Recently, some users have been talking about the Exchange of AOFEX
. Considering that there is no example of how to access the REST interface of the contract Exchange on FMZ, in this article, we will use AOFEX
as an example to explain how to access the contract Exchange.
There is a distinction between spot platforms and futures platforms on FMZ. For example, the three well-known platforms have both spot trading and contract trading. In these different market, API interfaces are also different, and even some API systems are completely separate and independent. Therefore, when encapsulating these Exchanges on FMZ, we need to distinguish spot and futures.
There are already many examples in the forum of FMZ platform and the API documentation for encapsulating spot Exchanges by using FMZ general protocol, but there is not yet a complete example of encapsulating a contract Exchange. However, the general protocol plugin program that encapsulates the futures version is basically the same as the spot one, only with a few more interfaces.
FMZ general protocol documentation: https://www.fmz.com/bbs-topic/9120 An access DEMO of a spot platform general protocol is attached in the documentation.
Main interfaces for spot exchange objects
exchange.GetTicker() To obtain tick date, which is needed in both spot and futures.
exchange.GetDepth() To obtain order book data, which is needed in both spot and futures.
exchange.GetTrades() To obtain order flow data (market execution record), which is needed in both spot and futures.
exchange.GetRecords() To obtain K-line data, which is needed in both spot and futures.
exchange.GetAccount() To obtain the account asset data, which is needed in both spot and futures.
exchange.Buy() To place buy orders, which is needed in both spot and futures.
exchange.Sell() To place sell orders, which is needed in both spot and futures.
exchange.GetOrder() To obtain the data of the order with a specified ID, which is needed in both spot and futures.。
exchange.GetOrders() To obtain the pending orders in the current action, which is needed in both spot and futures.
exchange.CancelOrder() To cancel the order with a specified ID, which is needed in both spot and futures.
Futures exchange objects need to encapsulate extra interface functions used by futures, except the interface functions mentioned above.
exchange.SetMarginLevel() To set the leverage value of the current symbol.
exchange.SetDirection() To set the trading direction of the current symbol, namely: open long/ open short/ close long/ close short.
exchange.SetContractType()
To set the current contract code. For the futures has perpetual contracts (swap
), delivery contracts (quarter
) and other contracts, they have their own contract codes, and you can search in FMZ API documentation for details. When encapsulate them, please follow the settings, or the existing old strategies might not be operated normally.
exchange.GetPosition() To obtain the position data of the current symbol. Here you can notice that there is no such concept of holding positions in the spot; spot can only calculate the holding positions in the logic by comparing the account changes; however, the futures has holding positions.
Take AOFEX as an example. If configure the exchange objects of general protocol on FMZ, the API KEY should be filled as:
There are input boxes for accessKey
and secretKey
on the general protocol configuration page of FMZ. After the exchange object of general protocol is configured, when the general protocol plugin program, during its operation, has received the request, and the field value of JSON formatted accessKey
in the Body of the request is 212f54a1-1c88-1bf5-54a1-f7bf52b3256c
, and the field value of secret_key
is 7RJPKpBJMBkUL87RJPKpkULJPSUpsaKpUL83ysDs
.
When call the following interface, the docker will send RPC request to the general protocol plugin as follows:
When call exchange.SetMarginLevel(10)
in the strategy, the data in the request body is:
{
"access_key":"212f54a1-1c88-1bf5-54a1-f7bf52b3256c",
"method":"io",
"nonce":1631858961289247000,
"params":{"args":[10],"code":0},
"secret_key":"7RJPKpBJMBkUL87RJPKpkULJPSUpsaKpUL83ysDs"
}
Call exchange.SetMarginLevel(10), and pass 10 as the parameter.
When call exchange.SetDirection("buy")
in the strategy, the data in the request body is:
{
"access_key":"212f54a1-1c88-1bf5-54a1-f7bf52b3256c",
"method":"io",
"nonce":1631860438946922000,
"params":{"args":["buy"],"code":1},
"secret_key":"7RJPKpBJMBkUL87RJPKpkULJPSUpsaKpUL83ysDs"
}
Call exchange.SetDirection(“buy”), pass in the parameter “buy”.
When call exchange.SetContractType("swap")
in the strategy, the data in the request body is:
{
"access_key":"212f54a1-1c88-1bf5-54a1-f7bf52b3256c",
"method":"io",
"nonce":1631860847525039000,
"params":{"args":["swap"],"code":2},
"secret_key":"7RJPKpBJMBkUL87RJPKpkULJPSUpsaKpUL83ysDs"
}
Call exchange.SetContractType(“swap”), pass in the parameter “swap”.
When call exchange.GetPosition()
in the strategy, the data in the request body is:
{
"access_key":"212f54a1-1c88-1bf5-54a1-f7bf52b3256c",
"method":"io",
"nonce":1631860996119505000,
"params":{"args":[],"code":3},
"secret_key":"7RJPKpBJMBkUL87RJPKpkULJPSUpsaKpUL83ysDs"
}
Call exchange.GetPosition(), no parameter is passed.
