Compare commits
22 Commits
| Author | SHA1 | Date | |
|---|---|---|---|
| 5a132799a4 | |||
| 72469ebb6e | |||
| 6c79847a42 | |||
| 405a2ca161 | |||
| f93466316a | |||
| 5626cd09d9 | |||
| 41840220c3 | |||
| 7ff00e7846 | |||
| 6242f40d48 | |||
| 403d70a1d3 | |||
| 9763452713 | |||
| 73d0593fca | |||
| 23c2a3e1c6 | |||
| a64e792964 | |||
| 5e362d5330 | |||
| cc526cb6ba | |||
| 7e49888bec | |||
| e64ebabced | |||
| 1e34951a77 | |||
| baf64520d6 | |||
| 3499626127 | |||
| b7f9084694 |
+274
-283
@@ -195,7 +195,6 @@ struct Node {
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/* end section that's copied to the next node */
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uint8_t *partialKey();
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size_t size() const;
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Type getType() const { return type; }
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int32_t getCapacity() const { return partialKeyCapacity; }
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@@ -771,23 +770,6 @@ uint8_t *Node::partialKey() {
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}
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}
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size_t Node::size() const {
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switch (type) {
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case Type_Node0:
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return ((Node0 *)this)->size();
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case Type_Node3:
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return ((Node3 *)this)->size();
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case Type_Node16:
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return ((Node16 *)this)->size();
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case Type_Node48:
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return ((Node48 *)this)->size();
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case Type_Node256:
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return ((Node256 *)this)->size();
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default: // GCOVR_EXCL_LINE
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__builtin_unreachable(); // GCOVR_EXCL_LINE
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}
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}
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// A type that's plumbed along the check call tree. Lifetime ends after each
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// check call.
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struct ReadContext {
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@@ -818,7 +800,6 @@ struct WriteContext {
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int64_t nodes_allocated;
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int64_t nodes_released;
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int64_t point_writes;
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int64_t prefix_writes;
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int64_t range_writes;
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int64_t write_bytes;
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} accum;
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@@ -1623,6 +1604,46 @@ void rezero(Node *n, InternalVersionT z) {
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}
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}
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void mergeWithChild(Node *&self, WriteContext *tls, ConflictSet::Impl *impl,
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Node *&dontInvalidate, Node3 *self3) {
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assert(!self3->entryPresent);
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auto *child = self3->children[0];
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int minCapacity = self3->partialKeyLen + 1 + child->partialKeyLen;
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if (minCapacity > child->getCapacity()) {
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const bool update = child == dontInvalidate;
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freeAndMakeCapacityAtLeast(child, minCapacity, tls, impl, true);
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if (update) {
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dontInvalidate = child;
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}
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}
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// Merge partial key with child
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#if DEBUG_VERBOSE && !defined(NDEBUG)
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fprintf(stderr, "Merge %s into %s\n", getSearchPathPrintable(self).c_str(),
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getSearchPathPrintable(child).c_str());
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#endif
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InternalVersionT childMaxVersion = self3->childMaxVersion[0];
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// Construct new partial key for child
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memmove(child->partialKey() + self3->partialKeyLen + 1, child->partialKey(),
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child->partialKeyLen);
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memcpy(child->partialKey(), self3->partialKey(), self->partialKeyLen);
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child->partialKey()[self3->partialKeyLen] = self3->index[0];
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child->partialKeyLen += 1 + self3->partialKeyLen;
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child->parent = self->parent;
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child->parentsIndex = self->parentsIndex;
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// Max versions are stored in the parent, so we need to update it now
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// that we have a new parent.
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setMaxVersion(child, impl, std::max(childMaxVersion, tls->zero));
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self = child;
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tls->release(self3);
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}
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void maybeDownsize(Node *self, WriteContext *tls, ConflictSet::Impl *impl,
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Node *&dontInvalidate) {
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@@ -1642,45 +1663,7 @@ void maybeDownsize(Node *self, WriteContext *tls, ConflictSet::Impl *impl,
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getInTree(self, impl) = newSelf;
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tls->release(self3);
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} else if (self->numChildren == 1 && !self->entryPresent) {
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auto *child = self3->children[0];
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int minCapacity = self3->partialKeyLen + 1 + child->partialKeyLen;
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if (minCapacity > child->getCapacity()) {
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const bool update = child == dontInvalidate;
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freeAndMakeCapacityAtLeast(child, minCapacity, tls, impl, true);
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if (update) {
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dontInvalidate = child;
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}
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}
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// Merge partial key with child
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#if DEBUG_VERBOSE && !defined(NDEBUG)
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fprintf(stderr, "Merge %s into %s\n",
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getSearchPathPrintable(self).c_str(),
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getSearchPathPrintable(child).c_str());
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#endif
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InternalVersionT childMaxVersion = maxVersion(child, impl);
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// Construct new partial key for child
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memmove(child->partialKey() + self3->partialKeyLen + 1,
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child->partialKey(), child->partialKeyLen);
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memcpy(child->partialKey(), self3->partialKey(), self->partialKeyLen);
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child->partialKey()[self3->partialKeyLen] = self3->index[0];
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child->partialKeyLen += 1 + self3->partialKeyLen;
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child->parent = self->parent;
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child->parentsIndex = self->parentsIndex;
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// Max versions are stored in the parent, so we need to update it now
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// that we have a new parent.
