296 lines
11 KiB
Nim
296 lines
11 KiB
Nim
# Nimbus
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# Copyright (c) 2018 Status Research & Development GmbH
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# Licensed under either of
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# * Apache License, version 2.0, ([LICENSE-APACHE](LICENSE-APACHE) or http://www.apache.org/licenses/LICENSE-2.0)
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# * MIT license ([LICENSE-MIT](LICENSE-MIT) or http://opensource.org/licenses/MIT)
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# at your option. This file may not be copied, modified, or distributed except according to those terms.
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import
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os, macros, json, strformat, strutils, parseutils, ospaths, tables,
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byteutils, eth/[common, keys, rlp], ranges/typedranges,
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../nimbus/[vm_state, constants],
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../nimbus/db/[db_chain, state_db],
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../nimbus/[transaction, utils],
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../nimbus/vm/interpreter/[gas_costs, vm_forks],
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../tests/test_generalstate_failing
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const
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# from https://ethereum-tests.readthedocs.io/en/latest/test_types/state_tests.html
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forkNames* = {
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FkFrontier: "Frontier",
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FkHomestead: "Homestead",
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FkTangerine: "EIP150",
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FkSpurious: "EIP158",
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FkByzantium: "Byzantium",
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}.toTable
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supportedForks* = {FkFrontier, FkHomestead, FkTangerine, FkSpurious}
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type
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Status* {.pure.} = enum OK, Fail, Skip
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func slowTest*(folder: string, name: string): bool =
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result =
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(folder == "vmPerformance" and "loop" in name) or
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folder == "stQuadraticComplexityTest" or
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name in @["randomStatetest352.json", "randomStatetest1.json",
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"randomStatetest32.json", "randomStatetest347.json",
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"randomStatetest393.json", "randomStatetest626.json",
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"CALLCODE_Bounds.json", "DELEGATECALL_Bounds3.json",
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"CALLCODE_Bounds4.json", "CALL_Bounds.json",
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"DELEGATECALL_Bounds2.json", "CALL_Bounds3.json",
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"CALLCODE_Bounds2.json", "CALLCODE_Bounds3.json",
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"DELEGATECALL_Bounds.json", "CALL_Bounds2a.json",
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"CALL_Bounds2.json",
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"CallToNameRegistratorMemOOGAndInsufficientBalance.json",
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"CallToNameRegistratorTooMuchMemory0.json"]
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func failIn32Bits(folder, name: string): bool =
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return name in @[
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"Call10.json",
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"randomStatetest94.json",
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"calldatacopy_dejavu.json",
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"calldatacopy_dejavu2.json",
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"codecopy_dejavu.json",
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"codecopy_dejavu2.json",
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"extcodecopy_dejavu.json",
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"log1_dejavu.json",
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"log2_dejavu.json",
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"log3_dejavu.json",
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"log4_dejavu.json",
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"mload_dejavu.json",
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"mstore_dejavu.json",
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"mstroe8_dejavu.json",
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"sha3_dejavu.json",
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"HighGasLimit.json",
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"OverflowGasRequire2.json",
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"RevertInCreateInInit.json",
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"FailedCreateRevertsDeletion.json",
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"Callcode1024BalanceTooLow.json",
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# TODO: obvious theme; check returndatasize/returndatacopy
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"call_ecrec_success_empty_then_returndatasize.json",
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"call_then_call_value_fail_then_returndatasize.json",
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"returndatacopy_after_failing_callcode.json",
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"returndatacopy_after_failing_delegatecall.json",
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"returndatacopy_after_failing_staticcall.json",
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"returndatacopy_after_revert_in_staticcall.json",
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"returndatacopy_after_successful_callcode.json",
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"returndatacopy_after_successful_delegatecall.json",
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"returndatacopy_after_successful_staticcall.json",
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"returndatacopy_following_call.json",
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"returndatacopy_following_failing_call.json",
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"returndatacopy_following_revert.json",
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"returndatacopy_following_too_big_transfer.json",
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"returndatacopy_initial.json",
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"returndatacopy_initial_256.json",
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"returndatacopy_initial_big_sum.json",
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"returndatacopy_overrun.json",
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"returndatasize_after_failing_callcode.json",
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"returndatasize_after_failing_staticcall.json",
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"returndatasize_after_oog_after_deeper.json",
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"returndatasize_after_successful_callcode.json",
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"returndatasize_after_successful_delegatecall.json",
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"returndatasize_after_successful_staticcall.json",
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"returndatasize_bug.json",
