / (b[1] * x + b[0])); in evaluate_rational_c_imp() 33 inline V evaluate_rational_c_imp(const T* a, const U* b, const V& x, const mpl::int_<3>*) BOOST_MAT… in evaluate_rational_c_imp() argument 35 return static_cast<V>(((a[2] * x + a[1]) * x + a[0]) / ((b[2] * x + b[1]) * x + b[0])); in evaluate_rational_c_imp() 39 inline V evaluate_rational_c_imp(const T* a, const U* b, const V& x, const mpl::int_<4>*) BOOST_MAT… in evaluate_rational_c_imp() argument 41 …return static_cast<V>((((a[3] * x + a[2]) * x + a[1]) * x + a[0]) / (((b[3] * x + b[2]) * x + b[1]… in evaluate_rational_c_imp() 45 inline V evaluate_rational_c_imp(const T* a, const U* b, const V& x, const mpl::int_<5>*) BOOST_MAT… in evaluate_rational_c_imp() argument 47 if(x <= 1) in evaluate_rational_c_imp() 49 V x2 = x * x; in evaluate_rational_c_imp() 50 …x2 + a[2]) * x2 + a[0] + (a[3] * x2 + a[1]) * x) / ((b[4] * x2 + b[2]) * x2 + b[0] + (b[3] * x2 + … in evaluate_rational_c_imp() [all …]
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| /OK3568_Linux_fs/kernel/include/soc/mscc/ |
| H A D | ocelot_hsio.h | 90 #define HSIO_PLL5G_CFG0_SELBGV820(x) (((x) << 23) & GENMASK(26, 23)) argument 92 #define HSIO_PLL5G_CFG0_SELBGV820_X(x) (((x) & GENMASK(26, 23)) >> 23) argument 93 #define HSIO_PLL5G_CFG0_LOOP_BW_RES(x) (((x) << 18) & GENMASK(22, 18)) argument 95 #define HSIO_PLL5G_CFG0_LOOP_BW_RES_X(x) (((x) & GENMASK(22, 18)) >> 18) argument 96 #define HSIO_PLL5G_CFG0_SELCPI(x) (((x) << 16) & GENMASK(17, 16)) argument 98 #define HSIO_PLL5G_CFG0_SELCPI_X(x) (((x) & GENMASK(17, 16)) >> 16) argument 103 #define HSIO_PLL5G_CFG0_CPU_CLK_DIV(x) (((x) << 6) & GENMASK(11, 6)) argument 105 #define HSIO_PLL5G_CFG0_CPU_CLK_DIV_X(x) (((x) & GENMASK(11, 6)) >> 6) argument 106 #define HSIO_PLL5G_CFG0_CORE_CLK_DIV(x) ((x) & GENMASK(5, 0)) argument 107 #define HSIO_PLL5G_CFG0_CORE_CLK_DIV_M GENMASK(5, 0) [all …]
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| H A D | ocelot_ana.h | 15 #define ANA_ANAGEFIL_PID_VAL(x) (((x) << 14) & GENMASK(18, 14)) argument 17 #define ANA_ANAGEFIL_PID_VAL_X(x) (((x) & GENMASK(18, 14)) >> 14) argument 19 #define ANA_ANAGEFIL_VID_VAL(x) ((x) & GENMASK(12, 0)) argument 24 #define ANA_STORMLIMIT_CFG_STORM_RATE(x) (((x) << 3) & GENMASK(6, 3)) argument 26 #define ANA_STORMLIMIT_CFG_STORM_RATE_X(x) (((x) & GENMASK(6, 3)) >> 3) argument 28 #define ANA_STORMLIMIT_CFG_STORM_MODE(x) ((x) & GENMASK(1, 0)) argument 32 #define ANA_AUTOAGE_AGE_PERIOD(x) (((x) << 1) & GENMASK(20, 1)) argument 34 #define ANA_AUTOAGE_AGE_PERIOD_X(x) (((x) & GENMASK(20, 1)) >> 1) argument 40 #define ANA_AGENCTRL_FID_MASK(x) (((x) << 12) & GENMASK(23, 12)) argument 42 #define ANA_AGENCTRL_FID_MASK_X(x) (((x) & GENMASK(23, 12)) >> 12) argument [all …]
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| H A D | ocelot_qsys.h | 16 #define QSYS_STAT_CNT_CFG_TX_GREEN_CNT_MODE BIT(5) 25 #define QSYS_EEE_THRES_EEE_HIGH_BYTES(x) (((x) << 8) & GENMASK(15, 8)) argument 27 #define QSYS_EEE_THRES_EEE_HIGH_BYTES_X(x) (((x) & GENMASK(15, 8)) >> 8) argument 28 #define QSYS_EEE_THRES_EEE_HIGH_FRAMES(x) ((x) & GENMASK(7, 0)) argument 33 #define QSYS_EXT_CPU_CFG_EXT_CPU_PORT(x) (((x) << 8) & GENMASK(12, 8)) argument 35 #define QSYS_EXT_CPU_CFG_EXT_CPU_PORT_X(x) (((x) & GENMASK(12, 8)) >> 8) argument 36 #define QSYS_EXT_CPU_CFG_EXT_CPUQ_MSK(x) ((x) & GENMASK(7, 0)) argument 41 #define QSYS_QMAP_SE_BASE(x) (((x) << 5) & GENMASK(12, 5)) argument 42 #define QSYS_QMAP_SE_BASE_M GENMASK(12, 5) 43 #define QSYS_QMAP_SE_BASE_X(x) (((x) & GENMASK(12, 5)) >> 5) argument [all …]
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| /OK3568_Linux_fs/kernel/drivers/misc/rk628/ |
| H A D | rk628_hdmitx.h | 15 #define HDMITX_REG(x) ((x * HDMI_REG_STRIDE) + HDMI_BASE) argument 30 #define NOT_RST_ANALOG(x) UPDATE(x, 6, 6) argument 31 #define RST_DIGITAL_MASK BIT(5) 32 #define NOT_RST_DIGITAL(x) UPDATE(x, 5, 5) argument 34 #define REG_CLK_INV(x) UPDATE(x, 4, 4) argument 36 #define VCLK_INV(x) UPDATE(x, 3, 3) argument 38 #define REG_CLK_SOURCE(x) UPDATE(x, 2, 2) argument 40 #define PWR_OFF(x) UPDATE(x, 1, 1) argument 42 #define INT_POL(x) UPDATE(x, 0, 0) argument 50 #define DE_SOURCE(x) UPDATE(x, 0, 0) argument [all …]
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| /OK3568_Linux_fs/kernel/drivers/scsi/aic94xx/ |
| H A D | aic94xx_dump.c | 24 #define MD(x) (1 << (x)) argument 122 {"OOB_BFLTR" ,0x100, 8, MD(5)}, 123 {"OOB_INIT_MIN" ,0x102,16, MD(5)}, 124 {"OOB_INIT_MAX" ,0x104,16, MD(5)}, 125 {"OOB_INIT_NEG" ,0x106,16, MD(5)}, 126 {"OOB_SAS_MIN" ,0x108,16, MD(5)}, 127 {"OOB_SAS_MAX" ,0x10A,16, MD(5)}, 128 {"OOB_SAS_NEG" ,0x10C,16, MD(5)}, 129 {"OOB_WAKE_MIN" ,0x10E,16, MD(5)}, 130 {"OOB_WAKE_MAX" ,0x110,16, MD(5)}, [all …]
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