feat(frontends/lean/elaborator): include overload information in error messages
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76c3757db7
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5 changed files with 125 additions and 21 deletions
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@ -337,7 +337,27 @@ expr elaborator::visit_choice(expr const & e, optional<expr> const & t, constrai
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name_generator const & /* ngen */) {
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return choose(std::make_shared<choice_expr_elaborator>(*this, ctx, full_ctx, meta, type, e));
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};
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justification j = mk_justification("none of the overloads is applicable", some_expr(e));
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auto pp_fn = [=](formatter const & fmt, pos_info_provider const * pos_prov, substitution const &, bool is_main) {
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format r = pp_previous_error_header(fmt, pos_prov, some_expr(e), is_main);
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r += format("none of the overloads is applicable:");
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for (unsigned i = 0; i < get_num_choices(e); i++) {
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expr const & c = get_choice(e, i);
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expr const & f = get_app_fn(c);
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optional<name> fn;
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if (is_constant(f))
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fn = const_name(f);
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else if (is_local(f))
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fn = local_pp_name(f);
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r += space();
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if (fn) {
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r += format(*fn);
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} else {
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r += format("[nontrivial]");
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}
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}
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return r;
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};
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justification j = mk_justification(some_expr(e), pp_fn);
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cs += mk_choice_cnstr(m, fn, to_delay_factor(cnstr_group::Basic), true, j);
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return m;
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}
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@ -1158,7 +1178,9 @@ expr elaborator::visit_equations(expr const & eqns, constraint_seq & cs) {
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new_cs.linearize(tmp_cs);
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for (constraint const & c : tmp_cs) {
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justification j = c.get_justification();
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auto pp_fn = [=](formatter const & fmt, pos_info_provider const * pp, substitution const & s) {
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auto pp_fn = [=](formatter const & fmt, pos_info_provider const * pp, substitution const & s, bool is_main) {
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if (!is_main)
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return format();
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format r = j.pp(fmt, pp, s);
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r += compose(line(), format("The following identifier(s) are introduced as free variables by the "
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"left-hand-side of the equation:"));
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@ -6,6 +6,7 @@ Author: Leonardo de Moura
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*/
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#include <string>
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#include <vector>
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#include <unordered_set>
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#include "util/buffer.h"
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#include "util/int64.h"
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#include "util/memory_pool.h"
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@ -26,6 +27,18 @@ format to_pos(optional<expr> const & e, pos_info_provider const * p) {
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return f + space();
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}
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format pp_previous_error_header(formatter const &, pos_info_provider const * pos_prov, optional<expr> const & ref, bool is_main) {
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if (!is_main) {
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format r = line();
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r += to_pos(ref, pos_prov);
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r += format("previous error additional information");
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r += line();
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return r;
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} else {
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return format();
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}
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}
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typedef uint64 approx_set;
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static approx_set mk_empty_set() { return 0; }
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static approx_set mk_union(approx_set s1, approx_set s2) { return s1 | s2; }
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@ -263,25 +276,52 @@ optional<expr> justification::get_main_expr() const {
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}
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}
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}
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format justification::pp(formatter const & fmt, pos_info_provider const * p, substitution const & s) const {
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struct jst_hash_fn {
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unsigned operator()(justification const & j) const { return j.raw()->m_hash_alloc; }
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};
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struct jst_ptr_eq {
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bool operator()(justification const & j1, justification const & j2) const { return j1.raw() == j2.raw(); }
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};
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class justification_set {
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std::unordered_set<justification, jst_hash_fn, jst_ptr_eq> m_set;
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public:
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bool contains(justification const & j) const { return m_set.find(j) != m_set.end(); }
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void insert(justification const & j) { m_set.insert(j); }
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};
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format justification::pp_core(formatter const & fmt, pos_info_provider const * p, substitution const & s,
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justification_set & set, bool is_main) const {
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if (set.contains(*this))
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return format();
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set.insert(*this);
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justification_cell * it = m_ptr;
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while (true) {
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if (!it)
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return format();
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switch (it->m_kind) {
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case justification_kind::Asserted:
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return to_asserted(it)->m_fn(fmt, p, s);
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case justification_kind::Wrapper:
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return to_wrapper(it)->m_fn(fmt, p, s);
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case justification_kind::Assumption:
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if (!it)
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return format();
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switch (it->m_kind) {
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case justification_kind::Asserted:
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return to_asserted(it)->m_fn(fmt, p, s, is_main);
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case justification_kind::Wrapper:
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return to_wrapper(it)->m_fn(fmt, p, s, is_main);
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case justification_kind::Assumption:
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if (is_main)
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return format(format("Assumption "), format(to_assumption(it)->m_idx));
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case justification_kind::Composite:
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it = to_composite(it)->m_child[0].raw();
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break;
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}
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else
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return format();
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case justification_kind::Composite:
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return
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to_composite(it)->m_child[0].pp_core(fmt, p, s, set, is_main) +
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to_composite(it)->m_child[1].pp_core(fmt, p, s, set, false);
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}
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}
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format justification::pp(formatter const & fmt, pos_info_provider const * p, substitution const & s) const {
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justification_set set;
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return pp_core(fmt, p, s, set, true);
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}
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justification mk_wrapper(justification const & j, optional<expr> const & s, pp_jst_fn const & fn) {
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return justification(new (get_wrapper_allocator().allocate()) wrapper_cell(j, fn, s));
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}
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@ -305,16 +345,22 @@ justification mk_justification(optional<expr> const & s, pp_jst_fn const & fn) {
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return justification(new (get_asserted_allocator().allocate()) asserted_cell(fn, s));
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}
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justification mk_justification(optional<expr> const & s, pp_jst_sfn const & fn) {
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return mk_justification(s, [=](formatter const & fmt, pos_info_provider const *, substitution const & subst) {
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return mk_justification(s, [=](formatter const & fmt, pos_info_provider const *, substitution const & subst, bool is_main) {
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// Remark: we are not using to_pos(s, p) anymore because we don't try to display complicated error messages anymore.
