mirror of
https://github.com/Threnklyn/jira.git
synced 2026-06-03 03:28:28 +02:00
add missing vendored files
This commit is contained in:
+19
@@ -0,0 +1,19 @@
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// +build linux
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// +build ppc64 ppc64le
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package isatty
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import (
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"unsafe"
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syscall "golang.org/x/sys/unix"
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)
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const ioctlReadTermios = syscall.TCGETS
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// IsTerminal return true if the file descriptor is terminal.
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func IsTerminal(fd uintptr) bool {
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var termios syscall.Termios
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_, _, err := syscall.Syscall6(syscall.SYS_IOCTL, fd, ioctlReadTermios, uintptr(unsafe.Pointer(&termios)), 0, 0, 0)
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return err == 0
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}
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+464
@@ -0,0 +1,464 @@
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// Package pester provides additional resiliency over the standard http client methods by
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// allowing you to control concurrency, retries, and a backoff strategy.
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package pester
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import (
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"bytes"
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"errors"
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"fmt"
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"io"
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"io/ioutil"
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"math/rand"
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"net/http"
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"net/url"
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"sync"
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"time"
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)
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//ErrUnexpectedMethod occurs when an http.Client method is unable to be mapped from a calling method in the pester client
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var ErrUnexpectedMethod = errors.New("unexpected client method, must be one of Do, Get, Head, Post, or PostFrom")
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// ErrReadingBody happens when we cannot read the body bytes
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var ErrReadingBody = errors.New("error reading body")
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// ErrReadingRequestBody happens when we cannot read the request body bytes
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var ErrReadingRequestBody = errors.New("error reading request body")
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// Client wraps the http client and exposes all the functionality of the http.Client.
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// Additionally, Client provides pester specific values for handling resiliency.
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type Client struct {
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// wrap it to provide access to http built ins
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hc *http.Client
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Transport http.RoundTripper
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CheckRedirect func(req *http.Request, via []*http.Request) error
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Jar http.CookieJar
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Timeout time.Duration
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// pester specific
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Concurrency int
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MaxRetries int
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Backoff BackoffStrategy
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KeepLog bool
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LogHook LogHook
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SuccessReqNum int
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SuccessRetryNum int
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wg *sync.WaitGroup
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sync.Mutex
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ErrLog []ErrEntry
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RetryOnHTTP429 bool
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}
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// ErrEntry is used to provide the LogString() data and is populated
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// each time an error happens if KeepLog is set.
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// ErrEntry.Retry is deprecated in favor of ErrEntry.Attempt
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type ErrEntry struct {
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Time time.Time
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Method string
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URL string
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Verb string
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Request int
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Retry int
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Attempt int
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Err error
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}
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// result simplifies the channel communication for concurrent request handling
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type result struct {
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resp *http.Response
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err error
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req int
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retry int
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}
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// params represents all the params needed to run http client calls and pester errors
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type params struct {
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method string
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verb string
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req *http.Request
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url string
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bodyType string
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body io.Reader
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data url.Values
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}
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var random *rand.Rand
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func init() {
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random = rand.New(rand.NewSource(time.Now().UnixNano()))
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}
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// New constructs a new DefaultClient with sensible default values
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func New() *Client {
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return &Client{
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Concurrency: DefaultClient.Concurrency,
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MaxRetries: DefaultClient.MaxRetries,
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Backoff: DefaultClient.Backoff,
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ErrLog: DefaultClient.ErrLog,
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wg: &sync.WaitGroup{},
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RetryOnHTTP429: false,
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}
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}
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// NewExtendedClient allows you to pass in an http.Client that is previously set up
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// and extends it to have Pester's features of concurrency and retries.
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func NewExtendedClient(hc *http.Client) *Client {
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c := New()
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c.hc = hc
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return c
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}
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// LogHook is used to log attempts as they happen. This function is never called,
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// however, if KeepLog is set to true.
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type LogHook func(e ErrEntry)
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// BackoffStrategy is used to determine how long a retry request should wait until attempted
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type BackoffStrategy func(retry int) time.Duration
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// DefaultClient provides sensible defaults
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var DefaultClient = &Client{Concurrency: 1, MaxRetries: 3, Backoff: DefaultBackoff, ErrLog: []ErrEntry{}}
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// DefaultBackoff always returns 1 second
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func DefaultBackoff(_ int) time.Duration {
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return 1 * time.Second
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}
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// ExponentialBackoff returns ever increasing backoffs by a power of 2
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func ExponentialBackoff(i int) time.Duration {
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return time.Duration(1<<uint(i)) * time.Second
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}
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// ExponentialJitterBackoff returns ever increasing backoffs by a power of 2
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// with +/- 0-33% to prevent sychronized reuqests.
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func ExponentialJitterBackoff(i int) time.Duration {
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return jitter(int(1 << uint(i)))
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}
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// LinearBackoff returns increasing durations, each a second longer than the last
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func LinearBackoff(i int) time.Duration {
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return time.Duration(i) * time.Second
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}
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// LinearJitterBackoff returns increasing durations, each a second longer than the last
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// with +/- 0-33% to prevent sychronized reuqests.
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func LinearJitterBackoff(i int) time.Duration {
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return jitter(i)
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}
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// jitter keeps the +/- 0-33% logic in one place
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func jitter(i int) time.Duration {
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ms := i * 1000
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maxJitter := ms / 3
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// ms ± rand
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ms += random.Intn(2*maxJitter) - maxJitter
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// a jitter of 0 messes up the time.Tick chan
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if ms <= 0 {
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ms = 1
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}
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return time.Duration(ms) * time.Millisecond
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}
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// Wait blocks until all pester requests have returned
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// Probably not that useful outside of testing.
