mirror of
https://github.com/d0zingcat/gocryptotrader.git
synced 2026-05-20 15:10:10 +00:00
* drop common uuid v4 func and imported package as needed * removed common functions regarding json marshal and unmarshal and used the json package directly. WRT unmarshal it was calling reflect and converted to string which is also checked in the JSON package so it was doing a double up, this will be a tiny gain as it was directly used in the requester package for all our outbound requests. * add in string * explicitly throw away return error value * atleast return the error that websocket initialise returns * return error when not connected * fix comment * Adds comments * move package declarations * drop append whenever we call supported * remove unused import * Change incorrect spelling * fix tests * fix go import issue
445 lines
13 KiB
Go
445 lines
13 KiB
Go
package zb
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import (
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"encoding/json"
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"errors"
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"fmt"
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"net/http"
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"net/url"
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"strconv"
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"strings"
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"time"
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"github.com/thrasher-corp/gocryptotrader/common/convert"
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"github.com/thrasher-corp/gocryptotrader/common/crypto"
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"github.com/thrasher-corp/gocryptotrader/currency"
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exchange "github.com/thrasher-corp/gocryptotrader/exchanges"
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"github.com/thrasher-corp/gocryptotrader/exchanges/websocket/wshandler"
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)
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const (
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zbTradeURL = "http://api.zb.cn/data"
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zbMarketURL = "https://trade.zb.cn/api"
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zbAPIVersion = "v1"
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zbAccountInfo = "getAccountInfo"
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zbMarkets = "markets"
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zbKline = "kline"
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zbOrder = "order"
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zbCancelOrder = "cancelOrder"
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zbTicker = "ticker"
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zbTickers = "allTicker"
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zbDepth = "depth"
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zbUnfinishedOrdersIgnoreTradeType = "getUnfinishedOrdersIgnoreTradeType"
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zbGetOrdersGet = "getOrders"
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zbWithdraw = "withdraw"
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zbDepositAddress = "getUserAddress"
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zbAuthRate = 100
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zbUnauthRate = 100
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)
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// ZB is the overarching type across this package
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// 47.91.169.147 api.zb.com
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// 47.52.55.212 trade.zb.com
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type ZB struct {
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WebsocketConn *wshandler.WebsocketConnection
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exchange.Base
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}
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// SpotNewOrder submits an order to ZB
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func (z *ZB) SpotNewOrder(arg SpotNewOrderRequestParams) (int64, error) {
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var result SpotNewOrderResponse
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vals := url.Values{}
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vals.Set("accesskey", z.API.Credentials.Key)
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vals.Set("method", "order")
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vals.Set("amount", strconv.FormatFloat(arg.Amount, 'f', -1, 64))
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vals.Set("currency", arg.Symbol)
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vals.Set("price", strconv.FormatFloat(arg.Price, 'f', -1, 64))
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vals.Set("tradeType", string(arg.Type))
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err := z.SendAuthenticatedHTTPRequest(http.MethodGet, vals, &result)
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if err != nil {
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return 0, err
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}
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if result.Code != 1000 {
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return 0, fmt.Errorf("unsuccessful new order, message: %s code: %d", result.Message, result.Code)
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}
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newOrderID, err := strconv.ParseInt(result.ID, 10, 64)
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if err != nil {
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return 0, err
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}
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return newOrderID, nil
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}
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// CancelExistingOrder cancels an order
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func (z *ZB) CancelExistingOrder(orderID int64, symbol string) error {
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type response struct {
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Code int `json:"code"` // Result code
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Message string `json:"message"` // Result Message
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}
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vals := url.Values{}
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vals.Set("accesskey", z.API.Credentials.Key)
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vals.Set("method", "cancelOrder")
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vals.Set("id", strconv.FormatInt(orderID, 10))
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vals.Set("currency", symbol)
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var result response
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err := z.SendAuthenticatedHTTPRequest(http.MethodGet, vals, &result)
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if err != nil {
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return err
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}
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if result.Code != 1000 {
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return errors.New(result.Message)
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}
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return nil
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}
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// GetAccountInformation returns account information including coin information
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// and pricing
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func (z *ZB) GetAccountInformation() (AccountsResponse, error) {
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var result AccountsResponse
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vals := url.Values{}
