* Implementation of GiNaC's indices. */
/*
- * GiNaC Copyright (C) 1999-2003 Johannes Gutenberg University Mainz, Germany
+ * GiNaC Copyright (C) 1999-2004 Johannes Gutenberg University Mainz, Germany
*
* This program is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License as published by
*/
#include <iostream>
+#include <sstream>
#include <stdexcept>
#include "idx.h"
#include "symbol.h"
#include "lst.h"
#include "relational.h"
-#include "print.h"
+#include "operators.h"
#include "archive.h"
#include "utils.h"
namespace GiNaC {
-GINAC_IMPLEMENT_REGISTERED_CLASS(idx, basic)
-GINAC_IMPLEMENT_REGISTERED_CLASS(varidx, idx)
-GINAC_IMPLEMENT_REGISTERED_CLASS(spinidx, varidx)
+GINAC_IMPLEMENT_REGISTERED_CLASS_OPT(idx, basic,
+ print_func<print_context>(&idx::do_print).
+ print_func<print_latex>(&idx::do_print_latex).
+ print_func<print_tree>(&idx::do_print_tree))
+
+GINAC_IMPLEMENT_REGISTERED_CLASS_OPT(varidx, idx,
+ print_func<print_context>(&varidx::do_print).
+ print_func<print_latex>(&varidx::do_print_latex).
+ print_func<print_tree>(&varidx::do_print_tree))
+
+GINAC_IMPLEMENT_REGISTERED_CLASS_OPT(spinidx, varidx,
+ print_func<print_context>(&spinidx::do_print).
+ print_func<print_latex>(&spinidx::do_print_latex).
+ print_func<print_tree>(&spinidx::do_print_tree))
//////////
-// default ctor, dtor, copy ctor, assignment operator and helpers
+// default constructor
//////////
idx::idx() : inherited(TINFO_idx) {}
tinfo_key = TINFO_spinidx;
}
-void idx::copy(const idx & other)
-{
- inherited::copy(other);
- value = other.value;
- dim = other.dim;
-}
-
-void varidx::copy(const varidx & other)
-{
- inherited::copy(other);
- covariant = other.covariant;
-}
-
-void spinidx::copy(const spinidx & other)
-{
- inherited::copy(other);
- dotted = other.dotted;
-}
-
-DEFAULT_DESTROY(idx)
-DEFAULT_DESTROY(varidx)
-DEFAULT_DESTROY(spinidx)
-
//////////
// other constructors
//////////
// archiving
//////////
-idx::idx(const archive_node &n, const lst &sym_lst) : inherited(n, sym_lst)
+idx::idx(const archive_node &n, lst &sym_lst) : inherited(n, sym_lst)
{
n.find_ex("value", value, sym_lst);
n.find_ex("dim", dim, sym_lst);
}
-varidx::varidx(const archive_node &n, const lst &sym_lst) : inherited(n, sym_lst)
+varidx::varidx(const archive_node &n, lst &sym_lst) : inherited(n, sym_lst)
{
n.find_bool("covariant", covariant);
}
-spinidx::spinidx(const archive_node &n, const lst &sym_lst) : inherited(n, sym_lst)
+spinidx::spinidx(const archive_node &n, lst &sym_lst) : inherited(n, sym_lst)
{
n.find_bool("dotted", dotted);
}
// functions overriding virtual functions from base classes
//////////
-void idx::print(const print_context & c, unsigned level) const
-{
- if (is_of_type(c, print_tree)) {
-
- c.s << std::string(level, ' ') << class_name()
- << std::hex << ", hash=0x" << hashvalue << ", flags=0x" << flags << std::dec
- << std::endl;
- unsigned delta_indent = static_cast<const print_tree &>(c).delta_indent;
- value.print(c, level + delta_indent);
