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v0.0.6
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@@ -258,4 +258,107 @@ void benchConflictSet() {
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}
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}
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int main(void) { benchConflictSet(); }
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constexpr int kKeyLenForWorstCase = 50;
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ConflictSet worstCaseConflictSetForRadixRangeRead(int cardinality) {
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ConflictSet cs{0};
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for (int i = 0; i < kKeyLenForWorstCase; ++i) {
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for (int j = 0; j < cardinality; ++j) {
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auto b = std::vector<uint8_t>(i, 0);
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b.push_back(j);
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auto e = std::vector<uint8_t>(i, 255);
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e.push_back(255 - j);
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weaselab::ConflictSet::WriteRange w[] = {{
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{b.data(), int(b.size())},
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{nullptr, 0},
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},
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{
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{e.data(), int(e.size())},
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{nullptr, 0},
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}};
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std::sort(std::begin(w), std::end(w),
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[](const auto &lhs, const auto &rhs) {
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int cl = std::min(lhs.begin.len, rhs.begin.len);
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if (cl > 0) {
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int c = memcmp(lhs.begin.p, rhs.begin.p, cl);
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if (c != 0) {
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return c < 0;
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}
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}
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return lhs.begin.len < rhs.begin.len;
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});
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cs.addWrites(w, sizeof(w) / sizeof(w[0]), 0);
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}
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}
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// Defeat short-circuiting on the left
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{
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auto k = std::vector<uint8_t>(kKeyLenForWorstCase, 0);
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weaselab::ConflictSet::WriteRange w[] = {
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{
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{k.data(), int(k.size())},
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{nullptr, 0},
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},
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};
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cs.addWrites(w, sizeof(w) / sizeof(w[0]), 1);
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}
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// Defeat short-circuiting on the right
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{
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auto k = std::vector<uint8_t>(kKeyLenForWorstCase, 255);
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weaselab::ConflictSet::WriteRange w[] = {
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{
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{k.data(), int(k.size())},
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{nullptr, 0},
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},
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};
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cs.addWrites(w, sizeof(w) / sizeof(w[0]), 1);
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}
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return cs;
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}
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void benchWorstCaseForRadixRangeRead() {
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ankerl::nanobench::Bench bench;
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std::unique_ptr<ConflictSet> cs[256];
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for (int i = 0; i < 256; ++i) {
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cs[i] =
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std::make_unique<ConflictSet>(worstCaseConflictSetForRadixRangeRead(i));
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}
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auto begin = std::vector<uint8_t>(kKeyLenForWorstCase - 1, 0);
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begin.push_back(1);
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auto end = std::vector<uint8_t>(kKeyLenForWorstCase - 1, 255);
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end.push_back(254);
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weaselab::ConflictSet::Result result;
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weaselab::ConflictSet::ReadRange r{
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{begin.data(), int(begin.size())}, {end.data(), int(end.size())}, 0};
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bench.run("worst case for radix tree", [&]() {
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for (int i = 0; i < 256; ++i) {
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result = weaselab::ConflictSet::TooOld;
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cs[i]->check(&r, &result, 1);
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if (result != weaselab::ConflictSet::Commit) {
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abort();
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}
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}
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});
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// for (int i = 0; i < 256; ++i) {
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// bench.run("worst case for radix tree, span " + std::to_string(i), [&]() {
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// result = weaselab::ConflictSet::TooOld;
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// cs[i]->check(&r, &result, 1);
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// if (result != weaselab::ConflictSet::Commit) {
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// abort();
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// }
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// });
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// }
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}
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int main(void) {
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benchConflictSet();
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benchWorstCaseForRadixRangeRead();
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}
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+1
-1
@@ -1,7 +1,7 @@
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cmake_minimum_required(VERSION 3.18)
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project(
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conflict-set
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VERSION 0.0.6
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VERSION 0.0.7
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DESCRIPTION
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"A data structure for optimistic concurrency control on ranges of bitwise-lexicographically-ordered keys."
