mirror of
https://github.com/aclindsa/ofxgo.git
synced 2024-10-30 05:20:05 -04:00
190 lines
6.3 KiB
Go
190 lines
6.3 KiB
Go
package main
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import (
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"flag"
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"fmt"
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"github.com/aclindsa/ofxgo"
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"os"
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)
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var invTransactionsCommand = command{
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Name: "transactions-inv",
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Description: "Print investment transactions",
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Flags: flag.NewFlagSet("transactions-inv", flag.ExitOnError),
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CheckFlags: checkServerFlags,
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Do: invTransactions,
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}
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func init() {
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defineServerFlags(invTransactionsCommand.Flags)
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invTransactionsCommand.Flags.StringVar(&acctID, "acctid", "", "AcctID (from `get-accounts` subcommand)")
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invTransactionsCommand.Flags.StringVar(&brokerID, "brokerid", "", "BrokerID (from `get-accounts` subcommand)")
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}
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func invTransactions() {
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client, query := newRequest()
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uid, err := ofxgo.RandomUID()
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if err != nil {
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fmt.Println("Error creating uid for transaction:", err)
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os.Exit(1)
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}
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statementRequest := ofxgo.InvStatementRequest{
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TrnUID: *uid,
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InvAcctFrom: ofxgo.InvAcct{
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BrokerID: ofxgo.String(brokerID),
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AcctID: ofxgo.String(acctID),
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},
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Include: true,
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IncludeOO: true,
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IncludePos: true,
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IncludeBalance: true,
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Include401K: true,
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Include401KBal: true,
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}
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query.InvStmt = append(query.InvStmt, &statementRequest)
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response, err := client.Request(query)
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if err != nil {
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os.Exit(1)
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}
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if response.Signon.Status.Code != 0 {
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meaning, _ := response.Signon.Status.CodeMeaning()
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fmt.Printf("Nonzero signon status (%d: %s) with message: %s\n", response.Signon.Status.Code, meaning, response.Signon.Status.Message)
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os.Exit(1)
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}
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if len(response.InvStmt) < 1 {
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fmt.Println("No investment messages received")
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return
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}
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if stmt, ok := response.InvStmt[0].(*ofxgo.InvStatementResponse); ok {
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availCash := stmt.InvBal.AvailCash
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if availCash.IsInt() && availCash.Num().Int64() != 0 {
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fmt.Printf("Balance: %s %s (as of %s)\n", stmt.InvBal.AvailCash, stmt.CurDef, stmt.DtAsOf)
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}
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for _, banktrans := range stmt.InvTranList.BankTransactions {
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fmt.Printf("\nBank Transactions for %s subaccount:\n", banktrans.SubAcctFund)
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for _, tran := range banktrans.Transactions {
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printTransaction(stmt.CurDef, &tran)
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}
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}
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fmt.Printf("\nInvestment Transactions:\n")
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for _, t := range stmt.InvTranList.InvTransactions {
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fmt.Printf("%-14s", t.TransactionType())
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switch tran := t.(type) {
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case ofxgo.BuyDebt:
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printInvBuy(stmt.CurDef, &tran.InvBuy)
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case ofxgo.BuyMF:
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printInvBuy(stmt.CurDef, &tran.InvBuy)
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case ofxgo.BuyOpt:
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printInvBuy(stmt.CurDef, &tran.InvBuy)
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case ofxgo.BuyOther:
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printInvBuy(stmt.CurDef, &tran.InvBuy)
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case ofxgo.BuyStock:
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printInvBuy(stmt.CurDef, &tran.InvBuy)
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case ofxgo.ClosureOpt:
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printInvTran(&tran.InvTran)
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fmt.Printf("%s %s contracts (%d shares each)\n", tran.OptAction, tran.Units, tran.ShPerCtrct)
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case ofxgo.Income:
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printInvTran(&tran.InvTran)
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currency := stmt.CurDef
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if ok, _ := tran.Currency.Valid(); ok {
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currency = tran.Currency.CurSym
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}
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fmt.Printf(" %s %s %s (%s %s)\n", tran.IncomeType, tran.Total, currency, tran.SecID.UniqueIDType, tran.SecID.UniqueID)
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// TODO print ticker instead of CUSIP