Observe the JSON data in the above request body, and we can see:
when a specific function for the futures is called, the field value of method
in the request body is all io
.
Distinguishing those functions needs to judge the code
in the field params
, namely:
code
is 0
, it means SetMarginLevel
.code
is 1
, it means SetDirection
.code
is 2
, it means SetContractType
.code
is 3
, it means GetPosition
.when those specific functions for the futures are called, the passed parameters are all in the args
of the field fieldparams
in the request body.
Compared with the spot version of the Go language plugin program example, it is necessary to make an extension in the OnPost
function:
Check out the places where there is a remark of “function required to extend the futures exchange object” in the following code.
func OnPost(w http.ResponseWriter, r *http.Request) {
var ret interface{}
defer func() {
if e := recover(); e != nil {
if ee, ok := e.(error); ok {
e = ee.Error()
}
ret = map[string]string{"error": fmt.Sprintf("%v", e)}
}
b, _ := json.Marshal(ret)
w.Write(b)
}()
b, err := ioutil.ReadAll(r.Body)
if err != nil {
panic(err)
}
var request RpcRequest
err = json.Unmarshal(b, &request)
if err != nil {
panic(err)
}
e := newZG(request.AccessKey, request.SecretKey)
var symbol string
if _, ok := request.Params["symbol"]; ok {
symbol = strings.ToUpper(request.Params["symbol"].(string))
}
var data interface{}
switch request.Method {
case "ticker":
data, err = e.GetTicker(symbol, "GET")
case "depth":
data, err = e.GetDepth(symbol, "GET")
case "trades":
data, err = e.GetTrades(symbol, "GET")
case "records":
data, err = e.GetRecords(toInt64(request.Params["period"]), symbol, "GET")
case "accounts":
data, err = e.GetAccount(symbol, "GET")
case "trade":
side := request.Params["type"].(string)
if side == "buy" {
side = "BUY"
} else {
side = "SELL"
}
price := toFloat(request.Params["price"])
amount := toFloat(request.Params["amount"])
data, err = e.Trade(side, price, amount, symbol, "POST")
case "orders":
data, err = e.GetOrders(symbol, "POST")
case "order":
data, err = e.GetOrder(toString(request.Params["id"]), symbol, "POST")
case "cancel":
data, err = e.CancelOrder(toString(request.Params["id"]), symbol, "POST")
default:
if strings.HasPrefix(request.Method, "__api_") {
params := map[string]interface{}{}
for k, v := range request.Params {
params[k] = toString(v)
}
data, err = e.tapiCall(request.Method[6:], params, "GET")
} else if request.Method == "io" { // extend the function required by the futures exchange object
code := toString(request.Params["code"])
if code == "0" {
// process SetMarginLevel
// ...
} else if code == "1" {
// process SetDirection
// ...
} else if code == "2" {
// process SetContractType
// ...
} else if code == "3" {
// process GetPosition
// ...
} else {
panic(errors.New(request.Method + " not support"))
}
} else {
panic(errors.New(request.Method + " not support"))
}
}
if err != nil {
panic(err)
}
ret = map[string]interface{}{
"data": data,
}
return
}
The three functions, nemely SetMarginLevel
, SetDirection
, SetContractType
, are literally used to set the relevant configuration of the current trading symbol. Among them, SetDirection
/SetContractType
is designed to set a local variable to record the current order direction (that is, you need to read this setting when placing an order to know which direction to place an order. The reason is that there are two directions for futures buying: open long and close short, so it needs to be distinguished) and the current contract code (when obtaining data like market quotes and orders, you need to make sure which contract is queried).
SetMarginLevel
needs specifically design that (1. leverage parameter can be passed as a parameter in the ordering interface; 2. the platform has an interface to set leverage), according to the leverage mechanism of the platform.
GetPosition
is the function to obtain the current symbol position; when the general protocol plugin program obtains the data returned by the platform position interface, directly construct the same data structure as the position
on FMZ.
