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438 lines
10 KiB
438 lines
10 KiB
//===- subzero/runtime/wasm-runtime.cpp - Subzero WASM runtime source -----===//
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//
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// The Subzero Code Generator
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//
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// This file is distributed under the University of Illinois Open Source
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// License. See LICENSE.TXT for details.
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//
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//===----------------------------------------------------------------------===//
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//
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// This file implements the system calls required by the libc that is included
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// in WebAssembly programs.
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//
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//===----------------------------------------------------------------------===//
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#include <algorithm>
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#include <cassert>
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#include <cmath>
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#include <iostream>
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#include <vector>
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#include <errno.h>
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#include <fcntl.h>
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#include <math.h>
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#include <stdint.h>
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#include <stdio.h>
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#include <stdlib.h>
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#include <string.h>
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#include <sys/ioctl.h>
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#include <sys/stat.h>
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#include <sys/types.h>
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#include <termios.h>
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#include <time.h>
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#include <unistd.h>
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#ifdef WASM_TRACE_RUNTIME
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#define TRACE_ENTRY() \
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{ std::cerr << __func__ << "(...) = "; }
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template <typename T> T trace(T x) {
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std::cerr << x << std::endl;
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return x;
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}
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void trace() { std::cerr << "(void)" << std::endl; }
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#else
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#define TRACE_ENTRY()
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template <typename T> T trace(T x) { return x; }
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void trace() {}
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#endif // WASM_TRACE_RUNTIME
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extern "C" {
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char *WASM_MEMORY;
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extern uint32_t WASM_DATA_SIZE;
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extern uint32_t WASM_NUM_PAGES;
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} // end of extern "C"
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namespace {
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uint32_t HeapBreak;
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// TODO (eholk): make all of these constexpr.
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const uint32_t PageSizeLog2 = 16;
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const uint32_t PageSize = 1 << PageSizeLog2; // 64KB
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const uint32_t StackPtrLoc = 1024; // defined by emscripten
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uint32_t pageNum(uint32_t Index) { return Index >> PageSizeLog2; }
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} // end of anonymous namespace
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namespace env {
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double floor(double X) { return std::floor(X); }
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float floor(float X) { return std::floor(X); }
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} // end of namespace env
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// TODO (eholk): move the C parts outside and use C++ name mangling.
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namespace {
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/// Some runtime functions need to return pointers. The WasmData struct is used
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/// to preallocate space for these on the heap.
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struct WasmData {
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/// StrBuf is returned by functions that return strings.
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char StrBuf[256];
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};
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WasmData *GlobalData = NULL;
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int toWasm(void *Ptr) {
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return reinterpret_cast<int>(reinterpret_cast<char *>(Ptr) - WASM_MEMORY);
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}
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template <typename T> T *wasmPtr(int Index) {
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if (pageNum(Index) < WASM_NUM_PAGES) {
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return reinterpret_cast<T *>(WASM_MEMORY + Index);
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}
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abort();
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}
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template <typename T> class WasmPtr {
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int Ptr;
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public:
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WasmPtr(int Ptr) : Ptr(Ptr) {
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// TODO (eholk): make this a static_assert once we have C++11
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assert(sizeof(*this) == sizeof(int));
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}
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WasmPtr(T *Ptr) : Ptr(toWasm(Ptr)) {}
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T &operator*() const { return *asPtr(); }
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T *asPtr() const { return wasmPtr<T>(Ptr); }
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int asInt() const { return Ptr; }
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};
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typedef WasmPtr<char> WasmCharPtr;
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template <typename T> class WasmArray {
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int Ptr;
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public:
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WasmArray(int Ptr) : Ptr(Ptr) {
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// TODO (eholk): make this a static_assert once we have C++11.
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assert(sizeof(*this) == sizeof(int));
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}
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T &operator[](unsigned int Index) const { return wasmPtr<T>(Ptr)[Index]; }
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};
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} // end of anonymous namespace
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// TODO (eholk): move the C parts outside and use C++ name mangling.
