Global validation

This commit is contained in:
Sergey Pepyakin
2017-12-01 18:53:19 +03:00
parent 859d985599
commit d92bfa1b2c

View File

@ -4,7 +4,7 @@ mod module;
mod func;
use std::fmt;
use elements::{Module, ResizableLimits, MemoryType, TableType, GlobalType, External};
use elements::{Module, ResizableLimits, MemoryType, TableType, GlobalType, FunctionType, External, Opcode, ValueType};
use common::stack;
use self::module::ModuleContext;
@ -23,26 +23,10 @@ impl From<stack::Error> for Error {
}
pub fn validate_module(module: &Module) -> Result<(), Error> {
if let Some(table_section) = module.table_section() {
table_section
.entries()
.iter()
.map(TableType::validate)
.collect::<Result<_, _>>()?
prepare_context(module).map(|_| ())
}
if let Some(mem_section) = module.memory_section() {
mem_section
.entries()
.iter()
.map(MemoryType::validate)
.collect::<Result<_, _>>()?
}
Ok(())
}
fn prepare_context(module: &Module) -> ModuleContext {
fn prepare_context(module: &Module) -> Result<ModuleContext, Error> {
// Copy types from module as is.
let types = module
.type_section()
@ -69,14 +53,69 @@ fn prepare_context(module: &Module) -> ModuleContext {
}
// Concatenate elements with defined in the module.
if let Some(table_section) = module.table_section() {
for table_entry in table_section.entries() {
table_entry.validate()?;
tables.push(table_entry.clone());
}
}
if let Some(mem_section) = module.memory_section() {
for mem_entry in mem_section.entries() {
mem_entry.validate()?;
memories.push(mem_entry.clone());
}
}
if let Some(global_section) = module.global_section() {
for global_entry in global_section.entries() {
let init = global_entry.init_expr().code();
if init.len() != 2 {
return Err(Error(format!("Init expression should always be with length 2")));
}
let init_expr_ty: ValueType = match init[0] {
Opcode::I32Const(_) => ValueType::I32,
Opcode::I64Const(_) => ValueType::I64,
Opcode::F32Const(_) => ValueType::F32,
Opcode::F64Const(_) => ValueType::F64,
Opcode::GetGlobal(idx) => {
match globals.get(idx as usize) {
Some(target_global) => {
if target_global.is_mutable() {
return Err(Error(
format!("Global {} is mutable", idx)
));
}
target_global.content_type()
},
None => return Err(Error(
format!("Global {} doesn't exists", idx)
)),
}
},
_ => return Err(Error(format!("Non constant opcode in init expr"))),
};
if init_expr_ty != global_entry.global_type().content_type() {
return Err(Error(
format!(
"Trying to initialize variable of type {:?} with value of type {:?}",
global_entry.global_type().content_type(),
init_expr_ty
)
));
}
if init[1] != Opcode::End {
return Err(Error(format!("Expression doesn't ends with `end` opcode")));
}
globals.push(global_entry.global_type().clone());
}
}
ModuleContext {
Ok(ModuleContext {
types,
tables,
memories,
globals,
func_type_indexes,
}
})
}
impl ResizableLimits {
@ -140,7 +179,7 @@ mod tests {
.build();
assert!(validate_module(&m).is_ok());
// mem is always valid without max.
// mem is always valid without max
let m = module()
.memory()
.with_min(10)
@ -169,7 +208,7 @@ mod tests {
.build();
assert!(validate_module(&m).is_ok());
// table is always valid without max.
// table is always valid without max
let m = module()
.table()
.with_min(10)
@ -178,6 +217,115 @@ mod tests {
assert!(validate_module(&m).is_ok());
}
#[test]
fn global_init_const() {
let m = module()
.with_global(
GlobalEntry::new(
GlobalType::new(ValueType::I32, true),
InitExpr::new(
vec![Opcode::I32Const(42), Opcode::End]
)
)
)
.build();
assert!(validate_module(&m).is_ok());
// without delimiting End opcode
let m = module()
.with_global(
GlobalEntry::new(
GlobalType::new(ValueType::I32, true),
InitExpr::new(vec![Opcode::I32Const(42)])
)
)
.build();
assert!(validate_module(&m).is_err());
// init expr type differs from declared global type
let m = module()
.with_global(
GlobalEntry::new(
GlobalType::new(ValueType::I64, true),
InitExpr::new(vec![Opcode::I32Const(42), Opcode::End])
)
)
.build();
assert!(validate_module(&m).is_err());
}
#[test]
fn global_init_global() {
let m = module()
.with_global(
GlobalEntry::new(
GlobalType::new(ValueType::I32, false),
InitExpr::new(vec![Opcode::I32Const(0), Opcode::End])
)
)
.with_global(
GlobalEntry::new(
GlobalType::new(ValueType::I32, true),
InitExpr::new(vec![Opcode::GetGlobal(0), Opcode::End])
)
)
.build();
assert!(validate_module(&m).is_ok());
// get_global can reference only previously defined globals
let m = module()
.with_global(
GlobalEntry::new(
GlobalType::new(ValueType::I32, true),
InitExpr::new(vec![Opcode::GetGlobal(0), Opcode::End])
)
)
.build();
assert!(validate_module(&m).is_err());
// get_global can reference only const globals
let m = module()
.with_global(
GlobalEntry::new(
GlobalType::new(ValueType::I32, true),
InitExpr::new(vec![Opcode::I32Const(0), Opcode::End])
)
)
.with_global(
GlobalEntry::new(
GlobalType::new(ValueType::I32, true),
InitExpr::new(vec![Opcode::GetGlobal(0), Opcode::End])
)
)
.build();
assert!(validate_module(&m).is_err());
}
#[test]
fn global_init_misc() {
// empty init expr
let m = module()
.with_global(
GlobalEntry::new(
GlobalType::new(ValueType::I32, true),
InitExpr::new(vec![Opcode::End])
)
)
.build();
assert!(validate_module(&m).is_err());
// not an constant opcode used
let m = module()
.with_global(
GlobalEntry::new(
GlobalType::new(ValueType::I32, true),
InitExpr::new(vec![Opcode::Unreachable, Opcode::End])
)
)
.build();
assert!(validate_module(&m).is_err());
}
// #[test]
// fn if_else_with_return_type_validation() {
// let module_instance = ModuleInstance::new(Weak::default(), "test".into(), module().build()).unwrap();