give dynamic predicates a better respect for module bounds
This commit is contained in:
@@ -158,6 +158,36 @@ pub fn compile_term(wam: &mut Machine, packet: TopLevelPacket) -> EvalSession
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}
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}
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pub(super)
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fn compile_into_module<R: Read>(wam: &mut Machine, src: R, name: ClauseName) -> EvalSession
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{
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let mut indices = default_index_store!(wam.atom_tbl_of(&name));
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try_eval_session!(setup_indices(wam, name.owning_module(), &mut indices));
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let mut compiler = ListingCompiler::new(&wam.code_repo);
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let results = try_eval_session!(compiler.gather_items(wam, src, &mut indices));
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let module_code = try_eval_session!(compiler.generate_code(results.worker_results, wam,
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&mut indices.code_dir, 0));
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let mut clause_code_generator = ClauseCodeGenerator::new(module_code.len());
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try_eval_session!(clause_code_generator.generate_clause_code(results.dynamic_clause_map,
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wam));
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match wam.indices.modules.get_mut(&name.owning_module()) {
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Some(module) => {
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let code_dir = mem::replace(&mut indices.code_dir, CodeDir::new());
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module.code_dir.extend(as_module_code_dir(code_dir));
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},
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_ => unreachable!()
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};
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wam.code_repo.code.extend(module_code.into_iter());
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clause_code_generator.add_clause_code(wam);
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EvalSession::EntrySuccess
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}
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pub struct GatherResult {
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dynamic_clause_map: DynamicClauseMap,
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pub(crate) worker_results: Vec<PredicateCompileQueue>,
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@@ -186,6 +216,15 @@ impl ClauseCodeGenerator {
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continue;
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}
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if let Some(idx) = wam.indices.code_dir.get(&(name.clone(), arity)) {
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if !idx.is_undefined() && name.owning_module() != idx.module_name() {
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let err_str = format!("{}/{}", name.as_str(), arity);
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let err_str = clause_name!(err_str, wam.indices.atom_tbl());
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return Err(SessionError::CannotOverwriteDynamicClause(err_str));
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}
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}
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let predicate = Predicate(heads_and_tails.into_iter().map(|(head, tail)| {
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let clause = Term::Clause(Cell::default(), clause_name!("clause"),
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vec![Box::new(head), Box::new(tail)],
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@@ -360,7 +399,7 @@ impl ListingCompiler {
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pub(crate)
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fn generate_code(&mut self, decls: Vec<PredicateCompileQueue>, wam: &Machine,
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code_dir: &mut CodeDir)
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code_dir: &mut CodeDir, code_offset: usize)
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-> Result<Code, SessionError>
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{
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let mut code = vec![];
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@@ -369,7 +408,7 @@ impl ListingCompiler {
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let (name, arity) = decl.predicate_indicator().ok_or(SessionError::NamelessEntry)?;
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let non_counted_bt = self.non_counted_bt_preds.contains(&(name.clone(), arity));
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let p = code.len() + wam.code_size();
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let p = code.len() + wam.code_size() + code_offset;
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let mut decl_code = compile_relation(&TopLevel::Predicate(decl), non_counted_bt,
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wam.machine_flags())?;
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@@ -541,9 +580,10 @@ fn compile_work<R: Read>(compiler: &mut ListingCompiler, wam: &mut Machine, src:
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let mut results = try_eval_session!(compiler.gather_items(wam, src, &mut indices));
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let module_code = try_eval_session!(compiler.generate_code(results.worker_results, wam,
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&mut indices.code_dir));
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&mut indices.code_dir, 0));
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let toplvl_code = try_eval_session!(compiler.generate_code(results.toplevel_results, wam,
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&mut results.toplevel_indices.code_dir));
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&mut results.toplevel_indices.code_dir,
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module_code.len()));
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if let Some(ref mut module) = &mut compiler.module {
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module.term_expansions = results.addition_results.take_term_expansions();
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@@ -556,13 +596,18 @@ fn compile_work<R: Read>(compiler: &mut ListingCompiler, wam: &mut Machine, src:
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try_eval_session!(wam.code_repo.compile_hook(CompileTimeHook::UserGoalExpansion, flags));
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if let Some(module) = compiler.module.take() {
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try_eval_session!(add_non_module_code(wam, results.dynamic_clause_map, toplvl_code,
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results.toplevel_indices));
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let mut clause_code_generator = ClauseCodeGenerator::new(module_code.len() + toplvl_code.len());
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try_eval_session!(clause_code_generator.generate_clause_code(results.dynamic_clause_map, wam));
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try_eval_session!(wam.check_toplevel_code(&results.toplevel_indices));
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add_module_code(wam, module, module_code, indices);
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add_toplevel_code(wam, toplvl_code, results.toplevel_indices);
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clause_code_generator.add_clause_code(wam);
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} else {
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try_eval_session!(add_non_module_code(wam, results.dynamic_clause_map, module_code,
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indices));