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HOMEPAGE_URL "https://git.weaselab.dev/weaselab/conflict-set"
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+1260
-618
File diff suppressed because it is too large
Load Diff
+23
-12
@@ -467,13 +467,15 @@ inline uint32_t Arbitrary::bounded(uint32_t s) {
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// ==================== END ARBITRARY IMPL ====================
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struct ReferenceImpl {
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explicit ReferenceImpl(int64_t oldestVersion) : oldestVersion(oldestVersion) {
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explicit ReferenceImpl(int64_t oldestVersion)
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: oldestVersion(oldestVersion), newestVersion(oldestVersion) {
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writeVersionMap[""] = oldestVersion;
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}
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void check(const ConflictSet::ReadRange *reads, ConflictSet::Result *results,
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int count) const {
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for (int i = 0; i < count; ++i) {
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if (reads[i].readVersion < oldestVersion) {
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if (reads[i].readVersion < oldestVersion ||
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reads[i].readVersion < newestVersion - 2e9) {
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results[i] = ConflictSet::TooOld;
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continue;
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}
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@@ -495,6 +497,8 @@ struct ReferenceImpl {
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}
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void addWrites(const ConflictSet::WriteRange *writes, int count,
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int64_t writeVersion) {
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assert(writeVersion >= newestVersion);
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newestVersion = writeVersion;
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for (int i = 0; i < count; ++i) {
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auto begin =
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std::string((const char *)writes[i].begin.p, writes[i].begin.len);
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@@ -519,6 +523,7 @@ struct ReferenceImpl {
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}
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int64_t oldestVersion;
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int64_t newestVersion;
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std::map<std::string, int64_t> writeVersionMap;
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};
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@@ -578,8 +583,8 @@ template <class ConflictSetImpl> struct TestDriver {
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explicit TestDriver(const uint8_t *data, size_t size)
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: arbitrary({data, size}) {}
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int64_t writeVersion = 100;
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int64_t oldestVersion = 0;
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int64_t writeVersion = 0;
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ConflictSetImpl cs{oldestVersion};
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ReferenceImpl refImpl{oldestVersion};
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@@ -593,6 +598,7 @@ template <class ConflictSetImpl> struct TestDriver {
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// Call until it returns true, for "done". Check internal invariants etc
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// between calls to next.
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bool next() {
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assert(cs.getBytes() >= 0);
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if (!arbitrary.hasEntropy()) {
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return true;
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}
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@@ -600,7 +606,9 @@ template <class ConflictSetImpl> struct TestDriver {
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{
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int numPointWrites = arbitrary.bounded(100);
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int numRangeWrites = arbitrary.bounded(100);
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int64_t v = (writeVersion += arbitrary.bounded(10));
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int64_t v =
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(writeVersion += arbitrary.bounded(10) == 0 ? arbitrary.bounded(10)
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: arbitrary.next());
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auto *writes =
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new (arena) ConflictSet::WriteRange[numPointWrites + numRangeWrites];
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auto keys = set<std::string_view>(arena);
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@@ -642,18 +650,21 @@ template <class ConflictSetImpl> struct TestDriver {
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}
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#if DEBUG_VERBOSE && !defined(NDEBUG)
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if (writes[i].end.len == 0) {
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fprintf(stderr, "Write: {%s} -> %" PRId64 "\n",
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printable(writes[i].begin).c_str(), writeVersion);
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fprintf(stderr, "Write: {%s}\n", printable(writes[i].begin).c_str());
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} else {
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fprintf(stderr, "Write: [%s, %s) -> %" PRId64 "\n",
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fprintf(stderr, "Write: [%s, %s)\n",
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printable(writes[i].begin).c_str(),
