cleanup ffi error handling and use Atom instead of &str in appropriate places
This commit is contained in:
163
src/ffi.rs
163
src/ffi.rs
@@ -22,6 +22,7 @@ and finally we add the pointer the size of what we've written.
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use crate::arena::Arena;
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use crate::atom_table::Atom;
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use crate::forms::Number;
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use crate::machine::machine_errors::DomainErrorType;
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use crate::parser::ast::{Fixnum, MightNotFitInFixnum};
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use dashu::Integer;
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@@ -39,7 +40,7 @@ use std::ops::Deref;
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use std::ptr::NonNull;
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pub struct FunctionDefinition {
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pub name: String,
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pub name: Atom,
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pub return_value: Atom,
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pub args: Vec<Atom>,
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}
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@@ -100,10 +101,10 @@ impl FunctionImpl {
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return_type_name: Atom,
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args: &[Arg],
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arena: &mut Arena,
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structs_table: &HashMap<String, StructImpl>,
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structs_table: &HashMap<Atom, StructImpl>,
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) -> Result<Value, FfiError> {
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let struct_type = structs_table
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.get(&*return_type_name.as_str())
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.get(&return_type_name)
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.ok_or(FfiError::StructNotFound(return_type_name))?;
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let ffi_type = unsafe { *struct_type.ffi_type.as_raw_ptr() };
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@@ -121,12 +122,8 @@ impl FunctionImpl {
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)
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};
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let struct_val = struct_type.read(
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alloc.ptr.as_ptr(),
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&return_type_name.as_str(),
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structs_table,
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arena,
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);
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let struct_val =
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struct_type.read(alloc.ptr.as_ptr(), return_type_name, structs_table, arena);
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drop(alloc);
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@@ -137,7 +134,7 @@ impl FunctionImpl {
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&self,
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args: &[Arg],
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arena: &mut Arena,
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structs_table: &HashMap<String, StructImpl>,
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structs_table: &HashMap<Atom, StructImpl>,
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) -> Result<Value, FfiError> {
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let call_fn: unsafe fn(&Self, &[Arg], &mut Arena) -> Result<Value, FfiError> =
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match self.return_type {
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@@ -164,8 +161,8 @@ impl FunctionImpl {
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#[derive(Debug, Default)]
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pub struct ForeignFunctionTable {
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table: HashMap<String, FunctionImpl>,
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structs: HashMap<String, StructImpl>,
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table: HashMap<Atom, FunctionImpl>,
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structs: HashMap<Atom, StructImpl>,
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}
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#[derive(Clone, Debug)]
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@@ -183,7 +180,7 @@ impl StructImpl {
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fn build(
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&self,
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structs_table: &HashMap<String, StructImpl>,
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structs_table: &HashMap<Atom, StructImpl>,
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struct_args: &mut [Value],
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) -> Result<FfiStruct, FfiError> {
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let args = ArgValue::build_args(struct_args, &self.fields, structs_table)?;
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@@ -249,8 +246,8 @@ impl StructImpl {
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fn read(
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&self,
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ptr: *mut c_void,
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struct_name: &str,
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struct_table: &HashMap<String, StructImpl>,
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struct_name: Atom,
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struct_table: &HashMap<Atom, StructImpl>,
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arena: &mut Arena,
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) -> Result<Value, FfiError> {
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unsafe {
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@@ -315,7 +312,7 @@ impl StructImpl {
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FfiType::F32 => read_float::<f32>(ptr, &mut layout),
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FfiType::F64 => read_float::<f64>(ptr, &mut layout),
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FfiType::Struct(substruct) => {
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let Some(substruct_type) = struct_table.get(&*substruct.as_str()) else {
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let Some(substruct_type) = struct_table.get(substruct) else {
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return Err(FfiError::StructNotFound(*substruct));
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};
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@@ -328,19 +325,15 @@ impl StructImpl {
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.map_err(|_| FfiError::LayoutError)?;
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layout = new_layout;
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let field_ptr = ptr.byte_offset(offset as isize);
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let struct_val = substruct_type.read(
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field_ptr,
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&substruct.as_str(),
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struct_table,
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arena,
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)?;
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let struct_val =
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substruct_type.read(field_ptr, *substruct, struct_table, arena)?;
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Ok(struct_val)
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}
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FfiType::Void => unreachable!("void is not a valid field type"),
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FfiType::Void => return Err(FfiError::VoidArgumentType),
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};
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returns.push(val?);
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}
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Ok(Value::Struct(struct_name.to_string(), returns))
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Ok(Value::Struct(struct_name, returns))
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}
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}
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}
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@@ -427,7 +420,7 @@ impl FfiType {
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}
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}
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fn to_type(self, structs_table: &HashMap<String, StructImpl>) -> Result<Type, FfiError> {
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fn to_type(self, structs_table: &HashMap<Atom, StructImpl>) -> Result<Type, FfiError> {
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Ok(match self {
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Self::I64 => libffi::middle::Type::i64(),
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Self::I32 => libffi::middle::Type::i32(),
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@@ -444,7 +437,7 @@ impl FfiType {
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Self::F32 => libffi::middle::Type::f32(),
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Self::F64 => libffi::middle::Type::f64(),
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Self::Struct(struct_name) => structs_table
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.get(&*struct_name.as_str())
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.get(&struct_name)
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.ok_or(FfiError::StructNotFound(struct_name))?