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setMaxVersion(child, impl, childMaxVersion);
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if (child->parent) {
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rezero(child->parent, tls->zero);
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}
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getInTree(self, impl) = child;
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tls->release(self3);
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mergeWithChild(getInTree(self, impl), tls, impl, dontInvalidate, self3);
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}
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} break;
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case Type_Node16:
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@@ -1715,55 +1698,55 @@ void maybeDownsize(Node *self, WriteContext *tls, ConflictSet::Impl *impl,
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}
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}
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void destroyTree(Node *root, WriteContext::Accum *accum) {
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void eraseTree(Node *root, WriteContext *tls) {
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Arena arena;
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auto toFree = vector<Node *>(arena);
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toFree.push_back(root);
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#if SHOW_MEMORY
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for (auto *iter = root; iter != nullptr; iter = nextPhysical(iter)) {
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removeNode(iter);
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removeKey(iter);
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}
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#endif
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while (toFree.size() > 0) {
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auto *n = toFree.back();
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toFree.pop_back();
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accum->entries_erased += n->entryPresent;
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++accum->nodes_released;
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tls->accum.entries_erased += n->entryPresent;
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++tls->accum.nodes_released;
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removeNode(n);
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removeKey(n);
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switch (n->getType()) {
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case Type_Node0: {
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auto *n0 = static_cast<Node0 *>(n);
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tls->release(n0);
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} break;
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case Type_Node3: {
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auto *n3 = static_cast<Node3 *>(n);
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toFree.append(std::span<Node *>(n3->children, n3->numChildren));
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tls->release(n3);
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} break;
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case Type_Node16: {
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auto *n16 = static_cast<Node16 *>(n);
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toFree.append(std::span<Node *>(n16->children, n16->numChildren));
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tls->release(n16);
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} break;
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case Type_Node48: {
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auto *n48 = static_cast<Node48 *>(n);
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toFree.append(std::span<Node *>(n48->children, n48->numChildren));
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tls->release(n48);
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} break;
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case Type_Node256: {
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auto *n256 = static_cast<Node256 *>(n);
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auto *out = toFree.unsafePrepareAppend(n256->numChildren).data();
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n256->bitSet.forEachSet([&](int i) { *out++ = n256->children[i]; });
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assert(out == toFree.end());
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tls->release(n256);
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} break;
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default: // GCOVR_EXCL_LINE
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__builtin_unreachable(); // GCOVR_EXCL_LINE
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}
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removeNode(n);
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safe_free(n, n->size());
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}
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}
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void eraseBetween(Node3 *&n, int begin, int end, WriteContext *tls,
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ConflictSet::Impl *impl) {
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void eraseBetween(Node **inTree, Node3 *n, int begin, int end,
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WriteContext *tls) {
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const unsigned shiftUpperBound = end - begin;
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const unsigned shiftAmount = begin;
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auto inBounds = [&](unsigned c) { return c - shiftAmount < shiftUpperBound; };
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@@ -1772,7 +1755,7 @@ void eraseBetween(Node3 *&n, int begin, int end, WriteContext *tls,
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InternalVersionT *maxVOut = n->childMaxVersion;
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for (int i = 0; i < n->numChildren; ++i) {
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if (inBounds(n->index[i])) {
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destroyTree(n->children[i], &tls->accum);
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eraseTree(n->children[i], tls);
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} else {
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*nodeOut++ = n->children[i];
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*indexOut++ = n->index[i];
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@@ -1784,144 +1767,167 @@ void eraseBetween(Node3 *&n, int begin, int end, WriteContext *tls,
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if (n->numChildren == 0) {
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auto *newNode = tls->allocate<Node0>(n->partialKeyLen);
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newNode->copyChildrenAndKeyFrom(*n);
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getInTree(n, impl) = newNode;
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tls->release(n);
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(Node *&)n = newNode;
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*inTree = newNode;
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}
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}
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void eraseBetween(Node16 *&n, int begin, int end, WriteContext *tls,
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ConflictSet::Impl *impl) {
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void eraseBetween(Node **inTree, Node16 *n, int begin, int end,
