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https://github.com/go-gitea/gitea
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c6c829fe3f
Closes #27455 > The mechanism responsible for long-term authentication (the 'remember me' cookie) uses a weak construction technique. It will hash the user's hashed password and the rands value; it will then call the secure cookie code, which will encrypt the user's name with the computed hash. If one were able to dump the database, they could extract those two values to rebuild that cookie and impersonate a user. That vulnerability exists from the date the dump was obtained until a user changed their password. > > To fix this security issue, the cookie could be created and verified using a different technique such as the one explained at https://paragonie.com/blog/2015/04/secure-authentication-php-with-long-term-persistence#secure-remember-me-cookies. The PR removes the now obsolete setting `COOKIE_USERNAME`.
351 lines
13 KiB
Go
351 lines
13 KiB
Go
// Copyright 2022 The Gitea Authors. All rights reserved.
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// SPDX-License-Identifier: MIT
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package auth
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import (
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"fmt"
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"strings"
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"code.gitea.io/gitea/models/perm"
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)
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// AccessTokenScopeCategory represents the scope category for an access token
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type AccessTokenScopeCategory int
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const (
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AccessTokenScopeCategoryActivityPub = iota
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AccessTokenScopeCategoryAdmin
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AccessTokenScopeCategoryMisc // WARN: this is now just a placeholder, don't remove it which will change the following values
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AccessTokenScopeCategoryNotification
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AccessTokenScopeCategoryOrganization
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AccessTokenScopeCategoryPackage
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AccessTokenScopeCategoryIssue
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AccessTokenScopeCategoryRepository
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AccessTokenScopeCategoryUser
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)
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// AllAccessTokenScopeCategories contains all access token scope categories
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var AllAccessTokenScopeCategories = []AccessTokenScopeCategory{
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AccessTokenScopeCategoryActivityPub,
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AccessTokenScopeCategoryAdmin,
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AccessTokenScopeCategoryMisc,
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AccessTokenScopeCategoryNotification,
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AccessTokenScopeCategoryOrganization,
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AccessTokenScopeCategoryPackage,
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AccessTokenScopeCategoryIssue,
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AccessTokenScopeCategoryRepository,
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AccessTokenScopeCategoryUser,
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}
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// AccessTokenScopeLevel represents the access levels without a given scope category
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type AccessTokenScopeLevel int
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const (
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NoAccess AccessTokenScopeLevel = iota
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Read
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Write
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)
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// AccessTokenScope represents the scope for an access token.
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type AccessTokenScope string
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// for all categories, write implies read
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const (
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AccessTokenScopeAll AccessTokenScope = "all"
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AccessTokenScopePublicOnly AccessTokenScope = "public-only" // limited to public orgs/repos
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AccessTokenScopeReadActivityPub AccessTokenScope = "read:activitypub"
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AccessTokenScopeWriteActivityPub AccessTokenScope = "write:activitypub"
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AccessTokenScopeReadAdmin AccessTokenScope = "read:admin"
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AccessTokenScopeWriteAdmin AccessTokenScope = "write:admin"
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AccessTokenScopeReadMisc AccessTokenScope = "read:misc"
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AccessTokenScopeWriteMisc AccessTokenScope = "write:misc"
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AccessTokenScopeReadNotification AccessTokenScope = "read:notification"
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AccessTokenScopeWriteNotification AccessTokenScope = "write:notification"
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AccessTokenScopeReadOrganization AccessTokenScope = "read:organization"
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AccessTokenScopeWriteOrganization AccessTokenScope = "write:organization"
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AccessTokenScopeReadPackage AccessTokenScope = "read:package"
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AccessTokenScopeWritePackage AccessTokenScope = "write:package"
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AccessTokenScopeReadIssue AccessTokenScope = "read:issue"
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AccessTokenScopeWriteIssue AccessTokenScope = "write:issue"
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AccessTokenScopeReadRepository AccessTokenScope = "read:repository"
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AccessTokenScopeWriteRepository AccessTokenScope = "write:repository"
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AccessTokenScopeReadUser AccessTokenScope = "read:user"
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AccessTokenScopeWriteUser AccessTokenScope = "write:user"
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)
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// accessTokenScopeBitmap represents a bitmap of access token scopes.