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.ffi_type
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.clone(),
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@@ -471,7 +464,7 @@ impl<'val> ArgValue<'val> {
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fn new(
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val: &'val mut Value,
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arg_type: &FfiType,
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structs_table: &HashMap<String, StructImpl>,
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structs_table: &HashMap<Atom, StructImpl>,
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) -> Result<Self, FfiError> {
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match arg_type {
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FfiType::U8 => Ok(Self::U8(val.as_int()?)),
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@@ -486,27 +479,27 @@ impl<'val> ArgValue<'val> {
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FfiType::F64 => Ok(Self::F64(val.as_float()?)),
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FfiType::Ptr => Ok(Self::Ptr(val.as_ptr()?, PhantomData)),
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FfiType::CStr => Ok(Self::Ptr(val.as_ptr()?, PhantomData)),
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FfiType::Struct(atom) => {
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let (name, args) = val.as_struct()?;
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FfiType::Struct(arg_type_name) => {
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let (val_type_name, args) = val.as_struct()?;
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if &*atom.as_str() != name {
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return Err(FfiError::ValueCast);
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if *arg_type_name != val_type_name {
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return Err(FfiError::ValueCast(*arg_type_name, val_type_name));
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}
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let Some(struct_type) = structs_table.get(name) else {
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return Err(FfiError::StructNotFound(*atom));
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let Some(struct_type) = structs_table.get(&val_type_name) else {
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return Err(FfiError::StructNotFound(*arg_type_name));
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};
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Ok(Self::Struct(struct_type.build(structs_table, args)?))
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}
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FfiType::Void => Err(FfiError::InvalidArgumentType),
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FfiType::Void => Err(FfiError::VoidArgumentType),
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}
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}
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fn build_args(
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args: &'val mut [Value],
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types: &[FfiType],
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structs_table: &HashMap<String, StructImpl>,
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structs_table: &HashMap<Atom, StructImpl>,
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) -> Result<Vec<Self>, FfiError> {
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if types.len() != args.len() {
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return Err(FfiError::ArgCountMismatch);
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@@ -590,7 +583,7 @@ impl ForeignFunctionTable {
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self.table.extend(other.table);
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}
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pub fn define_struct(&mut self, name: &str, atom_fields: Vec<Atom>) -> Result<(), FfiError> {
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pub fn define_struct(&mut self, name: Atom, atom_fields: Vec<Atom>) -> Result<(), FfiError> {
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let fields: Vec<_> = atom_fields.iter().map(FfiType::from_atom).collect();
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let struct_type = libffi::middle::Type::structure(
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fields
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@@ -612,7 +605,7 @@ impl ForeignFunctionTable {
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};
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self.structs.insert(
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name.to_string(),
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name,
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StructImpl {
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ffi_type: struct_type,
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fields,
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@@ -629,7 +622,7 @@ impl ForeignFunctionTable {
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let mut ff_table: ForeignFunctionTable = Default::default();
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let library = unsafe { Library::new(library_name) }?;
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for function in functions {
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let symbol_name: CString = CString::new(function.name.clone())?;
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let symbol_name: CString = CString::new(&*function.name.as_str())?;
