NEWS
author haftmann
Tue, 08 Jun 2010 16:37:19 +0200
changeset 37362 3581483cca6c
parent 37358 22757d15cd86
child 37364 09467cdfa198
permissions -rw-r--r--
qualified types "+" and nat; qualified constants Ball, Bex, Suc, curry; modernized some specifications
     1 Isabelle NEWS -- history user-relevant changes
     2 ==============================================
     3 
     4 New in this Isabelle version
     5 ----------------------------
     6 
     7 *** HOL ***
     8 
     9 * Some previously unqualified names have been qualified:
    10 
    11   types
    12     nat ~> Nat.nat
    13     + ~> Sum_Type.+
    14 
    15   constants
    16     Ball ~> Set.Ball
    17     Bex ~> Set.Bex
    18     Suc ~> Nat.Suc
    19     curry ~> Product_Type.curry
    20 
    21 INCOMPATIBILITY.
    22 
    23 
    24 New in Isabelle2009-2 (June 2010)
    25 ---------------------------------
    26 
    27 *** General ***
    28 
    29 * Authentic syntax for *all* logical entities (type classes, type
    30 constructors, term constants): provides simple and robust
    31 correspondence between formal entities and concrete syntax.  Within
    32 the parse tree / AST representations, "constants" are decorated by
    33 their category (class, type, const) and spelled out explicitly with
    34 their full internal name.
    35 
    36 Substantial INCOMPATIBILITY concerning low-level syntax declarations
    37 and translations (translation rules and translation functions in ML).
    38 Some hints on upgrading:
    39 
    40   - Many existing uses of 'syntax' and 'translations' can be replaced
    41     by more modern 'type_notation', 'notation' and 'abbreviation',
    42     which are independent of this issue.
    43 
    44   - 'translations' require markup within the AST; the term syntax
    45     provides the following special forms:
    46 
    47       CONST c   -- produces syntax version of constant c from context
    48       XCONST c  -- literally c, checked as constant from context
    49       c         -- literally c, if declared by 'syntax'
    50 
    51     Plain identifiers are treated as AST variables -- occasionally the
    52     system indicates accidental variables via the error "rhs contains
    53     extra variables".
    54 
    55     Type classes and type constructors are marked according to their
    56     concrete syntax.  Some old translations rules need to be written
    57     for the "type" category, using type constructor application
    58     instead of pseudo-term application of the default category
    59     "logic".
    60 
    61   - 'parse_translation' etc. in ML may use the following
    62     antiquotations:
    63 
    64       @{class_syntax c}   -- type class c within parse tree / AST
    65       @{term_syntax c}    -- type constructor c within parse tree / AST
    66       @{const_syntax c}   -- ML version of "CONST c" above
    67       @{syntax_const c}   -- literally c (checked wrt. 'syntax' declarations)
    68 
    69   - Literal types within 'typed_print_translations', i.e. those *not*
    70     represented as pseudo-terms are represented verbatim.  Use @{class
    71     c} or @{type_name c} here instead of the above syntax
    72     antiquotations.
    73 
    74 Note that old non-authentic syntax was based on unqualified base
    75 names, so all of the above "constant" names would coincide.  Recall
    76 that 'print_syntax' and ML_command "set Syntax.trace_ast" help to
    77 diagnose syntax problems.
    78 
    79 * Type constructors admit general mixfix syntax, not just infix.
    80 
    81 * Concrete syntax may be attached to local entities without a proof
    82 body, too.  This works via regular mixfix annotations for 'fix',
    83 'def', 'obtain' etc. or via the explicit 'write' command, which is
    84 similar to the 'notation' command in theory specifications.
    85 
    86 * Discontinued unnamed infix syntax (legacy feature for many years) --
    87 need to specify constant name and syntax separately.  Internal ML
    88 datatype constructors have been renamed from InfixName to Infix etc.
    89 Minor INCOMPATIBILITY.
    90 
    91 * Schematic theorem statements need to be explicitly markup as such,
    92 via commands 'schematic_lemma', 'schematic_theorem',
    93 'schematic_corollary'.  Thus the relevance of the proof is made
    94 syntactically clear, which impacts performance in a parallel or
    95 asynchronous interactive environment.  Minor INCOMPATIBILITY.
    96 
    97 * Use of cumulative prems via "!" in some proof methods has been
    98 discontinued (old legacy feature).
    99 
   100 * References 'trace_simp' and 'debug_simp' have been replaced by
   101 configuration options stored in the context. Enabling tracing (the
   102 case of debugging is similar) in proofs works via
   103 
   104   using [[trace_simp = true]]
   105 
   106 Tracing is then active for all invocations of the simplifier in
   107 subsequent goal refinement steps. Tracing may also still be enabled or
   108 disabled via the ProofGeneral settings menu.
   109 
   110 * Separate commands 'hide_class', 'hide_type', 'hide_const',
   111 'hide_fact' replace the former 'hide' KIND command.  Minor
   112 INCOMPATIBILITY.
   113 
   114 * Improved parallelism of proof term normalization: usedir -p2 -q0 is
   115 more efficient than combinations with -q1 or -q2.
   116 
   117 
   118 *** Pure ***
   119 
   120 * Proofterms record type-class reasoning explicitly, using the
   121 "unconstrain" operation internally.  This eliminates all sort
   122 constraints from a theorem and proof, introducing explicit
   123 OFCLASS-premises.  On the proof term level, this operation is
   124 automatically applied at theorem boundaries, such that closed proofs
   125 are always free of sort constraints.  INCOMPATIBILITY for tools that
   126 inspect proof terms.
   127 
   128 * Local theory specifications may depend on extra type variables that
   129 are not present in the result type -- arguments TYPE('a) :: 'a itself
   130 are added internally.  For example:
   131 
   132   definition unitary :: bool where "unitary = (ALL (x::'a) y. x = y)"
   133 
   134 * Predicates of locales introduced by classes carry a mandatory
   135 "class" prefix.  INCOMPATIBILITY.
   136 
   137 * Vacuous class specifications observe default sort.  INCOMPATIBILITY.
   138 
   139 * Old 'axclass' command has been discontinued.  INCOMPATIBILITY, use
   140 'class' instead.
   141 
   142 * Command 'code_reflect' allows to incorporate generated ML code into
   143 runtime environment; replaces immature code_datatype antiquotation.
   144 INCOMPATIBILITY.
   145 
   146 * Code generator: simple concept for abstract datatypes obeying
   147 invariants.
   148 
   149 * Code generator: details of internal data cache have no impact on the
   150 user space functionality any longer.
   151 
   152 * Methods "unfold_locales" and "intro_locales" ignore non-locale
   153 subgoals.  This is more appropriate for interpretations with 'where'.
   154 INCOMPATIBILITY.
   155 
   156 * Command 'example_proof' opens an empty proof body.  This allows to
   157 experiment with Isar, without producing any persistent result.
   158 
   159 * Commands 'type_notation' and 'no_type_notation' declare type syntax
   160 within a local theory context, with explicit checking of the
   161 constructors involved (in contrast to the raw 'syntax' versions).
   162 
   163 * Commands 'types' and 'typedecl' now work within a local theory
   164 context -- without introducing dependencies on parameters or
   165 assumptions, which is not possible in Isabelle/Pure.
   166 
   167 * Command 'defaultsort' has been renamed to 'default_sort', it works
   168 within a local theory context.  Minor INCOMPATIBILITY.
   169 
   170 
   171 *** HOL ***
   172 
   173 * Command 'typedef' now works within a local theory context -- without
   174 introducing dependencies on parameters or assumptions, which is not
   175 possible in Isabelle/Pure/HOL.  Note that the logical environment may
   176 contain multiple interpretations of local typedefs (with different
   177 non-emptiness proofs), even in a global theory context.
   178 
   179 * New package for quotient types.  Commands 'quotient_type' and
   180 'quotient_definition' may be used for defining types and constants by
   181 quotient constructions.  An example is the type of integers created by
   182 quotienting pairs of natural numbers:
   183   
   184   fun
   185     intrel :: "(nat * nat) => (nat * nat) => bool" 
   186   where
   187     "intrel (x, y) (u, v) = (x + v = u + y)"
   188 
   189   quotient_type int = "nat × nat" / intrel
   190     by (auto simp add: equivp_def expand_fun_eq)
   191   
   192   quotient_definition
   193     "0::int" is "(0::nat, 0::nat)"
   194 
   195 The method "lifting" can be used to lift of theorems from the
   196 underlying "raw" type to the quotient type.  The example
   197 src/HOL/Quotient_Examples/FSet.thy includes such a quotient
   198 construction and provides a reasoning infrastructure for finite sets.
   199 
   200 * Renamed Library/Quotient.thy to Library/Quotient_Type.thy to avoid
   201 clash with new theory Quotient in Main HOL.
   202 
   203 * Moved the SMT binding into the main HOL session, eliminating
   204 separate HOL-SMT session.
   205 
   206 * List membership infix mem operation is only an input abbreviation.
   207 INCOMPATIBILITY.
   208 
   209 * Theory Library/Word.thy has been removed.  Use library Word/Word.thy
   210 for future developements; former Library/Word.thy is still present in
   211 the AFP entry RSAPPS.
   212 
   213 * Theorem Int.int_induct renamed to Int.int_of_nat_induct and is no
   214 longer shadowed.  INCOMPATIBILITY.
   215 
   216 * Dropped theorem duplicate comp_arith; use semiring_norm instead.
   217 INCOMPATIBILITY.
   218 
   219 * Dropped theorem RealPow.real_sq_order; use power2_le_imp_le instead.
   220 INCOMPATIBILITY.
   221 
   222 * Dropped normalizing_semiring etc; use the facts in semiring classes
   223 instead.  INCOMPATIBILITY.
   224 
   225 * Dropped several real-specific versions of lemmas about floor and
   226 ceiling; use the generic lemmas from theory "Archimedean_Field"
   227 instead.  INCOMPATIBILITY.
   228 
   229   floor_number_of_eq         ~> floor_number_of
   230   le_floor_eq_number_of      ~> number_of_le_floor
   231   le_floor_eq_zero           ~> zero_le_floor
   232   le_floor_eq_one            ~> one_le_floor
   233   floor_less_eq_number_of    ~> floor_less_number_of
   234   floor_less_eq_zero         ~> floor_less_zero
   235   floor_less_eq_one          ~> floor_less_one
   236   less_floor_eq_number_of    ~> number_of_less_floor
   237   less_floor_eq_zero         ~> zero_less_floor
   238   less_floor_eq_one          ~> one_less_floor
   239   floor_le_eq_number_of      ~> floor_le_number_of
   240   floor_le_eq_zero           ~> floor_le_zero
   241   floor_le_eq_one            ~> floor_le_one
   242   floor_subtract_number_of   ~> floor_diff_number_of
   243   floor_subtract_one         ~> floor_diff_one
   244   ceiling_number_of_eq       ~> ceiling_number_of
   245   ceiling_le_eq_number_of    ~> ceiling_le_number_of
   246   ceiling_le_zero_eq         ~> ceiling_le_zero
   247   ceiling_le_eq_one          ~> ceiling_le_one
   248   less_ceiling_eq_number_of  ~> number_of_less_ceiling
   249   less_ceiling_eq_zero       ~> zero_less_ceiling
   250   less_ceiling_eq_one        ~> one_less_ceiling
   251   ceiling_less_eq_number_of  ~> ceiling_less_number_of
   252   ceiling_less_eq_zero       ~> ceiling_less_zero
   253   ceiling_less_eq_one        ~> ceiling_less_one
   254   le_ceiling_eq_number_of    ~> number_of_le_ceiling
   255   le_ceiling_eq_zero         ~> zero_le_ceiling
   256   le_ceiling_eq_one          ~> one_le_ceiling
   257   ceiling_subtract_number_of ~> ceiling_diff_number_of
   258   ceiling_subtract_one       ~> ceiling_diff_one
   259 
   260 * Theory "Finite_Set": various folding_XXX locales facilitate the
   261 application of the various fold combinators on finite sets.
   262 
   263 * Library theory "RBT" renamed to "RBT_Impl"; new library theory "RBT"
   264 provides abstract red-black tree type which is backed by "RBT_Impl" as
   265 implementation.  INCOMPATIBILTY.
   266 
   267 * Theory Library/Coinductive_List has been removed -- superseded by
   268 AFP/thys/Coinductive.
   269 
   270 * Theory PReal, including the type "preal" and related operations, has
   271 been removed.  INCOMPATIBILITY.
   272 
   273 * Split off theory "Big_Operators" containing setsum, setprod,
   274 Inf_fin, Sup_fin, Min, Max from theory Finite_Set.  INCOMPATIBILITY.
   275 
   276 * Theory "Rational" renamed to "Rat", for consistency with "Nat",
   277 "Int" etc.  INCOMPATIBILITY.
   278 
   279 * Constant Rat.normalize needs to be qualified.  INCOMPATIBILITY.
   280 
   281 * New set of rules "ac_simps" provides combined assoc / commute
   282 rewrites for all interpretations of the appropriate generic locales.
   283 
   284 * Renamed theory "OrderedGroup" to "Groups" and split theory
   285 "Ring_and_Field" into theories "Rings" and "Fields"; for more
   286 appropriate and more consistent names suitable for name prefixes
   287 within the HOL theories.  INCOMPATIBILITY.
   288 
   289 * Some generic constants have been put to appropriate theories:
   290   - less_eq, less: Orderings
   291   - zero, one, plus, minus, uminus, times, abs, sgn: Groups
   292   - inverse, divide: Rings
   293 INCOMPATIBILITY.
   294 
   295 * More consistent naming of type classes involving orderings (and
   296 lattices):
   297 
   298     lower_semilattice                   ~> semilattice_inf
   299     upper_semilattice                   ~> semilattice_sup
   300 
   301     dense_linear_order                  ~> dense_linorder
   302 
   303     pordered_ab_group_add               ~> ordered_ab_group_add
   304     pordered_ab_group_add_abs           ~> ordered_ab_group_add_abs
   305     pordered_ab_semigroup_add           ~> ordered_ab_semigroup_add
   306     pordered_ab_semigroup_add_imp_le    ~> ordered_ab_semigroup_add_imp_le
   307     pordered_cancel_ab_semigroup_add    ~> ordered_cancel_ab_semigroup_add
   308     pordered_cancel_comm_semiring       ~> ordered_cancel_comm_semiring
   309     pordered_cancel_semiring            ~> ordered_cancel_semiring
   310     pordered_comm_monoid_add            ~> ordered_comm_monoid_add
   311     pordered_comm_ring                  ~> ordered_comm_ring
   312     pordered_comm_semiring              ~> ordered_comm_semiring
   313     pordered_ring                       ~> ordered_ring
   314     pordered_ring_abs                   ~> ordered_ring_abs
   315     pordered_semiring                   ~> ordered_semiring
   316 
   317     ordered_ab_group_add                ~> linordered_ab_group_add
   318     ordered_ab_semigroup_add            ~> linordered_ab_semigroup_add
   319     ordered_cancel_ab_semigroup_add     ~> linordered_cancel_ab_semigroup_add
   320     ordered_comm_semiring_strict        ~> linordered_comm_semiring_strict
   321     ordered_field                       ~> linordered_field
   322     ordered_field_no_lb                 ~> linordered_field_no_lb
   323     ordered_field_no_ub                 ~> linordered_field_no_ub
   324     ordered_field_dense_linear_order    ~> dense_linordered_field
   325     ordered_idom                        ~> linordered_idom
   326     ordered_ring                        ~> linordered_ring
   327     ordered_ring_le_cancel_factor       ~> linordered_ring_le_cancel_factor
   328     ordered_ring_less_cancel_factor     ~> linordered_ring_less_cancel_factor
   329     ordered_ring_strict                 ~> linordered_ring_strict
   330     ordered_semidom                     ~> linordered_semidom
   331     ordered_semiring                    ~> linordered_semiring
   332     ordered_semiring_1                  ~> linordered_semiring_1
   333     ordered_semiring_1_strict           ~> linordered_semiring_1_strict
   334     ordered_semiring_strict             ~> linordered_semiring_strict
   335 
   336   The following slightly odd type classes have been moved to a
   337   separate theory Library/Lattice_Algebras:
   338 
   339     lordered_ab_group_add               ~> lattice_ab_group_add
   340     lordered_ab_group_add_abs           ~> lattice_ab_group_add_abs
   341     lordered_ab_group_add_meet          ~> semilattice_inf_ab_group_add
   342     lordered_ab_group_add_join          ~> semilattice_sup_ab_group_add
   343     lordered_ring                       ~> lattice_ring
   344 
   345 INCOMPATIBILITY.
   346 
   347 * Refined field classes:
   348   - classes division_ring_inverse_zero, field_inverse_zero,
   349     linordered_field_inverse_zero include rule inverse 0 = 0 --
   350     subsumes former division_by_zero class;
   351   - numerous lemmas have been ported from field to division_ring.
   352 INCOMPATIBILITY.
   353 
   354 * Refined algebra theorem collections:
   355   - dropped theorem group group_simps, use algebra_simps instead;
   356   - dropped theorem group ring_simps, use field_simps instead;
   357   - proper theorem collection field_simps subsumes former theorem
   358     groups field_eq_simps and field_simps;
   359   - dropped lemma eq_minus_self_iff which is a duplicate for
   360     equal_neg_zero.
   361 INCOMPATIBILITY.
   362 
   363 * Theory Finite_Set and List: some lemmas have been generalized from
   364 sets to lattices:
   365 
   366   fun_left_comm_idem_inter      ~> fun_left_comm_idem_inf
   367   fun_left_comm_idem_union      ~> fun_left_comm_idem_sup
   368   inter_Inter_fold_inter        ~> inf_Inf_fold_inf
   369   union_Union_fold_union        ~> sup_Sup_fold_sup
   370   Inter_fold_inter              ~> Inf_fold_inf
   371   Union_fold_union              ~> Sup_fold_sup
   372   inter_INTER_fold_inter        ~> inf_INFI_fold_inf
   373   union_UNION_fold_union        ~> sup_SUPR_fold_sup
   374   INTER_fold_inter              ~> INFI_fold_inf
   375   UNION_fold_union              ~> SUPR_fold_sup
   376 
   377 * Theory "Complete_Lattice": lemmas top_def and bot_def have been
   378 replaced by the more convenient lemmas Inf_empty and Sup_empty.
   379 Dropped lemmas Inf_insert_simp and Sup_insert_simp, which are subsumed
   380 by Inf_insert and Sup_insert.  Lemmas Inf_UNIV and Sup_UNIV replace
   381 former Inf_Univ and Sup_Univ.  Lemmas inf_top_right and sup_bot_right
   382 subsume inf_top and sup_bot respectively.  INCOMPATIBILITY.
   383 
   384 * Reorganized theory Multiset: swapped notation of pointwise and
   385 multiset order:
   386 
   387   - pointwise ordering is instance of class order with standard syntax
   388     <= and <;
   389   - multiset ordering has syntax <=# and <#; partial order properties
   390     are provided by means of interpretation with prefix
   391     multiset_order;
   392   - less duplication, less historical organization of sections,
   393     conversion from associations lists to multisets, rudimentary code
   394     generation;
   395   - use insert_DiffM2 [symmetric] instead of elem_imp_eq_diff_union,
   396     if needed.
   397 
   398 Renamed:
   399 
   400   multiset_eq_conv_count_eq  ~>  multiset_ext_iff
   401   multi_count_ext  ~>  multiset_ext
   402   diff_union_inverse2  ~>  diff_union_cancelR
   403 
   404 INCOMPATIBILITY.
   405 
   406 * Theory Permutation: replaced local "remove" by List.remove1.
   407 
   408 * Code generation: ML and OCaml code is decorated with signatures.
   409 
   410 * Theory List: added transpose.
   411 
   412 * Library/Nat_Bijection.thy is a collection of bijective functions
   413 between nat and other types, which supersedes the older libraries
   414 Library/Nat_Int_Bij.thy and HOLCF/NatIso.thy.  INCOMPATIBILITY.
   415 
   416   Constants:
   417   Nat_Int_Bij.nat2_to_nat         ~> prod_encode
   418   Nat_Int_Bij.nat_to_nat2         ~> prod_decode
   419   Nat_Int_Bij.int_to_nat_bij      ~> int_encode
   420   Nat_Int_Bij.nat_to_int_bij      ~> int_decode
   421   Countable.pair_encode           ~> prod_encode
   422   NatIso.prod2nat                 ~> prod_encode
   423   NatIso.nat2prod                 ~> prod_decode
   424   NatIso.sum2nat                  ~> sum_encode
   425   NatIso.nat2sum                  ~> sum_decode
   426   NatIso.list2nat                 ~> list_encode
   427   NatIso.nat2list                 ~> list_decode
   428   NatIso.set2nat                  ~> set_encode
   429   NatIso.nat2set                  ~> set_decode
   430 
   431   Lemmas:
   432   Nat_Int_Bij.bij_nat_to_int_bij  ~> bij_int_decode
   433   Nat_Int_Bij.nat2_to_nat_inj     ~> inj_prod_encode
   434   Nat_Int_Bij.nat2_to_nat_surj    ~> surj_prod_encode
   435   Nat_Int_Bij.nat_to_nat2_inj     ~> inj_prod_decode
   436   Nat_Int_Bij.nat_to_nat2_surj    ~> surj_prod_decode
   437   Nat_Int_Bij.i2n_n2i_id          ~> int_encode_inverse
   438   Nat_Int_Bij.n2i_i2n_id          ~> int_decode_inverse
   439   Nat_Int_Bij.surj_nat_to_int_bij ~> surj_int_encode
   440   Nat_Int_Bij.surj_int_to_nat_bij ~> surj_int_decode
   441   Nat_Int_Bij.inj_nat_to_int_bij  ~> inj_int_encode
   442   Nat_Int_Bij.inj_int_to_nat_bij  ~> inj_int_decode
   443   Nat_Int_Bij.bij_nat_to_int_bij  ~> bij_int_encode
   444   Nat_Int_Bij.bij_int_to_nat_bij  ~> bij_int_decode
   445 
   446 * Sledgehammer:
   447   - Renamed ATP commands:
   448     atp_info     ~> sledgehammer running_atps
   449     atp_kill     ~> sledgehammer kill_atps
   450     atp_messages ~> sledgehammer messages
   451     atp_minimize ~> sledgehammer minimize
   452     print_atps   ~> sledgehammer available_atps
   453     INCOMPATIBILITY.
   454   - Added user's manual ("isabelle doc sledgehammer").
   455   - Added option syntax and "sledgehammer_params" to customize
   456     Sledgehammer's behavior.  See the manual for details.
   457   - Modified the Isar proof reconstruction code so that it produces
   458     direct proofs rather than proofs by contradiction.  (This feature
   459     is still experimental.)
   460   - Made Isar proof reconstruction work for SPASS, remote ATPs, and in
   461     full-typed mode.
   462   - Added support for TPTP syntax for SPASS via the "spass_tptp" ATP.
   463 
   464 * Nitpick:
   465   - Added and implemented "binary_ints" and "bits" options.
   466   - Added "std" option and implemented support for nonstandard models.
   467   - Added and implemented "finitize" option to improve the precision
   468     of infinite datatypes based on a monotonicity analysis.
   469   - Added support for quotient types.
   470   - Added support for "specification" and "ax_specification"
   471     constructs.
   472   - Added support for local definitions (for "function" and
   473     "termination" proofs).
   474   - Added support for term postprocessors.
   475   - Optimized "Multiset.multiset" and "FinFun.finfun".
   476   - Improved efficiency of "destroy_constrs" optimization.
   477   - Fixed soundness bugs related to "destroy_constrs" optimization and
   478     record getters.
   479   - Fixed soundness bug related to higher-order constructors.
   480   - Fixed soundness bug when "full_descrs" is enabled.
   481   - Improved precision of set constructs.
   482   - Added "atoms" option.
   483   - Added cache to speed up repeated Kodkod invocations on the same
   484     problems.
   485   - Renamed "MiniSatJNI", "zChaffJNI", "BerkMinAlloy", and
   486     "SAT4JLight" to "MiniSat_JNI", "zChaff_JNI", "BerkMin_Alloy", and
   487     "SAT4J_Light".  INCOMPATIBILITY.
   488   - Removed "skolemize", "uncurry", "sym_break", "flatten_prop",
   489     "sharing_depth", and "show_skolems" options.  INCOMPATIBILITY.
   490   - Removed "nitpick_intro" attribute.  INCOMPATIBILITY.
   491 
   492 
   493 *** HOLCF ***
   494 
   495 * Variable names in lemmas generated by the domain package have
   496 changed; the naming scheme is now consistent with the HOL datatype
   497 package.  Some proof scripts may be affected, INCOMPATIBILITY.
   498 
   499 * The domain package no longer defines the function "foo_copy" for
   500 recursive domain "foo".  The reach lemma is now stated directly in
   501 terms of "foo_take".  Lemmas and proofs that mention "foo_copy" must
   502 be reformulated in terms of "foo_take", INCOMPATIBILITY.
   503 
   504 * Most definedness lemmas generated by the domain package (previously
   505 of the form "x ~= UU ==> foo$x ~= UU") now have an if-and-only-if form
   506 like "foo$x = UU <-> x = UU", which works better as a simp rule.
   507 Proofs that used definedness lemmas as intro rules may break,
   508 potential INCOMPATIBILITY.
   509 
   510 * Induction and casedist rules generated by the domain package now
   511 declare proper case_names (one called "bottom", and one named for each
   512 constructor).  INCOMPATIBILITY.
   513 
   514 * For mutually-recursive domains, separate "reach" and "take_lemma"
   515 rules are generated for each domain, INCOMPATIBILITY.
   516 
   517   foo_bar.reach       ~> foo.reach  bar.reach
   518   foo_bar.take_lemmas ~> foo.take_lemma  bar.take_lemma
   519 
   520 * Some lemmas generated by the domain package have been renamed for
   521 consistency with the datatype package, INCOMPATIBILITY.
   522 
   523   foo.ind        ~> foo.induct
   524   foo.finite_ind ~> foo.finite_induct
   525   foo.coind      ~> foo.coinduct
   526   foo.casedist   ~> foo.exhaust
   527   foo.exhaust    ~> foo.nchotomy
   528 
   529 * For consistency with other definition packages, the fixrec package
   530 now generates qualified theorem names, INCOMPATIBILITY.
   531 
   532   foo_simps  ~> foo.simps
   533   foo_unfold ~> foo.unfold
   534   foo_induct ~> foo.induct
   535 
   536 * The "fixrec_simp" attribute has been removed.  The "fixrec_simp"
   537 method and internal fixrec proofs now use the default simpset instead.
   538 INCOMPATIBILITY.
   539 
   540 * The "contlub" predicate has been removed.  Proof scripts should use
   541 lemma contI2 in place of monocontlub2cont, INCOMPATIBILITY.
   542 
   543 * The "admw" predicate has been removed, INCOMPATIBILITY.
   544 
   545 * The constants cpair, cfst, and csnd have been removed in favor of
   546 Pair, fst, and snd from Isabelle/HOL, INCOMPATIBILITY.
   547 
   548 
   549 *** ML ***
   550 
   551 * Antiquotations for basic formal entities:
   552 
   553     @{class NAME}         -- type class
   554     @{class_syntax NAME}  -- syntax representation of the above
   555 
   556     @{type_name NAME}     -- logical type
   557     @{type_abbrev NAME}   -- type abbreviation
   558     @{nonterminal NAME}   -- type of concrete syntactic category
   559     @{type_syntax NAME}   -- syntax representation of any of the above
   560 
   561     @{const_name NAME}    -- logical constant (INCOMPATIBILITY)
   562     @{const_abbrev NAME}  -- abbreviated constant
   563     @{const_syntax NAME}  -- syntax representation of any of the above
   564 
   565 * Antiquotation @{syntax_const NAME} ensures that NAME refers to a raw
   566 syntax constant (cf. 'syntax' command).
   567 
   568 * Antiquotation @{make_string} inlines a function to print arbitrary
   569 values similar to the ML toplevel.  The result is compiler dependent
   570 and may fall back on "?" in certain situations.
   571 
   572 * Diagnostic commands 'ML_val' and 'ML_command' may refer to
   573 antiquotations @{Isar.state} and @{Isar.goal}.  This replaces impure
   574 Isar.state() and Isar.goal(), which belong to the old TTY loop and do
   575 not work with the asynchronous Isar document model.
   576 
   577 * Configuration options now admit dynamic default values, depending on
   578 the context or even global references.
   579 
   580 * SHA1.digest digests strings according to SHA-1 (see RFC 3174).  It
   581 uses an efficient external library if available (for Poly/ML).
   582 
   583 * Renamed some important ML structures, while keeping the old names
   584 for some time as aliases within the structure Legacy:
   585 
   586   OuterKeyword  ~>  Keyword
   587   OuterLex      ~>  Token
   588   OuterParse    ~>  Parse
   589   OuterSyntax   ~>  Outer_Syntax
   590   PrintMode     ~>  Print_Mode
   591   SpecParse     ~>  Parse_Spec
   592   ThyInfo       ~>  Thy_Info
   593   ThyLoad       ~>  Thy_Load
   594   ThyOutput     ~>  Thy_Output
   595   TypeInfer     ~>  Type_Infer
   596 
   597 Note that "open Legacy" simplifies porting of sources, but forgetting
   598 to remove it again will complicate porting again in the future.
   599 
   600 * Most operations that refer to a global context are named
   601 accordingly, e.g. Simplifier.global_context or
   602 ProofContext.init_global.  There are some situations where a global
   603 context actually works, but under normal circumstances one needs to
   604 pass the proper local context through the code!
   605 
   606 * Discontinued old TheoryDataFun with its copy/init operation -- data
   607 needs to be pure.  Functor Theory_Data_PP retains the traditional
   608 Pretty.pp argument to merge, which is absent in the standard
   609 Theory_Data version.
   610 
   611 * Sorts.certify_sort and derived "cert" operations for types and terms
   612 no longer minimize sorts.  Thus certification at the boundary of the
   613 inference kernel becomes invariant under addition of class relations,
   614 which is an important monotonicity principle.  Sorts are now minimized
   615 in the syntax layer only, at the boundary between the end-user and the
   616 system.  Subtle INCOMPATIBILITY, may have to use Sign.minimize_sort
   617 explicitly in rare situations.
   618 
   619 * Renamed old-style Drule.standard to Drule.export_without_context, to
   620 emphasize that this is in no way a standard operation.
   621 INCOMPATIBILITY.
   622 
   623 * Subgoal.FOCUS (and variants): resulting goal state is normalized as
   624 usual for resolution.  Rare INCOMPATIBILITY.
   625 
   626 * Renamed varify/unvarify operations to varify_global/unvarify_global
   627 to emphasize that these only work in a global situation (which is
   628 quite rare).
