use crate::{conversion::convert_blocktype, Result};
use crate::conversion::{convert_heaptype, convert_memarg, convert_valtype};
use alloc::string::ToString;
use alloc::{boxed::Box, format, vec::Vec};
use tinywasm_types::Instruction;
use wasmparser::{FuncValidator, FunctionBody, VisitOperator, WasmModuleResources};
struct ValidateThenVisit<'a, T, U>(T, &'a mut U);
macro_rules! validate_then_visit {
($( @$proposal:ident $op:ident $({ $($arg:ident: $argty:ty),* })? => $visit:ident)*) => {
$(
#[inline]
fn $visit(&mut self $($(,$arg: $argty)*)?) -> Self::Output {
self.0.$visit($($($arg.clone()),*)?)?;
Ok(self.1.$visit($($($arg),*)?))
}
)*
};
}
impl<'a, T, U> VisitOperator<'a> for ValidateThenVisit<'_, T, U>
where
T: VisitOperator<'a, Output = wasmparser::Result<()>>,
U: VisitOperator<'a>,
{
type Output = Result<U::Output>;
wasmparser::for_each_operator!(validate_then_visit);
}
pub(crate) fn process_operators<R: WasmModuleResources>(
validator: Option<&mut FuncValidator<R>>,
body: &FunctionBody<'_>,
) -> Result<Box<[Instruction]>> {
let mut reader = body.get_operators_reader()?;
let remaining = reader.get_binary_reader().bytes_remaining();
let mut builder = FunctionBuilder::new(remaining);
if let Some(validator) = validator {
while !reader.eof() {
let validate = validator.visitor(reader.original_position());
reader.visit_operator(&mut ValidateThenVisit(validate, &mut builder))???;
}
validator.finish(reader.original_position())?;
} else {
while !reader.eof() {
reader.visit_operator(&mut builder)??;
}
}
Ok(builder.instructions.into_boxed_slice())
}
macro_rules! define_operands {
($($name:ident, $instr:expr),*) => {
$(
fn $name(&mut self) -> Self::Output {
self.instructions.push($instr);
Ok(())
}
)*
};
}
macro_rules! define_primitive_operands {
($($name:ident, $instr:expr, $ty:ty),*) => {
$(
fn $name(&mut self, arg: $ty) -> Self::Output {
self.instructions.push($instr(arg));
Ok(())
}
)*
};
}
macro_rules! define_mem_operands {
($($name:ident, $instr:expr),*) => {
$(
fn $name(&mut self, mem_arg: wasmparser::MemArg) -> Self::Output {
self.instructions.push($instr(
convert_memarg(mem_arg)
));
Ok(())
}
)*
};
}
macro_rules! impl_visit_operator {
( @mvp $($rest:tt)* ) => {
impl_visit_operator!(@@skipped $($rest)*);
};
( @sign_extension $($rest:tt)* ) => {
impl_visit_operator!(@@skipped $($rest)*);
};
( @saturating_float_to_int $($rest:tt)* ) => {
impl_visit_operator!(@@skipped $($rest)*);
};
( @bulk_memory $($rest:tt)* ) => {
impl_visit_operator!(@@skipped $($rest)*);
};
( @reference_types $($rest:tt)* ) => {
impl_visit_operator!(@@skipped $($rest)*);
};
( @@skipped $op:ident $({ $($arg:ident: $argty:ty),* })? => $visit:ident $($rest:tt)* ) => {
impl_visit_operator!($($rest)*);
};
( @$proposal:ident $op:ident $({ $($arg:ident: $argty:ty),* })? => $visit:ident $($rest:tt)* ) => {
fn $visit(&mut self $($(, $arg: $argty)*)?) -> Self::Output {
self.unsupported(stringify!($op))
}
impl_visit_operator!($($rest)*);
};
() => {};
}
pub(crate) struct FunctionBuilder {
instructions: Vec<Instruction>,
label_ptrs: Vec<usize>,
}
impl FunctionBuilder {
pub(crate) fn new(instr_capacity: usize) -> Self {
Self { instructions: Vec::with_capacity(instr_capacity), label_ptrs: Vec::with_capacity(128) }