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type accessTokenScopeBitmap uint64
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// Bitmap of each scope, including the child scopes.
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const (
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// AccessTokenScopeAllBits is the bitmap of all access token scopes
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accessTokenScopeAllBits accessTokenScopeBitmap = accessTokenScopeWriteActivityPubBits |
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accessTokenScopeWriteAdminBits | accessTokenScopeWriteMiscBits | accessTokenScopeWriteNotificationBits |
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accessTokenScopeWriteOrganizationBits | accessTokenScopeWritePackageBits | accessTokenScopeWriteIssueBits |
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accessTokenScopeWriteRepositoryBits | accessTokenScopeWriteUserBits
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accessTokenScopePublicOnlyBits accessTokenScopeBitmap = 1 << iota
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accessTokenScopeReadActivityPubBits accessTokenScopeBitmap = 1 << iota
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accessTokenScopeWriteActivityPubBits accessTokenScopeBitmap = 1<<iota | accessTokenScopeReadActivityPubBits
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accessTokenScopeReadAdminBits accessTokenScopeBitmap = 1 << iota
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accessTokenScopeWriteAdminBits accessTokenScopeBitmap = 1<<iota | accessTokenScopeReadAdminBits
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accessTokenScopeReadMiscBits accessTokenScopeBitmap = 1 << iota
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accessTokenScopeWriteMiscBits accessTokenScopeBitmap = 1<<iota | accessTokenScopeReadMiscBits
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accessTokenScopeReadNotificationBits accessTokenScopeBitmap = 1 << iota
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accessTokenScopeWriteNotificationBits accessTokenScopeBitmap = 1<<iota | accessTokenScopeReadNotificationBits
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accessTokenScopeReadOrganizationBits accessTokenScopeBitmap = 1 << iota
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accessTokenScopeWriteOrganizationBits accessTokenScopeBitmap = 1<<iota | accessTokenScopeReadOrganizationBits
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accessTokenScopeReadPackageBits accessTokenScopeBitmap = 1 << iota
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accessTokenScopeWritePackageBits accessTokenScopeBitmap = 1<<iota | accessTokenScopeReadPackageBits
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accessTokenScopeReadIssueBits accessTokenScopeBitmap = 1 << iota
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accessTokenScopeWriteIssueBits accessTokenScopeBitmap = 1<<iota | accessTokenScopeReadIssueBits
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accessTokenScopeReadRepositoryBits accessTokenScopeBitmap = 1 << iota
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accessTokenScopeWriteRepositoryBits accessTokenScopeBitmap = 1<<iota | accessTokenScopeReadRepositoryBits
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accessTokenScopeReadUserBits accessTokenScopeBitmap = 1 << iota
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accessTokenScopeWriteUserBits accessTokenScopeBitmap = 1<<iota | accessTokenScopeReadUserBits
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// The current implementation only supports up to 64 token scopes.
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// If we need to support > 64 scopes,
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// refactoring the whole implementation in this file (and only this file) is needed.
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)
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// allAccessTokenScopes contains all access token scopes.
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// The order is important: parent scope must precede child scopes.
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var allAccessTokenScopes = []AccessTokenScope{
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AccessTokenScopePublicOnly,
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AccessTokenScopeWriteActivityPub, AccessTokenScopeReadActivityPub,
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AccessTokenScopeWriteAdmin, AccessTokenScopeReadAdmin,
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AccessTokenScopeWriteMisc, AccessTokenScopeReadMisc,
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AccessTokenScopeWriteNotification, AccessTokenScopeReadNotification,
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AccessTokenScopeWriteOrganization, AccessTokenScopeReadOrganization,
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AccessTokenScopeWritePackage, AccessTokenScopeReadPackage,
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AccessTokenScopeWriteIssue, AccessTokenScopeReadIssue,
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AccessTokenScopeWriteRepository, AccessTokenScopeReadRepository,
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AccessTokenScopeWriteUser, AccessTokenScopeReadUser,
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}
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// allAccessTokenScopeBits contains all access token scopes.