   629 
   630 * Curried take and drop in library.ML; negative length is interpreted
   631 as infinity (as in chop).  Subtle INCOMPATIBILITY.
   632 
   633 * Proof terms: type substitutions on proof constants now use canonical
   634 order of type variables.  INCOMPATIBILITY for tools working with proof
   635 terms.
   636 
   637 * Raw axioms/defs may no longer carry sort constraints, and raw defs
   638 may no longer carry premises.  User-level specifications are
   639 transformed accordingly by Thm.add_axiom/add_def.
   640 
   641 
   642 *** System ***
   643 
   644 * Discontinued special HOL_USEDIR_OPTIONS for the main HOL image;
   645 ISABELLE_USEDIR_OPTIONS applies uniformly to all sessions.  Note that
   646 proof terms are enabled unconditionally in the new HOL-Proofs image.
   647 
   648 * Discontinued old ISABELLE and ISATOOL environment settings (legacy
   649 feature since Isabelle2009).  Use ISABELLE_PROCESS and ISABELLE_TOOL,
   650 respectively.
   651 
   652 * Old lib/scripts/polyml-platform is superseded by the
   653 ISABELLE_PLATFORM setting variable, which defaults to the 32 bit
   654 variant, even on a 64 bit machine.  The following example setting
   655 prefers 64 bit if available:
   656 
   657   ML_PLATFORM="${ISABELLE_PLATFORM64:-$ISABELLE_PLATFORM}"
   658 
   659 * The preliminary Isabelle/jEdit application demonstrates the emerging
   660 Isabelle/Scala layer for advanced prover interaction and integration.
   661 See src/Tools/jEdit or "isabelle jedit" provided by the properly built
   662 component.
   663 
   664 
   665 
   666 New in Isabelle2009-1 (December 2009)
   667 -------------------------------------
   668 
   669 *** General ***
   670 
   671 * Discontinued old form of "escaped symbols" such as \\<forall>.  Only
   672 one backslash should be used, even in ML sources.
   673 
   674 
   675 *** Pure ***
   676 
   677 * Locale interpretation propagates mixins along the locale hierarchy.
   678 The currently only available mixins are the equations used to map
   679 local definitions to terms of the target domain of an interpretation.
   680 
   681 * Reactivated diagnostic command 'print_interps'.  Use "print_interps
   682 loc" to print all interpretations of locale "loc" in the theory.
   683 Interpretations in proofs are not shown.
   684 
   685 * Thoroughly revised locales tutorial.  New section on conditional
   686 interpretation.
   687 
   688 * On instantiation of classes, remaining undefined class parameters
   689 are formally declared.  INCOMPATIBILITY.
   690 
   691 
   692 *** Document preparation ***
   693 
   694 * New generalized style concept for printing terms: @{foo (style) ...}
   695 instead of @{foo_style style ...}  (old form is still retained for
   696 backward compatibility).  Styles can be also applied for
   697 antiquotations prop, term_type and typeof.
   698 
   699 
   700 *** HOL ***
   701 
   702 * New proof method "smt" for a combination of first-order logic with
   703 equality, linear and nonlinear (natural/integer/real) arithmetic, and
   704 fixed-size bitvectors; there is also basic support for higher-order
   705 features (esp. lambda abstractions).  It is an incomplete decision
   706 procedure based on external SMT solvers using the oracle mechanism;
   707 for the SMT solver Z3, this method is proof-producing.  Certificates
   708 are provided to avoid calling the external solvers solely for
   709 re-checking proofs.  Due to a remote SMT service there is no need for
   710 installing SMT solvers locally.  See src/HOL/SMT.
   711 
   712 * New commands to load and prove verification conditions generated by
   713 the Boogie program verifier or derived systems (e.g. the Verifying C
   714 Compiler (VCC) or Spec#).  See src/HOL/Boogie.
   715 
   716 * New counterexample generator tool 'nitpick' based on the Kodkod
   717 relational model finder.  See src/HOL/Tools/Nitpick and
   718 src/HOL/Nitpick_Examples.
   719 
   720 * New commands 'code_pred' and 'values' to invoke the predicate
   721 compiler and to enumerate values of inductive predicates.
   722 
   723 * A tabled implementation of the reflexive transitive closure.
   724 
   725 * New implementation of quickcheck uses generic code generator;
   726 default generators are provided for all suitable HOL types, records
   727 and datatypes.  Old quickcheck can be re-activated importing theory
   728 Library/SML_Quickcheck.
   729 
   730 * New testing tool Mirabelle for automated proof tools.  Applies
   731 several tools and tactics like sledgehammer, metis, or quickcheck, to
   732 every proof step in a theory.  To be used in batch mode via the
   733 "mirabelle" utility.
   734 
   735 * New proof method "sos" (sum of squares) for nonlinear real
   736 arithmetic (originally due to John Harison). It requires theory
   737 Library/Sum_Of_Squares.  It is not a complete decision procedure but
   738 works well in practice on quantifier-free real arithmetic with +, -,
   739 *, ^, =, <= and <, i.e. boolean combinations of equalities and
   740 inequalities between polynomials.  It makes use of external
   741 semidefinite programming solvers.  Method "sos" generates a
   742 certificate that can be pasted into the proof thus avoiding the need
   743 to call an external tool every time the proof is checked.  See
   744 src/HOL/Library/Sum_Of_Squares.
   745 
   746 * New method "linarith" invokes existing linear arithmetic decision
   747 procedure only.
   748 
   749 * New command 'atp_minimal' reduces result produced by Sledgehammer.
   750 
   751 * New Sledgehammer option "Full Types" in Proof General settings menu.
   752 Causes full type information to be output to the ATPs.  This slows
   753 ATPs down considerably but eliminates a source of unsound "proofs"
   754 that fail later.
   755 
   756 * New method "metisFT": A version of metis that uses full type
   757 information in order to avoid failures of proof reconstruction.
   758 
   759 * New evaluator "approximate" approximates an real valued term using
   760 the same method as the approximation method.
   761 
   762 * Method "approximate" now supports arithmetic expressions as
   763 boundaries of intervals and implements interval splitting and Taylor
   764 series expansion.
   765 
   766 * ML antiquotation @{code_datatype} inserts definition of a datatype
   767 generated by the code generator; e.g. see src/HOL/Predicate.thy.
   768 
   769 * New theory SupInf of the supremum and infimum operators for sets of
   770 reals.
   771 
   772 * New theory Probability, which contains a development of measure
   773 theory, eventually leading to Lebesgue integration and probability.
   774 
   775 * Extended Multivariate Analysis to include derivation and Brouwer's
   776 fixpoint theorem.
   777 
   778 * Reorganization of number theory, INCOMPATIBILITY:
   779   - new number theory development for nat and int, in theories Divides
   780     and GCD as well as in new session Number_Theory
   781   - some constants and facts now suffixed with _nat and _int
   782     accordingly
   783   - former session NumberTheory now named Old_Number_Theory, including
   784     theories Legacy_GCD and Primes (prefer Number_Theory if possible)
   785   - moved theory Pocklington from src/HOL/Library to
   786     src/HOL/Old_Number_Theory
   787 
   788 * Theory GCD includes functions Gcd/GCD and Lcm/LCM for the gcd and
   789 lcm of finite and infinite sets. It is shown that they form a complete
   790 lattice.
   791 
   792 * Class semiring_div requires superclass no_zero_divisors and proof of
   793 div_mult_mult1; theorems div_mult_mult1, div_mult_mult2,
   794 div_mult_mult1_if, div_mult_mult1 and div_mult_mult2 have been
   795 generalized to class semiring_div, subsuming former theorems
   796 zdiv_zmult_zmult1, zdiv_zmult_zmult1_if, zdiv_zmult_zmult1 and
   797 zdiv_zmult_zmult2.  div_mult_mult1 is now [simp] by default.
   798 INCOMPATIBILITY.
   799 
   800 * Refinements to lattice classes and sets:
   801   - less default intro/elim rules in locale variant, more default
   802     intro/elim rules in class variant: more uniformity
   803   - lemma ge_sup_conv renamed to le_sup_iff, in accordance with
   804     le_inf_iff
   805   - dropped lemma alias inf_ACI for inf_aci (same for sup_ACI and
   806     sup_aci)
   807   - renamed ACI to inf_sup_aci
   808   - new class "boolean_algebra"
   809   - class "complete_lattice" moved to separate theory
   810     "Complete_Lattice"; corresponding constants (and abbreviations)
   811     renamed and with authentic syntax:
   812     Set.Inf ~>    Complete_Lattice.Inf
   813     Set.Sup ~>    Complete_Lattice.Sup
   814     Set.INFI ~>   Complete_Lattice.INFI
   815     Set.SUPR ~>   Complete_Lattice.SUPR
   816     Set.Inter ~>  Complete_Lattice.Inter
   817     Set.Union ~>  Complete_Lattice.Union
   818     Set.INTER ~>  Complete_Lattice.INTER
   819     Set.UNION ~>  Complete_Lattice.UNION
   820   - authentic syntax for
   821     Set.Pow
   822     Set.image
   823   - mere abbreviations:
   824     Set.empty               (for bot)
   825     Set.UNIV                (for top)
   826     Set.inter               (for inf, formerly Set.Int)
   827     Set.union               (for sup, formerly Set.Un)
   828     Complete_Lattice.Inter  (for Inf)
   829     Complete_Lattice.Union  (for Sup)
   830     Complete_Lattice.INTER  (for INFI)
   831     Complete_Lattice.UNION  (for SUPR)
   832   - object-logic definitions as far as appropriate
   833 
   834 INCOMPATIBILITY.  Care is required when theorems Int_subset_iff or
   835 Un_subset_iff are explicitly deleted as default simp rules; then also
   836 their lattice counterparts le_inf_iff and le_sup_iff have to be
   837 deleted to achieve the desired effect.
   838 
   839 * Rules inf_absorb1, inf_absorb2, sup_absorb1, sup_absorb2 are no simp
   840 rules by default any longer; the same applies to min_max.inf_absorb1
   841 etc.  INCOMPATIBILITY.
   842 
   843 * Rules sup_Int_eq and sup_Un_eq are no longer declared as
   844 pred_set_conv by default.  INCOMPATIBILITY.
   845 
   846 * Power operations on relations and functions are now one dedicated
   847 constant "compow" with infix syntax "^^".  Power operation on
   848 multiplicative monoids retains syntax "^" and is now defined generic
   849 in class power.  INCOMPATIBILITY.
   850 
   851 * Relation composition "R O S" now has a more standard argument order:
   852 "R O S = {(x, z). EX y. (x, y) : R & (y, z) : S}".  INCOMPATIBILITY,
   853 rewrite propositions with "S O R" --> "R O S". Proofs may occasionally
   854 break, since the O_assoc rule was not rewritten like this.  Fix using
   855 O_assoc[symmetric].  The same applies to the curried version "R OO S".
   856 
   857 * Function "Inv" is renamed to "inv_into" and function "inv" is now an
   858 abbreviation for "inv_into UNIV".  Lemmas are renamed accordingly.
   859 INCOMPATIBILITY.
   860 
   861 * Most rules produced by inductive and datatype package have mandatory
   862 prefixes.  INCOMPATIBILITY.
   863 
   864 * Changed "DERIV_intros" to a dynamic fact, which can be augmented by
   865 the attribute of the same name.  Each of the theorems in the list
   866 DERIV_intros assumes composition with an additional function and
   867 matches a variable to the derivative, which has to be solved by the
   868 Simplifier.  Hence (auto intro!: DERIV_intros) computes the derivative
   869 of most elementary terms.  Former Maclauren.DERIV_tac and
   870 Maclauren.deriv_tac should be replaced by (auto intro!: DERIV_intros).
   871 INCOMPATIBILITY.
   872 
   873 * Code generator attributes follow the usual underscore convention:
   874     code_unfold     replaces    code unfold
   875     code_post       replaces    code post
   876     etc.
   877   INCOMPATIBILITY.
   878 
   879 * Renamed methods:
   880     sizechange -> size_change
   881     induct_scheme -> induction_schema
   882   INCOMPATIBILITY.
   883 
   884 * Discontinued abbreviation "arbitrary" of constant "undefined".
   885 INCOMPATIBILITY, use "undefined" directly.
   886 
   887 * Renamed theorems:
   888     Suc_eq_add_numeral_1 -> Suc_eq_plus1
   889     Suc_eq_add_numeral_1_left -> Suc_eq_plus1_left
   890     Suc_plus1 -> Suc_eq_plus1
   891     *anti_sym -> *antisym*
   892     vector_less_eq_def -> vector_le_def
   893   INCOMPATIBILITY.
   894 
   895 * Added theorem List.map_map as [simp].  Removed List.map_compose.
   896 INCOMPATIBILITY.
   897 
   898 * Removed predicate "M hassize n" (<--> card M = n & finite M).
   899 INCOMPATIBILITY.
   900 
   901 
   902 *** HOLCF ***
   903 
   904 * Theory Representable defines a class "rep" of domains that are
   905 representable (via an ep-pair) in the universal domain type "udom".
   906 Instances are provided for all type constructors defined in HOLCF.
   907 
   908 * The 'new_domain' command is a purely definitional version of the
   909 domain package, for representable domains.  Syntax is identical to the
   910 old domain package.  The 'new_domain' package also supports indirect
   911 recursion using previously-defined type constructors.  See
   912 src/HOLCF/ex/New_Domain.thy for examples.
   913 
   914 * Method "fixrec_simp" unfolds one step of a fixrec-defined constant
   915 on the left-hand side of an equation, and then performs
   916 simplification.  Rewriting is done using rules declared with the
   917 "fixrec_simp" attribute.  The "fixrec_simp" method is intended as a
   918 replacement for "fixpat"; see src/HOLCF/ex/Fixrec_ex.thy for examples.
   919 
   920 * The pattern-match compiler in 'fixrec' can now handle constructors
   921 with HOL function types.  Pattern-match combinators for the Pair
   922 constructor are pre-configured.
   923 
   924 * The 'fixrec' package now produces better fixed-point induction rules
   925 for mutually-recursive definitions:  Induction rules have conclusions
   926 of the form "P foo bar" instead of "P <foo, bar>".
   927 
   928 * The constant "sq_le" (with infix syntax "<<" or "\<sqsubseteq>") has
   929 been renamed to "below".  The name "below" now replaces "less" in many
   930 theorem names.  (Legacy theorem names using "less" are still supported
   931 as well.)
   932 
   933 * The 'fixrec' package now supports "bottom patterns".  Bottom
   934 patterns can be used to generate strictness rules, or to make
   935 functions more strict (much like the bang-patterns supported by the
   936 Glasgow Haskell Compiler).  See src/HOLCF/ex/Fixrec_ex.thy for
   937 examples.
   938 
   939 
   940 *** ML ***
   941 
   942 * Support for Poly/ML 5.3.0, with improved reporting of compiler
   943 errors and run-time exceptions, including detailed source positions.
   944 
   945 * Structure Name_Space (formerly NameSpace) now manages uniquely
   946 identified entries, with some additional information such as source
   947 position, logical grouping etc.
   948 
   949 * Theory and context data is now introduced by the simplified and
   950 modernized functors Theory_Data, Proof_Data, Generic_Data.  Data needs
   951 to be pure, but the old TheoryDataFun for mutable data (with explicit
   952 copy operation) is still available for some time.
   953 
   954 * Structure Synchronized (cf. src/Pure/Concurrent/synchronized.ML)
   955 provides a high-level programming interface to synchronized state
   956 variables with atomic update.  This works via pure function
   957 application within a critical section -- its runtime should be as
   958 short as possible; beware of deadlocks if critical code is nested,
   959 either directly or indirectly via other synchronized variables!
   960 
   961 * Structure Unsynchronized (cf. src/Pure/ML-Systems/unsynchronized.ML)
   962 wraps raw ML references, explicitly indicating their non-thread-safe
   963 behaviour.  The Isar toplevel keeps this structure open, to
   964 accommodate Proof General as well as quick and dirty interactive
   965 experiments with references.
   966 
   967 * PARALLEL_CHOICE and PARALLEL_GOALS provide basic support for
   968 parallel tactical reasoning.
   969 
   970 * Tacticals Subgoal.FOCUS, Subgoal.FOCUS_PREMS, Subgoal.FOCUS_PARAMS
   971 are similar to SUBPROOF, but are slightly more flexible: only the
   972 specified parts of the subgoal are imported into the context, and the
   973 body tactic may introduce new subgoals and schematic variables.
   974 
   975 * Old tactical METAHYPS, which does not observe the proof context, has
   976 been renamed to Old_Goals.METAHYPS and awaits deletion.  Use SUBPROOF
   977 or Subgoal.FOCUS etc.
   978 
   979 * Renamed functor TableFun to Table, and GraphFun to Graph.  (Since
   980 functors have their own ML name space there is no point to mark them
   981 separately.)  Minor INCOMPATIBILITY.
   982 
   983 * Renamed NamedThmsFun to Named_Thms.  INCOMPATIBILITY.
   984 
   985 * Renamed several structures FooBar to Foo_Bar.  Occasional,
   986 INCOMPATIBILITY.
   987 
   988 * Operations of structure Skip_Proof no longer require quick_and_dirty
   989 mode, which avoids critical setmp.
   990 
   991 * Eliminated old Attrib.add_attributes, Method.add_methods and related
   992 combinators for "args".  INCOMPATIBILITY, need to use simplified
   993 Attrib/Method.setup introduced in Isabelle2009.
   994 
   995 * Proper context for simpset_of, claset_of, clasimpset_of.  May fall
   996 back on global_simpset_of, global_claset_of, global_clasimpset_of as
   997 last resort.  INCOMPATIBILITY.
   998 
   999 * Display.pretty_thm now requires a proper context (cf. former
  1000 ProofContext.pretty_thm).  May fall back on Display.pretty_thm_global
  1001 or even Display.pretty_thm_without_context as last resort.
  1002 INCOMPATIBILITY.
  1003 
  1004 * Discontinued Display.pretty_ctyp/cterm etc.  INCOMPATIBILITY, use
  1005 Syntax.pretty_typ/term directly, preferably with proper context
  1006 instead of global theory.
  1007 
  1008 
  1009 *** System ***
  1010 
  1011 * Further fine tuning of parallel proof checking, scales up to 8 cores
  1012 (max. speedup factor 5.0).  See also Goal.parallel_proofs in ML and
  1013 usedir option -q.
  1014 
  1015 * Support for additional "Isabelle components" via etc/components, see
  1016 also the system manual.
  1017 
  1018 * The isabelle makeall tool now operates on all components with
  1019 IsaMakefile, not just hardwired "logics".
  1020 
  1021 * Removed "compress" option from isabelle-process and isabelle usedir;
  1022 this is always enabled.
  1023 
  1024 * Discontinued support for Poly/ML 4.x versions.
  1025 
  1026 * Isabelle tool "wwwfind" provides web interface for 'find_theorems'
  1027 on a given logic image.  This requires the lighttpd webserver and is
  1028 currently supported on Linux only.
  1029 
  1030 
  1031 
  1032 New in Isabelle2009 (April 2009)
  1033 --------------------------------
  1034 
  1035 *** General ***
  1036 
  1037 * Simplified main Isabelle executables, with less surprises on
  1038 case-insensitive file-systems (such as Mac OS).
  1039 
  1040   - The main Isabelle tool wrapper is now called "isabelle" instead of
  1041     "isatool."
  1042 
  1043   - The former "isabelle" alias for "isabelle-process" has been
  1044     removed (should rarely occur to regular users).
  1045 
  1046   - The former "isabelle-interface" and its alias "Isabelle" have been
  1047     removed (interfaces are now regular Isabelle tools).
  1048 
  1049 Within scripts and make files, the Isabelle environment variables
  1050 ISABELLE_TOOL and ISABELLE_PROCESS replace old ISATOOL and ISABELLE,
  1051 respectively.  (The latter are still available as legacy feature.)
  1052 
  1053 The old isabelle-interface wrapper could react in confusing ways if
  1054 the interface was uninstalled or changed otherwise.  Individual
  1055 interface tool configuration is now more explicit, see also the
  1056 Isabelle system manual.  In particular, Proof General is now available
  1057 via "isabelle emacs".
  1058 
  1059 INCOMPATIBILITY, need to adapt derivative scripts.  Users may need to
  1060 purge installed copies of Isabelle executables and re-run "isabelle
  1061 install -p ...", or use symlinks.
  1062 
  1063 * The default for ISABELLE_HOME_USER is now ~/.isabelle instead of the
  1064 old ~/isabelle, which was slightly non-standard and apt to cause
  1065 surprises on case-insensitive file-systems (such as Mac OS).
  1066 
  1067 INCOMPATIBILITY, need to move existing ~/isabelle/etc,
  1068 ~/isabelle/heaps, ~/isabelle/browser_info to the new place.  Special
  1069 care is required when using older releases of Isabelle.  Note that
  1070 ISABELLE_HOME_USER can be changed in Isabelle/etc/settings of any
  1071 Isabelle distribution, in order to use the new ~/.isabelle uniformly.
  1072 
  1073 * Proofs of fully specified statements are run in parallel on
  1074 multi-core systems.  A speedup factor of 2.5 to 3.2 can be expected on
  1075 a regular 4-core machine, if the initial heap space is made reasonably
  1076 large (cf. Poly/ML option -H).  (Requires Poly/ML 5.2.1 or later.)
  1077 
  1078 * The main reference manuals ("isar-ref", "implementation", and
  1079 "system") have been updated and extended.  Formally checked references
  1080 as hyperlinks are now available uniformly.
  1081 
  1082 
  1083 *** Pure ***
  1084 
  1085 * Complete re-implementation of locales.  INCOMPATIBILITY in several
  1086 respects.  The most important changes are listed below.  See the
  1087 Tutorial on Locales ("locales" manual) for details.
  1088 
  1089 - In locale expressions, instantiation replaces renaming.  Parameters
  1090 must be declared in a for clause.  To aid compatibility with previous
  1091 parameter inheritance, in locale declarations, parameters that are not
  1092 'touched' (instantiation position "_" or omitted) are implicitly added
  1093 with their syntax at the beginning of the for clause.
  1094 
  1095 - Syntax from abbreviations and definitions in locales is available in
  1096 locale expressions and context elements.  The latter is particularly
  1097 useful in locale declarations.
  1098 
  1099 - More flexible mechanisms to qualify names generated by locale
  1100 expressions.  Qualifiers (prefixes) may be specified in locale
  1101 expressions, and can be marked as mandatory (syntax: "name!:") or
  1102 optional (syntax "name?:").  The default depends for plain "name:"
  1103 depends on the situation where a locale expression is used: in
  1104 commands 'locale' and 'sublocale' prefixes are optional, in
  1105 'interpretation' and 'interpret' prefixes are mandatory.  The old
  1106 implicit qualifiers derived from the parameter names of a locale are
  1107 no longer generated.
  1108 
  1109 - Command "sublocale l < e" replaces "interpretation l < e".  The
  1110 instantiation clause in "interpretation" and "interpret" (square
  1111 brackets) is no longer available.  Use locale expressions.
  1112 
  1113 - When converting proof scripts, mandatory qualifiers in
  1114 'interpretation' and 'interpret' should be retained by default, even
  1115 if this is an INCOMPATIBILITY compared to former behavior.  In the
  1116 worst case, use the "name?:" form for non-mandatory ones.  Qualifiers
  1117 in locale expressions range over a single locale instance only.
  1118 
  1119 - Dropped locale element "includes".  This is a major INCOMPATIBILITY.
  1120 In existing theorem specifications replace the includes element by the
  1121 respective context elements of the included locale, omitting those
  1122 that are already present in the theorem specification.  Multiple
  1123 assume elements of a locale should be replaced by a single one
  1124 involving the locale predicate.  In the proof body, declarations (most
  1125 notably theorems) may be regained by interpreting the respective
  1126 locales in the proof context as required (command "interpret").
  1127 
  1128 If using "includes" in replacement of a target solely because the
  1129 parameter types in the theorem are not as general as in the target,
  1130 consider declaring a new locale with additional type constraints on
  1131 the parameters (context element "constrains").
  1132 
  1133 - Discontinued "locale (open)".  INCOMPATIBILITY.
  1134 
  1135 - Locale interpretation commands no longer attempt to simplify goal.
  1136 INCOMPATIBILITY: in rare situations the generated goal differs.  Use
  1137 methods intro_locales and unfold_locales to clarify.
  1138 
  1139 - Locale interpretation commands no longer accept interpretation
  1140 attributes.  INCOMPATIBILITY.
  1141 
  1142 * Class declaration: so-called "base sort" must not be given in import
  1143 list any longer, but is inferred from the specification.  Particularly
  1144 in HOL, write
  1145 
  1146     class foo = ...
  1147 
  1148 instead of
  1149 
  1150     class foo = type + ...
  1151 
  1152 * Class target: global versions of theorems stemming do not carry a
  1153 parameter prefix any longer.  INCOMPATIBILITY.
  1154 
  1155 * Class 'instance' command no longer accepts attached definitions.
  1156 INCOMPATIBILITY, use proper 'instantiation' target instead.
  1157 
  1158 * Recovered hiding of consts, which was accidentally broken in
  1159 Isabelle2007.  Potential INCOMPATIBILITY, ``hide const c'' really
  1160 makes c inaccessible; consider using ``hide (open) const c'' instead.
  1161 
  1162 * Slightly more coherent Pure syntax, with updated documentation in
  1163 isar-ref manual.  Removed locales meta_term_syntax and
  1164 meta_conjunction_syntax: TERM and &&& (formerly &&) are now permanent,
  1165 INCOMPATIBILITY in rare situations.  Note that &&& should not be used
  1166 directly in regular applications.
  1167 
  1168 * There is a new syntactic category "float_const" for signed decimal
  1169 fractions (e.g. 123.45 or -123.45).
  1170 
  1171 * Removed exotic 'token_translation' command.  INCOMPATIBILITY, use ML
  1172 interface with 'setup' command instead.
  1173 
  1174 * Command 'local_setup' is similar to 'setup', but operates on a local
  1175 theory context.
  1176 
  1177 * The 'axiomatization' command now only works within a global theory
  1178 context.  INCOMPATIBILITY.
  1179 
  1180 * Goal-directed proof now enforces strict proof irrelevance wrt. sort
  1181 hypotheses.  Sorts required in the course of reasoning need to be
  1182 covered by the constraints in the initial statement, completed by the
  1183 type instance information of the background theory.  Non-trivial sort
  1184 hypotheses, which rarely occur in practice, may be specified via
  1185 vacuous propositions of the form SORT_CONSTRAINT('a::c).  For example:
  1186 
  1187   lemma assumes "SORT_CONSTRAINT('a::empty)" shows False ...
  1188 
  1189 The result contains an implicit sort hypotheses as before --
  1190 SORT_CONSTRAINT premises are eliminated as part of the canonical rule
  1191 normalization.
  1192 
  1193 * Generalized Isar history, with support for linear undo, direct state
  1194 addressing etc.
  1195 
  1196 * Changed defaults for unify configuration options:
  1197 
  1198   unify_trace_bound = 50 (formerly 25)
  1199   unify_search_bound = 60 (formerly 30)
  1200 
  1201 * Different bookkeeping for code equations (INCOMPATIBILITY):
  1202 
  1203   a) On theory merge, the last set of code equations for a particular
  1204      constant is taken (in accordance with the policy applied by other
  1205      parts of the code generator framework).
  1206 
  1207   b) Code equations stemming from explicit declarations (e.g. code
  1208      attribute) gain priority over default code equations stemming
  1209      from definition, primrec, fun etc.
  1210 
  1211 * Keyword 'code_exception' now named 'code_abort'.  INCOMPATIBILITY.
  1212 
  1213 * Unified theorem tables for both code generators.  Thus [code
  1214 func] has disappeared and only [code] remains.  INCOMPATIBILITY.
  1215 
  1216 * Command 'find_consts' searches for constants based on type and name
  1217 patterns, e.g.
  1218 
  1219     find_consts "_ => bool"
  1220 
  1221 By default, matching is against subtypes, but it may be restricted to
  1222 the whole type.  Searching by name is possible.  Multiple queries are
  1223 conjunctive and queries may be negated by prefixing them with a
  1224 hyphen:
  1225 
  1226     find_consts strict: "_ => bool" name: "Int" -"int => int"
  1227 
  1228 * New 'find_theorems' criterion "solves" matches theorems that
  1229 directly solve the current goal (modulo higher-order unification).
  1230 
  1231 * Auto solve feature for main theorem statements: whenever a new goal
  1232 is stated, "find_theorems solves" is called; any theorems that could
  1233 solve the lemma directly are listed as part of the goal state.
  1234 Cf. associated options in Proof General Isabelle settings menu,
  1235 enabled by default, with reasonable timeout for pathological cases of
  1236 higher-order unification.
  1237 
  1238 
  1239 *** Document preparation ***
  1240 
  1241 * Antiquotation @{lemma} now imitates a regular terminal proof,
  1242 demanding keyword 'by' and supporting the full method expression
  1243 syntax just like the Isar command 'by'.
  1244 
  1245 
  1246 *** HOL ***
  1247 
  1248 * Integrated main parts of former image HOL-Complex with HOL.  Entry
  1249 points Main and Complex_Main remain as before.
  1250 
  1251 * Logic image HOL-Plain provides a minimal HOL with the most important
  1252 tools available (inductive, datatype, primrec, ...).  This facilitates
  1253 experimentation and tool development.  Note that user applications
  1254 (and library theories) should never refer to anything below theory
  1255 Main, as before.
  1256 
  1257 * Logic image HOL-Main stops at theory Main, and thus facilitates
  1258 experimentation due to shorter build times.
  1259 
  1260 * Logic image HOL-NSA contains theories of nonstandard analysis which
  1261 were previously part of former HOL-Complex.  Entry point Hyperreal
  1262 remains valid, but theories formerly using Complex_Main should now use
  1263 new entry point Hypercomplex.
  1264 
  1265 * Generic ATP manager for Sledgehammer, based on ML threads instead of
  1266 Posix processes.  Avoids potentially expensive forking of the ML
  1267 process.  New thread-based implementation also works on non-Unix
  1268 platforms (Cygwin).  Provers are no longer hardwired, but defined
  1269 within the theory via plain ML wrapper functions.  Basic Sledgehammer
  1270 commands are covered in the isar-ref manual.
  1271 
  1272 * Wrapper scripts for remote SystemOnTPTP service allows to use
  1273 sledgehammer without local ATP installation (Vampire etc.). Other
  1274 provers may be included via suitable ML wrappers, see also
  1275 src/HOL/ATP_Linkup.thy.
  1276 
  1277 * ATP selection (E/Vampire/Spass) is now via Proof General's settings
  1278 menu.
  1279 
  1280 * The metis method no longer fails because the theorem is too trivial
  1281 (contains the empty clause).
  1282 
  1283 * The metis method now fails in the usual manner, rather than raising
  1284 an exception, if it determines that it cannot prove the theorem.