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extern "C" {
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void __Sz_bounds_fail() {
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std::cerr << "Bounds check failure" << std::endl;
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abort();
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}
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void __Sz_indirect_fail() {
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std::cerr << "Invalid indirect call target" << std::endl;
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abort();
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}
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extern char WASM_DATA_INIT[];
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void env$$abort() {
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fprintf(stderr, "Aborting...\n");
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abort();
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}
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void env$$_abort() { env$$abort(); }
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double env$$floor_f(float X) {
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TRACE_ENTRY();
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return env::floor(X);
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}
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double env$$floor_d(double X) {
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TRACE_ENTRY();
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return env::floor(X);
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}
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void env$$exit(int Status) {
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TRACE_ENTRY();
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exit(Status);
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}
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void env$$_exit(int Status) {
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TRACE_ENTRY();
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env$$exit(Status);
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}
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#define UNIMPLEMENTED(f) \
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void env$$##f() { \
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fprintf(stderr, "Unimplemented: " #f "\n"); \
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abort(); \
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}
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int32_t env$$sbrk(int32_t Increment) {
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TRACE_ENTRY();
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uint32_t OldBreak = HeapBreak;
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HeapBreak += Increment;
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return trace(OldBreak);
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}
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UNIMPLEMENTED(__addtf3)
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UNIMPLEMENTED(__assert_fail)
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UNIMPLEMENTED(__builtin_apply)
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UNIMPLEMENTED(__builtin_apply_args)
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UNIMPLEMENTED(__builtin_isinff)
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UNIMPLEMENTED(__builtin_isinfl)
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UNIMPLEMENTED(__builtin_malloc)
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UNIMPLEMENTED(__divtf3)
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UNIMPLEMENTED(__eqtf2)
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UNIMPLEMENTED(__extenddftf2)
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UNIMPLEMENTED(__extendsftf2)
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UNIMPLEMENTED(__fixsfti)
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UNIMPLEMENTED(__fixtfdi)
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UNIMPLEMENTED(__fixtfsi)
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UNIMPLEMENTED(__fixunstfsi)
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UNIMPLEMENTED(__floatditf)
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UNIMPLEMENTED(__floatsitf)
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UNIMPLEMENTED(__floatunsitf)
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UNIMPLEMENTED(__getf2)
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UNIMPLEMENTED(__letf2)
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UNIMPLEMENTED(__lttf2)
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UNIMPLEMENTED(__multf3)
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UNIMPLEMENTED(__multi3)
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UNIMPLEMENTED(__netf2)
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UNIMPLEMENTED(__subtf3)
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UNIMPLEMENTED(__syscall140) // sys_llseek
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UNIMPLEMENTED(__syscall221) // sys_fcntl64
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UNIMPLEMENTED(__trunctfdf2)
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UNIMPLEMENTED(__trunctfsf2)
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UNIMPLEMENTED(__unordtf2)
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UNIMPLEMENTED(longjmp)
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UNIMPLEMENTED(pthread_cleanup_pop)
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UNIMPLEMENTED(pthread_cleanup_push)
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UNIMPLEMENTED(pthread_self)
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UNIMPLEMENTED(setjmp)
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extern int __szwasm_main(int, WasmPtr<WasmCharPtr>);
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#define WASM_REF(Type, Index) (WasmPtr<Type>(Index).asPtr())
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#define WASM_DEREF(Type, Index) (*WASM_REF(Type, Index))
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int main(int argc, const char **argv) {
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// Create the heap.
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std::vector<char> WasmHeap(WASM_NUM_PAGES << PageSizeLog2);
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WASM_MEMORY = WasmHeap.data();
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std::copy(WASM_DATA_INIT, WASM_DATA_INIT + WASM_DATA_SIZE, WasmHeap.begin());
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// TODO (eholk): align these allocations correctly.
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// Allocate space for the global data.
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HeapBreak = WASM_DATA_SIZE;
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GlobalData = WASM_REF(WasmData, HeapBreak);
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HeapBreak += sizeof(WasmData);
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// copy the command line arguments.
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WasmPtr<WasmCharPtr> WasmArgV = HeapBreak;
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WasmPtr<char> *WasmArgVPtr = WasmArgV.asPtr();
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HeapBreak += argc * sizeof(*WasmArgVPtr);
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for (int i = 0; i < argc; ++i) {
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WasmArgVPtr[i] = HeapBreak;
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strcpy(WASM_REF(char, HeapBreak), argv[i]);
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HeapBreak += strlen(argv[i]) + 1;
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}
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// Initialize the break to the nearest page boundary after the data segment
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HeapBreak = (WASM_DATA_SIZE + PageSize - 1) & ~(PageSize - 1);
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// Initialize the stack pointer.
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WASM_DEREF(int32_t, StackPtrLoc) = WASM_NUM_PAGES << PageSizeLog2;
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return __szwasm_main(argc, WasmArgV);
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}
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int env$$abs(int a) {
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TRACE_ENTRY();
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return trace(abs(a));
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}
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clock_t env$$clock() {
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TRACE_ENTRY();
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return trace(clock());
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}
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int env$$ctime(WasmPtr<time_t> Time) {
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TRACE_ENTRY();
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char *CTime = ctime(Time.asPtr());
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strncpy(GlobalData->StrBuf, CTime, sizeof(GlobalData->StrBuf));
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GlobalData->StrBuf[sizeof(GlobalData->StrBuf) - 1] = '\0';
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return trace(WasmPtr<char>(GlobalData->StrBuf).asInt());
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}
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double env$$pow(double x, double y) {
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TRACE_ENTRY();
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return trace(pow(x, y));
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}
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time_t env$$time(WasmPtr<time_t> Time) {
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TRACE_ENTRY();
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time_t *TimePtr = WASM_REF(time_t, Time);
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return trace(time(TimePtr));
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}
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// lock and unlock are no-ops in wasm.js, so we mimic that behavior.
