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client.go
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client.go
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package xendit
import (
"bytes"
"context"
"encoding/json"
"encoding/xml"
"errors"
"fmt"
"io"
"log"
"mime/multipart"
"net/http"
"net/http/httputil"
"net/url"
"os"
"path/filepath"
"reflect"
"regexp"
"strings"
"time"
common "github.com/xendit/xendit-go/v6/common"
invoice "github.com/xendit/xendit-go/v6/invoice"
paymentrequest "github.com/xendit/xendit-go/v6/payment_request"
paymentmethod "github.com/xendit/xendit-go/v6/payment_method"
refund "github.com/xendit/xendit-go/v6/refund"
balance "github.com/xendit/xendit-go/v6/balance_and_transaction"
transaction "github.com/xendit/xendit-go/v6/balance_and_transaction"
customer "github.com/xendit/xendit-go/v6/customer"
payout "github.com/xendit/xendit-go/v6/payout"
)
var (
jsonCheck = regexp.MustCompile(`(?i:(?:application|text)/(?:vnd\.[^;]+\+)?json)`)
xmlCheck = regexp.MustCompile(`(?i:(?:application|text)/xml)`)
queryParamSplit = regexp.MustCompile(`(^|&)([^&]+)`)
queryDescape = strings.NewReplacer( "%5B", "[", "%5D", "]" )
)
// APIClient manages communication with XENDIT API
// In most cases there should be only one, shared, APIClient.
type APIClient struct {
cfg *Configuration
apiKey string
// API Services
InvoiceApi invoice.InvoiceApi
PaymentRequestApi paymentrequest.PaymentRequestApi
PaymentMethodApi paymentmethod.PaymentMethodApi
RefundApi refund.RefundApi
BalanceApi balance.BalanceApi
TransactionApi transaction.TransactionApi
CustomerApi customer.CustomerApi
PayoutApi payout.PayoutApi
}
type service struct {
client *APIClient
}
// NewClient creates a new Xendit SDK Client. The SDK needs to be instantiated using your
// secret API key obtained from the https://dashboard.xendit.co/settings/developers#api-keys.
// You can sign up for a free Dashboard account from https://dashboard.xendit.co/register.
func NewClient(apiKey string) *APIClient {
cfg := NewConfiguration()
if cfg.HTTPClient == nil {
cfg.HTTPClient = http.DefaultClient
}
c := &APIClient{}
c.cfg = cfg
c.apiKey = apiKey
c.InvoiceApi = invoice.NewInvoiceApi(c)
c.PaymentRequestApi = paymentrequest.NewPaymentRequestApi(c)
c.PaymentMethodApi = paymentmethod.NewPaymentMethodApi(c)
c.RefundApi = refund.NewRefundApi(c)
c.BalanceApi = balance.NewBalanceApi(c)
c.TransactionApi = transaction.NewTransactionApi(c)
c.CustomerApi = customer.NewCustomerApi(c)
c.PayoutApi = payout.NewPayoutApi(c)
return c
}
// Verify optional parameters are of the correct type.
func typeCheckParameter(obj interface{}, expected string, name string) error {
// Make sure there is an object.
if obj == nil {
return nil
}
// Check the type is as expected.
if reflect.TypeOf(obj).String() != expected {
return fmt.Errorf("expected %s to be of type %s but received %s", name, expected, reflect.TypeOf(obj).String())
}
return nil
}
// helper for converting interface{} parameters to json strings
func parameterToJson(obj interface{}) (string, error) {
jsonBuf, err := json.Marshal(obj)
if err != nil {
return "", err
}
return string(jsonBuf), err
}
// callAPI do the request.
func (c *APIClient) CallAPI(request *http.Request) (*http.Response, error) {
if c.cfg.Debug {
dump, err := httputil.DumpRequestOut(request, true)
if err != nil {
return nil, err
}
log.Printf("\n%s\n", string(dump))
}
resp, err := c.cfg.HTTPClient.Do(request)
if err != nil {
return resp, err
}
if c.cfg.Debug {
dump, err := httputil.DumpResponse(resp, true)
if err != nil {
return resp, err
}
log.Printf("\n%s\n", string(dump))
}
return resp, err
}
// Allow modification of underlying config for alternate implementations and testing
// Caution: modifying the configuration while live can cause data races and potentially unwanted behavior
func (c *APIClient) GetConfig() common.IConfiguration {
return c.cfg
}
// PrepareRequest build the request
func (c *APIClient) PrepareRequest(
ctx context.Context,
path string, method string,
postBody interface{},
headerParams map[string]string,
queryParams url.Values,
formParams url.Values,
formFiles []common.FormFile) (localVarRequest *http.Request, err error) {
// XENDIT headers
headerParams["xendit-lib"] = "go"
// TODO: overwrite this line from buddy pipeline
headerParams["xendit-lib-ver"] = "6.0.0"
var body *bytes.Buffer
// Detect postBody type and post.