Go language
/*
CGO_ENABLED=0 GOOS=windows GOARCH=amd64 go build xxx.go
*/
package main
import (
"bytes"
"encoding/hex"
"crypto/sha1"
"encoding/json"
"errors"
"flag"
"fmt"
"io/ioutil"
"log"
"net/http"
"net/url"
"sort"
"strconv"
"strings"
"time"
// proxy
"golang.org/x/net/proxy"
"crypto/tls"
"math/rand"
)
var isUsedProxy bool = false
var ct string = ""
var direction string = "buy"
var marginLevel float64 = 10
var currSymbol string = ""
func toFloat(s interface{}) float64 {
var ret float64
switch v := s.(type) {
case float64:
ret = v
case float32:
ret = float64(v)
case int64:
ret = float64(v)
case int:
ret = float64(v)
case int32:
ret = float64(v)
case string:
ret, _ = strconv.ParseFloat(strings.TrimSpace(v), 64)
}
return ret
}
func float2str(i float64) string {
return strconv.FormatFloat(i, 'f', -1, 64)
}
func toInt64(s interface{}) int64 {
var ret int64
switch v := s.(type) {
case int:
ret = int64(v)
case float64:
ret = int64(v)
case bool:
if v {
ret = 1
} else {
ret = 0
}
case int64:
ret = v
case string:
ret, _ = strconv.ParseInt(strings.TrimSpace(v), 10, 64)
}
return ret
}
func toString(s interface{}) string {
var ret string
switch v := s.(type) {
case string:
ret = v
case int64:
ret = strconv.FormatInt(v, 10)
case float64:
ret = strconv.FormatFloat(v, 'f', -1, 64)
case bool:
ret = strconv.FormatBool(v)
default:
ret = fmt.Sprintf("%v", s)
}
return ret
}
type Json struct {
data interface{}
}
func NewJson(body []byte) (*Json, error) {
j := new(Json)
err := j.UnmarshalJSON(body)
if err != nil {
return nil, err
}
return j, nil
}
func (j *Json) UnmarshalJSON(p []byte) error {
return json.Unmarshal(p, &j.data)
}
func (j *Json) Get(key string) *Json {
m, err := j.Map()
if err == nil {
if val, ok := m[key]; ok {
return &Json{val}
}
}
return &Json{nil}
}
func (j *Json) CheckGet(key string) (*Json, bool) {
m, err := j.Map()
if err == nil {
if val, ok := m[key]; ok {
return &Json{val}, true
}
}
return nil, false
}
func (j *Json) Map() (map[string]interface{}, error) {
if m, ok := (j.data).(map[string]interface{}); ok {
return m, nil
}
return nil, errors.New("type assertion to map[string]interface{} failed")
}
func (j *Json) Array() ([]interface{}, error) {
if a, ok := (j.data).([]interface{}); ok {
return a, nil
}
return nil, errors.New("type assertion to []interface{} failed")
}
func (j *Json) Bool() (bool, error) {
if s, ok := (j.data).(bool); ok {
return s, nil
}
return false, errors.New("type assertion to bool failed")
}
func (j *Json) String() (string, error) {
if s, ok := (j.data).(string); ok {
return s, nil
}
return "", errors.New("type assertion to string failed")
}
func (j *Json) Bytes() ([]byte, error) {
if s, ok := (j.data).(string); ok {
return []byte(s), nil
}
return nil, errors.New("type assertion to []byte failed")
}
func (j *Json) Int() (int, error) {
if f, ok := (j.data).(float64); ok {
return int(f), nil
}
return -1, errors.New("type assertion to float64 failed")
}
func (j *Json) MustArray(args ...[]interface{}) []interface{} {
var def []interface{}
switch len(args) {
case 0:
case 1:
def = args[0]
default:
log.Panicf("MustArray() received too many arguments %d", len(args))
}
a, err := j.Array()
if err == nil {
return a
}
return def
}
func (j *Json) MustMap(args ...map[string]interface{}) map[string]interface{} {
var def map[string]interface{}
switch len(args) {
case 0:
case 1:
def = args[0]
default:
log.Panicf("MustMap() received too many arguments %d", len(args))
}
a, err := j.Map()
if err == nil {
return a
}
return def
}
func (j *Json) MustString(args ...string) string {
var def string
switch len(args) {
case 0:
case 1:
def = args[0]
default:
log.Panicf("MustString() received too many arguments %d", len(args))
}
s, err := j.String()
if err == nil {
return s
}
return def
}
func (j *Json) MustInt64() int64 {
var ret int64
var err error
switch v := j.data.(type) {
case int:
ret = int64(v)
case int64:
ret = v
case float64:
ret = int64(v)
case string:
if ret, err = strconv.ParseInt(v, 10, 64); err != nil {
panic(err)
}
default:
ret = 0
}
return ret
}
func (j *Json) MustFloat64() float64 {
var ret float64
var err error
switch v := j.data.(type) {
case int:
ret = float64(v)
case int64:
ret = float64(v)
case float64:
ret = v
case string:
v = strings.Replace(v, ",", "", -1)
if ret, err = strconv.ParseFloat(v, 64); err != nil {
panic(err)
}
default:
ret = 0
}
return ret
}