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let code_ptr: Symbol<*mut c_void> =
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unsafe { library.get(symbol_name.as_bytes_with_nul()) }?;
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let args: Vec<_> = function.args.iter().map(FfiType::from_atom).collect();
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@@ -643,7 +636,7 @@ impl ForeignFunctionTable {
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);
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ff_table.table.insert(
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function.name.clone(),
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function.name,
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FunctionImpl {
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cif,
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args,
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@@ -659,11 +652,14 @@ impl ForeignFunctionTable {
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pub fn exec(
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&mut self,
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fn_name: &str,
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fn_name: Atom,
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mut args: Vec<Value>,
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arena: &mut Arena,
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) -> Result<Value, FfiError> {
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let fn_impl = self.table.get(fn_name).ok_or(FfiError::FunctionNotFound)?;
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let fn_impl = self
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.table
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.get(&fn_name)
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.ok_or(FfiError::FunctionNotFound(fn_name))?;
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let args = ArgValue::build_args(&mut args, &fn_impl.args, &self.structs)?;
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@@ -695,13 +691,13 @@ impl ForeignFunctionTable {
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}
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match FfiType::from_atom(&kind) {
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FfiType::Void => Err(FfiError::InvalidFfiType),
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FfiType::Void => Err(FfiError::VoidArgumentType),
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FfiType::Bool => {
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let val = args.as_int::<u8>()?;
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let init = match val {
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0 => false,
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1 => true,
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_ => return Err(FfiError::ValueOutOfRange),
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_ => return Err(FfiError::ValueOutOfRange(DomainErrorType::ZeroOrOne, args)),
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};
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allocate_primitive::<bool>(allocator, init, arena)
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}
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@@ -716,10 +712,10 @@ impl ForeignFunctionTable {
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FfiType::F32 => allocate_primitive::<f32>(allocator, args.as_float()? as f32, arena),
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FfiType::F64 => allocate_primitive::<f64>(allocator, args.as_float()?, arena),
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FfiType::Ptr => allocate_primitive::<*mut c_void>(allocator, args.as_ptr()?, arena),
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FfiType::CStr => Err(FfiError::InvalidFfiType),
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FfiType::CStr => Err(FfiError::CStrFieldType),
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FfiType::Struct(_) => {
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let Some(struct_impl) = self.structs.get(&*kind.as_str()) else {
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return Err(FfiError::InvalidStruct);
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let Some(struct_impl) = self.structs.get(&kind) else {
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return Err(FfiError::StructNotFound(kind));
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};
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let (_, args) = args.as_struct()?;
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@@ -755,11 +751,11 @@ impl ForeignFunctionTable {
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let ptr = ptr.as_ptr()?;
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let Some(ptr) = NonNull::new(ptr) else {
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return Err(FfiError::ValueOutOfRange);
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return Err(FfiError::NullPtr);
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};
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match FfiType::from_atom(&kind) {
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FfiType::Void => Err(FfiError::InvalidFfiType),
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FfiType::Void => Err(FfiError::VoidArgumentType),
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FfiType::Bool | FfiType::U8 => Ok(unsafe { read_int::<u8>(ptr, arena) }),
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FfiType::I8 => Ok(unsafe { read_int::<i8>(ptr, arena) }),