  1285 
  1286 * Method "coherent" implements a prover for coherent logic (see also
  1287 src/Tools/coherent.ML).
  1288 
  1289 * Constants "undefined" and "default" replace "arbitrary".  Usually
  1290 "undefined" is the right choice to replace "arbitrary", though
  1291 logically there is no difference.  INCOMPATIBILITY.
  1292 
  1293 * Command "value" now integrates different evaluation mechanisms.  The
  1294 result of the first successful evaluation mechanism is printed.  In
  1295 square brackets a particular named evaluation mechanisms may be
  1296 specified (currently, [SML], [code] or [nbe]).  See further
  1297 src/HOL/ex/Eval_Examples.thy.
  1298 
  1299 * Normalization by evaluation now allows non-leftlinear equations.
  1300 Declare with attribute [code nbe].
  1301 
  1302 * Methods "case_tac" and "induct_tac" now refer to the very same rules
  1303 as the structured Isar versions "cases" and "induct", cf. the
  1304 corresponding "cases" and "induct" attributes.  Mutual induction rules
  1305 are now presented as a list of individual projections
  1306 (e.g. foo_bar.inducts for types foo and bar); the old format with
  1307 explicit HOL conjunction is no longer supported.  INCOMPATIBILITY, in
  1308 rare situations a different rule is selected --- notably nested tuple
  1309 elimination instead of former prod.exhaust: use explicit (case_tac t
  1310 rule: prod.exhaust) here.
  1311 
  1312 * Attributes "cases", "induct", "coinduct" support "del" option.
  1313 
  1314 * Removed fact "case_split_thm", which duplicates "case_split".
  1315 
  1316 * The option datatype has been moved to a new theory Option.  Renamed
  1317 option_map to Option.map, and o2s to Option.set, INCOMPATIBILITY.
  1318 
  1319 * New predicate "strict_mono" classifies strict functions on partial
  1320 orders.  With strict functions on linear orders, reasoning about
  1321 (in)equalities is facilitated by theorems "strict_mono_eq",
  1322 "strict_mono_less_eq" and "strict_mono_less".
  1323 
  1324 * Some set operations are now proper qualified constants with
  1325 authentic syntax.  INCOMPATIBILITY:
  1326 
  1327     op Int ~>   Set.Int
  1328     op Un ~>    Set.Un
  1329     INTER ~>    Set.INTER
  1330     UNION ~>    Set.UNION
  1331     Inter ~>    Set.Inter
  1332     Union ~>    Set.Union
  1333     {} ~>       Set.empty
  1334     UNIV ~>     Set.UNIV
  1335 
  1336 * Class complete_lattice with operations Inf, Sup, INFI, SUPR now in
  1337 theory Set.
  1338 
  1339 * Auxiliary class "itself" has disappeared -- classes without any
  1340 parameter are treated as expected by the 'class' command.
  1341 
  1342 * Leibnitz's Series for Pi and the arcus tangens and logarithm series.
  1343 
  1344 * Common decision procedures (Cooper, MIR, Ferrack, Approximation,
  1345 Dense_Linear_Order) are now in directory HOL/Decision_Procs.
  1346 
  1347 * Theory src/HOL/Decision_Procs/Approximation provides the new proof
  1348 method "approximation".  It proves formulas on real values by using
  1349 interval arithmetic.  In the formulas are also the transcendental
  1350 functions sin, cos, tan, atan, ln, exp and the constant pi are
  1351 allowed. For examples see
  1352 src/HOL/Descision_Procs/ex/Approximation_Ex.thy.
  1353 
  1354 * Theory "Reflection" now resides in HOL/Library.
  1355 
  1356 * Entry point to Word library now simply named "Word".
  1357 INCOMPATIBILITY.
  1358 
  1359 * Made source layout more coherent with logical distribution
  1360 structure:
  1361 
  1362     src/HOL/Library/RType.thy ~> src/HOL/Typerep.thy
  1363     src/HOL/Library/Code_Message.thy ~> src/HOL/
  1364     src/HOL/Library/GCD.thy ~> src/HOL/
  1365     src/HOL/Library/Order_Relation.thy ~> src/HOL/
  1366     src/HOL/Library/Parity.thy ~> src/HOL/
  1367     src/HOL/Library/Univ_Poly.thy ~> src/HOL/
  1368     src/HOL/Real/ContNotDenum.thy ~> src/HOL/Library/
  1369     src/HOL/Real/Lubs.thy ~> src/HOL/
  1370     src/HOL/Real/PReal.thy ~> src/HOL/
  1371     src/HOL/Real/Rational.thy ~> src/HOL/
  1372     src/HOL/Real/RComplete.thy ~> src/HOL/
  1373     src/HOL/Real/RealDef.thy ~> src/HOL/
  1374     src/HOL/Real/RealPow.thy ~> src/HOL/
  1375     src/HOL/Real/Real.thy ~> src/HOL/
  1376     src/HOL/Complex/Complex_Main.thy ~> src/HOL/
  1377     src/HOL/Complex/Complex.thy ~> src/HOL/
  1378     src/HOL/Complex/FrechetDeriv.thy ~> src/HOL/Library/
  1379     src/HOL/Complex/Fundamental_Theorem_Algebra.thy ~> src/HOL/Library/
  1380     src/HOL/Hyperreal/Deriv.thy ~> src/HOL/
  1381     src/HOL/Hyperreal/Fact.thy ~> src/HOL/
  1382     src/HOL/Hyperreal/Integration.thy ~> src/HOL/
  1383     src/HOL/Hyperreal/Lim.thy ~> src/HOL/
  1384     src/HOL/Hyperreal/Ln.thy ~> src/HOL/
  1385     src/HOL/Hyperreal/Log.thy ~> src/HOL/
  1386     src/HOL/Hyperreal/MacLaurin.thy ~> src/HOL/
  1387     src/HOL/Hyperreal/NthRoot.thy ~> src/HOL/
  1388     src/HOL/Hyperreal/Series.thy ~> src/HOL/
  1389     src/HOL/Hyperreal/SEQ.thy ~> src/HOL/
  1390     src/HOL/Hyperreal/Taylor.thy ~> src/HOL/
  1391     src/HOL/Hyperreal/Transcendental.thy ~> src/HOL/
  1392     src/HOL/Real/Float ~> src/HOL/Library/
  1393     src/HOL/Real/HahnBanach ~> src/HOL/HahnBanach
  1394     src/HOL/Real/RealVector.thy ~> src/HOL/
  1395 
  1396     src/HOL/arith_data.ML ~> src/HOL/Tools
  1397     src/HOL/hologic.ML ~> src/HOL/Tools
  1398     src/HOL/simpdata.ML ~> src/HOL/Tools
  1399     src/HOL/int_arith1.ML ~> src/HOL/Tools/int_arith.ML
  1400     src/HOL/int_factor_simprocs.ML ~> src/HOL/Tools
  1401     src/HOL/nat_simprocs.ML ~> src/HOL/Tools
  1402     src/HOL/Real/float_arith.ML ~> src/HOL/Tools
  1403     src/HOL/Real/float_syntax.ML ~> src/HOL/Tools
  1404     src/HOL/Real/rat_arith.ML ~> src/HOL/Tools
  1405     src/HOL/Real/real_arith.ML ~> src/HOL/Tools
  1406 
  1407     src/HOL/Library/Array.thy ~> src/HOL/Imperative_HOL
  1408     src/HOL/Library/Heap_Monad.thy ~> src/HOL/Imperative_HOL
  1409     src/HOL/Library/Heap.thy ~> src/HOL/Imperative_HOL
  1410     src/HOL/Library/Imperative_HOL.thy ~> src/HOL/Imperative_HOL
  1411     src/HOL/Library/Ref.thy ~> src/HOL/Imperative_HOL
  1412     src/HOL/Library/Relational.thy ~> src/HOL/Imperative_HOL
  1413 
  1414 * If methods "eval" and "evaluation" encounter a structured proof
  1415 state with !!/==>, only the conclusion is evaluated to True (if
  1416 possible), avoiding strange error messages.
  1417 
  1418 * Method "sizechange" automates termination proofs using (a
  1419 modification of) the size-change principle.  Requires SAT solver.  See
  1420 src/HOL/ex/Termination.thy for examples.
  1421 
  1422 * Simplifier: simproc for let expressions now unfolds if bound
  1423 variable occurs at most once in let expression body.  INCOMPATIBILITY.
  1424 
  1425 * Method "arith": Linear arithmetic now ignores all inequalities when
  1426 fast_arith_neq_limit is exceeded, instead of giving up entirely.
  1427 
  1428 * New attribute "arith" for facts that should always be used
  1429 automatically by arithmetic. It is intended to be used locally in
  1430 proofs, e.g.
  1431 
  1432   assumes [arith]: "x > 0"
  1433 
  1434 Global usage is discouraged because of possible performance impact.
  1435 
  1436 * New classes "top" and "bot" with corresponding operations "top" and
  1437 "bot" in theory Orderings; instantiation of class "complete_lattice"
  1438 requires instantiation of classes "top" and "bot".  INCOMPATIBILITY.
  1439 
  1440 * Changed definition lemma "less_fun_def" in order to provide an
  1441 instance for preorders on functions; use lemma "less_le" instead.
  1442 INCOMPATIBILITY.
  1443 
  1444 * Theory Orderings: class "wellorder" moved here, with explicit
  1445 induction rule "less_induct" as assumption.  For instantiation of
  1446 "wellorder" by means of predicate "wf", use rule wf_wellorderI.
  1447 INCOMPATIBILITY.
  1448 
  1449 * Theory Orderings: added class "preorder" as superclass of "order".
  1450 INCOMPATIBILITY: Instantiation proofs for order, linorder
  1451 etc. slightly changed.  Some theorems named order_class.* now named
  1452 preorder_class.*.
  1453 
  1454 * Theory Relation: renamed "refl" to "refl_on", "reflexive" to "refl,
  1455 "diag" to "Id_on".
  1456 
  1457 * Theory Finite_Set: added a new fold combinator of type
  1458 
  1459   ('a => 'b => 'b) => 'b => 'a set => 'b
  1460 
  1461 Occasionally this is more convenient than the old fold combinator
  1462 which is now defined in terms of the new one and renamed to
  1463 fold_image.
  1464 
  1465 * Theories Ring_and_Field and OrderedGroup: The lemmas "group_simps"
  1466 and "ring_simps" have been replaced by "algebra_simps" (which can be
  1467 extended with further lemmas!).  At the moment both still exist but
  1468 the former will disappear at some point.
  1469 
  1470 * Theory Power: Lemma power_Suc is now declared as a simp rule in
  1471 class recpower.  Type-specific simp rules for various recpower types
  1472 have been removed.  INCOMPATIBILITY, rename old lemmas as follows:
  1473 
  1474 rat_power_0    -> power_0
  1475 rat_power_Suc  -> power_Suc
  1476 realpow_0      -> power_0
  1477 realpow_Suc    -> power_Suc
  1478 complexpow_0   -> power_0
  1479 complexpow_Suc -> power_Suc
  1480 power_poly_0   -> power_0
  1481 power_poly_Suc -> power_Suc
  1482 
  1483 * Theories Ring_and_Field and Divides: Definition of "op dvd" has been
  1484 moved to separate class dvd in Ring_and_Field; a couple of lemmas on
  1485 dvd has been generalized to class comm_semiring_1.  Likewise a bunch
  1486 of lemmas from Divides has been generalized from nat to class
  1487 semiring_div.  INCOMPATIBILITY.  This involves the following theorem
  1488 renames resulting from duplicate elimination:
  1489 
  1490     dvd_def_mod ~>          dvd_eq_mod_eq_0
  1491     zero_dvd_iff ~>         dvd_0_left_iff
  1492     dvd_0 ~>                dvd_0_right
  1493     DIVISION_BY_ZERO_DIV ~> div_by_0
  1494     DIVISION_BY_ZERO_MOD ~> mod_by_0
  1495     mult_div ~>             div_mult_self2_is_id
  1496     mult_mod ~>             mod_mult_self2_is_0
  1497 
  1498 * Theory IntDiv: removed many lemmas that are instances of class-based
  1499 generalizations (from Divides and Ring_and_Field).  INCOMPATIBILITY,
  1500 rename old lemmas as follows:
  1501 
  1502 dvd_diff               -> nat_dvd_diff
  1503 dvd_zminus_iff         -> dvd_minus_iff
  1504 mod_add1_eq            -> mod_add_eq
  1505 mod_mult1_eq           -> mod_mult_right_eq
  1506 mod_mult1_eq'          -> mod_mult_left_eq
  1507 mod_mult_distrib_mod   -> mod_mult_eq
  1508 nat_mod_add_left_eq    -> mod_add_left_eq
  1509 nat_mod_add_right_eq   -> mod_add_right_eq
  1510 nat_mod_div_trivial    -> mod_div_trivial
  1511 nat_mod_mod_trivial    -> mod_mod_trivial
  1512 zdiv_zadd_self1        -> div_add_self1
  1513 zdiv_zadd_self2        -> div_add_self2
  1514 zdiv_zmult_self1       -> div_mult_self2_is_id
  1515 zdiv_zmult_self2       -> div_mult_self1_is_id
  1516 zdvd_triv_left         -> dvd_triv_left
  1517 zdvd_triv_right        -> dvd_triv_right
  1518 zdvd_zmult_cancel_disj -> dvd_mult_cancel_left
  1519 zmod_eq0_zdvd_iff      -> dvd_eq_mod_eq_0[symmetric]
  1520 zmod_zadd_left_eq      -> mod_add_left_eq
  1521 zmod_zadd_right_eq     -> mod_add_right_eq
  1522 zmod_zadd_self1        -> mod_add_self1
  1523 zmod_zadd_self2        -> mod_add_self2
  1524 zmod_zadd1_eq          -> mod_add_eq
  1525 zmod_zdiff1_eq         -> mod_diff_eq
  1526 zmod_zdvd_zmod         -> mod_mod_cancel
  1527 zmod_zmod_cancel       -> mod_mod_cancel
  1528 zmod_zmult_self1       -> mod_mult_self2_is_0
  1529 zmod_zmult_self2       -> mod_mult_self1_is_0
  1530 zmod_1                 -> mod_by_1
  1531 zdiv_1                 -> div_by_1
  1532 zdvd_abs1              -> abs_dvd_iff
  1533 zdvd_abs2              -> dvd_abs_iff
  1534 zdvd_refl              -> dvd_refl
  1535 zdvd_trans             -> dvd_trans
  1536 zdvd_zadd              -> dvd_add
  1537 zdvd_zdiff             -> dvd_diff
  1538 zdvd_zminus_iff        -> dvd_minus_iff
  1539 zdvd_zminus2_iff       -> minus_dvd_iff
  1540 zdvd_zmultD            -> dvd_mult_right
  1541 zdvd_zmultD2           -> dvd_mult_left
  1542 zdvd_zmult_mono        -> mult_dvd_mono
  1543 zdvd_0_right           -> dvd_0_right
  1544 zdvd_0_left            -> dvd_0_left_iff
  1545 zdvd_1_left            -> one_dvd
  1546 zminus_dvd_iff         -> minus_dvd_iff
  1547 
  1548 * Theory Rational: 'Fract k 0' now equals '0'.  INCOMPATIBILITY.
  1549 
  1550 * The real numbers offer decimal input syntax: 12.34 is translated
  1551 into 1234/10^2. This translation is not reversed upon output.
  1552 
  1553 * Theory Library/Polynomial defines an abstract type 'a poly of
  1554 univariate polynomials with coefficients of type 'a.  In addition to
  1555 the standard ring operations, it also supports div and mod.  Code
  1556 generation is also supported, using list-style constructors.
  1557 
  1558 * Theory Library/Inner_Product defines a class of real_inner for real
  1559 inner product spaces, with an overloaded operation inner :: 'a => 'a
  1560 => real.  Class real_inner is a subclass of real_normed_vector from
  1561 theory RealVector.
  1562 
  1563 * Theory Library/Product_Vector provides instances for the product
  1564 type 'a * 'b of several classes from RealVector and Inner_Product.
  1565 Definitions of addition, subtraction, scalar multiplication, norms,
  1566 and inner products are included.
  1567 
  1568 * Theory Library/Bit defines the field "bit" of integers modulo 2.  In
  1569 addition to the field operations, numerals and case syntax are also
  1570 supported.
  1571 
  1572 * Theory Library/Diagonalize provides constructive version of Cantor's
  1573 first diagonalization argument.
  1574 
  1575 * Theory Library/GCD: Curried operations gcd, lcm (for nat) and zgcd,
  1576 zlcm (for int); carried together from various gcd/lcm developements in
  1577 the HOL Distribution.  Constants zgcd and zlcm replace former igcd and
  1578 ilcm; corresponding theorems renamed accordingly.  INCOMPATIBILITY,
  1579 may recover tupled syntax as follows:
  1580 
  1581     hide (open) const gcd
  1582     abbreviation gcd where
  1583       "gcd == (%(a, b). GCD.gcd a b)"
  1584     notation (output)
  1585       GCD.gcd ("gcd '(_, _')")
  1586 
  1587 The same works for lcm, zgcd, zlcm.
  1588 
  1589 * Theory Library/Nat_Infinity: added addition, numeral syntax and more
  1590 instantiations for algebraic structures.  Removed some duplicate
  1591 theorems.  Changes in simp rules.  INCOMPATIBILITY.
  1592 
  1593 * ML antiquotation @{code} takes a constant as argument and generates
  1594 corresponding code in background and inserts name of the corresponding
  1595 resulting ML value/function/datatype constructor binding in place.
  1596 All occurrences of @{code} with a single ML block are generated
  1597 simultaneously.  Provides a generic and safe interface for
  1598 instrumentalizing code generation.  See
  1599 src/HOL/Decision_Procs/Ferrack.thy for a more ambitious application.
  1600 In future you ought to refrain from ad-hoc compiling generated SML
  1601 code on the ML toplevel.  Note that (for technical reasons) @{code}
  1602 cannot refer to constants for which user-defined serializations are
  1603 set.  Refer to the corresponding ML counterpart directly in that
  1604 cases.
  1605 
  1606 * Command 'rep_datatype': instead of theorem names the command now
  1607 takes a list of terms denoting the constructors of the type to be
  1608 represented as datatype.  The characteristic theorems have to be
  1609 proven.  INCOMPATIBILITY.  Also observe that the following theorems
  1610 have disappeared in favour of existing ones:
  1611 
  1612     unit_induct                 ~> unit.induct
  1613     prod_induct                 ~> prod.induct
  1614     sum_induct                  ~> sum.induct
  1615     Suc_Suc_eq                  ~> nat.inject
  1616     Suc_not_Zero Zero_not_Suc   ~> nat.distinct
  1617 
  1618 
  1619 *** HOL-Algebra ***
  1620 
  1621 * New locales for orders and lattices where the equivalence relation
  1622 is not restricted to equality.  INCOMPATIBILITY: all order and lattice
  1623 locales use a record structure with field eq for the equivalence.
  1624 
  1625 * New theory of factorial domains.
  1626 
  1627 * Units_l_inv and Units_r_inv are now simp rules by default.
  1628 INCOMPATIBILITY.  Simplifier proof that require deletion of l_inv
  1629 and/or r_inv will now also require deletion of these lemmas.
  1630 
  1631 * Renamed the following theorems, INCOMPATIBILITY:
  1632 
  1633 UpperD ~> Upper_memD
  1634 LowerD ~> Lower_memD
  1635 least_carrier ~> least_closed
  1636 greatest_carrier ~> greatest_closed
  1637 greatest_Lower_above ~> greatest_Lower_below
  1638 one_zero ~> carrier_one_zero
  1639 one_not_zero ~> carrier_one_not_zero  (collision with assumption)
  1640 
  1641 
  1642 *** HOL-Nominal ***
  1643 
  1644 * Nominal datatypes can now contain type-variables.
  1645 
  1646 * Commands 'nominal_inductive' and 'equivariance' work with local
  1647 theory targets.
  1648 
  1649 * Nominal primrec can now works with local theory targets and its
  1650 specification syntax now conforms to the general format as seen in
  1651 'inductive' etc.
  1652 
  1653 * Method "perm_simp" honours the standard simplifier attributes
  1654 (no_asm), (no_asm_use) etc.
  1655 
  1656 * The new predicate #* is defined like freshness, except that on the
  1657 left hand side can be a set or list of atoms.
  1658 
  1659 * Experimental command 'nominal_inductive2' derives strong induction
  1660 principles for inductive definitions.  In contrast to
  1661 'nominal_inductive', which can only deal with a fixed number of
  1662 binders, it can deal with arbitrary expressions standing for sets of
  1663 atoms to be avoided.  The only inductive definition we have at the
  1664 moment that needs this generalisation is the typing rule for Lets in
  1665 the algorithm W:
  1666 
  1667  Gamma |- t1 : T1   (x,close Gamma T1)::Gamma |- t2 : T2   x#Gamma
  1668  -----------------------------------------------------------------
  1669          Gamma |- Let x be t1 in t2 : T2
  1670 
  1671 In this rule one wants to avoid all the binders that are introduced by
  1672 "close Gamma T1".  We are looking for other examples where this
  1673 feature might be useful.  Please let us know.
  1674 
  1675 
  1676 *** HOLCF ***
  1677 
  1678 * Reimplemented the simplification procedure for proving continuity
  1679 subgoals.  The new simproc is extensible; users can declare additional
  1680 continuity introduction rules with the attribute [cont2cont].
  1681 
  1682 * The continuity simproc now uses a different introduction rule for
  1683 solving continuity subgoals on terms with lambda abstractions.  In
  1684 some rare cases the new simproc may fail to solve subgoals that the
  1685 old one could solve, and "simp add: cont2cont_LAM" may be necessary.
  1686 Potential INCOMPATIBILITY.
  1687 
  1688 * Command 'fixrec': specification syntax now conforms to the general
  1689 format as seen in 'inductive' etc.  See src/HOLCF/ex/Fixrec_ex.thy for
  1690 examples.  INCOMPATIBILITY.
  1691 
  1692 
  1693 *** ZF ***
  1694 
  1695 * Proof of Zorn's Lemma for partial orders.
  1696 
  1697 
  1698 *** ML ***
  1699 
  1700 * Multithreading for Poly/ML 5.1/5.2 is no longer supported, only for
  1701 Poly/ML 5.2.1 or later.  Important note: the TimeLimit facility
  1702 depends on multithreading, so timouts will not work before Poly/ML
  1703 5.2.1!
  1704 
  1705 * High-level support for concurrent ML programming, see
  1706 src/Pure/Cuncurrent.  The data-oriented model of "future values" is
  1707 particularly convenient to organize independent functional
  1708 computations.  The concept of "synchronized variables" provides a
  1709 higher-order interface for components with shared state, avoiding the
  1710 delicate details of mutexes and condition variables.  (Requires
  1711 Poly/ML 5.2.1 or later.)
  1712 
  1713 * ML bindings produced via Isar commands are stored within the Isar
  1714 context (theory or proof).  Consequently, commands like 'use' and 'ML'
  1715 become thread-safe and work with undo as expected (concerning
  1716 top-level bindings, not side-effects on global references).
  1717 INCOMPATIBILITY, need to provide proper Isar context when invoking the
  1718 compiler at runtime; really global bindings need to be given outside a
  1719 theory.  (Requires Poly/ML 5.2 or later.)
  1720 
  1721 * Command 'ML_prf' is analogous to 'ML' but works within a proof
  1722 context.  Top-level ML bindings are stored within the proof context in
  1723 a purely sequential fashion, disregarding the nested proof structure.
  1724 ML bindings introduced by 'ML_prf' are discarded at the end of the
  1725 proof.  (Requires Poly/ML 5.2 or later.)
  1726 
  1727 * Simplified ML attribute and method setup, cf. functions Attrib.setup
  1728 and Method.setup, as well as Isar commands 'attribute_setup' and
  1729 'method_setup'.  INCOMPATIBILITY for 'method_setup', need to simplify
  1730 existing code accordingly, or use plain 'setup' together with old
  1731 Method.add_method.
  1732 
  1733 * Simplified ML oracle interface Thm.add_oracle promotes 'a -> cterm
  1734 to 'a -> thm, while results are always tagged with an authentic oracle
  1735 name.  The Isar command 'oracle' is now polymorphic, no argument type
  1736 is specified.  INCOMPATIBILITY, need to simplify existing oracle code
  1737 accordingly.  Note that extra performance may be gained by producing
  1738 the cterm carefully, avoiding slow Thm.cterm_of.
  1739 
  1740 * Simplified interface for defining document antiquotations via
  1741 ThyOutput.antiquotation, ThyOutput.output, and optionally
  1742 ThyOutput.maybe_pretty_source.  INCOMPATIBILITY, need to simplify user
  1743 antiquotations accordingly, see src/Pure/Thy/thy_output.ML for common
  1744 examples.
  1745 
  1746 * More systematic treatment of long names, abstract name bindings, and
  1747 name space operations.  Basic operations on qualified names have been
  1748 move from structure NameSpace to Long_Name, e.g. Long_Name.base_name,
  1749 Long_Name.append.  Old type bstring has been mostly replaced by
  1750 abstract type binding (see structure Binding), which supports precise
  1751 qualification by packages and local theory targets, as well as proper
  1752 tracking of source positions.  INCOMPATIBILITY, need to wrap old
  1753 bstring values into Binding.name, or better pass through abstract
  1754 bindings everywhere.  See further src/Pure/General/long_name.ML,
  1755 src/Pure/General/binding.ML and src/Pure/General/name_space.ML
  1756 
  1757 * Result facts (from PureThy.note_thms, ProofContext.note_thms,
  1758 LocalTheory.note etc.) now refer to the *full* internal name, not the
  1759 bstring as before.  INCOMPATIBILITY, not detected by ML type-checking!
  1760 
  1761 * Disposed old type and term read functions (Sign.read_def_typ,
  1762 Sign.read_typ, Sign.read_def_terms, Sign.read_term,
  1763 Thm.read_def_cterms, Thm.read_cterm etc.).  INCOMPATIBILITY, should
  1764 use regular Syntax.read_typ, Syntax.read_term, Syntax.read_typ_global,
  1765 Syntax.read_term_global etc.; see also OldGoals.read_term as last
  1766 resort for legacy applications.
  1767 
  1768 * Disposed old declarations, tactics, tactic combinators that refer to
  1769 the simpset or claset of an implicit theory (such as Addsimps,
  1770 Simp_tac, SIMPSET).  INCOMPATIBILITY, should use @{simpset} etc. in
  1771 embedded ML text, or local_simpset_of with a proper context passed as
  1772 explicit runtime argument.
  1773 
  1774 * Rules and tactics that read instantiations (read_instantiate,
  1775 res_inst_tac, thin_tac, subgoal_tac etc.) now demand a proper proof
  1776 context, which is required for parsing and type-checking.  Moreover,
  1777 the variables are specified as plain indexnames, not string encodings
  1778 thereof.  INCOMPATIBILITY.
  1779 
  1780 * Generic Toplevel.add_hook interface allows to analyze the result of
  1781 transactions.  E.g. see src/Pure/ProofGeneral/proof_general_pgip.ML
  1782 for theorem dependency output of transactions resulting in a new
  1783 theory state.
  1784 
  1785 * ML antiquotations: block-structured compilation context indicated by
  1786 \<lbrace> ... \<rbrace>; additional antiquotation forms:
  1787 
  1788   @{binding name}                         - basic name binding
  1789   @{let ?pat = term}                      - term abbreviation (HO matching)
  1790   @{note name = fact}                     - fact abbreviation
  1791   @{thm fact}                             - singleton fact (with attributes)
  1792   @{thms fact}                            - general fact (with attributes)
  1793   @{lemma prop by method}                 - singleton goal
  1794   @{lemma prop by meth1 meth2}            - singleton goal
  1795   @{lemma prop1 ... propN by method}      - general goal
  1796   @{lemma prop1 ... propN by meth1 meth2} - general goal
  1797   @{lemma (open) ...}                     - open derivation
  1798 
  1799 
  1800 *** System ***
  1801 
  1802 * The Isabelle "emacs" tool provides a specific interface to invoke
  1803 Proof General / Emacs, with more explicit failure if that is not
  1804 installed (the old isabelle-interface script silently falls back on
  1805 isabelle-process).  The PROOFGENERAL_HOME setting determines the
  1806 installation location of the Proof General distribution.
  1807 
  1808 * Isabelle/lib/classes/Pure.jar provides basic support to integrate
  1809 the Isabelle process into a JVM/Scala application.  See
  1810 Isabelle/lib/jedit/plugin for a minimal example.  (The obsolete Java
  1811 process wrapper has been discontinued.)
  1812 
  1813 * Added homegrown Isabelle font with unicode layout, see lib/fonts.
  1814 
  1815 * Various status messages (with exact source position information) are
  1816 emitted, if proper markup print mode is enabled.  This allows
  1817 user-interface components to provide detailed feedback on internal
  1818 prover operations.
  1819 
  1820 
  1821 
  1822 New in Isabelle2008 (June 2008)
  1823 -------------------------------
  1824 
  1825 *** General ***
  1826 
  1827 * The Isabelle/Isar Reference Manual (isar-ref) has been reorganized
  1828 and updated, with formally checked references as hyperlinks.
  1829 
  1830 * Theory loader: use_thy (and similar operations) no longer set the
  1831 implicit ML context, which was occasionally hard to predict and in
  1832 conflict with concurrency.  INCOMPATIBILITY, use ML within Isar which
  1833 provides a proper context already.
  1834 
  1835 * Theory loader: old-style ML proof scripts being *attached* to a thy
  1836 file are no longer supported.  INCOMPATIBILITY, regular 'uses' and
  1837 'use' within a theory file will do the job.
  1838 
  1839 * Name space merge now observes canonical order, i.e. the second space
  1840 is inserted into the first one, while existing entries in the first
  1841 space take precedence.  INCOMPATIBILITY in rare situations, may try to
  1842 swap theory imports.
  1843 
  1844 * Syntax: symbol \<chi> is now considered a letter.  Potential
  1845 INCOMPATIBILITY in identifier syntax etc.
  1846 
  1847 * Outer syntax: string tokens no longer admit escaped white space,
  1848 which was an accidental (undocumented) feature.  INCOMPATIBILITY, use
  1849 white space without escapes.
  1850 
  1851 * Outer syntax: string tokens may contain arbitrary character codes
  1852 specified via 3 decimal digits (as in SML).  E.g. "foo\095bar" for
  1853 "foo_bar".
  1854 
  1855 
  1856 *** Pure ***
  1857 
  1858 * Context-dependent token translations.  Default setup reverts locally
  1859 fixed variables, and adds hilite markup for undeclared frees.
  1860 
  1861 * Unused theorems can be found using the new command 'unused_thms'.
