349 lines
12 KiB
C++
349 lines
12 KiB
C++
/*
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Copyright (c) 2014 Microsoft Corporation. All rights reserved.
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Released under Apache 2.0 license as described in the file LICENSE.
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Author: Leonardo de Moura
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*/
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#include <algorithm>
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#include "util/sstream.h"
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#include "util/sexpr/option_declarations.h"
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#include "kernel/abstract.h"
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#include "kernel/instantiate.h"
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#include "kernel/replace_fn.h"
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#include "kernel/error_msgs.h"
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#include "kernel/for_each_fn.h"
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#include "library/scoped_ext.h"
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#include "library/locals.h"
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#include "library/explicit.h"
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#include "library/aliases.h"
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#include "library/constants.h"
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#include "library/typed_expr.h"
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#include "library/placeholder.h"
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#include "library/unfold_macros.h"
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#include "library/choice.h"
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#include "library/string.h"
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#include "library/num.h"
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#include "library/util.h"
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#include "library/normalize.h"
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#include "library/metavar_context.h"
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#include "library/replace_visitor.h"
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#include "frontends/lean/parser.h"
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#include "frontends/lean/tokens.h"
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#include "frontends/lean/decl_util.h" // TODO(Leo): remove
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namespace lean {
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void consume_until_end(parser & p) {
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while (!p.curr_is_token(get_end_tk())) {
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if (p.curr() == scanner::token_kind::Eof)
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return;
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p.next();
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}
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p.next();
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}
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void check_command_period_or_eof(parser const & p) {
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if (!p.curr_is_command() && !p.curr_is_eof() && !p.curr_is_token(get_period_tk()))
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throw parser_error("unexpected token, '.', command, or end-of-file expected", p.pos());
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}
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void check_command_period_open_binder_or_eof(parser const & p) {
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if (!p.curr_is_command() && !p.curr_is_eof() && !p.curr_is_token(get_period_tk()) &&
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!p.curr_is_token(get_lparen_tk()) && !p.curr_is_token(get_lbracket_tk()) &&
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!p.curr_is_token(get_lcurly_tk()) && !p.curr_is_token(get_ldcurly_tk()))
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throw parser_error("unexpected token, '(', '{', '[', '⦃', '.', command, or end-of-file expected", p.pos());
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}
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void check_atomic(name const & n) {
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if (!n.is_atomic())
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throw exception(sstream() << "invalid declaration name '" << n << "', identifier must be atomic");
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}
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void check_in_section(parser const & p) {
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if (!in_section(p.env()))
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throw exception(sstream() << "invalid command, it must be used in a section");
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}
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bool is_root_namespace(name const & n) {
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return n == get_root_tk();
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}
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name remove_root_prefix(name const & n) {
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return n.replace_prefix(get_root_tk(), name());
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}
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bool is_eqn_prefix(parser & p, bool bar_only = false) {
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return p.curr_is_token(get_bar_tk()) || (!bar_only && p.curr_is_token(get_comma_tk()));
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}
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// Return the local levels in \c ls that are not associated with variables
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levels collect_local_nonvar_levels(parser & p, level_param_names const & ls) {
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buffer<level> section_ls_buffer;
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for (name const & l : ls) {
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if (p.is_local_level(l) && !p.is_local_level_variable(l))
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section_ls_buffer.push_back(mk_param_univ(l));
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else
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break;
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}
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return to_list(section_ls_buffer.begin(), section_ls_buffer.end());
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}
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// Version of collect_locals(expr const & e, collected_locals & ls) that ignores local constants occurring in
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// tactics.