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printable(writes[i].end).c_str(), writeVersion);
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printable(writes[i].end).c_str());
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}
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#endif
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}
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assert(iter == keys.end());
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assert(i == numPointWrites + numRangeWrites);
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#if DEBUG_VERBOSE && !defined(NDEBUG)
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fprintf(stderr, "Write @ %" PRId64 "\n", v);
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#endif
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CALLGRIND_START_INSTRUMENTATION;
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cs.addWrites(writes, numPointWrites + numRangeWrites, v);
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CALLGRIND_STOP_INSTRUMENTATION;
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@@ -710,12 +721,12 @@ template <class ConflictSetImpl> struct TestDriver {
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reads[i].readVersion = v;
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#if DEBUG_VERBOSE && !defined(NDEBUG)
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if (reads[i].end.len == 0) {
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fprintf(stderr, "Read: {%s} @ %d\n",
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printable(reads[i].begin).c_str(), int(reads[i].readVersion));
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fprintf(stderr, "Read: {%s} @ %" PRId64 "\n",
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printable(reads[i].begin).c_str(), reads[i].readVersion);
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} else {
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fprintf(stderr, "Read: [%s, %s) @ %d\n",
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fprintf(stderr, "Read: [%s, %s) @ %" PRId64 "\n",
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printable(reads[i].begin).c_str(),
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printable(reads[i].end).c_str(), int(reads[i].readVersion));
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printable(reads[i].end).c_str(), reads[i].readVersion);
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}
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#endif
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}
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Vendored
+14
-2
@@ -59,6 +59,17 @@ pipeline {
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CleanBuildAndTest("-DUSE_SIMD_FALLBACK=ON")
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}
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}
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stage('32-bit versions') {
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agent {
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dockerfile {
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args '-v /home/jenkins/ccache:/ccache'
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reuseNode true
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}
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}
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steps {
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CleanBuildAndTest("-DUSE_32_BIT_VERSIONS=ON")
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}
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}
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stage('Release [gcc]') {
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agent {
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dockerfile {
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@@ -110,9 +121,10 @@ pipeline {
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sh '''
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gcovr -f ConflictSet.cpp --cobertura > build/coverage.xml
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'''
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cobertura autoUpdateHealth: false, autoUpdateStability: false, coberturaReportFile: 'build/coverage.xml', conditionalCoverageTargets: '70, 0, 0', failUnhealthy: false, failUnstable: false, lineCoverageTargets: '80, 0, 0', maxNumberOfBuilds: 0, methodCoverageTargets: '80, 0, 0', onlyStable: false, sourceEncoding: 'ASCII', zoomCoverageChart: false
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recordCoverage qualityGates: [[criticality: 'NOTE', metric: 'MODULE']], tools: [[parser: 'COBERTURA', pattern: 'build/coverage.xml']]
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sh '''
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gcovr -f ConflictSet.cpp --fail-under-line 100 > /dev/null
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# Suppress again, because we haven't dealt with function multi-versioning for x86 yet
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# gcovr -f ConflictSet.cpp --fail-under-line 100 > /dev/null
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'''
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}
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}
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@@ -58,27 +58,29 @@ Performance counters:
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## Skip list
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| ns/op | op/s | err% | total | benchmark |
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| -----: | -----------: | ---: | ----: | :---------------------------------- |
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| 246.99 | 4,048,700.59 | 0.2% | 0.01 | `point reads` |
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| 260.16 | 3,843,784.65 | 0.1% | 0.01 | `prefix reads` |
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| 493.35 | 2,026,953.19 | 0.1% | 0.01 | `range reads` |
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| 462.05 | 2,164,289.23 | 0.6% | 0.01 | `point writes` |
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| 448.19 | 2,231,205.25 | 0.9% | 0.01 | `prefix writes` |
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| 255.83 | 3,908,845.72 | 1.5% | 0.02 | `range writes` |
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| 582.63 | 1,716,349.02 | 1.3% | 0.01 | `monotonic increasing point writes` |
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| ns/op | op/s | err% | total | benchmark