if postBody != nil {
contentType := headerParams["Content-Type"]
if contentType == "" {
contentType = detectContentType(postBody)
headerParams["Content-Type"] = contentType
}
body, err = setBody(postBody, contentType)
if err != nil {
return nil, err
}
}
// add form parameters and file if available.
if strings.HasPrefix(headerParams["Content-Type"], "multipart/form-data") && len(formParams) > 0 || (len(formFiles) > 0) {
if body != nil {
return nil, errors.New("Cannot specify postBody and multipart form at the same time.")
}
body = &bytes.Buffer{}
w := multipart.NewWriter(body)
for k, v := range formParams {
for _, iv := range v {
if strings.HasPrefix(k, "@") { // file
err = addFile(w, k[1:], iv)
if err != nil {
return nil, err
}
} else { // form value
w.WriteField(k, iv)
}
}
}
for _, formFile := range formFiles {
if len(formFile.FileBytes) > 0 && formFile.FileName != "" {
w.Boundary()
part, err := w.CreateFormFile(formFile.FormFileName, filepath.Base(formFile.FileName))
if err != nil {
return nil, err
}
_, err = part.Write(formFile.FileBytes)
if err != nil {
return nil, err
}
}
}
// Set the Boundary in the Content-Type
headerParams["Content-Type"] = w.FormDataContentType()
// Set Content-Length
headerParams["Content-Length"] = fmt.Sprintf("%d", body.Len())
w.Close()
}
if strings.HasPrefix(headerParams["Content-Type"], "application/x-www-form-urlencoded") && len(formParams) > 0 {
if body != nil {
return nil, errors.New("Cannot specify postBody and x-www-form-urlencoded form at the same time.")
}
body = &bytes.Buffer{}
body.WriteString(formParams.Encode())
// Set Content-Length
headerParams["Content-Length"] = fmt.Sprintf("%d", body.Len())
}
// Setup path and query parameters
url, err := url.Parse(path)
if err != nil {
return nil, err
}
// Override request host, if applicable
if c.cfg.Host != "" {
url.Host = c.cfg.Host
}
// Override request scheme, if applicable
if c.cfg.Scheme != "" {
url.Scheme = c.cfg.Scheme
}
// Adding Query Param
query := url.Query()
for k, v := range queryParams {
for _, iv := range v {
query.Add(k, iv)
}
}
// Encode the parameters.
url.RawQuery = queryParamSplit.ReplaceAllStringFunc(query.Encode(), func(s string) string {
pieces := strings.Split(s, "=")
pieces[0] = queryDescape.Replace(pieces[0])
return strings.Join(pieces, "=")
})
// Generate a new request
if body != nil {
localVarRequest, err = http.NewRequest(method, url.String(), body)
} else {
localVarRequest, err = http.NewRequest(method, url.String(), nil)
}
if err != nil {
return nil, err
}
// add header parameters, if any
if len(headerParams) > 0 {
headers := http.Header{}
for h, v := range headerParams {
headers[h] = []string{v}
}
localVarRequest.Header = headers
}
// Add the user agent to the request.
localVarRequest.Header.Add("User-Agent", c.cfg.UserAgent)
if ctx != nil {
// add context to the request
localVarRequest = localVarRequest.WithContext(ctx)
// Walk through any authentication.
