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authorchriseth <chris@ethereum.org>2018-04-05 21:52:25 +0800
committerchriseth <chris@ethereum.org>2018-04-12 22:37:16 +0800
commit75b88286667690ffb4a5e079665ed8b70bcaeb87 (patch)
treeee0952b521768895b329f3e91dfa0a98eb2b4cef /test/libsolidity/SolidityEndToEndTest.cpp
parent7343c4028365d3fbc9fa46fca6078971a2bed426 (diff)
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Allow struct encoding with new encoder.
Diffstat (limited to 'test/libsolidity/SolidityEndToEndTest.cpp')
-rw-r--r--test/libsolidity/SolidityEndToEndTest.cpp106
1 files changed, 106 insertions, 0 deletions
diff --git a/test/libsolidity/SolidityEndToEndTest.cpp b/test/libsolidity/SolidityEndToEndTest.cpp
index 8b0e3f83..49cb5d4d 100644
--- a/test/libsolidity/SolidityEndToEndTest.cpp
+++ b/test/libsolidity/SolidityEndToEndTest.cpp
@@ -11234,6 +11234,53 @@ BOOST_AUTO_TEST_CASE(abi_encode_with_selector)
ABI_CHECK(callContractFunction("f3()"), expectation);
}
+BOOST_AUTO_TEST_CASE(abi_encode_with_selectorv2)
+{
+ char const* sourceCode = R"(
+ pragma experimental ABIEncoderV2;
+ contract C {
+ function f0() public pure returns (bytes) {
+ return abi.encodeWithSelector(0x12345678);
+ }
+ function f1() public pure returns (bytes) {
+ return abi.encodeWithSelector(0x12345678, "abc");
+ }
+ function f2() public pure returns (bytes) {
+ bytes4 x = 0x12345678;
+ return abi.encodeWithSelector(x, "abc");
+ }
+ function f3() public pure returns (bytes) {
+ bytes4 x = 0x12345678;
+ return abi.encodeWithSelector(x, uint(-1));
+ }
+ struct S { uint a; string b; uint16 c; }
+ function f4() public pure returns (bytes) {
+ bytes4 x = 0x12345678;
+ S memory s;
+ s.a = 0x1234567;
+ s.b = "Lorem ipsum dolor sit ethereum........";
+ s.c = 0x1234;
+ return abi.encodeWithSelector(x, uint(-1), s, uint(3));
+ }
+ }
+ )";
+ compileAndRun(sourceCode, 0, "C");
+ ABI_CHECK(callContractFunction("f0()"), encodeArgs(0x20, 4, "\x12\x34\x56\x78"));
+ bytes expectation;
+ expectation = encodeArgs(0x20, 4 + 0x60) + bytes{0x12, 0x34, 0x56, 0x78} + encodeArgs(0x20, 3, "abc") + bytes(0x20 - 4);
+ ABI_CHECK(callContractFunction("f1()"), expectation);
+ expectation = encodeArgs(0x20, 4 + 0x60) + bytes{0x12, 0x34, 0x56, 0x78} + encodeArgs(0x20, 3, "abc") + bytes(0x20 - 4);
+ ABI_CHECK(callContractFunction("f2()"), expectation);
+ expectation = encodeArgs(0x20, 4 + 0x20) + bytes{0x12, 0x34, 0x56, 0x78} + encodeArgs(u256(-1)) + bytes(0x20 - 4);
+ ABI_CHECK(callContractFunction("f3()"), expectation);
+ expectation =
+ encodeArgs(0x20, 4 + 0x120) +
+ bytes{0x12, 0x34, 0x56, 0x78} +
+ encodeArgs(u256(-1), 0x60, u256(3), 0x1234567, 0x60, 0x1234, 38, "Lorem ipsum dolor sit ethereum........") +
+ bytes(0x20 - 4);
+ ABI_CHECK(callContractFunction("f4()"), expectation);
+}
+
BOOST_AUTO_TEST_CASE(abi_encode_with_signature)
{
char const* sourceCode = R"T(
@@ -11277,6 +11324,65 @@ BOOST_AUTO_TEST_CASE(abi_encode_with_signature)
ABI_CHECK(callContractFunction("f2()"), expectation);
}
+BOOST_AUTO_TEST_CASE(abi_encode_with_signaturev2)
+{
+ char const* sourceCode = R"T(
+ pragma experimental ABIEncoderV2;
+ contract C {
+ function f0() public pure returns (bytes) {
+ return abi.encodeWithSignature("f(uint256)");
+ }
+ function f1() public pure returns (bytes) {
+ string memory x = "f(uint256)";
+ return abi.encodeWithSignature(x, "abc");
+ }
+ string xstor;
+ function f1s() public returns (bytes) {
+ xstor = "f(uint256)";
+ return abi.encodeWithSignature(xstor, "abc");
+ }
+ function f2() public pure returns (bytes r, uint[] ar) {
+ string memory x = "Lorem ipsum dolor sit amet, consectetur adipiscing elit, sed do eiusmod tempor incididunt ut labore et dolore magna aliqua.";
+ uint[] memory y = new uint[](4);
+ y[0] = uint(-1);
+ y[1] = uint(-2);
+ y[2] = uint(-3);
+ y[3] = uint(-4);
+ r = abi.encodeWithSignature(x, y);
+ // The hash uses temporary memory. This allocation re-uses the memory
+ // and should initialize it properly.
+ ar = new uint[](2);
+ }
+ struct S { uint a; string b; uint16 c; }
+ function f4() public pure returns (bytes) {
+ bytes4 x = 0x12345678;
+ S memory s;
+ s.a = 0x1234567;
+ s.b = "Lorem ipsum dolor sit ethereum........";
+ s.c = 0x1234;
+ return abi.encodeWithSignature(s.b, uint(-1), s, uint(3));
+ }
+ }
+ )T";
+ compileAndRun(sourceCode, 0, "C");
+ ABI_CHECK(callContractFunction("f0()"), encodeArgs(0x20, 4, "\xb3\xde\x64\x8b"));
+ bytes expectation;
+ expectation = encodeArgs(0x20, 4 + 0x60) + bytes{0xb3, 0xde, 0x64, 0x8b} + encodeArgs(0x20, 3, "abc") + bytes(0x20 - 4);
+ ABI_CHECK(callContractFunction("f1()"), expectation);
+ ABI_CHECK(callContractFunction("f1s()"), expectation);
+ expectation =
+ encodeArgs(0x40, 0x140, 4 + 0xc0) +
+ (bytes{0xe9, 0xc9, 0x21, 0xcd} + encodeArgs(0x20, 4, u256(-1), u256(-2), u256(-3), u256(-4)) + bytes(0x20 - 4)) +
+ encodeArgs(2, 0, 0);
+ ABI_CHECK(callContractFunction("f2()"), expectation);
+ expectation =
+ encodeArgs(0x20, 4 + 0x120) +
+ bytes{0x7c, 0x79, 0x30, 0x02} +
+ encodeArgs(u256(-1), 0x60, u256(3), 0x1234567, 0x60, 0x1234, 38, "Lorem ipsum dolor sit ethereum........") +
+ bytes(0x20 - 4);
+ ABI_CHECK(callContractFunction("f4()"), expectation);
+}
+
BOOST_AUTO_TEST_CASE(abi_encode_call)
{
char const* sourceCode = R"T(