fix goal expansion in disjunctions, add warnings for singleton variables

This commit is contained in:
Mark Thom
2019-10-03 22:13:34 -06:00
parent 02d1ed237f
commit b61ed65208
11 changed files with 348 additions and 116 deletions

View File

@@ -1,6 +1,6 @@
[package] [package]
name = "scryer-prolog" name = "scryer-prolog"
version = "0.8.98" version = "0.8.99"
authors = ["Mark Thom <markjordanthom@gmail.com>"] authors = ["Mark Thom <markjordanthom@gmail.com>"]
build = "build.rs" build = "build.rs"
repository = "https://github.com/mthom/scryer-prolog" repository = "https://github.com/mthom/scryer-prolog"
@@ -18,7 +18,7 @@ lazy_static = "1.4.0"
libc = "0.2.62" libc = "0.2.62"
nix = "0.15.0" nix = "0.15.0"
ordered-float = "0.5.0" ordered-float = "0.5.0"
prolog_parser = "0.8.30" prolog_parser = "0.8.31"
ref_thread_local = "0.0.0" ref_thread_local = "0.0.0"
rug = "1.4.0" rug = "1.4.0"
rustyline = "5.0.3" rustyline = "5.0.3"

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@@ -20,7 +20,7 @@ use std::vec::Vec;
pub struct CodeGenerator<TermMarker> { pub struct CodeGenerator<TermMarker> {
flags: MachineFlags, flags: MachineFlags,
marker: TermMarker, marker: TermMarker,
var_count: IndexMap<Rc<Var>, usize>, pub var_count: IndexMap<Rc<Var>, usize>,
non_counted_bt: bool, non_counted_bt: bool,
} }
@@ -867,8 +867,8 @@ impl<'a, TermMarker: Allocator<'a>> CodeGenerator<TermMarker> {
self.marker.reset(); self.marker.reset();
let mut clause_code = match clause { let mut clause_code = match clause {
&PredicateClause::Fact(ref fact) => self.compile_fact(fact), &PredicateClause::Fact(ref fact, ..) => self.compile_fact(fact),
&PredicateClause::Rule(ref rule) => try!(self.compile_rule(rule)), &PredicateClause::Rule(ref rule, ..) => self.compile_rule(rule)?,
}; };
if num_clauses > 1 { if num_clauses > 1 {