  1862 There are three ways of invoking it:
  1863 
  1864 (1) unused_thms
  1865      Only finds unused theorems in the current theory.
  1866 
  1867 (2) unused_thms thy_1 ... thy_n -
  1868      Finds unused theorems in the current theory and all of its ancestors,
  1869      excluding the theories thy_1 ... thy_n and all of their ancestors.
  1870 
  1871 (3) unused_thms thy_1 ... thy_n - thy'_1 ... thy'_m
  1872      Finds unused theorems in the theories thy'_1 ... thy'_m and all of
  1873      their ancestors, excluding the theories thy_1 ... thy_n and all of
  1874      their ancestors.
  1875 
  1876 In order to increase the readability of the list produced by
  1877 unused_thms, theorems that have been created by a particular instance
  1878 of a theory command such as 'inductive' or 'function' are considered
  1879 to belong to the same "group", meaning that if at least one theorem in
  1880 this group is used, the other theorems in the same group are no longer
  1881 reported as unused.  Moreover, if all theorems in the group are
  1882 unused, only one theorem in the group is displayed.
  1883 
  1884 Note that proof objects have to be switched on in order for
  1885 unused_thms to work properly (i.e. !proofs must be >= 1, which is
  1886 usually the case when using Proof General with the default settings).
  1887 
  1888 * Authentic naming of facts disallows ad-hoc overwriting of previous
  1889 theorems within the same name space.  INCOMPATIBILITY, need to remove
  1890 duplicate fact bindings, or even accidental fact duplications.  Note
  1891 that tools may maintain dynamically scoped facts systematically, using
  1892 PureThy.add_thms_dynamic.
  1893 
  1894 * Command 'hide' now allows to hide from "fact" name space as well.
  1895 
  1896 * Eliminated destructive theorem database, simpset, claset, and
  1897 clasimpset.  Potential INCOMPATIBILITY, really need to observe linear
  1898 update of theories within ML code.
  1899 
  1900 * Eliminated theory ProtoPure and CPure, leaving just one Pure theory.
  1901 INCOMPATIBILITY, object-logics depending on former Pure require
  1902 additional setup PureThy.old_appl_syntax_setup; object-logics
  1903 depending on former CPure need to refer to Pure.
  1904 
  1905 * Commands 'use' and 'ML' are now purely functional, operating on
  1906 theory/local_theory.  Removed former 'ML_setup' (on theory), use 'ML'
  1907 instead.  Added 'ML_val' as mere diagnostic replacement for 'ML'.
  1908 INCOMPATIBILITY.
  1909 
  1910 * Command 'setup': discontinued implicit version with ML reference.
  1911 
  1912 * Instantiation target allows for simultaneous specification of class
  1913 instance operations together with an instantiation proof.
  1914 Type-checking phase allows to refer to class operations uniformly.
  1915 See src/HOL/Complex/Complex.thy for an Isar example and
  1916 src/HOL/Library/Eval.thy for an ML example.
  1917 
  1918 * Indexing of literal facts: be more serious about including only
  1919 facts from the visible specification/proof context, but not the
  1920 background context (locale etc.).  Affects `prop` notation and method
  1921 "fact".  INCOMPATIBILITY: need to name facts explicitly in rare
  1922 situations.
  1923 
  1924 * Method "cases", "induct", "coinduct": removed obsolete/undocumented
  1925 "(open)" option, which used to expose internal bound variables to the
  1926 proof text.
  1927 
  1928 * Isar statements: removed obsolete case "rule_context".
  1929 INCOMPATIBILITY, better use explicit fixes/assumes.
  1930 
  1931 * Locale proofs: default proof step now includes 'unfold_locales';
  1932 hence 'proof' without argument may be used to unfold locale
  1933 predicates.
  1934 
  1935 
  1936 *** Document preparation ***
  1937 
  1938 * Simplified pdfsetup.sty: color/hyperref is used unconditionally for
  1939 both pdf and dvi (hyperlinks usually work in xdvi as well); removed
  1940 obsolete thumbpdf setup (contemporary PDF viewers do this on the
  1941 spot); renamed link color from "darkblue" to "linkcolor" (default
  1942 value unchanged, can be redefined via \definecolor); no longer sets
  1943 "a4paper" option (unnecessary or even intrusive).
  1944 
  1945 * Antiquotation @{lemma A method} proves proposition A by the given
  1946 method (either a method name or a method name plus (optional) method
  1947 arguments in parentheses) and prints A just like @{prop A}.
  1948 
  1949 
  1950 *** HOL ***
  1951 
  1952 * New primrec package.  Specification syntax conforms in style to
  1953 definition/function/....  No separate induction rule is provided.  The
  1954 "primrec" command distinguishes old-style and new-style specifications
  1955 by syntax.  The former primrec package is now named OldPrimrecPackage.
  1956 When adjusting theories, beware: constants stemming from new-style
  1957 primrec specifications have authentic syntax.
  1958 
  1959 * Metis prover is now an order of magnitude faster, and also works
  1960 with multithreading.
  1961 
  1962 * Metis: the maximum number of clauses that can be produced from a
  1963 theorem is now given by the attribute max_clauses.  Theorems that
  1964 exceed this number are ignored, with a warning printed.
  1965 
  1966 * Sledgehammer no longer produces structured proofs by default. To
  1967 enable, declare [[sledgehammer_full = true]].  Attributes
  1968 reconstruction_modulus, reconstruction_sorts renamed
  1969 sledgehammer_modulus, sledgehammer_sorts.  INCOMPATIBILITY.
  1970 
  1971 * Method "induct_scheme" derives user-specified induction rules
  1972 from well-founded induction and completeness of patterns. This factors
  1973 out some operations that are done internally by the function package
  1974 and makes them available separately.  See
  1975 src/HOL/ex/Induction_Scheme.thy for examples.
  1976 
  1977 * More flexible generation of measure functions for termination
  1978 proofs: Measure functions can be declared by proving a rule of the
  1979 form "is_measure f" and giving it the [measure_function] attribute.
  1980 The "is_measure" predicate is logically meaningless (always true), and
  1981 just guides the heuristic.  To find suitable measure functions, the
  1982 termination prover sets up the goal "is_measure ?f" of the appropriate
  1983 type and generates all solutions by prolog-style backwards proof using
  1984 the declared rules.
  1985 
  1986 This setup also deals with rules like 
  1987 
  1988   "is_measure f ==> is_measure (list_size f)"
  1989 
  1990 which accommodates nested datatypes that recurse through lists.
  1991 Similar rules are predeclared for products and option types.
  1992 
  1993 * Turned the type of sets "'a set" into an abbreviation for "'a => bool"
  1994 
  1995   INCOMPATIBILITIES:
  1996 
  1997   - Definitions of overloaded constants on sets have to be replaced by
  1998     definitions on => and bool.
  1999 
  2000   - Some definitions of overloaded operators on sets can now be proved
  2001     using the definitions of the operators on => and bool.  Therefore,
  2002     the following theorems have been renamed:
  2003 
  2004       subset_def   -> subset_eq
  2005       psubset_def  -> psubset_eq
  2006       set_diff_def -> set_diff_eq
  2007       Compl_def    -> Compl_eq
  2008       Sup_set_def  -> Sup_set_eq
  2009       Inf_set_def  -> Inf_set_eq
  2010       sup_set_def  -> sup_set_eq
  2011       inf_set_def  -> inf_set_eq
  2012 
  2013   - Due to the incompleteness of the HO unification algorithm, some
  2014     rules such as subst may require manual instantiation, if some of
  2015     the unknowns in the rule is a set.
  2016 
  2017   - Higher order unification and forward proofs:
  2018     The proof pattern
  2019 
  2020       have "P (S::'a set)" <...>
  2021       then have "EX S. P S" ..
  2022 
  2023     no longer works (due to the incompleteness of the HO unification
  2024     algorithm) and must be replaced by the pattern
  2025 
  2026       have "EX S. P S"
  2027       proof
  2028         show "P S" <...>
  2029       qed
  2030 
  2031   - Calculational reasoning with subst (or similar rules):
  2032     The proof pattern
  2033 
  2034       have "P (S::'a set)" <...>
  2035       also have "S = T" <...>
  2036       finally have "P T" .
  2037 
  2038     no longer works (for similar reasons as the previous example) and
  2039     must be replaced by something like
  2040 
  2041       have "P (S::'a set)" <...>
  2042       moreover have "S = T" <...>
  2043       ultimately have "P T" by simp
  2044 
  2045   - Tactics or packages written in ML code:
  2046     Code performing pattern matching on types via
  2047 
  2048       Type ("set", [T]) => ...
  2049 
  2050     must be rewritten. Moreover, functions like strip_type or
  2051     binder_types no longer return the right value when applied to a
  2052     type of the form
  2053 
  2054       T1 => ... => Tn => U => bool
  2055 
  2056     rather than
  2057 
  2058       T1 => ... => Tn => U set
  2059 
  2060 * Merged theories Wellfounded_Recursion, Accessible_Part and
  2061 Wellfounded_Relations to theory Wellfounded.
  2062 
  2063 * Explicit class "eq" for executable equality.  INCOMPATIBILITY.
  2064 
  2065 * Class finite no longer treats UNIV as class parameter.  Use class
  2066 enum from theory Library/Enum instead to achieve a similar effect.
  2067 INCOMPATIBILITY.
  2068 
  2069 * Theory List: rule list_induct2 now has explicitly named cases "Nil"
  2070 and "Cons".  INCOMPATIBILITY.
  2071 
  2072 * HOL (and FOL): renamed variables in rules imp_elim and swap.
  2073 Potential INCOMPATIBILITY.
  2074 
  2075 * Theory Product_Type: duplicated lemmas split_Pair_apply and
  2076 injective_fst_snd removed, use split_eta and prod_eqI instead.
  2077 Renamed upd_fst to apfst and upd_snd to apsnd.  INCOMPATIBILITY.
  2078 
  2079 * Theory Nat: removed redundant lemmas that merely duplicate lemmas of
  2080 the same name in theory Orderings:
  2081 
  2082   less_trans
  2083   less_linear
  2084   le_imp_less_or_eq
  2085   le_less_trans
  2086   less_le_trans
  2087   less_not_sym
  2088   less_asym
  2089 
  2090 Renamed less_imp_le to less_imp_le_nat, and less_irrefl to
  2091 less_irrefl_nat.  Potential INCOMPATIBILITY due to more general types
  2092 and different variable names.
  2093 
  2094 * Library/Option_ord.thy: Canonical order on option type.
  2095 
  2096 * Library/RBT.thy: Red-black trees, an efficient implementation of
  2097 finite maps.
  2098 
  2099 * Library/Countable.thy: Type class for countable types.
  2100 
  2101 * Theory Int: The representation of numerals has changed.  The infix
  2102 operator BIT and the bit datatype with constructors B0 and B1 have
  2103 disappeared.  INCOMPATIBILITY, use "Int.Bit0 x" and "Int.Bit1 y" in
  2104 place of "x BIT bit.B0" and "y BIT bit.B1", respectively.  Theorems
  2105 involving BIT, B0, or B1 have been renamed with "Bit0" or "Bit1"
  2106 accordingly.
  2107 
  2108 * Theory Nat: definition of <= and < on natural numbers no longer
  2109 depend on well-founded relations.  INCOMPATIBILITY.  Definitions
  2110 le_def and less_def have disappeared.  Consider lemmas not_less
  2111 [symmetric, where ?'a = nat] and less_eq [symmetric] instead.
  2112 
  2113 * Theory Finite_Set: locales ACf, ACe, ACIf, ACIfSL and ACIfSLlin
  2114 (whose purpose mainly is for various fold_set functionals) have been
  2115 abandoned in favor of the existing algebraic classes
  2116 ab_semigroup_mult, comm_monoid_mult, ab_semigroup_idem_mult,
  2117 lower_semilattice (resp. upper_semilattice) and linorder.
  2118 INCOMPATIBILITY.
  2119 
  2120 * Theory Transitive_Closure: induct and cases rules now declare proper
  2121 case_names ("base" and "step").  INCOMPATIBILITY.
  2122 
  2123 * Theorem Inductive.lfp_ordinal_induct generalized to complete
  2124 lattices.  The form set-specific version is available as
  2125 Inductive.lfp_ordinal_induct_set.
  2126 
  2127 * Renamed theorems "power.simps" to "power_int.simps".
  2128 INCOMPATIBILITY.
  2129 
  2130 * Class semiring_div provides basic abstract properties of semirings
  2131 with division and modulo operations.  Subsumes former class dvd_mod.
  2132 
  2133 * Merged theories IntDef, Numeral and IntArith into unified theory
  2134 Int.  INCOMPATIBILITY.
  2135 
  2136 * Theory Library/Code_Index: type "index" now represents natural
  2137 numbers rather than integers.  INCOMPATIBILITY.
  2138 
  2139 * New class "uminus" with operation "uminus" (split of from class
  2140 "minus" which now only has operation "minus", binary).
  2141 INCOMPATIBILITY.
  2142 
  2143 * Constants "card", "internal_split", "option_map" now with authentic
  2144 syntax.  INCOMPATIBILITY.
  2145 
  2146 * Definitions subset_def, psubset_def, set_diff_def, Compl_def,
  2147 le_bool_def, less_bool_def, le_fun_def, less_fun_def, inf_bool_def,
  2148 sup_bool_def, Inf_bool_def, Sup_bool_def, inf_fun_def, sup_fun_def,
  2149 Inf_fun_def, Sup_fun_def, inf_set_def, sup_set_def, Inf_set_def,
  2150 Sup_set_def, le_def, less_def, option_map_def now with object
  2151 equality.  INCOMPATIBILITY.
  2152 
  2153 * Records. Removed K_record, and replaced it by pure lambda term
  2154 %x. c. The simplifier setup is now more robust against eta expansion.
  2155 INCOMPATIBILITY: in cases explicitly referring to K_record.
  2156 
  2157 * Library/Multiset: {#a, b, c#} abbreviates {#a#} + {#b#} + {#c#}.
  2158 
  2159 * Library/ListVector: new theory of arithmetic vector operations.
  2160 
  2161 * Library/Order_Relation: new theory of various orderings as sets of
  2162 pairs.  Defines preorders, partial orders, linear orders and
  2163 well-orders on sets and on types.
  2164 
  2165 
  2166 *** ZF ***
  2167 
  2168 * Renamed some theories to allow to loading both ZF and HOL in the
  2169 same session:
  2170 
  2171   Datatype  -> Datatype_ZF
  2172   Inductive -> Inductive_ZF
  2173   Int       -> Int_ZF
  2174   IntDiv    -> IntDiv_ZF
  2175   Nat       -> Nat_ZF
  2176   List      -> List_ZF
  2177   Main      -> Main_ZF
  2178 
  2179 INCOMPATIBILITY: ZF theories that import individual theories below
  2180 Main might need to be adapted.  Regular theory Main is still
  2181 available, as trivial extension of Main_ZF.
  2182 
  2183 
  2184 *** ML ***
  2185 
  2186 * ML within Isar: antiquotation @{const name} or @{const
  2187 name(typargs)} produces statically-checked Const term.
  2188 
  2189 * Functor NamedThmsFun: data is available to the user as dynamic fact
  2190 (of the same name).  Removed obsolete print command.
  2191 
  2192 * Removed obsolete "use_legacy_bindings" function.
  2193 
  2194 * The ``print mode'' is now a thread-local value derived from a global
  2195 template (the former print_mode reference), thus access becomes
  2196 non-critical.  The global print_mode reference is for session
  2197 management only; user-code should use print_mode_value,
  2198 print_mode_active, PrintMode.setmp etc.  INCOMPATIBILITY.
  2199 
  2200 * Functions system/system_out provide a robust way to invoke external
  2201 shell commands, with propagation of interrupts (requires Poly/ML
  2202 5.2.1).  Do not use OS.Process.system etc. from the basis library!
  2203 
  2204 
  2205 *** System ***
  2206 
  2207 * Default settings: PROOFGENERAL_OPTIONS no longer impose xemacs ---
  2208 in accordance with Proof General 3.7, which prefers GNU emacs.
  2209 
  2210 * isatool tty runs Isabelle process with plain tty interaction;
  2211 optional line editor may be specified via ISABELLE_LINE_EDITOR
  2212 setting, the default settings attempt to locate "ledit" and "rlwrap".
  2213 
  2214 * isatool browser now works with Cygwin as well, using general
  2215 "javapath" function defined in Isabelle process environment.
  2216 
  2217 * YXML notation provides a simple and efficient alternative to
  2218 standard XML transfer syntax.  See src/Pure/General/yxml.ML and
  2219 isatool yxml as described in the Isabelle system manual.
  2220 
  2221 * JVM class isabelle.IsabelleProcess (located in Isabelle/lib/classes)
  2222 provides general wrapper for managing an Isabelle process in a robust
  2223 fashion, with ``cooked'' output from stdin/stderr.
  2224 
  2225 * Rudimentary Isabelle plugin for jEdit (see Isabelle/lib/jedit),
  2226 based on Isabelle/JVM process wrapper (see Isabelle/lib/classes).
  2227 
  2228 * Removed obsolete THIS_IS_ISABELLE_BUILD feature.  NB: the documented
  2229 way of changing the user's settings is via
  2230 ISABELLE_HOME_USER/etc/settings, which is a fully featured bash
  2231 script.
  2232 
  2233 * Multithreading.max_threads := 0 refers to the number of actual CPU
  2234 cores of the underlying machine, which is a good starting point for
  2235 optimal performance tuning.  The corresponding usedir option -M allows
  2236 "max" as an alias for "0".  WARNING: does not work on certain versions
  2237 of Mac OS (with Poly/ML 5.1).
  2238 
  2239 * isabelle-process: non-ML sessions are run with "nice", to reduce the
  2240 adverse effect of Isabelle flooding interactive front-ends (notably
  2241 ProofGeneral / XEmacs).
  2242 
  2243 
  2244 
  2245 New in Isabelle2007 (November 2007)
  2246 -----------------------------------
  2247 
  2248 *** General ***
  2249 
  2250 * More uniform information about legacy features, notably a
  2251 warning/error of "Legacy feature: ...", depending on the state of the
  2252 tolerate_legacy_features flag (default true). FUTURE INCOMPATIBILITY:
  2253 legacy features will disappear eventually.
  2254 
  2255 * Theory syntax: the header format ``theory A = B + C:'' has been
  2256 discontinued in favour of ``theory A imports B C begin''.  Use isatool
  2257 fixheaders to convert existing theory files.  INCOMPATIBILITY.
  2258 
  2259 * Theory syntax: the old non-Isar theory file format has been
  2260 discontinued altogether.  Note that ML proof scripts may still be used
  2261 with Isar theories; migration is usually quite simple with the ML
  2262 function use_legacy_bindings.  INCOMPATIBILITY.
  2263 
  2264 * Theory syntax: some popular names (e.g. 'class', 'declaration',
  2265 'fun', 'help', 'if') are now keywords.  INCOMPATIBILITY, use double
  2266 quotes.
  2267 
  2268 * Theory loader: be more serious about observing the static theory
  2269 header specifications (including optional directories), but not the
  2270 accidental file locations of previously successful loads.  The strict
  2271 update policy of former update_thy is now already performed by
  2272 use_thy, so the former has been removed; use_thys updates several
  2273 theories simultaneously, just as 'imports' within a theory header
  2274 specification, but without merging the results.  Potential
  2275 INCOMPATIBILITY: may need to refine theory headers and commands
  2276 ROOT.ML which depend on load order.
  2277 
  2278 * Theory loader: optional support for content-based file
  2279 identification, instead of the traditional scheme of full physical
  2280 path plus date stamp; configured by the ISABELLE_FILE_IDENT setting
  2281 (cf. the system manual).  The new scheme allows to work with
  2282 non-finished theories in persistent session images, such that source
  2283 files may be moved later on without requiring reloads.
  2284 
  2285 * Theory loader: old-style ML proof scripts being *attached* to a thy
  2286 file (with the same base name as the theory) are considered a legacy
  2287 feature, which will disappear eventually. Even now, the theory loader
  2288 no longer maintains dependencies on such files.
  2289 
  2290 * Syntax: the scope for resolving ambiguities via type-inference is
  2291 now limited to individual terms, instead of whole simultaneous
  2292 specifications as before. This greatly reduces the complexity of the
  2293 syntax module and improves flexibility by separating parsing and
  2294 type-checking. INCOMPATIBILITY: additional type-constraints (explicit
  2295 'fixes' etc.) are required in rare situations.
  2296 
  2297 * Syntax: constants introduced by new-style packages ('definition',
  2298 'abbreviation' etc.) are passed through the syntax module in
  2299 ``authentic mode''. This means that associated mixfix annotations
  2300 really stick to such constants, independently of potential name space
  2301 ambiguities introduced later on. INCOMPATIBILITY: constants in parse
  2302 trees are represented slightly differently, may need to adapt syntax
  2303 translations accordingly. Use CONST marker in 'translations' and
  2304 @{const_syntax} antiquotation in 'parse_translation' etc.
  2305 
  2306 * Legacy goal package: reduced interface to the bare minimum required
  2307 to keep existing proof scripts running.  Most other user-level
  2308 functions are now part of the OldGoals structure, which is *not* open
  2309 by default (consider isatool expandshort before open OldGoals).
  2310 Removed top_sg, prin, printyp, pprint_term/typ altogether, because
  2311 these tend to cause confusion about the actual goal (!) context being
  2312 used here, which is not necessarily the same as the_context().
  2313 
  2314 * Command 'find_theorems': supports "*" wild-card in "name:"
  2315 criterion; "with_dups" option.  Certain ProofGeneral versions might
  2316 support a specific search form (see ProofGeneral/CHANGES).
  2317 
  2318 * The ``prems limit'' option (cf. ProofContext.prems_limit) is now -1
  2319 by default, which means that "prems" (and also "fixed variables") are
  2320 suppressed from proof state output.  Note that the ProofGeneral
  2321 settings mechanism allows to change and save options persistently, but
  2322 older versions of Isabelle will fail to start up if a negative prems
  2323 limit is imposed.
  2324 
  2325 * Local theory targets may be specified by non-nested blocks of
  2326 ``context/locale/class ... begin'' followed by ``end''.  The body may
  2327 contain definitions, theorems etc., including any derived mechanism
  2328 that has been implemented on top of these primitives.  This concept
  2329 generalizes the existing ``theorem (in ...)'' towards more versatility
  2330 and scalability.
  2331 
  2332 * Proof General interface: proper undo of final 'end' command;
  2333 discontinued Isabelle/classic mode (ML proof scripts).
  2334 
  2335 
  2336 *** Document preparation ***
  2337 
  2338 * Added antiquotation @{theory name} which prints the given name,
  2339 after checking that it refers to a valid ancestor theory in the
  2340 current context.
  2341 
  2342 * Added antiquotations @{ML_type text} and @{ML_struct text} which
  2343 check the given source text as ML type/structure, printing verbatim.
  2344 
  2345 * Added antiquotation @{abbrev "c args"} which prints the abbreviation
  2346 "c args == rhs" given in the current context.  (Any number of
  2347 arguments may be given on the LHS.)
  2348 
  2349 
  2350 *** Pure ***
  2351 
  2352 * The 'class' package offers a combination of axclass and locale to
  2353 achieve Haskell-like type classes in Isabelle.  Definitions and
  2354 theorems within a class context produce both relative results (with
  2355 implicit parameters according to the locale context), and polymorphic
  2356 constants with qualified polymorphism (according to the class
  2357 context).  Within the body context of a 'class' target, a separate
  2358 syntax layer ("user space type system") takes care of converting
  2359 between global polymorphic consts and internal locale representation.
  2360 See src/HOL/ex/Classpackage.thy for examples (as well as main HOL).
  2361 "isatool doc classes" provides a tutorial.
  2362 
  2363 * Generic code generator framework allows to generate executable
  2364 code for ML and Haskell (including Isabelle classes).  A short usage
  2365 sketch:
  2366 
  2367     internal compilation:
  2368         export_code <list of constants (term syntax)> in SML
  2369     writing SML code to a file:
  2370         export_code <list of constants (term syntax)> in SML <filename>
  2371     writing OCaml code to a file:
  2372         export_code <list of constants (term syntax)> in OCaml <filename>
  2373     writing Haskell code to a bunch of files:
  2374         export_code <list of constants (term syntax)> in Haskell <filename>
  2375 
  2376     evaluating closed propositions to True/False using code generation:
  2377         method ``eval''
  2378 
  2379 Reasonable default setup of framework in HOL.
  2380 
  2381 Theorem attributs for selecting and transforming function equations theorems:
  2382 
  2383     [code fun]:        select a theorem as function equation for a specific constant
  2384     [code fun del]:    deselect a theorem as function equation for a specific constant
  2385     [code inline]:     select an equation theorem for unfolding (inlining) in place
  2386     [code inline del]: deselect an equation theorem for unfolding (inlining) in place
  2387 
  2388 User-defined serializations (target in {SML, OCaml, Haskell}):
  2389 
  2390     code_const <and-list of constants (term syntax)>
  2391       {(target) <and-list of const target syntax>}+
  2392 
  2393     code_type <and-list of type constructors>
  2394       {(target) <and-list of type target syntax>}+
  2395 
  2396     code_instance <and-list of instances>
  2397       {(target)}+
  2398         where instance ::= <type constructor> :: <class>
  2399 
  2400     code_class <and_list of classes>
  2401       {(target) <and-list of class target syntax>}+
  2402         where class target syntax ::= <class name> {where {<classop> == <target syntax>}+}?
  2403 
  2404 code_instance and code_class only are effective to target Haskell.
  2405 
  2406 For example usage see src/HOL/ex/Codegenerator.thy and
  2407 src/HOL/ex/Codegenerator_Pretty.thy.  A separate tutorial on code
  2408 generation from Isabelle/HOL theories is available via "isatool doc
  2409 codegen".
  2410 
  2411 * Code generator: consts in 'consts_code' Isar commands are now
  2412 referred to by usual term syntax (including optional type
  2413 annotations).
  2414 
  2415 * Command 'no_translations' removes translation rules from theory
  2416 syntax.
  2417 
  2418 * Overloaded definitions are now actually checked for acyclic
  2419 dependencies.  The overloading scheme is slightly more general than
  2420 that of Haskell98, although Isabelle does not demand an exact
  2421 correspondence to type class and instance declarations.
  2422 INCOMPATIBILITY, use ``defs (unchecked overloaded)'' to admit more
  2423 exotic versions of overloading -- at the discretion of the user!
  2424 
  2425 Polymorphic constants are represented via type arguments, i.e. the
  2426 instantiation that matches an instance against the most general
  2427 declaration given in the signature.  For example, with the declaration
  2428 c :: 'a => 'a => 'a, an instance c :: nat => nat => nat is represented
  2429 as c(nat).  Overloading is essentially simultaneous structural
  2430 recursion over such type arguments.  Incomplete specification patterns
  2431 impose global constraints on all occurrences, e.g. c('a * 'a) on the
  2432 LHS means that more general c('a * 'b) will be disallowed on any RHS.
  2433 Command 'print_theory' outputs the normalized system of recursive
  2434 equations, see section "definitions".
  2435 
  2436 * Configuration options are maintained within the theory or proof
  2437 context (with name and type bool/int/string), providing a very simple
  2438 interface to a poor-man's version of general context data.  Tools may
  2439 declare options in ML (e.g. using Attrib.config_int) and then refer to
  2440 these values using Config.get etc.  Users may change options via an
  2441 associated attribute of the same name.  This form of context
  2442 declaration works particularly well with commands 'declare' or
  2443 'using', for example ``declare [[foo = 42]]''.  Thus it has become
  2444 very easy to avoid global references, which would not observe Isar
  2445 toplevel undo/redo and fail to work with multithreading.
  2446 
  2447 Various global ML references of Pure and HOL have been turned into
  2448 configuration options:
  2449 
  2450   Unify.search_bound		unify_search_bound
  2451   Unify.trace_bound		unify_trace_bound
  2452   Unify.trace_simp		unify_trace_simp
  2453   Unify.trace_types		unify_trace_types
  2454   Simplifier.simp_depth_limit	simp_depth_limit
  2455   Blast.depth_limit		blast_depth_limit
  2456   DatatypeProp.dtK		datatype_distinctness_limit
  2457   fast_arith_neq_limit  	fast_arith_neq_limit
  2458   fast_arith_split_limit	fast_arith_split_limit
  2459 
  2460 * Named collections of theorems may be easily installed as context
  2461 data using the functor NamedThmsFun (see also
  2462 src/Pure/Tools/named_thms.ML).  The user may add or delete facts via
  2463 attributes; there is also a toplevel print command.  This facility is
  2464 just a common case of general context data, which is the preferred way
  2465 for anything more complex than just a list of facts in canonical
  2466 order.
  2467 
  2468 * Isar: command 'declaration' augments a local theory by generic
  2469 declaration functions written in ML.  This enables arbitrary content
  2470 being added to the context, depending on a morphism that tells the
  2471 difference of the original declaration context wrt. the application
  2472 context encountered later on.
  2473 
  2474 * Isar: proper interfaces for simplification procedures.  Command
  2475 'simproc_setup' declares named simprocs (with match patterns, and body
  2476 text in ML).  Attribute "simproc" adds/deletes simprocs in the current
  2477 context.  ML antiquotation @{simproc name} retrieves named simprocs.
  2478 
  2479 * Isar: an extra pair of brackets around attribute declarations
  2480 abbreviates a theorem reference involving an internal dummy fact,
  2481 which will be ignored later --- only the effect of the attribute on
  2482 the background context will persist.  This form of in-place
  2483 declarations is particularly useful with commands like 'declare' and
  2484 'using', for example ``have A using [[simproc a]] by simp''.
  2485 
  2486 * Isar: method "assumption" (and implicit closing of subproofs) now
  2487 takes simple non-atomic goal assumptions into account: after applying
  2488 an assumption as a rule the resulting subgoals are solved by atomic
  2489 assumption steps.  This is particularly useful to finish 'obtain'
  2490 goals, such as "!!x. (!!x. P x ==> thesis) ==> P x ==> thesis",
  2491 without referring to the original premise "!!x. P x ==> thesis" in the
  2492 Isar proof context.  POTENTIAL INCOMPATIBILITY: method "assumption" is
  2493 more permissive.
  2494 
  2495 * Isar: implicit use of prems from the Isar proof context is
  2496 considered a legacy feature.  Common applications like ``have A .''
  2497 may be replaced by ``have A by fact'' or ``note `A`''.  In general,
  2498 referencing facts explicitly here improves readability and
  2499 maintainability of proof texts.
  2500 
  2501 * Isar: improper proof element 'guess' is like 'obtain', but derives
  2502 the obtained context from the course of reasoning!  For example:
  2503 
  2504   assume "EX x y. A x & B y"   -- "any previous fact"
  2505   then guess x and y by clarify
  2506 
  2507 This technique is potentially adventurous, depending on the facts and
  2508 proof tools being involved here.
