Move newly test-only code
This commit is contained in:
22
Bench.cpp
22
Bench.cpp
@@ -606,19 +606,19 @@ constexpr int kOpsPerTx = 100;
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constexpr int kPrefixLen = 0;
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std::span<const uint8_t> makeKey(Arena &arena, int index) {
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auto result =
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std::span<uint8_t>{new (arena) uint8_t[4 + kPrefixLen], 4 + kPrefixLen};
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index = __builtin_bswap32(index);
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memset(result.data(), 0, kPrefixLen);
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memcpy(result.data() + kPrefixLen, &index, 4);
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std::span<const uint8_t> makeKey(Arena &arena, int64_t index) {
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// auto result =
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// std::span<uint8_t>{new (arena) uint8_t[32], 32};
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// for (int i = 0; i < 32; ++i) {
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// result[i] = index & (1 << (31 - i)) ? '1' : '0';
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// }
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// std::span<uint8_t>{new (arena) uint8_t[4 + kPrefixLen], 4 +
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// kPrefixLen};
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// index = __builtin_bswap32(index);
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// memset(result.data(), 0, kPrefixLen);
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// memcpy(result.data() + kPrefixLen, &index, 4);
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auto result = std::span<uint8_t>{new (arena) uint8_t[64], 64};
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for (int i = 0; i < 64; ++i) {
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result[i] = index & (1 << (64 - 1 - i)) ? '1' : '0';
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}
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return result;
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}
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208
ConflictSet.cpp
208
ConflictSet.cpp
@@ -551,115 +551,10 @@ struct SearchStepWise {
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}
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};
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struct FirstGeqStepwise {
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Node *n;
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std::span<const uint8_t> remaining;
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int cmp;
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enum Phase {
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Init,
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// Being in this phase implies that the key matches the search path exactly
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// up to this point
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Search,
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DownLeftSpine
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};
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Phase phase;
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FirstGeqStepwise(Node *n, std::span<const uint8_t> remaining)
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: n(n), remaining(remaining), phase(Init) {}
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// Not being done implies that n is not the firstGeq
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bool step() {
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switch (phase) {
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case Search:
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if (remaining.size() == 0) {
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int c = getChildGeq(n, 0);
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assert(c >= 0);
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n = getChildExists(n, c);
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return downLeftSpine();
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} else {
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int c = getChildGeq(n, remaining[0]);
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if (c == remaining[0]) {
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n = getChildExists(n, c);
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remaining = remaining.subspan(1, remaining.size() - 1);
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} else {
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if (c >= 0) {
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n = getChildExists(n, c);
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return downLeftSpine();
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} else {
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n = nextSibling(n);
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return downLeftSpine();
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}
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}
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}
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if (n->partialKeyLen > 0) {
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int commonLen = std::min<int>(n->partialKeyLen, remaining.size());
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for (int i = 0; i < commonLen; ++i) {
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auto c = n->partialKey[i] <=> remaining[i];
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if (c == 0) {
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continue;
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}
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if (c > 0) {
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return downLeftSpine();
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} else {
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n = nextSibling(n);
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return downLeftSpine();
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}
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}
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if (commonLen == n->partialKeyLen) {
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// partial key matches
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remaining =
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remaining.subspan(commonLen, remaining.size() - commonLen);
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} else if (n->partialKeyLen > int(remaining.size())) {
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// n is the first physical node greater than remaining, and there's no
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// eq node
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return downLeftSpine();
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}
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}
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[[fallthrough]];
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case Init:
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phase = Search;
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if (remaining.size() == 0 && n->entryPresent) {
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cmp = 0;
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return true;
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}
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return false;
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case DownLeftSpine:
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int c = getChildGeq(n, 0);
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assert(c >= 0);
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n = getChildExists(n, c);
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if (n->entryPresent) {
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cmp = 1;
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return true;
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}
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return false;
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}
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__builtin_unreachable(); // GCOVR_EXCL_LINE
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}
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bool downLeftSpine() {
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phase = DownLeftSpine;
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if (n == nullptr || n->entryPresent) {
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cmp = 1;
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return true;
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}
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return step();
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}
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};
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Iterator firstGeq(Node *n, const std::span<const uint8_t> key) {
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FirstGeqStepwise stepwise{n, key};
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while (!stepwise.step())
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;
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return {stepwise.n, stepwise.cmp};
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}
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namespace {
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std::string getSearchPathPrintable(Node *n);
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}
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// TODO rewrite in terms of FirstGeqStepwise?
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//
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// Logically this is the same as performing firstGeq and then checking against
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// point or range version according to cmp, but this version short circuits as
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// soon as it can prove that there's no conflict.
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@@ -1733,6 +1628,109 @@ void checkParentPointers(Node *node, bool &success) {
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}
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}
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struct FirstGeqStepwise {
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Node *n;
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std::span<const uint8_t> remaining;
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int cmp;
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enum Phase {
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Init,
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// Being in this phase implies that the key matches the search path exactly
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// up to this point
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Search,
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DownLeftSpine
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};
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Phase phase;
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FirstGeqStepwise(Node *n, std::span<const uint8_t> remaining)
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: n(n), remaining(remaining), phase(Init) {}
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// Not being done implies that n is not the firstGeq
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bool step() {
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switch (phase) {
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case Search:
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if (remaining.size() == 0) {
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int c = getChildGeq(n, 0);
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assert(c >= 0);
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n = getChildExists(n, c);
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return downLeftSpine();
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} else {
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int c = getChildGeq(n, remaining[0]);
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if (c == remaining[0]) {
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n = getChildExists(n, c);
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remaining = remaining.subspan(1, remaining.size() - 1);
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} else {
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if (c >= 0) {
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n = getChildExists(n, c);
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return downLeftSpine();
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} else {
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n = nextSibling(n);
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return downLeftSpine();
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}
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}
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}
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if (n->partialKeyLen > 0) {
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int commonLen = std::min<int>(n->partialKeyLen, remaining.size());
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for (int i = 0; i < commonLen; ++i) {
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auto c = n->partialKey[i] <=> remaining[i];
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if (c == 0) {
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continue;
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}
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if (c > 0) {
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return downLeftSpine();
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} else {
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n = nextSibling(n);
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return downLeftSpine();
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}
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}
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if (commonLen == n->partialKeyLen) {
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// partial key matches
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remaining =
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remaining.subspan(commonLen, remaining.size() - commonLen);
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} else if (n->partialKeyLen > int(remaining.size())) {
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// n is the first physical node greater than remaining, and there's no
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// eq node
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return downLeftSpine();
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}
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}
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[[fallthrough]];
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case Init:
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phase = Search;
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if (remaining.size() == 0 && n->entryPresent) {
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cmp = 0;
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return true;
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}
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return false;
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case DownLeftSpine:
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int c = getChildGeq(n, 0);
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assert(c >= 0);
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n = getChildExists(n, c);
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if (n->entryPresent) {
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cmp = 1;
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return true;
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}
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return false;
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}
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__builtin_unreachable(); // GCOVR_EXCL_LINE
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}
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bool downLeftSpine() {
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phase = DownLeftSpine;
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if (n == nullptr || n->entryPresent) {
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cmp = 1;
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return true;
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}
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return step();
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}
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};
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Iterator firstGeq(Node *n, const std::span<const uint8_t> key) {
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FirstGeqStepwise stepwise{n, key};
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while (!stepwise.step())
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;
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return {stepwise.n, stepwise.cmp};
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}
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Iterator firstGeq(Node *n, std::string_view key) {
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return firstGeq(
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n, std::span<const uint8_t>((const uint8_t *)key.data(), key.size()));
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