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func (c *Client) Wait() {
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c.wg.Wait()
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}
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// pester provides all the logic of retries, concurrency, backoff, and logging
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func (c *Client) pester(p params) (*http.Response, error) {
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resultCh := make(chan result)
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multiplexCh := make(chan result)
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finishCh := make(chan struct{})
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// track all requests that go out so we can close the late listener routine that closes late incoming response bodies
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totalSentRequests := &sync.WaitGroup{}
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totalSentRequests.Add(1)
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defer totalSentRequests.Done()
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allRequestsBackCh := make(chan struct{})
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go func() {
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totalSentRequests.Wait()
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close(allRequestsBackCh)
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}()
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// GET calls should be idempotent and can make use
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// of concurrency. Other verbs can mutate and should not
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// make use of the concurrency feature
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concurrency := c.Concurrency
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if p.verb != "GET" {
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concurrency = 1
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}
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c.Lock()
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if c.hc == nil {
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c.hc = &http.Client{}
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c.hc.Transport = c.Transport
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c.hc.CheckRedirect = c.CheckRedirect
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c.hc.Jar = c.Jar
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c.hc.Timeout = c.Timeout
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}
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c.Unlock()
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// re-create the http client so we can leverage the std lib
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httpClient := http.Client{
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Transport: c.hc.Transport,
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CheckRedirect: c.hc.CheckRedirect,
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Jar: c.hc.Jar,
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Timeout: c.hc.Timeout,
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}
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// if we have a request body, we need to save it for later
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var originalRequestBody []byte
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var originalBody []byte
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var err error
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if p.req != nil && p.req.Body != nil {
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originalRequestBody, err = ioutil.ReadAll(p.req.Body)
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if err != nil {
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return nil, ErrReadingRequestBody
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}
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p.req.Body.Close()
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}
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if p.body != nil {
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originalBody, err = ioutil.ReadAll(p.body)
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if err != nil {
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return nil, ErrReadingBody
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}
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}
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AttemptLimit := c.MaxRetries
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if AttemptLimit <= 0 {
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AttemptLimit = 1
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}
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for req := 0; req < concurrency; req++ {
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c.wg.Add(1)
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totalSentRequests.Add(1)
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go func(n int, p params) {
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defer c.wg.Done()
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defer totalSentRequests.Done()
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var err error
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for i := 1; i <= AttemptLimit; i++ {
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c.wg.Add(1)
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defer c.wg.Done()
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select {
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case <-finishCh:
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return
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default:
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}
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// rehydrate the body (it is drained each read)
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if len(originalRequestBody) > 0 {
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p.req.Body = ioutil.NopCloser(bytes.NewBuffer(originalRequestBody))
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}
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if len(originalBody) > 0 {
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p.body = bytes.NewBuffer(originalBody)
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}
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var resp *http.Response
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// route the calls
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switch p.method {
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case "Do":
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resp, err = httpClient.Do(p.req)
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case "Get":
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resp, err = httpClient.Get(p.url)
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case "Head":
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resp, err = httpClient.Head(p.url)
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case "Post":
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resp, err = httpClient.Post(p.url, p.bodyType, p.body)
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case "PostForm":
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resp, err = httpClient.PostForm(p.url, p.data)
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default:
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err = ErrUnexpectedMethod
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}
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// Early return if we have a valid result
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// Only retry (ie, continue the loop) on 5xx status codes and 429
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if err == nil && resp.StatusCode < 500 && (resp.StatusCode != 429 || (resp.StatusCode == 429 && !c.RetryOnHTTP429)) {
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multiplexCh <- result{resp: resp, err: err, req: n, retry: i}
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return
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}
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c.log(ErrEntry{
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Time: time.Now(),
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Method: p.method,
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Verb: p.verb,
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URL: p.url,
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Request: n,
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Retry: i + 1, // would remove, but would break backward compatibility
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Attempt: i,
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Err: err,
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})
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// if it is the last iteration, grab the result (which is an error at this point)
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if i == AttemptLimit {
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multiplexCh <- result{resp: resp, err: err}
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return
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}
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//If the request has been cancelled, skip retries
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if p.req != nil {
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ctx := p.req.Context()
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select {
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case <-ctx.Done():
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multiplexCh <- result{resp: resp, err: ctx.Err()}
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return
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default:
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}
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}
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// if we are retrying, we should close this response body to free the fd
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if resp != nil {
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resp.Body.Close()
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}
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// prevent a 0 from causing the tick to block, pass additional microsecond
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<-time.After(c.Backoff(i) + 1*time.Microsecond)
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}
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}(req, p)
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}
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// spin off the go routine so it can continually listen in on late results and close the response bodies
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go func() {
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gotFirstResult := false
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for {
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select {
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case res := <-multiplexCh:
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if !gotFirstResult {
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gotFirstResult = true
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close(finishCh)
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resultCh <- res
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} else if res.resp != nil {
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// we only return one result to the caller; close all other response bodies that come back
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// drain the body before close as to not prevent keepalive. see https://gist.github.com/mholt/eba0f2cc96658be0f717
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io.Copy(ioutil.Discard, res.resp.Body)
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res.resp.Body.Close()
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}
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case <-allRequestsBackCh:
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// don't leave this goroutine running
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return
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}
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}
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}()
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res := <-resultCh
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c.Lock()
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defer c.Unlock()
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c.SuccessReqNum = res.req
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c.SuccessRetryNum = res.retry
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return res.resp, res.err
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}
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// LogString provides a string representation of the errors the client has seen
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func (c *Client) LogString() string {
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c.Lock()
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defer c.Unlock()
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var res string
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for _, e := range c.ErrLog {
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res += c.FormatError(e)
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}
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return res
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}
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// Format the Error to human readable string
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func (c *Client) FormatError(e ErrEntry) string {
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return fmt.Sprintf("%d %s [%s] %s request-%d retry-%d error: %s\n",
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e.Time.Unix(), e.Method, e.Verb, e.URL, e.Request, e.Retry, e.Err)
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}
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// LogErrCount is a helper method used primarily for test validation
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func (c *Client) LogErrCount() int {
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c.Lock()
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defer c.Unlock()
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return len(c.ErrLog)
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}
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// EmbedHTTPClient allows you to extend an existing Pester client with an
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// underlying http.Client, such as https://godoc.org/golang.org/x/oauth2/google#DefaultClient
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func (c *Client) EmbedHTTPClient(hc *http.Client) {
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c.hc = hc
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}
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func (c *Client) log(e ErrEntry) {
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if c.KeepLog {
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c.Lock()
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defer c.Unlock()
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c.ErrLog = append(c.ErrLog, e)
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} else if c.LogHook != nil {
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// NOTE: There is a possibility that Log Printing hook slows it down.