- dim.print(c, level + delta_indent);
-
- } else {
-
- if (is_a<print_latex>(c))
- c.s << "{";
- else
- c.s << ".";
- bool need_parens = !(is_exactly_a<numeric>(value) || is_a<symbol>(value));
- if (need_parens)
- c.s << "(";
- value.print(c);
- if (need_parens)
- c.s << ")";
- if (is_a<print_latex>(c))
- c.s << "}";
+void idx::print_index(const print_context & c, unsigned level) const
+{
+ bool need_parens = !(is_exactly_a<numeric>(value) || is_a<symbol>(value));
+ if (need_parens)
+ c.s << "(";
+ value.print(c);
+ if (need_parens)
+ c.s << ")";
+ if (c.options & print_options::print_index_dimensions) {
+ c.s << "[";
+ dim.print(c);
+ c.s << "]";
}
}
-void varidx::print(const print_context & c, unsigned level) const
+void idx::do_print(const print_context & c, unsigned level) const
{
- if (is_of_type(c, print_tree)) {
+ c.s << ".";
+ print_index(c, level);
+}
- c.s << std::string(level, ' ') << class_name()
- << std::hex << ", hash=0x" << hashvalue << ", flags=0x" << flags << std::dec
- << (covariant ? ", covariant" : ", contravariant")
- << std::endl;
- unsigned delta_indent = static_cast<const print_tree &>(c).delta_indent;
- value.print(c, level + delta_indent);
- dim.print(c, level + delta_indent);
+void idx::do_print_latex(const print_latex & c, unsigned level) const
+{
+ c.s << "{";
+ print_index(c, level);
+ c.s << "}";
+}
- } else {
- if (is_a<print_latex>(c))
- c.s << "{";
- else {
- if (covariant)
- c.s << ".";
- else
- c.s << "~";
- }
- bool need_parens = !(is_exactly_a<numeric>(value) || is_a<symbol>(value));
- if (need_parens)
- c.s << "(";
- value.print(c);
- if (need_parens)
- c.s << ")";
- if (is_a<print_latex>(c))
- c.s << "}";
- }
+void idx::do_print_tree(const print_tree & c, unsigned level) const
+{
+ c.s << std::string(level, ' ') << class_name() << " @" << this
+ << std::hex << ", hash=0x" << hashvalue << ", flags=0x" << flags << std::dec
+ << std::endl;
+ value.print(c, level + c.delta_indent);
+ dim.print(c, level + c.delta_indent);
}
-void spinidx::print(const print_context & c, unsigned level) const
+void varidx::do_print(const print_context & c, unsigned level) const
{
- if (is_of_type(c, print_tree)) {
+ if (covariant)
+ c.s << ".";
+ else
+ c.s << "~";
+ print_index(c, level);
+}
- c.s << std::string(level, ' ') << class_name()
- << std::hex << ", hash=0x" << hashvalue << ", flags=0x" << flags << std::dec
- << (covariant ? ", covariant" : ", contravariant")
- << (dotted ? ", dotted" : ", undotted")
- << std::endl;
- unsigned delta_indent = static_cast<const print_tree &>(c).delta_indent;
- value.print(c, level + delta_indent);
- dim.print(c, level + delta_indent);
+void varidx::do_print_tree(const print_tree & c, unsigned level) const
+{
+ c.s << std::string(level, ' ') << class_name() << " @" << this
+ << std::hex << ", hash=0x" << hashvalue << ", flags=0x" << flags << std::dec
+ << (covariant ? ", covariant" : ", contravariant")
+ << std::endl;
+ value.print(c, level + c.delta_indent);