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static void collect_locals_ignoring_tactics(expr const & e, collected_locals & ls) {
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if (!has_local(e))
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return;
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for_each(e, [&](expr const & e, unsigned) {
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if (!has_local(e))
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return false;
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// if (is_by(e))
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// return false; // do not visit children
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if (is_local(e))
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ls.insert(e);
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return true;
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});
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}
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void remove_local_vars(parser const & p, buffer<expr> & locals) {
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unsigned j = 0;
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for (unsigned i = 0; i < locals.size(); i++) {
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expr const & param = locals[i];
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if (!is_local(param) || !p.is_local_variable(param)) {
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locals[j] = param;
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j++;
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}
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}
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locals.shrink(j);
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}
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levels remove_local_vars(parser const & p, levels const & ls) {
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return filter(ls, [&](level const & l) {
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return !is_param(l) || !p.is_local_level_variable(param_id(l));
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});
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}
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// TODO(Leo): delete these headers
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void collect_annonymous_inst_implicit(parser const & p, collected_locals & locals);
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void sort_locals(buffer<expr> const & locals, parser const & p, buffer<expr> & ps);
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list<expr> locals_to_context(expr const & e, parser const & p) {
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collected_locals ls;
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collect_locals_ignoring_tactics(e, ls);
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collect_annonymous_inst_implicit(p, ls);
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buffer<expr> locals;
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sort_locals(ls.get_collected(), p, locals);
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std::reverse(locals.begin(), locals.end());
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return to_list(locals.begin(), locals.end());
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}
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expr mk_local_ref(name const & n, levels const & ctx_ls, unsigned num_ctx_params, expr const * ctx_params) {
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buffer<expr> params;
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for (unsigned i = 0; i < num_ctx_params; i++)
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params.push_back(mk_explicit(ctx_params[i]));
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return mk_as_atomic(mk_app(mk_explicit(mk_constant(n, ctx_ls)), params));
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}
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bool is_local_ref(expr const & e) {
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if (!is_as_atomic(e))
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return false;
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expr const & imp_arg = get_as_atomic_arg(e);
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if (!is_app(imp_arg))
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return false;
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buffer<expr> locals;
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expr const & f = get_app_args(imp_arg, locals);
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return
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is_explicit(f) &&
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is_constant(get_explicit_arg(f)) &&
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std::all_of(locals.begin(), locals.end(),
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[](expr const & l) {
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return is_explicit(l) && is_local(get_explicit_arg(l));
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});
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}
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expr update_local_ref(expr const & e, name_set const & lvls_to_remove, name_set const & locals_to_remove) {
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lean_assert(is_local_ref(e));
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if (locals_to_remove.empty() && lvls_to_remove.empty())
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return e;
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buffer<expr> locals;
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expr const & f = get_app_args(get_as_atomic_arg(e), locals);
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lean_assert(is_explicit(f));
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expr new_f;
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if (!lvls_to_remove.empty()) {
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expr const & c = get_explicit_arg(f);
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lean_assert(is_constant(c));
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new_f = mk_explicit(update_constant(c, filter(const_levels(c), [&](level const & l) {
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return is_placeholder(l) || (is_param(l) && !lvls_to_remove.contains(param_id(l)));
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})));
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} else {
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new_f = f;
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}
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if (!locals_to_remove.empty()) {
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unsigned j = 0;
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for (unsigned i = 0; i < locals.size(); i++) {
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expr const & l = locals[i];
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if (!locals_to_remove.contains(mlocal_name(get_explicit_arg(l)))) {
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locals[j] = l;
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j++;
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}
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}
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locals.shrink(j);
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}
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if (locals.empty()) {
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return get_explicit_arg(new_f);
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} else {
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return mk_as_atomic(mk_app(new_f, locals));
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}
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}
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expr Fun(buffer<expr> const & locals, expr const & e, parser & p) {
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bool use_cache = false;
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return p.rec_save_pos(Fun(locals, e, use_cache), p.pos_of(e));
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}
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expr Fun(expr const & local, expr const & e, parser & p) {
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bool use_cache = false;
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return p.rec_save_pos(Fun(local, e, use_cache), p.pos_of(e));
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}
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expr Pi(buffer<expr> const & locals, expr const & e, parser & p) {
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bool use_cache = false;
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return p.rec_save_pos(Pi(locals, e, use_cache), p.pos_of(e));
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}
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expr Pi(expr const & local, expr const & e, parser & p) {
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bool use_cache = false;
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return p.rec_save_pos(Pi(local, e, use_cache), p.pos_of(e));
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}
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template<bool is_lambda>
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static expr mk_binding_as_is(unsigned num, expr const * locals, expr const & b) {
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expr r = abstract_locals(b, num, locals);