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// but the consumer can always do the Job in a go-routine.
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c.LogHook(e)
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}
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}
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// Do provides the same functionality as http.Client.Do
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func (c *Client) Do(req *http.Request) (resp *http.Response, err error) {
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return c.pester(params{method: "Do", req: req, verb: req.Method, url: req.URL.String()})
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}
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// Get provides the same functionality as http.Client.Get
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func (c *Client) Get(url string) (resp *http.Response, err error) {
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return c.pester(params{method: "Get", url: url, verb: "GET"})
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}
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// Head provides the same functionality as http.Client.Head
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func (c *Client) Head(url string) (resp *http.Response, err error) {
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return c.pester(params{method: "Head", url: url, verb: "HEAD"})
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}
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// Post provides the same functionality as http.Client.Post
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func (c *Client) Post(url string, bodyType string, body io.Reader) (resp *http.Response, err error) {
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return c.pester(params{method: "Post", url: url, bodyType: bodyType, body: body, verb: "POST"})
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}
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// PostForm provides the same functionality as http.Client.PostForm
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func (c *Client) PostForm(url string, data url.Values) (resp *http.Response, err error) {
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return c.pester(params{method: "PostForm", url: url, data: data, verb: "POST"})
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}
|
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|
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// set RetryOnHTTP429 for clients,
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func (c *Client) SetRetryOnHTTP429(flag bool) {
|
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c.RetryOnHTTP429 = flag
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}
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||||
|
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////////////////////////////////////////
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// Provide self-constructing variants //
|
||||
////////////////////////////////////////
|
||||
|
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// Do provides the same functionality as http.Client.Do and creates its own constructor
|
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func Do(req *http.Request) (resp *http.Response, err error) {
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c := New()
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return c.Do(req)
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}
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// Get provides the same functionality as http.Client.Get and creates its own constructor
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func Get(url string) (resp *http.Response, err error) {
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c := New()
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return c.Get(url)
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||||
}
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||||
|
||||
// Head provides the same functionality as http.Client.Head and creates its own constructor
|
||||
func Head(url string) (resp *http.Response, err error) {
|
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c := New()
|
||||
return c.Head(url)
|
||||
}
|
||||
|
||||
// Post provides the same functionality as http.Client.Post and creates its own constructor
|
||||
func Post(url string, bodyType string, body io.Reader) (resp *http.Response, err error) {
|
||||
c := New()
|
||||
return c.Post(url, bodyType, body)
|
||||
}
|
||||
|
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// PostForm provides the same functionality as http.Client.PostForm and creates its own constructor
|
||||
func PostForm(url string, data url.Values) (resp *http.Response, err error) {
|
||||
c := New()
|
||||
return c.PostForm(url, data)
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||||
}
|
||||
+484
@@ -0,0 +1,484 @@
|
||||
/*
|
||||
* CODE GENERATED AUTOMATICALLY WITH github.com/stretchr/testify/_codegen
|
||||
* THIS FILE MUST NOT BE EDITED BY HAND
|
||||
*/
|
||||
|
||||
package assert
|
||||
|
||||
import (
|
||||
http "net/http"
|
||||
url "net/url"
|
||||
time "time"
|
||||
)
|
||||
|
||||
// Conditionf uses a Comparison to assert a complex condition.
|
||||
func Conditionf(t TestingT, comp Comparison, msg string, args ...interface{}) bool {
|
||||
if h, ok := t.(tHelper); ok {
|
||||
h.Helper()
|
||||
}
|
||||
return Condition(t, comp, append([]interface{}{msg}, args...)...)
|
||||
}
|
||||
|
||||
// Containsf asserts that the specified string, list(array, slice...) or map contains the
|
||||
// specified substring or element.
|
||||
//
|
||||
// assert.Containsf(t, "Hello World", "World", "error message %s", "formatted")
|
||||
// assert.Containsf(t, ["Hello", "World"], "World", "error message %s", "formatted")
|
||||
// assert.Containsf(t, {"Hello": "World"}, "Hello", "error message %s", "formatted")
|
||||
func Containsf(t TestingT, s interface{}, contains interface{}, msg string, args ...interface{}) bool {
|
||||
if h, ok := t.(tHelper); ok {
|
||||
h.Helper()
|
||||
}
|
||||
return Contains(t, s, contains, append([]interface{}{msg}, args...)...)
|
||||
}
|
||||
|
||||
// DirExistsf checks whether a directory exists in the given path. It also fails if the path is a file rather a directory or there is an error checking whether it exists.
|
||||
func DirExistsf(t TestingT, path string, msg string, args ...interface{}) bool {
|
||||
if h, ok := t.(tHelper); ok {
|
||||
h.Helper()
|
||||
}
|
||||
return DirExists(t, path, append([]interface{}{msg}, args...)...)
