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impl/maven-core/src/main/java/org/apache/maven/lifecycle/internal/LifecycleDependencyResolver.java
* plugins that require dependency resolution, although they usually run in phases of the build where project * artifacts haven't been assembled yet. The prime example of this is "mvn release:prepare". */ if (aggregating && areAllDependenciesInReactor(session.getProjects(), result.getUnresolvedDependencies())) {Registered: Sun Dec 28 03:35:09 UTC 2025 - Last Modified: Fri Jun 06 14:28:57 UTC 2025 - 15.6K bytes - Viewed (0) -
docs/es/docs/advanced/generate-clients.md
Puedes personalizar esa función. Toma un `APIRoute` y retorna un string. Por ejemplo, aquí está usando el primer tag (probablemente tendrás solo un tag) y el nombre de la *path operation* (el nombre de la función). Puedes entonces pasar esa función personalizada a **FastAPI** como el parámetro `generate_unique_id_function`:
Registered: Sun Dec 28 07:19:09 UTC 2025 - Last Modified: Wed Dec 17 20:41:43 UTC 2025 - 10.8K bytes - Viewed (0) -
build-logic/kotlin-dsl-shared-runtime/src/main/kotlin/org/gradle/kotlin/dsl/internal/sharedruntime/codegen/ApiTypeProvider.kt
} private fun singleAbstractMethodOf(classNode: ClassNode) = classNode.methods.singleOrNull { it.access.run { !isStatic && isAbstract } } /** * Test if a method is a prime declaration or an overrides that change the signature. * * There's no way to tell from the byte code that a method overrides the signature * of a parent declaration other than crawling up the type hierarchy.Registered: Wed Dec 31 11:36:14 UTC 2025 - Last Modified: Wed Mar 12 15:56:18 UTC 2025 - 20.2K bytes - Viewed (0) -
docs/es/docs/advanced/security/oauth2-scopes.md
{* ../../docs_src/security/tutorial005_an_py310.py hl[5,9,13,47,65,106,108:116,122:126,130:136,141,157] *} Ahora revisemos esos cambios paso a paso. ## Esquema de seguridad OAuth2 { #oauth2-security-scheme } El primer cambio es que ahora estamos declarando el esquema de seguridad OAuth2 con dos scopes disponibles, `me` y `items`. El parámetro `scopes` recibe un `dict` con cada scope como clave y la descripción como valor:Registered: Sun Dec 28 07:19:09 UTC 2025 - Last Modified: Wed Dec 17 10:15:01 UTC 2025 - 14.2K bytes - Viewed (0) -
android/guava/src/com/google/common/hash/Hashing.java
hashFunctions[0] = Murmur3_128HashFunction.GOOD_FAST_HASH_128; int seed = GOOD_FAST_HASH_SEED; for (int i = 1; i < hashFunctionsNeeded; i++) { seed += 1500450271; // a prime; shouldn't matter hashFunctions[i] = murmur3_128(seed); } return new ConcatenatedHashFunction(hashFunctions); } /**
Registered: Fri Dec 26 12:43:10 UTC 2025 - Last Modified: Thu Jul 17 15:26:41 UTC 2025 - 29.8K bytes - Viewed (0) -
android/guava/src/com/google/common/collect/Range.java
* {@code r.contains(c1) && r.contains(c3)} implies {@code r.contains(c2)}). This means that a * {@code Range<Integer>} can never be used to represent, say, "all <i>prime</i> numbers from * 1 to 100." * <li>When evaluated as a {@link Predicate}, a range yields the same result as invoking {@link * #contains}.Registered: Fri Dec 26 12:43:10 UTC 2025 - Last Modified: Mon Sep 22 18:35:44 UTC 2025 - 28K bytes - Viewed (0) -
android/guava/src/com/google/common/primitives/Ints.java
// ends up at a[d], which in turn ends up at a[2d], and so on until we get back to a[0]. // (All indices taken mod n.) If d and n are mutually prime, all elements will have been // moved at that point. Otherwise, we can rotate the cycle a[1], a[1 + d], a[1 + 2d], etc, // then a[2] etc, and so on until we have rotated all elements. There are gcd(d, n) cyclesRegistered: Fri Dec 26 12:43:10 UTC 2025 - Last Modified: Wed Oct 22 18:14:49 UTC 2025 - 31.3K bytes - Viewed (0) -
lib/fips140/v1.0.0-c2097c7c.zip
millerRabinSetup(w) if err != nil { // w is zero, one, or even. return false } primes, err := bigmod.NewNat().SetBytes(productOfPrimes, mr.w) // If w is too small for productOfPrimes, key generation is // going to be fast enough anyway. if err == nil { _, hasInverse := primes.InverseVarTime(primes, mr.w) if !hasInverse { // productOfPrimes doesn't have an inverse mod w, // so w is divisible by at least one of the primes. return false } } // iterations is the number of Miller-Rabin rounds, each with...Registered: Tue Dec 30 11:13:12 UTC 2025 - Last Modified: Thu Sep 25 19:53:19 UTC 2025 - 642.7K bytes - Viewed (0) -
doc/go_spec.html
for i := range src { // Loop over values received from 'src'. if i%prime != 0 { dst <- i // Send 'i' to channel 'dst'. } } } // The prime sieve: Daisy-chain filter processes together. func sieve() { ch := make(chan int) // Create a new channel. go generate(ch) // Start generate() as a subprocess. for { prime := <-ch fmt.Print(prime, "\n")Registered: Tue Dec 30 11:13:12 UTC 2025 - Last Modified: Tue Dec 02 23:07:19 UTC 2025 - 286.5K bytes - Viewed (1) -
lib/fips140/v1.1.0-rc1.zip
return false } iterations-- if iterations == 0 { return true } } } // primes are the first prime numbers (except 2), such that the product of any // three primes fits in a uint32. // // More primes cause fewer Miller-Rabin tests of composites (nothing can help // with the final test on the actual prime) but have diminishing returns: these // 255 primes catch 84.9% of composites, the next 255 would catch 1.5% more. // Adding primes can still be marginally useful since they only compete with the // (much...Registered: Tue Dec 30 11:13:12 UTC 2025 - Last Modified: Thu Dec 11 16:27:41 UTC 2025 - 663K bytes - Viewed (0)