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FfiType::U16 => Ok(unsafe { read_int::<u16>(ptr, arena) }),
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@@ -782,11 +778,11 @@ impl ForeignFunctionTable {
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unsafe { CStr::from_ptr(ptr.as_ptr().cast()) }.to_owned(),
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)),
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FfiType::Struct(_) => {
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let Some(struct_impl) = self.structs.get(&*kind.as_str()) else {
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return Err(FfiError::InvalidStruct);
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let Some(struct_impl) = self.structs.get(&kind) else {
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return Err(FfiError::StructNotFound(kind));
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};
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struct_impl.read(ptr.as_ptr(), &kind.as_str(), &self.structs, arena)
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struct_impl.read(ptr.as_ptr(), kind, &self.structs, arena)
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}
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}
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}
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@@ -805,11 +801,11 @@ impl ForeignFunctionTable {
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let ptr = ptr.as_ptr()?;
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let Some(ptr) = NonNull::new(ptr) else {
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return Err(FfiError::ValueOutOfRange);
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return Err(FfiError::NullPtr);
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};
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match FfiType::from_atom(&kind) {
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FfiType::Void => return Err(FfiError::InvalidFfiType),
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FfiType::Void => return Err(FfiError::VoidArgumentType),
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FfiType::Bool => deallocate_primitive::<bool>(allocator, ptr),
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FfiType::U8 => deallocate_primitive::<u8>(allocator, ptr),
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FfiType::I8 => deallocate_primitive::<i8>(allocator, ptr),
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@@ -822,10 +818,10 @@ impl ForeignFunctionTable {
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FfiType::F32 => deallocate_primitive::<f32>(allocator, ptr),
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FfiType::F64 => deallocate_primitive::<f64>(allocator, ptr),
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FfiType::Ptr => deallocate_primitive::<*mut c_void>(allocator, ptr),
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FfiType::CStr => return Err(FfiError::InvalidFfiType),
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FfiType::CStr => return Err(FfiError::CStrFieldType),
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FfiType::Struct(_) => {
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let Some(struct_impl) = self.structs.get(&*kind.as_str()) else {
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return Err(FfiError::InvalidStruct);
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let Some(struct_impl) = self.structs.get(&kind) else {
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return Err(FfiError::StructNotFound(kind));
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};
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let layout = struct_impl.layout()?;
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@@ -845,7 +841,7 @@ impl ForeignFunctionTable {
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pub enum Value {
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Number(Number),
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CString(CString),
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Struct(String, Vec<Value>),
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Struct(Atom, Vec<Value>),
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}
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impl Value {
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@@ -857,22 +853,27 @@ impl Value {
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match self {
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Value::Number(Number::Integer(ibig_ptr)) => {
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let ibig: &Integer = ibig_ptr;
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ibig.clone()
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.try_into()
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.map_err(|_| FfiError::ValueOutOfRange)
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ibig.clone().try_into().map_err(|_| {
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FfiError::ValueOutOfRange(DomainErrorType::FixedSizedInt, self.clone())
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})
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}
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Value::Number(Number::Fixnum(fixnum)) => fixnum
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.get_num()
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.try_into()
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.map_err(|_| FfiError::ValueOutOfRange),
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_ => Err(FfiError::ValueCast),
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Value::Number(Number::Fixnum(fixnum)) => fixnum.get_num().try_into().map_err(|_| {