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@@ -3,6 +3,7 @@ use prolog_parser::parser::OpDesc;
use prolog_parser::tabled_rc::*; use prolog_parser::tabled_rc::*;
use prolog::clause_types::*; use prolog::clause_types::*;
use prolog::iterators::*;
use prolog::machine::machine_errors::*; use prolog::machine::machine_errors::*;
use prolog::machine::machine_indices::*; use prolog::machine::machine_indices::*;
use prolog::ordered_float::OrderedFloat; use prolog::ordered_float::OrderedFloat;
@@ -23,41 +24,75 @@ pub type JumpStub = Vec<Term>;
#[derive(Clone)] #[derive(Clone)]
pub enum TopLevel { pub enum TopLevel {
Declaration(Declaration), Declaration(Declaration),
Fact(Term), Fact(Term, usize, usize), // Term, line_num, col_num
Predicate(Predicate), Predicate(Predicate),
Query(Vec<QueryTerm>), Query(Vec<QueryTerm>),
Rule(Rule), Rule(Rule, usize, usize), // Rule, line_num, col_num
} }
impl TopLevel { impl TopLevel {
pub fn name(&self) -> Option<ClauseName> { pub fn name(&self) -> Option<ClauseName> {
match self { match self {
&TopLevel::Declaration(_) => None, &TopLevel::Declaration(_) => None,
&TopLevel::Fact(ref term) => term.name(), &TopLevel::Fact(ref term, ..) => term.name(),
&TopLevel::Predicate(ref clauses) => clauses.0.first().and_then(|ref term| term.name()), &TopLevel::Predicate(ref clauses) => clauses.0.first().and_then(|ref term| term.name()),
&TopLevel::Query(_) => None, &TopLevel::Query(_) => None,
&TopLevel::Rule(Rule { ref head, .. }) => Some(head.0.clone()), &TopLevel::Rule(Rule { ref head, .. }, ..) => Some(head.0.clone()),
} }
} }
pub fn arity(&self) -> usize { pub fn arity(&self) -> usize {
match self { match self {
&TopLevel::Declaration(_) => 0, &TopLevel::Declaration(_) => 0,
&TopLevel::Fact(ref term) => term.arity(), &TopLevel::Fact(ref term, ..) => term.arity(),
&TopLevel::Predicate(ref clauses) => clauses.0.first().map(|t| t.arity()).unwrap_or(0), &TopLevel::Predicate(ref clauses) => clauses.0.first().map(|t| t.arity()).unwrap_or(0),
&TopLevel::Query(_) => 0, &TopLevel::Query(_) => 0,
&TopLevel::Rule(Rule { ref head, .. }) => head.1.len(), &TopLevel::Rule(Rule { ref head, .. }, ..) => head.1.len(),
} }
} }
pub fn is_end_of_file_atom(&self) -> bool { pub fn is_end_of_file_atom(&self) -> bool {
match self { match self {
&TopLevel::Fact(Term::Constant(_, Constant::Atom(ref name, _))) => { &TopLevel::Fact(Term::Constant(_, Constant::Atom(ref name, _)), ..) => {
return name.as_str() == "end_of_file" return name.as_str() == "end_of_file"
} }
_ => false, _ => false,
} }
} }
pub fn location(&self) -> Option<(usize, usize)> {
match self {
&TopLevel::Fact(_, line_num, col_num) | &TopLevel::Rule(_, line_num, col_num) =>
Some((line_num, col_num)),
&TopLevel::Predicate(Predicate(ref clauses)) =>
clauses.first().map(|clause| (clause.line_num(), clause.col_num())),
_ =>
None
}
}
pub fn var_count(&self) -> Option<Vec<IndexMap<Rc<Var>, usize>>> {
match self {
&TopLevel::Fact(ref term, ..) => {
let mut var_count = IndexMap::new();
for term_ref in breadth_first_iter(term, true) {
if let TermRef::Var(_, _, var) = term_ref {
let entry = var_count.entry(var).or_insert(0);
*entry += 1;
}
}
Some(vec![var_count])
}
&TopLevel::Rule(ref rule, ..) =>
Some(vec![rule.var_count()]),
&TopLevel::Predicate(ref predicate) =>
Some(predicate.var_count()),
_ =>
None
}
}
} }
#[derive(Clone, Copy)] #[derive(Clone, Copy)]
@@ -110,6 +145,40 @@ pub struct Rule {
pub clauses: Vec<QueryTerm>, pub clauses: Vec<QueryTerm>,
} }
impl Rule {
pub fn var_count(&self) -> IndexMap<Rc<Var>, usize> {
let mut var_count = IndexMap::new();
for root_term in &self.head.1 {
// true because the root term is iterable.
for term_ref in breadth_first_iter(root_term, true) {
if let TermRef::Var(_, _, var) = term_ref {
let entry = var_count.entry(var).or_insert(0);
*entry += 1;
}
}
}
for term_ref in query_term_post_order_iter(&self.head.2) {
if let TermRef::Var(_, _, var) = term_ref {
let entry = var_count.entry(var).or_insert(0);
*entry += 1;
}
}
for clause in &self.clauses {
for term_ref in query_term_post_order_iter(clause) {
if let TermRef::Var(_, _, var) = term_ref {
let entry = var_count.entry(var).or_insert(0);
*entry += 1;
}
}
}
var_count
}
}
#[derive(Clone)] #[derive(Clone)]
pub struct Predicate(pub Vec<PredicateClause>); pub struct Predicate(pub Vec<PredicateClause>);
@@ -130,35 +199,72 @@ impl Predicate {
.first() .first()
.and_then(|clause| clause.name().map(|name| (name, clause.arity()))) .and_then(|clause| clause.name().map(|name| (name, clause.arity())))
} }
pub fn var_count(&self) -> Vec<IndexMap<Rc<Var>, usize>> {
self.0.iter().map(|clause| clause.var_count()).collect()
}
} }
pub type CompiledResult = (Predicate, VecDeque<TopLevel>); pub type CompiledResult = (Predicate, VecDeque<TopLevel>);
#[derive(Clone)] #[derive(Clone)]
pub enum PredicateClause { pub enum PredicateClause {
Fact(Term), Fact(Term, usize, usize), // Term, line number, column number.
Rule(Rule), Rule(Rule, usize, usize), // Term, line number, column number.
} }
impl PredicateClause { impl PredicateClause {
pub fn first_arg(&self) -> Option<&Term> { pub fn first_arg(&self) -> Option<&Term> {
match self { match self {
&PredicateClause::Fact(ref term) => term.first_arg(), &PredicateClause::Fact(ref term, ..) => term.first_arg(),
&PredicateClause::Rule(ref rule) => rule.head.1.first().map(|bt| bt.as_ref()), &PredicateClause::Rule(ref rule, ..) => rule.head.1.first().map(|bt| bt.as_ref()),
} }
} }
pub fn arity(&self) -> usize { pub fn arity(&self) -> usize {
match self { match self {
&PredicateClause::Fact(ref term) => term.arity(), &PredicateClause::Fact(ref term, ..) => term.arity(),
&PredicateClause::Rule(ref rule) => rule.head.1.len(), &PredicateClause::Rule(ref rule, ..) => rule.head.1.len(),
} }
} }
pub fn name(&self) -> Option<ClauseName> { pub fn name(&self) -> Option<ClauseName> {
match self { match self {
&PredicateClause::Fact(ref term) => term.name(), &PredicateClause::Fact(ref term, ..) => term.name(),
&PredicateClause::Rule(ref rule) => Some(rule.head.0.clone()), &PredicateClause::Rule(ref rule, ..) => Some(rule.head.0.clone()),
}
}
pub fn line_num(&self) -> usize {
match self {
&PredicateClause::Fact(_, line_num, _) => line_num,
&PredicateClause::Rule(_, line_num, _) => line_num
}
}
pub fn col_num(&self) -> usize {
match self {
&PredicateClause::Fact(_, _, col_num) => col_num,
&PredicateClause::Rule(_, _, col_num) => col_num
}
}
pub fn var_count(&self) -> IndexMap<Rc<Var>, usize> {
match self {
&PredicateClause::Fact(ref term, ..) => {
let mut var_count = IndexMap::new();
for term_ref in breadth_first_iter(term, true) {
if let TermRef::Var(_, _, var) = term_ref {
let entry = var_count.entry(var).or_insert(0);
*entry += 1;
}
}
var_count
}
&PredicateClause::Rule(ref rule, ..) =>
rule.var_count()
} }
} }
} }

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@@ -112,7 +112,8 @@ impl<'a> QueryIterator<'a> {
state_stack: vec![], state_stack: vec![],
} }
} }
&Term::Var(ref cell, ref var) => TermIterState::Var(Level::Root, cell, (*var).clone()), &Term::Var(ref cell, ref var) =>
TermIterState::Var(Level::Root, cell, (*var).clone()),
}; };
QueryIterator { QueryIterator {