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WriteContext *tls) {
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if (end - begin == 256) {
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for (int i = 0; i < n->numChildren; ++i) {
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eraseTree(n->children[i], tls);
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}
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n->numChildren = 0;
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auto *newNode = tls->allocate<Node0>(n->partialKeyLen);
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newNode->copyChildrenAndKeyFrom(*n);
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tls->release(n);
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*inTree = newNode;
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return;
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}
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assert(end - begin < 256);
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#ifdef HAS_ARM_NEON
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uint8x16_t indices;
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memcpy(&indices, n->index, 16);
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// 0xff for each in bounds
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auto results =
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vcltq_u8(vsubq_u8(indices, vdupq_n_u8(begin)), vdupq_n_u8(end - begin));
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// 0xf for each 0xff
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uint64_t mask = vget_lane_u64(
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vreinterpret_u64_u8(vshrn_n_u16(vreinterpretq_u16_u8(results), 4)), 0);
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#elif defined(HAS_AVX)
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__m128i indices;
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memcpy(&indices, n->index, 16);
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indices = _mm_sub_epi8(indices, _mm_set1_epi8(begin));
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uint32_t mask = ~_mm_movemask_epi8(_mm_cmpeq_epi8(
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indices, _mm_max_epu8(indices, _mm_set1_epi8(end - begin))));
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#else
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const unsigned shiftUpperBound = end - begin;
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const unsigned shiftAmount = begin;
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auto inBounds = [&](unsigned c) { return c - shiftAmount < shiftUpperBound; };
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Node **nodeOut = n->children;
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uint8_t *indexOut = n->index;
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InternalVersionT *maxVOut = n->childMaxVersion;
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for (int i = 0; i < n->numChildren; ++i) {
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if (inBounds(n->index[i])) {
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destroyTree(n->children[i], &tls->accum);
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} else {
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*nodeOut++ = n->children[i];
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*indexOut++ = n->index[i];
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*maxVOut++ = n->childMaxVersion[i];
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}
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uint32_t mask = 0;
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for (int i = 0; i < 16; ++i) {
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mask |= inBounds(is[i]) << i;
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}
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n->numChildren = nodeOut - n->children;
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#endif
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mask &= (decltype(mask)(1) << n->numChildren) - 1;
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if (n->numChildren == 0) {
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auto *newNode = tls->allocate<Node0>(n->partialKeyLen);
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newNode->copyChildrenAndKeyFrom(*n);
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getInTree(n, impl) = newNode;
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tls->release(n);
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(Node *&)n = newNode;
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} else if (n->numChildren <= Node3::kMaxNodes) {
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if (!mask) {
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return;
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}
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int first = std::countr_zero(mask);
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int count = std::popcount(mask);
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n->numChildren -= count;
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for (int i = first; i < first + count; ++i) {
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eraseTree(n->children[i], tls);
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}
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for (int i = first; i < n->numChildren; ++i) {
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n->children[i] = n->children[i + count];
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n->childMaxVersion[i] = n->childMaxVersion[i + count];
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n->index[i] = n->index[i + count];
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}
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if (n->numChildren + n->entryPresent >= kMinChildrenNode16) {
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// nop
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} else if (n->numChildren > 0) {
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auto *newNode = tls->allocate<Node3>(n->partialKeyLen);
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newNode->copyChildrenAndKeyFrom(*n);
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getInTree(n, impl) = newNode;
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tls->release(n);
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(Node *&)n = newNode;
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*inTree = newNode;
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} else {
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auto *newNode = tls->allocate<Node0>(n->partialKeyLen);
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newNode->copyChildrenAndKeyFrom(*n);
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tls->release(n);
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*inTree = newNode;
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}
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}
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void eraseBetween(Node48 *&n, int begin, int end, WriteContext *tls,
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ConflictSet::Impl *impl) {
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const unsigned shiftUpperBound = end - begin;
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const unsigned shiftAmount = begin;
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auto inBounds = [&](unsigned c) { return c - shiftAmount < shiftUpperBound; };
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Node **nodeOut = n->children;
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uint8_t *indexOut = n->reverseIndex;
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InternalVersionT *maxVOut = n->childMaxVersion;
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for (auto &v : n->maxOfMax) {
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v = tls->zero;