  2509 
  2510 * Isar: known facts from the proof context may be specified as literal
  2511 propositions, using ASCII back-quote syntax.  This works wherever
  2512 named facts used to be allowed so far, in proof commands, proof
  2513 methods, attributes etc.  Literal facts are retrieved from the context
  2514 according to unification of type and term parameters.  For example,
  2515 provided that "A" and "A ==> B" and "!!x. P x ==> Q x" are known
  2516 theorems in the current context, then these are valid literal facts:
  2517 `A` and `A ==> B` and `!!x. P x ==> Q x" as well as `P a ==> Q a` etc.
  2518 
  2519 There is also a proof method "fact" which does the same composition
  2520 for explicit goal states, e.g. the following proof texts coincide with
  2521 certain special cases of literal facts:
  2522 
  2523   have "A" by fact                 ==  note `A`
  2524   have "A ==> B" by fact           ==  note `A ==> B`
  2525   have "!!x. P x ==> Q x" by fact  ==  note `!!x. P x ==> Q x`
  2526   have "P a ==> Q a" by fact       ==  note `P a ==> Q a`
  2527 
  2528 * Isar: ":" (colon) is no longer a symbolic identifier character in
  2529 outer syntax.  Thus symbolic identifiers may be used without
  2530 additional white space in declarations like this: ``assume *: A''.
  2531 
  2532 * Isar: 'print_facts' prints all local facts of the current context,
  2533 both named and unnamed ones.
  2534 
  2535 * Isar: 'def' now admits simultaneous definitions, e.g.:
  2536 
  2537   def x == "t" and y == "u"
  2538 
  2539 * Isar: added command 'unfolding', which is structurally similar to
  2540 'using', but affects both the goal state and facts by unfolding given
  2541 rewrite rules.  Thus many occurrences of the 'unfold' method or
  2542 'unfolded' attribute may be replaced by first-class proof text.
  2543 
  2544 * Isar: methods 'unfold' / 'fold', attributes 'unfolded' / 'folded',
  2545 and command 'unfolding' now all support object-level equalities
  2546 (potentially conditional).  The underlying notion of rewrite rule is
  2547 analogous to the 'rule_format' attribute, but *not* that of the
  2548 Simplifier (which is usually more generous).
  2549 
  2550 * Isar: the new attribute [rotated n] (default n = 1) rotates the
  2551 premises of a theorem by n. Useful in conjunction with drule.
  2552 
  2553 * Isar: the goal restriction operator [N] (default N = 1) evaluates a
  2554 method expression within a sandbox consisting of the first N
  2555 sub-goals, which need to exist.  For example, ``simp_all [3]''
  2556 simplifies the first three sub-goals, while (rule foo, simp_all)[]
  2557 simplifies all new goals that emerge from applying rule foo to the
  2558 originally first one.
  2559 
  2560 * Isar: schematic goals are no longer restricted to higher-order
  2561 patterns; e.g. ``lemma "?P(?x)" by (rule TrueI)'' now works as
  2562 expected.
  2563 
  2564 * Isar: the conclusion of a long theorem statement is now either
  2565 'shows' (a simultaneous conjunction, as before), or 'obtains'
  2566 (essentially a disjunction of cases with local parameters and
  2567 assumptions).  The latter allows to express general elimination rules
  2568 adequately; in this notation common elimination rules look like this:
  2569 
  2570   lemma exE:    -- "EX x. P x ==> (!!x. P x ==> thesis) ==> thesis"
  2571     assumes "EX x. P x"
  2572     obtains x where "P x"
  2573 
  2574   lemma conjE:  -- "A & B ==> (A ==> B ==> thesis) ==> thesis"
  2575     assumes "A & B"
  2576     obtains A and B
  2577 
  2578   lemma disjE:  -- "A | B ==> (A ==> thesis) ==> (B ==> thesis) ==> thesis"
  2579     assumes "A | B"
  2580     obtains
  2581       A
  2582     | B
  2583 
  2584 The subsequent classical rules even refer to the formal "thesis"
  2585 explicitly:
  2586 
  2587   lemma classical:     -- "(~ thesis ==> thesis) ==> thesis"
  2588     obtains "~ thesis"
  2589 
  2590   lemma Peirce's_Law:  -- "((thesis ==> something) ==> thesis) ==> thesis"
  2591     obtains "thesis ==> something"
  2592 
  2593 The actual proof of an 'obtains' statement is analogous to that of the
  2594 Isar proof element 'obtain', only that there may be several cases.
  2595 Optional case names may be specified in parentheses; these will be
  2596 available both in the present proof and as annotations in the
  2597 resulting rule, for later use with the 'cases' method (cf. attribute
  2598 case_names).
  2599 
  2600 * Isar: the assumptions of a long theorem statement are available as
  2601 "assms" fact in the proof context.  This is more appropriate than the
  2602 (historical) "prems", which refers to all assumptions of the current
  2603 context, including those from the target locale, proof body etc.
  2604 
  2605 * Isar: 'print_statement' prints theorems from the current theory or
  2606 proof context in long statement form, according to the syntax of a
  2607 top-level lemma.
  2608 
  2609 * Isar: 'obtain' takes an optional case name for the local context
  2610 introduction rule (default "that").
  2611 
  2612 * Isar: removed obsolete 'concl is' patterns.  INCOMPATIBILITY, use
  2613 explicit (is "_ ==> ?foo") in the rare cases where this still happens
  2614 to occur.
  2615 
  2616 * Pure: syntax "CONST name" produces a fully internalized constant
  2617 according to the current context.  This is particularly useful for
  2618 syntax translations that should refer to internal constant
  2619 representations independently of name spaces.
  2620 
  2621 * Pure: syntax constant for foo (binder "FOO ") is called "foo_binder"
  2622 instead of "FOO ". This allows multiple binder declarations to coexist
  2623 in the same context.  INCOMPATIBILITY.
  2624 
  2625 * Isar/locales: 'notation' provides a robust interface to the 'syntax'
  2626 primitive that also works in a locale context (both for constants and
  2627 fixed variables). Type declaration and internal syntactic representation
  2628 of given constants retrieved from the context. Likewise, the
  2629 'no_notation' command allows to remove given syntax annotations from the
  2630 current context.
  2631 
  2632 * Isar/locales: new derived specification elements 'axiomatization',
  2633 'definition', 'abbreviation', which support type-inference, admit
  2634 object-level specifications (equality, equivalence).  See also the
  2635 isar-ref manual.  Examples:
  2636 
  2637   axiomatization
  2638     eq  (infix "===" 50) where
  2639     eq_refl: "x === x" and eq_subst: "x === y ==> P x ==> P y"
  2640 
  2641   definition "f x y = x + y + 1"
  2642   definition g where "g x = f x x"
  2643 
  2644   abbreviation
  2645     neq  (infix "=!=" 50) where
  2646     "x =!= y == ~ (x === y)"
  2647 
  2648 These specifications may be also used in a locale context.  Then the
  2649 constants being introduced depend on certain fixed parameters, and the
  2650 constant name is qualified by the locale base name.  An internal
  2651 abbreviation takes care for convenient input and output, making the
  2652 parameters implicit and using the original short name.  See also
  2653 src/HOL/ex/Abstract_NAT.thy for an example of deriving polymorphic
  2654 entities from a monomorphic theory.
  2655 
  2656 Presently, abbreviations are only available 'in' a target locale, but
  2657 not inherited by general import expressions.  Also note that
  2658 'abbreviation' may be used as a type-safe replacement for 'syntax' +
  2659 'translations' in common applications.  The "no_abbrevs" print mode
  2660 prevents folding of abbreviations in term output.
  2661 
  2662 Concrete syntax is attached to specified constants in internal form,
  2663 independently of name spaces.  The parse tree representation is
  2664 slightly different -- use 'notation' instead of raw 'syntax', and
  2665 'translations' with explicit "CONST" markup to accommodate this.
  2666 
  2667 * Pure/Isar: unified syntax for new-style specification mechanisms
  2668 (e.g.  'definition', 'abbreviation', or 'inductive' in HOL) admits
  2669 full type inference and dummy patterns ("_").  For example:
  2670 
  2671   definition "K x _ = x"
  2672 
  2673   inductive conj for A B
  2674   where "A ==> B ==> conj A B"
  2675 
  2676 * Pure: command 'print_abbrevs' prints all constant abbreviations of
  2677 the current context.  Print mode "no_abbrevs" prevents inversion of
  2678 abbreviations on output.
  2679 
  2680 * Isar/locales: improved parameter handling: use of locales "var" and
  2681 "struct" no longer necessary; - parameter renamings are no longer
  2682 required to be injective.  For example, this allows to define
  2683 endomorphisms as locale endom = homom mult mult h.
  2684 
  2685 * Isar/locales: changed the way locales with predicates are defined.
  2686 Instead of accumulating the specification, the imported expression is
  2687 now an interpretation.  INCOMPATIBILITY: different normal form of
  2688 locale expressions.  In particular, in interpretations of locales with
  2689 predicates, goals repesenting already interpreted fragments are not
  2690 removed automatically.  Use methods `intro_locales' and
  2691 `unfold_locales'; see below.
  2692 
  2693 * Isar/locales: new methods `intro_locales' and `unfold_locales'
  2694 provide backward reasoning on locales predicates.  The methods are
  2695 aware of interpretations and discharge corresponding goals.
  2696 `intro_locales' is less aggressive then `unfold_locales' and does not
  2697 unfold predicates to assumptions.
  2698 
  2699 * Isar/locales: the order in which locale fragments are accumulated
  2700 has changed.  This enables to override declarations from fragments due
  2701 to interpretations -- for example, unwanted simp rules.
  2702 
  2703 * Isar/locales: interpretation in theories and proof contexts has been
  2704 extended.  One may now specify (and prove) equations, which are
  2705 unfolded in interpreted theorems.  This is useful for replacing
  2706 defined concepts (constants depending on locale parameters) by
  2707 concepts already existing in the target context.  Example:
  2708 
  2709   interpretation partial_order ["op <= :: [int, int] => bool"]
  2710     where "partial_order.less (op <=) (x::int) y = (x < y)"
  2711 
  2712 Typically, the constant `partial_order.less' is created by a
  2713 definition specification element in the context of locale
  2714 partial_order.
  2715 
  2716 * Method "induct": improved internal context management to support
  2717 local fixes and defines on-the-fly. Thus explicit meta-level
  2718 connectives !!  and ==> are rarely required anymore in inductive goals
  2719 (using object-logic connectives for this purpose has been long
  2720 obsolete anyway). Common proof patterns are explained in
  2721 src/HOL/Induct/Common_Patterns.thy, see also
  2722 src/HOL/Isar_examples/Puzzle.thy and src/HOL/Lambda for realistic
  2723 examples.
  2724 
  2725 * Method "induct": improved handling of simultaneous goals. Instead of
  2726 introducing object-level conjunction, the statement is now split into
  2727 several conclusions, while the corresponding symbolic cases are nested
  2728 accordingly. INCOMPATIBILITY, proofs need to be structured explicitly,
  2729 see src/HOL/Induct/Common_Patterns.thy, for example.
  2730 
  2731 * Method "induct": mutual induction rules are now specified as a list
  2732 of rule sharing the same induction cases. HOL packages usually provide
  2733 foo_bar.inducts for mutually defined items foo and bar (e.g. inductive
  2734 predicates/sets or datatypes). INCOMPATIBILITY, users need to specify
  2735 mutual induction rules differently, i.e. like this:
  2736 
  2737   (induct rule: foo_bar.inducts)
  2738   (induct set: foo bar)
  2739   (induct pred: foo bar)
  2740   (induct type: foo bar)
  2741 
  2742 The ML function ProjectRule.projections turns old-style rules into the
  2743 new format.
  2744 
  2745 * Method "coinduct": dual of induction, see
  2746 src/HOL/Library/Coinductive_List.thy for various examples.
  2747 
  2748 * Method "cases", "induct", "coinduct": the ``(open)'' option is
  2749 considered a legacy feature.
  2750 
  2751 * Attribute "symmetric" produces result with standardized schematic
  2752 variables (index 0).  Potential INCOMPATIBILITY.
  2753 
  2754 * Simplifier: by default the simplifier trace only shows top level
  2755 rewrites now. That is, trace_simp_depth_limit is set to 1 by
  2756 default. Thus there is less danger of being flooded by the trace. The
  2757 trace indicates where parts have been suppressed.
  2758   
  2759 * Provers/classical: removed obsolete classical version of elim_format
  2760 attribute; classical elim/dest rules are now treated uniformly when
  2761 manipulating the claset.
  2762 
  2763 * Provers/classical: stricter checks to ensure that supplied intro,
  2764 dest and elim rules are well-formed; dest and elim rules must have at
  2765 least one premise.
  2766 
  2767 * Provers/classical: attributes dest/elim/intro take an optional
  2768 weight argument for the rule (just as the Pure versions).  Weights are
  2769 ignored by automated tools, but determine the search order of single
  2770 rule steps.
  2771 
  2772 * Syntax: input syntax now supports dummy variable binding "%_. b",
  2773 where the body does not mention the bound variable.  Note that dummy
  2774 patterns implicitly depend on their context of bounds, which makes
  2775 "{_. _}" match any set comprehension as expected.  Potential
  2776 INCOMPATIBILITY -- parse translations need to cope with syntactic
  2777 constant "_idtdummy" in the binding position.
  2778 
  2779 * Syntax: removed obsolete syntactic constant "_K" and its associated
  2780 parse translation.  INCOMPATIBILITY -- use dummy abstraction instead,
  2781 for example "A -> B" => "Pi A (%_. B)".
  2782 
  2783 * Pure: 'class_deps' command visualizes the subclass relation, using
  2784 the graph browser tool.
  2785 
  2786 * Pure: 'print_theory' now suppresses certain internal declarations by
  2787 default; use '!' option for full details.
  2788 
  2789 
  2790 *** HOL ***
  2791 
  2792 * Method "metis" proves goals by applying the Metis general-purpose
  2793 resolution prover (see also http://gilith.com/software/metis/).
  2794 Examples are in the directory MetisExamples.  WARNING: the
  2795 Isabelle/HOL-Metis integration does not yet work properly with
  2796 multi-threading.
  2797   
  2798 * Command 'sledgehammer' invokes external automatic theorem provers as
  2799 background processes.  It generates calls to the "metis" method if
  2800 successful. These can be pasted into the proof.  Users do not have to
  2801 wait for the automatic provers to return.  WARNING: does not really
  2802 work with multi-threading.
  2803 
  2804 * New "auto_quickcheck" feature tests outermost goal statements for
  2805 potential counter-examples.  Controlled by ML references
  2806 auto_quickcheck (default true) and auto_quickcheck_time_limit (default
  2807 5000 milliseconds).  Fails silently if statements is outside of
  2808 executable fragment, or any other codgenerator problem occurs.
  2809 
  2810 * New constant "undefined" with axiom "undefined x = undefined".
  2811 
  2812 * Added class "HOL.eq", allowing for code generation with polymorphic
  2813 equality.
  2814 
  2815 * Some renaming of class constants due to canonical name prefixing in
  2816 the new 'class' package:
  2817 
  2818     HOL.abs ~> HOL.abs_class.abs
  2819     HOL.divide ~> HOL.divide_class.divide
  2820     0 ~> HOL.zero_class.zero
  2821     1 ~> HOL.one_class.one
  2822     op + ~> HOL.plus_class.plus
  2823     op - ~> HOL.minus_class.minus
  2824     uminus ~> HOL.minus_class.uminus
  2825     op * ~> HOL.times_class.times
  2826     op < ~> HOL.ord_class.less
  2827     op <= > HOL.ord_class.less_eq
  2828     Nat.power ~> Power.power_class.power
  2829     Nat.size ~> Nat.size_class.size
  2830     Numeral.number_of ~> Numeral.number_class.number_of
  2831     FixedPoint.Inf ~> Lattices.complete_lattice_class.Inf
  2832     FixedPoint.Sup ~> Lattices.complete_lattice_class.Sup
  2833     Orderings.min ~> Orderings.ord_class.min
  2834     Orderings.max ~> Orderings.ord_class.max
  2835     Divides.op div ~> Divides.div_class.div
  2836     Divides.op mod ~> Divides.div_class.mod
  2837     Divides.op dvd ~> Divides.div_class.dvd
  2838 
  2839 INCOMPATIBILITY.  Adaptions may be required in the following cases:
  2840 
  2841 a) User-defined constants using any of the names "plus", "minus",
  2842 "times", "less" or "less_eq". The standard syntax translations for
  2843 "+", "-" and "*" may go wrong.  INCOMPATIBILITY: use more specific
  2844 names.
  2845 
  2846 b) Variables named "plus", "minus", "times", "less", "less_eq"
  2847 INCOMPATIBILITY: use more specific names.
  2848 
  2849 c) Permutative equations (e.g. "a + b = b + a")
  2850 Since the change of names also changes the order of terms, permutative
  2851 rewrite rules may get applied in a different order. Experience shows
  2852 that this is rarely the case (only two adaptions in the whole Isabelle
  2853 distribution).  INCOMPATIBILITY: rewrite proofs
  2854 
  2855 d) ML code directly refering to constant names
  2856 This in general only affects hand-written proof tactics, simprocs and
  2857 so on.  INCOMPATIBILITY: grep your sourcecode and replace names.
  2858 Consider using @{const_name} antiquotation.
  2859 
  2860 * New class "default" with associated constant "default".
  2861 
  2862 * Function "sgn" is now overloaded and available on int, real, complex
  2863 (and other numeric types), using class "sgn".  Two possible defs of
  2864 sgn are given as equational assumptions in the classes sgn_if and
  2865 sgn_div_norm; ordered_idom now also inherits from sgn_if.
  2866 INCOMPATIBILITY.
  2867 
  2868 * Locale "partial_order" now unified with class "order" (cf. theory
  2869 Orderings), added parameter "less".  INCOMPATIBILITY.
  2870 
  2871 * Renamings in classes "order" and "linorder": facts "refl", "trans" and
  2872 "cases" to "order_refl", "order_trans" and "linorder_cases", to avoid
  2873 clashes with HOL "refl" and "trans".  INCOMPATIBILITY.
  2874 
  2875 * Classes "order" and "linorder": potential INCOMPATIBILITY due to
  2876 changed order of proof goals in instance proofs.
  2877 
  2878 * The transitivity reasoner for partial and linear orders is set up
  2879 for classes "order" and "linorder".  Instances of the reasoner are available
  2880 in all contexts importing or interpreting the corresponding locales.
  2881 Method "order" invokes the reasoner separately; the reasoner
  2882 is also integrated with the Simplifier as a solver.  Diagnostic
  2883 command 'print_orders' shows the available instances of the reasoner
  2884 in the current context.
  2885 
  2886 * Localized monotonicity predicate in theory "Orderings"; integrated
  2887 lemmas max_of_mono and min_of_mono with this predicate.
  2888 INCOMPATIBILITY.
  2889 
  2890 * Formulation of theorem "dense" changed slightly due to integration
  2891 with new class dense_linear_order.
  2892 
  2893 * Uniform lattice theory development in HOL.
  2894 
  2895     constants "meet" and "join" now named "inf" and "sup"
  2896     constant "Meet" now named "Inf"
  2897 
  2898     classes "meet_semilorder" and "join_semilorder" now named
  2899       "lower_semilattice" and "upper_semilattice"
  2900     class "lorder" now named "lattice"
  2901     class "comp_lat" now named "complete_lattice"
  2902 
  2903     Instantiation of lattice classes allows explicit definitions
  2904     for "inf" and "sup" operations (or "Inf" and "Sup" for complete lattices).
  2905 
  2906   INCOMPATIBILITY.  Theorem renames:
  2907 
  2908     meet_left_le            ~> inf_le1
  2909     meet_right_le           ~> inf_le2
  2910     join_left_le            ~> sup_ge1
  2911     join_right_le           ~> sup_ge2
  2912     meet_join_le            ~> inf_sup_ord
  2913     le_meetI                ~> le_infI
  2914     join_leI                ~> le_supI
  2915     le_meet                 ~> le_inf_iff
  2916     le_join                 ~> ge_sup_conv
  2917     meet_idempotent         ~> inf_idem
  2918     join_idempotent         ~> sup_idem
  2919     meet_comm               ~> inf_commute
  2920     join_comm               ~> sup_commute
  2921     meet_leI1               ~> le_infI1
  2922     meet_leI2               ~> le_infI2
  2923     le_joinI1               ~> le_supI1
  2924     le_joinI2               ~> le_supI2
  2925     meet_assoc              ~> inf_assoc
  2926     join_assoc              ~> sup_assoc
  2927     meet_left_comm          ~> inf_left_commute
  2928     meet_left_idempotent    ~> inf_left_idem
  2929     join_left_comm          ~> sup_left_commute
  2930     join_left_idempotent    ~> sup_left_idem
  2931     meet_aci                ~> inf_aci
  2932     join_aci                ~> sup_aci
  2933     le_def_meet             ~> le_iff_inf
  2934     le_def_join             ~> le_iff_sup
  2935     join_absorp2            ~> sup_absorb2
  2936     join_absorp1            ~> sup_absorb1
  2937     meet_absorp1            ~> inf_absorb1
  2938     meet_absorp2            ~> inf_absorb2
  2939     meet_join_absorp        ~> inf_sup_absorb
  2940     join_meet_absorp        ~> sup_inf_absorb
  2941     distrib_join_le         ~> distrib_sup_le
  2942     distrib_meet_le         ~> distrib_inf_le
  2943 
  2944     add_meet_distrib_left   ~> add_inf_distrib_left
  2945     add_join_distrib_left   ~> add_sup_distrib_left
  2946     is_join_neg_meet        ~> is_join_neg_inf
  2947     is_meet_neg_join        ~> is_meet_neg_sup
  2948     add_meet_distrib_right  ~> add_inf_distrib_right
  2949     add_join_distrib_right  ~> add_sup_distrib_right
  2950     add_meet_join_distribs  ~> add_sup_inf_distribs
  2951     join_eq_neg_meet        ~> sup_eq_neg_inf
  2952     meet_eq_neg_join        ~> inf_eq_neg_sup
  2953     add_eq_meet_join        ~> add_eq_inf_sup
  2954     meet_0_imp_0            ~> inf_0_imp_0
  2955     join_0_imp_0            ~> sup_0_imp_0
  2956     meet_0_eq_0             ~> inf_0_eq_0
  2957     join_0_eq_0             ~> sup_0_eq_0
  2958     neg_meet_eq_join        ~> neg_inf_eq_sup
  2959     neg_join_eq_meet        ~> neg_sup_eq_inf
  2960     join_eq_if              ~> sup_eq_if
  2961 
  2962     mono_meet               ~> mono_inf
  2963     mono_join               ~> mono_sup
  2964     meet_bool_eq            ~> inf_bool_eq
  2965     join_bool_eq            ~> sup_bool_eq
  2966     meet_fun_eq             ~> inf_fun_eq
  2967     join_fun_eq             ~> sup_fun_eq
  2968     meet_set_eq             ~> inf_set_eq
  2969     join_set_eq             ~> sup_set_eq
  2970     meet1_iff               ~> inf1_iff
  2971     meet2_iff               ~> inf2_iff
  2972     meet1I                  ~> inf1I
  2973     meet2I                  ~> inf2I
  2974     meet1D1                 ~> inf1D1
  2975     meet2D1                 ~> inf2D1
  2976     meet1D2                 ~> inf1D2
  2977     meet2D2                 ~> inf2D2
  2978     meet1E                  ~> inf1E
  2979     meet2E                  ~> inf2E
  2980     join1_iff               ~> sup1_iff
  2981     join2_iff               ~> sup2_iff
  2982     join1I1                 ~> sup1I1
  2983     join2I1                 ~> sup2I1
  2984     join1I1                 ~> sup1I1
  2985     join2I2                 ~> sup1I2
  2986     join1CI                 ~> sup1CI
  2987     join2CI                 ~> sup2CI
  2988     join1E                  ~> sup1E
  2989     join2E                  ~> sup2E
  2990 
  2991     is_meet_Meet            ~> is_meet_Inf
  2992     Meet_bool_def           ~> Inf_bool_def
  2993     Meet_fun_def            ~> Inf_fun_def
  2994     Meet_greatest           ~> Inf_greatest
  2995     Meet_lower              ~> Inf_lower
  2996     Meet_set_def            ~> Inf_set_def
  2997 
  2998     Sup_def                 ~> Sup_Inf
  2999     Sup_bool_eq             ~> Sup_bool_def
  3000     Sup_fun_eq              ~> Sup_fun_def
  3001     Sup_set_eq              ~> Sup_set_def
  3002 
  3003     listsp_meetI            ~> listsp_infI
  3004     listsp_meet_eq          ~> listsp_inf_eq
  3005 
  3006     meet_min                ~> inf_min
  3007     join_max                ~> sup_max
  3008 
  3009 * Added syntactic class "size"; overloaded constant "size" now has
  3010 type "'a::size ==> bool"
  3011 
  3012 * Internal reorganisation of `size' of datatypes: size theorems
  3013 "foo.size" are no longer subsumed by "foo.simps" (but are still
  3014 simplification rules by default!); theorems "prod.size" now named
  3015 "*.size".
  3016 
  3017 * Class "div" now inherits from class "times" rather than "type".
  3018 INCOMPATIBILITY.
  3019 
  3020 * HOL/Finite_Set: "name-space" locales Lattice, Distrib_lattice,
  3021 Linorder etc.  have disappeared; operations defined in terms of
  3022 fold_set now are named Inf_fin, Sup_fin.  INCOMPATIBILITY.
  3023 
  3024 * HOL/Nat: neq0_conv no longer declared as iff.  INCOMPATIBILITY.
  3025 
  3026 * HOL-Word: New extensive library and type for generic, fixed size
  3027 machine words, with arithemtic, bit-wise, shifting and rotating
  3028 operations, reflection into int, nat, and bool lists, automation for
  3029 linear arithmetic (by automatic reflection into nat or int), including
  3030 lemmas on overflow and monotonicity.  Instantiated to all appropriate
  3031 arithmetic type classes, supporting automatic simplification of
  3032 numerals on all operations.
  3033 
  3034 * Library/Boolean_Algebra: locales for abstract boolean algebras.
  3035 
  3036 * Library/Numeral_Type: numbers as types, e.g. TYPE(32).
  3037 
  3038 * Code generator library theories:
  3039   - Code_Integer represents HOL integers by big integer literals in target
  3040     languages.
  3041   - Code_Char represents HOL characters by character literals in target
  3042     languages.
  3043   - Code_Char_chr like Code_Char, but also offers treatment of character
  3044     codes; includes Code_Integer.
  3045   - Executable_Set allows to generate code for finite sets using lists.
  3046   - Executable_Rat implements rational numbers as triples (sign, enumerator,
  3047     denominator).
  3048   - Executable_Real implements a subset of real numbers, namly those
  3049     representable by rational numbers.
  3050   - Efficient_Nat implements natural numbers by integers, which in general will
  3051     result in higher efficency; pattern matching with 0/Suc is eliminated;
  3052     includes Code_Integer.
  3053   - Code_Index provides an additional datatype index which is mapped to
  3054     target-language built-in integers.
  3055   - Code_Message provides an additional datatype message_string which is isomorphic to
  3056     strings; messages are mapped to target-language strings.
  3057 
  3058 * New package for inductive predicates
  3059 
  3060   An n-ary predicate p with m parameters z_1, ..., z_m can now be defined via
  3061 
  3062     inductive
  3063       p :: "U_1 => ... => U_m => T_1 => ... => T_n => bool"
  3064       for z_1 :: U_1 and ... and z_n :: U_m
  3065     where
  3066       rule_1: "... ==> p z_1 ... z_m t_1_1 ... t_1_n"
  3067     | ...
  3068 
  3069   with full support for type-inference, rather than
  3070 
  3071     consts s :: "U_1 => ... => U_m => (T_1 * ... * T_n) set"
  3072 
  3073     abbreviation p :: "U_1 => ... => U_m => T_1 => ... => T_n => bool"
  3074     where "p z_1 ... z_m x_1 ... x_n == (x_1, ..., x_n) : s z_1 ... z_m"
  3075 
  3076     inductive "s z_1 ... z_m"
  3077     intros
  3078       rule_1: "... ==> (t_1_1, ..., t_1_n) : s z_1 ... z_m"
  3079       ...
  3080 
  3081   For backward compatibility, there is a wrapper allowing inductive
  3082   sets to be defined with the new package via
  3083 
  3084     inductive_set
  3085       s :: "U_1 => ... => U_m => (T_1 * ... * T_n) set"
  3086       for z_1 :: U_1 and ... and z_n :: U_m
  3087     where
  3088       rule_1: "... ==> (t_1_1, ..., t_1_n) : s z_1 ... z_m"
  3089     | ...
  3090 
  3091   or
  3092 
  3093     inductive_set
  3094       s :: "U_1 => ... => U_m => (T_1 * ... * T_n) set"
  3095       and p :: "U_1 => ... => U_m => T_1 => ... => T_n => bool"
  3096       for z_1 :: U_1 and ... and z_n :: U_m
  3097     where
  3098       "p z_1 ... z_m x_1 ... x_n == (x_1, ..., x_n) : s z_1 ... z_m"
  3099     | rule_1: "... ==> p z_1 ... z_m t_1_1 ... t_1_n"
  3100     | ...
  3101 
  3102   if the additional syntax "p ..." is required.
  3103 
  3104   Numerous examples can be found in the subdirectories src/HOL/Auth,
  3105   src/HOL/Bali, src/HOL/Induct, and src/HOL/MicroJava.
  3106 
  3107   INCOMPATIBILITIES:
  3108 
  3109   - Since declaration and definition of inductive sets or predicates
  3110     is no longer separated, abbreviations involving the newly
  3111     introduced sets or predicates must be specified together with the
  3112     introduction rules after the 'where' keyword (see above), rather
  3113     than before the actual inductive definition.
  3114 
  3115   - The variables in induction and elimination rules are now
  3116     quantified in the order of their occurrence in the introduction
  3117     rules, rather than in alphabetical order. Since this may break
  3118     some proofs, these proofs either have to be repaired, e.g. by
  3119     reordering the variables a_i_1 ... a_i_{k_i} in Isar 'case'
  3120     statements of the form
  3121 
  3122       case (rule_i a_i_1 ... a_i_{k_i})
  3123 
  3124     or the old order of quantification has to be restored by explicitly adding
  3125     meta-level quantifiers in the introduction rules, i.e.
