98b7c07171
* Update `add_license` script * run script * add `remove duplicate lines script` and run it * Revert changes `English spaces` * strip whitespaces * Revert `GPL` in files with `apache/mit license` * don't append `gpl license` in files with other lic * Don't append `gpl header` in files with other lic. * re-ran script * include c and cpp files too * remove duplicate header * rebase nit
299 lines
8.3 KiB
Rust
299 lines
8.3 KiB
Rust
// Copyright 2015-2018 Parity Technologies (UK) Ltd.
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// This file is part of Parity.
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// Parity is free software: you can redistribute it and/or modify
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// it under the terms of the GNU General Public License as published by
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// the Free Software Foundation, either version 3 of the License, or
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// (at your option) any later version.
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// Parity is distributed in the hope that it will be useful,
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// but WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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// GNU General Public License for more details.
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// You should have received a copy of the GNU General Public License
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// along with Parity. If not, see <http://www.gnu.org/licenses/>.
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//! Env module glue for wasmi interpreter
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use std::cell::RefCell;
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use wasmi::{
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self, Signature, Error, FuncRef, FuncInstance, MemoryDescriptor,
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MemoryRef, MemoryInstance, memory_units,
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};
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/// Internal ids all functions runtime supports. This is just a glue for wasmi interpreter
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/// that lacks high-level api and later will be factored out
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pub mod ids {
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pub const STORAGE_WRITE_FUNC: usize = 0;
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pub const STORAGE_READ_FUNC: usize = 10;
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pub const RET_FUNC: usize = 20;
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pub const GAS_FUNC: usize = 30;
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pub const FETCH_INPUT_FUNC: usize = 40;
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pub const INPUT_LENGTH_FUNC: usize = 50;
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pub const CCALL_FUNC: usize = 60;
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pub const SCALL_FUNC: usize = 70;
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pub const DCALL_FUNC: usize = 80;
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pub const VALUE_FUNC: usize = 90;
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pub const CREATE_FUNC: usize = 100;
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pub const SUICIDE_FUNC: usize = 110;
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pub const BLOCKHASH_FUNC: usize = 120;
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pub const BLOCKNUMBER_FUNC: usize = 130;
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pub const COINBASE_FUNC: usize = 140;
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pub const DIFFICULTY_FUNC: usize = 150;
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pub const GASLIMIT_FUNC: usize = 160;
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pub const TIMESTAMP_FUNC: usize = 170;
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pub const ADDRESS_FUNC: usize = 180;
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pub const SENDER_FUNC: usize = 190;
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pub const ORIGIN_FUNC: usize = 200;
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pub const ELOG_FUNC: usize = 210;
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pub const PANIC_FUNC: usize = 1000;
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pub const DEBUG_FUNC: usize = 1010;
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}
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/// Signatures of all functions runtime supports. The actual dispatch happens at
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/// impl runtime::Runtime methods.
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pub mod signatures {
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use wasmi::{self, ValueType};
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use wasmi::ValueType::*;
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pub struct StaticSignature(pub &'static [ValueType], pub Option<ValueType>);
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pub const STORAGE_READ: StaticSignature = StaticSignature(
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&[I32, I32],
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None,
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);
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pub const STORAGE_WRITE: StaticSignature = StaticSignature(
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&[I32, I32],
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None,
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);
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pub const RET: StaticSignature = StaticSignature(
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&[I32, I32],
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None,
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);
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pub const GAS: StaticSignature = StaticSignature(
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&[I32],
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None,
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);
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pub const FETCH_INPUT: StaticSignature = StaticSignature(
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&[I32],
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None,
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);
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pub const INPUT_LENGTH: StaticSignature = StaticSignature(
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&[],
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Some(I32),
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);
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pub const CCALL: StaticSignature = StaticSignature(
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&[I64, I32, I32, I32, I32, I32, I32],
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Some(I32),
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);
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pub const DCALL: StaticSignature = StaticSignature(
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&[I64, I32, I32, I32, I32, I32],
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Some(I32),
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);
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pub const SCALL: StaticSignature = StaticSignature(
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&[I64, I32, I32, I32, I32, I32],
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Some(I32),
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);
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pub const PANIC: StaticSignature = StaticSignature(
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&[I32, I32],
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None,
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);
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pub const DEBUG: StaticSignature = StaticSignature(
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&[I32, I32],
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None,
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);
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pub const VALUE: StaticSignature = StaticSignature(
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&[I32],
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None,
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);
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pub const CREATE: StaticSignature = StaticSignature(
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&[I32, I32, I32, I32],
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Some(I32),
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);
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pub const SUICIDE: StaticSignature = StaticSignature(
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&[I32],
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None,
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);
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pub const BLOCKHASH: StaticSignature = StaticSignature(
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&[I64, I32],
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None,
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);
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pub const BLOCKNUMBER: StaticSignature = StaticSignature(
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&[],
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Some(I64),
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);
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pub const COINBASE: StaticSignature = StaticSignature(
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&[I32],
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None,
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);
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pub const DIFFICULTY: StaticSignature = StaticSignature(
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&[I32],
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None,
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);
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pub const GASLIMIT: StaticSignature = StaticSignature(
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&[I32],
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None,
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);
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pub const TIMESTAMP: StaticSignature = StaticSignature(
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&[],
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Some(I64),
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);
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pub const ADDRESS: StaticSignature = StaticSignature(
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&[I32],
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None,
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);
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pub const SENDER: StaticSignature = StaticSignature(
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&[I32],
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None,
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);
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pub const ORIGIN: StaticSignature = StaticSignature(
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&[I32],
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None,
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);
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pub const ELOG: StaticSignature = StaticSignature(
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&[I32, I32, I32, I32],
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None,
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);
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impl Into<wasmi::Signature> for StaticSignature {
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fn into(self) -> wasmi::Signature {
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wasmi::Signature::new(self.0, self.1)
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}
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}
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}
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fn host(signature: signatures::StaticSignature, idx: usize) -> FuncRef {
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FuncInstance::alloc_host(signature.into(), idx)
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}
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/// Import resolver for wasmi
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/// Maps all functions that runtime support to the corresponding contract import
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/// entries.