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indices));
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}
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EvalSession::EntrySuccess
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@@ -574,12 +619,12 @@ fn compile_work<R: Read>(compiler: &mut ListingCompiler, wam: &mut Machine, src:
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pub fn compile_special_form<R: Read>(wam: &mut Machine, src: R) -> Result<Code, SessionError>
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{
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let mut indices = default_index_store!(wam.indices.atom_tbl.clone());
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setup_indices(wam, &mut indices)?;
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setup_indices(wam, clause_name!("builtins"), &mut indices)?;
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let mut compiler = ListingCompiler::new(&wam.code_repo);
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let results = compiler.gather_items(wam, src, &mut indices)?;
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compiler.generate_code(results.worker_results, wam, &mut indices.code_dir)
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compiler.generate_code(results.worker_results, wam, &mut indices.code_dir, 0)
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}
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#[inline]
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@@ -596,12 +641,15 @@ pub fn compile_listing<R: Read>(wam: &mut Machine, src: R, indices: IndexStore)
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}
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}
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fn setup_indices(wam: &mut Machine, indices: &mut IndexStore) -> Result<(), SessionError> {
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if let Some(builtins) = wam.indices.take_module(clause_name!("builtins")) {
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pub(super)
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fn setup_indices(wam: &mut Machine, module: ClauseName, indices: &mut IndexStore)
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-> Result<(), SessionError>
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{
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if let Some(module) = wam.indices.take_module(module) {
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let flags = wam.machine_flags();
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let result = indices.use_module(&mut wam.code_repo, flags, &builtins);
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let result = indices.use_module(&mut wam.code_repo, flags, &module);
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wam.indices.insert_module(builtins);
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wam.indices.insert_module(module);
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result
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} else {
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Err(SessionError::ModuleNotFound)
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@@ -610,6 +658,6 @@ fn setup_indices(wam: &mut Machine, indices: &mut IndexStore) -> Result<(), Sess
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pub fn compile_user_module<R: Read>(wam: &mut Machine, src: R) -> EvalSession {
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let mut indices = default_index_store!(wam.indices.atom_tbl.clone());
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try_eval_session!(setup_indices(wam, &mut indices));
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try_eval_session!(setup_indices(wam, clause_name!("builtins"), &mut indices));
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compile_listing(wam, src, indices)
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}
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@@ -6,8 +6,27 @@ use prolog::machine::compile::*;
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use prolog::machine::machine_errors::*;
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use prolog::num::ToPrimitive;
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use std::io::Read;
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impl Machine {
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fn get_predicate_key(&self, name: RegType, arity: RegType) -> PredicateKey {
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pub(super)
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fn atom_tbl_of(&self, name: &ClauseName) -> TabledData<Atom> {
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match name {
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&ClauseName::User(ref rc) => rc.table.clone(),
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_ => self.indices.atom_tbl()
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}
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}
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fn compile_into_machine<R: Read>(&mut self, src: R, name: ClauseName) -> EvalSession
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{
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match name.owning_module().as_str() {
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"user" => compile_user_module(self, src),
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_ => compile_into_module(self, src, name)
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}
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}
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fn get_predicate_key(&self, name: RegType, arity: RegType) -> PredicateKey
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{
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let name = self.machine_st[name].clone();
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let arity = self.machine_st[arity].clone();
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@@ -25,12 +44,10 @@ impl Machine {
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(name, arity)
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}
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fn print_new_dynamic_clause(&self, addrs: VecDeque<Addr>, name: RegType, arity: RegType)
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fn print_new_dynamic_clause(&self, addrs: VecDeque<Addr>, name: ClauseName, arity: usize)
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-> String
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{
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let mut output = PrinterOutputter::new();
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let (name, arity) = self.get_predicate_key(name, arity);
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output.append(format!(":- dynamic({}/{}). ", name.as_str(), arity).as_str());
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for addr in addrs {
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@@ -56,18 +73,19 @@ impl Machine {
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self.indices.dynamic_code_dir.remove(&(name, arity));
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}
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fn handle_eval_result_from_dynamic_compile(&mut self, pred_str: String, src: ClauseName)
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fn handle_eval_result_from_dynamic_compile(&mut self, pred_str: String, name: ClauseName,
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src: ClauseName)
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{
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let machine_st = mem::replace(&mut self.machine_st, MachineState::new());
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let result = compile_user_module(self, pred_str.as_bytes());
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let result = self.compile_into_machine(pred_str.as_bytes(), name);
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self.machine_st = machine_st;
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if let EvalSession::Error(err) = result {
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let h = self.machine_st.heap.h;
