feat(library/tactic): add auxiliary object "location"
This object will used to specify the scope of application of tactics
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src/library/tactic/location.cpp
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113
src/library/tactic/location.cpp
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/*
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Copyright (c) 2015 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 "library/kernel_serializer.h"
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#include "library/tactic/location.h"
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namespace lean {
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unsigned occurrence::contains(unsigned occ_idx) const {
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switch (m_kind) {
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case All: return true;
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case Pos: return std::find(m_occs.begin(), m_occs.end(), occ_idx) != m_occs.end();
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case Neg: return std::find(m_occs.begin(), m_occs.end(), occ_idx) == m_occs.end();
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}
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lean_unreachable();
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}
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serializer & operator<<(serializer & s, occurrence const & o) {
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s << static_cast<char>(o.m_kind);
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write_list<unsigned>(s, o.m_occs);
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return s;
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}
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deserializer & operator>>(deserializer & d, occurrence & o) {
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o.m_kind = static_cast<occurrence::kind>(d.read_char());
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o.m_occs = read_list<unsigned>(d);
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return d;
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}
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location location::mk_hypotheses(buffer<name> const & hs) {
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buffer<pair<name, occurrence>> tmp;
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for (name const & h : hs)
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tmp.push_back(mk_pair(h, occurrence()));
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return location(Hypotheses, occurrence(), to_list(tmp));
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}
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location location::mk_goal_hypotheses(buffer<name> const & hs) {
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buffer<pair<name, occurrence>> tmp;
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for (name const & h : hs)
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tmp.push_back(mk_pair(h, occurrence()));
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return location(GoalHypotheses, occurrence(), to_list(tmp));
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}
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location location::mk_hypotheses_at(buffer<name> const & hs, buffer<occurrence> const & hs_occs) {
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lean_assert(hs.size() == hs_occs.size());
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buffer<pair<name, occurrence>> tmp;
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for (unsigned i = 0; i < hs.size(); i++)
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tmp.push_back(mk_pair(hs[i], hs_occs[i]));
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return location(Hypotheses, occurrence(), to_list(tmp));
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}
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location location::mk_at(occurrence const & g_occs, buffer<name> const & hs, buffer<occurrence> const & hs_occs) {
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lean_assert(hs.size() == hs_occs.size());
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buffer<pair<name, occurrence>> tmp;
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for (unsigned i = 0; i < hs.size(); i++)
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tmp.push_back(mk_pair(hs[i], hs_occs[i]));
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return location(GoalHypotheses, g_occs, to_list(tmp));
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}
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optional<occurrence> location::includes_goal() const {
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switch (m_kind) {
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case Everywhere: case GoalOnly: case GoalHypotheses:
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return optional<occurrence>(m_goal);
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case AllHypotheses: case Hypotheses:
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return optional<occurrence>();
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}
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lean_unreachable();
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}
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optional<occurrence> location::includes_hypothesis(name const & h) const {
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switch (m_kind) {
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case Everywhere: case AllHypotheses:
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return optional<occurrence>(occurrence());
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case GoalOnly:
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return optional<occurrence>();
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case Hypotheses: case GoalHypotheses:
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for (auto const & p : m_hyps) {
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if (p.first == h)
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return optional<occurrence>(p.second);
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}
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return optional<occurrence>();
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}
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lean_unreachable();
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}
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void location::get_explicit_hypotheses_names(buffer<name> & r) const {
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for (auto const & p : m_hyps)
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r.push_back(p.first);
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}
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serializer & operator<<(serializer & s, location const & loc) {
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s << static_cast<char>(loc.m_kind) << loc.m_goal << length(loc.m_hyps);
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for (auto const & p : loc.m_hyps)
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s << p.first << p.second;
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return s;
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}
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deserializer & operator>>(deserializer & d, location & loc) {
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loc.m_kind = static_cast<location::kind>(d.read_char());
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d >> loc.m_goal;
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unsigned num = d.read_unsigned();
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buffer<pair<name, occurrence>> tmp;
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for (unsigned i = 0; i < num; i++) {
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name h; occurrence o;
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d >> h >> o;
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tmp.emplace_back(h, o);
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}
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loc.m_hyps = to_list(tmp);
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return d;
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}
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}
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81
src/library/tactic/location.h
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81
src/library/tactic/location.h
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/*
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Copyright (c) 2015 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 "library/kernel_serializer.h"
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namespace lean {
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/*
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We can specify the scope of application of some clauses using
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"locations". Locations specify goal and/or hypotheses and
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"occurrences" inside a given location. The occurrences are
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just numeric values and the specify which occurrences of a
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term instance are considered by the tactic.
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Examples:
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- rewrite H1 in H at (1, 3)
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says the scope of (rewrite H1) is the hypothesis H, and
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only the first and third occurrences of the H1 left-hand-side
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will be considered.
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- rewrite H1 in H at -1
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says the scope of (rewrite H1) is the hypothesis H and all
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but the first occurrence of the H1 left-hand-side
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will be considered.
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*/
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class occurrence {
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enum kind { All, Pos, Neg };
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kind m_kind;
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list<unsigned> m_occs;
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occurrence(kind k, list<unsigned> const & occs):m_kind(k), m_occs(occs) {}
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public:
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occurrence():m_kind(All) {}
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static occurrence mk_occurrences(buffer<unsigned> const & occs) { return occurrence(Pos, to_list(occs)); }
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static occurrence mk_occurrences(list<unsigned> const & occs) { return occurrence(Pos, occs); }
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static occurrence mk_except_occurrences(buffer<unsigned> const & occs) { return occurrence(Neg, to_list(occs)); }
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static occurrence mk_except_occurrences(list<unsigned> const & occs) { return occurrence(Neg, occs); }
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bool is_all() const { return m_kind == All; }
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bool is_except() const { return m_kind == Neg; }
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/** \brief Return true iff this occurrence object contains the given occurrence index. */
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unsigned contains(unsigned occ_idx) const;
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friend serializer & operator<<(serializer & s, occurrence const & o);
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friend deserializer & operator>>(deserializer & d, occurrence & o);
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};
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class location {
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public:
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enum kind { Everywhere, GoalOnly, AllHypotheses, Hypotheses, GoalHypotheses };
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private:
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kind m_kind;
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occurrence m_goal;
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list<pair<name, occurrence>> m_hyps;
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location(kind k, occurrence const & g = occurrence(),
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list<pair<name, occurrence>> const & hs = list<pair<name, occurrence>>()):
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m_kind(k), m_goal(g), m_hyps(hs) {}
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public:
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location():m_kind(GoalOnly) {}
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static location mk_goal_only() { return location(); }
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static location mk_everywhere() { return location(Everywhere); }
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static location mk_all_hypotheses() { return location(AllHypotheses); }
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static location mk_hypotheses(buffer<name> const & hs);
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static location mk_goal_hypotheses(buffer<name> const & hs);
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static location mk_goal_at(occurrence const & o) { return location(GoalOnly, o); }
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static location mk_hypotheses_at(buffer<name> const & hs, buffer<occurrence> const & occs);
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static location mk_at(occurrence const & g_occs, buffer<name> const & hs, buffer<occurrence> const & hs_occs);
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optional<occurrence> includes_goal() const;
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optional<occurrence> includes_hypothesis(name const & h) const;
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void get_explicit_hypotheses_names(buffer<name> & r) const;
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friend serializer & operator<<(serializer & s, location const & loc);
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friend deserializer & operator>>(deserializer & d, location & loc);
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};
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}
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