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vals.Set("accesskey", z.API.Credentials.Key)
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vals.Set("method", "getAccountInfo")
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return result, z.SendAuthenticatedHTTPRequest(http.MethodGet, vals, &result)
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}
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// GetUnfinishedOrdersIgnoreTradeType returns unfinished orders
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func (z *ZB) GetUnfinishedOrdersIgnoreTradeType(currency string, pageindex, pagesize int64) ([]Order, error) {
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var result []Order
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vals := url.Values{}
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vals.Set("accesskey", z.API.Credentials.Key)
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vals.Set("method", zbUnfinishedOrdersIgnoreTradeType)
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vals.Set("currency", currency)
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vals.Set("pageIndex", strconv.FormatInt(pageindex, 10))
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vals.Set("pageSize", strconv.FormatInt(pagesize, 10))
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err := z.SendAuthenticatedHTTPRequest(http.MethodGet, vals, &result)
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return result, err
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}
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// GetOrders returns finished orders
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func (z *ZB) GetOrders(currency string, pageindex, side int64) ([]Order, error) {
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var response []Order
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vals := url.Values{}
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vals.Set("accesskey", z.API.Credentials.Key)
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vals.Set("method", zbGetOrdersGet)
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vals.Set("currency", currency)
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vals.Set("pageIndex", strconv.FormatInt(pageindex, 10))
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vals.Set("tradeType", strconv.FormatInt(side, 10))
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return response, z.SendAuthenticatedHTTPRequest(http.MethodGet, vals, &response)
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}
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// GetMarkets returns market information including pricing, symbols and
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// each symbols decimal precision
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func (z *ZB) GetMarkets() (map[string]MarketResponseItem, error) {
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endpoint := fmt.Sprintf("%s/%s/%s", z.API.Endpoints.URL, zbAPIVersion, zbMarkets)
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var res interface{}
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err := z.SendHTTPRequest(endpoint, &res)
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if err != nil {
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return nil, err
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}
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list := res.(map[string]interface{})
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result := map[string]MarketResponseItem{}
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for k, v := range list {
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item := v.(map[string]interface{})
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result[k] = MarketResponseItem{
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AmountScale: item["amountScale"].(float64),
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PriceScale: item["priceScale"].(float64),
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}
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}
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return result, nil
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}
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// GetLatestSpotPrice returns latest spot price of symbol
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//
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// symbol: string of currency pair
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// 获取最新价格
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func (z *ZB) GetLatestSpotPrice(symbol string) (float64, error) {
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res, err := z.GetTicker(symbol)
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if err != nil {
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return 0, err
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}
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return res.Ticker.Last, nil
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}
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// GetTicker returns a ticker for a given symbol
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func (z *ZB) GetTicker(symbol string) (TickerResponse, error) {
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urlPath := fmt.Sprintf("%s/%s/%s?market=%s", z.API.Endpoints.URL, zbAPIVersion, zbTicker, symbol)
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var res TickerResponse
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err := z.SendHTTPRequest(urlPath, &res)
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return res, err
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}
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// GetTickers returns ticker data for all supported symbols
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func (z *ZB) GetTickers() (map[string]TickerChildResponse, error) {
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urlPath := fmt.Sprintf("%s/%s/%s", z.API.Endpoints.URL, zbAPIVersion, zbTickers)
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resp := make(map[string]TickerChildResponse)
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err := z.SendHTTPRequest(urlPath, &resp)
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return resp, err
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}
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// GetOrderbook returns the orderbook for a given symbol
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func (z *ZB) GetOrderbook(symbol string) (OrderbookResponse, error) {
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urlPath := fmt.Sprintf("%s/%s/%s?market=%s", z.API.Endpoints.URL, zbAPIVersion, zbDepth, symbol)
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var res OrderbookResponse
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err := z.SendHTTPRequest(urlPath, &res)
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if err != nil {
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return res, err
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}
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if len(res.Asks) == 0 {
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return res, fmt.Errorf("ZB GetOrderbook asks is empty")
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}
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if len(res.Bids) == 0 {
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return res, fmt.Errorf("ZB GetOrderbook bids is empty")
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}
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// reverse asks data
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var data [][]float64
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for x := len(res.Asks); x > 0; x-- {
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data = append(data, res.Asks[x-1])
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}
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res.Asks = data
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return res, nil
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}
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// GetSpotKline returns Kline data