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var allAccessTokenScopeBits = map[AccessTokenScope]accessTokenScopeBitmap{
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AccessTokenScopeAll: accessTokenScopeAllBits,
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AccessTokenScopePublicOnly: accessTokenScopePublicOnlyBits,
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AccessTokenScopeReadActivityPub: accessTokenScopeReadActivityPubBits,
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AccessTokenScopeWriteActivityPub: accessTokenScopeWriteActivityPubBits,
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AccessTokenScopeReadAdmin: accessTokenScopeReadAdminBits,
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AccessTokenScopeWriteAdmin: accessTokenScopeWriteAdminBits,
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AccessTokenScopeReadMisc: accessTokenScopeReadMiscBits,
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AccessTokenScopeWriteMisc: accessTokenScopeWriteMiscBits,
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AccessTokenScopeReadNotification: accessTokenScopeReadNotificationBits,
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AccessTokenScopeWriteNotification: accessTokenScopeWriteNotificationBits,
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AccessTokenScopeReadOrganization: accessTokenScopeReadOrganizationBits,
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AccessTokenScopeWriteOrganization: accessTokenScopeWriteOrganizationBits,
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AccessTokenScopeReadPackage: accessTokenScopeReadPackageBits,
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AccessTokenScopeWritePackage: accessTokenScopeWritePackageBits,
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AccessTokenScopeReadIssue: accessTokenScopeReadIssueBits,
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AccessTokenScopeWriteIssue: accessTokenScopeWriteIssueBits,
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AccessTokenScopeReadRepository: accessTokenScopeReadRepositoryBits,
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AccessTokenScopeWriteRepository: accessTokenScopeWriteRepositoryBits,
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AccessTokenScopeReadUser: accessTokenScopeReadUserBits,
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AccessTokenScopeWriteUser: accessTokenScopeWriteUserBits,
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}
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// readAccessTokenScopes maps a scope category to the read permission scope
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var accessTokenScopes = map[AccessTokenScopeLevel]map[AccessTokenScopeCategory]AccessTokenScope{
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Read: {
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AccessTokenScopeCategoryActivityPub: AccessTokenScopeReadActivityPub,
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AccessTokenScopeCategoryAdmin: AccessTokenScopeReadAdmin,
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AccessTokenScopeCategoryMisc: AccessTokenScopeReadMisc,
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AccessTokenScopeCategoryNotification: AccessTokenScopeReadNotification,
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AccessTokenScopeCategoryOrganization: AccessTokenScopeReadOrganization,
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AccessTokenScopeCategoryPackage: AccessTokenScopeReadPackage,
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AccessTokenScopeCategoryIssue: AccessTokenScopeReadIssue,
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AccessTokenScopeCategoryRepository: AccessTokenScopeReadRepository,
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AccessTokenScopeCategoryUser: AccessTokenScopeReadUser,
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},
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Write: {
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AccessTokenScopeCategoryActivityPub: AccessTokenScopeWriteActivityPub,
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AccessTokenScopeCategoryAdmin: AccessTokenScopeWriteAdmin,
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AccessTokenScopeCategoryMisc: AccessTokenScopeWriteMisc,
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AccessTokenScopeCategoryNotification: AccessTokenScopeWriteNotification,
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AccessTokenScopeCategoryOrganization: AccessTokenScopeWriteOrganization,
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AccessTokenScopeCategoryPackage: AccessTokenScopeWritePackage,
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AccessTokenScopeCategoryIssue: AccessTokenScopeWriteIssue,
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AccessTokenScopeCategoryRepository: AccessTokenScopeWriteRepository,
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AccessTokenScopeCategoryUser: AccessTokenScopeWriteUser,
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},
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}
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// GetRequiredScopes gets the specific scopes for a given level and categories
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func GetRequiredScopes(level AccessTokenScopeLevel, scopeCategories ...AccessTokenScopeCategory) []AccessTokenScope {
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scopes := make([]AccessTokenScope, 0, len(scopeCategories))
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for _, cat := range scopeCategories {
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scopes = append(scopes, accessTokenScopes[level][cat])
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}
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return scopes
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}
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// ContainsCategory checks if a list of categories contains a specific category
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func ContainsCategory(categories []AccessTokenScopeCategory, category AccessTokenScopeCategory) bool {
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for _, c := range categories {
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if c == category {
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return true
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}
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}
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return false
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}
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// GetScopeLevelFromAccessMode converts permission access mode to scope level
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func GetScopeLevelFromAccessMode(mode perm.AccessMode) AccessTokenScopeLevel {
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switch mode {
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case perm.AccessModeNone:
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return NoAccess
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case perm.AccessModeRead:
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return Read
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case perm.AccessModeWrite:
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return Write
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case perm.AccessModeAdmin:
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return Write
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case perm.AccessModeOwner:
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return Write
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default:
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return NoAccess
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}
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}
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// parse the scope string into a bitmap, thus removing possible duplicates.