if c.apiKey != "" {
localVarRequest.SetBasicAuth(c.apiKey, "")
}
}
for header, value := range c.cfg.DefaultHeader {
localVarRequest.Header.Add(header, value)
}
return localVarRequest, nil
}
func (c *APIClient) Decode(v interface{}, b []byte, contentType string) (err error) {
if len(b) == 0 {
return nil
}
if s, ok := v.(*string); ok {
*s = string(b)
return nil
}
if f, ok := v.(*os.File); ok {
f, err = os.CreateTemp("", "HttpClientFile")
if err != nil {
return
}
_, err = f.Write(b)
if err != nil {
return
}
_, err = f.Seek(0, io.SeekStart)
return
}
if f, ok := v.(**os.File); ok {
*f, err = os.CreateTemp("", "HttpClientFile")
if err != nil {
return
}
_, err = (*f).Write(b)
if err != nil {
return
}
_, err = (*f).Seek(0, io.SeekStart)
return
}
if xmlCheck.MatchString(contentType) {
if err = xml.Unmarshal(b, v); err != nil {
return err
}
return nil
}
if jsonCheck.MatchString(contentType) {
if actualObj, ok := v.(interface{ GetActualInstance() interface{} }); ok { // oneOf, anyOf schemas
if unmarshalObj, ok := actualObj.(interface{ UnmarshalJSON([]byte) error }); ok { // make sure it has UnmarshalJSON defined
if err = unmarshalObj.UnmarshalJSON(b); err != nil {
return err
}
} else {
return errors.New("Unknown type with GetActualInstance but no unmarshalObj.UnmarshalJSON defined")
}
} else if err = json.Unmarshal(b, v); err != nil { // simple model
return err
}
return nil
}
return errors.New("undefined response type")
}
// Add a file to the multipart request
func addFile(w *multipart.Writer, fieldName, path string) error {
file, err := os.Open(filepath.Clean(path))
if err != nil {
return err
}
err = file.Close()
if err != nil {
return err
}
part, err := w.CreateFormFile(fieldName, filepath.Base(path))
if err != nil {
return err
}
_, err = io.Copy(part, file)
return err
}
// Set request body from an interface{}
func setBody(body interface{}, contentType string) (bodyBuf *bytes.Buffer, err error) {
if bodyBuf == nil {
bodyBuf = &bytes.Buffer{}
}
if reader, ok := body.(io.Reader); ok {
_, err = bodyBuf.ReadFrom(reader)
} else if fp, ok := body.(*os.File); ok {
_, err = bodyBuf.ReadFrom(fp)
} else if b, ok := body.([]byte); ok {
_, err = bodyBuf.Write(b)
} else if s, ok := body.(string); ok {
_, err = bodyBuf.WriteString(s)
} else if s, ok := body.(*string); ok {
_, err = bodyBuf.WriteString(*s)
} else if jsonCheck.MatchString(contentType) {
err = json.NewEncoder(bodyBuf).Encode(body)
} else if xmlCheck.MatchString(contentType) {
err = xml.NewEncoder(bodyBuf).Encode(body)
}
if err != nil {
return nil, err
}
if bodyBuf.Len() == 0 {
err = fmt.Errorf("invalid body type %s\n", contentType)
return nil, err
}
return bodyBuf, nil
}
// detectContentType method is used to figure out `Request.Body` content type for request header
func detectContentType(body interface{}) string {
contentType := "text/plain; charset=utf-8"
kind := reflect.TypeOf(body).Kind()
switch kind {
case reflect.Struct, reflect.Map, reflect.Ptr:
contentType = "application/json; charset=utf-8"
case reflect.String:
contentType = "text/plain; charset=utf-8"
default:
if b, ok := body.([]byte); ok {
contentType = http.DetectContentType(b)
} else if kind == reflect.Slice {
contentType = "application/json; charset=utf-8"
}
}
return contentType
}
// Ripped from https://github.com/gregjones/httpcache/blob/master/httpcache.go
type cacheControl map[string]string
func parseCacheControl(headers http.Header) cacheControl {
cc := cacheControl{}
ccHeader := headers.Get("Cache-Control")
for _, part := range strings.Split(ccHeader, ",") {
part = strings.Trim(part, " ")
if part == "" {
continue
}
if strings.ContainsRune(part, '=') {
keyval := strings.Split(part, "=")
cc[strings.Trim(keyval[0], " ")] = strings.Trim(keyval[1], ",")
} else {
cc[part] = ""
}
}
return cc
}
// CacheExpires helper function to determine remaining time before repeating a request.
func CacheExpires(r *http.Response) time.Time {
// Figure out when the cache expires.
var expires time.Time
now, err := time.Parse(time.RFC1123, r.Header.Get("date"))
if err != nil {
return time.Now()
}
respCacheControl := parseCacheControl(r.Header)
if maxAge, ok := respCacheControl["max-age"]; ok {
lifetime, err := time.ParseDuration(maxAge + "s")
if err != nil {
expires = now
} else {
expires = now.Add(lifetime)
}
} else {
expiresHeader := r.Header.Get("Expires")
if expiresHeader != "" {
expires, err = time.Parse(time.RFC1123, expiresHeader)
if err != nil {
expires = now
}
}
}
return expires
}