/freebsd/contrib/bsnmp/snmp_ntp/ |
H A D | BEGEMOT-NTP-MIB.txt | 108 "Current jitter in seconds multiplied by 2^32." 116 "Current stability in ppm multiplied by 2^32." 124 "Jitter trap threshold in seconds multiplied by 2^32." 132 "Stability trap threshold in ppm multiplied by 2^32."
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/freebsd/contrib/llvm-project/clang/lib/Headers/ |
H A D | amxcomplexintrin.h | 28 /// and one from \a b). The imaginary part of the \a a element is multiplied 30 /// of the \a a element is multiplied with the imaginary part of the 72 /// and one from \a b). The real part of the \a a element is multiplied 74 /// imaginary part of the \a a element is multiplied with the imaginary
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/freebsd/sys/contrib/device-tree/Bindings/clock/ |
H A D | renesas,rzv2h-cpg.yaml | 43 offset index multiplied by 16, plus the actual bit in the register 54 is calculated as the reset register offset index multiplied by 16, plus the
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/freebsd/sys/contrib/device-tree/Bindings/thermal/ |
H A D | zx2967-thermal.txt | 14 multiplied by 1000. 52 * slope need to be multiplied by 1000.
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/freebsd/share/doc/usd/05.dc/ |
H A D | dc | 131 multiplied (\fB*\fP), 426 multiplied by 10 if the difference of the scales is odd. 450 The first number is multiplied by each digit of the second 488 The trial digit is multiplied by the divisor and the result subtracted
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/freebsd/sys/contrib/device-tree/Bindings/iio/ |
H A D | mount-matrix.txt | 159 multiplied by this matrix to give the proper vectors values in three-dimensional 171 Values are intended to be multiplied as:
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/freebsd/contrib/bc/gen/ |
H A D | dc_help.txt | 81 digit's value multiplied by the value of ibase raised to the power of the 93 multiplied by the value of ibase raised to the power of the digit's
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H A D | bc_help.txt | 72 digit's value multiplied by the value of ibase raised to the power of the 84 multiplied by the value of ibase raised to the power of the digit's
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/freebsd/contrib/libcbor/src/cbor/internal/ |
H A D | memory_utils.h | 16 /** Can `a` and `b` be multiplied without overflowing size_t? */
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/freebsd/lib/msun/src/ |
H A D | k_cospi.h | 29 * argument to __kernel_cospi() must be multiplied by pi.
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H A D | k_sinpi.h | 29 * argument to __kernel_sinpi() must be multiplied by pi.
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/freebsd/contrib/llvm-project/llvm/lib/Target/AArch64/MCTargetDesc/ |
H A D | AArch64AsmBackend.cpp | 175 // Signed 19-bit immediate which gets multiplied by 4 in adjustFixupValue() 193 // Unsigned 12-bit immediate which gets multiplied by 2 in adjustFixupValue() 202 // Unsigned 12-bit immediate which gets multiplied by 4 in adjustFixupValue() 211 // Unsigned 12-bit immediate which gets multiplied by 8 in adjustFixupValue() 220 // Unsigned 12-bit immediate which gets multiplied by 16 in adjustFixupValue()
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/freebsd/contrib/ntp/libntp/lib/isc/include/isc/ |
H A D | resultclass.h | 29 * result number within the class to the class number multiplied by 65536.
