mirror of
https://github.com/XRPLF/rippled.git
synced 2025-11-20 11:05:54 +00:00
Fix ripple bugs.
- Default send max inherits source account as issuer. - Add end point implications for node expansion. - Fix rippling through accounts.
This commit is contained in:
@@ -799,7 +799,11 @@ void RippleCalc::calcNodeRipple(
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}
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// Calculate saPrvRedeemReq, saPrvIssueReq, saPrvDeliver from saCur...
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// No account adjustments in reverse as we don't know how much is going to actually be pushed through yet.
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// Based on required deliverable, propagate redeem, issue, and deliver requests to the previous node.
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// Inflate amount requested by required fees.
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// Reedems are limited based on IOUs previous has on hand.
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// Issues are limited based on credit limits and amount owed.
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// No account balance adjustments as we don't know how much is going to actually be pushed through yet.
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// <-- tesSUCCESS or tepPATH_DRY
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TER RippleCalc::calcNodeAccountRev(const unsigned int uIndex, PathState::ref pspCur, const bool bMultiQuality)
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{
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@@ -1135,7 +1139,9 @@ TER RippleCalc::calcNodeAccountRev(const unsigned int uIndex, PathState::ref psp
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return terResult;
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}
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// When moving forward, we know the actual amount to push through so adjust balances.
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// The reverse pass has been narrowing by credit available and inflating by fees as it worked backwards.
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// Now, push through the actual amount to each node and adjust balances.
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//
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// Perform balance adjustments between previous and current node.
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// - The previous node: specifies what to push through to current.
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// - All of previous output is consumed.
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@@ -1204,46 +1210,39 @@ TER RippleCalc::calcNodeAccountFwd(
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if (bPrvAccount && bNxtAccount)
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{
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// Next is an account, must be rippling.
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if (!uIndex)
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{
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// ^ --> ACCOUNT --> account
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// First node, calculate amount to send.
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// XXX Limit by stamp/ripple balance
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// First node, calculate amount to ripple based on what is available.
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const STAmount& saCurSendMaxReq = pspCur->saInReq.isNegative()
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? pspCur->saInReq // Negative for no limit, doing a calculation.
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// Limit by sendmax.
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const STAmount saCurSendMaxReq = pspCur->saInReq.isNegative()
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? pspCur->saInReq // Negative for no limit, doing a calculation.
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: pspCur->saInReq-pspCur->saInAct; // request - done.
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STAmount& saCurSendMaxPass = pspCur->saInPass; // Report how much pass sends.
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if (saCurRedeemReq)
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{
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// Redeem requested.
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saCurRedeemAct = saCurRedeemReq.isNegative()
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? saCurRedeemReq
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: std::min(saCurRedeemReq, saCurSendMaxReq);
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}
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else
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{
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// No redeeming.
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saCurRedeemAct = saCurRedeemReq;
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}
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saCurRedeemAct = saCurRedeemReq
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// Redeem requested.
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? saCurRedeemReq.isNegative()
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? saCurRedeemReq
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: std::min(saCurRedeemReq, saCurSendMaxReq)
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// No redeeming.
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: saCurRedeemReq;
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saCurSendMaxPass = saCurRedeemAct;
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if (saCurIssueReq && (saCurSendMaxReq.isNegative() || saCurSendMaxPass != saCurSendMaxReq))
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{
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// Issue requested and pass does not meet max.
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saCurIssueAct = saCurSendMaxReq.isNegative()
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? saCurIssueReq
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: std::min(saCurSendMaxReq-saCurRedeemAct, saCurIssueReq);
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}
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else
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{
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// No issuing.
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saCurIssueAct = (saCurIssueReq // Issue wanted.
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&& (saCurSendMaxReq.isNegative() // No limit.
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|| saCurSendMaxPass != saCurSendMaxReq)) // Not yet satisfied.
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// Issue requested and pass does not meet max.
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? saCurSendMaxReq.isNegative()
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? saCurIssueReq
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: std::min(saCurSendMaxReq-saCurRedeemAct, saCurIssueReq)
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// No issuing.
