distinguish between i256 and h256 on evmjit wrapper layer
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@ -20,6 +20,7 @@ use self::ffi::*;
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pub use self::ffi::JitReturnCode as ReturnCode;
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pub use self::ffi::JitReturnCode as ReturnCode;
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pub use self::ffi::JitI256 as I256;
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pub use self::ffi::JitI256 as I256;
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pub use self::ffi::JitH256 as H256;
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/// Component oriented safe handle to `JitRuntimeData`.
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/// Component oriented safe handle to `JitRuntimeData`.
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pub struct RuntimeDataHandle {
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pub struct RuntimeDataHandle {
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@ -101,7 +102,7 @@ impl Drop for ContextHandle {
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pub trait Env {
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pub trait Env {
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fn sload(&self, index: *const JitI256, out_value: *mut JitI256);
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fn sload(&self, index: *const JitI256, out_value: *mut JitI256);
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fn sstore(&mut self, index: *const JitI256, value: *const JitI256);
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fn sstore(&mut self, index: *const JitI256, value: *const JitI256);
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fn balance(&self, address: *const JitI256, out_value: *mut JitI256);
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fn balance(&self, address: *const JitH256, out_value: *mut JitI256);
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fn blockhash(&self, number: *const JitI256, out_hash: *mut JitI256);
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fn blockhash(&self, number: *const JitI256, out_hash: *mut JitI256);
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fn create(&mut self,
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fn create(&mut self,
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@ -130,7 +131,7 @@ pub trait Env {
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topic3: *const JitI256,
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topic3: *const JitI256,
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topic4: *const JitI256);
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topic4: *const JitI256);
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fn extcode(&self, address: *const JitI256, size: *mut u64) -> *const u8;
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fn extcode(&self, address: *const JitH256, size: *mut u64) -> *const u8;
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}
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}
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/// C abi compatible wrapper for jit env implementers.
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/// C abi compatible wrapper for jit env implementers.
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@ -174,6 +175,7 @@ impl DerefMut for EnvHandle {
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/// ffi functions
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/// ffi functions
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pub mod ffi {
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pub mod ffi {
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use std::slice;
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use std::slice;
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use std::mem;
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use tiny_keccak::Keccak;
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use tiny_keccak::Keccak;
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use super::*;
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use super::*;
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@ -195,12 +197,31 @@ pub mod ffi {
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}
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}
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#[repr(C)]
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#[repr(C)]
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#[derive(Debug)]
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#[derive(Debug, Copy, Clone)]
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/// Signed 256 bit integer.
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/// Signed 256 bit integer.
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pub struct JitI256 {
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pub struct JitI256 {
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pub words: [u64; 4]
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pub words: [u64; 4]
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}
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}
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#[repr(C)]
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#[derive(Debug, Copy, Clone)]
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/// Jit Hash
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pub struct JitH256 {
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pub words: [u64; 4]
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}
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impl From<JitH256> for JitI256 {
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fn from(mut hash: JitH256) -> JitI256 {
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unsafe {
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{
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let bytes: &mut [u8] = slice::from_raw_parts_mut(hash.words.as_mut_ptr() as *mut u8, 32);
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bytes.reverse();
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}
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mem::transmute(hash)
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}
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}
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}
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#[repr(C)]
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#[repr(C)]
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#[derive(Debug)]
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#[derive(Debug)]
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/// Jit runtime data.
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/// Jit runtime data.
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@ -272,7 +293,7 @@ pub mod ffi {
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}
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}
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#[no_mangle]
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#[no_mangle]
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pub unsafe extern "C" fn env_balance(env: *const EnvHandle, address: *const JitI256, out_value: *mut JitI256) {
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pub unsafe extern "C" fn env_balance(env: *const EnvHandle, address: *const JitH256, out_value: *mut JitI256) {
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let env = &*env;
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let env = &*env;
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env.balance(address, out_value);
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env.balance(address, out_value);
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}
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}
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@ -321,7 +342,7 @@ pub mod ffi {
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}
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}
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#[no_mangle]
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#[no_mangle]
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pub unsafe extern "C" fn env_extcode(env: *const EnvHandle, address: *const JitI256, size: *mut u64) -> *const u8 {
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pub unsafe extern "C" fn env_extcode(env: *const EnvHandle, address: *const JitH256, size: *mut u64) -> *const u8 {
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let env = &*env;
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let env = &*env;
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env.extcode(address, size)
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env.extcode(address, size)
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}
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}
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@ -371,6 +392,15 @@ fn ffi_test() {
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#[test]
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#[test]
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fn handle_test() {
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fn handle_test() {
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let mut context = ContextHandle::new(RuntimeDataHandle::new(), EnvHandle::empty());
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unsafe {
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assert_eq!(context.exec(), ReturnCode::Stop);
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let mut context = ContextHandle::new(RuntimeDataHandle::new(), &mut EnvHandle::empty());
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assert_eq!(context.exec(), ReturnCode::Stop);
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}
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}
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#[test]
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fn hash_to_int() {
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let h = H256 { words:[0x0123456789abcdef, 0, 0, 0] };
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let i = I256::from(h);
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assert_eq!([0u64, 0, 0, 0xefcdab8967452301], i.words);
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}
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}
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@ -40,6 +40,12 @@ impl<'a> FromJit<&'a evmjit::I256> for Address {
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}
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}
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}
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}
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impl<'a> FromJit<&'a evmjit::H256> for Address {
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fn from_jit(input: &'a evmjit::H256) -> Self {
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Address::from(H256::from_jit(&evmjit::I256::from(input.clone())))
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}
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}
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impl IntoJit<evmjit::I256> for U256 {
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impl IntoJit<evmjit::I256> for U256 {
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fn into_jit(self) -> evmjit::I256 {
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fn into_jit(self) -> evmjit::I256 {
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unsafe {
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unsafe {
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@ -120,7 +126,7 @@ impl<'a> evmjit::Env for EnvAdapter<'a> {
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}
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}
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}
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}
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fn balance(&self, address: *const evmjit::I256, out_value: *mut evmjit::I256) {
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fn balance(&self, address: *const evmjit::H256, out_value: *mut evmjit::I256) {
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unsafe {
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unsafe {
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let a = Address::from_jit(&*address);
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let a = Address::from_jit(&*address);
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let o = self.env.balance(&a);
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let o = self.env.balance(&a);
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@ -168,14 +174,9 @@ impl<'a> evmjit::Env for EnvAdapter<'a> {
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unimplemented!();
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unimplemented!();
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}
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}
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fn extcode(&self, address: *const evmjit::I256, size: *mut u64) -> *const u8 {
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fn extcode(&self, address: *const evmjit::H256, size: *mut u64) -> *const u8 {
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unsafe {
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unsafe {
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// bytes in this callback are reverted... do not know why
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let code = self.env.extcode(&Address::from_jit(&*address));
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// it's the same in cpp implementation
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// TODO: investigate and fix it on evmjit layer
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let mut a = H256::from_jit(&*address);
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a.reverse();
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let code = self.env.extcode(&Address::from(a));
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*size = code.len() as u64;
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*size = code.len() as u64;
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let ptr = code.as_ptr();
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let ptr = code.as_ptr();
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mem::forget(code);
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mem::forget(code);
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