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}
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n->bitSet = {};
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memset(n->index, -1, sizeof(n->index));
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n->nextFree = 0;
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for (int i = 0; i < n->numChildren; ++i) {
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if (inBounds(n->reverseIndex[i])) {
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destroyTree(n->children[i], &tls->accum);
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} else {
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*nodeOut++ = n->children[i];
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*indexOut++ = n->reverseIndex[i];
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*maxVOut++ = n->childMaxVersion[i];
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n->maxOfMax[i >> Node48::kMaxOfMaxShift] = std::max(
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n->maxOfMax[i >> Node48::kMaxOfMaxShift], n->childMaxVersion[i]);
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n->bitSet.set(n->reverseIndex[i]);
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n->index[n->reverseIndex[i]] = n->nextFree++;
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void eraseBetween(Node **inTree, Node48 *n, int begin, int end,
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WriteContext *tls) {
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for (int i = n->bitSet.firstSetGeq(begin); i >= 0 && i < end;
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i = n->bitSet.firstSetGeq(i)) {
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n->bitSet.reset(i);
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int8_t toRemoveChildrenIndex = std::exchange(n->index[i], -1);
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int8_t lastChildrenIndex = --n->nextFree;
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assert(toRemoveChildrenIndex >= 0);
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assert(lastChildrenIndex >= 0);
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eraseTree(n->children[toRemoveChildrenIndex], tls);
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if (toRemoveChildrenIndex != lastChildrenIndex) {
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n->children[toRemoveChildrenIndex] = n->children[lastChildrenIndex];
|
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n->childMaxVersion[toRemoveChildrenIndex] =
|
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n->childMaxVersion[lastChildrenIndex];
|
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n->maxOfMax[toRemoveChildrenIndex >> Node48::kMaxOfMaxShift] =
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std::max(n->maxOfMax[toRemoveChildrenIndex >> Node48::kMaxOfMaxShift],
|
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n->childMaxVersion[toRemoveChildrenIndex]);
|
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auto parentIndex = n->children[toRemoveChildrenIndex]->parentsIndex;
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n->index[parentIndex] = toRemoveChildrenIndex;
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n->reverseIndex[toRemoveChildrenIndex] = parentIndex;
|
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}
|
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n->childMaxVersion[lastChildrenIndex] = tls->zero;
|
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--n->numChildren;
|
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}
|
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n->numChildren = n->nextFree;
|
||||
|
||||
if (n->numChildren == 0) {
|
||||
auto *newNode = tls->allocate<Node0>(n->partialKeyLen);
|
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newNode->copyChildrenAndKeyFrom(*n);
|
||||
getInTree(n, impl) = newNode;
|
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tls->release(n);
|
||||
(Node *&)n = newNode;
|
||||
} else if (n->numChildren <= Node3::kMaxNodes) {
|
||||
auto *newNode = tls->allocate<Node3>(n->partialKeyLen);
|
||||
newNode->copyChildrenAndKeyFrom(*n);
|
||||
getInTree(n, impl) = newNode;
|
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tls->release(n);
|
||||
(Node *&)n = newNode;
|
||||
} else if (n->numChildren <= Node16::kMaxNodes) {
|
||||
if (n->numChildren + n->entryPresent >= kMinChildrenNode48) {
|
||||
// nop
|
||||
} else if (n->numChildren > Node3::kMaxNodes) {
|
||||
auto *newNode = tls->allocate<Node16>(n->partialKeyLen);
|
||||
newNode->copyChildrenAndKeyFrom(*n);
|
||||
getInTree(n, impl) = newNode;
|
||||
tls->release(n);
|
||||
(Node *&)n = newNode;
|
||||
*inTree = newNode;
|
||||
} else if (n->numChildren > 0) {
|
||||
auto *newNode = tls->allocate<Node3>(n->partialKeyLen);
|
||||
newNode->copyChildrenAndKeyFrom(*n);
|
||||
tls->release(n);
|
||||
*inTree = newNode;
|
||||
} else {
|
||||
auto *newNode = tls->allocate<Node0>(n->partialKeyLen);
|
||||
newNode->copyChildrenAndKeyFrom(*n);
|
||||
tls->release(n);
|
||||
*inTree = newNode;
|
||||
}
|
||||
}
|
||||
|
||||
void eraseBetween(Node256 *&n, int begin, int end, WriteContext *tls,
|
||||
ConflictSet::Impl *impl) {
|
||||
const unsigned shiftUpperBound = end - begin;
|
||||
const unsigned shiftAmount = begin;
|
||||
auto inBounds = [&](unsigned c) { return c - shiftAmount < shiftUpperBound; };
|
||||
n->numChildren = 0;
|
||||
BitSet newBitSet;
|
||||
n->bitSet.forEachSet([&](int i) {
|
||||
if (inBounds(i)) {
|
||||
destroyTree(std::exchange(n->children[i], nullptr), &tls->accum);
|
||||
} else {
|
||||
++n->numChildren;
|
||||
newBitSet.set(i);
|
||||
}
|
||||
});
|
||||
n->bitSet = newBitSet;
|
||||
// Don't need to update childMaxVersion or maxOfMax because of monotonicity
|
||||
if (n->numChildren == 0) {
|
||||
auto *newNode = tls->allocate<Node0>(n->partialKeyLen);
|
||||
newNode->copyChildrenAndKeyFrom(*n);
|
||||
getInTree(n, impl) = newNode;
|
||||
tls->release(n);
|
||||
(Node *&)n = newNode;
|
||||
} else if (n->numChildren <= Node3::kMaxNodes) {
|
||||
auto *newNode = tls->allocate<Node3>(n->partialKeyLen);
|
||||
newNode->copyChildrenAndKeyFrom(*n);
|
||||
getInTree(n, impl) = newNode;
|
||||
tls->release(n);
|
||||
(Node *&)n = newNode;
|
||||
} else if (n->numChildren <= Node16::kMaxNodes) {
|
||||
auto *newNode = tls->allocate<Node16>(n->partialKeyLen);
|
||||
newNode->copyChildrenAndKeyFrom(*n);
|
||||
getInTree(n, impl) = newNode;
|
||||
tls->release(n);
|
||||
(Node *&)n = newNode;
|
||||
} else if (n->numChildren <= Node48::kMaxNodes) {
|
||||
void eraseBetween(Node **inTree, Node256 *n, int begin, int end,
|
||||
WriteContext *tls) {
|
||||
for (int i = n->bitSet.firstSetGeq(begin); i >= 0 && i < end;
|
||||
i = n->bitSet.firstSetGeq(i)) {
|
||||
assert(n->children[i] != nullptr);
|
||||
eraseTree(std::exchange(n->children[i], nullptr), tls);
|
||||
n->bitSet.reset(i);
|
||||
--n->numChildren;
|
||||
}
|
||||
if (n->numChildren + n->entryPresent >= kMinChildrenNode256) {
|
||||
// nop
|
||||
} else if (n->numChildren > Node16::kMaxNodes) {
|
||||
auto *newNode = tls->allocate<Node48>(n->partialKeyLen);
|
||||
newNode->copyChildrenAndKeyFrom(*n);
|
||||
getInTree(n, impl) = newNode;
|
||||
tls->release(n);
|
||||
(Node *&)n = newNode;
|
||||
*inTree = newNode;
|
||||
} else if (n->numChildren > Node3::kMaxNodes) {
|
||||
auto *newNode = tls->allocate<Node16>(n->partialKeyLen);
|
||||
newNode->copyChildrenAndKeyFrom(*n);
|
||||
tls->release(n);
|
||||
*inTree = newNode;
|
||||
} else if (n->numChildren > 0) {
|
||||
auto *newNode = tls->allocate<Node3>(n->partialKeyLen);
|
||||
newNode->copyChildrenAndKeyFrom(*n);
|
||||
tls->release(n);
|
||||
*inTree = newNode;
|
||||
} else {
|
||||
auto *newNode = tls->allocate<Node0>(n->partialKeyLen);
|
||||
newNode->copyChildrenAndKeyFrom(*n);
|
||||
tls->release(n);
|
||||
*inTree = newNode;
|
||||
}
|
||||
}
|
||||
|
||||
// Erase all nodes with a search path starting with n + [child],
|
||||
// where child in [begin, end).