}
#[cold]
fn unsupported(&self, name: &str) -> Result<()> {
Err(crate::ParseError::UnsupportedOperator(format!("Unsupported instruction: {:?}", name)))
}
#[inline]
fn visit(&mut self, op: Instruction) -> Result<()> {
self.instructions.push(op);
Ok(())
}
}
impl<'a> wasmparser::VisitOperator<'a> for FunctionBuilder {
type Output = Result<()>;
define_primitive_operands! {
visit_br, Instruction::Br, u32,
visit_br_if, Instruction::BrIf, u32,
visit_local_get, Instruction::LocalGet, u32,
visit_local_set, Instruction::LocalSet, u32,
visit_local_tee, Instruction::LocalTee, u32,
visit_global_get, Instruction::GlobalGet, u32,
visit_global_set, Instruction::GlobalSet, u32,
visit_i32_const, Instruction::I32Const, i32,
visit_i64_const, Instruction::I64Const, i64
}
define_mem_operands! {
visit_i32_load, Instruction::I32Load,
visit_i64_load, Instruction::I64Load,
visit_f32_load, Instruction::F32Load,
visit_f64_load, Instruction::F64Load,
visit_i32_load8_s, Instruction::I32Load8S,
visit_i32_load8_u, Instruction::I32Load8U,
visit_i32_load16_s, Instruction::I32Load16S,
visit_i32_load16_u, Instruction::I32Load16U,
visit_i64_load8_s, Instruction::I64Load8S,
visit_i64_load8_u, Instruction::I64Load8U,
visit_i64_load16_s, Instruction::I64Load16S,
visit_i64_load16_u, Instruction::I64Load16U,
visit_i64_load32_s, Instruction::I64Load32S,
visit_i64_load32_u, Instruction::I64Load32U,
visit_i32_store, Instruction::I32Store,
visit_i64_store, Instruction::I64Store,
visit_f32_store, Instruction::F32Store,
visit_f64_store, Instruction::F64Store,
visit_i32_store8, Instruction::I32Store8,
visit_i32_store16, Instruction::I32Store16,
visit_i64_store8, Instruction::I64Store8,
visit_i64_store16, Instruction::I64Store16,
visit_i64_store32, Instruction::I64Store32
}
define_operands! {
visit_unreachable, Instruction::Unreachable,
visit_nop, Instruction::Nop,
visit_return, Instruction::Return,
visit_drop, Instruction::Drop,
visit_select, Instruction::Select(None),
visit_i32_eqz, Instruction::I32Eqz,
visit_i32_eq, Instruction::I32Eq,
visit_i32_ne, Instruction::I32Ne,
visit_i32_lt_s, Instruction::I32LtS,
visit_i32_lt_u, Instruction::I32LtU,
visit_i32_gt_s, Instruction::I32GtS,
visit_i32_gt_u, Instruction::I32GtU,
visit_i32_le_s, Instruction::I32LeS,
visit_i32_le_u, Instruction::I32LeU,
visit_i32_ge_s, Instruction::I32GeS,
visit_i32_ge_u, Instruction::I32GeU,
visit_i64_eqz, Instruction::I64Eqz,
visit_i64_eq, Instruction::I64Eq,
visit_i64_ne, Instruction::I64Ne,
visit_i64_lt_s, Instruction::I64LtS,
visit_i64_lt_u, Instruction::I64LtU,
visit_i64_gt_s, Instruction::I64GtS,
visit_i64_gt_u, Instruction::I64GtU,
visit_i64_le_s, Instruction::I64LeS,
visit_i64_le_u, Instruction::I64LeU,
visit_i64_ge_s, Instruction::I64GeS,
visit_i64_ge_u, Instruction::I64GeU,
visit_f32_eq, Instruction::F32Eq,
visit_f32_ne, Instruction::F32Ne,
visit_f32_lt, Instruction::F32Lt,
visit_f32_gt, Instruction::F32Gt,
visit_f32_le, Instruction::F32Le,
visit_f32_ge, Instruction::F32Ge,
visit_f64_eq, Instruction::F64Eq,
visit_f64_ne, Instruction::F64Ne,
visit_f64_lt, Instruction::F64Lt,
visit_f64_gt, Instruction::F64Gt,
visit_f64_le, Instruction::F64Le,
visit_f64_ge, Instruction::F64Ge,