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let stub = MachineError::functor_stub(src, 1);
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let err = MachineError::session_error(h, err);
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let err = self.machine_st.error_form(err, stub);
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let err = self.machine_st.error_form(err, stub);
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self.machine_st.throw_exception(err);
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}
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@@ -75,6 +93,8 @@ impl Machine {
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fn recompile_dynamic_predicate(&mut self, place: DynamicAssertPlace)
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{
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let (name, arity) = self.get_predicate_key(temp_v!(3), temp_v!(4));
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let stub = MachineError::functor_stub(place.predicate_name(), 1);
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let pred_str = match self.machine_st.try_from_list(temp_v!(2), stub) {
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Ok(addrs) => {
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@@ -82,16 +102,17 @@ impl Machine {
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let added_clause = self.machine_st[temp_v!(1)].clone();
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place.push_to_queue(&mut addrs, added_clause);
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self.print_new_dynamic_clause(addrs, temp_v!(3), temp_v!(4))
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self.print_new_dynamic_clause(addrs, name.clone(), arity)
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},
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Err(err) =>
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return self.machine_st.throw_exception(err)
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};
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self.handle_eval_result_from_dynamic_compile(pred_str, place.predicate_name());
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self.handle_eval_result_from_dynamic_compile(pred_str, name, place.predicate_name());
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}
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fn retract_from_dynamic_predicate(&mut self) {
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fn retract_from_dynamic_predicate(&mut self)
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{
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let index = self.machine_st[temp_v!(3)].clone();
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let index = match self.machine_st.store(self.machine_st.deref(index)) {
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Addr::Con(Constant::Number(Number::Integer(n))) => n.to_usize().unwrap(),
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@@ -99,6 +120,8 @@ impl Machine {
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};
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let stub = MachineError::functor_stub(clause_name!("retract"), 1);
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let (name, arity) = self.get_predicate_key(temp_v!(1), temp_v!(2));
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let pred_str = match self.machine_st.try_from_list(temp_v!(4), stub) {
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Ok(addrs) => {
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let mut addrs = VecDeque::from(addrs);
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@@ -109,13 +132,13 @@ impl Machine {
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return;
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}
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self.print_new_dynamic_clause(addrs, temp_v!(1), temp_v!(2))
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self.print_new_dynamic_clause(addrs, name.clone(), arity)
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},
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Err(err) =>
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return self.machine_st.throw_exception(err)
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};
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self.handle_eval_result_from_dynamic_compile(pred_str, clause_name!("retract"));
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self.handle_eval_result_from_dynamic_compile(pred_str, name, clause_name!("retract"));
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}
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pub(super)
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@@ -369,6 +369,7 @@ impl MachineState {
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pub enum SessionError {
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CannotOverwriteBuiltIn(ClauseName),
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CannotOverwriteDynamicClause(ClauseName),
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CannotOverwriteImport(ClauseName),
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ModuleDoesNotContainExport,
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ModuleNotFound,
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@@ -389,16 +389,27 @@ pub struct IndexStore {
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}
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impl IndexStore {
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pub fn predicate_exists(&self, name: ClauseName, arity: usize,
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pub fn predicate_exists(&self, name: ClauseName, module: ClauseName, arity: usize,
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op_spec: Option<(usize, Specifier)>)
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-> bool
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{
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match ClauseType::from(name, arity, op_spec) {
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ClauseType::Named(name, arity, _) =>
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self.code_dir.contains_key(&(name, arity)),
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ClauseType::Op(op_decl, ..) =>
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self.code_dir.contains_key(&(op_decl.name(), op_decl.arity())),
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_ => true
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match self.modules.get(&module) {
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Some(module) =>
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match ClauseType::from(name, arity, op_spec) {
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ClauseType::Named(name, arity, _) =>
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module.code_dir.contains_key(&(name, arity)),
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ClauseType::Op(op_decl, ..) =>
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module.code_dir.contains_key(&(op_decl.name(), op_decl.arity())),
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_ => true
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},
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None =>
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match ClauseType::from(name, arity, op_spec) {
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ClauseType::Named(name, arity, _) =>
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self.code_dir.contains_key(&(name, arity)),
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ClauseType::Op(op_decl, ..) =>
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self.code_dir.contains_key(&(op_decl.name(), op_decl.arity())),
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_ => true
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}
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}
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}
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@@ -226,7 +226,7 @@ impl Machine {
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// ensure we don't try to overwrite an existing predicate from a different module.
