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licenses/github.com/go-jose/go-jose/v4/LICENSE
exercising permissions granted by this License. "Source" form shall mean the preferred form for making modifications, including but not limited to software source code, documentation source, and configuration files. "Object" form shall mean any form resulting from mechanical transformation or translation of a Source form, including but not limited to compiled object code, generated documentation,
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common-protos/k8s.io/api/authorization/v1beta1/generated.proto
import "k8s.io/apimachinery/pkg/apis/meta/v1/generated.proto"; import "k8s.io/apimachinery/pkg/runtime/generated.proto"; import "k8s.io/apimachinery/pkg/runtime/schema/generated.proto"; // Package-wide variables from generator "generated". option go_package = "k8s.io/api/authorization/v1beta1"; // ExtraValue masks the value so protobuf can generate // +protobuf.nullable=true // +protobuf.options.(gogoproto.goproto_stringer)=false
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common-protos/k8s.io/api/apps/v1beta1/generated.proto
message RollingUpdateStatefulSetStrategy { // Partition indicates the ordinal at which the StatefulSet should be partitioned // for updates. During a rolling update, all pods from ordinal Replicas-1 to // Partition are updated. All pods from ordinal Partition-1 to 0 remain untouched. // This is helpful in being able to do a canary based deployment. The default value is 0. optional int32 partition = 1;
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okhttp/src/main/kotlin/okhttp3/CacheControl.kt
* A Cache-Control header with cache directives from a server or client. These directives set policy * on what responses can be stored, and which requests can be satisfied by those stored responses. * * See [RFC 7234, 5.2](https://tools.ietf.org/html/rfc7234#section-5.2). */ class CacheControl internal constructor( /** * In a response, this field's name "no-cache" is misleading. It doesn't prevent us from caching
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okhttp/src/test/java/okhttp3/internal/connection/ConnectionPoolTest.kt
private val factory = routePlanner.factory private val taskFaker = routePlanner.taskFaker private val peer = MockHttp2Peer() /** The fake task runner prevents the cleanup runnable from being started. */ private val addressA = factory.newAddress("a") private val routeA1 = factory.newRoute(addressA) private val addressB = factory.newAddress("b") private val routeB1 = factory.newRoute(addressB)
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okhttp/src/main/kotlin/okhttp3/EventListener.kt
) { } /** * Invoked when a response will be served from the network. The Response will be * available from normal event sequences. * * This event will only be received when a Cache is configured for the client. */ open fun cacheMiss(call: Call) { } /** * Invoked when a response will be served from the cache or network based on validating the
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docs/en/docs/tutorial/security/oauth2-jwt.md
So, you would be able to, for example, share the same data from a Django application in a database with a FastAPI application. Or gradually migrate a Django application using the same database. And your users would be able to login from your Django app or from your **FastAPI** app, at the same time. ## Hash and verify the passwords Import the tools we need from `passlib`.
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okhttp/src/main/kotlin/okhttp3/internal/http2/Http2Reader.kt
) fun settings( clearPrevious: Boolean, settings: Settings, ) /** HTTP/2 only. */ fun ackSettings() /** * Read a connection-level ping from the peer. `ack` indicates this is a reply. The data * in `payload1` and `payload2` opaque binary, and there are no rules on the content. */ fun ping( ack: Boolean, payload1: Int,
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common-protos/k8s.io/api/admissionregistration/v1alpha1/generated.proto
// - 'authorizer.requestResource' - A CEL ResourceCheck constructed from the 'authorizer' and configured with the // request resource. // // The `apiVersion`, `kind`, `metadata.name` and `metadata.generateName` are always accessible from the root of the // object. No other metadata properties are accessible. // // Only property names of the form `[a-zA-Z_.-/][a-zA-Z0-9_.-/]*` are accessible.
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okhttp/src/main/kotlin/okhttp3/internal/-HostnamesCommon.kt
val bufferA = Buffer().writeUtf8(host) val bufferB = Buffer() // 1. Map, from bufferA to bufferB. while (!bufferA.exhausted()) { val codePoint = bufferA.readUtf8CodePoint() if (!IDNA_MAPPING_TABLE.map(codePoint, bufferB)) return null } // 2. Normalize, from bufferB to bufferA. val normalized = normalizeNfc(bufferB.readUtf8()) bufferA.writeUtf8(normalized)
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