|
||||
void eraseBetween(Node *&n, int begin, int end, WriteContext *tls,
|
||||
ConflictSet::Impl *impl) {
|
||||
// where child in [begin, end). To avoid the need to propagate erases up the
|
||||
// search path, the caller must ensure that the result has at least one child or
|
||||
// has entryPresent.
|
||||
void eraseBetween(Node *&n, int begin, int end, WriteContext *tls) {
|
||||
#if DEBUG_VERBOSE && !defined(NDEBUG)
|
||||
fprintf(stderr, "eraseBetween: %s + [%d,%d)\n",
|
||||
getSearchPathPrintable(n).c_str(), begin, end);
|
||||
@@ -1930,20 +1936,21 @@ void eraseBetween(Node *&n, int begin, int end, WriteContext *tls,
|
||||
case Type_Node0:
|
||||
break;
|
||||
case Type_Node3:
|
||||
eraseBetween((Node3 *&)n, begin, end, tls, impl);
|
||||
eraseBetween(&n, (Node3 *)n, begin, end, tls);
|
||||
break;
|
||||
case Type_Node16:
|
||||
eraseBetween((Node16 *&)n, begin, end, tls, impl);
|
||||
eraseBetween(&n, (Node16 *)n, begin, end, tls);
|
||||
break;
|
||||
case Type_Node48:
|
||||
eraseBetween((Node48 *&)n, begin, end, tls, impl);
|
||||
eraseBetween(&n, (Node48 *)n, begin, end, tls);
|
||||
break;
|
||||
case Type_Node256:
|
||||
eraseBetween((Node256 *&)n, begin, end, tls, impl);
|
||||
eraseBetween(&n, (Node256 *)n, begin, end, tls);
|
||||
break;
|
||||
default: // GCOVR_EXCL_LINE
|
||||
__builtin_unreachable(); // GCOVR_EXCL_LINE
|
||||
}
|
||||
assert(n->numChildren > 0 || n->entryPresent);
|
||||
}
|
||||
|
||||
// Precondition: self is not the root. May invalidate nodes along the search
|
||||
@@ -3185,55 +3192,6 @@ void fixupMaxVersion(Node *node, ConflictSet::Impl *impl, WriteContext *tls) {
|
||||
setMaxVersion(node, impl, max);
|
||||
}
|
||||
|
||||
void addPrefixWrite(Node *&root, std::span<const uint8_t> begin,
|
||||
std::span<const uint8_t> end, InternalVersionT writeVersion,
|
||||
WriteContext *tls, ConflictSet::Impl *impl) {
|
||||
++tls->accum.prefix_writes;
|
||||
int lcp = begin.size() - 1;
|
||||
|
||||
Node **useAsRoot =
|
||||
insert(&root, begin.subspan(0, lcp), writeVersion, tls, impl);
|
||||
|
||||
auto *beginNode =
|
||||
*insert(useAsRoot, begin.subspan(lcp, 1), writeVersion, tls, impl);
|
||||
|
||||
const bool insertedBegin = !beginNode->entryPresent;
|
||||
|
||||
addKey(beginNode);
|
||||
beginNode->entryPresent = true;
|
||||
|
||||
if (insertedBegin) {
|
||||
++tls->accum.entries_inserted;
|
||||
auto *p = nextLogical(beginNode);
|
||||
beginNode->entry.rangeVersion =
|
||||
p == nullptr ? tls->zero : std::max(p->entry.rangeVersion, tls->zero);
|
||||
beginNode->entry.pointVersion = writeVersion;
|
||||
}
|
||||
assert(writeVersion >= beginNode->entry.pointVersion);
|
||||
beginNode->entry.pointVersion = writeVersion;
|
||||
|
||||
auto *endNode =
|
||||
*insert(useAsRoot, end.subspan(lcp, 1), writeVersion, tls, impl);
|
||||
|
||||
const bool insertedEnd = !endNode->entryPresent;
|
||||
|
||||
addKey(endNode);
|
||||
endNode->entryPresent = true;
|
||||
|
||||
if (insertedEnd) {
|
||||
++tls->accum.entries_inserted;
|
||||
auto *p = nextLogical(endNode);
|
||||
endNode->entry.pointVersion =
|
||||
p == nullptr ? tls->zero : std::max(p->entry.rangeVersion, tls->zero);
|
||||
}
|
||||
endNode->entry.rangeVersion = writeVersion;
|
||||
|
||||
eraseBetween(beginNode, 0, 256, tls, impl);
|
||||
|
||||
// Inserting end trashed endNode's maxVersion. Fix that
|
||||
fixupMaxVersion(endNode, impl, tls);
|
||||
}
|
||||
|
||||
void addWriteRange(Node *&root, std::span<const uint8_t> begin,
|
||||
std::span<const uint8_t> end, InternalVersionT writeVersion,
|
||||
