| /freebsd-13.1/crypto/openssh/ |
| H A D | smult_curve25519_ref.c | 160 square(b0,a0); in mainloop() 166 square(r,c1 + 32); in mainloop() 172 square(xzn1b,c1); in mainloop() 194 /* 2 */ square(z2,z); in recip() 195 /* 4 */ square(t1,z2); in recip() 196 /* 8 */ square(t0,t1); in recip() 211 /* 2^20 - 2^10 */ for (i = 2;i < 10;i += 2) { square(t0,t1); square(t1,t0); } in recip() 216 /* 2^40 - 2^20 */ for (i = 2;i < 20;i += 2) { square(t0,t1); square(t1,t0); } in recip() 221 /* 2^50 - 2^10 */ for (i = 2;i < 10;i += 2) { square(t1,t0); square(t0,t1); } in recip() 226 /* 2^100 - 2^50 */ for (i = 2;i < 50;i += 2) { square(t0,t1); square(t1,t0); } in recip() [all …]
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| /freebsd-13.1/sys/contrib/device-tree/Bindings/rtc/ |
| H A D | maxim,ds3231.txt | 14 - 0: square-wave output on the SQW pin 15 - 1: square-wave output on the 32kHz pin
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| /freebsd-13.1/sys/contrib/device-tree/Bindings/clock/ti/davinci/ |
| H A D | pll.txt | 18 - ti,clkmode-square-wave: Indicates that the the board is supplying a square 61 ti,clkmode-square-wave;
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| /freebsd-13.1/contrib/bmake/unit-tests/ |
| H A D | varmod-subst.exp | 35 1 two 3 left square bracket 37 1 two 3 right square bracket
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| /freebsd-13.1/share/i18n/csmapper/MISC/ |
| H A D | RISCOS-LATIN1%UCS.src | 32 # A hollow square box with a hollow square box in its top left-hand 33 # corner. (Imagine a square clock showing nine o'clock.) It means
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| H A D | UCS%RISCOS-LATIN1.src | 32 # A hollow square box with a hollow square box in its top left-hand 33 # corner. (Imagine a square clock showing nine o'clock.) It means
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| /freebsd-13.1/contrib/llvm-project/llvm/lib/Target/X86/ |
| H A D | X86Schedule.td | 272 defm WriteFSqrt : X86SchedWritePair<ReadAfterVecLd>; // Floating point square root. 273 defm WriteFSqrtX : X86SchedWritePair<ReadAfterVecXLd>; // Floating point square root (XMM). 274 defm WriteFSqrtY : X86SchedWritePair<ReadAfterVecYLd>; // Floating point square root (YMM). 275 defm WriteFSqrtZ : X86SchedWritePair<ReadAfterVecYLd>; // Floating point square root (ZMM). 276 defm WriteFSqrt64 : X86SchedWritePair<ReadAfterVecLd>; // Floating point double square root. 277 defm WriteFSqrt64X : X86SchedWritePair<ReadAfterVecXLd>; // Floating point double square root (XMM). 278 defm WriteFSqrt64Y : X86SchedWritePair<ReadAfterVecYLd>; // Floating point double square root (YMM). 279 defm WriteFSqrt64Z : X86SchedWritePair<ReadAfterVecYLd>; // Floating point double square root (ZMM). 280 defm WriteFSqrt80 : X86SchedWritePair<ReadAfterVecLd>; // Floating point long double square root. 285 defm WriteFRsqrt : X86SchedWritePair<ReadAfterVecLd>; // Floating point reciprocal square root est… [all …]
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| H A D | X86ScheduleZnver3.td | 950 defm : Zn3WriteResXMMPair<WriteFSqrt, [Zn3FPFDiv], 15, [5], 1>; // Floating point square root. 951 defm : Zn3WriteResXMMPair<WriteFSqrtX, [Zn3FPFDiv], 15, [5], 1>; // Floating point square root (XM… 952 defm : Zn3WriteResYMMPair<WriteFSqrtY, [Zn3FPFDiv], 15, [5], 1>; // Floating point square root (YM… 953 defm : X86WriteResPairUnsupported<WriteFSqrtZ>; // Floating point square root (ZMM). 954 defm : Zn3WriteResXMMPair<WriteFSqrt64, [Zn3FPFDiv], 21, [9], 1>; // Floating point double square … 955 defm : Zn3WriteResXMMPair<WriteFSqrt64X, [Zn3FPFDiv], 21, [9], 1>; // Floating point double square … 956 defm : Zn3WriteResYMMPair<WriteFSqrt64Y, [Zn3FPFDiv], 21, [9], 1>; // Floating point double square … 957 defm : X86WriteResPairUnsupported<WriteFSqrt64Z>; // Floating point double square root (ZMM). 963 …esXMMPair<WriteFRsqrt, [Zn3FPFDiv], 3, [1], 1>; // Floating point reciprocal square root estimate. 964 …Pair<WriteFRsqrtX, [Zn3FPFDiv], 3, [1], 1>; // Floating point reciprocal square root estimate (XMM… [all …]
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| H A D | X86SchedBroadwell.td | 288 defm : X86WriteRes<WriteFSqrt, [BWPort0,BWFPDivider], 11, [1,4], 1>; // Floating point square… 290 …esPair<WriteFSqrtX, [BWPort0,BWFPDivider], 11, [1,7], 1, 5>; // Floating point square root (XMM). 291 …SqrtY, [BWPort0,BWPort015,BWFPDivider], 21, [2,1,14], 3, 6>; // Floating point square root (YMM). 293 …teRes<WriteFSqrt64, [BWPort0,BWFPDivider], 16, [1,8], 1>; // Floating point double square root. 295 …WriteFSqrt64X, [BWPort0,BWFPDivider], 16, [1,14],1, 5>; // Floating point double square root (XMM). 296 …, [BWPort0,BWPort015,BWFPDivider], 29, [2,1,28], 3, 6>; // Floating point double square root (YMM). 298 …esPair<WriteFSqrt80, [BWPort0,BWFPDivider], 23, [1,9]>; // Floating point long double square root. 305 defm : BWWriteResPair<WriteFRsqrt, [BWPort0], 5, [1], 1, 5>; // Floating point reciprocal square r… 306 defm : BWWriteResPair<WriteFRsqrtX,[BWPort0], 5, [1], 1, 5>; // Floating point reciprocal square r… 307 …qrtY,[BWPort0,BWPort015], 11, [2,1], 3, 6>; // Floating point reciprocal square root estimate (YMM…