type headerTuple struct {
name string
value string
}
type Request struct {
headers []headerTuple
Proxy string
Method string
Uri string
Body interface{}
QueryString interface{}
Timeout time.Duration
ContentType string
Accept string
Host string
UserAgent string
}
func (r *Request) AddHeader(name string, value string) {
if r.headers == nil {
r.headers = []headerTuple{}
}
r.headers = append(r.headers, headerTuple{name: name, value: value})
}
type iAOFEX struct {
accessKey string
secretKey string
clientID string
currency string
opCurrency string
baseCurrency string
quoteCurrency string
apiBase string
timeout time.Duration
timeLocation *time.Location
// ext
contractTypes []string
}
type MapSorter []Item
type Item struct {
Key string
Val string
}
func NewMapSorter(m map[string]string) MapSorter {
ms := make(MapSorter, 0, len(m))
for k, v := range m {
if strings.HasPrefix(k, "!") {
k = strings.Replace(k, "!", "", -1)
}
ms = append(ms, Item{k, v})
}
return ms
}
func (ms MapSorter) Len() int {
return len(ms)
}
func (ms MapSorter) Less(i, j int) bool {
return ms[i].Key < ms[j].Key
}
func (ms MapSorter) Swap(i, j int) {
ms[i], ms[j] = ms[j], ms[i]
}
func encodeParams(params map[string]string, escape bool) string {
ms := NewMapSorter(params)
sort.Sort(ms)
v := url.Values{}
for _, item := range ms {
v.Add(item.Key, item.Val)
}
if escape {
return v.Encode()
}
var buf bytes.Buffer
keys := make([]string, 0, len(v))
for k := range v {
keys = append(keys, k)
}
sort.Strings(keys)
for _, k := range keys {
vs := v[k]
prefix := k + "="
for _, v := range vs {
if buf.Len() > 0 {
buf.WriteByte('&')
}
buf.WriteString(prefix)
buf.WriteString(v)
}
}
return buf.String()
}
func newiAOFEX(accessKey, secretKey string) *iAOFEX {
s := new(iAOFEX)
s.accessKey = accessKey
s.secretKey = secretKey
s.apiBase = "https://openapi-contract.aofex.info"
s.timeout = 20 * time.Second
s.timeLocation = time.FixedZone("Asia/Shanghai", 8*60*60)
s.contractTypes = []string{"swap"}
return s
}
func (p *iAOFEX) isValidContractType(contractType string) bool {
for _, t := range p.contractTypes {
if contractType == t {
return true
}
}
return false
}
func (p *iAOFEX) calcContractTypeMap(currency string) (contractTypeMap map[string]string, err error) {
var baseCurrency, quoteCurrency string
contractTypeMap = map[string]string{}
if arr := strings.SplitN(currency, "_", 2); len(arr) == 2 {
baseCurrency = arr[0]
quoteCurrency = arr[1]
} else {
err = errors.New("symbol error!")
return
}
contractTypeMap["swap"] = fmt.Sprintf("%s-%s", strings.ToUpper(baseCurrency), strings.ToUpper(quoteCurrency))
return
}
func (p *iAOFEX) apiCall(method string) (*Json, error) {
req, err := http.NewRequest("GET", fmt.Sprintf("%s%s", p.apiBase, method), nil)
if err != nil {
return nil, err
}
fmt.Printf("\n %c[1;44;32m%s%c[0m\n", 0x1B, "apiCall GET create req:" + fmt.Sprintf("%s%s", p.apiBase, method), 0x1B)
fmt.Println("req:", req)
req.Header.Set("Content-Type", "application/json;utf-8")
// proxy
strProxy := ""
client := http.DefaultClient
if isUsedProxy {
var auth *proxy.Auth
proxyAddr := strings.Split(strProxy, "//")[1]
if strings.Contains(proxyAddr, "@") {
arr := strings.SplitN(proxyAddr, "@", 2)
arrAuth := strings.SplitN(arr[0], ":", 2)
proxyAddr = arr[1]
auth = &proxy.Auth{}
auth.User = arrAuth[0]
if len(arrAuth) == 2 {
auth.Password = arrAuth[1]
}
}
var dialer proxy.Dialer
if dialer, err = proxy.SOCKS5("tcp", proxyAddr, auth, proxy.Direct); err == nil {
client = &http.Client{
Transport: &http.Transport{
Dial: dialer.Dial,
MaxIdleConnsPerHost: 5,
TLSClientConfig: &tls.Config{InsecureSkipVerify: true},
ResponseHeaderTimeout: 20 * time.Second,
},
Timeout: 20 * time.Second,
}
} else {
return nil, err
}
}
resp, err := client.Do(req)
if err != nil {
return nil, err
}
defer resp.Body.Close()
b, err := ioutil.ReadAll(resp.Body)
if err != nil {
return nil, err
}
var js *Json
js, err = NewJson(b)
if err != nil {
return nil, err
}
// fault tolerant
if _, ok := js.data.(map[string]interface{}); ok {
if code, ok := js.MustMap()["code"]; ok {
if toString(code) != "0" {
err = errors.New(fmt.Sprintf("%v", js.data))
}
}
}
return js, err
}
func (p *iAOFEX) GetTicker(symbol string) (ticker interface{}, err error) {
mpCt, mpCtErr := p.calcContractTypeMap(symbol)
if mpCtErr != nil {
err = mpCtErr
return
}
realCt, ok := mpCt[ct]
if !ok {
err = errors.New("invalid contractType!")