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if !existing_idx.is_undefined() && !idx.is_undefined() {
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// allow the overwriting of user-level predicates by all other predicates.
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if existing_idx.module_name() == key.0.owning_module() {
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if existing_idx.module_name().as_str() == "user" {
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continue;
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}
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@@ -370,18 +370,18 @@ impl MachineState {
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},
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&SystemClauseType::GetCurrentPredicateList => {
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let mut addrs = vec![];
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for ((name, arity), idx) in indices.code_dir.iter() {
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if idx.is_undefined() {
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continue;
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}
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let h = self.heap.h;
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self.heap.push(HeapCellValue::NamedStr(2, clause_name!("/"), Some((400, YFX))));
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self.heap.push(HeapCellValue::Addr(Addr::Con(Constant::Atom(name.clone(), None))));
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self.heap.push(heap_integer!(*arity));
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addrs.push(Addr::Str(h));
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}
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@@ -614,12 +614,16 @@ impl MachineState {
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self.fail = match self.store(self.deref(head)) {
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Addr::Str(s) =>
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match self.heap[s].clone() {
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HeapCellValue::NamedStr(arity, name, op_spec) =>
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indices.predicate_exists(name, arity, op_spec),
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HeapCellValue::NamedStr(arity, name, op_spec) => {
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let module = name.owning_module();
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indices.predicate_exists(name, module, arity, op_spec)
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},
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_ => unreachable!()
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},
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Addr::Con(Constant::Atom(name, op_spec)) =>
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indices.predicate_exists(name, 0, op_spec),
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Addr::Con(Constant::Atom(name, op_spec)) => {
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let module = name.owning_module();
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indices.predicate_exists(name, module, 0, op_spec)
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},
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head => {
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let err = MachineError::type_error(ValidType::Callable, head);
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let stub = MachineError::functor_stub(clause_name!("clause"), 2);
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@@ -249,19 +249,27 @@ impl fmt::Display for IndexingInstruction {
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impl fmt::Display for SessionError {
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fn fmt(&self, f: &mut fmt::Formatter) -> fmt::Result {
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match self {
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&SessionError::CannotOverwriteDynamicClause(ref msg) =>
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write!(f, "cannot overwrite dynamic predicate {}", msg),
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&SessionError::CannotOverwriteBuiltIn(ref msg) =>
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write!(f, "cannot overwrite {}", msg),
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&SessionError::CannotOverwriteImport(ref msg) =>
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write!(f, "cannot overwrite import {}", msg),
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&SessionError::ModuleNotFound => write!(f, "module not found."),
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&SessionError::ModuleDoesNotContainExport => write!(f, "module does not contain claimed export."),
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&SessionError::QueryFailure => write!(f, "false."),
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&SessionError::QueryFailureWithException(ref e) => write!(f, "{}", error_string(e)),
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&SessionError::ModuleDoesNotContainExport =>
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write!(f, "module does not contain claimed export."),
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&SessionError::QueryFailure =>
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write!(f, "false."),
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&SessionError::QueryFailureWithException(ref e) =>
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write!(f, "{}", error_string(e)),
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&SessionError::OpIsInfixAndPostFix =>
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write!(f, "cannot define an op to be both postfix and infix."),
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&SessionError::NamelessEntry => write!(f, "the predicate head is not an atom or clause."),
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&SessionError::ParserError(ref e) => write!(f, "syntax_error({})", e.as_str()),
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&SessionError::UserPrompt => write!(f, "enter predicate at [user] prompt")
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&SessionError::NamelessEntry =>
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write!(f, "the predicate head is not an atom or clause."),
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&SessionError::ParserError(ref e) =>
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write!(f, "syntax_error({})", e.as_str()),
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&SessionError::UserPrompt =>
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write!(f, "enter predicate at [user] prompt")
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}
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}
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}
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Reference in New Issue
Block a user