//------------------------------------------------------------------------------ /* This file is part of rippled: https://github.com/ripple/rippled Copyright (c) 2012, 2013 Ripple Labs Inc. Permission to use, copy, modify, and/or distribute this software for any purpose with or without fee is hereby granted, provided that the above copyright notice and this permission notice appear in all copies. THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY SPECIAL , DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE. */ //============================================================================== #include #include namespace ripple { // This code is used to compare another node's transaction tree // to our own. It returns a map containing all items that are different // between two SHA maps. It is optimized not to descend down tree // branches with the same branch hash. A limit can be passed so // that we will abort early if a node sends a map to us that // makes no sense at all. (And our sync algorithm will avoid // synchronizing matching branches too.) bool SHAMap::walkBranch (SHAMapTreeNode* node, std::shared_ptr const& otherMapItem, bool isFirstMap, Delta& differences, int& maxCount) const { // Walk a branch of a SHAMap that's matched by an empty branch or single item in the other map std::stack > nodeStack; nodeStack.push ({node}); bool emptyBranch = !otherMapItem; while (!nodeStack.empty ()) { node = nodeStack.top (); nodeStack.pop (); if (node->isInner ()) { // This is an inner node, add all non-empty branches for (int i = 0; i < 16; ++i) if (!node->isEmptyBranch (i)) nodeStack.push ({descendThrow (node, i)}); } else { // This is a leaf node, process its item std::shared_ptr item = node->peekItem (); if (emptyBranch || (item->getTag () != otherMapItem->getTag ())) { // unmatched if (isFirstMap) differences.insert (std::make_pair (item->getTag (), DeltaRef (item, std::shared_ptr ()))); else differences.insert (std::make_pair (item->getTag (), DeltaRef (std::shared_ptr (), item))); if (--maxCount <= 0) return false; } else if (item->peekData () != otherMapItem->peekData ()) { // non-matching items with same tag if (isFirstMap) differences.insert (std::make_pair (item->getTag (), DeltaRef (item, otherMapItem))); else differences.insert (std::make_pair (item->getTag (), DeltaRef (otherMapItem, item))); if (--maxCount <= 0) return false; emptyBranch = true; } else { // exact match emptyBranch = true; } } } if (!emptyBranch) { // otherMapItem was unmatched, must add if (isFirstMap) // this is first map, so other item is from second differences.insert (std::make_pair (otherMapItem->getTag (), DeltaRef (std::shared_ptr(), otherMapItem))); else differences.insert (std::make_pair (otherMapItem->getTag (), DeltaRef (otherMapItem, std::shared_ptr ()))); if (--maxCount <= 0) return false; } return true; } bool SHAMap::compare (std::shared_ptr const& otherMap, Delta& differences, int maxCount) const { // compare two hash trees, add up to maxCount differences to the difference table // return value: true=complete table of differences given, false=too many differences // throws on corrupt tables or missing nodes // CAUTION: otherMap is not locked and must be immutable assert (isValid () && otherMap && otherMap->isValid ()); if (getHash () == otherMap->getHash ()) return true; using StackEntry = std::pair ; std::stack > nodeStack; // track nodes we've pushed nodeStack.push ({root_.get(), otherMap->root_.get()}); while (!nodeStack.empty ()) { SHAMapTreeNode* ourNode = nodeStack.top().first; SHAMapTreeNode* otherNode = nodeStack.top().second; nodeStack.pop (); if (!ourNode || !otherNode) { assert (false); throw SHAMapMissingNode (type_, uint256 ()); } if (ourNode->isLeaf () && otherNode->isLeaf ()) { // two leaves if (ourNode->peekItem()->getTag () == otherNode->peekItem()->getTag ()) { if (ourNode->peekItem()->peekData () != otherNode->peekItem()->peekData ()) { differences.insert (std::make_pair (ourNode->peekItem()->getTag (), DeltaRef (ourNode->peekItem (), otherNode->peekItem ()))); if (--maxCount <= 0) return false; } } else { differences.insert (std::make_pair(ourNode->peekItem()->getTag (), DeltaRef(ourNode->peekItem(), std::shared_ptr ()))); if (--maxCount <= 0) return false; differences.insert(std::make_pair(otherNode->peekItem()->getTag (), DeltaRef(std::shared_ptr(), otherNode->peekItem ()))); if (--maxCount <= 0) return false; } } else if (ourNode->isInner () && otherNode->isLeaf ()) { if (!walkBranch (ourNode, otherNode->peekItem (), true, differences, maxCount)) return false; } else if (ourNode->isLeaf () && otherNode->isInner ()) { if (!otherMap->walkBranch (otherNode, ourNode->peekItem (), false, differences, maxCount)) return false; } else if (ourNode->isInner () && otherNode->isInner ()) { for (int i = 0; i < 16; ++i) if (ourNode->getChildHash (i) != otherNode->getChildHash (i)) { if (otherNode->isEmptyBranch (i)) { // We have a branch, the other tree does not SHAMapTreeNode* iNode = descendThrow (ourNode, i); if (!walkBranch (iNode, std::shared_ptr (), true, differences, maxCount)) return false; } else if (ourNode->isEmptyBranch (i)) { // The other tree has a branch, we do not SHAMapTreeNode* iNode = otherMap->descendThrow(otherNode, i); if (!otherMap->walkBranch (iNode, std::shared_ptr(), false, differences, maxCount)) return false; } else // The two trees have different non-empty branches nodeStack.push ({descendThrow (ourNode, i), otherMap->descendThrow (otherNode, i)}); } } else assert (false); } return true; } void SHAMap::walkMap (std::vector& missingNodes, int maxMissing) const { if (!root_->isInner ()) // root_ is only node, and we have it return; using StackEntry = std::shared_ptr; std::stack > nodeStack; nodeStack.push (root_); while (!nodeStack.empty ()) { std::shared_ptr node = std::move (nodeStack.top()); nodeStack.pop (); for (int i = 0; i < 16; ++i) { if (!node->isEmptyBranch (i)) { std::shared_ptr nextNode = descendNoStore (node, i); if (nextNode) { if (nextNode->isInner ()) nodeStack.push (std::move (nextNode)); } else { missingNodes.emplace_back (type_, node->getChildHash (i)); if (--maxMissing <= 0) return; } } } } } } // ripple