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: STAmount(saCurIssueReq);
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saCurIssueAct = STAmount(saCurIssueReq);
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}
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saCurSendMaxPass += saCurIssueAct;
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cLog(lsINFO) << boost::str(boost::format("calcNodeAccountFwd: ^ --> ACCOUNT --> account : saInReq=%s saInAct=%s saCurSendMaxReq=%s saCurRedeemAct=%s saCurIssueReq=%s saCurIssueAct=%s saCurSendMaxPass=%s")
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@@ -1287,7 +1286,7 @@ TER RippleCalc::calcNodeAccountFwd(
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saCurIssueAct.zero(saCurIssueReq);
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// Previous redeem part 1: redeem -> redeem
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if (saPrvRedeemReq != saPrvRedeemAct) // Previous wants to redeem. To next must be ok.
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if (saPrvRedeemReq && saCurRedeemReq) // Previous wants to redeem.
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{
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// Rate : 1.0 : quality out
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calcNodeRipple(QUALITY_ONE, uQualityOut, saPrvRedeemReq, saCurRedeemReq, saPrvRedeemAct, saCurRedeemAct, uRateMax);
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@@ -1302,25 +1301,23 @@ TER RippleCalc::calcNodeAccountFwd(
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}
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// Previous redeem part 2: redeem -> issue.
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// wants to redeem and current would and can issue.
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// If redeeming cur to next is done, this implies can issue.
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if (saPrvRedeemReq != saPrvRedeemAct // Previous still wants to redeem.
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&& saCurRedeemReq == saCurRedeemAct // Current has no more to redeem to next.
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&& saCurIssueReq)
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&& saCurRedeemReq == saCurRedeemAct // Current redeeming is done can issue.
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&& saCurIssueReq) // Current wants to issue.
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{
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// Rate : 1.0 : transfer_rate
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calcNodeRipple(QUALITY_ONE, lesActive.rippleTransferRate(uCurAccountID), saPrvRedeemReq, saCurIssueReq, saPrvRedeemAct, saCurIssueAct, uRateMax);
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}
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// Previous issue part 2 : issue -> issue
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if (saPrvIssueReq != saPrvIssueAct) // Previous wants to issue. To next must be ok.
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if (saPrvIssueReq != saPrvIssueAct // Previous wants to issue.
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&& saCurRedeemReq == saCurRedeemAct) // Current redeeming is done can issue.
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{
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// Rate: quality in : 1.0
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calcNodeRipple(uQualityIn, QUALITY_ONE, saPrvIssueReq, saCurIssueReq, saPrvIssueAct, saCurIssueAct, uRateMax);
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}
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// Adjust prv --> cur balance : take all inbound
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// XXX Currency must be in amount.
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lesActive.rippleCredit(uPrvAccountID, uCurAccountID, saPrvRedeemReq + saPrvIssueReq, false);
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}
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}
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@@ -1429,7 +1426,7 @@ bool PathState::lessPriority(PathState::ref lhs, PathState::ref rhs)
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return lhs->mIndex > rhs->mIndex; // Bigger is worse.
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}
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// Make sure the path delivers to uAccountID: uCurrencyID from uIssuerID.
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// Make sure last path node delivers to uAccountID: uCurrencyID from uIssuerID.
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//
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// If the unadded next node as specified by arguments would not work as is, then add the necessary nodes so it would work.
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//
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@@ -1651,7 +1648,40 @@ PathState::PathState(
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| STPathElement::typeIssuer,
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uSenderID,
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uInCurrencyID,
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uInIssuerID);
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uSenderID);
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if (tesSUCCESS == terStatus
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&& !!uInCurrencyID // First was not XRC
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&& uInIssuerID != uSenderID) { // Issuer was not same as sender
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// May have an implied node.
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// Figure out next node properties for implied node.
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const uint160 uNxtCurrencyID = spSourcePath.getElementCount()
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? spSourcePath.getElement(0).getCurrency()
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: uOutCurrencyID;
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const uint160 uNxtAccountID = spSourcePath.getElementCount()
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? spSourcePath.getElement(0).getAccountID()
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: !!uOutCurrencyID
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? uOutIssuerID == uReceiverID
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? uReceiverID
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: uOutIssuerID
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: ACCOUNT_XNS;
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// Can't just use push implied, because it can't compensate for next account.