|
||||
}
|
||||
|
||||
// ElementsMatchf asserts that the specified listA(array, slice...) is equal to specified
|
||||
// listB(array, slice...) ignoring the order of the elements. If there are duplicate elements,
|
||||
// the number of appearances of each of them in both lists should match.
|
||||
//
|
||||
// assert.ElementsMatchf(t, [1, 3, 2, 3], [1, 3, 3, 2], "error message %s", "formatted")
|
||||
func ElementsMatchf(t TestingT, listA interface{}, listB interface{}, msg string, args ...interface{}) bool {
|
||||
if h, ok := t.(tHelper); ok {
|
||||
h.Helper()
|
||||
}
|
||||
return ElementsMatch(t, listA, listB, append([]interface{}{msg}, args...)...)
|
||||
}
|
||||
|
||||
// Emptyf asserts that the specified object is empty. I.e. nil, "", false, 0 or either
|
||||
// a slice or a channel with len == 0.
|
||||
//
|
||||
// assert.Emptyf(t, obj, "error message %s", "formatted")
|
||||
func Emptyf(t TestingT, object interface{}, msg string, args ...interface{}) bool {
|
||||
if h, ok := t.(tHelper); ok {
|
||||
h.Helper()
|
||||
}
|
||||
return Empty(t, object, append([]interface{}{msg}, args...)...)
|
||||
}
|
||||
|
||||
// Equalf asserts that two objects are equal.
|
||||
//
|
||||
// assert.Equalf(t, 123, 123, "error message %s", "formatted")
|
||||
//
|
||||
// Pointer variable equality is determined based on the equality of the
|
||||
// referenced values (as opposed to the memory addresses). Function equality
|
||||
// cannot be determined and will always fail.
|
||||
func Equalf(t TestingT, expected interface{}, actual interface{}, msg string, args ...interface{}) bool {
|
||||
if h, ok := t.(tHelper); ok {
|
||||
h.Helper()
|
||||
}
|
||||
return Equal(t, expected, actual, append([]interface{}{msg}, args...)...)
|
||||
}
|
||||
|
||||
// EqualErrorf asserts that a function returned an error (i.e. not `nil`)
|
||||
// and that it is equal to the provided error.
|
||||
//
|
||||
// actualObj, err := SomeFunction()
|
||||
// assert.EqualErrorf(t, err, expectedErrorString, "error message %s", "formatted")
|
||||
func EqualErrorf(t TestingT, theError error, errString string, msg string, args ...interface{}) bool {
|
||||
if h, ok := t.(tHelper); ok {
|
||||
h.Helper()
|
||||
}
|
||||
return EqualError(t, theError, errString, append([]interface{}{msg}, args...)...)
|
||||
}
|
||||
|
||||
// EqualValuesf asserts that two objects are equal or convertable to the same types
|
||||
// and equal.
|
||||
//
|
||||
// assert.EqualValuesf(t, uint32(123, "error message %s", "formatted"), int32(123))
|
||||
func EqualValuesf(t TestingT, expected interface{}, actual interface{}, msg string, args ...interface{}) bool {
|
||||
if h, ok := t.(tHelper); ok {
|
||||
h.Helper()
|
||||
}
|
||||
return EqualValues(t, expected, actual, append([]interface{}{msg}, args...)...)
|
||||
}
|
||||
|
||||
// Errorf asserts that a function returned an error (i.e. not `nil`).
|
||||
//
|
||||
// actualObj, err := SomeFunction()
|
||||
// if assert.Errorf(t, err, "error message %s", "formatted") {
|
||||
// assert.Equal(t, expectedErrorf, err)
|
||||
// }
|
||||
func Errorf(t TestingT, err error, msg string, args ...interface{}) bool {
|
||||
if h, ok := t.(tHelper); ok {
|
||||
h.Helper()
|
||||
}
|
||||
return Error(t, err, append([]interface{}{msg}, args...)...)
|
||||
}
|
||||
|
||||
// Exactlyf asserts that two objects are equal in value and type.
|
||||
//
|
||||
// assert.Exactlyf(t, int32(123, "error message %s", "formatted"), int64(123))
|
||||
func Exactlyf(t TestingT, expected interface{}, actual interface{}, msg string, args ...interface{}) bool {
|
||||
if h, ok := t.(tHelper); ok {
|
||||
h.Helper()
|
||||
}
|
||||
return Exactly(t, expected, actual, append([]interface{}{msg}, args...)...)
|
||||
}
|
||||
|
||||
// Failf reports a failure through
|
||||
func Failf(t TestingT, failureMessage string, msg string, args ...interface{}) bool {
|
||||
if h, ok := t.(tHelper); ok {
|
||||
h.Helper()
|
||||
}
|
||||
return Fail(t, failureMessage, append([]interface{}{msg}, args...)...)
|
||||
}
|
||||
|
||||
// FailNowf fails test
|
||||
func FailNowf(t TestingT, failureMessage string, msg string, args ...interface{}) bool {
|
||||
if h, ok := t.(tHelper); ok {
|
||||
h.Helper()
|
||||
}
|
||||
return FailNow(t, failureMessage, append([]interface{}{msg}, args...)...)
|
||||
}
|
||||
|
||||
// Falsef asserts that the specified value is false.
|
||||
//
|
||||
// assert.Falsef(t, myBool, "error message %s", "formatted")
|
||||
func Falsef(t TestingT, value bool, msg string, args ...interface{}) bool {
|
||||
if h, ok := t.(tHelper); ok {
|
||||
h.Helper()
|
||||
}
|
||||
return False(t, value, append([]interface{}{msg}, args...)...)
|
||||
}
|
||||
|
||||
// FileExistsf checks whether a file exists in the given path. It also fails if the path points to a directory or there is an error when trying to check the file.