+ dim.print(c, level + c.delta_indent);
+}
- } else {
+void spinidx::do_print(const print_context & c, unsigned level) const
+{
+ if (covariant)
+ c.s << ".";
+ else
+ c.s << "~";
+ if (dotted)
+ c.s << "*";
+ print_index(c, level);
+}
- bool is_tex = is_of_type(c, print_latex);
- if (is_tex) {
- if (covariant)
- c.s << "_{";
- else
- c.s << "^{";
- } else {
- if (covariant)
- c.s << ".";
- else
- c.s << "~";
- }
- if (dotted) {
- if (is_tex)
- c.s << "\\dot{";
- else
- c.s << "*";
- }
- bool need_parens = !(is_exactly_a<numeric>(value) || is_a<symbol>(value));
- if (need_parens)
- c.s << "(";
- value.print(c);
- if (need_parens)
- c.s << ")";
- if (is_tex && dotted)
- c.s << "}";
- if (is_tex)
- c.s << "}";
- }
+void spinidx::do_print_latex(const print_latex & c, unsigned level) const
+{
+ if (dotted)
+ c.s << "\\dot{";
+ else
+ c.s << "{";
+ print_index(c, level);
+ c.s << "}";
+}
+
+void spinidx::do_print_tree(const print_tree & c, unsigned level) const
+{
+ c.s << std::string(level, ' ') << class_name() << " @" << this
+ << std::hex << ", hash=0x" << hashvalue << ", flags=0x" << flags << std::dec
+ << (covariant ? ", covariant" : ", contravariant")
+ << (dotted ? ", dotted" : ", undotted")
+ << std::endl;
+ value.print(c, level + c.delta_indent);
+ dim.print(c, level + c.delta_indent);
}
bool idx::info(unsigned inf) const
return inherited::info(inf);
}
-unsigned idx::nops() const
+size_t idx::nops() const
{
// don't count the dimension as that is not really a sub-expression
return 1;
}
-ex & idx::let_op(int i)
+ex idx::op(size_t i) const
{
GINAC_ASSERT(i == 0);
return value;
}
+ex idx::map(map_function & f) const
+{
+ const ex &mapped_value = f(value);
+ if (are_ex_trivially_equal(value, mapped_value))
+ return *this;
+ else {
+ idx *copy = duplicate();
+ copy->setflag(status_flags::dynallocated);
+ copy->clearflag(status_flags::hash_calculated);
+ copy->value = mapped_value;
+ return *copy;
+ }
+}
+
/** Returns order relation between two indices of the same type. The order
* must be such that dummy indices lie next to each other. */
int idx::compare_same_type(const basic & other) const
// Check variance last so dummy indices will end up next to each other
if (covariant != o.covariant)
return covariant ? -1 : 1;
+
return 0;
}
if (covariant != o.covariant)
return false;
+
return inherited::match_same_type(other);
}
return inherited::match_same_type(other);
}
+unsigned idx::calchash() const
+{
+ // NOTE: The code in simplify_indexed() assumes that canonically
+ // ordered sequences of indices have the two members of dummy index
+ // pairs lying next to each other. The hash values for indices must
+ // be devised accordingly. The easiest (only?) way to guarantee the
+ // desired ordering is to make indices with the same value have equal
+ // hash keys. That is, the hash values must not depend on the index
+ // dimensions or other attributes (variance etc.).
+ // The compare_same_type() methods will take care of the rest.