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FfiError::ValueOutOfRange(DomainErrorType::FixedSizedInt, self.clone())
|
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}),
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_ => Err(FfiError::ValueOutOfRange(
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DomainErrorType::FixedSizedInt,
|
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self.clone(),
|
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)),
|
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}
|
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}
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fn as_float(&self) -> Result<f64, FfiError> {
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match self {
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&Value::Number(Number::Float(OrderedFloat(f))) => Ok(f),
|
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_ => Err(FfiError::ValueCast),
|
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_ => Err(FfiError::ValueOutOfRange(
|
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DomainErrorType::F64,
|
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self.clone(),
|
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)),
|
||||
}
|
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}
|
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|
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@@ -882,33 +883,39 @@ impl Value {
|
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Value::Number(Number::Fixnum(fixnum)) => Ok(std::ptr::with_exposed_provenance_mut(
|
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fixnum.get_num() as usize,
|
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)),
|
||||
_ => Err(FfiError::ValueCast),
|
||||
_ => Err(FfiError::ValueOutOfRange(
|
||||
DomainErrorType::PtrLike,
|
||||
self.clone(),
|
||||
)),
|
||||
}
|
||||
}
|
||||
|
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fn as_struct(&mut self) -> Result<(&str, &mut [Self]), FfiError> {
|
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fn as_struct(&mut self) -> Result<(Atom, &mut [Self]), FfiError> {
|
||||
match self {
|
||||
Value::Struct(name, values) => Ok((name, values)),
|
||||
_ => Err(FfiError::ValueCast),
|
||||
Value::Struct(name, values) => Ok((*name, values)),
|
||||
_ => Err(FfiError::ValueOutOfRange(
|
||||
DomainErrorType::FfiStruct,
|
||||
self.clone(),
|
||||
)),
|
||||
}
|
||||
}
|
||||
}
|
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|
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#[derive(Debug)]
|
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pub enum FfiError {
|
||||
ValueCast,
|
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ValueOutOfRange,
|
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InvalidArgumentType,
|
||||
InvalidArgument,
|
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InvalidFfiType,
|
||||
InvalidStruct,
|
||||
FunctionNotFound,
|
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ValueCast(Atom, Atom),
|
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ValueOutOfRange(DomainErrorType, Value),
|
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VoidArgumentType,
|
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FunctionNotFound(Atom),
|
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StructNotFound(Atom),
|
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ArgCountMismatch,
|
||||
AllocationFailed,
|
||||
// LayoutError should never occour
|
||||
LayoutError,
|
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UnsupportedTypedef,
|
||||
UnsupportedAbi,
|
||||
CStrFieldType,
|
||||
NullPtr,
|
||||
}
|
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|
||||
impl std::fmt::Display for FfiError {
|
||||
@@ -922,7 +929,7 @@ impl Error for FfiError {}
|
||||
impl From<libffi::low::Error> for FfiError {
|
||||
fn from(value: libffi::low::Error) -> Self {
|
||||
match value {
|
||||
libffi::low::Error::Typedef => FfiError::InvalidFfiType,
|
||||
libffi::low::Error::Typedef => FfiError::UnsupportedTypedef,
|
||||
libffi::low::Error::Abi => FfiError::UnsupportedAbi,
|
||||
}
|
||||
}
|
||||
|
||||
@@ -3,7 +3,7 @@ use crate::atom_table::*;
|
||||
use crate::parser::ast::*;
|
||||
|
||||
#[cfg(feature = "ffi")]
|
||||
use crate::ffi::FfiError;
|
||||
use crate::ffi::{self, FfiError};
|
||||
use crate::forms::*;
|
||||
use crate::functor_macro::*;
|
||||
use crate::machine::heap::*;
|
||||
@@ -275,6 +275,30 @@ impl DomainError for MachineStub {
|
||||
}
|
||||
}
|
||||
|
||||
#[cfg(feature = "ffi")]
|
||||
impl DomainError for ffi::Value {
|
||||
fn domain_error(self, machine_st: &mut MachineState, error: DomainErrorType) -> MachineError {
|
||||
use ffi::Value;
|
||||
|
||||
match self {
|
||||
Value::Number(number) => number.domain_error(machine_st, error),
|
||||
Value::CString(cstring) => {
|
||||
let str = cstring.to_string_lossy().into_owned();
|
||||
let stub = functor!(
|
||||
atom!("domain_error"),
|
||||
[atom_as_cell((error.as_atom())), string(str)]
|
||||
);
|
||||
|
||||
MachineError {
|
||||
stub,
|
||||
location: None,
|
||||
}
|
||||
}
|
||||
Value::Struct(atom, _values) => atom_as_cell!(atom).domain_error(machine_st, error),
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
#[inline(always)]
|
||||
pub(super) fn functor_stub(name: Atom, arity: usize) -> MachineStub {
|
||||
functor!(atom!("/"), [atom_as_cell(name), fixnum(arity)])
|
||||
@@ -418,6 +442,28 @@ impl MachineState {
|
||||
[atom_as_cell((atom!("process"))), cell(culprit)]
|
||||
);
|
||||
|
||||
MachineError {
|
||||
stub,
|
||||
location: None,
|
||||
}
|
||||
}
|
||||
ExistenceError::FfiFunction(atom) => {
|
||||
let stub = functor!(
|
||||