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func (s AccessTokenScope) parse() (accessTokenScopeBitmap, error) {
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var bitmap accessTokenScopeBitmap
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// The following is the more performant equivalent of 'for _, v := range strings.Split(remainingScope, ",")' as this is hot code
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remainingScopes := string(s)
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for len(remainingScopes) > 0 {
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i := strings.IndexByte(remainingScopes, ',')
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var v string
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if i < 0 {
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v = remainingScopes
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remainingScopes = ""
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} else if i+1 >= len(remainingScopes) {
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v = remainingScopes[:i]
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remainingScopes = ""
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} else {
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v = remainingScopes[:i]
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remainingScopes = remainingScopes[i+1:]
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}
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singleScope := AccessTokenScope(v)
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if singleScope == "" {
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continue
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}
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if singleScope == AccessTokenScopeAll {
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bitmap |= accessTokenScopeAllBits
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continue
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}
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bits, ok := allAccessTokenScopeBits[singleScope]
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if !ok {
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return 0, fmt.Errorf("invalid access token scope: %s", singleScope)
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}
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bitmap |= bits
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}
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return bitmap, nil
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}
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// StringSlice returns the AccessTokenScope as a []string
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func (s AccessTokenScope) StringSlice() []string {
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return strings.Split(string(s), ",")
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}
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// Normalize returns a normalized scope string without any duplicates.
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func (s AccessTokenScope) Normalize() (AccessTokenScope, error) {
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bitmap, err := s.parse()
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if err != nil {
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return "", err
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}
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return bitmap.toScope(), nil
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}
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// PublicOnly checks if this token scope is limited to public resources
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func (s AccessTokenScope) PublicOnly() (bool, error) {
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bitmap, err := s.parse()
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if err != nil {
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return false, err
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}
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return bitmap.hasScope(AccessTokenScopePublicOnly)
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}
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// HasScope returns true if the string has the given scope
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func (s AccessTokenScope) HasScope(scopes ...AccessTokenScope) (bool, error) {
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bitmap, err := s.parse()
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if err != nil {
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return false, err
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}
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for _, s := range scopes {
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if has, err := bitmap.hasScope(s); !has || err != nil {
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return has, err
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}
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}
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return true, nil
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}
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// hasScope returns true if the string has the given scope
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func (bitmap accessTokenScopeBitmap) hasScope(scope AccessTokenScope) (bool, error) {
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expectedBits, ok := allAccessTokenScopeBits[scope]
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if !ok {
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return false, fmt.Errorf("invalid access token scope: %s", scope)
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}
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return bitmap&expectedBits == expectedBits, nil
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}
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// toScope returns a normalized scope string without any duplicates.
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func (bitmap accessTokenScopeBitmap) toScope() AccessTokenScope {
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var scopes []string
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// iterate over all scopes, and reconstruct the bitmap
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// if the reconstructed bitmap doesn't change, then the scope is already included
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var reconstruct accessTokenScopeBitmap
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for _, singleScope := range allAccessTokenScopes {
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// no need for error checking here, since we know the scope is valid
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if ok, _ := bitmap.hasScope(singleScope); ok {
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current := reconstruct | allAccessTokenScopeBits[singleScope]
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if current == reconstruct {
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continue
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}
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reconstruct = current
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scopes = append(scopes, string(singleScope))
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}
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}
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scope := AccessTokenScope(strings.Join(scopes, ","))
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scope = AccessTokenScope(strings.ReplaceAll(
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string(scope),
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"write:activitypub,write:admin,write:misc,write:notification,write:organization,write:package,write:issue,write:repository,write:user",
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"all",
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))
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return scope
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}
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