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"returndatasize_initial.json",
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"returndatasize_initial_zero_read.json",
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"call_then_create_successful_then_returndatasize.json",
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"call_outsize_then_create_successful_then_returndatasize.json",
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"returndatacopy_following_create.json",
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"returndatacopy_following_revert_in_create.json",
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"returndatacopy_following_successful_create.json",
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"RevertOpcodeInCreateReturns.json",
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"create_callprecompile_returndatasize.json",
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"returndatacopy_0_0_following_successful_create.json",
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"returndatasize_following_successful_create.json"
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]
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func allowedFailInCurrentBuild(folder, name: string): bool =
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when sizeof(int) == 4:
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if failIn32Bits(folder, name):
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return true
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return allowedFailingGeneralStateTest(folder, name)
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func validTest*(folder: string, name: string): bool =
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# we skip tests that are slow or expected to fail for now
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result =
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not slowTest(folder, name) and
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not allowedFailInCurrentBuild(folder, name)
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proc lacksSupportedForks*(fixtures: JsonNode): bool =
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# XXX: Until Nimbus supports Byzantine or newer forks, as opposed
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# to Homestead, ~1k of ~2.5k GeneralStateTests won't work.
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var fixture: JsonNode
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for label, child in fixtures:
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fixture = child
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break
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# not all fixtures make a distinction between forks, so default to accepting
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# them all, until we find the ones that specify forks in their "post" section
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result = false
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if fixture.kind == JObject and fixture.hasKey("transaction") and fixture.hasKey("post"):
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result = true
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for fork in supportedForks:
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if fixture["post"].hasKey(forkNames[fork]):
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result = false
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break
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macro jsonTest*(s: static[string], handler: untyped): untyped =
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let
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testStatusIMPL = ident("testStatusIMPL")
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# workaround for strformat in quote do: https://github.com/nim-lang/Nim/issues/8220
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symbol = newIdentNode"symbol"
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final = newIdentNode"final"
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name = newIdentNode"name"
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formatted = newStrLitNode"{symbol[final]} {name:<64}{$final}{'\n'}"
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result = quote:
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var filenames: seq[(string, string, string)] = @[]
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var status = initOrderedTable[string, OrderedTable[string, Status]]()
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for filename in walkDirRec("tests" / "fixtures" / `s`):
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if not filename.endsWith(".json"):
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continue
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var (folder, name) = filename.splitPath()
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let last = folder.splitPath().tail
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if not status.hasKey(last):
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status[last] = initOrderedTable[string, Status]()
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status[last][name] = Status.Skip
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if last.validTest(name):
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filenames.add((filename, last, name))
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for child in filenames:
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let (filename, folder, name) = child
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# we set this here because exceptions might be raised in the handler:
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status[folder][name] = Status.Fail
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let fixtures = parseJSON(readFile(filename))
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if fixtures.lacksSupportedForks:
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status[folder][name] = Status.Skip
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continue
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test filename:
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echo folder / name
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`handler`(fixtures, `testStatusIMPL`)
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if `testStatusIMPL` == OK:
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status[folder][name] = Status.OK
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status.sort do (a: (string, OrderedTable[string, Status]),
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b: (string, OrderedTable[string, Status])) -> int: cmp(a[0], b[0])
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let `symbol`: array[Status, string] = ["+", "-", " "]
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var raw = ""
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var okCountTotal = 0
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var failCountTotal = 0
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var skipCountTotal = 0
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raw.add(`s` & "\n")
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raw.add("===\n")
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for folder, statuses in status:
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raw.add("## " & folder & "\n")
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raw.add("```diff\n")
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var sortedStatuses = statuses
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sortedStatuses.sort do (a: (string, Status), b: (string, Status)) -> int:
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cmp(a[0], b[0])
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var okCount = 0
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var failCount = 0
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var skipCount = 0