return
}
var js *Json
js, err = p.apiCall(fmt.Sprintf("/openApi/contract/market?symbol=%s", realCt))
if err != nil {
return
}
depth, errDepth := p.GetDepth(symbol)
if errDepth != nil {
err = errDepth
return
}
ask1 := depth.(map[string]interface{})["asks"].([][2]float64)[0][0]
bid1 := depth.(map[string]interface{})["bids"].([][2]float64)[0][0]
mp := js.Get("result").MustMap()
ticker = map[string]interface{}{
"time": time.Now().UnixNano() / 1e6,
"buy": toFloat(bid1),
"sell": toFloat(ask1),
"last": toFloat(mp["close"]),
"high": toFloat(mp["high"]),
"low": toFloat(mp["low"]),
"vol": toFloat(mp["vol"]),
}
return
}
func (p *iAOFEX) GetDepth(symbol string) (depth interface{}, err error) {
mpCt, mpCtErr := p.calcContractTypeMap(symbol)
if mpCtErr != nil {
err = mpCtErr
return
}
realCt, ok := mpCt[ct]
if !ok {
err = errors.New("invalid contractType!")
return
}
var js *Json
js, err = p.apiCall(fmt.Sprintf("/openApi/contract/depth?symbol=%s", realCt))
if err != nil {
return
}
asks := [][2]float64{}
bids := [][2]float64{}
for _, pair := range js.Get("result").Get("asks").MustArray() {
arr := pair.([]interface{})
asks = append(asks, [2]float64{toFloat(arr[0]), toFloat(arr[1])})
}
for _, pair := range js.Get("result").Get("bids").MustArray() {
arr := pair.([]interface{})
bids = append(bids, [2]float64{toFloat(arr[0]), toFloat(arr[1])})
}
depth = map[string]interface{}{
"time": js.Get("result").Get("ts").MustInt64(),
"asks": asks,
"bids": bids,
}
return
}
func (p *iAOFEX) GetTrades(symbol string) (trades interface{}, err error) {
mpCt, mpCtErr := p.calcContractTypeMap(symbol)
if mpCtErr != nil {
err = mpCtErr
return
}
realCt, ok := mpCt[ct]
if !ok {
err = errors.New("invalid contractType!")
return
}
var js *Json
js, err = p.apiCall(fmt.Sprintf("/openApi/contract/trade?symbol=%s", realCt))
if err != nil {
return
}
items := []map[string]interface{}{}
for _, pair := range js.Get("result").Get("data").MustArray() {
item := map[string]interface{}{}
mp := pair.(map[string]interface{})
item["id"] = toString(mp["id"])
item["price"] = toFloat(mp["price"])
item["amount"] = toFloat(mp["amount"])
item["time"] = toInt64(mp["ts"])
if toString(mp["direction"]) == "buy" {
item["type"] = "buy"
} else {
item["type"] = "sell"
}
items = append(items, item)
}
for i := 0; i < len(items); i++ {
for j := 0; j < len(items)-i-1; j++ {
if toInt64(items[j]["time"]) > toInt64(items[j+1]["time"]) {
items[j], items[j+1] = items[j+1], items[j]
}
}
}
trades = items
return
}
func (p *iAOFEX) GetRecords(step int64, symbol string) (records interface{}, err error) {
mpCt, mpCtErr := p.calcContractTypeMap(symbol)
if mpCtErr != nil {
err = mpCtErr
return
}
realCt, ok := mpCt[ct]
if !ok {
err = errors.New("invalid contractType!")
return
}
var periodDict map[int64]string = map[int64]string{
1 : "1min",
5 : "5min",
15 : "15min",
30 : "30min",
60 : "1hour",
1440 : "1day",
}
period, okPeriod := periodDict[step]
if !okPeriod {
err = errors.New("period not support")
return
}
var js *Json
js, err = p.apiCall(fmt.Sprintf("/openApi/contract/kline?symbol=%s&period=%s&size=500", realCt, period))
if err != nil {
return
}
items := []interface{}{}
recordsData := js.Get("result").Get("data").MustArray()
for i := len(recordsData) - 1 ; i >= 0 ; i-- {
mp := recordsData[i].(map[string]interface{})
item := [6]interface{}{}
item[0] = toInt64(mp["id"]) // time
item[1] = toFloat(mp["open"]) // open
item[2] = toFloat(mp["high"]) // high
item[3] = toFloat(mp["low"]) // low
item[4] = toFloat(mp["close"]) // close
item[5] = toFloat(mp["vol"]) // vol
items = append(items, item)
}
records = items
return
}
func JSON_Encode(d interface{}) string {
buffer := &bytes.Buffer{}
encoder := json.NewEncoder(buffer)
encoder.SetEscapeHTML(false)
encoder.Encode(d)
return buffer.String()
}
func (p *iAOFEX) tapiCall(httpMethod string, method string, params map[string]string) (js *Json, err error) {
if params == nil {
params = map[string]string{}
}