View File

@@ -81,10 +81,12 @@ expand_body_term([Arg|Args], ModTerm, N0, N) :-
append([Arg|Args], '$VAR'(N), ModArgs), append([Arg|Args], '$VAR'(N), ModArgs),
ModTerm = ('$VAR'(N0) = ModArgs). ModTerm = ('$VAR'(N0) = ModArgs).
expand_body_term((P -> Q), (PModTerm -> QModTerm), N0, N) :- expand_body_term((P -> Q), (PModTerm -> QModTerm), N0, N) :-
!, expand_body(P, PModTerm, N0, N1), !,
expand_body(P, PModTerm, N0, N1),
expand_body(Q, QModTerm, N1, N). expand_body(Q, QModTerm, N1, N).
expand_body_term((P ; Q), (PModTerm ; QModTerm), N0, N) :- expand_body_term((P ; Q), (PModTerm ; QModTerm), N0, N) :-
!, expand_body(P, PModTerm0, N0, N1), !,
expand_body(P, PModTerm0, N0, N1),
expand_body(Q, QModTerm0, N0, N2), expand_body(Q, QModTerm0, N0, N2),
( N1 == N2 -> PModTerm = PModTerm0, ( N1 == N2 -> PModTerm = PModTerm0,
QModTerm = QModTerm0, QModTerm = QModTerm0,