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if (!uNxtCurrencyID // Next is XRC - will have offer next
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|| uInCurrencyID != uNxtCurrencyID // Next is different current - will have offer next
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|| uInIssuerID != uNxtAccountID) // Next is not implied issuer
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{
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// Add implied account.
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terStatus = pushNode(
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STPathElement::typeAccount
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| STPathElement::typeCurrency
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| STPathElement::typeIssuer,
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uInIssuerID,
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uInCurrencyID,
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uInIssuerID);
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}
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}
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BOOST_FOREACH(const STPathElement& speElement, spSourcePath)
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{
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@@ -1659,21 +1689,35 @@ PathState::PathState(
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terStatus = pushNode(speElement.getNodeType(), speElement.getAccountID(), speElement.getCurrency(), speElement.getIssuerID());
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}
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const PaymentNode& pnPrv = vpnNodes.back();
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if (tesSUCCESS == terStatus
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&& !!uOutCurrencyID // Next is not XRC
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&& uOutIssuerID != uReceiverID // Out issuer is not reciever
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&& (pnPrv.uCurrencyID != uOutCurrencyID // Previous will be an offer.
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|| pnPrv.uAccountID != uOutIssuerID)) // Need the implied issuer.
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{
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// Add implied account.
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terStatus = pushNode(
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STPathElement::typeAccount
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| STPathElement::typeCurrency
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| STPathElement::typeIssuer,
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uOutIssuerID,
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uInCurrencyID,
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uOutIssuerID);
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}
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if (tesSUCCESS == terStatus)
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{
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// Create receiver node.
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terStatus = pushImply(uReceiverID, uOutCurrencyID, uOutIssuerID);
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if (tesSUCCESS == terStatus)
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{
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terStatus = pushNode(
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STPathElement::typeAccount // Last node is always an account.
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| STPathElement::typeCurrency
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| STPathElement::typeIssuer,
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uReceiverID, // Receive to output
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uOutCurrencyID, // Desired currency
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uOutIssuerID);
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}
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terStatus = pushNode(
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STPathElement::typeAccount // Last node is always an account.
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| STPathElement::typeCurrency
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| STPathElement::typeIssuer,
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uReceiverID, // Receive to output
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uOutCurrencyID, // Desired currency
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!!uOutCurrencyID ? uReceiverID : ACCOUNT_XNS);
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}
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if (tesSUCCESS == terStatus)
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@@ -603,7 +603,7 @@ public:
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int getElementCount() const { return mPath.size(); }
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bool isEmpty() const { return mPath.empty(); }
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const STPathElement& getElement(int offset) const { return mPath[offset]; }
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const STPathElement& getElemet(int offset) { return mPath[offset]; }
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const STPathElement& getElement(int offset) { return mPath[offset]; }
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void addElement(const STPathElement &e) { mPath.push_back(e); }
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void clear() { mPath.clear(); }
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bool hasSeen(const uint160 &acct);
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@@ -462,7 +462,11 @@ TER TransactionEngine::doPayment(const SerializedTransaction& txn, const Transac
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const bool bMax = txn.isFieldPresent(sfSendMax);
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const uint160 uDstAccountID = txn.getFieldAccount160(sfDestination);
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const STAmount saDstAmount = txn.getFieldAmount(sfAmount);
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const STAmount saMaxAmount = bMax ? txn.getFieldAmount(sfSendMax) : saDstAmount;
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const STAmount saMaxAmount = bMax
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? txn.getFieldAmount(sfSendMax)
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: saDstAmount.isNative()
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? saDstAmount
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: STAmount(saDstAmount.getCurrency(), mTxnAccountID, saDstAmount.getMantissa(), saDstAmount.getExponent(), saDstAmount.isNegative());
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const uint160 uSrcCurrency = saMaxAmount.getCurrency();
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const uint160 uDstCurrency = saDstAmount.getCurrency();
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