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void env$$__lock(int32_t) {
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TRACE_ENTRY();
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trace();
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}
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void env$$__unlock(int32_t) {
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TRACE_ENTRY();
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trace();
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}
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/// sys_read
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int env$$__syscall3(int Which, WasmArray<int> VarArgs) {
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TRACE_ENTRY();
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int Fd = VarArgs[0];
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int Buffer = VarArgs[1];
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int Length = VarArgs[2];
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return trace(read(Fd, WASM_REF(char *, Buffer), Length));
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}
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/// sys_write
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int env$$__syscall4(int Which, WasmArray<int> VarArgs) {
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TRACE_ENTRY();
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int Fd = VarArgs[0];
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int Buffer = VarArgs[1];
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int Length = VarArgs[2];
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return trace(write(Fd, WASM_REF(char *, Buffer), Length));
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}
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/// sys_open
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int env$$__syscall5(int Which, WasmArray<int> VarArgs) {
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TRACE_ENTRY();
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int WasmPath = VarArgs[0];
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int Flags = VarArgs[1];
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int Mode = VarArgs[2];
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const char *Path = WASM_REF(char, WasmPath);
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return trace(open(Path, Flags, Mode));
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}
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/// sys_close
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int env$$__syscall6(int Which, WasmArray<int> VarArgs) {
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TRACE_ENTRY();
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int Fd = VarArgs[0];
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return trace(close(Fd));
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}
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/// sys_unlink
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int env$$__syscall10(int Which, WasmArray<int> VarArgs) {
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TRACE_ENTRY();
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int WasmPath = VarArgs[0];
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const char *Path = WASM_REF(char, WasmPath);
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return trace(unlink(Path));
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}
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/// sys_getpid
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int env$$__syscall20(int Which, WasmArray<int> VarArgs) {
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TRACE_ENTRY();
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(void)Which;
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(void)VarArgs;
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return trace(getpid());
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}
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/// sys_rmdir
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int env$$__syscall40(int Which, WasmArray<int> VarArgs) {
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TRACE_ENTRY();
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int WasmPath = VarArgs[0];
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const char *Path = WASM_REF(char, WasmPath);
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return trace(rmdir(Path));
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}
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/// sys_ioctl
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int env$$__syscall54(int Which, WasmArray<int> VarArgs) {
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TRACE_ENTRY();
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int Fd = VarArgs[0];
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int Op = VarArgs[1];
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int ArgP = VarArgs[2];
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switch (Op) {
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case TCGETS: {
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// struct termios has no pointers. Otherwise, we'd have to rewrite them.
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struct termios *TermIOS = WASM_REF(struct termios, ArgP);
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return trace(ioctl(Fd, TCGETS, TermIOS));
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}
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default:
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// TODO (eholk): implement more ioctls
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return trace(-ENOTTY);
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}
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}
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struct IoVec {
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WasmPtr<char> Ptr;
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int Length;
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};
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/// sys_readv
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int env$$__syscall145(int Which, WasmArray<int> VarArgs) {
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TRACE_ENTRY();
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int Fd = VarArgs[0];
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WasmArray<IoVec> Iov = VarArgs[1];
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int Iovcnt = VarArgs[2];
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int Count = 0;
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for (int I = 0; I < Iovcnt; ++I) {
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int Curr = read(Fd, Iov[I].Ptr.asPtr(), Iov[I].Length);
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if (Curr < 0) {
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return trace(-1);
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}
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Count += Curr;
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}
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return trace(Count);
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}
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/// sys_writev
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int env$$__syscall146(int Which, WasmArray<int> VarArgs) {
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TRACE_ENTRY();
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int Fd = VarArgs[0];
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WasmArray<IoVec> Iov = VarArgs[1];
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int Iovcnt = VarArgs[2];
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int Count = 0;
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for (int I = 0; I < Iovcnt; ++I) {
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int Curr = write(Fd, Iov[I].Ptr.asPtr(), Iov[I].Length);
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if (Curr < 0) {
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return trace(-1);
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}
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Count += Curr;
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}
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return trace(Count);
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}
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/// sys_mmap_pgoff
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int env$$__syscall192(int Which, WasmArray<int> VarArgs) {
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TRACE_ENTRY();
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(void)Which;
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(void)VarArgs;
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// TODO (eholk): figure out how to implement this.
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return trace(-ENOMEM);
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}
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} // end of extern "C"
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