visit_i32_clz, Instruction::I32Clz,
visit_i32_ctz, Instruction::I32Ctz,
visit_i32_popcnt, Instruction::I32Popcnt,
visit_i32_add, Instruction::I32Add,
visit_i32_sub, Instruction::I32Sub,
visit_i32_mul, Instruction::I32Mul,
visit_i32_div_s, Instruction::I32DivS,
visit_i32_div_u, Instruction::I32DivU,
visit_i32_rem_s, Instruction::I32RemS,
visit_i32_rem_u, Instruction::I32RemU,
visit_i32_and, Instruction::I32And,
visit_i32_or, Instruction::I32Or,
visit_i32_xor, Instruction::I32Xor,
visit_i32_shl, Instruction::I32Shl,
visit_i32_shr_s, Instruction::I32ShrS,
visit_i32_shr_u, Instruction::I32ShrU,
visit_i32_rotl, Instruction::I32Rotl,
visit_i32_rotr, Instruction::I32Rotr,
visit_i64_clz, Instruction::I64Clz,
visit_i64_ctz, Instruction::I64Ctz,
visit_i64_popcnt, Instruction::I64Popcnt,
visit_i64_add, Instruction::I64Add,
visit_i64_sub, Instruction::I64Sub,
visit_i64_mul, Instruction::I64Mul,
visit_i64_div_s, Instruction::I64DivS,
visit_i64_div_u, Instruction::I64DivU,
visit_i64_rem_s, Instruction::I64RemS,
visit_i64_rem_u, Instruction::I64RemU,
visit_i64_and, Instruction::I64And,
visit_i64_or, Instruction::I64Or,
visit_i64_xor, Instruction::I64Xor,
visit_i64_shl, Instruction::I64Shl,
visit_i64_shr_s, Instruction::I64ShrS,
visit_i64_shr_u, Instruction::I64ShrU,
visit_i64_rotl, Instruction::I64Rotl,
visit_i64_rotr, Instruction::I64Rotr,
visit_f32_abs, Instruction::F32Abs,
visit_f32_neg, Instruction::F32Neg,
visit_f32_ceil, Instruction::F32Ceil,
visit_f32_floor, Instruction::F32Floor,
visit_f32_trunc, Instruction::F32Trunc,
visit_f32_nearest, Instruction::F32Nearest,
visit_f32_sqrt, Instruction::F32Sqrt,
visit_f32_add, Instruction::F32Add,
visit_f32_sub, Instruction::F32Sub,
visit_f32_mul, Instruction::F32Mul,
visit_f32_div, Instruction::F32Div,
visit_f32_min, Instruction::F32Min,
visit_f32_max, Instruction::F32Max,
visit_f32_copysign, Instruction::F32Copysign,
visit_f64_abs, Instruction::F64Abs,
visit_f64_neg, Instruction::F64Neg,
visit_f64_ceil, Instruction::F64Ceil,
visit_f64_floor, Instruction::F64Floor,
visit_f64_trunc, Instruction::F64Trunc,
visit_f64_nearest, Instruction::F64Nearest,
visit_f64_sqrt, Instruction::F64Sqrt,
visit_f64_add, Instruction::F64Add,
visit_f64_sub, Instruction::F64Sub,
visit_f64_mul, Instruction::F64Mul,
visit_f64_div, Instruction::F64Div,
visit_f64_min, Instruction::F64Min,
visit_f64_max, Instruction::F64Max,
visit_f64_copysign, Instruction::F64Copysign,
visit_i32_wrap_i64, Instruction::I32WrapI64,
visit_i32_trunc_f32_s, Instruction::I32TruncF32S,
visit_i32_trunc_f32_u, Instruction::I32TruncF32U,
visit_i32_trunc_f64_s, Instruction::I32TruncF64S,
visit_i32_trunc_f64_u, Instruction::I32TruncF64U,
visit_i64_extend_i32_s, Instruction::I64ExtendI32S,
visit_i64_extend_i32_u, Instruction::I64ExtendI32U,
visit_i64_trunc_f32_s, Instruction::I64TruncF32S,
visit_i64_trunc_f32_u, Instruction::I64TruncF32U,
visit_i64_trunc_f64_s, Instruction::I64TruncF64S,
visit_i64_trunc_f64_u, Instruction::I64TruncF64U,
visit_f32_convert_i32_s, Instruction::F32ConvertI32S,
visit_f32_convert_i32_u, Instruction::F32ConvertI32U,
visit_f32_convert_i64_s, Instruction::F32ConvertI64S,
visit_f32_convert_i64_u, Instruction::F32ConvertI64U,
visit_f32_demote_f64, Instruction::F32DemoteF64,