  3126 
  3127       | rule_i: "!!a_i_1 ... a_i_{k_i}. ... ==> p z_1 ... z_m t_i_1 ... t_i_n"
  3128 
  3129   - The format of the elimination rules is now
  3130 
  3131       p z_1 ... z_m x_1 ... x_n ==>
  3132         (!!a_1_1 ... a_1_{k_1}. x_1 = t_1_1 ==> ... ==> x_n = t_1_n ==> ... ==> P)
  3133         ==> ... ==> P
  3134 
  3135     for predicates and
  3136 
  3137       (x_1, ..., x_n) : s z_1 ... z_m ==>
  3138         (!!a_1_1 ... a_1_{k_1}. x_1 = t_1_1 ==> ... ==> x_n = t_1_n ==> ... ==> P)
  3139         ==> ... ==> P
  3140 
  3141     for sets rather than
  3142 
  3143       x : s z_1 ... z_m ==>
  3144         (!!a_1_1 ... a_1_{k_1}. x = (t_1_1, ..., t_1_n) ==> ... ==> P)
  3145         ==> ... ==> P
  3146 
  3147     This may require terms in goals to be expanded to n-tuples
  3148     (e.g. using case_tac or simplification with the split_paired_all
  3149     rule) before the above elimination rule is applicable.
  3150 
  3151   - The elimination or case analysis rules for (mutually) inductive
  3152     sets or predicates are now called "p_1.cases" ... "p_k.cases". The
  3153     list of rules "p_1_..._p_k.elims" is no longer available.
  3154 
  3155 * New package "function"/"fun" for general recursive functions,
  3156 supporting mutual and nested recursion, definitions in local contexts,
  3157 more general pattern matching and partiality. See HOL/ex/Fundefs.thy
  3158 for small examples, and the separate tutorial on the function
  3159 package. The old recdef "package" is still available as before, but
  3160 users are encouraged to use the new package.
  3161 
  3162 * Method "lexicographic_order" automatically synthesizes termination
  3163 relations as lexicographic combinations of size measures. 
  3164 
  3165 * Case-expressions allow arbitrary constructor-patterns (including
  3166 "_") and take their order into account, like in functional
  3167 programming.  Internally, this is translated into nested
  3168 case-expressions; missing cases are added and mapped to the predefined
  3169 constant "undefined". In complicated cases printing may no longer show
  3170 the original input but the internal form. Lambda-abstractions allow
  3171 the same form of pattern matching: "% pat1 => e1 | ..." is an
  3172 abbreviation for "%x. case x of pat1 => e1 | ..." where x is a new
  3173 variable.
  3174 
  3175 * IntDef: The constant "int :: nat => int" has been removed; now "int"
  3176 is an abbreviation for "of_nat :: nat => int". The simplification
  3177 rules for "of_nat" have been changed to work like "int" did
  3178 previously.  Potential INCOMPATIBILITY:
  3179   - "of_nat (Suc m)" simplifies to "1 + of_nat m" instead of "of_nat m + 1"
  3180   - of_nat_diff and of_nat_mult are no longer default simp rules
  3181 
  3182 * Method "algebra" solves polynomial equations over (semi)rings using
  3183 Groebner bases. The (semi)ring structure is defined by locales and the
  3184 tool setup depends on that generic context. Installing the method for
  3185 a specific type involves instantiating the locale and possibly adding
  3186 declarations for computation on the coefficients.  The method is
  3187 already instantiated for natural numbers and for the axiomatic class
  3188 of idoms with numerals.  See also the paper by Chaieb and Wenzel at
  3189 CALCULEMUS 2007 for the general principles underlying this
  3190 architecture of context-aware proof-tools.
  3191 
  3192 * Method "ferrack" implements quantifier elimination over
  3193 special-purpose dense linear orders using locales (analogous to
  3194 "algebra"). The method is already installed for class
  3195 {ordered_field,recpower,number_ring} which subsumes real, hyperreal,
  3196 rat, etc.
  3197 
  3198 * Former constant "List.op @" now named "List.append".  Use ML
  3199 antiquotations @{const_name List.append} or @{term " ... @ ... "} to
  3200 circumvent possible incompatibilities when working on ML level.
  3201 
  3202 * primrec: missing cases mapped to "undefined" instead of "arbitrary".
  3203 
  3204 * New function listsum :: 'a list => 'a for arbitrary monoids.
  3205 Special syntax: "SUM x <- xs. f x" (and latex variants)
  3206 
  3207 * New syntax for Haskell-like list comprehension (input only), eg.
  3208 [(x,y). x <- xs, y <- ys, x ~= y], see also src/HOL/List.thy.
  3209 
  3210 * The special syntax for function "filter" has changed from [x :
  3211 xs. P] to [x <- xs. P] to avoid an ambiguity caused by list
  3212 comprehension syntax, and for uniformity.  INCOMPATIBILITY.
  3213 
  3214 * [a..b] is now defined for arbitrary linear orders.  It used to be
  3215 defined on nat only, as an abbreviation for [a..<Suc b]
  3216 INCOMPATIBILITY.
  3217 
  3218 * Renamed lemma "set_take_whileD"  to "set_takeWhileD".
  3219 
  3220 * New functions "sorted" and "sort" in src/HOL/List.thy.
  3221 
  3222 * New lemma collection field_simps (an extension of ring_simps) for
  3223 manipulating (in)equations involving division. Multiplies with all
  3224 denominators that can be proved to be non-zero (in equations) or
  3225 positive/negative (in inequations).
  3226 
  3227 * Lemma collections ring_eq_simps, group_eq_simps and ring_distrib
  3228 have been improved and renamed to ring_simps, group_simps and
  3229 ring_distribs.  Removed lemmas field_xyz in theory Ring_and_Field
  3230 because they were subsumed by lemmas xyz.  INCOMPATIBILITY.
  3231 
  3232 * Theory Library/Commutative_Ring: switched from recdef to function
  3233 package; constants add, mul, pow now curried.  Infix syntax for
  3234 algebraic operations.
  3235 
  3236 * Dropped redundant lemma def_imp_eq in favor of meta_eq_to_obj_eq.
  3237 INCOMPATIBILITY.
  3238 
  3239 * Dropped redundant lemma if_def2 in favor of if_bool_eq_conj.
  3240 INCOMPATIBILITY.
  3241 
  3242 * HOL/records: generalised field-update to take a function on the
  3243 field rather than the new value: r(|A := x|) is translated to A_update
  3244 (K x) r The K-combinator that is internally used is called K_record.
  3245 INCOMPATIBILITY: Usage of the plain update functions has to be
  3246 adapted.
  3247  
  3248 * Class "semiring_0" now contains annihilation axioms x * 0 = 0 and 0
  3249 * x = 0, which are required for a semiring.  Richer structures do not
  3250 inherit from semiring_0 anymore, because this property is a theorem
  3251 there, not an axiom.  INCOMPATIBILITY: In instances of semiring_0,
  3252 there is more to prove, but this is mostly trivial.
  3253 
  3254 * Class "recpower" is generalized to arbitrary monoids, not just
  3255 commutative semirings.  INCOMPATIBILITY: may need to incorporate
  3256 commutativity or semiring properties additionally.
  3257 
  3258 * Constant "List.list_all2" in List.thy now uses authentic syntax.
  3259 INCOMPATIBILITY: translations containing list_all2 may go wrong,
  3260 better use 'abbreviation'.
  3261 
  3262 * Renamed constant "List.op mem" to "List.member".  INCOMPATIBILITY.
  3263 
  3264 * Numeral syntax: type 'bin' which was a mere type copy of 'int' has
  3265 been abandoned in favour of plain 'int'.  INCOMPATIBILITY --
  3266 significant changes for setting up numeral syntax for types:
  3267   - New constants Numeral.pred and Numeral.succ instead
  3268       of former Numeral.bin_pred and Numeral.bin_succ.
  3269   - Use integer operations instead of bin_add, bin_mult and so on.
  3270   - Numeral simplification theorems named Numeral.numeral_simps instead of Bin_simps.
  3271   - ML structure Bin_Simprocs now named Int_Numeral_Base_Simprocs.
  3272 
  3273 See src/HOL/Integ/IntArith.thy for an example setup.
  3274 
  3275 * Command 'normal_form' computes the normal form of a term that may
  3276 contain free variables.  For example ``normal_form "rev [a, b, c]"''
  3277 produces ``[b, c, a]'' (without proof).  This command is suitable for
  3278 heavy-duty computations because the functions are compiled to ML
  3279 first.  Correspondingly, a method "normalization" is provided.  See
  3280 further src/HOL/ex/NormalForm.thy and src/Tools/nbe.ML.
  3281 
  3282 * Alternative iff syntax "A <-> B" for equality on bool (with priority
  3283 25 like -->); output depends on the "iff" print_mode, the default is
  3284 "A = B" (with priority 50).
  3285 
  3286 * Relations less (<) and less_eq (<=) are also available on type bool.
  3287 Modified syntax to disallow nesting without explicit parentheses,
  3288 e.g. "(x < y) < z" or "x < (y < z)", but NOT "x < y < z".  Potential
  3289 INCOMPATIBILITY.
  3290 
  3291 * "LEAST x:A. P" expands to "LEAST x. x:A & P" (input only).
  3292 
  3293 * Relation composition operator "op O" now has precedence 75 and binds
  3294 stronger than union and intersection. INCOMPATIBILITY.
  3295 
  3296 * The old set interval syntax "{m..n(}" (and relatives) has been
  3297 removed.  Use "{m..<n}" (and relatives) instead.
  3298 
  3299 * In the context of the assumption "~(s = t)" the Simplifier rewrites
  3300 "t = s" to False (by simproc "neq").  INCOMPATIBILITY, consider using
  3301 ``declare [[simproc del: neq]]''.
  3302 
  3303 * Simplifier: "m dvd n" where m and n are numbers is evaluated to
  3304 True/False.
  3305 
  3306 * Theorem Cons_eq_map_conv no longer declared as "simp".
  3307 
  3308 * Theorem setsum_mult renamed to setsum_right_distrib.
  3309 
  3310 * Prefer ex1I over ex_ex1I in single-step reasoning, e.g. by the
  3311 ``rule'' method.
  3312 
  3313 * Reimplemented methods "sat" and "satx", with several improvements:
  3314 goals no longer need to be stated as "<prems> ==> False", equivalences
  3315 (i.e. "=" on type bool) are handled, variable names of the form
  3316 "lit_<n>" are no longer reserved, significant speedup.
  3317 
  3318 * Methods "sat" and "satx" can now replay MiniSat proof traces.
  3319 zChaff is still supported as well.
  3320 
  3321 * 'inductive' and 'datatype': provide projections of mutual rules,
  3322 bundled as foo_bar.inducts;
  3323 
  3324 * Library: moved theories Parity, GCD, Binomial, Infinite_Set to
  3325 Library.
  3326 
  3327 * Library: moved theory Accessible_Part to main HOL.
  3328 
  3329 * Library: added theory Coinductive_List of potentially infinite lists
  3330 as greatest fixed-point.
  3331 
  3332 * Library: added theory AssocList which implements (finite) maps as
  3333 association lists.
  3334 
  3335 * Method "evaluation" solves goals (i.e. a boolean expression)
  3336 efficiently by compiling it to ML.  The goal is "proved" (via an
  3337 oracle) if it evaluates to True.
  3338 
  3339 * Linear arithmetic now splits certain operators (e.g. min, max, abs)
  3340 also when invoked by the simplifier.  This results in the Simplifier
  3341 being more powerful on arithmetic goals.  INCOMPATIBILITY.
  3342 Configuration option fast_arith_split_limit=0 recovers the old
  3343 behavior.
  3344 
  3345 * Support for hex (0x20) and binary (0b1001) numerals.
  3346 
  3347 * New method: reify eqs (t), where eqs are equations for an
  3348 interpretation I :: 'a list => 'b => 'c and t::'c is an optional
  3349 parameter, computes a term s::'b and a list xs::'a list and proves the
  3350 theorem I xs s = t. This is also known as reification or quoting. The
  3351 resulting theorem is applied to the subgoal to substitute t with I xs
  3352 s.  If t is omitted, the subgoal itself is reified.
  3353 
  3354 * New method: reflection corr_thm eqs (t). The parameters eqs and (t)
  3355 are as explained above. corr_thm is a theorem for I vs (f t) = I vs t,
  3356 where f is supposed to be a computable function (in the sense of code
  3357 generattion). The method uses reify to compute s and xs as above then
  3358 applies corr_thm and uses normalization by evaluation to "prove" f s =
  3359 r and finally gets the theorem t = r, which is again applied to the
  3360 subgoal. An Example is available in src/HOL/ex/ReflectionEx.thy.
  3361 
  3362 * Reflection: Automatic reification now handels binding, an example is
  3363 available in src/HOL/ex/ReflectionEx.thy
  3364 
  3365 * HOL-Statespace: ``State Spaces: The Locale Way'' introduces a
  3366 command 'statespace' that is similar to 'record', but introduces an
  3367 abstract specification based on the locale infrastructure instead of
  3368 HOL types.  This leads to extra flexibility in composing state spaces,
  3369 in particular multiple inheritance and renaming of components.
  3370 
  3371 
  3372 *** HOL-Complex ***
  3373 
  3374 * Hyperreal: Functions root and sqrt are now defined on negative real
  3375 inputs so that root n (- x) = - root n x and sqrt (- x) = - sqrt x.
  3376 Nonnegativity side conditions have been removed from many lemmas, so
  3377 that more subgoals may now be solved by simplification; potential
  3378 INCOMPATIBILITY.
  3379 
  3380 * Real: new type classes formalize real normed vector spaces and
  3381 algebras, using new overloaded constants scaleR :: real => 'a => 'a
  3382 and norm :: 'a => real.
  3383 
  3384 * Real: constant of_real :: real => 'a::real_algebra_1 injects from
  3385 reals into other types. The overloaded constant Reals :: 'a set is now
  3386 defined as range of_real; potential INCOMPATIBILITY.
  3387 
  3388 * Real: proper support for ML code generation, including 'quickcheck'.
  3389 Reals are implemented as arbitrary precision rationals.
  3390 
  3391 * Real: new development using Cauchy Sequences.
  3392 
  3393 * Hyperreal: Several constants that previously worked only for the
  3394 reals have been generalized, so they now work over arbitrary vector
  3395 spaces. Type annotations may need to be added in some cases; potential
  3396 INCOMPATIBILITY.
  3397 
  3398   Infinitesimal  :: ('a::real_normed_vector) star set
  3399   HFinite        :: ('a::real_normed_vector) star set
  3400   HInfinite      :: ('a::real_normed_vector) star set
  3401   approx         :: ('a::real_normed_vector) star => 'a star => bool
  3402   monad          :: ('a::real_normed_vector) star => 'a star set
  3403   galaxy         :: ('a::real_normed_vector) star => 'a star set
  3404   (NS)LIMSEQ     :: [nat => 'a::real_normed_vector, 'a] => bool
  3405   (NS)convergent :: (nat => 'a::real_normed_vector) => bool
  3406   (NS)Bseq       :: (nat => 'a::real_normed_vector) => bool
  3407   (NS)Cauchy     :: (nat => 'a::real_normed_vector) => bool
  3408   (NS)LIM        :: ['a::real_normed_vector => 'b::real_normed_vector, 'a, 'b] => bool
  3409   is(NS)Cont     :: ['a::real_normed_vector => 'b::real_normed_vector, 'a] => bool
  3410   deriv          :: ['a::real_normed_field => 'a, 'a, 'a] => bool
  3411   sgn            :: 'a::real_normed_vector => 'a
  3412   exp            :: 'a::{recpower,real_normed_field,banach} => 'a
  3413 
  3414 * Complex: Some complex-specific constants are now abbreviations for
  3415 overloaded ones: complex_of_real = of_real, cmod = norm, hcmod =
  3416 hnorm.  Other constants have been entirely removed in favor of the
  3417 polymorphic versions (INCOMPATIBILITY):
  3418 
  3419   approx        <-- capprox
  3420   HFinite       <-- CFinite
  3421   HInfinite     <-- CInfinite
  3422   Infinitesimal <-- CInfinitesimal
  3423   monad         <-- cmonad
  3424   galaxy        <-- cgalaxy
  3425   (NS)LIM       <-- (NS)CLIM, (NS)CRLIM
  3426   is(NS)Cont    <-- is(NS)Contc, is(NS)contCR
  3427   (ns)deriv     <-- (ns)cderiv
  3428 
  3429 
  3430 *** HOL-Algebra ***
  3431 
  3432 * Formalisation of ideals and the quotient construction over rings.
  3433 
  3434 * Order and lattice theory no longer based on records.
  3435 INCOMPATIBILITY.
  3436 
  3437 * Renamed lemmas least_carrier -> least_closed and greatest_carrier ->
  3438 greatest_closed.  INCOMPATIBILITY.
  3439 
  3440 * Method algebra is now set up via an attribute.  For examples see
  3441 Ring.thy.  INCOMPATIBILITY: the method is now weaker on combinations
  3442 of algebraic structures.
  3443 
  3444 * Renamed theory CRing to Ring.
  3445 
  3446 
  3447 *** HOL-Nominal ***
  3448 
  3449 * Substantial, yet incomplete support for nominal datatypes (binding
  3450 structures) based on HOL-Nominal logic.  See src/HOL/Nominal and
  3451 src/HOL/Nominal/Examples.  Prospective users should consult
  3452 http://isabelle.in.tum.de/nominal/
  3453 
  3454 
  3455 *** ML ***
  3456 
  3457 * ML basics: just one true type int, which coincides with IntInf.int
  3458 (even on SML/NJ).
  3459 
  3460 * ML within Isar: antiquotations allow to embed statically-checked
  3461 formal entities in the source, referring to the context available at
  3462 compile-time.  For example:
  3463 
  3464 ML {* @{sort "{zero,one}"} *}
  3465 ML {* @{typ "'a => 'b"} *}
  3466 ML {* @{term "%x. x"} *}
  3467 ML {* @{prop "x == y"} *}
  3468 ML {* @{ctyp "'a => 'b"} *}
  3469 ML {* @{cterm "%x. x"} *}
  3470 ML {* @{cprop "x == y"} *}
  3471 ML {* @{thm asm_rl} *}
  3472 ML {* @{thms asm_rl} *}
  3473 ML {* @{type_name c} *}
  3474 ML {* @{type_syntax c} *}
  3475 ML {* @{const_name c} *}
  3476 ML {* @{const_syntax c} *}
  3477 ML {* @{context} *}
  3478 ML {* @{theory} *}
  3479 ML {* @{theory Pure} *}
  3480 ML {* @{theory_ref} *}
  3481 ML {* @{theory_ref Pure} *}
  3482 ML {* @{simpset} *}
  3483 ML {* @{claset} *}
  3484 ML {* @{clasimpset} *}
  3485 
  3486 The same works for sources being ``used'' within an Isar context.
  3487 
  3488 * ML in Isar: improved error reporting; extra verbosity with
  3489 ML_Context.trace enabled.
  3490 
  3491 * Pure/General/table.ML: the join operations now works via exceptions
  3492 DUP/SAME instead of type option. This is simpler in simple cases, and
  3493 admits slightly more efficient complex applications.
  3494 
  3495 * Pure: 'advanced' translation functions (parse_translation etc.) now
  3496 use Context.generic instead of just theory.
  3497 
  3498 * Pure: datatype Context.generic joins theory/Proof.context and
  3499 provides some facilities for code that works in either kind of
  3500 context, notably GenericDataFun for uniform theory and proof data.
  3501 
  3502 * Pure: simplified internal attribute type, which is now always
  3503 Context.generic * thm -> Context.generic * thm. Global (theory) vs.
  3504 local (Proof.context) attributes have been discontinued, while
  3505 minimizing code duplication. Thm.rule_attribute and
  3506 Thm.declaration_attribute build canonical attributes; see also structure
  3507 Context for further operations on Context.generic, notably
  3508 GenericDataFun. INCOMPATIBILITY, need to adapt attribute type
  3509 declarations and definitions.
  3510 
  3511 * Context data interfaces (Theory/Proof/GenericDataFun): removed
  3512 name/print, uninitialized data defaults to ad-hoc copy of empty value,
  3513 init only required for impure data. INCOMPATIBILITY: empty really need
  3514 to be empty (no dependencies on theory content!)
  3515 
  3516 * Pure/kernel: consts certification ignores sort constraints given in
  3517 signature declarations. (This information is not relevant to the
  3518 logic, but only for type inference.) SIGNIFICANT INTERNAL CHANGE,
  3519 potential INCOMPATIBILITY.
  3520 
  3521 * Pure: axiomatic type classes are now purely definitional, with
  3522 explicit proofs of class axioms and super class relations performed
  3523 internally. See Pure/axclass.ML for the main internal interfaces --
  3524 notably AxClass.define_class supercedes AxClass.add_axclass, and
  3525 AxClass.axiomatize_class/classrel/arity supersede
  3526 Sign.add_classes/classrel/arities.
  3527 
  3528 * Pure/Isar: Args/Attrib parsers operate on Context.generic --
  3529 global/local versions on theory vs. Proof.context have been
  3530 discontinued; Attrib.syntax and Method.syntax have been adapted
  3531 accordingly.  INCOMPATIBILITY, need to adapt parser expressions for
  3532 attributes, methods, etc.
  3533 
  3534 * Pure: several functions of signature "... -> theory -> theory * ..."
  3535 have been reoriented to "... -> theory -> ... * theory" in order to
  3536 allow natural usage in combination with the ||>, ||>>, |-> and
  3537 fold_map combinators.
  3538 
  3539 * Pure: official theorem names (closed derivations) and additional
  3540 comments (tags) are now strictly separate.  Name hints -- which are
  3541 maintained as tags -- may be attached any time without affecting the
  3542 derivation.
  3543 
  3544 * Pure: primitive rule lift_rule now takes goal cterm instead of an
  3545 actual goal state (thm).  Use Thm.lift_rule (Thm.cprem_of st i) to
  3546 achieve the old behaviour.
  3547 
  3548 * Pure: the "Goal" constant is now called "prop", supporting a
  3549 slightly more general idea of ``protecting'' meta-level rule
  3550 statements.
  3551 
  3552 * Pure: Logic.(un)varify only works in a global context, which is now
  3553 enforced instead of silently assumed.  INCOMPATIBILITY, may use
  3554 Logic.legacy_(un)varify as temporary workaround.
  3555 
  3556 * Pure: structure Name provides scalable operations for generating
  3557 internal variable names, notably Name.variants etc.  This replaces
  3558 some popular functions from term.ML:
  3559 
  3560   Term.variant		->  Name.variant
  3561   Term.variantlist	->  Name.variant_list
  3562   Term.invent_names	->  Name.invent_list
  3563 
  3564 Note that low-level renaming rarely occurs in new code -- operations
  3565 from structure Variable are used instead (see below).
  3566 
  3567 * Pure: structure Variable provides fundamental operations for proper
  3568 treatment of fixed/schematic variables in a context.  For example,
  3569 Variable.import introduces fixes for schematics of given facts and
  3570 Variable.export reverses the effect (up to renaming) -- this replaces
  3571 various freeze_thaw operations.
  3572 
  3573 * Pure: structure Goal provides simple interfaces for
  3574 init/conclude/finish and tactical prove operations (replacing former
  3575 Tactic.prove).  Goal.prove is the canonical way to prove results
  3576 within a given context; Goal.prove_global is a degraded version for
  3577 theory level goals, including a global Drule.standard.  Note that
  3578 OldGoals.prove_goalw_cterm has long been obsolete, since it is
  3579 ill-behaved in a local proof context (e.g. with local fixes/assumes or
  3580 in a locale context).
  3581 
  3582 * Pure/Syntax: generic interfaces for parsing (Syntax.parse_term etc.)
  3583 and type checking (Syntax.check_term etc.), with common combinations
  3584 (Syntax.read_term etc.). These supersede former Sign.read_term etc.
  3585 which are considered legacy and await removal.
  3586 
  3587 * Pure/Syntax: generic interfaces for type unchecking
  3588 (Syntax.uncheck_terms etc.) and unparsing (Syntax.unparse_term etc.),
  3589 with common combinations (Syntax.pretty_term, Syntax.string_of_term
  3590 etc.).  Former Sign.pretty_term, Sign.string_of_term etc. are still
  3591 available for convenience, but refer to the very same operations using
  3592 a mere theory instead of a full context.
  3593 
  3594 * Isar: simplified treatment of user-level errors, using exception
  3595 ERROR of string uniformly.  Function error now merely raises ERROR,
  3596 without any side effect on output channels.  The Isar toplevel takes
  3597 care of proper display of ERROR exceptions.  ML code may use plain
  3598 handle/can/try; cat_error may be used to concatenate errors like this:
  3599 
  3600   ... handle ERROR msg => cat_error msg "..."
  3601 
  3602 Toplevel ML code (run directly or through the Isar toplevel) may be
  3603 embedded into the Isar toplevel with exception display/debug like
  3604 this:
  3605 
  3606   Isar.toplevel (fn () => ...)
  3607 
  3608 INCOMPATIBILITY, removed special transform_error facilities, removed
  3609 obsolete variants of user-level exceptions (ERROR_MESSAGE,
  3610 Context.PROOF, ProofContext.CONTEXT, Proof.STATE, ProofHistory.FAIL)
  3611 -- use plain ERROR instead.
  3612 
  3613 * Isar: theory setup now has type (theory -> theory), instead of a
  3614 list.  INCOMPATIBILITY, may use #> to compose setup functions.
  3615 
  3616 * Isar: ML toplevel pretty printer for type Proof.context, subject to
  3617 ProofContext.debug/verbose flags.
  3618 
  3619 * Isar: Toplevel.theory_to_proof admits transactions that modify the
  3620 theory before entering a proof state.  Transactions now always see a
  3621 quasi-functional intermediate checkpoint, both in interactive and
  3622 batch mode.
  3623 
  3624 * Isar: simplified interfaces for outer syntax.  Renamed
  3625 OuterSyntax.add_keywords to OuterSyntax.keywords.  Removed
  3626 OuterSyntax.add_parsers -- this functionality is now included in
  3627 OuterSyntax.command etc.  INCOMPATIBILITY.
  3628 
  3629 * Simplifier: the simpset of a running simplification process now
  3630 contains a proof context (cf. Simplifier.the_context), which is the
  3631 very context that the initial simpset has been retrieved from (by
  3632 simpset_of/local_simpset_of).  Consequently, all plug-in components
  3633 (solver, looper etc.) may depend on arbitrary proof data.
  3634 
  3635 * Simplifier.inherit_context inherits the proof context (plus the
  3636 local bounds) of the current simplification process; any simproc
  3637 etc. that calls the Simplifier recursively should do this!  Removed
  3638 former Simplifier.inherit_bounds, which is already included here --
  3639 INCOMPATIBILITY.  Tools based on low-level rewriting may even have to
  3640 specify an explicit context using Simplifier.context/theory_context.
  3641 
  3642 * Simplifier/Classical Reasoner: more abstract interfaces
  3643 change_simpset/claset for modifying the simpset/claset reference of a
  3644 theory; raw versions simpset/claset_ref etc. have been discontinued --
  3645 INCOMPATIBILITY.
  3646 
  3647 * Provers: more generic wrt. syntax of object-logics, avoid hardwired
  3648 "Trueprop" etc.
  3649 
  3650 
  3651 *** System ***
  3652 
  3653 * settings: the default heap location within ISABELLE_HOME_USER now
  3654 includes ISABELLE_IDENTIFIER.  This simplifies use of multiple
  3655 Isabelle installations.
  3656 
  3657 * isabelle-process: option -S (secure mode) disables some critical
  3658 operations, notably runtime compilation and evaluation of ML source
  3659 code.
  3660 
  3661 * Basic Isabelle mode for jEdit, see Isabelle/lib/jedit/.
  3662 
  3663 * Support for parallel execution, using native multicore support of
  3664 Poly/ML 5.1.  The theory loader exploits parallelism when processing
  3665 independent theories, according to the given theory header
  3666 specifications. The maximum number of worker threads is specified via
  3667 usedir option -M or the "max-threads" setting in Proof General. A
  3668 speedup factor of 1.5--3.5 can be expected on a 4-core machine, and up
  3669 to 6 on a 8-core machine.  User-code needs to observe certain
  3670 guidelines for thread-safe programming, see appendix A in the Isar
  3671 Implementation manual.
  3672 
  3673 
  3674 
  3675 New in Isabelle2005 (October 2005)
  3676 ----------------------------------
  3677 
  3678 *** General ***
  3679 
  3680 * Theory headers: the new header syntax for Isar theories is
  3681 
  3682   theory <name>
  3683   imports <theory1> ... <theoryN>
  3684   uses <file1> ... <fileM>
  3685   begin
  3686 
  3687 where the 'uses' part is optional.  The previous syntax
  3688 
  3689   theory <name> = <theory1> + ... + <theoryN>:
  3690 
  3691 will disappear in the next release.  Use isatool fixheaders to convert
  3692 existing theory files.  Note that there is no change in ancient
  3693 non-Isar theories now, but these will disappear soon.
  3694 
  3695 * Theory loader: parent theories can now also be referred to via
  3696 relative and absolute paths.
  3697 
  3698 * Command 'find_theorems' searches for a list of criteria instead of a
  3699 list of constants. Known criteria are: intro, elim, dest, name:string,
  3700 simp:term, and any term. Criteria can be preceded by '-' to select
  3701 theorems that do not match. Intro, elim, dest select theorems that
  3702 match the current goal, name:s selects theorems whose fully qualified
  3703 name contain s, and simp:term selects all simplification rules whose
  3704 lhs match term.  Any other term is interpreted as pattern and selects
  3705 all theorems matching the pattern. Available in ProofGeneral under
  3706 'ProofGeneral -> Find Theorems' or C-c C-f.  Example:
  3707 
  3708   C-c C-f (100) "(_::nat) + _ + _" intro -name: "HOL."
  3709 
  3710 prints the last 100 theorems matching the pattern "(_::nat) + _ + _",
  3711 matching the current goal as introduction rule and not having "HOL."
  3712 in their name (i.e. not being defined in theory HOL).
  3713 
  3714 * Command 'thms_containing' has been discontinued in favour of
  3715 'find_theorems'; INCOMPATIBILITY.
  3716 
  3717 * Communication with Proof General is now 8bit clean, which means that
  3718 Unicode text in UTF-8 encoding may be used within theory texts (both
  3719 formal and informal parts).  Cf. option -U of the Isabelle Proof
  3720 General interface.  Here are some simple examples (cf. src/HOL/ex):
  3721 
  3722   http://isabelle.in.tum.de/library/HOL/ex/Hebrew.html
  3723   http://isabelle.in.tum.de/library/HOL/ex/Chinese.html
  3724 
  3725 * Improved efficiency of the Simplifier and, to a lesser degree, the
  3726 Classical Reasoner.  Typical big applications run around 2 times
  3727 faster.