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func (z *ZB) GetSpotKline(arg KlinesRequestParams) (KLineResponse, error) {
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vals := url.Values{}
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vals.Set("type", string(arg.Type))
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vals.Set("market", arg.Symbol)
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if arg.Since != "" {
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vals.Set("since", arg.Since)
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}
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if arg.Size != 0 {
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vals.Set("size", fmt.Sprintf("%d", arg.Size))
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}
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urlPath := fmt.Sprintf("%s/%s/%s?%s", z.API.Endpoints.URL, zbAPIVersion, zbKline, vals.Encode())
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var res KLineResponse
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var rawKlines map[string]interface{}
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err := z.SendHTTPRequest(urlPath, &rawKlines)
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if err != nil {
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return res, err
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}
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if rawKlines == nil || rawKlines["symbol"] == nil {
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return res, errors.New("zb GetSpotKline rawKlines is nil")
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}
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res.Symbol = rawKlines["symbol"].(string)
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res.MoneyType = rawKlines["moneyType"].(string)
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rawKlineDatasString, _ := json.Marshal(rawKlines["data"].([]interface{}))
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var rawKlineDatas [][]interface{}
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if err := json.Unmarshal(rawKlineDatasString, &rawKlineDatas); err != nil {
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return res, errors.New("zb rawKlines unmarshal failed")
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}
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for _, k := range rawKlineDatas {
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ot, err := convert.TimeFromUnixTimestampFloat(k[0])
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if err != nil {
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return res, errors.New("zb cannot parse Kline.OpenTime")
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}
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res.Data = append(res.Data, &KLineResponseData{
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ID: k[0].(float64),
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KlineTime: ot,
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Open: k[1].(float64),
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High: k[2].(float64),
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Low: k[3].(float64),
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Close: k[4].(float64),
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Volume: k[5].(float64),
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})
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}
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return res, nil
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}
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// GetCryptoAddress fetches and returns the deposit address
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// NOTE - PLEASE BE AWARE THAT YOU NEED TO GENERATE A DEPOSIT ADDRESS VIA
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// LOGGING IN AND NOT BY USING THIS ENDPOINT OTHERWISE THIS WILL GIVE YOU A
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// GENERAL ERROR RESPONSE.
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func (z *ZB) GetCryptoAddress(currency currency.Code) (UserAddress, error) {
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var resp UserAddress
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vals := url.Values{}
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vals.Set("method", zbDepositAddress)
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vals.Set("currency", currency.Lower().String())
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return resp,
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z.SendAuthenticatedHTTPRequest(http.MethodGet, vals, &resp)
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}
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// SendHTTPRequest sends an unauthenticated HTTP request
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func (z *ZB) SendHTTPRequest(path string, result interface{}) error {
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return z.SendPayload(http.MethodGet,
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path,
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nil,
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nil,
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result,
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false,
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false,
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z.Verbose,
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z.HTTPDebugging,
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z.HTTPRecording)
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}
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// SendAuthenticatedHTTPRequest sends authenticated requests to the zb API
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func (z *ZB) SendAuthenticatedHTTPRequest(httpMethod string, params url.Values, result interface{}) error {
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if !z.AllowAuthenticatedRequest() {
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return fmt.Errorf(exchange.WarningAuthenticatedRequestWithoutCredentialsSet, z.Name)
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}
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params.Set("accesskey", z.API.Credentials.Key)
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hmac := crypto.GetHMAC(crypto.HashMD5,
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[]byte(params.Encode()),
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[]byte(crypto.Sha1ToHex(z.API.Credentials.Secret)))
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params.Set("reqTime", fmt.Sprintf("%d", convert.UnixMillis(time.Now())))
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params.Set("sign", fmt.Sprintf("%x", hmac))
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urlPath := fmt.Sprintf("%s/%s?%s",
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z.API.Endpoints.URLSecondary,
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params.Get("method"),
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params.Encode())
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var intermediary json.RawMessage
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errCap := struct {
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Code int64 `json:"code"`
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Message string `json:"message"`
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}{}
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err := z.SendPayload(httpMethod,
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urlPath,
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nil,
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strings.NewReader(""),
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&intermediary,
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true,
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false,
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z.Verbose,
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z.HTTPDebugging,
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z.HTTPRecording)