|
||||
func FileExistsf(t TestingT, path string, msg string, args ...interface{}) bool {
|
||||
if h, ok := t.(tHelper); ok {
|
||||
h.Helper()
|
||||
}
|
||||
return FileExists(t, path, append([]interface{}{msg}, args...)...)
|
||||
}
|
||||
|
||||
// HTTPBodyContainsf asserts that a specified handler returns a
|
||||
// body that contains a string.
|
||||
//
|
||||
// assert.HTTPBodyContainsf(t, myHandler, "GET", "www.google.com", nil, "I'm Feeling Lucky", "error message %s", "formatted")
|
||||
//
|
||||
// Returns whether the assertion was successful (true) or not (false).
|
||||
func HTTPBodyContainsf(t TestingT, handler http.HandlerFunc, method string, url string, values url.Values, str interface{}, msg string, args ...interface{}) bool {
|
||||
if h, ok := t.(tHelper); ok {
|
||||
h.Helper()
|
||||
}
|
||||
return HTTPBodyContains(t, handler, method, url, values, str, append([]interface{}{msg}, args...)...)
|
||||
}
|
||||
|
||||
// HTTPBodyNotContainsf asserts that a specified handler returns a
|
||||
// body that does not contain a string.
|
||||
//
|
||||
// assert.HTTPBodyNotContainsf(t, myHandler, "GET", "www.google.com", nil, "I'm Feeling Lucky", "error message %s", "formatted")
|
||||
//
|
||||
// Returns whether the assertion was successful (true) or not (false).
|
||||
func HTTPBodyNotContainsf(t TestingT, handler http.HandlerFunc, method string, url string, values url.Values, str interface{}, msg string, args ...interface{}) bool {
|
||||
if h, ok := t.(tHelper); ok {
|
||||
h.Helper()
|
||||
}
|
||||
return HTTPBodyNotContains(t, handler, method, url, values, str, append([]interface{}{msg}, args...)...)
|
||||
}
|
||||
|
||||
// HTTPErrorf asserts that a specified handler returns an error status code.
|
||||
//
|
||||
// assert.HTTPErrorf(t, myHandler, "POST", "/a/b/c", url.Values{"a": []string{"b", "c"}}
|
||||
//
|
||||
// Returns whether the assertion was successful (true, "error message %s", "formatted") or not (false).
|
||||
func HTTPErrorf(t TestingT, handler http.HandlerFunc, method string, url string, values url.Values, msg string, args ...interface{}) bool {
|
||||
if h, ok := t.(tHelper); ok {
|
||||
h.Helper()
|
||||
}
|
||||
return HTTPError(t, handler, method, url, values, append([]interface{}{msg}, args...)...)
|
||||
}
|
||||
|
||||
// HTTPRedirectf asserts that a specified handler returns a redirect status code.
|
||||
//
|
||||
// assert.HTTPRedirectf(t, myHandler, "GET", "/a/b/c", url.Values{"a": []string{"b", "c"}}
|
||||
//
|
||||
// Returns whether the assertion was successful (true, "error message %s", "formatted") or not (false).
|
||||
func HTTPRedirectf(t TestingT, handler http.HandlerFunc, method string, url string, values url.Values, msg string, args ...interface{}) bool {
|
||||
if h, ok := t.(tHelper); ok {
|
||||
h.Helper()
|
||||
}
|
||||
return HTTPRedirect(t, handler, method, url, values, append([]interface{}{msg}, args...)...)
|
||||
}
|
||||
|
||||
// HTTPSuccessf asserts that a specified handler returns a success status code.
|
||||
//
|
||||
// assert.HTTPSuccessf(t, myHandler, "POST", "http://www.google.com", nil, "error message %s", "formatted")
|
||||
//
|
||||
// Returns whether the assertion was successful (true) or not (false).
|
||||
func HTTPSuccessf(t TestingT, handler http.HandlerFunc, method string, url string, values url.Values, msg string, args ...interface{}) bool {
|
||||
if h, ok := t.(tHelper); ok {
|
||||
h.Helper()
|
||||
}
|
||||
return HTTPSuccess(t, handler, method, url, values, append([]interface{}{msg}, args...)...)
|
||||
}
|
||||
|
||||
// Implementsf asserts that an object is implemented by the specified interface.
|
||||
//
|
||||
// assert.Implementsf(t, (*MyInterface, "error message %s", "formatted")(nil), new(MyObject))
|
||||
func Implementsf(t TestingT, interfaceObject interface{}, object interface{}, msg string, args ...interface{}) bool {
|
||||
if h, ok := t.(tHelper); ok {
|
||||
h.Helper()
|
||||
}
|
||||
return Implements(t, interfaceObject, object, append([]interface{}{msg}, args...)...)
|
||||
}
|
||||
|
||||
// InDeltaf asserts that the two numerals are within delta of each other.
|
||||
//
|
||||
// assert.InDeltaf(t, math.Pi, (22 / 7.0, "error message %s", "formatted"), 0.01)
|
||||
func InDeltaf(t TestingT, expected interface{}, actual interface{}, delta float64, msg string, args ...interface{}) bool {
|
||||
if h, ok := t.(tHelper); ok {
|
||||
h.Helper()
|
||||
}
|
||||
return InDelta(t, expected, actual, delta, append([]interface{}{msg}, args...)...)
|
||||
}
|
||||
|
||||
// InDeltaMapValuesf is the same as InDelta, but it compares all values between two maps. Both maps must have exactly the same keys.
|
||||
func InDeltaMapValuesf(t TestingT, expected interface{}, actual interface{}, delta float64, msg string, args ...interface{}) bool {
|
||||
if h, ok := t.(tHelper); ok {
|
||||
h.Helper()
|
||||
}
|
||||
return InDeltaMapValues(t, expected, actual, delta, append([]interface{}{msg}, args...)...)
