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Results 1 - 10 of 14 for divisor (0.06 sec)
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cmd/endpoint-ellipses.go
} // Supported set sizes this is used to find the optimal // single set size. var setSizes = []uint64{2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16} // getDivisibleSize - returns a greatest common divisor of // all the ellipses sizes. func getDivisibleSize(totalSizes []uint64) (result uint64) { gcd := func(x, y uint64) uint64 { for y != 0 { x, y = y, x%y } return x } result = totalSizes[0]Registered: Sun Sep 07 19:28:11 UTC 2025 - Last Modified: Fri Aug 29 02:39:48 UTC 2025 - 14.6K bytes - Viewed (0) -
src/cmd/asm/internal/asm/parse.go
p.errorf("divide of value with high bit set") } divisor := p.factor() if divisor == 0 { p.errorf("division by zero") } else { value /= divisor } case '%': p.next() divisor := p.factor() if int64(value) < 0 { p.errorf("modulo of value with high bit set") } if divisor == 0 { p.errorf("modulo by zero") } else {
Registered: Tue Sep 09 11:13:09 UTC 2025 - Last Modified: Fri Feb 14 15:13:11 UTC 2025 - 37.3K bytes - Viewed (0) -
docs/distributed/DESIGN.md
available, let's say for example if there are 32 servers and 32 drives which is a total of 1024 drives. In this scenario 16 becomes the erasure set size. This is decided based on the greatest common divisor (GCD) of acceptable erasure set sizes ranging from *4 to 16*. - *If total drives has many common divisors the algorithm chooses the minimum amounts of erasure sets possible for a erasure set size of any N*. In the example with 1024 drives - 4, 8, 16 are GCD factors. With 16 drives we get a total...
Registered: Sun Sep 07 19:28:11 UTC 2025 - Last Modified: Wed Feb 26 09:25:50 UTC 2025 - 8K bytes - Viewed (2) -
misc/cgo/gmp/gmp.go
func DivModInt(q, r, x, y *Int) { q.doinit() r.doinit() x.doinit() y.doinit() C.mpz_tdiv_qr(&q.i[0], &r.i[0], &x.i[0], &y.i[0]) } // GcdInt sets d to the greatest common divisor of a and b, // which must be positive numbers. // If x and y are not nil, GcdInt sets x and y such that d = a*x + b*y. // If either a or b is not positive, GcdInt sets d = x = y = 0. func GcdInt(d, x, y, a, b *Int) {
Registered: Tue Sep 09 11:13:09 UTC 2025 - Last Modified: Mon Apr 11 16:34:30 UTC 2022 - 9.5K bytes - Viewed (0) -
doc/go_spec.html
int32 -2147483648 int64 -9223372036854775808 </pre> <p> If the divisor is a <a href="#Constants">constant</a>, it must not be zero. If the divisor is zero at run time, a <a href="#Run_time_panics">run-time panic</a> occurs. If the dividend is non-negative and the divisor is a constant power of 2, the division may be replaced by a right shift, and computing the remainder may be replaced by a bitwise AND operation:
Registered: Tue Sep 09 11:13:09 UTC 2025 - Last Modified: Tue May 06 19:12:15 UTC 2025 - 286.2K bytes - Viewed (1) -
src/cmd/asm/internal/lex/tokenizer.go
return &Tokenizer{ s: &s, base: src.NewFileBase(name, objabi.AbsFile(objabi.WorkingDir(), name, *flags.TrimPath)), line: 1, file: file, } } // We want center dot (·) and division slash (∕) to work as identifier characters. func isIdentRune(ch rune, i int) bool { if unicode.IsLetter(ch) { return true } switch ch { case '_': // Underscore; traditional. return true
Registered: Tue Sep 09 11:13:09 UTC 2025 - Last Modified: Thu Aug 04 20:35:21 UTC 2022 - 3K bytes - Viewed (0) -
RELEASE.md
* Fixes a division by 0 in `Conv2DBackpropInput` ([CVE-2021-29525](https://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2021-29525)) * Fixes a division by 0 in `Conv2D` ([CVE-2021-29526](https://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2021-29526)) * Fixes a division by 0 in `QuantizedConv2D` ([CVE-2021-29527](https://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2021-29527)) * Fixes a division by 0 in `QuantizedMul`Registered: Tue Sep 09 12:39:10 UTC 2025 - Last Modified: Mon Aug 18 20:54:38 UTC 2025 - 740K bytes - Viewed (3) -
src/cmd/asm/internal/asm/expr_test.go
} } } type badExprTest struct { input string error string // Empty means no error. } var badExprTests = []badExprTest{ {"0/0", "division by zero"}, {"3/0", "division by zero"}, {"(1<<63)/0", "divide of value with high bit set"}, {"3%0", "modulo by zero"}, {"(1<<63)%0", "modulo of value with high bit set"}, {"3<<-4", "negative left shift count"},Registered: Tue Sep 09 11:13:09 UTC 2025 - Last Modified: Tue Aug 29 07:48:38 UTC 2023 - 3.2K bytes - Viewed (0) -
lib/fips140/v1.0.0.zip
nil, errors.New("rsa: internal error: gcd(a, b) is even") } // To avoid implementing multiple-precision division, we just try again if // the divisor doesn't fit in a single word. This would have a chance of // 2⁻⁶⁴ on 64-bit platforms, and 2⁻³² on 32-bit platforms, but testing 2⁻⁶⁴ // edge cases is impractical, and we'd rather not behave differently on // different platforms, so we reject divisors above 2³²-1. if gcd.BitLenVarTime() > 32 { return nil, errDivisorTooLarge } if gcd.IsZero() == 1 || gcd.Bits()[0]...
Registered: Tue Sep 09 11:13:09 UTC 2025 - Last Modified: Wed Jan 29 15:10:35 UTC 2025 - 635K bytes - Viewed (0) -
.teamcity/src/main/kotlin/model/PerformanceTestBucketProvider.kt
scenario.scenario } }.firstOrNull() // Fallback for new performance tests (don't use 0 to avoid division by zero) ?: PerformanceTestDuration(scenario.scenario, 1) }) .entries .map { TestProjectDuration(it.key, it.value) } .sortedBy { -it.totalTime }Registered: Wed Sep 10 11:36:15 UTC 2025 - Last Modified: Thu Jul 10 02:18:03 UTC 2025 - 16.6K bytes - Viewed (0)