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@@ -56,16 +56,18 @@ fn fix_filename(atom_tbl: TabledData<Atom>, filename: &str) -> Result<PathBuf, S
Ok(path) Ok(path)
} }
fn load_module<R: Read>(wam: &mut Machine, stream: ParsingStream<R>) fn load_module<R: Read>(
-> Result<Option<ClauseName>, SessionError> wam: &mut Machine,
{ stream: ParsingStream<R>,
suppress_warnings: bool,
) -> Result<Option<ClauseName>, SessionError> {
// follow the operation of compile_user_module, but before // follow the operation of compile_user_module, but before
// compiling, check that a module is declared in the file. if not, // compiling, check that a module is declared in the file. if not,
// throw an exception. // throw an exception.
let mut indices = default_index_store!(wam.indices.atom_tbl.clone()); let mut indices = default_index_store!(wam.indices.atom_tbl.clone());
setup_indices(wam, clause_name!("builtins"), &mut indices)?; setup_indices(wam, clause_name!("builtins"), &mut indices)?;
let mut compiler = ListingCompiler::new(&wam.code_repo); let mut compiler = ListingCompiler::new(&wam.code_repo, suppress_warnings);
let results = compiler.gather_items(wam, stream, &mut indices)?; let results = compiler.gather_items(wam, stream, &mut indices)?;
let module_name = if let Some(ref module) = &compiler.module { let module_name = if let Some(ref module) = &compiler.module {
@@ -81,9 +83,11 @@ fn load_module<R: Read>(wam: &mut Machine, stream: ParsingStream<R>)
} }
pub(super) pub(super)
fn load_module_from_file(wam: &mut Machine, filename: &str) fn load_module_from_file(
-> Result<Option<ClauseName>, SessionError> wam: &mut Machine,
{ filename: &str,
suppress_warnings: bool,
) -> Result<Option<ClauseName>, SessionError> {
let path = fix_filename(wam.indices.atom_tbl.clone(), filename)?; let path = fix_filename(wam.indices.atom_tbl.clone(), filename)?;
let file_handle = File::open(&path).or_else(|_| { let file_handle = File::open(&path).or_else(|_| {
@@ -91,24 +95,51 @@ fn load_module_from_file(wam: &mut Machine, filename: &str)
Err(SessionError::InvalidFileName(filename)) Err(SessionError::InvalidFileName(filename))
})?; })?;
load_module(wam, parsing_stream(file_handle)) load_module(wam, parsing_stream(file_handle), suppress_warnings)
} }
pub type PredicateCompileQueue = (Predicate, VecDeque<TopLevel>); pub type PredicateCompileQueue = (Predicate, VecDeque<TopLevel>);
// throw errors if declaration or query found. // throw errors if declaration or query found.
fn compile_relation( fn compile_relation(
tl: &TopLevel, cg: &mut CodeGenerator<DebrayAllocator>,
non_counted_bt: bool, tl: &TopLevel
flags: MachineFlags,
) -> Result<Code, ParserError> { ) -> Result<Code, ParserError> {
let mut cg = CodeGenerator::<DebrayAllocator>::new(non_counted_bt, flags);
match tl { match tl {
&TopLevel::Declaration(_) | &TopLevel::Query(_) => Err(ParserError::ExpectedRel), &TopLevel::Declaration(_) | &TopLevel::Query(_) => Err(ParserError::ExpectedRel),
&TopLevel::Predicate(ref clauses) => cg.compile_predicate(&clauses.0), &TopLevel::Predicate(ref clauses) => cg.compile_predicate(&clauses.0),
&TopLevel::Fact(ref fact) => Ok(cg.compile_fact(fact)), &TopLevel::Fact(ref fact, ..) => Ok(cg.compile_fact(fact)),
&TopLevel::Rule(ref rule) => cg.compile_rule(rule), &TopLevel::Rule(ref rule, ..) => cg.compile_rule(rule),
}
}
fn issue_singleton_warnings(
tl: &TopLevel,
module_name: ClauseName,
) {
if let Some((line_num, _)) = tl.location() {
if let Some(var_counts) = tl.var_count() {
for var_count in var_counts {
let mut singletons = vec![];
for (var, count) in var_count {
if count == 1 && !var.starts_with("_") && var.as_str() != "!" {
singletons.push(var);
}
}
if let Some(last_var) = singletons.pop() {
print!("Warning: {}:{}: Singleton variables: [",
module_name, line_num);
for var in singletons {
print!("{}, ", var);
}
println!("{}]", last_var);
}
}
}
} }
} }
@@ -139,7 +170,9 @@ pub fn compile_appendix(
) -> Result<(), ParserError> { ) -> Result<(), ParserError> {
for tl in queue.iter() { for tl in queue.iter() {
set_first_index(code); set_first_index(code);
code.append(&mut compile_relation(tl, non_counted_bt, flags)?); let mut cg = CodeGenerator::<DebrayAllocator>::new(non_counted_bt, flags);
let decl_code = compile_relation(&mut cg, tl)?;
code.extend(decl_code.into_iter());
} }
Ok(()) Ok(())
@@ -209,7 +242,7 @@ pub fn compile_term(wam: &mut Machine, packet: TopLevelPacket) -> EvalSession {
} }
} }
TopLevelPacket::Decl(TopLevel::Declaration(decl), _) => { TopLevelPacket::Decl(TopLevel::Declaration(decl), _) => {
let mut compiler = ListingCompiler::new(&wam.code_repo); let mut compiler = ListingCompiler::new(&wam.code_repo, false);
let indices = try_eval_session!(compile_decl(wam, &mut compiler, decl)); let indices = try_eval_session!(compile_decl(wam, &mut compiler, decl));
try_eval_session!(wam.check_toplevel_code(&indices)); try_eval_session!(wam.check_toplevel_code(&indices));
@@ -294,7 +327,7 @@ pub(super) fn compile_into_module<R: Read>(
let mut indices = default_index_store!(wam.atom_tbl_of(&name)); let mut indices = default_index_store!(wam.atom_tbl_of(&name));
try_eval_session!(setup_indices(wam, module_name.clone(), &mut indices)); try_eval_session!(setup_indices(wam, module_name.clone(), &mut indices));
let mut compiler = ListingCompiler::new(&wam.code_repo); let mut compiler = ListingCompiler::new(&wam.code_repo, true);
match compile_into_module_impl(wam, &mut compiler, module_name, src, indices) { match compile_into_module_impl(wam, &mut compiler, module_name, src, indices) {
Ok(()) => EvalSession::EntrySuccess, Ok(()) => EvalSession::EntrySuccess,
@@ -382,14 +415,18 @@ impl ClauseCodeGenerator {
vec![Box::new(head.clone()), Box::new(tail.clone())], vec![Box::new(head.clone()), Box::new(tail.clone())],
None, None,
); );
PredicateClause::Fact(clause) PredicateClause::Fact(clause, 0, 0)
}) })
.collect(), .collect(),
); );
let p = self.code.len() + wam.code_repo.code.len() + self.len_offset; let p = self.code.len() + wam.code_repo.code.len() + self.len_offset;
let mut decl_code = let mut cg = CodeGenerator::<DebrayAllocator>::new(false, wam.machine_flags());
compile_relation(&TopLevel::Predicate(predicate), false, wam.machine_flags())?;
let mut decl_code = compile_relation(
&mut cg,
&TopLevel::Predicate(predicate),
)?;
compile_appendix(&mut decl_code, &VecDeque::new(), false, wam.machine_flags())?; compile_appendix(&mut decl_code, &VecDeque::new(), false, wam.machine_flags())?;
@@ -404,16 +441,18 @@ impl ClauseCodeGenerator {
{ {
wam.code_repo.code.extend(self.code.into_iter()); wam.code_repo.code.extend(self.code.into_iter());
for ((name, arity), _) in dynamic_code_dir {
wam.indices.dynamic_code_dir.insert((name.owning_module(), name.clone(), arity),
DynamicPredicateInfo::default());
if self.module_name.as_str() == "user" { if self.module_name.as_str() == "user" {
wam.indices.code_dir.entry((name, arity)) for ((name, arity), _) in &dynamic_code_dir {
.or_insert(CodeIndex::dynamic_undefined(self.module_name.clone())); wam.indices.code_dir.entry((name.clone(), *arity))
.or_insert(CodeIndex::dynamic_undefined(clause_name!("user")));
} }
} }
for ((name, arity), _) in dynamic_code_dir {
wam.indices.dynamic_code_dir.insert((name.owning_module(), name, arity),
DynamicPredicateInfo::default());
}
for ((name, arity), p) in self.pi_to_loc { for ((name, arity), p) in self.pi_to_loc {