|
||||
}
|
||||
|
||||
// InDeltaSlicef is the same as InDelta, except it compares two slices.
|
||||
func InDeltaSlicef(t TestingT, expected interface{}, actual interface{}, delta float64, msg string, args ...interface{}) bool {
|
||||
if h, ok := t.(tHelper); ok {
|
||||
h.Helper()
|
||||
}
|
||||
return InDeltaSlice(t, expected, actual, delta, append([]interface{}{msg}, args...)...)
|
||||
}
|
||||
|
||||
// InEpsilonf asserts that expected and actual have a relative error less than epsilon
|
||||
func InEpsilonf(t TestingT, expected interface{}, actual interface{}, epsilon float64, msg string, args ...interface{}) bool {
|
||||
if h, ok := t.(tHelper); ok {
|
||||
h.Helper()
|
||||
}
|
||||
return InEpsilon(t, expected, actual, epsilon, append([]interface{}{msg}, args...)...)
|
||||
}
|
||||
|
||||
// InEpsilonSlicef is the same as InEpsilon, except it compares each value from two slices.
|
||||
func InEpsilonSlicef(t TestingT, expected interface{}, actual interface{}, epsilon float64, msg string, args ...interface{}) bool {
|
||||
if h, ok := t.(tHelper); ok {
|
||||
h.Helper()
|
||||
}
|
||||
return InEpsilonSlice(t, expected, actual, epsilon, append([]interface{}{msg}, args...)...)
|
||||
}
|
||||
|
||||
// IsTypef asserts that the specified objects are of the same type.
|
||||
func IsTypef(t TestingT, expectedType interface{}, object interface{}, msg string, args ...interface{}) bool {
|
||||
if h, ok := t.(tHelper); ok {
|
||||
h.Helper()
|
||||
}
|
||||
return IsType(t, expectedType, object, append([]interface{}{msg}, args...)...)
|
||||
}
|
||||
|
||||
// JSONEqf asserts that two JSON strings are equivalent.
|
||||
//
|
||||
// assert.JSONEqf(t, `{"hello": "world", "foo": "bar"}`, `{"foo": "bar", "hello": "world"}`, "error message %s", "formatted")
|
||||
func JSONEqf(t TestingT, expected string, actual string, msg string, args ...interface{}) bool {
|
||||
if h, ok := t.(tHelper); ok {
|
||||
h.Helper()
|
||||
}
|
||||
return JSONEq(t, expected, actual, append([]interface{}{msg}, args...)...)
|
||||
}
|
||||
|
||||
// Lenf asserts that the specified object has specific length.
|
||||
// Lenf also fails if the object has a type that len() not accept.
|
||||
//
|
||||
// assert.Lenf(t, mySlice, 3, "error message %s", "formatted")
|
||||
func Lenf(t TestingT, object interface{}, length int, msg string, args ...interface{}) bool {
|
||||
if h, ok := t.(tHelper); ok {
|
||||
h.Helper()
|
||||
}
|
||||
return Len(t, object, length, append([]interface{}{msg}, args...)...)
|
||||
}
|
||||
|
||||
// Nilf asserts that the specified object is nil.
|
||||
//
|
||||
// assert.Nilf(t, err, "error message %s", "formatted")
|
||||
func Nilf(t TestingT, object interface{}, msg string, args ...interface{}) bool {
|
||||
if h, ok := t.(tHelper); ok {
|
||||
h.Helper()
|
||||
}
|
||||
return Nil(t, object, append([]interface{}{msg}, args...)...)
|
||||
}
|
||||
|
||||
// NoErrorf asserts that a function returned no error (i.e. `nil`).
|
||||
//
|
||||
// actualObj, err := SomeFunction()
|
||||
// if assert.NoErrorf(t, err, "error message %s", "formatted") {
|
||||
// assert.Equal(t, expectedObj, actualObj)
|
||||
// }
|
||||
func NoErrorf(t TestingT, err error, msg string, args ...interface{}) bool {
|
||||
if h, ok := t.(tHelper); ok {
|
||||
h.Helper()
|
||||
}
|
||||
return NoError(t, err, append([]interface{}{msg}, args...)...)
|
||||
}
|
||||
|
||||
// NotContainsf asserts that the specified string, list(array, slice...) or map does NOT contain the
|
||||
// specified substring or element.
|
||||
//
|
||||
// assert.NotContainsf(t, "Hello World", "Earth", "error message %s", "formatted")
|
||||
// assert.NotContainsf(t, ["Hello", "World"], "Earth", "error message %s", "formatted")
|
||||
// assert.NotContainsf(t, {"Hello": "World"}, "Earth", "error message %s", "formatted")
|
||||
func NotContainsf(t TestingT, s interface{}, contains interface{}, msg string, args ...interface{}) bool {
|
||||
if h, ok := t.(tHelper); ok {
|
||||
h.Helper()
|
||||
}
|
||||
return NotContains(t, s, contains, append([]interface{}{msg}, args...)...)
|
||||
}
|
||||
|
||||
// NotEmptyf asserts that the specified object is NOT empty. I.e. not nil, "", false, 0 or either
|
||||
// a slice or a channel with len == 0.
|
||||
//
|
||||
// if assert.NotEmptyf(t, obj, "error message %s", "formatted") {
|
||||
// assert.Equal(t, "two", obj[1])
|
||||
// }
|
||||
func NotEmptyf(t TestingT, object interface{}, msg string, args ...interface{}) bool {
|
||||
if h, ok := t.(tHelper); ok {
|
||||
h.Helper()
|
||||
}
|
||||
return NotEmpty(t, object, append([]interface{}{msg}, args...)...)