visit_f64_convert_i32_s, Instruction::F64ConvertI32S,
visit_f64_convert_i32_u, Instruction::F64ConvertI32U,
visit_f64_convert_i64_s, Instruction::F64ConvertI64S,
visit_f64_convert_i64_u, Instruction::F64ConvertI64U,
visit_f64_promote_f32, Instruction::F64PromoteF32,
visit_i32_reinterpret_f32, Instruction::I32ReinterpretF32,
visit_i64_reinterpret_f64, Instruction::I64ReinterpretF64,
visit_f32_reinterpret_i32, Instruction::F32ReinterpretI32,
visit_f64_reinterpret_i64, Instruction::F64ReinterpretI64,
// sign_extension
visit_i32_extend8_s, Instruction::I32Extend8S,
visit_i32_extend16_s, Instruction::I32Extend16S,
visit_i64_extend8_s, Instruction::I64Extend8S,
visit_i64_extend16_s, Instruction::I64Extend16S,
visit_i64_extend32_s, Instruction::I64Extend32S,
// Non-trapping Float-to-int Conversions
visit_i32_trunc_sat_f32_s, Instruction::I32TruncSatF32S,
visit_i32_trunc_sat_f32_u, Instruction::I32TruncSatF32U,
visit_i32_trunc_sat_f64_s, Instruction::I32TruncSatF64S,
visit_i32_trunc_sat_f64_u, Instruction::I32TruncSatF64U,
visit_i64_trunc_sat_f32_s, Instruction::I64TruncSatF32S,
visit_i64_trunc_sat_f32_u, Instruction::I64TruncSatF32U,
visit_i64_trunc_sat_f64_s, Instruction::I64TruncSatF64S,
visit_i64_trunc_sat_f64_u, Instruction::I64TruncSatF64U
}
fn visit_block(&mut self, blockty: wasmparser::BlockType) -> Self::Output {
self.label_ptrs.push(self.instructions.len());
self.visit(Instruction::Block(convert_blocktype(blockty), 0))
}
fn visit_loop(&mut self, ty: wasmparser::BlockType) -> Self::Output {
self.label_ptrs.push(self.instructions.len());
self.visit(Instruction::Loop(convert_blocktype(ty), 0))
}
fn visit_if(&mut self, ty: wasmparser::BlockType) -> Self::Output {
self.label_ptrs.push(self.instructions.len());
self.visit(Instruction::If(convert_blocktype(ty), None, 0))
}
fn visit_else(&mut self) -> Self::Output {
self.label_ptrs.push(self.instructions.len());
self.visit(Instruction::Else(0))
}
#[inline]
fn visit_end(&mut self) -> Self::Output {
let Some(label_pointer) = self.label_ptrs.pop() else {
return self.visit(Instruction::EndFunc);
};
let current_instr_ptr = self.instructions.len();
match self.instructions[label_pointer] {
Instruction::Else(ref mut else_instr_end_offset) => {
*else_instr_end_offset = current_instr_ptr - label_pointer;
#[cold]
fn error() -> crate::ParseError {
crate::ParseError::UnsupportedOperator(
"Expected to end an if block, but the last label was not an if".to_string(),
)
}
// since we're ending an else block, we need to end the if block as well
let if_label_pointer = self.label_ptrs.pop().ok_or_else(error)?;
let if_instruction = &mut self.instructions[if_label_pointer];
let Instruction::If(_, ref mut else_offset, ref mut end_offset) = if_instruction else {
return Err(error());
};
*else_offset = Some(label_pointer - if_label_pointer);
*end_offset = current_instr_ptr - if_label_pointer;
}
Instruction::Block(_, ref mut end_offset)
| Instruction::Loop(_, ref mut end_offset)
| Instruction::If(_, _, ref mut end_offset) => {
*end_offset = current_instr_ptr - label_pointer;
}
_ => {
return Err(crate::ParseError::UnsupportedOperator(
"Expected to end a block, but the last label was not a block".to_string(),
))