let entry = wam let entry = wam
.indices .indices
@@ -432,7 +471,8 @@ pub struct ListingCompiler {
user_term_dir: TermDir, user_term_dir: TermDir,
orig_term_expansion_lens: (usize, usize), orig_term_expansion_lens: (usize, usize),
orig_goal_expansion_lens: (usize, usize), orig_goal_expansion_lens: (usize, usize),
initialization_goals: (Vec<QueryTerm>, VecDeque<TopLevel>) initialization_goals: (Vec<QueryTerm>, VecDeque<TopLevel>),
suppress_warnings: bool
} }
fn add_toplevel_code(wam: &mut Machine, code: Code, mut indices: IndexStore) { fn add_toplevel_code(wam: &mut Machine, code: Code, mut indices: IndexStore) {
@@ -480,11 +520,14 @@ fn add_non_module_code(
} }
pub(super) pub(super)
fn load_library(wam: &mut Machine, name: ClauseName) -> Result<ClauseName, SessionError> fn load_library(
{ wam: &mut Machine,
name: ClauseName,
suppress_warnings: bool,
) -> Result<ClauseName, SessionError> {
match LIBRARIES.borrow().get(name.as_str()) { match LIBRARIES.borrow().get(name.as_str()) {
Some(code) => { Some(code) => {
let module_name = load_module(wam, parsing_stream(code.as_bytes()))?; let module_name = load_module(wam, parsing_stream(code.as_bytes()), suppress_warnings)?;
module_name.ok_or(SessionError::NoModuleDeclaration(name)) module_name.ok_or(SessionError::NoModuleDeclaration(name))
} }
None => Err(SessionError::ModuleNotFound) None => Err(SessionError::ModuleNotFound)
@@ -493,7 +536,7 @@ fn load_library(wam: &mut Machine, name: ClauseName) -> Result<ClauseName, Sessi
impl ListingCompiler { impl ListingCompiler {
#[inline] #[inline]
pub fn new(code_repo: &CodeRepo) -> Self { pub fn new(code_repo: &CodeRepo, suppress_warnings: bool) -> Self {
ListingCompiler { ListingCompiler {
non_counted_bt_preds: IndexSet::new(), non_counted_bt_preds: IndexSet::new(),
module: None, module: None,
@@ -502,7 +545,8 @@ impl ListingCompiler {
.term_dir_entry_len((clause_name!("term_expansion"), 2)), .term_dir_entry_len((clause_name!("term_expansion"), 2)),
orig_goal_expansion_lens: code_repo orig_goal_expansion_lens: code_repo
.term_dir_entry_len((clause_name!("goal_expansion"), 2)), .term_dir_entry_len((clause_name!("goal_expansion"), 2)),
initialization_goals: (vec![], VecDeque::from(vec![])) initialization_goals: (vec![], VecDeque::from(vec![])),
suppress_warnings
} }
} }
@@ -636,14 +680,17 @@ impl ListingCompiler {
let non_counted_bt = self.non_counted_bt_preds.contains(&(name.clone(), arity)); let non_counted_bt = self.non_counted_bt_preds.contains(&(name.clone(), arity));
let p = code.len() + wam.code_repo.code.len() + code_offset; let p = code.len() + wam.code_repo.code.len() + code_offset;
let mut decl_code = compile_relation( let mut cg = CodeGenerator::<DebrayAllocator>::new(non_counted_bt, wam.machine_flags());
&TopLevel::Predicate(decl),
non_counted_bt, let decl = TopLevel::Predicate(decl);
wam.machine_flags(), let mut decl_code = compile_relation(&mut cg, &decl)?;
)?;
compile_appendix(&mut decl_code, &queue, non_counted_bt, wam.machine_flags())?; compile_appendix(&mut decl_code, &queue, non_counted_bt, wam.machine_flags())?;
if !self.suppress_warnings {
issue_singleton_warnings(&decl, self.get_module_name());
}
let idx = code_dir let idx = code_dir
.entry((name.clone(), arity)) .entry((name.clone(), arity))
.or_insert(CodeIndex::default()); .or_insert(CodeIndex::default());
@@ -748,7 +795,7 @@ impl ListingCompiler {
} }
Declaration::UseModule(ModuleSource::Library(name)) => { Declaration::UseModule(ModuleSource::Library(name)) => {
let name = if !wam.indices.modules.contains_key(&name) { let name = if !wam.indices.modules.contains_key(&name) {
load_library(wam, name)? load_library(wam, name, true)?
} else { } else {
name name
}; };
@@ -757,7 +804,7 @@ impl ListingCompiler {
} }
Declaration::UseQualifiedModule(ModuleSource::Library(name), exports) => { Declaration::UseQualifiedModule(ModuleSource::Library(name), exports) => {
let name = if !wam.indices.modules.contains_key(&name) { let name = if !wam.indices.modules.contains_key(&name) {
load_library(wam, name)? load_library(wam, name, true)?
} else { } else {
name name
}; };
@@ -782,7 +829,7 @@ impl ListingCompiler {
} }
} }
Declaration::UseModule(ModuleSource::File(filename)) => { Declaration::UseModule(ModuleSource::File(filename)) => {
let name = load_module_from_file(wam, filename.as_str())?; let name = load_module_from_file(wam, filename.as_str(), true)?;
if let Some(name) = name { if let Some(name) = name {
self.use_module(name, &mut wam.code_repo, flags, &mut wam.indices, indices) self.use_module(name, &mut wam.code_repo, flags, &mut wam.indices, indices)
@@ -791,7 +838,7 @@ impl ListingCompiler {
} }
} }
Declaration::UseQualifiedModule(ModuleSource::File(filename), exports) => { Declaration::UseQualifiedModule(ModuleSource::File(filename), exports) => {
let name = load_module_from_file(wam, filename.as_str())?; let name = load_module_from_file(wam, filename.as_str(), true)?;
if let Some(name) = name { if let Some(name) = name {
self.use_qualified_module( self.use_qualified_module(
@@ -877,7 +924,7 @@ impl ListingCompiler {
self.process_and_commit_decl(decl, &mut worker, indices, flags)?; self.process_and_commit_decl(decl, &mut worker, indices, flags)?;
if let &Some(ref module) = &self.module { if let Some(ref module) = &self.module {
worker.term_stream.set_atom_tbl(module.atom_tbl.clone()); worker.term_stream.set_atom_tbl(module.atom_tbl.clone());
} }
} else if decl.is_end_of_file() { } else if decl.is_end_of_file() {
@@ -997,7 +1044,7 @@ pub fn compile_special_form<R: Read>(
let mut indices = default_index_store!(wam.indices.atom_tbl.clone()); let mut indices = default_index_store!(wam.indices.atom_tbl.clone());
setup_indices(wam, clause_name!("builtins"), &mut indices)?; setup_indices(wam, clause_name!("builtins"), &mut indices)?;
let mut compiler = ListingCompiler::new(&wam.code_repo); let mut compiler = ListingCompiler::new(&wam.code_repo, true);
let results = compiler.gather_items(wam, src, &mut indices)?; let results = compiler.gather_items(wam, src, &mut indices)?;
compiler.generate_code(results.worker_results, wam, &mut indices.code_dir, 0) compiler.generate_code(results.worker_results, wam, &mut indices.code_dir, 0)
@@ -1008,8 +1055,9 @@ pub fn compile_listing<R: Read>(
wam: &mut Machine, wam: &mut Machine,
src: ParsingStream<R>, src: ParsingStream<R>,
indices: IndexStore, indices: IndexStore,
suppress_warnings: bool
) -> EvalSession { ) -> EvalSession {
let mut compiler = ListingCompiler::new(&wam.code_repo); let mut compiler = ListingCompiler::new(&wam.code_repo, suppress_warnings);
match compile_work(&mut compiler, wam, src, indices) { match compile_work(&mut compiler, wam, src, indices) {
EvalSession::Error(e) => { EvalSession::Error(e) => {
@@ -1036,8 +1084,12 @@ pub(super) fn setup_indices(
} }
} }
pub fn compile_user_module<R: Read>(wam: &mut Machine, src: ParsingStream<R>) -> EvalSession { pub fn compile_user_module<R: Read>(
wam: &mut Machine,
src: ParsingStream<R>,
suppress_warnings: bool,
) -> EvalSession {
let mut indices = default_index_store!(wam.indices.atom_tbl.clone()); let mut indices = default_index_store!(wam.indices.atom_tbl.clone());
try_eval_session!(setup_indices(wam, clause_name!("builtins"), &mut indices)); try_eval_session!(setup_indices(wam, clause_name!("builtins"), &mut indices));
compile_listing(wam, src, indices) compile_listing(wam, src, indices, suppress_warnings)
} }