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/freebsd/sys/contrib/device-tree/Bindings/dma/ |
H A D | img-mdc-dma.txt | 14 The maximum burst size is this value multiplied by the hardware-reported bus
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/freebsd/contrib/llvm-project/llvm/lib/IR/ |
H A D | Operator.cpp | 158 // Scalable vectors are multiplied by a runtime constant. in accumulateConstantOffset() 217 // Scalable vectors are multiplied by a runtime constant. in collectOffset()
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/freebsd/crypto/openssl/test/ |
H A D | rdrand_sanitytest.c | 89 * multiplied by the 8x retry loop in asm, and failure probabilities are in sanity_check_rdseed_bytes()
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/freebsd/contrib/llvm-project/llvm/lib/Analysis/ |
H A D | MemoryProfileInfo.cpp | 51 // The access densities are multiplied by 100 to hold 2 decimal places of in getAllocType() 60 // The access densities are multiplied by 100 to hold 2 decimal places of in getAllocType()
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H A D | Delinearization.cpp | 110 // Find factors that are multiplied with an expression that (possibly as a 115 // "%p * %q" are factors multiplied by the expression "(%a + {0, +, 1}_loop)" 170 /// 2) Unknowns that are multiplied with AddRec expressions.
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/freebsd/contrib/bc/manuals/dc/ |
H A D | EH.1 | 68 digit\[cq]s value multiplied by the value of ibase raised to the power 89 all multiplied by the value of ibase raised to the power of the 356 Instead, their given value is multiplied by the appropriate power of 364 highest valid digit in \f[B]ibase\f[R] before being multiplied by the 437 The top two values are popped off the stack, multiplied, and the result 1271 their value, which is multiplied by the power of the \f[B]ibase\f[R].
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H A D | EHN.1 | 68 digit\[cq]s value multiplied by the value of ibase raised to the power 89 all multiplied by the value of ibase raised to the power of the 356 Instead, their given value is multiplied by the appropriate power of 364 highest valid digit in \f[B]ibase\f[R] before being multiplied by the 437 The top two values are popped off the stack, multiplied, and the result 1271 their value, which is multiplied by the power of the \f[B]ibase\f[R].
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H A D | H.1 | 72 digit\[cq]s value multiplied by the value of ibase raised to the power 93 all multiplied by the value of ibase raised to the power of the 409 Instead, their given value is multiplied by the appropriate power of 417 highest valid digit in \f[B]ibase\f[R] before being multiplied by the 447 the number is still multiplied by \f[B]10\[ha]exponent\f[R] regardless 521 The top two values are popped off the stack, multiplied, and the result 1490 their value, which is multiplied by the power of the \f[B]ibase\f[R].
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H A D | HN.1 | 72 digit\[cq]s value multiplied by the value of ibase raised to the power 93 all multiplied by the value of ibase raised to the power of the 409 Instead, their given value is multiplied by the appropriate power of 417 highest valid digit in \f[B]ibase\f[R] before being multiplied by the 447 the number is still multiplied by \f[B]10\[ha]exponent\f[R] regardless 521 The top two values are popped off the stack, multiplied, and the result 1490 their value, which is multiplied by the power of the \f[B]ibase\f[R].
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H A D | N.1 | 72 digit\[cq]s value multiplied by the value of ibase raised to the power 93 all multiplied by the value of ibase raised to the power of the 409 Instead, their given value is multiplied by the appropriate power of 417 highest valid digit in \f[B]ibase\f[R] before being multiplied by the 447 the number is still multiplied by \f[B]10\[ha]exponent\f[R] regardless 521 The top two values are popped off the stack, multiplied, and the result 1490 their value, which is multiplied by the power of the \f[B]ibase\f[R].
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H A D | A.1 | 72 digit\[cq]s value multiplied by the value of ibase raised to the power 93 all multiplied by the value of ibase raised to the power of the 409 Instead, their given value is multiplied by the appropriate power of 417 highest valid digit in \f[B]ibase\f[R] before being multiplied by the 447 the number is still multiplied by \f[B]10\[ha]exponent\f[R] regardless 521 The top two values are popped off the stack, multiplied, and the result 1490 their value, which is multiplied by the power of the \f[B]ibase\f[R].
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/freebsd/share/examples/scsi_target/ |
H A D | scsi_target.8 | 103 the number is multiplied by 2^10 (1K), 2^20 (1M), 2^30 (1G), 2^40 (1T),
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