nonce := toString(time.Now().UnixNano() / 1e9)
strLetter := "124567890abcdefghijklmnopqrstuvwxyz"
for i := 0 ; i < 5 ; i++ {
rand.Seed(time.Now().UnixNano())
nonce += string(strLetter[rand.Intn(len(strLetter))])
}
arrParams := []string{}
arrParams = append(arrParams, p.accessKey)
arrParams = append(arrParams, p.secretKey)
arrParams = append(arrParams, nonce)
for k, v := range params {
arrParams = append(arrParams, fmt.Sprintf("%s=%s", k, v))
}
sort.Strings(arrParams)
strSign := ""
for _, ele := range arrParams {
strSign += toString(ele)
}
h := sha1.New()
h.Write([]byte(strSign))
signature := hex.EncodeToString(h.Sum(nil))
strUrl := fmt.Sprintf("%s%s", p.apiBase, method)
if len(params) > 0 {
strUrl = fmt.Sprintf("%s%s?%s", p.apiBase, method, encodeParams(params, false))
}
req, err := http.NewRequest(httpMethod, strUrl, nil)
if err != nil {
return nil, err
}
req.Header.Add("Nonce", nonce)
req.Header.Add("Token", p.accessKey)
req.Header.Add("Signature", signature)
strProxy := ""
client := http.DefaultClient
if isUsedProxy {
var auth *proxy.Auth
proxyAddr := strings.Split(strProxy, "//")[1]
if strings.Contains(proxyAddr, "@") {
arr := strings.SplitN(proxyAddr, "@", 2)
arrAuth := strings.SplitN(arr[0], ":", 2)
proxyAddr = arr[1]
auth = &proxy.Auth{}
auth.User = arrAuth[0]
if len(arrAuth) == 2 {
auth.Password = arrAuth[1]
}
}
var dialer proxy.Dialer
if dialer, err = proxy.SOCKS5("tcp", proxyAddr, auth, proxy.Direct); err == nil {
client = &http.Client{
Transport: &http.Transport{
Dial: dialer.Dial,
MaxIdleConnsPerHost: 5,
TLSClientConfig: &tls.Config{InsecureSkipVerify: true},
ResponseHeaderTimeout: 20 * time.Second,
},
Timeout: 20 * time.Second,
}
} else {
return nil, err
}
}
fmt.Printf("\n %c[1;44;32m%s%c[0m\n", 0x1B, "apiCall GET create req:" + fmt.Sprintf("%s%s", p.apiBase, method), 0x1B)
fmt.Println("tapiCall req:", req)
resp, err := client.Do(req)
if err != nil {
return nil, err
}
defer resp.Body.Close()
b, err := ioutil.ReadAll(resp.Body)
if err != nil {
return nil, err
}
js, err = NewJson(b)
if err != nil {
return nil, err
}
// fault tolerant
if mp, ok := js.data.(map[string]interface{}); ok {
if errno, ok := mp["errno"]; !ok || toString(errno) != "0" {
err = errors.New(fmt.Sprintf("%v", js.data))
}
} else {
err = errors.New(fmt.Sprintf("%v", js.data))
}
return js, err
}
func (p *iAOFEX) GetAccount(symbol string) (account interface{}, err error) {
symbol = currSymbol
mpCt, mpCtErr := p.calcContractTypeMap(symbol)
if mpCtErr != nil {
err = mpCtErr
return
}
realCt, ok := mpCt[ct]
if !ok {
err = errors.New("invalid contractType!")
return
}
var js *Json
js, err = p.tapiCall("GET", "/openApi/contract/walletList", nil)
if err != nil {
return
}
assets := map[string]map[string]interface{}{}
for _, ele := range js.Get("result").MustArray() {
dic := ele.(map[string]interface{})
if realCt != toString(dic["symbol"]) {
continue
}
arr := strings.SplitN(toString(dic["symbol"]), "-", 2)
if arr[1] == "USDT" {
if _, ok := assets[arr[1]]; !ok {
assets[arr[1]] = map[string]interface{}{}
}
assets[arr[1]]["currency"] = arr[1]
assets[arr[1]]["Info"] = dic
assets[arr[1]]["free"] = toFloat(dic["avail"])
assets[arr[1]]["frozen"] = toFloat(dic["frozen"])
}
}
accounts := []map[string]interface{}{}
for _, pair := range assets {
accounts = append(accounts, pair)
}
account = accounts
return
}
func (p *iAOFEX) Trade(side string, price, amount float64, symbol string) (orderId interface{}, err error) {
mpCt, mpCtErr := p.calcContractTypeMap(symbol)
if mpCtErr != nil {
err = mpCtErr
return
}
realCt, ok := mpCt[ct]
if !ok {
err = errors.New("invalid contractType!")
return
}
params := map[string]string{}
if direction == "buy" {
params["contract_type"] = "open"
} else if direction == "sell" {
params["contract_type"] = "open"
} else if direction == "closebuy" {
params["contract_type"] = "close"
} else if direction == "closesell" {
params["contract_type"] = "close"
} else {
err = errors.New("invalid direction!")