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if err != nil {
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return err
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}
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err = json.Unmarshal(intermediary, &errCap)
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if err == nil {
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if errCap.Code > 1000 {
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return fmt.Errorf("sendAuthenticatedHTTPRequest error code: %d message %s",
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errCap.Code,
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errorCode[errCap.Code])
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}
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}
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return json.Unmarshal(intermediary, result)
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}
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// GetFee returns an estimate of fee based on type of transaction
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func (z *ZB) GetFee(feeBuilder *exchange.FeeBuilder) (float64, error) {
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var fee float64
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switch feeBuilder.FeeType {
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case exchange.CryptocurrencyTradeFee:
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fee = calculateTradingFee(feeBuilder.PurchasePrice, feeBuilder.Amount)
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case exchange.CryptocurrencyWithdrawalFee:
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fee = getWithdrawalFee(feeBuilder.Pair.Base)
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case exchange.OfflineTradeFee:
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fee = getOfflineTradeFee(feeBuilder.PurchasePrice, feeBuilder.Amount)
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}
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if fee < 0 {
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fee = 0
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}
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return fee, nil
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}
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// getOfflineTradeFee calculates the worst case-scenario trading fee
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func getOfflineTradeFee(price, amount float64) float64 {
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return 0.002 * price * amount
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}
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func calculateTradingFee(purchasePrice, amount float64) (fee float64) {
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fee = 0.002
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return fee * amount * purchasePrice
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}
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func getWithdrawalFee(c currency.Code) float64 {
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return WithdrawalFees[c]
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}
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var errorCode = map[int64]string{
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1000: "Successful call",
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1001: "General error message",
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1002: "internal error",
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1003: "Verification failed",
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1004: "Financial security password lock",
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1005: "The fund security password is incorrect. Please confirm and re-enter.",
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1006: "Real-name certification is awaiting review or review",
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1009: "This interface is being maintained",
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1010: "Not open yet",
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1012: "Insufficient permissions",
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1013: "Can not trade, if you have any questions, please contact online customer service",
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1014: "Cannot be sold during the pre-sale period",
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2002: "Insufficient balance in Bitcoin account",
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2003: "Insufficient balance of Litecoin account",
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2005: "Insufficient balance in Ethereum account",
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2006: "Insufficient balance in ETC currency account",
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2007: "Insufficient balance of BTS currency account",
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2009: "Insufficient account balance",
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3001: "Pending order not found",
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3002: "Invalid amount",
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3003: "Invalid quantity",
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3004: "User does not exist",
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3005: "Invalid parameter",
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3006: "Invalid IP or inconsistent with the bound IP",
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3007: "Request time has expired",
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3008: "Transaction history not found",
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4001: "API interface is locked",
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4002: "Request too frequently",
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}
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// Withdraw transfers funds
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func (z *ZB) Withdraw(currency, address, safepassword string, amount, fees float64, itransfer bool) (string, error) {
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type response struct {
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Code int `json:"code"` // Result code
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Message string `json:"message"` // Result Message
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ID string `json:"id"` // Withdrawal ID
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}
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vals := url.Values{}
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vals.Set("accesskey", z.API.Credentials.Key)
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vals.Set("amount", fmt.Sprintf("%v", amount))
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vals.Set("currency", currency)
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vals.Set("fees", fmt.Sprintf("%v", fees))
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vals.Set("itransfer", fmt.Sprintf("%v", itransfer))
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vals.Set("method", "withdraw")
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vals.Set("recieveAddr", address)
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vals.Set("safePwd", safepassword)
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var resp response
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err := z.SendAuthenticatedHTTPRequest(http.MethodGet, vals, &resp)
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if err != nil {
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return "", err
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}
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if resp.Code != 1000 {
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return "", errors.New(resp.Message)
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}
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return resp.ID, nil
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}
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