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/// Also manages initial memory request from the runtime.
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#[derive(Default)]
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pub struct ImportResolver {
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max_memory: u32,
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memory: RefCell<Option<MemoryRef>>,
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}
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impl ImportResolver {
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/// New import resolver with specifed maximum amount of inital memory (in wasm pages = 64kb)
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pub fn with_limit(max_memory: u32) -> ImportResolver {
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ImportResolver {
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max_memory: max_memory,
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memory: RefCell::new(None),
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}
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}
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/// Returns memory that was instantiated during the contract module
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/// start. If contract does not use memory at all, the dummy memory of length (0, 0)
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/// will be created instead. So this method always returns memory instance
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/// unless errored.
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pub fn memory_ref(&self) -> MemoryRef {
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{
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let mut mem_ref = self.memory.borrow_mut();
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if mem_ref.is_none() {
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*mem_ref = Some(
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MemoryInstance::alloc(
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memory_units::Pages(0),
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Some(memory_units::Pages(0)),
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).expect("Memory allocation (0, 0) should not fail; qed")
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);
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}
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}
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self.memory.borrow().clone().expect("it is either existed or was created as (0, 0) above; qed")
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}
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/// Returns memory size module initially requested
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pub fn memory_size(&self) -> Result<u32, Error> {
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Ok(self.memory_ref().current_size().0 as u32)
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}
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}
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impl wasmi::ModuleImportResolver for ImportResolver {
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fn resolve_func(&self, field_name: &str, _signature: &Signature) -> Result<FuncRef, Error> {
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let func_ref = match field_name {
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"storage_read" => host(signatures::STORAGE_READ, ids::STORAGE_READ_FUNC),
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"storage_write" => host(signatures::STORAGE_WRITE, ids::STORAGE_WRITE_FUNC),
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"ret" => host(signatures::RET, ids::RET_FUNC),
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"gas" => host(signatures::GAS, ids::GAS_FUNC),
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"input_length" => host(signatures::INPUT_LENGTH, ids::INPUT_LENGTH_FUNC),
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"fetch_input" => host(signatures::FETCH_INPUT, ids::FETCH_INPUT_FUNC),
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"panic" => host(signatures::PANIC, ids::PANIC_FUNC),
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"debug" => host(signatures::DEBUG, ids::DEBUG_FUNC),
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"ccall" => host(signatures::CCALL, ids::CCALL_FUNC),
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"dcall" => host(signatures::DCALL, ids::DCALL_FUNC),
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"scall" => host(signatures::SCALL, ids::SCALL_FUNC),
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"value" => host(signatures::VALUE, ids::VALUE_FUNC),
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"create" => host(signatures::CREATE, ids::CREATE_FUNC),
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"suicide" => host(signatures::SUICIDE, ids::SUICIDE_FUNC),
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"blockhash" => host(signatures::BLOCKHASH, ids::BLOCKHASH_FUNC),
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"blocknumber" => host(signatures::BLOCKNUMBER, ids::BLOCKNUMBER_FUNC),
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"coinbase" => host(signatures::COINBASE, ids::COINBASE_FUNC),
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"difficulty" => host(signatures::DIFFICULTY, ids::DIFFICULTY_FUNC),
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"gaslimit" => host(signatures::GASLIMIT, ids::GASLIMIT_FUNC),
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"timestamp" => host(signatures::TIMESTAMP, ids::TIMESTAMP_FUNC),
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"address" => host(signatures::ADDRESS, ids::ADDRESS_FUNC),
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"sender" => host(signatures::SENDER, ids::SENDER_FUNC),
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"origin" => host(signatures::ORIGIN, ids::ORIGIN_FUNC),
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"elog" => host(signatures::ELOG, ids::ELOG_FUNC),
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_ => {
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return Err(wasmi::Error::Instantiation(
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format!("Export {} not found", field_name),
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))
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}
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};
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Ok(func_ref)
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}
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fn resolve_memory(
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&self,
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field_name: &str,
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descriptor: &MemoryDescriptor,
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) -> Result<MemoryRef, Error> {
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if field_name == "memory" {
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let effective_max = descriptor.maximum().unwrap_or(self.max_memory + 1);
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if descriptor.initial() > self.max_memory || effective_max > self.max_memory
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{
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Err(Error::Instantiation("Module requested too much memory".to_owned()))
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} else {
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let mem = MemoryInstance::alloc(
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memory_units::Pages(descriptor.initial() as usize),
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descriptor.maximum().map(|x| memory_units::Pages(x as usize)),
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)?;
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*self.memory.borrow_mut() = Some(mem.clone());
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Ok(mem)
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}
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} else {
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Err(Error::Instantiation("Memory imported under unknown name".to_owned()))
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}
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}
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}
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