atom!("existence_error"),
|
||||
[atom_as_cell((atom!("ffi_function"))), atom_as_cell(atom)]
|
||||
);
|
||||
|
||||
MachineError {
|
||||
stub,
|
||||
location: None,
|
||||
}
|
||||
}
|
||||
ExistenceError::FfiStructType(atom) => {
|
||||
let stub = functor!(
|
||||
atom!("existence_error"),
|
||||
[atom_as_cell((atom!("ffi_struct_type"))), atom_as_cell(atom)]
|
||||
);
|
||||
|
||||
MachineError {
|
||||
stub,
|
||||
location: None,
|
||||
@@ -628,42 +674,43 @@ impl MachineState {
|
||||
}
|
||||
|
||||
#[cfg(feature = "ffi")]
|
||||
pub(super) fn ffi_error(&self, err: FfiError, culprit: HeapCellValue) -> MachineError {
|
||||
let error_atom = match err {
|
||||
FfiError::ValueCast => atom!("value_cast"),
|
||||
FfiError::ValueOutOfRange => atom!("value_out_of_range"),
|
||||
FfiError::InvalidFfiType => atom!("invalid_ffi_type"),
|
||||
FfiError::InvalidArgumentType => atom!("invalid_argument_type"),
|
||||
FfiError::InvalidArgument => atom!("invalid_argument"),
|
||||
FfiError::InvalidStruct => atom!("invalid_struct"),
|
||||
FfiError::FunctionNotFound => atom!("function_not_found"),
|
||||
FfiError::StructNotFound(culprit) => {
|
||||
pub(super) fn ffi_error(&mut self, err: FfiError) -> MachineError {
|
||||
match err {
|
||||
FfiError::ValueCast(expected, actual) => {
|
||||
let stub = functor!(
|
||||
atom!("ffi_error"),
|
||||
[
|
||||
atom_as_cell((atom!("struct_not_found"))),
|
||||
atom_as_cell(culprit)
|
||||
]
|
||||
atom!("domain_error"),
|
||||
[atom_as_cell(expected), atom_as_cell(actual)]
|
||||
);
|
||||
|
||||
return MachineError {
|
||||
MachineError {
|
||||
stub,
|
||||
location: None,
|
||||
};
|
||||
}
|
||||
}
|
||||
FfiError::ArgCountMismatch => atom!("mismatched_argument_count"),
|
||||
FfiError::AllocationFailed => atom!("allocation_failed"),
|
||||
FfiError::LayoutError => atom!("layout_error"),
|
||||
FfiError::UnsupportedAbi => atom!("unsupported_abi"),
|
||||
};
|
||||
let stub = functor!(
|
||||
atom!("ffi_error"),
|
||||
[atom_as_cell(error_atom), cell(culprit)]
|
||||
);
|
||||
|
||||
MachineError {
|
||||
stub,
|
||||
location: None,
|
||||
FfiError::ValueOutOfRange(domain, culprit) => self.domain_error(domain, culprit),
|
||||
FfiError::FunctionNotFound(name) => {
|
||||
self.existence_error(ExistenceError::FfiFunction(name))
|
||||
}
|
||||
FfiError::StructNotFound(name) => {
|
||||
self.existence_error(ExistenceError::FfiStructType(name))
|
||||
}
|
||||
FfiError::ArgCountMismatch => self.unreachable_error(),
|
||||
FfiError::AllocationFailed => MachineError {
|
||||
stub: functor!(atom!("resource_error"), [atom_as_cell((atom!("heap")))]),
|
||||
location: None,
|
||||
},
|
||||
FfiError::LayoutError => self.representation_error(RepFlag::FfiLayout),
|
||||
FfiError::UnsupportedTypedef => self.representation_error(RepFlag::FfiLayout),
|
||||
FfiError::UnsupportedAbi => self.representation_error(RepFlag::FfiAbi),
|
||||
FfiError::VoidArgumentType => self.domain_error(
|
||||
DomainErrorType::FfiArgumentType,
|
||||
atom_as_cell!(atom!("void")),
|
||||
),
|
||||
FfiError::CStrFieldType => todo!(),
|
||||
FfiError::NullPtr => self.domain_error(
|
||||
DomainErrorType::NonNullPtr,
|
||||
fixnum_as_cell!(Fixnum::build_with(0)),
|
||||
),
|
||||
}
|
||||
}
|
||||
|
||||
@@ -845,6 +892,14 @@ pub(crate) enum DomainErrorType {
|
||||
OperatorPriority,
|
||||
Directive,
|
||||
Allocator,
|
||||
FfiStruct,
|
||||
ZeroOrOne,
|
||||
NonNullPtr,
|
||||
PtrLike,
|
||||
F64,
|
||||
FfiArgument,
|
||||
FfiArgumentType,
|
||||
FixedSizedInt,
|
||||
}
|
||||
|
||||
impl DomainErrorType {
|
||||
@@ -860,6 +915,14 @@ impl DomainErrorType {
|
||||
DomainErrorType::OperatorPriority => atom!("operator_priority"),
|
||||
DomainErrorType::Directive => atom!("directive"),
|
||||
DomainErrorType::Allocator => atom!("allocator"),
|
||||
DomainErrorType::ZeroOrOne => atom!("zero_or_one"),
|
||||
DomainErrorType::FfiStruct => atom!("ffi_struct"),
|
||||
DomainErrorType::NonNullPtr => atom!("non_null_pointer"),
|
||||
DomainErrorType::PtrLike => atom!("pointer_like"),
|
||||
DomainErrorType::F64 => atom!("f64"),
|
||||
DomainErrorType::FfiArgument => atom!("ffi_argument"),
|
||||
DomainErrorType::FfiArgumentType => atom!("ffi_argument_type"),
|
||||
DomainErrorType::FixedSizedInt => atom!("fixed_sized_int"),
|
||||
}
|
||||
}
|
||||
}
|
||||
@@ -874,6 +937,8 @@ pub(crate) enum RepFlag {
|
||||
// MaxInteger,
|
||||
// MinInteger,
|
||||
Term,
|
||||
FfiLayout,
|
||||
FfiAbi,
|
||||
}
|
||||
|
||||
impl RepFlag {
|
||||
@@ -885,7 +950,9 @@ impl RepFlag {
|
||||
RepFlag::MaxArity => atom!("max_arity"),
|
||||
RepFlag::Term => atom!("term"),
|
||||
// RepFlag::MaxInteger => atom!("max_integer"),
|
||||
// RepFlag::MinInteger => atom!("min_integer")
|
||||
// RepFlag::MinInteger => atom!("min_integer"),
|
||||
RepFlag::FfiLayout => atom!("ffi_layout"),
|
||||
RepFlag::FfiAbi => atom!("ffi_abi"),
|
||||
}
|
||||
}
|
||||
}
|
||||
@@ -1065,6 +1132,8 @@ pub enum ExistenceError {
|
||||
SourceSink(HeapCellValue),
|
||||
Stream(HeapCellValue),
|
||||
Process(HeapCellValue),
|
||||
FfiFunction(Atom),
|
||||
FfiStructType(Atom),
|
||||
}
|
||||
|
||||
#[derive(Debug)]
|
||||
|
||||
@@ -1,7 +1,6 @@
|
||||
use crate::arena::*;
|
||||
use crate::atom_table::*;
|
||||
use crate::forms::*;
|
||||
use crate::functor_macro::*;
|
||||
use crate::heap_iter::*;
|
||||
use crate::heap_print::*;
|
||||
use crate::machine::attributed_variables::*;
|
||||
@@ -184,7 +183,7 @@ impl IndexMut<RegType> for MachineState {
|
||||
}
|
||||
}
|
||||
|
||||
pub type CallResult<Ok = ()> = Result<Ok, Vec<FunctorElement>>;
|
||||
pub type CallResult<Ok = ()> = Result<Ok, MachineStub>;
|
||||
|
||||
// size may be an upper bound.
|
||||
// true_size is calculated to compute the exact offset.