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case ofxgo.InvExpense:
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printInvTran(&tran.InvTran)
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currency := stmt.CurDef
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if ok, _ := tran.Currency.Valid(); ok {
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currency = tran.Currency.CurSym
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}
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fmt.Printf(" %s %s (%s %s)\n", tran.Total, currency, tran.SecID.UniqueIDType, tran.SecID.UniqueID)
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// TODO print ticker instead of CUSIP
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case ofxgo.JrnlFund:
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printInvTran(&tran.InvTran)
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fmt.Printf(" %s %s (%s -> %s)\n", tran.Total, stmt.CurDef, tran.SubAcctFrom, tran.SubAcctTo)
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case ofxgo.JrnlSec:
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printInvTran(&tran.InvTran)
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fmt.Printf(" %s %s %s (%s -> %s)\n", tran.Units, tran.SecID.UniqueIDType, tran.SecID.UniqueID, tran.SubAcctFrom, tran.SubAcctTo)
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// TODO print ticker instead of CUSIP
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case ofxgo.MarginInterest:
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printInvTran(&tran.InvTran)
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currency := stmt.CurDef
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if ok, _ := tran.Currency.Valid(); ok {
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currency = tran.Currency.CurSym
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}
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fmt.Printf(" %s %s\n", tran.Total, currency)
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case ofxgo.Reinvest:
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printInvTran(&tran.InvTran)
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currency := stmt.CurDef
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if ok, _ := tran.Currency.Valid(); ok {
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currency = tran.Currency.CurSym
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}
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fmt.Printf(" %s (%s %s)@%s %s (Total: %s)\n", tran.Units, tran.SecID.UniqueIDType, tran.SecID.UniqueID, tran.UnitPrice, currency, tran.Total)
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// TODO print ticker instead of CUSIP
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case ofxgo.RetOfCap:
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printInvTran(&tran.InvTran)
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currency := stmt.CurDef
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if ok, _ := tran.Currency.Valid(); ok {
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currency = tran.Currency.CurSym
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}
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fmt.Printf(" %s %s (%s %s)\n", tran.Total, currency, tran.SecID.UniqueIDType, tran.SecID.UniqueID)
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// TODO print ticker instead of CUSIP
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case ofxgo.SellDebt:
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printInvSell(stmt.CurDef, &tran.InvSell)
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case ofxgo.SellMF:
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printInvSell(stmt.CurDef, &tran.InvSell)
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case ofxgo.SellOpt:
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printInvSell(stmt.CurDef, &tran.InvSell)
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case ofxgo.SellOther:
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printInvSell(stmt.CurDef, &tran.InvSell)
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case ofxgo.SellStock:
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printInvSell(stmt.CurDef, &tran.InvSell)
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case ofxgo.Split:
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printInvTran(&tran.InvTran)
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currency := stmt.CurDef
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if ok, _ := tran.Currency.Valid(); ok {
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currency = tran.Currency.CurSym
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}
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fmt.Printf(" %d/%d %s -> %s shares of %s %s (%s %s for fractional shares)\n", tran.Numerator, tran.Denominator, tran.OldUnits, tran.NewUnits, tran.SecID.UniqueIDType, tran.SecID.UniqueID, tran.FracCash, currency)
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// TODO print ticker instead of CUSIP
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case ofxgo.Transfer:
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printInvTran(&tran.InvTran)
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fmt.Printf(" %s (%s %s) %s\n", tran.Units, tran.SecID.UniqueIDType, tran.SecID.UniqueID, tran.TferAction)
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// TODO print ticker instead of CUSIP
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}
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}
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}
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}
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func printInvTran(it *ofxgo.InvTran) {
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fmt.Printf("%s", it.DtTrade)
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}
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func printInvBuy(defCurrency ofxgo.CurrSymbol, ib *ofxgo.InvBuy) {
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printInvTran(&ib.InvTran)
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currency := defCurrency
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if ok, _ := ib.Currency.Valid(); ok {
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currency = ib.Currency.CurSym
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}
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fmt.Printf("%s (%s %s)@%s %s (Total: %s)\n", ib.Units, ib.SecID.UniqueIDType, ib.SecID.UniqueID, ib.UnitPrice, currency, ib.Total)
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// TODO print ticker instead of CUSIP
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}
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func printInvSell(defCurrency ofxgo.CurrSymbol, is *ofxgo.InvSell) {
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printInvTran(&is.InvTran)
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currency := defCurrency
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if ok, _ := is.Currency.Valid(); ok {
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currency = is.Currency.CurSym
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}
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fmt.Printf(" %s (%s %s)@%s %s (Total: %s)\n", is.Units, is.SecID.UniqueIDType, is.SecID.UniqueID, is.UnitPrice, currency.String(), is.Total)
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// TODO print ticker instead of CUSIP
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}
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