View File

@@ -27,11 +27,11 @@ impl Machine {
let module = idx.0.borrow().1.clone(); let module = idx.0.borrow().1.clone();
match module.as_str() { match module.as_str() {
"user" => compile_user_module(self, src), "user" => compile_user_module(self, src, true),
_ => compile_into_module(self, module, src, name), _ => compile_into_module(self, module, src, name),
} }
} }
None => compile_user_module(self, src), None => compile_user_module(self, src, true),
}, },
_ => compile_into_module(self, name.owning_module(), src, name), _ => compile_into_module(self, name.owning_module(), src, name),
} }

View File

@@ -193,7 +193,7 @@ impl Machine {
fn compile_top_level(&mut self) { fn compile_top_level(&mut self) {
self.toplevel_idx = self.code_repo.code.len(); self.toplevel_idx = self.code_repo.code.len();
compile_user_module(self, parsing_stream(TOPLEVEL.as_bytes())); compile_user_module(self, parsing_stream(TOPLEVEL.as_bytes()), true);
} }
fn compile_scryerrc(&mut self) { fn compile_scryerrc(&mut self) {
@@ -210,7 +210,7 @@ impl Machine {
Err(_) => return, Err(_) => return,
}; };
compile_user_module(self, file_src); compile_user_module(self, file_src, true);
} }
} }
@@ -268,14 +268,15 @@ impl Machine {
&mut wam, &mut wam,
parsing_stream(BUILTINS.as_bytes()), parsing_stream(BUILTINS.as_bytes()),
default_index_store!(atom_tbl.clone()), default_index_store!(atom_tbl.clone()),
true
); );
wam.compile_special_forms(); wam.compile_special_forms();
compile_user_module(&mut wam, parsing_stream(ERROR.as_bytes())); compile_user_module(&mut wam, parsing_stream(ERROR.as_bytes()), true);
compile_user_module(&mut wam, parsing_stream(LISTS.as_bytes())); compile_user_module(&mut wam, parsing_stream(LISTS.as_bytes()), true);
compile_user_module(&mut wam, parsing_stream(NON_ISO.as_bytes())); compile_user_module(&mut wam, parsing_stream(NON_ISO.as_bytes()), true);
compile_user_module(&mut wam, parsing_stream(SI.as_bytes())); compile_user_module(&mut wam, parsing_stream(SI.as_bytes()), true);
wam.compile_top_level(); wam.compile_top_level();
wam.compile_scryerrc(); wam.compile_scryerrc();
@@ -430,12 +431,12 @@ impl Machine {
let load_result = match to_src(name) { let load_result = match to_src(name) {
ModuleSource::Library(name) => ModuleSource::Library(name) =>
if !self.indices.modules.contains_key(&name) { if !self.indices.modules.contains_key(&name) {
load_library(self, name).map(Some) load_library(self, name, false).map(Some)
} else { } else {
Ok(Some(name)) Ok(Some(name))
}, },
ModuleSource::File(name) => ModuleSource::File(name) =>
load_module_from_file(self, name.as_str()) load_module_from_file(self, name.as_str(), false)
}; };
let result = load_result.and_then(|name| let result = load_result.and_then(|name|
@@ -477,12 +478,12 @@ impl Machine {
let load_result = match to_src(name) { let load_result = match to_src(name) {
ModuleSource::Library(name) => ModuleSource::Library(name) =>
if !self.indices.modules.contains_key(&name) { if !self.indices.modules.contains_key(&name) {
load_library(self, name).map(Some) load_library(self, name, false).map(Some)
} else { } else {
Ok(Some(name)) Ok(Some(name))
}, },
ModuleSource::File(name) => ModuleSource::File(name) =>
load_module_from_file(self, name.as_str()) load_module_from_file(self, name.as_str(), false)
}; };
let result = load_result.and_then(|name| let result = load_result.and_then(|name|
@@ -515,7 +516,7 @@ impl Machine {
let src = readline::input_stream(); let src = readline::input_stream();
readline::set_prompt(false); readline::set_prompt(false);
if let EvalSession::Error(e) = compile_user_module(self, src) { if let EvalSession::Error(e) = compile_user_module(self, src, false) {
self.throw_session_error(e, (clause_name!("repl"), 0)); self.throw_session_error(e, (clause_name!("repl"), 0));
} }
} }

View File

@@ -150,6 +150,16 @@ impl<'a, R: Read> TermStream<'a, R> {
} }
} }
#[inline]
pub fn line_num(&self) -> usize {
self.parser.line_num()
}
#[inline]
pub fn col_num(&self) -> usize {
self.parser.col_num()
}
#[inline] #[inline]
pub fn update_expansion_lens(&mut self) { pub fn update_expansion_lens(&mut self) {
let te_key = (clause_name!("term_expansion"), 2); let te_key = (clause_name!("term_expansion"), 2);

