d3d24696f4
The user can still display builtin objects by using Show Environment all Signed-off-by: Leonardo de Moura <leonardo@microsoft.com>
167 lines
6.6 KiB
C++
167 lines
6.6 KiB
C++
/*
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Copyright (c) 2013 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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#pragma once
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#include <memory>
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#include <vector>
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#include "kernel/environment.h"
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#include "library/io_state.h"
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#include "library/expr_pair.h"
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#include "frontends/lean/operator_info.h"
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namespace lean {
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/**
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\brief Import all definitions and notation.
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*/
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void init_frontend(environment const & env, io_state & ios);
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/**
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\brief Return the environment size after init_frontend invocation.
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Return 0 if \c init_frontend was not invoked for this environment.
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*/
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unsigned get_initial_size(ro_environment const & env);
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/**
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@name Notation for parsing and pretty printing.
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*/
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/*@{*/
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void add_infix(environment const & env, io_state const & ios, name const & opn, unsigned p, expr const & d);
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void add_infixl(environment const & env, io_state const & ios, name const & opn, unsigned p, expr const & d);
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void add_infixr(environment const & env, io_state const & ios, name const & opn, unsigned p, expr const & d);
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void add_prefix(environment const & env, io_state const & ios, name const & opn, unsigned p, expr const & d);
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void add_postfix(environment const & env, io_state const & ios, name const & opn, unsigned p, expr const & d);
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void add_mixfixl(environment const & env, io_state const & ios, unsigned sz, name const * opns, unsigned precedence, expr const & d);
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void add_mixfixr(environment const & env, io_state const & ios, unsigned sz, name const * opns, unsigned precedence, expr const & d);
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void add_mixfixc(environment const & env, io_state const & ios, unsigned sz, name const * opns, unsigned precedence, expr const & d);
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void add_mixfixo(environment const & env, io_state const & ios, unsigned sz, name const * opns, unsigned precedence, expr const & d);
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inline void add_mixfixl(environment const & env, io_state const & ios, std::initializer_list<name> const & l, unsigned p, expr const & d) {
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add_mixfixl(env, ios, l.size(), l.begin(), p, d);
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}
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inline void add_mixfixr(environment const & env, io_state const & ios, std::initializer_list<name> const & l, unsigned p, expr const & d) {
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add_mixfixr(env, ios, l.size(), l.begin(), p, d);
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}
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inline void add_mixfixc(environment const & env, io_state const & ios, std::initializer_list<name> const & l, unsigned p, expr const & d) {
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add_mixfixc(env, ios, l.size(), l.begin(), p, d);
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}
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inline void add_mixfixo(environment const & env, io_state const & ios, std::initializer_list<name> const & l, unsigned p, expr const & d) {
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add_mixfixo(env, ios, l.size(), l.begin(), p, d);
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}
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/**
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\brief Return the operator (if one exists) that can appear at
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the beginning of a language construct.
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\remark If there isn't a nud operator starting with \c n, then
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return the null operator.
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\remark This is used for parsing.
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*/
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operator_info find_nud(ro_environment const & env, name const & n);
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/**
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\brief Return the operator (if one exists) that can appear
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inside of a language construct.
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\remark If there isn't a led operator starting with \c n, then
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return the null operator.
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\remark This is used for parsing.
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*/
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operator_info find_led(ro_environment const & env, name const & n);
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/**
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\brief Return the precedence (aka binding power) of the given name.
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*/
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optional<unsigned> get_lbp(ro_environment const & env, name const & n);
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/**
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\brief Return the operator (if one exists) associated with the
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given expression.
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\remark If an operator is not associated with \c e, then
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return the null operator.
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\remark This is used for pretty printing.
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\remark If unicode is false, then only operators containing
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safe ASCII chars are considered.
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*/
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operator_info find_op_for(ro_environment const & env, expr const & e, bool unicode);
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/*@}*/
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/**
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@name Implicit arguments.
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*/
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/*@{*/
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/**
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\brief Mark the given arguments of \c n as implicit.
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The bit-vector array specify the position of the implicit arguments.
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*/
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void mark_implicit_arguments(environment const & env, name const & n, unsigned sz, bool const * implicit);
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void mark_implicit_arguments(environment const & env, name const & n, std::initializer_list<bool> const & l);
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void mark_implicit_arguments(environment const & env, expr const & n, std::initializer_list<bool> const & l);
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/**
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\brief Syntax sugar for mark_implicit_arguments(n, {true, ..., true}), with prefix_sz true's.
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*/
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void mark_implicit_arguments(environment const & env, name const & n, unsigned prefix_sz);
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void mark_implicit_arguments(environment const & env, expr const & n, unsigned prefix_sz);
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/**
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\brief Return true iff \c n has implicit arguments
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*/
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bool has_implicit_arguments(ro_environment const & env, name const & n);
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/**
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\brief Return the position of the arguments that are implicit.
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*/
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std::vector<bool> const & get_implicit_arguments(ro_environment const & env, name const & n);
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/**
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\brief Return the position of the arguments that are implicit.
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\remark If \c n is not a constant, then return the empty vector.
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*/
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std::vector<bool> const & get_implicit_arguments(ro_environment const & env, expr const & n);
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/**
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\brief This frontend associates an definition with each
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definition (or postulate) that has implicit arguments. The
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additional definition has explicit arguments, and it is called
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n::explicit. The explicit version can be used when the Lean
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frontend can't figure out the value for the implicit
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arguments.
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*/
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name const & get_explicit_version(ro_environment const & env, name const & n);
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/**
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\brief Return true iff \c n is the name of the "explicit"
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version of an object with implicit arguments
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*/
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bool is_explicit(ro_environment const & env, name const & n);
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/*@}*/
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/**
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@name Coercions
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We support a very basic form of coercion. It is an expression
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with type T1 -> T2. This expression can be used to convert
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an expression of type T1 into an expression of type T2 whenever
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T2 is expected, but T1 was provided.
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*/
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/*@{*/
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/**
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\brief Add a new coercion to the frontend.
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It throws an exception if f does not have type T1 -> T2, or if there is already a
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coercion from T1 to T2.
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*/
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void add_coercion(environment const & env, expr const & f);
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/**
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\brief Return true iff the given expression is a coercion. That is, it was added using
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\c add_coercion.
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*/
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bool is_coercion(ro_environment const & env, expr const & f);
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/**
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\brief Return a coercion from given_type to expected_type if it exists.
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*/
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optional<expr> get_coercion(ro_environment const & env, expr const & from_type, expr const & to_type);
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/**
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\brief Return the list of coercions for the given type.
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The result is a list of pairs (to_type, function).
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*/
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list<expr_pair> get_coercions(ro_environment const & env, expr const & from_type);
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/*@}*/
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}
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