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core/txpool: fix typo (#29031)
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@ -371,7 +371,7 @@ func (p *BlobPool) Init(gasTip uint64, head *types.Header, reserve txpool.Addres
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}
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}
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p.head, p.state = head, state
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p.head, p.state = head, state
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// Index all transactions on disk and delete anything inprocessable
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// Index all transactions on disk and delete anything unprocessable
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var fails []uint64
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var fails []uint64
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index := func(id uint64, size uint32, blob []byte) {
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index := func(id uint64, size uint32, blob []byte) {
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if p.parseTransaction(id, size, blob) != nil {
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if p.parseTransaction(id, size, blob) != nil {
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@ -185,7 +185,7 @@ func makeTx(nonce uint64, gasTipCap uint64, gasFeeCap uint64, blobFeeCap uint64,
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return types.MustSignNewTx(key, types.LatestSigner(testChainConfig), blobtx)
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return types.MustSignNewTx(key, types.LatestSigner(testChainConfig), blobtx)
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}
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}
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// makeUnsignedTx is a utility method to construct a random blob tranasaction
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// makeUnsignedTx is a utility method to construct a random blob transaction
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// without signing it.
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// without signing it.
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func makeUnsignedTx(nonce uint64, gasTipCap uint64, gasFeeCap uint64, blobFeeCap uint64) *types.BlobTx {
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func makeUnsignedTx(nonce uint64, gasTipCap uint64, gasFeeCap uint64, blobFeeCap uint64) *types.BlobTx {
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return &types.BlobTx{
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return &types.BlobTx{
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@ -391,7 +391,7 @@ func TestOpenDrops(t *testing.T) {
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id, _ := store.Put(blob)
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id, _ := store.Put(blob)
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filled[id] = struct{}{}
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filled[id] = struct{}{}
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}
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}
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// Insert a sequence of transactions with partially passed nonces to veirfy
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// Insert a sequence of transactions with partially passed nonces to verify
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// that the included part of the set will get dropped (case 4).
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// that the included part of the set will get dropped (case 4).
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var (
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var (
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overlapper, _ = crypto.GenerateKey()
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overlapper, _ = crypto.GenerateKey()
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@ -30,7 +30,7 @@ import (
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// transaction from each account to determine which account to evict from.
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// transaction from each account to determine which account to evict from.
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//
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//
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// The heap internally tracks a slice of cheapest transactions from each account
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// The heap internally tracks a slice of cheapest transactions from each account
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// and a mapping from addresses to indices for direct removals/udates.
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// and a mapping from addresses to indices for direct removals/updates.
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//
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//
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// The goal of the heap is to decide which account has the worst bottleneck to
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// The goal of the heap is to decide which account has the worst bottleneck to
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// evict transactions from.
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// evict transactions from.
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@ -64,7 +64,7 @@ func BenchmarkDynamicFeeJumpCalculation(b *testing.B) {
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// Benchmarks how many priority recalculations can be done.
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// Benchmarks how many priority recalculations can be done.
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func BenchmarkPriorityCalculation(b *testing.B) {
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func BenchmarkPriorityCalculation(b *testing.B) {
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// The basefee and blob fee is constant for all transactions across a block,
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// The basefee and blob fee is constant for all transactions across a block,
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// so we can assume theit absolute jump counts can be pre-computed.
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// so we can assume their absolute jump counts can be pre-computed.
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basefee := uint256.NewInt(17_200_000_000) // 17.2 Gwei is the 22.03.2023 zero-emission basefee, random number
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basefee := uint256.NewInt(17_200_000_000) // 17.2 Gwei is the 22.03.2023 zero-emission basefee, random number
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blobfee := uint256.NewInt(123_456_789_000) // Completely random, no idea what this will be
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blobfee := uint256.NewInt(123_456_789_000) // Completely random, no idea what this will be
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