View File

@@ -287,15 +287,14 @@ fn merge_clauses(tls: &mut VecDeque<TopLevel>) -> Result<TopLevel, ParserError>
TopLevel::Query(_) if clauses.is_empty() && tls.is_empty() => return Ok(tl), TopLevel::Query(_) if clauses.is_empty() && tls.is_empty() => return Ok(tl),
TopLevel::Declaration(_) if clauses.is_empty() => return Ok(tl), TopLevel::Declaration(_) if clauses.is_empty() => return Ok(tl),
TopLevel::Query(_) => return Err(ParserError::InconsistentEntry), TopLevel::Query(_) => return Err(ParserError::InconsistentEntry),
TopLevel::Fact(_) if is_consistent(&tl, &clauses) => { TopLevel::Fact(..) if is_consistent(&tl, &clauses) =>
if let TopLevel::Fact(fact) = tl { if let TopLevel::Fact(fact, line_num, col_num) = tl {
let clause = PredicateClause::Fact(fact); let clause = PredicateClause::Fact(fact, line_num, col_num);
clauses.push(clause); clauses.push(clause);
} },
} TopLevel::Rule(..) if is_consistent(&tl, &clauses) => {
TopLevel::Rule(_) if is_consistent(&tl, &clauses) => { if let TopLevel::Rule(rule, line_num, col_num) = tl {
if let TopLevel::Rule(rule) = tl { let clause = PredicateClause::Rule(rule, line_num, col_num);
let clause = PredicateClause::Rule(rule);
clauses.push(clause); clauses.push(clause);
} }
} }
@@ -357,6 +356,44 @@ fn mark_cut_variables(terms: &mut Vec<Term>) -> bool {
found_cut_var found_cut_var
} }
// terms is a list of goals composing one clause in a (;) functor. it
// checks that the first (and only) of these clauses is a ->. if so,
// it expands its terms using a blocked_!.
fn check_for_internal_if_then(terms: &mut Vec<Term>) {
if terms.len() != 1 {
return;
}
if let Some(Term::Clause(_, ref name, ref subterms, _)) = terms.last() {
if name.as_str() != "->" || subterms.len() != 2 {
return;
}
} else {
return;
}
if let Some(Term::Clause(_, _, mut subterms, _)) = terms.pop() {
let mut conq_terms = VecDeque::from(unfold_by_str(*subterms.pop().unwrap(), ","));
let mut pre_cut_terms = VecDeque::from(unfold_by_str(*subterms.pop().unwrap(), ","));
conq_terms.push_front(Term::Constant(
Cell::default(),
Constant::Atom(clause_name!("blocked_!"), None))
);
while let Some(term) = pre_cut_terms.pop_back() {
conq_terms.push_front(term);
}
let tail_term = conq_terms.pop_back().unwrap();
terms.push(fold_by_str(
conq_terms.into_iter(),
tail_term,
clause_name!(","),
));
}
}
fn flatten_hook(mut term: Term) -> Term { fn flatten_hook(mut term: Term) -> Term {
if let &mut Term::Clause(_, ref mut name, ref mut terms, _) = &mut term { if let &mut Term::Clause(_, ref mut name, ref mut terms, _) = &mut term {
match (name.as_str(), terms.len()) { match (name.as_str(), terms.len()) {
@@ -387,7 +424,9 @@ fn flatten_hook(mut term: Term) -> Term {
fn setup_declaration( fn setup_declaration(
indices: &mut CompositeIndices, indices: &mut CompositeIndices,
flags: MachineFlags, flags: MachineFlags,
mut terms: Vec<Box<Term>> mut terms: Vec<Box<Term>>,
line_num: usize,
col_num: usize,
) -> Result<Declaration, ParserError> { ) -> Result<Declaration, ParserError> {
let term = *terms.pop().unwrap(); let term = *terms.pop().unwrap();
@@ -413,7 +452,7 @@ fn setup_declaration(
Ok(Declaration::Dynamic(name, arity)) Ok(Declaration::Dynamic(name, arity))
} }
("initialization", 1) => { ("initialization", 1) => {
let mut rel_worker = RelationWorker::new(flags); let mut rel_worker = RelationWorker::new(flags, line_num, col_num);
let query_terms = rel_worker.setup_query(indices, terms, false)?; let query_terms = rel_worker.setup_query(indices, terms, false)?;
let queue = rel_worker.parse_queue(indices)?; let queue = rel_worker.parse_queue(indices)?;
@@ -435,14 +474,18 @@ struct RelationWorker {
flags: MachineFlags, flags: MachineFlags,
dynamic_clauses: Vec<(Term, Term)>, // Head, Body. dynamic_clauses: Vec<(Term, Term)>, // Head, Body.
queue: VecDeque<VecDeque<Term>>, queue: VecDeque<VecDeque<Term>>,
line_num: usize,
col_num: usize
} }
impl RelationWorker { impl RelationWorker {
fn new(flags: MachineFlags) -> Self { fn new(flags: MachineFlags, line_num: usize, col_num: usize) -> Self {
RelationWorker { RelationWorker {
dynamic_clauses: vec![], dynamic_clauses: vec![],
flags, flags,
queue: VecDeque::new(), queue: VecDeque::new(),
line_num,
col_num
} }
} }
@@ -507,6 +550,8 @@ impl RelationWorker {
let mut subterms = unfold_by_str(term, ","); let mut subterms = unfold_by_str(term, ",");
mark_cut_variables(&mut subterms); mark_cut_variables(&mut subterms);
check_for_internal_if_then(&mut subterms);
let term = subterms.pop().unwrap(); let term = subterms.pop().unwrap();
fold_by_str(subterms.into_iter(), term, clause_name!(",")) fold_by_str(subterms.into_iter(), term, clause_name!(","))
}) })
@@ -704,12 +749,12 @@ impl RelationWorker {
Term::Clause(r, name, terms, _) => { Term::Clause(r, name, terms, _) => {