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| /freebsd-13.1/crypto/openssl/crypto/bn/ |
| H A D | bn_prime.c | 30 #define square(x) ((BN_ULONG)(x) * (BN_ULONG)(x)) macro 302 && square(primes[i]) > BN_get_word(rnd) + delta) in probable_prime() 372 && square(primes[i]) > BN_get_word(rnd) + delta) in probable_prime_dh()
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| /freebsd-13.1/sys/libkern/x86/ |
| H A D | crc32_sse42.c | 117 gf2_matrix_square(uint32_t *square, uint32_t *mat) in gf2_matrix_square() argument 122 square[n] = gf2_matrix_times(mat, mat[n]); in gf2_matrix_square()
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| /freebsd-13.1/crypto/openssl/doc/man3/ |
| H A D | BN_add.pod | 60 BN_sqr() takes the square of I<a> and places the result in I<r> 89 BN_mod_sqr() takes the square of I<a> modulo B<m> and places the 92 BN_mod_sqrt() returns the modular square root of I<a> such that
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| /freebsd-13.1/sys/contrib/device-tree/Bindings/input/ |
| H A D | lpc32xx-key.txt | 19 since LPC32xx only supports square matrices
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| /freebsd-13.1/lib/libc/softfloat/ |
| H A D | softfloat-history.txt | 16 -- Fixed a bug in all 64-bit-version square root functions except
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| /freebsd-13.1/tools/tools/locale/patch/ |
| H A D | patch-UnicodeData.txt | 5 33FF;SQUARE GAL;So;0;ON;<square> 0067 0061 006C;;;;N;;;;;
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| /freebsd-13.1/contrib/smbfs/examples/ |
| H A D | dot.nsmbrc | 13 # surrounded with square brackets:
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| /freebsd-13.1/usr.bin/m4/TEST/ |
| H A D | sqroot.m4 | 40 `ifelse(eval($1<0),1,negative-square-root,
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| /freebsd-13.1/contrib/googletest/googletest/ |
| H A D | configure.ac | 4 # integers separated by periods and surrounded by square brackets (e.g.
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| /freebsd-13.1/sys/contrib/device-tree/Bindings/display/ |
| H A D | allwinner,sun4i-a10-display-engine.yaml | 37 within the square brackets corresponds to the ID of the local endpoint.
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| /freebsd-13.1/crypto/heimdal/lib/wind/ |
| H A D | UnicodeData.txt | 9020 32CC;SQUARE HG;So;0;ON;<square> 0048 0067;;;;N;;;;; 9021 32CD;SQUARE ERG;So;0;ON;<square> 0065 0072 0067;;;;N;;;;; 9022 32CE;SQUARE EV;So;0;ON;<square> 0065 0056;;;;N;;;;; 9184 3371;SQUARE HPA;So;0;L;<square> 0068 0050 0061;;;;N;;;;; 9185 3372;SQUARE DA;So;0;L;<square> 0064 0061;;;;N;;;;; 9186 3373;SQUARE AU;So;0;L;<square> 0041 0055;;;;N;;;;; 9187 3374;SQUARE BAR;So;0;L;<square> 0062 0061 0072;;;;N;;;;; 9188 3375;SQUARE OV;So;0;L;<square> 006F 0056;;;;N;;;;; 9189 3376;SQUARE PC;So;0;L;<square> 0070 0063;;;;N;;;;; 9190 3377;SQUARE DM;So;0;ON;<square> 0064 006D;;;;N;;;;; [all …]
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| /freebsd-13.1/contrib/subversion/doc/ |
| H A D | doxygen.conf | 41 PROJECT_LOGO = doc/svn-square.jpg
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| /freebsd-13.1/sys/contrib/device-tree/src/arm/ |
| H A D | rk3288-rock2-square.dts | 9 compatible = "radxa,rock2-square", "rockchip,rk3288";
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| /freebsd-13.1/contrib/bc/manuals/ |
| H A D | algorithms.md | 64 Newton-Raphson Method, or the [Babylonian Method][5]) to perform the square root 267 Like square root, its complexity is `O(log(n)*n^2)` as it requires one division
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| /freebsd-13.1/tools/test/testfloat/ |
| H A D | testfloat.txt | 114 divisions and square roots. It also makes no attempt to find bugs specific 137 subtract, multiply, divide, and square root functions at all the standard 142 subtract, multiply, divide, and square root. Other functions can be tested 186 Here square brackets ([]) indicate optional items, while angled brackets 231 -- The usual add, subtract, multiply, divide, and square root operations
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| /freebsd-13.1/sys/contrib/device-tree/Bindings/arm/ |
| H A D | cpus.yaml | 30 - square brackets define bitfields, eg reg[7:0] value of the bitfield in 250 proportional to the square of the Voltage (V) and
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