|
||||
}
|
||||
|
||||
// NotEqualf asserts that the specified values are NOT equal.
|
||||
//
|
||||
// assert.NotEqualf(t, obj1, obj2, "error message %s", "formatted")
|
||||
//
|
||||
// Pointer variable equality is determined based on the equality of the
|
||||
// referenced values (as opposed to the memory addresses).
|
||||
func NotEqualf(t TestingT, expected interface{}, actual interface{}, msg string, args ...interface{}) bool {
|
||||
if h, ok := t.(tHelper); ok {
|
||||
h.Helper()
|
||||
}
|
||||
return NotEqual(t, expected, actual, append([]interface{}{msg}, args...)...)
|
||||
}
|
||||
|
||||
// NotNilf asserts that the specified object is not nil.
|
||||
//
|
||||
// assert.NotNilf(t, err, "error message %s", "formatted")
|
||||
func NotNilf(t TestingT, object interface{}, msg string, args ...interface{}) bool {
|
||||
if h, ok := t.(tHelper); ok {
|
||||
h.Helper()
|
||||
}
|
||||
return NotNil(t, object, append([]interface{}{msg}, args...)...)
|
||||
}
|
||||
|
||||
// NotPanicsf asserts that the code inside the specified PanicTestFunc does NOT panic.
|
||||
//
|
||||
// assert.NotPanicsf(t, func(){ RemainCalm() }, "error message %s", "formatted")
|
||||
func NotPanicsf(t TestingT, f PanicTestFunc, msg string, args ...interface{}) bool {
|
||||
if h, ok := t.(tHelper); ok {
|
||||
h.Helper()
|
||||
}
|
||||
return NotPanics(t, f, append([]interface{}{msg}, args...)...)
|
||||
}
|
||||
|
||||
// NotRegexpf asserts that a specified regexp does not match a string.
|
||||
//
|
||||
// assert.NotRegexpf(t, regexp.MustCompile("starts", "error message %s", "formatted"), "it's starting")
|
||||
// assert.NotRegexpf(t, "^start", "it's not starting", "error message %s", "formatted")
|
||||
func NotRegexpf(t TestingT, rx interface{}, str interface{}, msg string, args ...interface{}) bool {
|
||||
if h, ok := t.(tHelper); ok {
|
||||
h.Helper()
|
||||
}
|
||||
return NotRegexp(t, rx, str, append([]interface{}{msg}, args...)...)
|
||||
}
|
||||
|
||||
// NotSubsetf asserts that the specified list(array, slice...) contains not all
|
||||
// elements given in the specified subset(array, slice...).
|
||||
//
|
||||
// assert.NotSubsetf(t, [1, 3, 4], [1, 2], "But [1, 3, 4] does not contain [1, 2]", "error message %s", "formatted")
|
||||
func NotSubsetf(t TestingT, list interface{}, subset interface{}, msg string, args ...interface{}) bool {
|
||||
if h, ok := t.(tHelper); ok {
|
||||
h.Helper()
|
||||
}
|
||||
return NotSubset(t, list, subset, append([]interface{}{msg}, args...)...)
|
||||
}
|
||||
|
||||
// NotZerof asserts that i is not the zero value for its type.
|
||||
func NotZerof(t TestingT, i interface{}, msg string, args ...interface{}) bool {
|
||||
if h, ok := t.(tHelper); ok {
|
||||
h.Helper()
|
||||
}
|
||||
return NotZero(t, i, append([]interface{}{msg}, args...)...)
|
||||
}
|
||||
|
||||
// Panicsf asserts that the code inside the specified PanicTestFunc panics.
|
||||
//
|
||||
// assert.Panicsf(t, func(){ GoCrazy() }, "error message %s", "formatted")
|
||||
func Panicsf(t TestingT, f PanicTestFunc, msg string, args ...interface{}) bool {
|
||||
if h, ok := t.(tHelper); ok {
|
||||
h.Helper()
|
||||
}
|
||||
return Panics(t, f, append([]interface{}{msg}, args...)...)
|
||||
}
|
||||
|
||||
// PanicsWithValuef asserts that the code inside the specified PanicTestFunc panics, and that
|
||||
// the recovered panic value equals the expected panic value.
|
||||
//
|
||||
// assert.PanicsWithValuef(t, "crazy error", func(){ GoCrazy() }, "error message %s", "formatted")
|
||||
func PanicsWithValuef(t TestingT, expected interface{}, f PanicTestFunc, msg string, args ...interface{}) bool {
|
||||
if h, ok := t.(tHelper); ok {
|
||||
h.Helper()
|
||||
}
|
||||
return PanicsWithValue(t, expected, f, append([]interface{}{msg}, args...)...)
|
||||
}
|
||||
|
||||
// Regexpf asserts that a specified regexp matches a string.
|
||||
//
|
||||
// assert.Regexpf(t, regexp.MustCompile("start", "error message %s", "formatted"), "it's starting")
|
||||
// assert.Regexpf(t, "start...$", "it's not starting", "error message %s", "formatted")
|
||||
func Regexpf(t TestingT, rx interface{}, str interface{}, msg string, args ...interface{}) bool {
|
||||
if h, ok := t.(tHelper); ok {
|
||||
h.Helper()
|
||||
}
|
||||
return Regexp(t, rx, str, append([]interface{}{msg}, args...)...)
|
||||
}
|
||||
|
||||
// Subsetf asserts that the specified list(array, slice...) contains all
|
||||
// elements given in the specified subset(array, slice...).