}
};
self.visit(Instruction::EndBlockFrame)
}
fn visit_br_table(&mut self, targets: wasmparser::BrTable<'_>) -> Self::Output {
let def = targets.default();
let instrs = targets
.targets()
.map(|t| t.map(Instruction::BrLabel))
.collect::<Result<Vec<Instruction>, wasmparser::BinaryReaderError>>()
.expect("BrTable targets are invalid, this should have been caught by the validator");
self.instructions.extend(IntoIterator::into_iter([Instruction::BrTable(def, instrs.len())]).chain(instrs));
Ok(())
}
fn visit_call(&mut self, idx: u32) -> Self::Output {
self.visit(Instruction::Call(idx))
}
fn visit_call_indirect(&mut self, ty: u32, table: u32, _table_byte: u8) -> Self::Output {
self.visit(Instruction::CallIndirect(ty, table))
}
fn visit_memory_size(&mut self, mem: u32, mem_byte: u8) -> Self::Output {
self.visit(Instruction::MemorySize(mem, mem_byte))
}
fn visit_memory_grow(&mut self, mem: u32, mem_byte: u8) -> Self::Output {
self.visit(Instruction::MemoryGrow(mem, mem_byte))
}
fn visit_f32_const(&mut self, val: wasmparser::Ieee32) -> Self::Output {
self.visit(Instruction::F32Const(f32::from_bits(val.bits())))
}
fn visit_f64_const(&mut self, val: wasmparser::Ieee64) -> Self::Output {
self.visit(Instruction::F64Const(f64::from_bits(val.bits())))
}
// Bulk Memory Operations
fn visit_memory_init(&mut self, data_index: u32, mem: u32) -> Self::Output {
self.visit(Instruction::MemoryInit(data_index, mem))
}
fn visit_data_drop(&mut self, data_index: u32) -> Self::Output {
self.visit(Instruction::DataDrop(data_index))
}
fn visit_memory_copy(&mut self, dst_mem: u32, src_mem: u32) -> Self::Output {
self.visit(Instruction::MemoryCopy(dst_mem, src_mem))
}
fn visit_memory_fill(&mut self, mem: u32) -> Self::Output {
self.visit(Instruction::MemoryFill(mem))
}
fn visit_table_init(&mut self, elem_index: u32, table: u32) -> Self::Output {
self.visit(Instruction::TableInit(elem_index, table))
}
fn visit_elem_drop(&mut self, _elem_index: u32) -> Self::Output {
self.unsupported("elem_drop")
}
fn visit_table_copy(&mut self, dst_table: u32, src_table: u32) -> Self::Output {
self.visit(Instruction::TableCopy { from: src_table, to: dst_table })
}
// Reference Types
fn visit_ref_null(&mut self, ty: wasmparser::HeapType) -> Self::Output {
self.visit(Instruction::RefNull(convert_heaptype(ty)))
}
fn visit_ref_is_null(&mut self) -> Self::Output {
self.visit(Instruction::RefIsNull)
}
fn visit_ref_func(&mut self, idx: u32) -> Self::Output {
self.visit(Instruction::RefFunc(idx))
}
fn visit_typed_select(&mut self, ty: wasmparser::ValType) -> Self::Output {
self.visit(Instruction::Select(Some(convert_valtype(&ty))))
}
fn visit_table_fill(&mut self, table: u32) -> Self::Output {
self.visit(Instruction::TableFill(table))
}
fn visit_table_get(&mut self, table: u32) -> Self::Output {
self.visit(Instruction::TableGet(table))
}
fn visit_table_set(&mut self, table: u32) -> Self::Output {
self.visit(Instruction::TableSet(table))
}
fn visit_table_grow(&mut self, table: u32) -> Self::Output {
self.visit(Instruction::TableGrow(table))
}
fn visit_table_size(&mut self, table: u32) -> Self::Output {
self.visit(Instruction::TableSize(table))
}
wasmparser::for_each_operator!(impl_visit_operator);
}
|