WriteContext *tls, ConflictSet::Impl *impl) {
|
||||
@@ -3244,64 +3202,98 @@ void addWriteRange(Node *&root, std::span<const uint8_t> begin,
|
||||
end.back() == 0) {
|
||||
return addPointWrite(root, begin, writeVersion, tls, impl);
|
||||
}
|
||||
if (lcp == int(begin.size() - 1) && end.size() == begin.size() &&
|
||||
int(begin.back()) + 1 == int(end.back())) {
|
||||
return addPrefixWrite(root, begin, end, writeVersion, tls, impl);
|
||||
}
|
||||
++tls->accum.range_writes;
|
||||
const bool beginIsPrefix = lcp == int(begin.size());
|
||||
|
||||
Node **useAsRoot =
|
||||
insert(&root, begin.subspan(0, lcp), writeVersion, tls, impl);
|
||||
begin = begin.subspan(lcp, begin.size() - lcp);
|
||||
end = end.subspan(lcp, end.size() - lcp);
|
||||
|
||||
int consumed = lcp;
|
||||
|
||||
begin = begin.subspan(consumed, begin.size() - consumed);
|
||||
end = end.subspan(consumed, end.size() - consumed);
|
||||
|
||||
auto *beginNode = *insert(useAsRoot, begin, writeVersion, tls, impl);
|
||||
|
||||
const bool insertedBegin = !beginNode->entryPresent;
|
||||
|
||||
addKey(beginNode);
|
||||
beginNode->entryPresent = true;
|
||||
|
||||
if (insertedBegin) {
|
||||
++tls->accum.entries_inserted;
|
||||
auto *p = nextLogical(beginNode);
|
||||
beginNode->entry.rangeVersion =
|
||||
p == nullptr ? tls->zero : std::max(p->entry.rangeVersion, tls->zero);
|
||||
if (beginIsPrefix) {
|
||||
auto *beginNode = *useAsRoot;
|
||||
addKey(beginNode);
|
||||
if (!beginNode->entryPresent) {
|
||||
++tls->accum.entries_inserted;
|
||||
auto *p = nextLogical(beginNode);
|
||||
beginNode->entry.rangeVersion =
|
||||
p == nullptr ? tls->zero : std::max(p->entry.rangeVersion, tls->zero);
|
||||
beginNode->entryPresent = true;
|
||||
}
|
||||
beginNode->entry.pointVersion = writeVersion;
|
||||
}
|
||||
assert(writeVersion >= beginNode->entry.pointVersion);
|
||||
beginNode->entry.pointVersion = writeVersion;
|
||||
|
||||
auto *endNode = *insert(useAsRoot, end, writeVersion, tls, impl);
|
||||
|
||||
const bool insertedEnd = !endNode->entryPresent;
|
||||
|
||||
addKey(endNode);
|
||||
endNode->entryPresent = true;
|
||||
|
||||
if (insertedEnd) {
|
||||
++tls->accum.entries_inserted;
|
||||
auto *p = nextLogical(endNode);
|
||||
endNode->entry.pointVersion =
|
||||
p == nullptr ? tls->zero : std::max(p->entry.rangeVersion, tls->zero);
|
||||
if (beginIsPrefix) {
|
||||
auto *endNode = *insert(useAsRoot, end, writeVersion, tls, impl);
|
||||
addKey(endNode);
|
||||
if (!endNode->entryPresent) {
|
||||
++tls->accum.entries_inserted;
|
||||
auto *p = nextLogical(endNode);
|
||||
endNode->entry.pointVersion =
|
||||
p == nullptr ? tls->zero : std::max(p->entry.rangeVersion, tls->zero);
|
||||
// beginNode may have been invalidated when inserting end
|
||||
beginNode = *useAsRoot;
|
||||
assert(beginNode->entryPresent);
|
||||
endNode->entryPresent = true;
|
||||
}
|
||||
}
|
||||
endNode->entry.rangeVersion = writeVersion;
|
||||
endNode->entry.rangeVersion = writeVersion;
|
||||
|
||||
for (beginNode = nextLogical(beginNode); beginNode != endNode;
|
||||
beginNode = erase(beginNode, tls, impl, /*logical*/ true, endNode)) {
|
||||
}
|
||||
for (beginNode = nextLogical(beginNode); beginNode != endNode;
|
||||
beginNode = erase(beginNode, tls, impl, /*logical*/ true, endNode)) {
|
||||
}
|
||||
|
||||
// Inserting end trashed endNode's maxVersion. Fix that
|
||||
fixupMaxVersion(endNode, impl, tls);
|
||||
// Inserting end trashed endNode's maxVersion. Fix that
|
||||
fixupMaxVersion(endNode, impl, tls);
|
||||
} else /*!beginIsPrefix*/ {
|
||||