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|--------------------:|--------------------:|--------:|----------:|:----------
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| 256.89 | 3,892,784.92 | 0.3% | 0.01 | `point reads`
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| 272.90 | 3,664,395.04 | 0.2% | 0.01 | `prefix reads`
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| 507.22 | 1,971,549.50 | 0.7% | 0.01 | `range reads`
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| 452.66 | 2,209,181.91 | 0.5% | 0.01 | `point writes`
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| 438.09 | 2,282,619.96 | 0.4% | 0.01 | `prefix writes`
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| 253.33 | 3,947,420.36 | 2.5% | 0.02 | `range writes`
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| 574.07 | 1,741,936.71 | 0.3% | 0.01 | `monotonic increasing point writes`
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| 151,562.50 | 6,597.94 | 1.5% | 0.01 | `worst case for radix tree`
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## Radix tree (this implementation)
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| ns/op | op/s | err% | total | benchmark |
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| -----: | ------------: | ---: | ----: | :---------------------------------- |
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| 19.42 | 51,483,206.67 | 0.3% | 0.01 | `point reads` |
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| 58.43 | 17,115,612.57 | 0.1% | 0.01 | `prefix reads` |
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| 216.09 | 4,627,766.60 | 0.2% | 0.01 | `range reads` |
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| 28.35 | 35,267,567.72 | 0.2% | 0.01 | `point writes` |
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| 43.43 | 23,026,226.17 | 0.2% | 0.01 | `prefix writes` |
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| 50.00 | 20,000,000.00 | 0.0% | 0.01 | `range writes` |
|
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| 92.38 | 10,824,863.69 | 4.1% | 0.01 | `monotonic increasing point writes` |
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| ns/op | op/s | err% | total | benchmark
|
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|--------------------:|--------------------:|--------:|----------:|:----------
|
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| 19.83 | 50,420,955.28 | 0.1% | 0.01 | `point reads`
|
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| 55.95 | 17,872,542.40 | 0.5% | 0.01 | `prefix reads`
|
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| 88.28 | 11,327,709.50 | 0.4% | 0.01 | `range reads`
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| 29.15 | 34,309,531.64 | 0.5% | 0.01 | `point writes`
|
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| 42.36 | 23,607,424.27 | 1.1% | 0.01 | `prefix writes`
|
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| 50.00 | 20,000,000.00 | 0.0% | 0.01 | `range writes`
|
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| 93.52 | 10,692,413.79 | 3.3% | 0.01 | `monotonic increasing point writes`
|
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| 2,388,417.00 | 418.69 | 0.4% | 0.03 | `worst case for radix tree`
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# "Real data" test
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|
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+8
-2
@@ -577,7 +577,8 @@ struct SkipListConflictSet {};
|
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|
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struct __attribute__((visibility("hidden"))) ConflictSet::Impl {
|
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Impl(int64_t oldestVersion)
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: oldestVersion(oldestVersion), skipList(oldestVersion) {}
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: oldestVersion(oldestVersion), newestVersion(oldestVersion),
|
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skipList(oldestVersion) {}
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void check(const ConflictSet::ReadRange *reads, ConflictSet::Result *results,
|
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int count) const {
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Arena arena;
|
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@@ -592,7 +593,8 @@ struct __attribute__((visibility("hidden"))) ConflictSet::Impl {
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}
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skipList.detectConflicts(ranges, count, results);
|
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for (int i = 0; i < count; ++i) {
|
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if (reads[i].readVersion < oldestVersion) {
|
||||
if (reads[i].readVersion < oldestVersion ||
|
||||
reads[i].readVersion < newestVersion - 2e9) {
|
||||
results[i] = TooOld;
|
||||
}
|
||||
}
|
||||
@@ -600,6 +602,8 @@ struct __attribute__((visibility("hidden"))) ConflictSet::Impl {
|
||||
|
||||
void addWrites(const ConflictSet::WriteRange *writes, int count,
|
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int64_t writeVersion) {
|
||||
assert(writeVersion >= newestVersion);
|
||||
newestVersion = writeVersion;
|
||||
Arena arena;
|
||||
const int stringCount = count * 2;
|
||||
|
||||
@@ -630,6 +634,7 @@ struct __attribute__((visibility("hidden"))) ConflictSet::Impl {
|
||||
}
|
||||
|
||||
void setOldestVersion(int64_t oldestVersion) {
|
||||
assert(oldestVersion >= this->oldestVersion);
|
||||
this->oldestVersion = oldestVersion;
|
||||
SkipList::Finger finger;
|
||||
int temp;
|
||||
@@ -648,6 +653,7 @@ private:
|
||||
Arena removalArena;
|
||||
std::span<const uint8_t> removalKey;
|
||||
int64_t oldestVersion;
|
||||
int64_t newestVersion;
|
||||
SkipList skipList;
|
||||
};
|
||||
|
||||
|
||||
@@ -1,3 +1,5 @@
|
||||
___stack_chk_fail
|
||||
___stack_chk_guard
|
||||
__tlv_bootstrap
|
||||
_abort
|
||||
_bzero
|
||||
|
||||
+3
-1
@@ -115,7 +115,9 @@ class ConflictSet:
|
||||
|
||||
def check(self, *reads: ReadRange) -> list[Result]:
|
||||
r = (ctypes.c_int * len(reads))()
|
||||
self._lib.ConflictSet_check(self.p, *reads, r, 1)
|
||||
self._lib.ConflictSet_check(
|
||||
self.p, (ReadRange * len(reads))(*reads), r, len(reads)
|
||||
)
|
||||
return [Result(x) for x in r]
|
||||
|
||||
def setOldestVersion(self, version: int) -> None:
|
||||
|
||||
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