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// return compose(to_pos(s, p), fn(fmt, subst));
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return fn(fmt, subst);
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if (is_main)
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return fn(fmt, subst);
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else
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return format();
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});
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}
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justification mk_justification(char const * msg, optional<expr> const & s) {
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std::string _msg(msg);
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return mk_justification(s, [=](formatter const &, pos_info_provider const *, substitution const &) {
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return format(_msg);
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return mk_justification(s, [=](formatter const &, pos_info_provider const *, substitution const &, bool is_main) {
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if (is_main)
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return format(_msg);
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else
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return format();
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});
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}
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std::ostream & operator<<(std::ostream & out, justification const & j) {
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@ -23,7 +23,9 @@ struct justification_cell;
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The pp_jst_fn is a generic funciton that produces these messages. We can associate these functions
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to justification objects.
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*/
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typedef std::function<format(formatter const &, pos_info_provider const *, substitution const &)> pp_jst_fn;
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typedef std::function<format(formatter const &, pos_info_provider const *, substitution const &, bool)> pp_jst_fn;
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class justification_set;
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/**
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\brief Objects used to justify unification (and level) constraints and metavariable assignments.
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@ -40,6 +42,8 @@ typedef std::function<format(formatter const &, pos_info_provider const *, subst
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class justification {
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justification_cell * m_ptr;
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justification(justification_cell * ptr);
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format pp_core(formatter const & fmt, pos_info_provider const * p, substitution const & s,
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justification_set & visited, bool is_main) const;
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public:
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justification();
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justification(justification const & s);
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@ -85,6 +89,7 @@ typedef std::function<format(formatter const &, substitution const &)> pp_jst_sf
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/** \brief Return a format object containing position information for the given expression (if available) */
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format to_pos(optional<expr> const & e, pos_info_provider const * p);
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format pp_previous_error_header(formatter const &, pos_info_provider const * pos_prov, optional<expr> const & ref, bool is_main);
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/** \brief Provide a custom pretty printer for \c j */
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justification mk_wrapper(justification const & j, optional<expr> const & s, pp_jst_fn const & fn);
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19
tests/lean/subset_error.lean
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19
tests/lean/subset_error.lean
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@ -0,0 +1,19 @@
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constant set : Type₁ → Type₁
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constant finset : Type₁ → Type₁
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constant set.mem : Π {A : Type₁}, A → set A → Prop
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constant finset.mem : Π {A : Type₁}, A → finset A → Prop
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infix ∈ := set.mem
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infix ∈ := finset.mem
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definition set.subset {A : Type₁} (s₁ s₂ : set A) : Prop :=
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∀ ⦃a : A⦄, a ∈ s₁ → a ∈ s₂
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definition finset.subset {A : Type₁} (s₁ s₂ : finset A) : Prop :=
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∀ ⦃a : A⦄, a ∈ s₁ → a ∈ s₂
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infix `⊆`:50 := set.subset
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infix `⊆`:50 := finset.subset
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example (A : Type₁) (x : A) (S H : set A) (Pin : x ∈ S) (Psub : S ⊆ H) : x ∈ H :=
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Psub Pin -- Error, we cannot infer at preprocessing time the binder information for Psub
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12
tests/lean/subset_error.lean.expected.out
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12
tests/lean/subset_error.lean.expected.out
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@ -0,0 +1,12 @@
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subset_error.lean:18:51: error: type mismatch at application
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x ∈ S
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term
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S
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has type
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set A
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but is expected to have type
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finset A
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subset_error.lean:18:51: previous error additional information
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none of the overloads is applicable: finset.mem set.mem
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subset_error.lean:18:66: previous error additional information
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none of the overloads is applicable: finset.subset set.subset
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