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for `name`, `final` in sortedStatuses:
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raw.add(&`formatted`)
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case `final`:
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of Status.OK: okCount += 1
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of Status.Fail: failCount += 1
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of Status.Skip: skipCount += 1
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raw.add("```\n")
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let sum = okCount + failCount + skipCount
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okCountTotal += okCount
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failCountTotal += failCount
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skipCountTotal += skipCount
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raw.add("OK: " & $okCount & "/" & $sum & " Fail: " & $failCount & "/" & $sum & " Skip: " & $skipCount & "/" & $sum & "\n")
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let sumTotal = okCountTotal + failCountTotal + skipCountTotal
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raw.add("\n---TOTAL---\n")
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raw.add("OK: $1/$4 Fail: $2/$4 Skip: $3/$4\n" % [$okCountTotal, $failCountTotal, $skipCountTotal, $sumTotal])
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writeFile(`s` & ".md", raw)
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func ethAddressFromHex*(s: string): EthAddress = hexToByteArray(s, result)
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func safeHexToSeqByte*(hexStr: string): seq[byte] =
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if hexStr == "":
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@[]
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else:
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hexStr.hexToSeqByte
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proc setupStateDB*(wantedState: JsonNode, stateDB: var AccountStateDB) =
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for ac, accountData in wantedState:
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let account = ethAddressFromHex(ac)
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for slot, value in accountData{"storage"}:
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stateDB.setStorage(account, fromHex(UInt256, slot), fromHex(UInt256, value.getStr))
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let nonce = accountData{"nonce"}.getStr.parseHexInt.AccountNonce
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let code = accountData{"code"}.getStr.safeHexToSeqByte.toRange
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let balance = UInt256.fromHex accountData{"balance"}.getStr
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stateDB.setNonce(account, nonce)
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stateDB.setCode(account, code)
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stateDB.setBalance(account, balance)
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proc verifyStateDB*(wantedState: JsonNode, stateDB: ReadOnlyStateDB) =
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for ac, accountData in wantedState:
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let account = ethAddressFromHex(ac)
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for slot, value in accountData{"storage"}:
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let
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slotId = UInt256.fromHex slot
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wantedValue = UInt256.fromHex value.getStr
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let (actualValue, found) = stateDB.getStorage(account, slotId)
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doAssert found
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doAssert actualValue == wantedValue, &"{actualValue.toHex} != {wantedValue.toHex}"
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let
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wantedCode = hexToSeqByte(accountData{"code"}.getStr).toRange
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wantedBalance = UInt256.fromHex accountData{"balance"}.getStr
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wantedNonce = accountData{"nonce"}.getInt.AccountNonce
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actualCode = stateDB.getCode(account)
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actualBalance = stateDB.getBalance(account)
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actualNonce = stateDB.getNonce(account)
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doAssert wantedCode == actualCode, &"{wantedCode} != {actualCode}"
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doAssert wantedBalance == actualBalance, &"{wantedBalance.toHex} != {actualBalance.toHex}"
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doAssert wantedNonce == actualNonce, &"{wantedNonce.toHex} != {actualNonce.toHex}"
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func getHexadecimalInt*(j: JsonNode): int64 =
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# parseutils.parseHex works with int which will overflow in 32 bit
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var data: StUInt[64]
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data = fromHex(StUInt[64], j.getStr)
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result = cast[int64](data)
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proc getFixtureTransaction*(j: JsonNode, dataIndex, gasIndex, valueIndex: int): Transaction =
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result.accountNonce = j["nonce"].getStr.parseHexInt.AccountNonce
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result.gasPrice = j["gasPrice"].getStr.parseHexInt
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result.gasLimit = j["gasLimit"][gasIndex].getStr.parseHexInt
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# TODO: there are a couple fixtures which appear to distinguish between
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# empty and 0 transaction.to; check/verify whether correct conditions.
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let rawTo = j["to"].getStr
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if rawTo == "":
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result.to = "0x".parseAddress
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result.isContractCreation = true
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else:
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result.to = rawTo.parseAddress
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result.isContractCreation = false
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result.value = fromHex(UInt256, j["value"][valueIndex].getStr)
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result.payload = j["data"][dataIndex].getStr.safeHexToSeqByte
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var secretKey = j["secretKey"].getStr
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removePrefix(secretKey, "0x")
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let privateKey = initPrivateKey(secretKey)
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let sig = signMessage(privateKey, result.rlpEncode)
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let raw = sig.getRaw()
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result.R = fromBytesBE(Uint256, raw[0..31])
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result.S = fromBytesBE(Uint256, raw[32..63])
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result.V = raw[64] + 27.byte
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proc hashLogEntries*(logs: seq[Log]): string =
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toLowerAscii("0x" & $keccakHash(rlp.encode(logs)))
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