if name == hook.name() && terms.len() == hook.arity() { if name == hook.name() && terms.len() == hook.arity() {
let term = self.setup_fact(Term::Clause(r, name, terms, None), false)?; let term = self.setup_fact(Term::Clause(r, name, terms, None), false)?;
Ok((hook, PredicateClause::Fact(term), VecDeque::from(vec![]))) Ok((hook, PredicateClause::Fact(term, 0, 0), VecDeque::from(vec![])))
} else if name.as_str() == ":-" && terms.len() == 2 { } else if name.as_str() == ":-" && terms.len() == 2 {
let rule = self.setup_rule(indices, terms, true, false)?; let rule = self.setup_rule(indices, terms, true, false)?;
let results_queue = self.parse_queue(indices)?; let results_queue = self.parse_queue(indices)?;
Ok((hook, PredicateClause::Rule(rule), results_queue)) Ok((hook, PredicateClause::Rule(rule, 0, 0), results_queue))
} else { } else {
Err(ParserError::InvalidHook) Err(ParserError::InvalidHook)
} }
@@ -787,15 +832,16 @@ impl RelationWorker {
terms, terms,
blocks_cuts, blocks_cuts,
true, true,
)?)) )?, self.line_num, self.col_num))
} else if name.as_str() == ":-" && terms.len() == 1 { } else if name.as_str() == ":-" && terms.len() == 1 {
Ok(TopLevel::Declaration(setup_declaration(indices, self.flags, terms)?)) Ok(TopLevel::Declaration(setup_declaration(indices, self.flags, terms,
self.line_num, self.col_num)?))
} else { } else {
let term = Term::Clause(r, name, terms, fixity); let term = Term::Clause(r, name, terms, fixity);
Ok(TopLevel::Fact(try!(self.setup_fact(term, true)))) Ok(TopLevel::Fact(self.setup_fact(term, true)?, self.line_num, self.col_num))
} }
} }
term => Ok(TopLevel::Fact(try!(self.setup_fact(term, true)))), term => Ok(TopLevel::Fact(self.setup_fact(term, true)?, self.line_num, self.col_num)),
} }
} }
@@ -875,7 +921,10 @@ fn term_to_toplevel<R>(
where where
R: Read, R: Read,
{ {
let mut rel_worker = RelationWorker::new(flags); let line_num = term_stream.line_num();
let col_num = term_stream.col_num();
let mut rel_worker = RelationWorker::new(flags, line_num, col_num);
let mut indices = composite_indices!(false, &mut term_stream.wam.indices, code_dir); let mut indices = composite_indices!(false, &mut term_stream.wam.indices, code_dir);
let tl = rel_worker.try_term_to_tl(&mut indices, term, true)?; let tl = rel_worker.try_term_to_tl(&mut indices, term, true)?;
@@ -928,9 +977,12 @@ impl<'a, R: Read> TopLevelBatchWorker<'a, R> {
) -> Self { ) -> Self {
let term_stream = TermStream::new(inner, atom_tbl, flags, wam); let term_stream = TermStream::new(inner, atom_tbl, flags, wam);
let line_num = term_stream.line_num();
let col_num = term_stream.col_num();
TopLevelBatchWorker { TopLevelBatchWorker {
term_stream, term_stream,
rel_worker: RelationWorker::new(flags), rel_worker: RelationWorker::new(flags, line_num, col_num),
results: vec![], results: vec![],
dynamic_clause_map: IndexMap::new(), dynamic_clause_map: IndexMap::new(),
in_module: false, in_module: false,
@@ -942,7 +994,10 @@ impl<'a, R: Read> TopLevelBatchWorker<'a, R> {
indices: &mut IndexStore, indices: &mut IndexStore,
term: Term, term: Term,
) -> Result<(TopLevel, RelationWorker), SessionError> { ) -> Result<(TopLevel, RelationWorker), SessionError> {
let mut new_rel_worker = RelationWorker::new(self.rel_worker.flags); let line_num = self.term_stream.line_num();
let col_num = self.term_stream.col_num();
let mut new_rel_worker = RelationWorker::new(self.rel_worker.flags, line_num, col_num);
let mut indices = composite_indices!( let mut indices = composite_indices!(
self.in_module, self.in_module,
indices, indices,
@@ -1023,11 +1078,16 @@ impl<'a, R: Read> TopLevelBatchWorker<'a, R> {
self.rel_worker.absorb(new_rel_worker); self.rel_worker.absorb(new_rel_worker);
match tl { match tl {
TopLevel::Fact(fact) => preds.push(PredicateClause::Fact(fact)), TopLevel::Fact(fact, line_num, col_num) =>
TopLevel::Rule(rule) => preds.push(PredicateClause::Rule(rule)), preds.push(PredicateClause::Fact(fact, line_num, col_num)),
TopLevel::Predicate(pred) => preds.extend(pred.0), TopLevel::Rule(rule, line_num, col_num) =>
TopLevel::Declaration(decl) => return Ok(Some(decl)), preds.push(PredicateClause::Rule(rule, line_num, col_num)),
TopLevel::Query(_) => return Err(SessionError::NamelessEntry), TopLevel::Predicate(pred) =>
preds.extend(pred.0),
TopLevel::Declaration(decl) =>
return Ok(Some(decl)),
TopLevel::Query(_) =>
return Err(SessionError::NamelessEntry),
} }
} }

View File

@@ -195,7 +195,7 @@ pub fn submit_query_with_limit(
#[allow(dead_code)] #[allow(dead_code)]
pub fn submit_code(wam: &mut Machine, buf: &str) -> EvalSession { pub fn submit_code(wam: &mut Machine, buf: &str) -> EvalSession {
compile_user_module(wam, parsing_stream(buf.as_bytes())) compile_user_module(wam, parsing_stream(buf.as_bytes()), true)
} }
#[allow(unused_macros)] #[allow(unused_macros)]