|
||||
//
|
||||
// assert.Subsetf(t, [1, 2, 3], [1, 2], "But [1, 2, 3] does contain [1, 2]", "error message %s", "formatted")
|
||||
func Subsetf(t TestingT, list interface{}, subset interface{}, msg string, args ...interface{}) bool {
|
||||
if h, ok := t.(tHelper); ok {
|
||||
h.Helper()
|
||||
}
|
||||
return Subset(t, list, subset, append([]interface{}{msg}, args...)...)
|
||||
}
|
||||
|
||||
// Truef asserts that the specified value is true.
|
||||
//
|
||||
// assert.Truef(t, myBool, "error message %s", "formatted")
|
||||
func Truef(t TestingT, value bool, msg string, args ...interface{}) bool {
|
||||
if h, ok := t.(tHelper); ok {
|
||||
h.Helper()
|
||||
}
|
||||
return True(t, value, append([]interface{}{msg}, args...)...)
|
||||
}
|
||||
|
||||
// WithinDurationf asserts that the two times are within duration delta of each other.
|
||||
//
|
||||
// assert.WithinDurationf(t, time.Now(), time.Now(), 10*time.Second, "error message %s", "formatted")
|
||||
func WithinDurationf(t TestingT, expected time.Time, actual time.Time, delta time.Duration, msg string, args ...interface{}) bool {
|
||||
if h, ok := t.(tHelper); ok {
|
||||
h.Helper()
|
||||
}
|
||||
return WithinDuration(t, expected, actual, delta, append([]interface{}{msg}, args...)...)
|
||||
}
|
||||
|
||||
// Zerof asserts that i is the zero value for its type.
|
||||
func Zerof(t TestingT, i interface{}, msg string, args ...interface{}) bool {
|
||||
if h, ok := t.(tHelper); ok {
|
||||
h.Helper()
|
||||
}
|
||||
return Zero(t, i, append([]interface{}{msg}, args...)...)
|
||||
}
|
||||
+10
@@ -0,0 +1,10 @@
|
||||
//+build appengine
|
||||
|
||||
package gjson
|
||||
|
||||
func getBytes(json []byte, path string) Result {
|
||||
return Get(string(json), path)
|
||||
}
|
||||
func fillIndex(json string, c *parseContext) {
|
||||
// noop. Use zero for the Index value.
|
||||
}
|
||||
+73
@@ -0,0 +1,73 @@
|
||||
//+build !appengine
|
||||
|
||||
package gjson
|
||||
|
||||
import (
|
||||
"reflect"
|
||||
"unsafe"
|
||||
)
|
||||
|
||||
// getBytes casts the input json bytes to a string and safely returns the
|
||||
// results as uniquely allocated data. This operation is intended to minimize
|
||||
// copies and allocations for the large json string->[]byte.
|
||||
func getBytes(json []byte, path string) Result {
|
||||
var result Result
|
||||
if json != nil {
|
||||
// unsafe cast to string
|
||||
result = Get(*(*string)(unsafe.Pointer(&json)), path)
|
||||
result = fromBytesGet(result)
|
||||
}
|
||||
return result
|
||||
}
|
||||
|
||||
func fromBytesGet(result Result) Result {
|
||||
// safely get the string headers
|
||||
rawhi := *(*reflect.StringHeader)(unsafe.Pointer(&result.Raw))
|
||||
strhi := *(*reflect.StringHeader)(unsafe.Pointer(&result.Str))
|
||||
// create byte slice headers
|
||||
rawh := reflect.SliceHeader{Data: rawhi.Data, Len: rawhi.Len}
|
||||
strh := reflect.SliceHeader{Data: strhi.Data, Len: strhi.Len}
|
||||
if strh.Data == 0 {
|
||||
// str is nil
|
||||
if rawh.Data == 0 {
|
||||
// raw is nil
|
||||
result.Raw = ""
|
||||
} else {
|
||||
// raw has data, safely copy the slice header to a string
|
||||
result.Raw = string(*(*[]byte)(unsafe.Pointer(&rawh)))
|
||||
}
|
||||
result.Str = ""
|
||||
} else if rawh.Data == 0 {
|
||||
// raw is nil
|
||||
result.Raw = ""
|
||||
// str has data, safely copy the slice header to a string
|
||||
result.Str = string(*(*[]byte)(unsafe.Pointer(&strh)))
|
||||
} else if strh.Data >= rawh.Data &&
|
||||
int(strh.Data)+strh.Len <= int(rawh.Data)+rawh.Len {
|
||||
// Str is a substring of Raw.
|
||||
start := int(strh.Data - rawh.Data)
|
||||
// safely copy the raw slice header
|
||||
result.Raw = string(*(*[]byte)(unsafe.Pointer(&rawh)))
|
||||
// substring the raw
|
||||
result.Str = result.Raw[start : start+strh.Len]
|
||||
} else {
|
||||
// safely copy both the raw and str slice headers to strings
|
||||
result.Raw = string(*(*[]byte)(unsafe.Pointer(&rawh)))
|
||||
result.Str = string(*(*[]byte)(unsafe.Pointer(&strh)))
|
||||
}
|
||||
return result
|
||||
}
|
||||
|
||||
// fillIndex finds the position of Raw data and assigns it to the Index field
|
||||
// of the resulting value. If the position cannot be found then Index zero is
|
||||
// used instead.
|
||||
func fillIndex(json string, c *parseContext) {
|
||||
if len(c.value.Raw) > 0 && !c.calcd {
|
||||
jhdr := *(*reflect.StringHeader)(unsafe.Pointer(&json))
|
||||
rhdr := *(*reflect.StringHeader)(unsafe.Pointer(&(c.value.Raw)))
|
||||
c.value.Index = int(rhdr.Data - jhdr.Data)
|
||||
if c.value.Index < 0 || c.value.Index >= len(json) {
|
||||
c.value.Index = 0
|
||||
}
|
||||
}
|
||||
}
|
||||
Reference in New Issue
Block a user