auto *beginNode = *insert(useAsRoot, begin, writeVersion, tls, impl);
|
||||
addKey(beginNode);
|
||||
if (!beginNode->entryPresent) {
|
||||
++tls->accum.entries_inserted;
|
||||
auto *p = nextLogical(beginNode);
|
||||
beginNode->entry.rangeVersion =
|
||||
p == nullptr ? tls->zero : std::max(p->entry.rangeVersion, tls->zero);
|
||||
beginNode->entryPresent = true;
|
||||
}
|
||||
beginNode->entry.pointVersion = writeVersion;
|
||||
|
||||
auto *endNode = *insert(useAsRoot, end, writeVersion, tls, impl);
|
||||
addKey(endNode);
|
||||
if (!endNode->entryPresent) {
|
||||
++tls->accum.entries_inserted;
|
||||
auto *p = nextLogical(endNode);
|
||||
endNode->entry.pointVersion =
|
||||
p == nullptr ? tls->zero : std::max(p->entry.rangeVersion, tls->zero);
|
||||
endNode->entryPresent = true;
|
||||
}
|
||||
endNode->entry.rangeVersion = writeVersion;
|
||||
|
||||
eraseBetween(*useAsRoot, begin[0] + 1, end[0], tls);
|
||||
|
||||
// // Erase along left spine
|
||||
// for (auto [n, key] = std::make_tuple(useAsRoot, begin);;) {
|
||||
// auto before = key;
|
||||
// auto **child = &getOrCreateChild(*n, key, writeVersion, tls);
|
||||
// if (key.size() > 0) {
|
||||
// eraseBetween(*child, int(key[0]) + 1, 256, tls);
|
||||
// if ((*child)->numChildren == 1 && !(*child)->entryPresent) {
|
||||
// Node *dummy = nullptr;
|
||||
// mergeWithChild(*child, tls, impl, dummy,
|
||||
// static_cast<Node3 *>(*child));
|
||||
// key = before;
|
||||
// continue;
|
||||
// }
|
||||
// } else {
|
||||
// eraseBetween(*child, 0, 256, tls);
|
||||
// beginNode = *child;
|
||||
// break;
|
||||
// }
|
||||
// n = child;
|
||||
// }
|
||||
|
||||
for (beginNode = nextLogical(beginNode); beginNode != endNode;
|
||||
beginNode = erase(beginNode, tls, impl, /*logical*/ true, endNode)) {
|
||||
}
|
||||
|
||||
// Inserting end trashed endNode's maxVersion. Fix that
|
||||
fixupMaxVersion(endNode, impl, tls);
|
||||
}
|
||||
}
|
||||
|
||||
Node *firstGeqPhysical(Node *n, const std::span<const uint8_t> key) {
|
||||
@@ -3412,7 +3404,7 @@ struct __attribute__((visibility("hidden"))) ConflictSet::Impl {
|
||||
if (oldestExtantVersion < writeVersion - kMaxCorrectVersionWindow)
|
||||
[[unlikely]] {
|
||||
if (writeVersion > newestVersionFullPrecision + kNominalVersionWindow) {
|
||||
destroyTree(root, &tls.accum);
|
||||
eraseTree(root, &tls);
|
||||
init(writeVersion - kNominalVersionWindow);
|
||||
}
|
||||
|
||||
@@ -3450,7 +3442,6 @@ struct __attribute__((visibility("hidden"))) ConflictSet::Impl {
|
||||
|
||||
memory_bytes.set(totalBytes);
|
||||
point_writes_total.add(tls.accum.point_writes);
|
||||
prefix_writes_total.add(tls.accum.prefix_writes);
|
||||
range_writes_total.add(tls.accum.range_writes);
|
||||
nodes_allocated_total.add(tls.accum.nodes_allocated);
|
||||
nodes_released_total.add(tls.accum.nodes_released);
|
||||
@@ -3581,7 +3572,7 @@ struct __attribute__((visibility("hidden"))) ConflictSet::Impl {
|
||||
initMetrics();
|
||||
}
|
||||
~Impl() {
|
||||
destroyTree(root, &tls.accum);
|
||||
eraseTree(root, &tls);
|
||||
safe_free(metrics, metricsCount * sizeof(metrics[0]));
|
||||
}
|
||||
|
||||
@@ -3649,7 +3640,6 @@ struct __attribute__((visibility("hidden"))) ConflictSet::Impl {
|
||||
"Total number of checks where the result is \"too old\"");
|
||||
COUNTER(check_bytes_total, "Total number of key bytes checked");
|
||||
COUNTER(point_writes_total, "Total number of point writes");
|
||||
COUNTER(prefix_writes_total, "Total number of prefix writes");
|
||||
COUNTER(range_writes_total, "Total number of range writes");
|
||||