|
||||
|
||||
@@ -4982,29 +4982,35 @@ impl Machine {
|
||||
};
|
||||
let return_value = cell_as_atom_cell!(self.machine_st.heap[s + 2]);
|
||||
functions.push(FunctionDefinition {
|
||||
name: name.as_str().to_string(),
|
||||
name,
|
||||
args,
|
||||
return_value: return_value.get_name(),
|
||||
});
|
||||
}
|
||||
_ => {
|
||||
unreachable!()
|
||||
}
|
||||
let err = self.machine_st.unreachable_error();
|
||||
return Err(self.machine_st.error_form(err, stub_gen()))
|
||||
}
|
||||
)
|
||||
}
|
||||
if self
|
||||
.foreign_function_table
|
||||
.load_library(&library_name.as_str(), &functions)
|
||||
.is_ok()
|
||||
.is_err()
|
||||
{
|
||||
return Ok(());
|
||||
self.machine_st.fail = true;
|
||||
}
|
||||
|
||||
Ok(())
|
||||
}
|
||||
Err(e) => return Err(e),
|
||||
};
|
||||
Err(e) => Err(e),
|
||||
}
|
||||
} else {
|
||||
let err = self
|
||||
.machine_st
|
||||
.type_error(ValidType::InCharacter, library_name);
|
||||
Err(self.machine_st.error_form(err, stub_gen()))
|
||||
}
|
||||
self.machine_st.fail = true;
|
||||
Ok(())
|
||||
}
|
||||
|
||||
#[cfg(not(feature = "ffi"))]
|
||||
@@ -5034,9 +5040,9 @@ impl Machine {
|
||||
|
||||
if let Some(head) = iter.next() {
|
||||
let head = self.machine_st.store(self.machine_st.deref(head));
|
||||
if let Some(struct_name) = self.machine_st.value_to_str_like(head) {
|
||||
if let Some(struct_name) = head.to_atom() {
|
||||
Ok(Value::Struct(
|
||||
struct_name.as_str().to_string(),
|
||||
struct_name,
|
||||
iter.map(|x| self.map_ffi_arg(x, stub_gen))
|
||||
.collect::<Result<_, _>>()?,
|
||||
))
|
||||
@@ -5052,17 +5058,15 @@ impl Machine {
|
||||
Err(self.machine_st.error_form(err, src))
|
||||
} else {
|
||||
// first element of a struct needs to be the type
|
||||
Err(self.machine_st.error_form(
|
||||
self.machine_st.ffi_error(FfiError::ValueOutOfRange, head),
|
||||
stub_gen(),
|
||||
))
|
||||
let err = self.machine_st.type_error(ValidType::Atom, head);
|
||||
Err(self.machine_st.error_form(err, stub_gen()))
|
||||
}
|
||||
} else {
|
||||
// empty list is an invalid struct repr
|
||||
Err(self.machine_st.error_form(
|
||||
self.machine_st.ffi_error(FfiError::ValueOutOfRange, source),
|
||||
stub_gen(),
|
||||
))
|
||||
let err = self
|
||||
.machine_st
|
||||
.domain_error(DomainErrorType::FfiStruct, source);
|
||||
Err(self.machine_st.error_form(err, stub_gen()))
|
||||
}
|
||||
} else if self.machine_st.deref(source).is_var() {
|
||||
let err = self.machine_st.instantiation_error();
|
||||
@@ -5075,10 +5079,10 @@ impl Machine {
|
||||
|
||||
Err(self.machine_st.error_form(err, src))
|
||||
} else {
|
||||
Err(self.machine_st.error_form(
|
||||
self.machine_st.ffi_error(FfiError::InvalidArgument, source),
|
||||
stub_gen(),
|
||||
))
|
||||
let err = self
|
||||
.machine_st
|
||||
.domain_error(DomainErrorType::FfiArgument, source);
|
||||
Err(self.machine_st.error_form(err, stub_gen()))
|
||||
}
|
||||
}
|
||||
|
||||
@@ -5090,10 +5094,10 @@ impl Machine {
|
||||
|
||||
#[cfg(feature = "ffi")]
|
||||
{
|
||||
let function_name_arg = self.deref_register(1);
|
||||
let function_name_arg = self.machine_st.store(self.deref_register(1));
|
||||
let args_reg = self.deref_register(2);
|
||||
let return_value = self.deref_register(3);
|
||||
if let Some(function_name) = self.machine_st.value_to_str_like(function_name_arg) {
|
||||
if let Some(function_name) = function_name_arg.to_atom() {
|
||||
match self.machine_st.try_from_list(args_reg, stub_gen) {
|
||||
Ok(args) => {
|
||||
let args = args
|
||||
@@ -5102,25 +5106,25 @@ impl Machine {
|
||||
.collect::<Result<Vec<_>, _>>()?;
|
||||
|
||||
match self.foreign_function_table.exec(
|
||||
&function_name.as_str(),
|
||||
function_name,
|
||||
args,
|
||||
&mut self.machine_st.arena,
|
||||
) {
|
||||
Ok(result) => {
|
||||
return self.unify_ffi_result(return_value, result);
|
||||
}
|
||||
Ok(result) => self.unify_ffi_result(return_value, result),
|
||||
Err(e) => {
|
||||
let err = self.machine_st.ffi_error(e, function_name_arg);
|
||||
return Err(self.machine_st.error_form(err, stub_gen()));
|
||||