  3728 
  3729 
  3730 *** Document preparation ***
  3731 
  3732 * Commands 'display_drafts' and 'print_drafts' perform simple output
  3733 of raw sources.  Only those symbols that do not require additional
  3734 LaTeX packages (depending on comments in isabellesym.sty) are
  3735 displayed properly, everything else is left verbatim.  isatool display
  3736 and isatool print are used as front ends (these are subject to the
  3737 DVI/PDF_VIEWER and PRINT_COMMAND settings, respectively).
  3738 
  3739 * Command tags control specific markup of certain regions of text,
  3740 notably folding and hiding.  Predefined tags include "theory" (for
  3741 theory begin and end), "proof" for proof commands, and "ML" for
  3742 commands involving ML code; the additional tags "visible" and
  3743 "invisible" are unused by default.  Users may give explicit tag
  3744 specifications in the text, e.g. ''by %invisible (auto)''.  The
  3745 interpretation of tags is determined by the LaTeX job during document
  3746 preparation: see option -V of isatool usedir, or options -n and -t of
  3747 isatool document, or even the LaTeX macros \isakeeptag, \isafoldtag,
  3748 \isadroptag.
  3749 
  3750 Several document versions may be produced at the same time via isatool
  3751 usedir (the generated index.html will link all of them).  Typical
  3752 specifications include ''-V document=theory,proof,ML'' to present
  3753 theory/proof/ML parts faithfully, ''-V outline=/proof,/ML'' to fold
  3754 proof and ML commands, and ''-V mutilated=-theory,-proof,-ML'' to omit
  3755 these parts without any formal replacement text.  The Isabelle site
  3756 default settings produce ''document'' and ''outline'' versions as
  3757 specified above.
  3758 
  3759 * Several new antiquotations:
  3760 
  3761   @{term_type term} prints a term with its type annotated;
  3762 
  3763   @{typeof term} prints the type of a term;
  3764 
  3765   @{const const} is the same as @{term const}, but checks that the
  3766   argument is a known logical constant;
  3767 
  3768   @{term_style style term} and @{thm_style style thm} print a term or
  3769   theorem applying a "style" to it
  3770 
  3771   @{ML text}
  3772 
  3773 Predefined styles are 'lhs' and 'rhs' printing the lhs/rhs of
  3774 definitions, equations, inequations etc., 'concl' printing only the
  3775 conclusion of a meta-logical statement theorem, and 'prem1' .. 'prem19'
  3776 to print the specified premise.  TermStyle.add_style provides an ML
  3777 interface for introducing further styles.  See also the "LaTeX Sugar"
  3778 document practical applications.  The ML antiquotation prints
  3779 type-checked ML expressions verbatim.
  3780 
  3781 * Markup commands 'chapter', 'section', 'subsection', 'subsubsection',
  3782 and 'text' support optional locale specification '(in loc)', which
  3783 specifies the default context for interpreting antiquotations.  For
  3784 example: 'text (in lattice) {* @{thm inf_assoc}*}'.
  3785 
  3786 * Option 'locale=NAME' of antiquotations specifies an alternative
  3787 context interpreting the subsequent argument.  For example: @{thm
  3788 [locale=lattice] inf_assoc}.
  3789 
  3790 * Proper output of proof terms (@{prf ...} and @{full_prf ...}) within
  3791 a proof context.
  3792 
  3793 * Proper output of antiquotations for theory commands involving a
  3794 proof context (such as 'locale' or 'theorem (in loc) ...').
  3795 
  3796 * Delimiters of outer tokens (string etc.) now produce separate LaTeX
  3797 macros (\isachardoublequoteopen, isachardoublequoteclose etc.).
  3798 
  3799 * isatool usedir: new option -C (default true) controls whether option
  3800 -D should include a copy of the original document directory; -C false
  3801 prevents unwanted effects such as copying of administrative CVS data.
  3802 
  3803 
  3804 *** Pure ***
  3805 
  3806 * Considerably improved version of 'constdefs' command.  Now performs
  3807 automatic type-inference of declared constants; additional support for
  3808 local structure declarations (cf. locales and HOL records), see also
  3809 isar-ref manual.  Potential INCOMPATIBILITY: need to observe strictly
  3810 sequential dependencies of definitions within a single 'constdefs'
  3811 section; moreover, the declared name needs to be an identifier.  If
  3812 all fails, consider to fall back on 'consts' and 'defs' separately.
  3813 
  3814 * Improved indexed syntax and implicit structures.  First of all,
  3815 indexed syntax provides a notational device for subscripted
  3816 application, using the new syntax \<^bsub>term\<^esub> for arbitrary
  3817 expressions.  Secondly, in a local context with structure
  3818 declarations, number indexes \<^sub>n or the empty index (default
  3819 number 1) refer to a certain fixed variable implicitly; option
  3820 show_structs controls printing of implicit structures.  Typical
  3821 applications of these concepts involve record types and locales.
  3822 
  3823 * New command 'no_syntax' removes grammar declarations (and
  3824 translations) resulting from the given syntax specification, which is
  3825 interpreted in the same manner as for the 'syntax' command.
  3826 
  3827 * 'Advanced' translation functions (parse_translation etc.) may depend
  3828 on the signature of the theory context being presently used for
  3829 parsing/printing, see also isar-ref manual.
  3830 
  3831 * Improved 'oracle' command provides a type-safe interface to turn an
  3832 ML expression of type theory -> T -> term into a primitive rule of
  3833 type theory -> T -> thm (i.e. the functionality of Thm.invoke_oracle
  3834 is already included here); see also FOL/ex/IffExample.thy;
  3835 INCOMPATIBILITY.
  3836 
  3837 * axclass: name space prefix for class "c" is now "c_class" (was "c"
  3838 before); "cI" is no longer bound, use "c.intro" instead.
  3839 INCOMPATIBILITY.  This change avoids clashes of fact bindings for
  3840 axclasses vs. locales.
  3841 
  3842 * Improved internal renaming of symbolic identifiers -- attach primes
  3843 instead of base 26 numbers.
  3844 
  3845 * New flag show_question_marks controls printing of leading question
  3846 marks in schematic variable names.
  3847 
  3848 * In schematic variable names, *any* symbol following \<^isub> or
  3849 \<^isup> is now treated as part of the base name.  For example, the
  3850 following works without printing of awkward ".0" indexes:
  3851 
  3852   lemma "x\<^isub>1 = x\<^isub>2 ==> x\<^isub>2 = x\<^isub>1"
  3853     by simp
  3854 
  3855 * Inner syntax includes (*(*nested*) comments*).
  3856 
  3857 * Pretty printer now supports unbreakable blocks, specified in mixfix
  3858 annotations as "(00...)".
  3859 
  3860 * Clear separation of logical types and nonterminals, where the latter
  3861 may only occur in 'syntax' specifications or type abbreviations.
  3862 Before that distinction was only partially implemented via type class
  3863 "logic" vs. "{}".  Potential INCOMPATIBILITY in rare cases of improper
  3864 use of 'types'/'consts' instead of 'nonterminals'/'syntax'.  Some very
  3865 exotic syntax specifications may require further adaption
  3866 (e.g. Cube/Cube.thy).
  3867 
  3868 * Removed obsolete type class "logic", use the top sort {} instead.
  3869 Note that non-logical types should be declared as 'nonterminals'
  3870 rather than 'types'.  INCOMPATIBILITY for new object-logic
  3871 specifications.
  3872 
  3873 * Attributes 'induct' and 'cases': type or set names may now be
  3874 locally fixed variables as well.
  3875 
  3876 * Simplifier: can now control the depth to which conditional rewriting
  3877 is traced via the PG menu Isabelle -> Settings -> Trace Simp Depth
  3878 Limit.
  3879 
  3880 * Simplifier: simplification procedures may now take the current
  3881 simpset into account (cf. Simplifier.simproc(_i) / mk_simproc
  3882 interface), which is very useful for calling the Simplifier
  3883 recursively.  Minor INCOMPATIBILITY: the 'prems' argument of simprocs
  3884 is gone -- use prems_of_ss on the simpset instead.  Moreover, the
  3885 low-level mk_simproc no longer applies Logic.varify internally, to
  3886 allow for use in a context of fixed variables.
  3887 
  3888 * thin_tac now works even if the assumption being deleted contains !!
  3889 or ==>.  More generally, erule now works even if the major premise of
  3890 the elimination rule contains !! or ==>.
  3891 
  3892 * Method 'rules' has been renamed to 'iprover'. INCOMPATIBILITY.
  3893 
  3894 * Reorganized bootstrapping of the Pure theories; CPure is now derived
  3895 from Pure, which contains all common declarations already.  Both
  3896 theories are defined via plain Isabelle/Isar .thy files.
  3897 INCOMPATIBILITY: elements of CPure (such as the CPure.intro /
  3898 CPure.elim / CPure.dest attributes) now appear in the Pure name space;
  3899 use isatool fixcpure to adapt your theory and ML sources.
  3900 
  3901 * New syntax 'name(i-j, i-, i, ...)' for referring to specific
  3902 selections of theorems in named facts via index ranges.
  3903 
  3904 * 'print_theorems': in theory mode, really print the difference
  3905 wrt. the last state (works for interactive theory development only),
  3906 in proof mode print all local facts (cf. 'print_facts');
  3907 
  3908 * 'hide': option '(open)' hides only base names.
  3909 
  3910 * More efficient treatment of intermediate checkpoints in interactive
  3911 theory development.
  3912 
  3913 * Code generator is now invoked via code_module (incremental code
  3914 generation) and code_library (modular code generation, ML structures
  3915 for each theory).  INCOMPATIBILITY: new keywords 'file' and 'contains'
  3916 must be quoted when used as identifiers.
  3917 
  3918 * New 'value' command for reading, evaluating and printing terms using
  3919 the code generator.  INCOMPATIBILITY: command keyword 'value' must be
  3920 quoted when used as identifier.
  3921 
  3922 
  3923 *** Locales ***
  3924 
  3925 * New commands for the interpretation of locale expressions in
  3926 theories (1), locales (2) and proof contexts (3).  These generate
  3927 proof obligations from the expression specification.  After the
  3928 obligations have been discharged, theorems of the expression are added
  3929 to the theory, target locale or proof context.  The synopsis of the
  3930 commands is a follows:
  3931 
  3932   (1) interpretation expr inst
  3933   (2) interpretation target < expr
  3934   (3) interpret expr inst
  3935 
  3936 Interpretation in theories and proof contexts require a parameter
  3937 instantiation of terms from the current context.  This is applied to
  3938 specifications and theorems of the interpreted expression.
  3939 Interpretation in locales only permits parameter renaming through the
  3940 locale expression.  Interpretation is smart in that interpretations
  3941 that are active already do not occur in proof obligations, neither are
  3942 instantiated theorems stored in duplicate.  Use 'print_interps' to
  3943 inspect active interpretations of a particular locale.  For details,
  3944 see the Isar Reference manual.  Examples can be found in
  3945 HOL/Finite_Set.thy and HOL/Algebra/UnivPoly.thy.
  3946 
  3947 INCOMPATIBILITY: former 'instantiate' has been withdrawn, use
  3948 'interpret' instead.
  3949 
  3950 * New context element 'constrains' for adding type constraints to
  3951 parameters.
  3952 
  3953 * Context expressions: renaming of parameters with syntax
  3954 redeclaration.
  3955 
  3956 * Locale declaration: 'includes' disallowed.
  3957 
  3958 * Proper static binding of attribute syntax -- i.e. types / terms /
  3959 facts mentioned as arguments are always those of the locale definition
  3960 context, independently of the context of later invocations.  Moreover,
  3961 locale operations (renaming and type / term instantiation) are applied
  3962 to attribute arguments as expected.
  3963 
  3964 INCOMPATIBILITY of the ML interface: always pass Attrib.src instead of
  3965 actual attributes; rare situations may require Attrib.attribute to
  3966 embed those attributes into Attrib.src that lack concrete syntax.
  3967 Attribute implementations need to cooperate properly with the static
  3968 binding mechanism.  Basic parsers Args.XXX_typ/term/prop and
  3969 Attrib.XXX_thm etc. already do the right thing without further
  3970 intervention.  Only unusual applications -- such as "where" or "of"
  3971 (cf. src/Pure/Isar/attrib.ML), which process arguments depending both
  3972 on the context and the facts involved -- may have to assign parsed
  3973 values to argument tokens explicitly.
  3974 
  3975 * Changed parameter management in theorem generation for long goal
  3976 statements with 'includes'.  INCOMPATIBILITY: produces a different
  3977 theorem statement in rare situations.
  3978 
  3979 * Locale inspection command 'print_locale' omits notes elements.  Use
  3980 'print_locale!' to have them included in the output.
  3981 
  3982 
  3983 *** Provers ***
  3984 
  3985 * Provers/hypsubst.ML: improved version of the subst method, for
  3986 single-step rewriting: it now works in bound variable contexts. New is
  3987 'subst (asm)', for rewriting an assumption.  INCOMPATIBILITY: may
  3988 rewrite a different subterm than the original subst method, which is
  3989 still available as 'simplesubst'.
  3990 
  3991 * Provers/quasi.ML: new transitivity reasoners for transitivity only
  3992 and quasi orders.
  3993 
  3994 * Provers/trancl.ML: new transitivity reasoner for transitive and
  3995 reflexive-transitive closure of relations.
  3996 
  3997 * Provers/blast.ML: new reference depth_limit to make blast's depth
  3998 limit (previously hard-coded with a value of 20) user-definable.
  3999 
  4000 * Provers/simplifier.ML has been moved to Pure, where Simplifier.setup
  4001 is peformed already.  Object-logics merely need to finish their
  4002 initial simpset configuration as before.  INCOMPATIBILITY.
  4003 
  4004 
  4005 *** HOL ***
  4006 
  4007 * Symbolic syntax of Hilbert Choice Operator is now as follows:
  4008 
  4009   syntax (epsilon)
  4010     "_Eps" :: "[pttrn, bool] => 'a"    ("(3\<some>_./ _)" [0, 10] 10)
  4011 
  4012 The symbol \<some> is displayed as the alternative epsilon of LaTeX
  4013 and x-symbol; use option '-m epsilon' to get it actually printed.
  4014 Moreover, the mathematically important symbolic identifier \<epsilon>
  4015 becomes available as variable, constant etc.  INCOMPATIBILITY,
  4016 
  4017 * "x > y" abbreviates "y < x" and "x >= y" abbreviates "y <= x".
  4018 Similarly for all quantifiers: "ALL x > y" etc.  The x-symbol for >=
  4019 is \<ge>. New transitivity rules have been added to HOL/Orderings.thy to
  4020 support corresponding Isar calculations.
  4021 
  4022 * "{x:A. P}" abbreviates "{x. x:A & P}", and similarly for "\<in>"
  4023 instead of ":".
  4024 
  4025 * theory SetInterval: changed the syntax for open intervals:
  4026 
  4027   Old       New
  4028   {..n(}    {..<n}
  4029   {)n..}    {n<..}
  4030   {m..n(}   {m..<n}
  4031   {)m..n}   {m<..n}
  4032   {)m..n(}  {m<..<n}
  4033 
  4034 The old syntax is still supported but will disappear in the next
  4035 release.  For conversion use the following Emacs search and replace
  4036 patterns (these are not perfect but work quite well):
  4037 
  4038   {)\([^\.]*\)\.\.  ->  {\1<\.\.}
  4039   \.\.\([^(}]*\)(}  ->  \.\.<\1}
  4040 
  4041 * Theory Commutative_Ring (in Library): method comm_ring for proving
  4042 equalities in commutative rings; method 'algebra' provides a generic
  4043 interface.
  4044 
  4045 * Theory Finite_Set: changed the syntax for 'setsum', summation over
  4046 finite sets: "setsum (%x. e) A", which used to be "\<Sum>x:A. e", is
  4047 now either "SUM x:A. e" or "\<Sum>x \<in> A. e". The bound variable can
  4048 be a tuple pattern.
  4049 
  4050 Some new syntax forms are available:
  4051 
  4052   "\<Sum>x | P. e"      for     "setsum (%x. e) {x. P}"
  4053   "\<Sum>x = a..b. e"   for     "setsum (%x. e) {a..b}"
  4054   "\<Sum>x = a..<b. e"  for     "setsum (%x. e) {a..<b}"
  4055   "\<Sum>x < k. e"      for     "setsum (%x. e) {..<k}"
  4056 
  4057 The latter form "\<Sum>x < k. e" used to be based on a separate
  4058 function "Summation", which has been discontinued.
  4059 
  4060 * theory Finite_Set: in structured induction proofs, the insert case
  4061 is now 'case (insert x F)' instead of the old counterintuitive 'case
  4062 (insert F x)'.
  4063 
  4064 * The 'refute' command has been extended to support a much larger
  4065 fragment of HOL, including axiomatic type classes, constdefs and
  4066 typedefs, inductive datatypes and recursion.
  4067 
  4068 * New tactics 'sat' and 'satx' to prove propositional tautologies.
  4069 Requires zChaff with proof generation to be installed.  See
  4070 HOL/ex/SAT_Examples.thy for examples.
  4071 
  4072 * Datatype induction via method 'induct' now preserves the name of the
  4073 induction variable. For example, when proving P(xs::'a list) by
  4074 induction on xs, the induction step is now P(xs) ==> P(a#xs) rather
  4075 than P(list) ==> P(a#list) as previously.  Potential INCOMPATIBILITY
  4076 in unstructured proof scripts.
  4077 
  4078 * Reworked implementation of records.  Improved scalability for
  4079 records with many fields, avoiding performance problems for type
  4080 inference. Records are no longer composed of nested field types, but
  4081 of nested extension types. Therefore the record type only grows linear
  4082 in the number of extensions and not in the number of fields.  The
  4083 top-level (users) view on records is preserved.  Potential
  4084 INCOMPATIBILITY only in strange cases, where the theory depends on the
  4085 old record representation. The type generated for a record is called
  4086 <record_name>_ext_type.
  4087 
  4088 Flag record_quick_and_dirty_sensitive can be enabled to skip the
  4089 proofs triggered by a record definition or a simproc (if
  4090 quick_and_dirty is enabled).  Definitions of large records can take
  4091 quite long.
  4092 
  4093 New simproc record_upd_simproc for simplification of multiple record
  4094 updates enabled by default.  Moreover, trivial updates are also
  4095 removed: r(|x := x r|) = r.  INCOMPATIBILITY: old proofs break
  4096 occasionally, since simplification is more powerful by default.
  4097 
  4098 * typedef: proper support for polymorphic sets, which contain extra
  4099 type-variables in the term.
  4100 
  4101 * Simplifier: automatically reasons about transitivity chains
  4102 involving "trancl" (r^+) and "rtrancl" (r^*) by setting up tactics
  4103 provided by Provers/trancl.ML as additional solvers.  INCOMPATIBILITY:
  4104 old proofs break occasionally as simplification may now solve more
  4105 goals than previously.
  4106 
  4107 * Simplifier: converts x <= y into x = y if assumption y <= x is
  4108 present.  Works for all partial orders (class "order"), in particular
  4109 numbers and sets.  For linear orders (e.g. numbers) it treats ~ x < y
  4110 just like y <= x.
  4111 
  4112 * Simplifier: new simproc for "let x = a in f x".  If a is a free or
  4113 bound variable or a constant then the let is unfolded.  Otherwise
  4114 first a is simplified to b, and then f b is simplified to g. If
  4115 possible we abstract b from g arriving at "let x = b in h x",
  4116 otherwise we unfold the let and arrive at g.  The simproc can be
  4117 enabled/disabled by the reference use_let_simproc.  Potential
  4118 INCOMPATIBILITY since simplification is more powerful by default.
  4119 
  4120 * Classical reasoning: the meson method now accepts theorems as arguments.
  4121 
  4122 * Prover support: pre-release of the Isabelle-ATP linkup, which runs background
  4123 jobs to provide advice on the provability of subgoals.
  4124 
  4125 * Theory OrderedGroup and Ring_and_Field: various additions and
  4126 improvements to faciliate calculations involving equalities and
  4127 inequalities.
  4128 
  4129 The following theorems have been eliminated or modified
  4130 (INCOMPATIBILITY):
  4131 
  4132   abs_eq             now named abs_of_nonneg
  4133   abs_of_ge_0        now named abs_of_nonneg
  4134   abs_minus_eq       now named abs_of_nonpos
  4135   imp_abs_id         now named abs_of_nonneg
  4136   imp_abs_neg_id     now named abs_of_nonpos
  4137   mult_pos           now named mult_pos_pos
  4138   mult_pos_le        now named mult_nonneg_nonneg
  4139   mult_pos_neg_le    now named mult_nonneg_nonpos
  4140   mult_pos_neg2_le   now named mult_nonneg_nonpos2
  4141   mult_neg           now named mult_neg_neg
  4142   mult_neg_le        now named mult_nonpos_nonpos
  4143 
  4144 * The following lemmas in Ring_and_Field have been added to the simplifier:
  4145      
  4146      zero_le_square
  4147      not_square_less_zero 
  4148 
  4149   The following lemmas have been deleted from Real/RealPow:
  4150   
  4151      realpow_zero_zero
  4152      realpow_two
  4153      realpow_less
  4154      zero_le_power
  4155      realpow_two_le
  4156      abs_realpow_two
  4157      realpow_two_abs     
  4158 
  4159 * Theory Parity: added rules for simplifying exponents.
  4160 
  4161 * Theory List:
  4162 
  4163 The following theorems have been eliminated or modified
  4164 (INCOMPATIBILITY):
  4165 
  4166   list_all_Nil       now named list_all.simps(1)
  4167   list_all_Cons      now named list_all.simps(2)
  4168   list_all_conv      now named list_all_iff
  4169   set_mem_eq         now named mem_iff
  4170 
  4171 * Theories SetsAndFunctions and BigO (see HOL/Library) support
  4172 asymptotic "big O" calculations.  See the notes in BigO.thy.
  4173 
  4174 
  4175 *** HOL-Complex ***
  4176 
  4177 * Theory RealDef: better support for embedding natural numbers and
  4178 integers in the reals.
  4179 
  4180 The following theorems have been eliminated or modified
  4181 (INCOMPATIBILITY):
  4182 
  4183   exp_ge_add_one_self  now requires no hypotheses
  4184   real_of_int_add      reversed direction of equality (use [symmetric])
  4185   real_of_int_minus    reversed direction of equality (use [symmetric])
  4186   real_of_int_diff     reversed direction of equality (use [symmetric])
  4187   real_of_int_mult     reversed direction of equality (use [symmetric])
  4188 
  4189 * Theory RComplete: expanded support for floor and ceiling functions.
  4190 
  4191 * Theory Ln is new, with properties of the natural logarithm
  4192 
  4193 * Hyperreal: There is a new type constructor "star" for making
  4194 nonstandard types.  The old type names are now type synonyms:
  4195 
  4196   hypreal = real star
  4197   hypnat = nat star
  4198   hcomplex = complex star
  4199 
  4200 * Hyperreal: Many groups of similarly-defined constants have been
  4201 replaced by polymorphic versions (INCOMPATIBILITY):
  4202 
  4203   star_of <-- hypreal_of_real, hypnat_of_nat, hcomplex_of_complex
  4204 
  4205   starset      <-- starsetNat, starsetC
  4206   *s*          <-- *sNat*, *sc*
  4207   starset_n    <-- starsetNat_n, starsetC_n
  4208   *sn*         <-- *sNatn*, *scn*
  4209   InternalSets <-- InternalNatSets, InternalCSets
  4210 
  4211   starfun      <-- starfun{Nat,Nat2,C,RC,CR}
  4212   *f*          <-- *fNat*, *fNat2*, *fc*, *fRc*, *fcR*
  4213   starfun_n    <-- starfun{Nat,Nat2,C,RC,CR}_n
  4214   *fn*         <-- *fNatn*, *fNat2n*, *fcn*, *fRcn*, *fcRn*
  4215   InternalFuns <-- InternalNatFuns, InternalNatFuns2, Internal{C,RC,CR}Funs
  4216 
  4217 * Hyperreal: Many type-specific theorems have been removed in favor of
  4218 theorems specific to various axiomatic type classes (INCOMPATIBILITY):
  4219 
  4220   add_commute <-- {hypreal,hypnat,hcomplex}_add_commute
  4221   add_assoc   <-- {hypreal,hypnat,hcomplex}_add_assocs
  4222   OrderedGroup.add_0 <-- {hypreal,hypnat,hcomplex}_add_zero_left
  4223   OrderedGroup.add_0_right <-- {hypreal,hcomplex}_add_zero_right
  4224   right_minus <-- hypreal_add_minus
  4225   left_minus <-- {hypreal,hcomplex}_add_minus_left
  4226   mult_commute <-- {hypreal,hypnat,hcomplex}_mult_commute
  4227   mult_assoc <-- {hypreal,hypnat,hcomplex}_mult_assoc
  4228   mult_1_left <-- {hypreal,hypnat}_mult_1, hcomplex_mult_one_left
  4229   mult_1_right <-- hcomplex_mult_one_right
  4230   mult_zero_left <-- hcomplex_mult_zero_left
  4231   left_distrib <-- {hypreal,hypnat,hcomplex}_add_mult_distrib
  4232   right_distrib <-- hypnat_add_mult_distrib2
  4233   zero_neq_one <-- {hypreal,hypnat,hcomplex}_zero_not_eq_one
  4234   right_inverse <-- hypreal_mult_inverse
  4235   left_inverse <-- hypreal_mult_inverse_left, hcomplex_mult_inv_left
  4236   order_refl <-- {hypreal,hypnat}_le_refl
  4237   order_trans <-- {hypreal,hypnat}_le_trans
  4238   order_antisym <-- {hypreal,hypnat}_le_anti_sym
  4239   order_less_le <-- {hypreal,hypnat}_less_le
  4240   linorder_linear <-- {hypreal,hypnat}_le_linear
  4241   add_left_mono <-- {hypreal,hypnat}_add_left_mono
  4242   mult_strict_left_mono <-- {hypreal,hypnat}_mult_less_mono2
  4243   add_nonneg_nonneg <-- hypreal_le_add_order
  4244 
  4245 * Hyperreal: Separate theorems having to do with type-specific
  4246 versions of constants have been merged into theorems that apply to the
  4247 new polymorphic constants (INCOMPATIBILITY):
  4248 
  4249   STAR_UNIV_set <-- {STAR_real,NatStar_real,STARC_complex}_set
  4250   STAR_empty_set <-- {STAR,NatStar,STARC}_empty_set
  4251   STAR_Un <-- {STAR,NatStar,STARC}_Un
  4252   STAR_Int <-- {STAR,NatStar,STARC}_Int
  4253   STAR_Compl <-- {STAR,NatStar,STARC}_Compl
  4254   STAR_subset <-- {STAR,NatStar,STARC}_subset
  4255   STAR_mem <-- {STAR,NatStar,STARC}_mem
  4256   STAR_mem_Compl <-- {STAR,STARC}_mem_Compl
  4257   STAR_diff <-- {STAR,STARC}_diff
  4258   STAR_star_of_image_subset <-- {STAR_hypreal_of_real, NatStar_hypreal_of_real,
  4259     STARC_hcomplex_of_complex}_image_subset
  4260   starset_n_Un <-- starset{Nat,C}_n_Un
  4261   starset_n_Int <-- starset{Nat,C}_n_Int
  4262   starset_n_Compl <-- starset{Nat,C}_n_Compl
  4263   starset_n_diff <-- starset{Nat,C}_n_diff
  4264   InternalSets_Un <-- Internal{Nat,C}Sets_Un
  4265   InternalSets_Int <-- Internal{Nat,C}Sets_Int
  4266   InternalSets_Compl <-- Internal{Nat,C}Sets_Compl
  4267   InternalSets_diff <-- Internal{Nat,C}Sets_diff
  4268   InternalSets_UNIV_diff <-- Internal{Nat,C}Sets_UNIV_diff
  4269   InternalSets_starset_n <-- Internal{Nat,C}Sets_starset{Nat,C}_n
  4270   starset_starset_n_eq <-- starset{Nat,C}_starset{Nat,C}_n_eq
  4271   starset_n_starset <-- starset{Nat,C}_n_starset{Nat,C}
  4272   starfun_n_starfun <-- starfun{Nat,Nat2,C,RC,CR}_n_starfun{Nat,Nat2,C,RC,CR}
  4273   starfun <-- starfun{Nat,Nat2,C,RC,CR}
  4274   starfun_mult <-- starfun{Nat,Nat2,C,RC,CR}_mult
  4275   starfun_add <-- starfun{Nat,Nat2,C,RC,CR}_add
  4276   starfun_minus <-- starfun{Nat,Nat2,C,RC,CR}_minus
  4277   starfun_diff <-- starfun{C,RC,CR}_diff
  4278   starfun_o <-- starfun{NatNat2,Nat2,_stafunNat,C,C_starfunRC,_starfunCR}_o
  4279   starfun_o2 <-- starfun{NatNat2,_stafunNat,C,C_starfunRC,_starfunCR}_o2
  4280   starfun_const_fun <-- starfun{Nat,Nat2,C,RC,CR}_const_fun
  4281   starfun_inverse <-- starfun{Nat,C,RC,CR}_inverse
  4282   starfun_eq <-- starfun{Nat,Nat2,C,RC,CR}_eq
  4283   starfun_eq_iff <-- starfun{C,RC,CR}_eq_iff
  4284   starfun_Id <-- starfunC_Id
  4285   starfun_approx <-- starfun{Nat,CR}_approx
  4286   starfun_capprox <-- starfun{C,RC}_capprox
  4287   starfun_abs <-- starfunNat_rabs
  4288   starfun_lambda_cancel <-- starfun{C,CR,RC}_lambda_cancel
  4289   starfun_lambda_cancel2 <-- starfun{C,CR,RC}_lambda_cancel2
  4290   starfun_mult_HFinite_approx <-- starfunCR_mult_HFinite_capprox
  4291   starfun_mult_CFinite_capprox <-- starfun{C,RC}_mult_CFinite_capprox
  4292   starfun_add_capprox <-- starfun{C,RC}_add_capprox
  4293   starfun_add_approx <-- starfunCR_add_approx
  4294   starfun_inverse_inverse <-- starfunC_inverse_inverse
  4295   starfun_divide <-- starfun{C,CR,RC}_divide
  4296   starfun_n <-- starfun{Nat,C}_n
  4297   starfun_n_mult <-- starfun{Nat,C}_n_mult
  4298   starfun_n_add <-- starfun{Nat,C}_n_add
  4299   starfun_n_add_minus <-- starfunNat_n_add_minus
  4300   starfun_n_const_fun <-- starfun{Nat,C}_n_const_fun
  4301   starfun_n_minus <-- starfun{Nat,C}_n_minus
  4302   starfun_n_eq <-- starfun{Nat,C}_n_eq
  4303 
  4304   star_n_add <-- {hypreal,hypnat,hcomplex}_add
  4305   star_n_minus <-- {hypreal,hcomplex}_minus
  4306   star_n_diff <-- {hypreal,hcomplex}_diff
  4307   star_n_mult <-- {hypreal,hcomplex}_mult
  4308   star_n_inverse <-- {hypreal,hcomplex}_inverse
  4309   star_n_le <-- {hypreal,hypnat}_le
  4310   star_n_less <-- {hypreal,hypnat}_less
  4311   star_n_zero_num <-- {hypreal,hypnat,hcomplex}_zero_num
  4312   star_n_one_num <-- {hypreal,hypnat,hcomplex}_one_num
  4313   star_n_abs <-- hypreal_hrabs
  4314   star_n_divide <-- hcomplex_divide
  4315 
  4316   star_of_add <-- {hypreal_of_real,hypnat_of_nat,hcomplex_of_complex}_add
  4317   star_of_minus <-- {hypreal_of_real,hcomplex_of_complex}_minus
  4318   star_of_diff <-- hypreal_of_real_diff
  4319   star_of_mult <-- {hypreal_of_real,hypnat_of_nat,hcomplex_of_complex}_mult
  4320   star_of_one <-- {hypreal_of_real,hcomplex_of_complex}_one
  4321   star_of_zero <-- {hypreal_of_real,hypnat_of_nat,hcomplex_of_complex}_zero
  4322   star_of_le <-- {hypreal_of_real,hypnat_of_nat}_le_iff
  4323   star_of_less <-- {hypreal_of_real,hypnat_of_nat}_less_iff
  4324   star_of_eq <-- {hypreal_of_real,hypnat_of_nat,hcomplex_of_complex}_eq_iff
  4325   star_of_inverse <-- {hypreal_of_real,hcomplex_of_complex}_inverse
  4326   star_of_divide <-- {hypreal_of_real,hcomplex_of_complex}_divide
  4327   star_of_of_nat <-- {hypreal_of_real,hcomplex_of_complex}_of_nat
  4328   star_of_of_int <-- {hypreal_of_real,hcomplex_of_complex}_of_int
  4329   star_of_number_of <-- {hypreal,hcomplex}_number_of
  4330   star_of_number_less <-- number_of_less_hypreal_of_real_iff
  4331   star_of_number_le <-- number_of_le_hypreal_of_real_iff
  4332   star_of_eq_number <-- hypreal_of_real_eq_number_of_iff
  4333   star_of_less_number <-- hypreal_of_real_less_number_of_iff
  4334   star_of_le_number <-- hypreal_of_real_le_number_of_iff
  4335   star_of_power <-- hypreal_of_real_power
  4336   star_of_eq_0 <-- hcomplex_of_complex_zero_iff
  4337 
  4338 * Hyperreal: new method "transfer" that implements the transfer
  4339 principle of nonstandard analysis. With a subgoal that mentions
  4340 nonstandard types like "'a star", the command "apply transfer"
  4341 replaces it with an equivalent one that mentions only standard types.
