refactor(kernel): replace_fn functional object
Signed-off-by: Leonardo de Moura <leonardo@microsoft.com>
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7 changed files with 40 additions and 40 deletions
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@ -13,26 +13,26 @@ Author: Leonardo de Moura
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namespace lean {
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expr abstract(expr const & e, unsigned n, expr const * s) {
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lean_assert(std::all_of(s, s+n, closed));
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return replace(e, [=](expr const & e, unsigned offset) -> expr {
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return replace(e, [=](expr const & e, unsigned offset) -> optional<expr> {
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unsigned i = n;
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while (i > 0) {
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--i;
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if (s[i] == e)
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return mk_var(offset + n - i - 1);
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return some_expr(mk_var(offset + n - i - 1));
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}
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return e;
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return none_expr();
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});
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}
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expr abstract_p(expr const & e, unsigned n, expr const * s) {
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lean_assert(std::all_of(s, s+n, closed));
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return replace(e, [=](expr const & e, unsigned offset) -> expr {
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return replace(e, [=](expr const & e, unsigned offset) -> optional<expr> {
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unsigned i = n;
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while (i > 0) {
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--i;
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if (is_eqp(s[i], e))
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return mk_var(offset + n - i - 1);
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return some_expr(mk_var(offset + n - i - 1));
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}
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return e;
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return none_expr();
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});
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}
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#define MkBinder(FName) \
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@ -285,12 +285,12 @@ expr lower_free_vars(expr const & e, unsigned s, unsigned d) {
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return e;
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lean_assert(s >= d);
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lean_assert(!has_free_var(e, s-d, s));
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return replace(e, [=](expr const & e, unsigned offset) -> expr {
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return replace(e, [=](expr const & e, unsigned offset) -> optional<expr> {
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if (is_var(e) && var_idx(e) >= s + offset) {
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lean_assert(var_idx(e) >= offset + d);
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return mk_var(var_idx(e) - d);
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return some_expr(mk_var(var_idx(e) - d));
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} else {
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return e;
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return none_expr();
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}
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});
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}
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@ -299,11 +299,11 @@ expr lower_free_vars(expr const & e, unsigned d) { return lower_free_vars(e, d,
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expr lift_free_vars(expr const & e, unsigned s, unsigned d) {
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if (d == 0 || closed(e))
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return e;
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return replace(e, [=](expr const & e, unsigned offset) -> expr {
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return replace(e, [=](expr const & e, unsigned offset) -> optional<expr> {
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if (is_var(e) && var_idx(e) >= s + offset) {
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return mk_var(var_idx(e) + d);
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return some_expr(mk_var(var_idx(e) + d));
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} else {
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return e;
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return none_expr();
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}
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});
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}
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@ -13,24 +13,21 @@ Author: Leonardo de Moura
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namespace lean {
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template<bool ClosedSubst>
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expr instantiate_core(expr const & a, unsigned s, unsigned n, expr const * subst) {
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return replace(a, [=](expr const & m, unsigned offset) -> expr {
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return replace(a, [=](expr const & m, unsigned offset) -> optional<expr> {
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if (is_var(m)) {
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unsigned vidx = var_idx(m);
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if (vidx >= offset + s) {
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if (vidx < offset + s + n) {
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if (ClosedSubst)
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return subst[vidx - s - offset];
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return some_expr(subst[vidx - s - offset]);
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else
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return lift_free_vars(subst[vidx - s - offset], offset);
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return some_expr(lift_free_vars(subst[vidx - s - offset], offset));
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} else {
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return mk_var(vidx - n);
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return some_expr(mk_var(vidx - n));
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}
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} else {
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return m;
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}
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} else {
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return m;
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}
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return none_expr();
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});
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}
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@ -95,11 +92,11 @@ expr head_beta_reduce(expr const & t) {
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}
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expr beta_reduce(expr t) {
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auto f = [=](expr const & m, unsigned) -> expr {
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auto f = [=](expr const & m, unsigned) -> optional<expr> {
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if (is_head_beta(m))
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return head_beta_reduce(m);
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return some_expr(head_beta_reduce(m));
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else
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return m;
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return none_expr();
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};
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while (true) {
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expr new_t = replace_fn(f)(t);
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@ -95,16 +95,16 @@ class normalizer::imp {
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/** \brief Convert the value \c v back into an expression in a context that contains \c k binders. */
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expr reify(expr const & v, unsigned k) {
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return replace(v, [&](expr const & e, unsigned DEBUG_CODE(offset)) -> expr {
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return replace(v, [&](expr const & e, unsigned DEBUG_CODE(offset)) -> optional<expr> {
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lean_assert(offset == 0);
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lean_assert(!is_lambda(e) && !is_pi(e) && !is_sigma(e) && !is_let(e));
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if (is_var(e)) {
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// de Bruijn level --> de Bruijn index
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return mk_var(k - var_idx(e) - 1);
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return some_expr(mk_var(k - var_idx(e) - 1));
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} else if (is_closure(e)) {
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return reify_closure(to_closure(e), k);
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return some_expr(reify_closure(to_closure(e), k));
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} else {
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return e;
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return none_expr();
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}
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});
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}
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@ -31,9 +31,12 @@ bool replace_fn::visit(expr const & e, unsigned offset) {
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shared = true;
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}
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expr r = m_f(e, offset);
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if (is_atomic(r) || !is_eqp(e, r)) {
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save_result(e, r, offset, shared);
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optional<expr> r = m_f(e, offset);
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if (r) {
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save_result(e, *r, offset, shared);
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return true;
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} else if (is_atomic(e)) {
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save_result(e, e, offset, shared);
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return true;
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} else {
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m_fs.emplace_back(e, offset, shared);
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@ -46,7 +46,7 @@ class replace_fn {
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typedef buffer<expr> result_stack;
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expr_cell_offset_map<expr> m_cache;
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std::function<expr(expr const &, unsigned)> m_f;
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std::function<optional<expr>(expr const &, unsigned)> m_f;
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std::function<void(expr const &, expr const &)> m_post;
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frame_stack m_fs;
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result_stack m_rs;
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@ -74,17 +74,17 @@ static void tst3() {
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expr d = Const("d");
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expr A = Const("A");
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expr_map<expr> trace;
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auto proc = [&](expr const & x, unsigned offset) -> expr {
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auto proc = [&](expr const & x, unsigned offset) -> optional<expr> {
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if (is_var(x)) {
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unsigned vidx = var_idx(x);
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if (vidx == offset)
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return c;
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return some_expr(c);
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else if (vidx > offset)
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return mk_var(vidx-1);
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return some_expr(mk_var(vidx-1));
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else
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return x;
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return none_expr();
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} else {
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return x;
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return none_expr();
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}
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};
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replace_fn replacer(proc, tracer(trace));
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