return
}
if (side == "buy-limit" || side == "buy-market") && (direction == "sell" || direction == "closebuy") {
err = errors.New("invalid direction!")
return
} else if (side == "sell-limit" || side == "sell-market") && (direction == "buy" || direction == "closesell") {
err = errors.New("invalid direction!")
return
}
params["type"] = side
params["lever_rate"] = toString(marginLevel)
params["amount"] = toString(amount)
params["symbol"] = realCt
if price > 0 {
params["price"] = toString(price)
}
var js *Json
js, err = p.tapiCall("POST", "/openApi/contract/add", params)
if err != nil {
return
}
orderId = map[string]string{"id": toString(js.MustMap()["result"])}
return
}
func (p *iAOFEX) GetOrders(symbol string) (orders interface{}, err error) {
mpCt, mpCtErr := p.calcContractTypeMap(symbol)
if mpCtErr != nil {
err = mpCtErr
return
}
realCt, ok := mpCt[ct]
if !ok {
err = errors.New("invalid contractType!")
return
}
from := ""
limit := 100
items := []map[string]interface{}{}
for {
params := map[string]string{
"symbol" : realCt,
"limit" : toString(limit),
}
if from != "" {
params["from"] = toString(from)
}
var js *Json
js, err = p.tapiCall("GET", "/openApi/contract/currentList", params)
if err != nil {
return
}
arr := js.Get("result").MustArray()
for _, ele := range arr {
mp := ele.(map[string]interface{})
item := map[string]interface{}{}
item["id"] = toString(mp["order_id"])
item["amount"] = toFloat(mp["amount"])
item["price"] = toFloat(mp["price"])
item["deal_amount"] = toFloat(mp["deal_amount"])
item["avg_price"] = toFloat(mp["price_avg"])
if toString(mp["type"]) == "buy-limit" || toString(mp["type"]) == "buy-market" || toString(mp["type"]) == "buy-tactics" || toString(mp["type"]) == "buy-market-tactic" || toString(mp["type"]) == "buy-plan" || toString(mp["type"]) == "buy-market-plan" {
item["type"] = "buy"
} else {
item["type"] = "sell"
}
item["status"] = "open"
item["contract_type"] = ct
items = append(items, item)
from = toString(mp["order_id"])
}
if len(arr) < limit {
break
}
}
return items, nil
}
func (p *iAOFEX) GetOrder(orderId string, symbol string) (order interface{}, err error) {
mpCt, mpCtErr := p.calcContractTypeMap(symbol)
if mpCtErr != nil {
err = mpCtErr
return
}
realCt, ok := mpCt[ct]
if !ok {
err = errors.New("invalid contractType!")
return
}
var js *Json
js, err = p.tapiCall("GET", "/openApi/contract/historyList", map[string]string{
"from" : toString(orderId),
"symbol" : realCt,
"limit" : "1",
})
if err != nil {
return
}
item := map[string]interface{}{}
for _, ele := range js.Get("result").MustArray() {
mp := ele.(map[string]interface{})
if realCt != toString(mp["symbol"]) || toString(mp["order_id"]) != toString(orderId) {
continue
}
item["id"] = toString(mp["order_id"])
item["amount"] = toFloat(mp["amount"])
item["price"] = toFloat(mp["price"])
item["deal_amount"] = toFloat(mp["deal_amount"])
item["avg_price"] = toFloat(mp["price_avg"])
item["contract_type"] = ct
if toString(mp["type"]) == "buy-limit" || toString(mp["type"]) == "buy-market" || toString(mp["type"]) == "buy-tactics" || toString(mp["type"]) == "buy-market-tactic" || toString(mp["type"]) == "buy-plan" || toString(mp["type"]) == "buy-market-plan" {
item["type"] = "buy"
} else {
item["type"] = "sell"
}
switch toString(mp["status"]) {
case "1", "2":
item["status"] = "open"
case "3":
item["status"] = "closed"
case "4", "5", "6":
item["status"] = "cancelled"
}
return item, nil
}
err = errors.New("order not found")
return
}
func (p *iAOFEX) CancelOrder(orderId string, symbol string) (ret bool, err error) {
mpCt, mpCtErr := p.calcContractTypeMap(symbol)
if mpCtErr != nil {
err = mpCtErr
return
}
realCt, ok := mpCt[ct]
if !ok {
err = errors.New("invalid contractType!")