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unsigned i = num;
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while (i > 0) {
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--i;
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expr const & l = locals[i];
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expr t = abstract_locals(mlocal_type(l), i, locals);
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if (is_lambda)
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r = mk_lambda(local_pp_name(l), mk_as_is(t), r, local_info(l));
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else
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r = mk_pi(local_pp_name(l), mk_as_is(t), r, local_info(l));
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}
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return r;
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}
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expr Fun_as_is(buffer<expr> const & locals, expr const & e, parser & p) {
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return p.rec_save_pos(mk_binding_as_is<true>(locals.size(), locals.data(), e), p.pos_of(e));
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}
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expr Pi_as_is(buffer<expr> const & locals, expr const & e, parser & p) {
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return p.rec_save_pos(mk_binding_as_is<false>(locals.size(), locals.data(), e), p.pos_of(e));
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}
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level mk_result_level(buffer<level> const & r_lvls) {
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if (r_lvls.empty()) {
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return mk_level_one();
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} else {
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level r = r_lvls[0];
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for (unsigned i = 1; i < r_lvls.size(); i++)
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r = mk_max(r, r_lvls[i]);
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r = normalize(r);
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if (is_not_zero(r))
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return normalize(r);
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else
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return normalize(mk_max(r, mk_level_one()));
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}
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}
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std::tuple<expr, level_param_names> parse_local_expr(parser & p, metavar_context & mctx, bool relaxed) {
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expr e = p.parse_expr();
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p.declare_sorry_if_used();
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bool check_unassigend = !relaxed;
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expr new_e; level_param_names ls;
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std::tie(new_e, ls) = p.elaborate(mctx, e, check_unassigend);
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level_param_names new_ls = to_level_param_names(collect_univ_params(new_e));
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return std::make_tuple(new_e, new_ls);
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}
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std::tuple<expr, level_param_names> parse_local_expr(parser & p, bool relaxed) {
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metavar_context mctx;
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return parse_local_expr(p, mctx, relaxed);
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}
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optional<name> is_uniquely_aliased(environment const & env, name const & n) {
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if (auto it = is_expr_aliased(env, n))
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if (length(get_expr_aliases(env, *it)) == 1)
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return it;
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return optional<name>();
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}
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name get_decl_short_name(name const & d, environment const & env) {
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// using namespace override resolution rule
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list<name> const & ns_list = get_namespaces(env);
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for (name const & ns : ns_list) {
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if (is_prefix_of(ns, d) && ns != d)
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return d.replace_prefix(ns, name());
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}
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// if the alias is unique use it
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if (auto it = is_uniquely_aliased(env, d))
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return *it;
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else
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return d;
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}
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environment open_prec_aliases(environment const & env) {
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name prec("std", "prec");
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return overwrite_aliases(env, prec, name());
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}
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char const * open_binder_string(binder_info const & bi, bool unicode) {
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if (bi.is_implicit()) return "{";
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else if (bi.is_inst_implicit()) return "[";
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else if (bi.is_strict_implicit() && unicode) return "⦃";
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else if (bi.is_strict_implicit() && !unicode) return "{{";
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else return "(";
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}
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char const * close_binder_string(binder_info const & bi, bool unicode) {
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if (bi.is_implicit()) return "}";
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else if (bi.is_inst_implicit()) return "]";
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else if (bi.is_strict_implicit() && unicode) return "⦄";
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else if (bi.is_strict_implicit() && !unicode) return "}}";
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else return ")";
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}
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pair<name, option_kind> parse_option_name(parser & p, char const * error_msg) {
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auto id_pos = p.pos();
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name id = p.check_id_next(error_msg);
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option_declarations decls = get_option_declarations();
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auto it = decls.find(id);
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if (!it) {
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// add "lean" prefix
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name lean_id = name("lean") + id;
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it = decls.find(lean_id);
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if (!it) {
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throw parser_error(sstream() << "unknown option '" << id
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<< "', type 'help options.' for list of available options", id_pos);
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} else {
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id = lean_id;
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}
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}
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return mk_pair(id, it->kind());
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}
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expr mk_tactic_unit() {
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return mk_app(mk_constant(get_tactic_name(), {mk_level_one()}), mk_constant(get_unit_name()));
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}
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expr quote_name(name const & n) {
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if (n.is_anonymous()) {
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return mk_constant(get_name_anonymous_name());
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} else if (n.is_string()) {
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expr prefix = quote_name(n.get_prefix());
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expr str = from_string(n.get_string());
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return mk_app(mk_constant(get_name_mk_string_name()), str, prefix);
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} else {
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lean_unreachable();
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}
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}
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}
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