mirror of
https://github.com/MichaelMure/git-bug.git
synced 2024-12-16 02:33:26 +03:00
146 lines
3.5 KiB
Go
146 lines
3.5 KiB
Go
// Package jira contains the Jira bridge implementation
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package jira
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import (
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"context"
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"fmt"
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"sort"
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"time"
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"github.com/MichaelMure/git-bug/bridge/core"
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"github.com/MichaelMure/git-bug/bridge/core/auth"
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"github.com/MichaelMure/git-bug/input"
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)
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const (
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target = "jira"
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metaKeyJiraId = "jira-id"
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metaKeyJiraDerivedId = "jira-derived-id"
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metaKeyJiraKey = "jira-key"
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metaKeyJiraUser = "jira-user"
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metaKeyJiraProject = "jira-project"
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metaKeyJiraBaseUrl = "jira-base-url"
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metaKeyJiraExportTime = "jira-export-time"
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metaKeyJiraLogin = "jira-login"
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confKeyBaseUrl = "base-url"
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confKeyProject = "project"
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confKeyDefaultLogin = "default-login"
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confKeyCredentialType = "credentials-type" // "SESSION" or "TOKEN"
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confKeyIDMap = "bug-id-map"
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confKeyIDRevMap = "bug-id-revmap"
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// the issue type when exporting a new bug. Default is Story (10001)
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confKeyCreateDefaults = "create-issue-defaults"
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// if set, the bridge fill this JIRA field with the `git-bug` id when exporting
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confKeyCreateGitBug = "create-issue-gitbug-id"
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defaultTimeout = 60 * time.Second
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)
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var _ core.BridgeImpl = &Jira{}
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// Jira Main object for the bridge
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type Jira struct{}
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// Target returns "jira"
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func (*Jira) Target() string {
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return target
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}
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func (*Jira) LoginMetaKey() string {
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return metaKeyJiraLogin
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}
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// NewImporter returns the jira importer
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func (*Jira) NewImporter() core.Importer {
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return &jiraImporter{}
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}
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// NewExporter returns the jira exporter
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func (*Jira) NewExporter() core.Exporter {
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return &jiraExporter{}
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}
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func buildClient(ctx context.Context, baseURL string, credType string, cred auth.Credential) (*Client, error) {
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client := NewClient(ctx, baseURL)
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var login, password string
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switch cred := cred.(type) {
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case *auth.LoginPassword:
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login = cred.Login
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password = cred.Password
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case *auth.Login:
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login = cred.Login
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p, err := input.PromptPassword(fmt.Sprintf("Password for %s", login), "password", input.Required)
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if err != nil {
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return nil, err
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}
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password = p
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}
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err := client.Login(credType, login, password)
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if err != nil {
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return nil, err
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}
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return client, nil
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}
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// stringInSlice returns true if needle is found in haystack
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func stringInSlice(needle string, haystack []string) bool {
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for _, match := range haystack {
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if match == needle {
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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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// Given two string slices, return three lists containing:
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// 1. elements found only in the first input list
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// 2. elements found only in the second input list
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// 3. elements found in both input lists
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func setSymmetricDifference(setA, setB []string) ([]string, []string, []string) {
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sort.Strings(setA)
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sort.Strings(setB)
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maxLen := len(setA) + len(setB)
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onlyA := make([]string, 0, maxLen)
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onlyB := make([]string, 0, maxLen)
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both := make([]string, 0, maxLen)
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idxA := 0
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idxB := 0
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for idxA < len(setA) && idxB < len(setB) {
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if setA[idxA] < setB[idxB] {
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// In the first set, but not the second
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onlyA = append(onlyA, setA[idxA])
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idxA++
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} else if setA[idxA] > setB[idxB] {
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// In the second set, but not the first
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onlyB = append(onlyB, setB[idxB])
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idxB++
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} else {
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// In both
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both = append(both, setA[idxA])
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idxA++
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idxB++
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}
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}
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for ; idxA < len(setA); idxA++ {
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// Leftovers in the first set, not the second
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onlyA = append(onlyA, setA[idxA])
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}
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for ; idxB < len(setB); idxB++ {
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// Leftovers in the second set, not the first
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onlyB = append(onlyB, setB[idxB])
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}
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return onlyA, onlyB, both
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}
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