let err = self.machine_st.ffi_error(e);
|
||||
Err(self.machine_st.error_form(err, stub_gen()))
|
||||
}
|
||||
}
|
||||
}
|
||||
Err(e) => return Err(e),
|
||||
Err(e) => Err(e),
|
||||
}
|
||||
} else {
|
||||
let err = self
|
||||
.machine_st
|
||||
.type_error(ValidType::Atom, function_name_arg);
|
||||
Err(self.machine_st.error_form(err, stub_gen()))
|
||||
}
|
||||
|
||||
self.machine_st.fail = true;
|
||||
Ok(())
|
||||
}
|
||||
|
||||
#[cfg(not(feature = "ffi"))]
|
||||
@@ -5149,7 +5153,7 @@ impl Machine {
|
||||
},
|
||||
Value::Struct(name, args) => {
|
||||
let struct_value =
|
||||
resource_error_call_result!(self.machine_st, self.build_struct(&name, args));
|
||||
resource_error_call_result!(self.machine_st, self.build_struct(name, args));
|
||||
|
||||
unify!(self.machine_st, return_value, struct_value);
|
||||
}
|
||||
@@ -5166,8 +5170,8 @@ impl Machine {
|
||||
}
|
||||
|
||||
#[cfg(feature = "ffi")]
|
||||
fn build_struct(&mut self, name: &str, mut args: Vec<Value>) -> Result<HeapCellValue, usize> {
|
||||
args.insert(0, Value::CString(CString::new(name).unwrap()));
|
||||
fn build_struct(&mut self, name: Atom, mut args: Vec<Value>) -> Result<HeapCellValue, usize> {
|
||||
args.insert(0, Value::CString(CString::new(&*name.as_str()).unwrap()));
|
||||
|
||||
let cells: Vec<_> = args
|
||||
.into_iter()
|
||||
@@ -5183,7 +5187,7 @@ impl Machine {
|
||||
&self.machine_st.atom_tbl,
|
||||
&cstr.into_string().unwrap()
|
||||
)),
|
||||
Value::Struct(name, struct_args) => self.build_struct(&name, struct_args)?,
|
||||
Value::Struct(name, struct_args) => self.build_struct(name, struct_args)?,
|
||||
})
|
||||
})
|
||||
.collect::<Result<_, usize>>()?;
|
||||
@@ -5199,9 +5203,9 @@ impl Machine {
|
||||
|
||||
#[cfg(feature = "ffi")]
|
||||
{
|
||||
let struct_name_arg = self.deref_register(1);
|
||||
let struct_name_arg = self.machine_st.store(self.deref_register(1));
|
||||
let fields_reg = self.deref_register(2);
|
||||
if let Some(struct_name) = self.machine_st.value_to_str_like(struct_name_arg) {
|
||||
if let Some(struct_name) = struct_name_arg.to_atom() {
|
||||
let fields: Vec<Atom> = match self.machine_st.try_from_list(fields_reg, stub_gen) {
|
||||
Ok(addrs) => {
|
||||
let mut args = Vec::new();
|
||||
@@ -5224,15 +5228,16 @@ impl Machine {
|
||||
Err(e) => return Err(e),
|
||||
};
|
||||
self.foreign_function_table
|
||||
.define_struct(&struct_name.as_str(), fields)
|
||||
.define_struct(struct_name, fields)
|
||||
.map_err(|err| {
|
||||
let ffi_error = self.machine_st.ffi_error(err, struct_name_arg);
|
||||
let ffi_error = self.machine_st.ffi_error(err);
|
||||
self.machine_st.error_form(ffi_error, stub_gen())
|
||||
})?;
|
||||
return Ok(());
|
||||
Ok(())
|
||||
} else {
|
||||
let err = self.machine_st.type_error(ValidType::Atom, struct_name_arg);
|
||||
Err(self.machine_st.error_form(err, stub_gen()))
|
||||
}
|
||||
self.machine_st.fail = true;
|
||||
Ok(())
|
||||
}
|
||||
|
||||
#[cfg(not(feature = "ffi"))]
|
||||
@@ -5272,7 +5277,7 @@ impl Machine {
|
||||
) {
|
||||
Ok(value) => value,
|
||||
Err(ffi_error) => {
|
||||
let machine_error = self.machine_st.ffi_error(ffi_error, ffi_type_arg);
|
||||
let machine_error = self.machine_st.ffi_error(ffi_error);
|
||||
return Err(self.machine_st.error_form(machine_error, stub_gen()));
|
||||
}
|
||||
};
|
||||
@@ -5305,7 +5310,7 @@ impl Machine {
|
||||
.foreign_function_table
|
||||
.read_ptr(ffi_type, ptr, &mut self.machine_st.arena)
|
||||
.map_err(|ffi_error| {
|
||||
let machine_error = self.machine_st.ffi_error(ffi_error, ffi_type_arg);
|
||||
let machine_error = self.machine_st.ffi_error(ffi_error);
|
||||
self.machine_st.error_form(machine_error, stub_gen())
|
||||
})?;
|
||||
|
||||
@@ -5346,7 +5351,7 @@ impl Machine {
|
||||
{
|
||||
Ok(value) => value,
|
||||
Err(ffi_error) => {
|
||||
let machine_error = self.machine_st.ffi_error(ffi_error, ffi_type_arg);
|
||||
let machine_error = self.machine_st.ffi_error(ffi_error);
|
||||
return Err(self.machine_st.error_form(machine_error, stub_gen()));
|
||||
}
|
||||
}
|
||||
|
||||
Reference in New Issue
Block a user