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use crate::dynamic_analysis::{
bind_formals, concretize, ConcretizedFormals, ConcretizedSecondaryIndexes,
};
use anyhow::{anyhow, bail, Result};
use move_bytecode_utils::module_cache::GetModule;
use move_core_types::{
account_address::AccountAddress,
identifier::{IdentStr, Identifier},
language_storage::{ModuleId, ResourceKey, TypeTag},
resolver::MoveResolver,
};
use move_read_write_set_types::ReadWriteSet;
use std::collections::BTreeMap;
pub struct NormalizedReadWriteSetAnalysis(BTreeMap<ModuleId, BTreeMap<Identifier, ReadWriteSet>>);
impl NormalizedReadWriteSetAnalysis {
pub fn new(inner: BTreeMap<ModuleId, BTreeMap<Identifier, ReadWriteSet>>) -> Self {
Self(inner)
}
pub fn trim(&self) -> Self {
Self(
self.0
.iter()
.map(|(module_id, func_map)| {
(
module_id.clone(),
func_map
.iter()
.map(|(func_name, analysis_result)| {
(func_name.clone(), analysis_result.trim())
})
.collect(),
)
})
.collect(),
)
}
fn get_summary(&self, module: &ModuleId, fun: &IdentStr) -> Option<&ReadWriteSet> {
self.0.get(module)?.get(fun)
}
pub fn get_keys_written(
&self,
module: &ModuleId,
fun: &IdentStr,
signers: &[AccountAddress],
actuals: &[Vec<u8>],
type_actuals: &[TypeTag],
blockchain_view: &impl MoveResolver,
) -> Result<Vec<ResourceKey>> {
self.get_concretized_keys(
module,
fun,
signers,
actuals,
type_actuals,
blockchain_view,
true,
)
}
pub fn get_keys_read(
&self,
module: &ModuleId,
fun: &IdentStr,
signers: &[AccountAddress],
actuals: &[Vec<u8>],
type_actuals: &[TypeTag],
blockchain_view: &impl MoveResolver,
) -> Result<Vec<ResourceKey>> {
self.get_concretized_keys(
module,
fun,
signers,
actuals,
type_actuals,
blockchain_view,
false,
)
}
pub fn get_concretized_keys(
&self,
module: &ModuleId,
fun: &IdentStr,
signers: &[AccountAddress],
actuals: &[Vec<u8>],
type_actuals: &[TypeTag],
blockchain_view: &impl MoveResolver,
is_write: bool,
) -> Result<Vec<ResourceKey>> {
if let Some(state) = self.get_summary(module, fun) {
let results = concretize(
state,
module,
fun,
signers,
actuals,
type_actuals,
blockchain_view,
)?;
Ok(if is_write {
results
.get_keys_written()
.ok_or_else(|| anyhow!("Failed to get keys written"))?
} else {
results
.get_keys_read()
.ok_or_else(|| anyhow!("Failed to get keys read"))?
})
} else {
bail!("Couldn't resolve function {:?}::{:?}", module, fun)
}
}
pub fn get_concretized_summary(
&self,
module: &ModuleId,
fun: &IdentStr,
signers: &[AccountAddress],
actuals: &[Vec<u8>],
type_actuals: &[TypeTag],
blockchain_view: &impl MoveResolver,
) -> Result<ConcretizedSecondaryIndexes> {
let state = self
.get_summary(module, fun)
.ok_or_else(|| anyhow!("Function {}::{} to found", module, fun))?;
concretize(
state,
module,
fun,
signers,
actuals,
type_actuals,
blockchain_view,
)
}
pub fn get_canonical_summary(&self, module: &ModuleId, fun: &IdentStr) -> Option<ReadWriteSet> {
self.get_summary(module, fun).cloned()
}
pub fn get_partially_concretized_summary<R: GetModule>(
&self,
module: &ModuleId,
fun: &IdentStr,
signers: &[AccountAddress],
actuals: &[Vec<u8>],
type_actuals: &[TypeTag],
module_cache: &R,
) -> Result<ConcretizedFormals> {
let state = self
.get_summary(module, fun)
.ok_or_else(|| anyhow!("Function {}::{} not found", module, fun))?;
bind_formals(
state,
module,
fun,
signers,
actuals,
type_actuals,
module_cache,
)
}
pub fn may_have_secondary_indexes(&self, module: &ModuleId, fun: &IdentStr) -> Result<bool> {
let state = self
.get_summary(module, fun)
.ok_or_else(|| anyhow!("Function {}::{} to found", module, fun))?;
let mut has_secondary_index = false;
state.iter_paths(|offset, _| {
if offset.has_secondary_index() {
has_secondary_index = true;
}
Some(())
});
Ok(has_secondary_index)
}
pub fn into_inner(self) -> BTreeMap<ModuleId, BTreeMap<Identifier, ReadWriteSet>> {
self.0
}
}