return
}
_, err = p.tapiCall("POST", "/openApi/contract/cancel", map[string]string{
"order_ids" : toString(orderId),
"symbol" : realCt,
})
if err != nil {
return
}
ret = true
return
}
type RpcRequest struct {
AccessKey string `json:"access_key"`
SecretKey string `json:"secret_key"`
Nonce int64 `json:"nonce"`
Method string `json:"method"`
Params map[string]interface{} `json:"params"`
}
func OnPost(w http.ResponseWriter, r *http.Request) {
var ret interface{}
defer func() {
if e := recover(); e != nil {
if ee, ok := e.(error); ok {
e = ee.Error()
}
ret = map[string]string{"error": fmt.Sprintf("%v", e)}
}
b, _ := json.Marshal(ret)
w.Write(b)
}()
b, err := ioutil.ReadAll(r.Body)
if err != nil {
panic(err)
}
var request RpcRequest
err = json.Unmarshal(b, &request)
if err != nil {
panic(err)
}
e := newiAOFEX(request.AccessKey, request.SecretKey)
symbol := strings.ToUpper(toString(request.Params["symbol"]))
if _, ok := request.Params["symbol"]; ok {
currSymbol = symbol
}
var data interface{}
switch request.Method {
case "ticker":
data, err = e.GetTicker(symbol)
case "depth":
data, err = e.GetDepth(symbol)
case "trades":
data, err = e.GetTrades(symbol)
case "records":
data, err = e.GetRecords(toInt64(request.Params["period"]), symbol)
case "accounts":
data, err = e.GetAccount(symbol)
case "trade":
side := toString(request.Params["type"])
if side == "buy" {
side = "buy-limit"
if toFloat(request.Params["price"]) <= 0 {
side = "buy-market"
}
} else {
side = "sell-limit"
if toFloat(request.Params["price"]) <= 0 {
side = "sell-market"
}
}
price := toFloat(request.Params["price"])
amount := toFloat(request.Params["amount"])
data, err = e.Trade(side, price, amount, symbol)
case "orders":
data, err = e.GetOrders(symbol)
case "order":
data, err = e.GetOrder(toString(request.Params["id"]), symbol)
case "cancel":
data, err = e.CancelOrder(toString(request.Params["id"]), symbol)
default:
if strings.HasPrefix(request.Method, "__api_") {
params := map[string]string{}
for k, v := range request.Params {
params[k] = toString(v)
}
data, err = e.tapiCall("GET", request.Method[6:], params)
} else if request.Method == "io" {
code := toString(request.Params["code"])
if code == "0" {
if args, ok := request.Params["args"].([]interface{}); ok && len(args) == 1 {
marginLevel = toFloat(args[0])
} else {
err = errors.New(fmt.Sprintf("%v", request.Params))
}
} else if code == "1" {
if args, ok := request.Params["args"].([]interface{}); ok && len(args) == 1 {
orderDirection := toString(args[0])
if orderDirection == "buy" || orderDirection == "sell" || orderDirection == "closebuy" || orderDirection == "closesell" {
direction = orderDirection
data = orderDirection
} else {
err = errors.New(fmt.Sprintf("not support orderDirection: %s", orderDirection))
}
} else {
err = errors.New(fmt.Sprintf("%v", request.Params))
}
} else if code == "2" {
if args, ok := request.Params["args"].([]interface{}); ok && len(args) == 1 {
contractType := toString(args[0])
if e.isValidContractType(contractType) {
ct = contractType
data = contractType
} else {
err = errors.New(fmt.Sprintf("not support contractType: %s", contractType))
}
} else {
err = errors.New(fmt.Sprintf("%v", request.Params))
}
} else if code == "3" {
symbol := currSymbol
mpCt, mpCtErr := e.calcContractTypeMap(symbol)
if mpCtErr != nil {
panic(mpCtErr)
}
realCt, ok := mpCt[ct]
if !ok {
err = errors.New("invalid contractType!")
panic(err)
}
var js *Json
js, err = e.tapiCall("GET", "/openApi/contract/position", map[string]string{
"symbol" : realCt,
})
if err != nil {
panic(err)
}
items := []map[string]interface{}{}
for _, ele := range js.Get("result").MustArray() {
mp := ele.(map[string]interface{})
item := map[string]interface{}{}
item["MarginLevel"] = toFloat(mp["lever_rate"])
item["Amount"] = toFloat(mp["amount"])
item["FrozenAmount"] = toFloat(mp["contract_frozen"])
item["Price"] = toFloat(mp["open_price_avg"])
item["Profit"] = toFloat(mp["un_profit"])
if toString(mp["type"]) == "1" {
item["Type"] = 0
} else {
item["Type"] = 1
}
item["ContractType"] = ct
item["Margin"] = toFloat(mp["bood"])
items = append(items, item)
}
data = items
} else {
panic(errors.New(request.Method + " not support"))
}
} else {
panic(errors.New(request.Method + " not support"))
}
}
if err != nil {
panic(err)
}
ret = map[string]interface{}{
"data": data,
}
return
}
func main() {
var addr = flag.String("b", "127.0.0.1:6617", "bind addr")
flag.Parse()
if *addr == "" {
flag.Usage()
return
}
basePath := "/AOFEX"
log.Println("Running ", fmt.Sprintf("http://%s%s", *addr, basePath), "...")
http.HandleFunc(basePath, OnPost)
http.ListenAndServe(*addr, nil)
}