+ unsigned v = golden_ratio_hash(tinfo());
+ v = rotate_left(v);
+ v ^= value.gethash();
+
+ // Store calculated hash value only if object is already evaluated
+ if (flags & status_flags::evaluated) {
+ setflag(status_flags::hash_calculated);
+ hashvalue = v;
+ }
+
+ return v;
+}
+
/** By default, basic::evalf would evaluate the index value but we don't want
* a.1 to become a.(1.0). */
ex idx::evalf(int level) const
return *this;
}
-ex idx::subs(const lst & ls, const lst & lr, bool no_pattern) const
+ex idx::subs(const exmap & m, unsigned options) const
{
- GINAC_ASSERT(ls.nops() == lr.nops());
-
// First look for index substitutions
- for (unsigned i=0; i<ls.nops(); i++) {
- if (is_equal(ex_to<basic>(ls.op(i)))) {
-
- // Substitution index->index
- if (is_a<idx>(lr.op(i)))
- return lr.op(i);
-
- // Otherwise substitute value
- idx *i_copy = static_cast<idx *>(duplicate());
- i_copy->value = lr.op(i);
- i_copy->clearflag(status_flags::hash_calculated);
- return i_copy->setflag(status_flags::dynallocated);
- }
+ exmap::const_iterator it = m.find(*this);
+ if (it != m.end()) {
+
+ // Substitution index->index
+ if (is_a<idx>(it->second))
+ return it->second;
+
+ // Otherwise substitute value
+ idx *i_copy = duplicate();
+ i_copy->value = it->second;
+ i_copy->clearflag(status_flags::hash_calculated);
+ return i_copy->setflag(status_flags::dynallocated);
}
// None, substitute objects in value (not in dimension)
- const ex &subsed_value = value.subs(ls, lr, no_pattern);
+ const ex &subsed_value = value.subs(m, options);
if (are_ex_trivially_equal(value, subsed_value))
return *this;
- idx *i_copy = static_cast<idx *>(duplicate());
+ idx *i_copy = duplicate();
i_copy->value = subsed_value;
i_copy->clearflag(status_flags::hash_calculated);
return i_copy->setflag(status_flags::dynallocated);
{
const idx &o = static_cast<const idx &>(other);
- // Only pure symbols form dummy pairs, numeric indices and expressions
- // like "2n+1" don't
+ // Only pure symbols form dummy pairs, "2n+1" doesn't
if (!is_a<symbol>(value))
return false;
ex idx::replace_dim(const ex & new_dim) const
{
- idx *i_copy = static_cast<idx *>(duplicate());
+ idx *i_copy = duplicate();
i_copy->dim = new_dim;
i_copy->clearflag(status_flags::hash_calculated);
return i_copy->setflag(status_flags::dynallocated);
ex idx::minimal_dim(const idx & other) const
{
- if (dim.is_equal(other.dim) || dim < other.dim || (is_exactly_a<numeric>(dim) && is_a<symbol>(other.dim)))
- return dim;
- else if (dim > other.dim || (is_a<symbol>(dim) && is_exactly_a<numeric>(other.dim)))
- return other.dim;
- else
- throw (std::runtime_error("idx::minimal_dim: index dimensions cannot be ordered"));
+ return GiNaC::minimal_dim(dim, other.dim);
}
-ex varidx::toggle_variance(void) const
+ex varidx::toggle_variance() const
{
- varidx *i_copy = static_cast<varidx *>(duplicate());
+ varidx *i_copy = duplicate();
i_copy->covariant = !i_copy->covariant;
i_copy->clearflag(status_flags::hash_calculated);
return i_copy->setflag(status_flags::dynallocated);
}
-ex spinidx::toggle_dot(void) const
+ex spinidx::toggle_dot() const
{
- spinidx *i_copy = static_cast<spinidx *>(duplicate());
+ spinidx *i_copy = duplicate();
i_copy->dotted = !i_copy->dotted;
i_copy->clearflag(status_flags::hash_calculated);
return i_copy->setflag(status_flags::dynallocated);
}
-ex spinidx::toggle_variance_dot(void) const
+ex spinidx::toggle_variance_dot() const
{
- spinidx *i_copy = static_cast<spinidx *>(duplicate());
+ spinidx *i_copy = duplicate();
i_copy->covariant = !i_copy->covariant;
i_copy->dotted = !i_copy->dotted;
i_copy->clearflag(status_flags::hash_calculated);
out_free.push_back(*last);
}
+ex minimal_dim(const ex & dim1, const ex & dim2)
+{
+ if (dim1.is_equal(dim2) || dim1 < dim2 || (is_exactly_a<numeric>(dim1) && is_a<symbol>(dim2)))
+ return dim1;
+ else if (dim1 > dim2 || (is_a<symbol>(dim1) && is_exactly_a<numeric>(dim2)))
+ return dim2;
+ else {
+ std::ostringstream s;
+ s << "minimal_dim(): index dimensions " << dim1 << " and " << dim2 << " cannot be ordered";
+ throw (std::runtime_error(s.str()));
+ }
+}
+
} // namespace GiNaC