GAUGE(memory_bytes, "Total number of bytes in use");
|
||||
COUNTER(nodes_allocated_total,
|
||||
@@ -3757,6 +3747,7 @@ InternalVersionT exchangeMaxVersion(Node *n, InternalVersionT newMax) {
|
||||
}
|
||||
|
||||
void setMaxVersion(Node *n, ConflictSet::Impl *impl, InternalVersionT newMax) {
|
||||
assert(newMax >= InternalVersionT::zero);
|
||||
int index = n->parentsIndex;
|
||||
n = n->parent;
|
||||
if (n == nullptr) {
|
||||
@@ -4267,7 +4258,7 @@ checkMaxVersion(Node *root, Node *node, InternalVersionT oldestVersion,
|
||||
bool success = true;
|
||||
|
||||
if (node->partialKeyLen > 0) {
|
||||
fprintf(stderr, "Root cannot have a partial key");
|
||||
fprintf(stderr, "Root cannot have a partial key\n");
|
||||
success = false;
|
||||
}
|
||||
checkParentPointers(node, success);
|
||||
|
||||
@@ -164,6 +164,63 @@ double toSeconds(timeval t) {
|
||||
return double(t.tv_sec) + double(t.tv_usec) * 1e-6;
|
||||
}
|
||||
|
||||
#include <linux/perf_event.h>
|
||||
#include <stdio.h>
|
||||
#include <stdlib.h>
|
||||
#include <string.h>
|
||||
#include <sys/ioctl.h>
|
||||
#include <sys/syscall.h>
|
||||
#include <sys/types.h>
|
||||
#include <unistd.h>
|
||||
|
||||
#ifdef __linux__
|
||||
struct PerfCounter {
|
||||
explicit PerfCounter(int event) {
|
||||
struct perf_event_attr pe;
|
||||
|
||||
memset(&pe, 0, sizeof(pe));
|
||||
pe.type = PERF_TYPE_HARDWARE;
|
||||
pe.size = sizeof(pe);
|
||||
pe.config = event;
|
||||
pe.inherit = 1;
|
||||
pe.exclude_kernel = 1;
|
||||
pe.exclude_hv = 1;
|
||||
|
||||
fd = perf_event_open(&pe, 0, -1, -1, 0);
|
||||
if (fd == -1) {
|
||||
fprintf(stderr, "Error opening leader %llx\n", pe.config);
|
||||
exit(EXIT_FAILURE);
|
||||
}
|
||||
}
|
||||
|
||||
int64_t total() {
|
||||
int64_t count;
|
||||
if (read(fd, &count, sizeof(count)) != sizeof(count)) {
|
||||
perror("read instructions from perf");
|
||||
abort();
|
||||
}
|
||||
return count;
|
||||
}
|
||||
|
||||
~PerfCounter() { close(fd); }
|
||||
|
||||
private:
|
||||
int fd;
|
||||
static long perf_event_open(struct perf_event_attr *hw_event, pid_t pid,
|
||||
int cpu, int group_fd, unsigned long flags) {
|
||||
int ret;
|
||||
|
||||
ret = syscall(SYS_perf_event_open, hw_event, pid, cpu, group_fd, flags);
|
||||
return ret;
|
||||
}
|
||||
};
|
||||
#else
|
||||
struct PerfCounter {
|
||||
explicit PerPerfCounter(int) {}
|
||||
int64_t total() { return 0; }
|
||||
};
|
||||
#endif
|
||||
|
||||
int main(int argc, char **argv) {
|
||||
if (argc != 3) {
|
||||
goto fail;
|
||||
@@ -176,6 +233,8 @@ int main(int argc, char **argv) {
|
||||
int metricsCount;
|
||||
cs.getMetricsV1(&metrics, &metricsCount);
|
||||
|
||||
PerfCounter instructions{PERF_COUNT_HW_INSTRUCTIONS};
|
||||
PerfCounter cycles{PERF_COUNT_HW_CPU_CYCLES};
|
||||
auto w = std::thread{workload, &cs};
|
||||
|
||||
for (;;) {
|
||||
@@ -203,6 +262,16 @@ int main(int argc, char **argv) {
|
||||
"transactions_total ";
|
||||
body += std::to_string(transactions.load(std::memory_order_relaxed));
|
||||
body += "\n";
|
||||
body += "# HELP instructions_total Total number of instructions\n"
|
||||
"# TYPE instructions_total counter\n"
|
||||
"instructions_total ";
|
||||
body += std::to_string(instructions.total());
|
||||
body += "\n";
|
||||
body += "# HELP cycles_total Total number of cycles\n"
|
||||
"# TYPE cycles_total counter\n"
|
||||
"cycles_total ";
|
||||
body += std::to_string(cycles.total());
|
||||
body += "\n";
|
||||
|
||||
for (int i = 0; i < metricsCount; ++i) {
|
||||
body += "# HELP ";
|
||||
|
||||
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