  4342 To be successful, all free variables must have standard types; non-
  4343 standard variables must have explicit universal quantifiers.
  4344 
  4345 * Hyperreal: A theory of Taylor series.
  4346 
  4347 
  4348 *** HOLCF ***
  4349 
  4350 * Discontinued special version of 'constdefs' (which used to support
  4351 continuous functions) in favor of the general Pure one with full
  4352 type-inference.
  4353 
  4354 * New simplification procedure for solving continuity conditions; it
  4355 is much faster on terms with many nested lambda abstractions (cubic
  4356 instead of exponential time).
  4357 
  4358 * New syntax for domain package: selector names are now optional.
  4359 Parentheses should be omitted unless argument is lazy, for example:
  4360 
  4361   domain 'a stream = cons "'a" (lazy "'a stream")
  4362 
  4363 * New command 'fixrec' for defining recursive functions with pattern
  4364 matching; defining multiple functions with mutual recursion is also
  4365 supported.  Patterns may include the constants cpair, spair, up, sinl,
  4366 sinr, or any data constructor defined by the domain package. The given
  4367 equations are proven as rewrite rules. See HOLCF/ex/Fixrec_ex.thy for
  4368 syntax and examples.
  4369 
  4370 * New commands 'cpodef' and 'pcpodef' for defining predicate subtypes
  4371 of cpo and pcpo types. Syntax is exactly like the 'typedef' command,
  4372 but the proof obligation additionally includes an admissibility
  4373 requirement. The packages generate instances of class cpo or pcpo,
  4374 with continuity and strictness theorems for Rep and Abs.
  4375 
  4376 * HOLCF: Many theorems have been renamed according to a more standard naming
  4377 scheme (INCOMPATIBILITY):
  4378 
  4379   foo_inject:  "foo$x = foo$y ==> x = y"
  4380   foo_eq:      "(foo$x = foo$y) = (x = y)"
  4381   foo_less:    "(foo$x << foo$y) = (x << y)"
  4382   foo_strict:  "foo$UU = UU"
  4383   foo_defined: "... ==> foo$x ~= UU"
  4384   foo_defined_iff: "(foo$x = UU) = (x = UU)"
  4385 
  4386 
  4387 *** ZF ***
  4388 
  4389 * ZF/ex: theories Group and Ring provide examples in abstract algebra,
  4390 including the First Isomorphism Theorem (on quotienting by the kernel
  4391 of a homomorphism).
  4392 
  4393 * ZF/Simplifier: install second copy of type solver that actually
  4394 makes use of TC rules declared to Isar proof contexts (or locales);
  4395 the old version is still required for ML proof scripts.
  4396 
  4397 
  4398 *** Cube ***
  4399 
  4400 * Converted to Isar theory format; use locales instead of axiomatic
  4401 theories.
  4402 
  4403 
  4404 *** ML ***
  4405 
  4406 * Pure/library.ML: added ##>, ##>>, #>> -- higher-order counterparts
  4407 for ||>, ||>>, |>>,
  4408 
  4409 * Pure/library.ML no longer defines its own option datatype, but uses
  4410 that of the SML basis, which has constructors NONE and SOME instead of
  4411 None and Some, as well as exception Option.Option instead of OPTION.
  4412 The functions the, if_none, is_some, is_none have been adapted
  4413 accordingly, while Option.map replaces apsome.
  4414 
  4415 * Pure/library.ML: the exception LIST has been given up in favour of
  4416 the standard exceptions Empty and Subscript, as well as
  4417 Library.UnequalLengths.  Function like Library.hd and Library.tl are
  4418 superceded by the standard hd and tl functions etc.
  4419 
  4420 A number of basic list functions are no longer exported to the ML
  4421 toplevel, as they are variants of predefined functions.  The following
  4422 suggests how one can translate existing code:
  4423 
  4424     rev_append xs ys = List.revAppend (xs, ys)
  4425     nth_elem (i, xs) = List.nth (xs, i)
  4426     last_elem xs = List.last xs
  4427     flat xss = List.concat xss
  4428     seq fs = List.app fs
  4429     partition P xs = List.partition P xs
  4430     mapfilter f xs = List.mapPartial f xs
  4431 
  4432 * Pure/library.ML: several combinators for linear functional
  4433 transformations, notably reverse application and composition:
  4434 
  4435   x |> f                f #> g
  4436   (x, y) |-> f          f #-> g
  4437 
  4438 * Pure/library.ML: introduced/changed precedence of infix operators:
  4439 
  4440   infix 1 |> |-> ||> ||>> |>> |>>> #> #->;
  4441   infix 2 ?;
  4442   infix 3 o oo ooo oooo;
  4443   infix 4 ~~ upto downto;
  4444 
  4445 Maybe INCOMPATIBILITY when any of those is used in conjunction with other
  4446 infix operators.
  4447 
  4448 * Pure/library.ML: natural list combinators fold, fold_rev, and
  4449 fold_map support linear functional transformations and nesting.  For
  4450 example:
  4451 
  4452   fold f [x1, ..., xN] y =
  4453     y |> f x1 |> ... |> f xN
  4454 
  4455   (fold o fold) f [xs1, ..., xsN] y =
  4456     y |> fold f xs1 |> ... |> fold f xsN
  4457 
  4458   fold f [x1, ..., xN] =
  4459     f x1 #> ... #> f xN
  4460 
  4461   (fold o fold) f [xs1, ..., xsN] =
  4462     fold f xs1 #> ... #> fold f xsN
  4463 
  4464 * Pure/library.ML: the following selectors on type 'a option are
  4465 available:
  4466 
  4467   the:               'a option -> 'a  (*partial*)
  4468   these:             'a option -> 'a  where 'a = 'b list
  4469   the_default: 'a -> 'a option -> 'a
  4470   the_list:          'a option -> 'a list
  4471 
  4472 * Pure/General: structure AList (cf. Pure/General/alist.ML) provides
  4473 basic operations for association lists, following natural argument
  4474 order; moreover the explicit equality predicate passed here avoids
  4475 potentially expensive polymorphic runtime equality checks.
  4476 The old functions may be expressed as follows:
  4477 
  4478   assoc = uncurry (AList.lookup (op =))
  4479   assocs = these oo AList.lookup (op =)
  4480   overwrite = uncurry (AList.update (op =)) o swap
  4481 
  4482 * Pure/General: structure AList (cf. Pure/General/alist.ML) provides
  4483 
  4484   val make: ('a -> 'b) -> 'a list -> ('a * 'b) list
  4485   val find: ('a * 'b -> bool) -> ('c * 'b) list -> 'a -> 'c list
  4486 
  4487 replacing make_keylist and keyfilter (occassionally used)
  4488 Naive rewrites:
  4489 
  4490   make_keylist = AList.make
  4491   keyfilter = AList.find (op =)
  4492 
  4493 * eq_fst and eq_snd now take explicit equality parameter, thus
  4494   avoiding eqtypes. Naive rewrites:
  4495 
  4496     eq_fst = eq_fst (op =)
  4497     eq_snd = eq_snd (op =)
  4498 
  4499 * Removed deprecated apl and apr (rarely used).
  4500   Naive rewrites:
  4501 
  4502     apl (n, op) =>>= curry op n
  4503     apr (op, m) =>>= fn n => op (n, m)
  4504 
  4505 * Pure/General: structure OrdList (cf. Pure/General/ord_list.ML)
  4506 provides a reasonably efficient light-weight implementation of sets as
  4507 lists.
  4508 
  4509 * Pure/General: generic tables (cf. Pure/General/table.ML) provide a
  4510 few new operations; existing lookup and update are now curried to
  4511 follow natural argument order (for use with fold etc.);
  4512 INCOMPATIBILITY, use (uncurry Symtab.lookup) etc. as last resort.
  4513 
  4514 * Pure/General: output via the Isabelle channels of
  4515 writeln/warning/error etc. is now passed through Output.output, with a
  4516 hook for arbitrary transformations depending on the print_mode
  4517 (cf. Output.add_mode -- the first active mode that provides a output
  4518 function wins).  Already formatted output may be embedded into further
  4519 text via Output.raw; the result of Pretty.string_of/str_of and derived
  4520 functions (string_of_term/cterm/thm etc.) is already marked raw to
  4521 accommodate easy composition of diagnostic messages etc.  Programmers
  4522 rarely need to care about Output.output or Output.raw at all, with
  4523 some notable exceptions: Output.output is required when bypassing the
  4524 standard channels (writeln etc.), or in token translations to produce
  4525 properly formatted results; Output.raw is required when capturing
  4526 already output material that will eventually be presented to the user
  4527 a second time.  For the default print mode, both Output.output and
  4528 Output.raw have no effect.
  4529 
  4530 * Pure/General: Output.time_accumulator NAME creates an operator ('a
  4531 -> 'b) -> 'a -> 'b to measure runtime and count invocations; the
  4532 cumulative results are displayed at the end of a batch session.
  4533 
  4534 * Pure/General: File.sysify_path and File.quote_sysify path have been
  4535 replaced by File.platform_path and File.shell_path (with appropriate
  4536 hooks).  This provides a clean interface for unusual systems where the
  4537 internal and external process view of file names are different.
  4538 
  4539 * Pure: more efficient orders for basic syntactic entities: added
  4540 fast_string_ord, fast_indexname_ord, fast_term_ord; changed sort_ord
  4541 and typ_ord to use fast_string_ord and fast_indexname_ord (term_ord is
  4542 NOT affected); structures Symtab, Vartab, Typtab, Termtab use the fast
  4543 orders now -- potential INCOMPATIBILITY for code that depends on a
  4544 particular order for Symtab.keys, Symtab.dest, etc. (consider using
  4545 Library.sort_strings on result).
  4546 
  4547 * Pure/term.ML: combinators fold_atyps, fold_aterms, fold_term_types,
  4548 fold_types traverse types/terms from left to right, observing natural
  4549 argument order.  Supercedes previous foldl_XXX versions, add_frees,
  4550 add_vars etc. have been adapted as well: INCOMPATIBILITY.
  4551 
  4552 * Pure: name spaces have been refined, with significant changes of the
  4553 internal interfaces -- INCOMPATIBILITY.  Renamed cond_extern(_table)
  4554 to extern(_table).  The plain name entry path is superceded by a
  4555 general 'naming' context, which also includes the 'policy' to produce
  4556 a fully qualified name and external accesses of a fully qualified
  4557 name; NameSpace.extend is superceded by context dependent
  4558 Sign.declare_name.  Several theory and proof context operations modify
  4559 the naming context.  Especially note Theory.restore_naming and
  4560 ProofContext.restore_naming to get back to a sane state; note that
  4561 Theory.add_path is no longer sufficient to recover from
  4562 Theory.absolute_path in particular.
  4563 
  4564 * Pure: new flags short_names (default false) and unique_names
  4565 (default true) for controlling output of qualified names.  If
  4566 short_names is set, names are printed unqualified.  If unique_names is
  4567 reset, the name prefix is reduced to the minimum required to achieve
  4568 the original result when interning again, even if there is an overlap
  4569 with earlier declarations.
  4570 
  4571 * Pure/TheoryDataFun: change of the argument structure; 'prep_ext' is
  4572 now 'extend', and 'merge' gets an additional Pretty.pp argument
  4573 (useful for printing error messages).  INCOMPATIBILITY.
  4574 
  4575 * Pure: major reorganization of the theory context.  Type Sign.sg and
  4576 Theory.theory are now identified, referring to the universal
  4577 Context.theory (see Pure/context.ML).  Actual signature and theory
  4578 content is managed as theory data.  The old code and interfaces were
  4579 spread over many files and structures; the new arrangement introduces
  4580 considerable INCOMPATIBILITY to gain more clarity:
  4581 
  4582   Context -- theory management operations (name, identity, inclusion,
  4583     parents, ancestors, merge, etc.), plus generic theory data;
  4584 
  4585   Sign -- logical signature and syntax operations (declaring consts,
  4586     types, etc.), plus certify/read for common entities;
  4587 
  4588   Theory -- logical theory operations (stating axioms, definitions,
  4589     oracles), plus a copy of logical signature operations (consts,
  4590     types, etc.); also a few basic management operations (Theory.copy,
  4591     Theory.merge, etc.)
  4592 
  4593 The most basic sign_of operations (Theory.sign_of, Thm.sign_of_thm
  4594 etc.) as well as the sign field in Thm.rep_thm etc. have been retained
  4595 for convenience -- they merely return the theory.
  4596 
  4597 * Pure: type Type.tsig is superceded by theory in most interfaces.
  4598 
  4599 * Pure: the Isar proof context type is already defined early in Pure
  4600 as Context.proof (note that ProofContext.context and Proof.context are
  4601 aliases, where the latter is the preferred name).  This enables other
  4602 Isabelle components to refer to that type even before Isar is present.
  4603 
  4604 * Pure/sign/theory: discontinued named name spaces (i.e. classK,
  4605 typeK, constK, axiomK, oracleK), but provide explicit operations for
  4606 any of these kinds.  For example, Sign.intern typeK is now
  4607 Sign.intern_type, Theory.hide_space Sign.typeK is now
  4608 Theory.hide_types.  Also note that former
  4609 Theory.hide_classes/types/consts are now
  4610 Theory.hide_classes_i/types_i/consts_i, while the non '_i' versions
  4611 internalize their arguments!  INCOMPATIBILITY.
  4612 
  4613 * Pure: get_thm interface (of PureThy and ProofContext) expects
  4614 datatype thmref (with constructors Name and NameSelection) instead of
  4615 plain string -- INCOMPATIBILITY;
  4616 
  4617 * Pure: cases produced by proof methods specify options, where NONE
  4618 means to remove case bindings -- INCOMPATIBILITY in
  4619 (RAW_)METHOD_CASES.
  4620 
  4621 * Pure: the following operations retrieve axioms or theorems from a
  4622 theory node or theory hierarchy, respectively:
  4623 
  4624   Theory.axioms_of: theory -> (string * term) list
  4625   Theory.all_axioms_of: theory -> (string * term) list
  4626   PureThy.thms_of: theory -> (string * thm) list
  4627   PureThy.all_thms_of: theory -> (string * thm) list
  4628 
  4629 * Pure: print_tac now outputs the goal through the trace channel.
  4630 
  4631 * Isar toplevel: improved diagnostics, mostly for Poly/ML only.
  4632 Reference Toplevel.debug (default false) controls detailed printing
  4633 and tracing of low-level exceptions; Toplevel.profiling (default 0)
  4634 controls execution profiling -- set to 1 for time and 2 for space
  4635 (both increase the runtime).
  4636 
  4637 * Isar session: The initial use of ROOT.ML is now always timed,
  4638 i.e. the log will show the actual process times, in contrast to the
  4639 elapsed wall-clock time that the outer shell wrapper produces.
  4640 
  4641 * Simplifier: improved handling of bound variables (nameless
  4642 representation, avoid allocating new strings).  Simprocs that invoke
  4643 the Simplifier recursively should use Simplifier.inherit_bounds to
  4644 avoid local name clashes.  Failure to do so produces warnings
  4645 "Simplifier: renamed bound variable ..."; set Simplifier.debug_bounds
  4646 for further details.
  4647 
  4648 * ML functions legacy_bindings and use_legacy_bindings produce ML fact
  4649 bindings for all theorems stored within a given theory; this may help
  4650 in porting non-Isar theories to Isar ones, while keeping ML proof
  4651 scripts for the time being.
  4652 
  4653 * ML operator HTML.with_charset specifies the charset begin used for
  4654 generated HTML files.  For example:
  4655 
  4656   HTML.with_charset "utf-8" use_thy "Hebrew";
  4657   HTML.with_charset "utf-8" use_thy "Chinese";
  4658 
  4659 
  4660 *** System ***
  4661 
  4662 * Allow symlinks to all proper Isabelle executables (Isabelle,
  4663 isabelle, isatool etc.).
  4664 
  4665 * ISABELLE_DOC_FORMAT setting specifies preferred document format (for
  4666 isatool doc, isatool mkdir, display_drafts etc.).
  4667 
  4668 * isatool usedir: option -f allows specification of the ML file to be
  4669 used by Isabelle; default is ROOT.ML.
  4670 
  4671 * New isatool version outputs the version identifier of the Isabelle
  4672 distribution being used.
  4673 
  4674 * HOL: new isatool dimacs2hol converts files in DIMACS CNF format
  4675 (containing Boolean satisfiability problems) into Isabelle/HOL
  4676 theories.
  4677 
  4678 
  4679 
  4680 New in Isabelle2004 (April 2004)
  4681 --------------------------------
  4682 
  4683 *** General ***
  4684 
  4685 * Provers/order.ML:  new efficient reasoner for partial and linear orders.
  4686   Replaces linorder.ML.
  4687 
  4688 * Pure: Greek letters (except small lambda, \<lambda>), as well as Gothic
  4689   (\<aa>...\<zz>\<AA>...\<ZZ>), calligraphic (\<A>...\<Z>), and Euler
  4690   (\<a>...\<z>), are now considered normal letters, and can therefore
  4691   be used anywhere where an ASCII letter (a...zA...Z) has until
  4692   now. COMPATIBILITY: This obviously changes the parsing of some
  4693   terms, especially where a symbol has been used as a binder, say
  4694   '\<Pi>x. ...', which is now a type error since \<Pi>x will be parsed
  4695   as an identifier.  Fix it by inserting a space around former
  4696   symbols.  Call 'isatool fixgreek' to try to fix parsing errors in
  4697   existing theory and ML files.
  4698 
  4699 * Pure: Macintosh and Windows line-breaks are now allowed in theory files.
  4700 
  4701 * Pure: single letter sub/superscripts (\<^isub> and \<^isup>) are now
  4702   allowed in identifiers. Similar to Greek letters \<^isub> is now considered
  4703   a normal (but invisible) letter. For multiple letter subscripts repeat
  4704   \<^isub> like this: x\<^isub>1\<^isub>2.
  4705 
  4706 * Pure: There are now sub-/superscripts that can span more than one
  4707   character. Text between \<^bsub> and \<^esub> is set in subscript in
  4708   ProofGeneral and LaTeX, text between \<^bsup> and \<^esup> in
  4709   superscript. The new control characters are not identifier parts.
  4710 
  4711 * Pure: Control-symbols of the form \<^raw:...> will literally print the
  4712   content of "..." to the latex file instead of \isacntrl... . The "..."
  4713   may consist of any printable characters excluding the end bracket >.
  4714 
  4715 * Pure: Using new Isar command "finalconsts" (or the ML functions
  4716   Theory.add_finals or Theory.add_finals_i) it is now possible to
  4717   declare constants "final", which prevents their being given a definition
  4718   later.  It is useful for constants whose behaviour is fixed axiomatically
  4719   rather than definitionally, such as the meta-logic connectives.
  4720 
  4721 * Pure: 'instance' now handles general arities with general sorts
  4722   (i.e. intersections of classes),
  4723 
  4724 * Presentation: generated HTML now uses a CSS style sheet to make layout
  4725   (somewhat) independent of content. It is copied from lib/html/isabelle.css.
  4726   It can be changed to alter the colors/layout of generated pages.
  4727 
  4728 
  4729 *** Isar ***
  4730 
  4731 * Tactic emulation methods rule_tac, erule_tac, drule_tac, frule_tac,
  4732   cut_tac, subgoal_tac and thin_tac:
  4733   - Now understand static (Isar) contexts.  As a consequence, users of Isar
  4734     locales are no longer forced to write Isar proof scripts.
  4735     For details see Isar Reference Manual, paragraph 4.3.2: Further tactic
  4736     emulations.
  4737   - INCOMPATIBILITY: names of variables to be instantiated may no
  4738     longer be enclosed in quotes.  Instead, precede variable name with `?'.
  4739     This is consistent with the instantiation attribute "where".
  4740 
  4741 * Attributes "where" and "of":
  4742   - Now take type variables of instantiated theorem into account when reading
  4743     the instantiation string.  This fixes a bug that caused instantiated
  4744     theorems to have too special types in some circumstances.
  4745   - "where" permits explicit instantiations of type variables.
  4746 
  4747 * Calculation commands "moreover" and "also" no longer interfere with
  4748   current facts ("this"), admitting arbitrary combinations with "then"
  4749   and derived forms.
  4750 
  4751 * Locales:
  4752   - Goal statements involving the context element "includes" no longer
  4753     generate theorems with internal delta predicates (those ending on
  4754     "_axioms") in the premise.
  4755     Resolve particular premise with <locale>.intro to obtain old form.
  4756   - Fixed bug in type inference ("unify_frozen") that prevented mix of target
  4757     specification and "includes" elements in goal statement.
  4758   - Rule sets <locale>.intro and <locale>.axioms no longer declared as
  4759     [intro?] and [elim?] (respectively) by default.
  4760   - Experimental command for instantiation of locales in proof contexts:
  4761         instantiate <label>[<attrs>]: <loc>
  4762     Instantiates locale <loc> and adds all its theorems to the current context
  4763     taking into account their attributes.  Label and attrs are optional
  4764     modifiers, like in theorem declarations.  If present, names of
  4765     instantiated theorems are qualified with <label>, and the attributes
  4766     <attrs> are applied after any attributes these theorems might have already.
  4767       If the locale has assumptions, a chained fact of the form
  4768     "<loc> t1 ... tn" is expected from which instantiations of the parameters
  4769     are derived.  The command does not support old-style locales declared
  4770     with "locale (open)".
  4771       A few (very simple) examples can be found in FOL/ex/LocaleInst.thy.
  4772 
  4773 * HOL: Tactic emulation methods induct_tac and case_tac understand static
  4774   (Isar) contexts.
  4775 
  4776 
  4777 *** HOL ***
  4778 
  4779 * Proof import: new image HOL4 contains the imported library from
  4780   the HOL4 system with about 2500 theorems. It is imported by
  4781   replaying proof terms produced by HOL4 in Isabelle. The HOL4 image
  4782   can be used like any other Isabelle image.  See
  4783   HOL/Import/HOL/README for more information.
  4784 
  4785 * Simplifier:
  4786   - Much improved handling of linear and partial orders.
  4787     Reasoners for linear and partial orders are set up for type classes
  4788     "linorder" and "order" respectively, and are added to the default simpset
  4789     as solvers.  This means that the simplifier can build transitivity chains
  4790     to solve goals from the assumptions.
  4791   - INCOMPATIBILITY: old proofs break occasionally.  Typically, applications
  4792     of blast or auto after simplification become unnecessary because the goal
  4793     is solved by simplification already.
  4794 
  4795 * Numerics: new theory Ring_and_Field contains over 250 basic numerical laws,
  4796     all proved in axiomatic type classes for semirings, rings and fields.
  4797 
  4798 * Numerics:
  4799   - Numeric types (nat, int, and in HOL-Complex rat, real, complex, etc.) are
  4800     now formalized using the Ring_and_Field theory mentioned above.
  4801   - INCOMPATIBILITY: simplification and arithmetic behaves somewhat differently
  4802     than before, because now they are set up once in a generic manner.
  4803   - INCOMPATIBILITY: many type-specific arithmetic laws have gone.
  4804     Look for the general versions in Ring_and_Field (and Power if they concern
  4805     exponentiation).
  4806 
  4807 * Type "rat" of the rational numbers is now available in HOL-Complex.
  4808 
  4809 * Records:
  4810   - Record types are now by default printed with their type abbreviation
  4811     instead of the list of all field types. This can be configured via
  4812     the reference "print_record_type_abbr".
  4813   - Simproc "record_upd_simproc" for simplification of multiple updates added
  4814     (not enabled by default).
  4815   - Simproc "record_ex_sel_eq_simproc" to simplify EX x. sel r = x resp.
  4816     EX x. x = sel r to True (not enabled by default).
  4817   - Tactic "record_split_simp_tac" to split and simplify records added.
  4818 
  4819 * 'specification' command added, allowing for definition by
  4820   specification.  There is also an 'ax_specification' command that
  4821   introduces the new constants axiomatically.
  4822 
  4823 * arith(_tac) is now able to generate counterexamples for reals as well.
  4824 
  4825 * HOL-Algebra: new locale "ring" for non-commutative rings.
  4826 
  4827 * HOL-ex: InductiveInvariant_examples illustrates advanced recursive function
  4828   definitions, thanks to Sava Krsti\'{c} and John Matthews.
  4829 
  4830 * HOL-Matrix: a first theory for matrices in HOL with an application of
  4831   matrix theory to linear programming.
  4832 
  4833 * Unions and Intersections:
  4834   The latex output syntax of UN and INT has been changed
  4835   from "\Union x \in A. B" to "\Union_{x \in A} B"
  4836   i.e. the index formulae has become a subscript.
  4837   Similarly for "\Union x. B", and for \Inter instead of \Union.
  4838 
  4839 * Unions and Intersections over Intervals:
  4840   There is new short syntax "UN i<=n. A" for "UN i:{0..n}. A". There is
  4841   also an x-symbol version with subscripts "\<Union>\<^bsub>i <= n\<^esub>. A"
  4842   like in normal math, and corresponding versions for < and for intersection.
  4843 
  4844 * HOL/List: Ordering "lexico" is renamed "lenlex" and the standard
  4845   lexicographic dictonary ordering has been added as "lexord".
  4846 
  4847 * ML: the legacy theory structures Int and List have been removed. They had
  4848   conflicted with ML Basis Library structures having the same names.
  4849 
  4850 * 'refute' command added to search for (finite) countermodels.  Only works
  4851   for a fragment of HOL.  The installation of an external SAT solver is
  4852   highly recommended.  See "HOL/Refute.thy" for details.
  4853 
  4854 * 'quickcheck' command: Allows to find counterexamples by evaluating
  4855   formulae under an assignment of free variables to random values.
  4856   In contrast to 'refute', it can deal with inductive datatypes,
  4857   but cannot handle quantifiers. See "HOL/ex/Quickcheck_Examples.thy"
  4858   for examples.
  4859 
  4860 
  4861 *** HOLCF ***
  4862 
  4863 * Streams now come with concatenation and are part of the HOLCF image
  4864 
  4865 
  4866 
  4867 New in Isabelle2003 (May 2003)
  4868 ------------------------------
  4869 
  4870 *** General ***
  4871 
  4872 * Provers/simplifier:
  4873 
  4874   - Completely reimplemented method simp (ML: Asm_full_simp_tac):
  4875     Assumptions are now subject to complete mutual simplification,
  4876     not just from left to right. The simplifier now preserves
  4877     the order of assumptions.
  4878 
  4879     Potential INCOMPATIBILITY:
  4880 
  4881     -- simp sometimes diverges where the old version did
  4882        not, e.g. invoking simp on the goal
  4883 
  4884         [| P (f x); y = x; f x = f y |] ==> Q
  4885 
  4886        now gives rise to the infinite reduction sequence
  4887 
  4888         P(f x) --(f x = f y)--> P(f y) --(y = x)--> P(f x) --(f x = f y)--> ...
  4889 
  4890        Using "simp (asm_lr)" (ML: Asm_lr_simp_tac) instead often solves this
  4891        kind of problem.
  4892 
  4893     -- Tactics combining classical reasoner and simplification (such as auto)
  4894        are also affected by this change, because many of them rely on
  4895        simp. They may sometimes diverge as well or yield a different numbers
  4896        of subgoals. Try to use e.g. force, fastsimp, or safe instead of auto
  4897        in case of problems. Sometimes subsequent calls to the classical
  4898        reasoner will fail because a preceeding call to the simplifier too
  4899        eagerly simplified the goal, e.g. deleted redundant premises.
  4900 
  4901   - The simplifier trace now shows the names of the applied rewrite rules
  4902 
  4903   - You can limit the number of recursive invocations of the simplifier
  4904     during conditional rewriting (where the simplifie tries to solve the
  4905     conditions before applying the rewrite rule):
  4906     ML "simp_depth_limit := n"
  4907     where n is an integer. Thus you can force termination where previously
  4908     the simplifier would diverge.
  4909 
  4910   - Accepts free variables as head terms in congruence rules.  Useful in Isar.
  4911 
  4912   - No longer aborts on failed congruence proof.  Instead, the
  4913     congruence is ignored.
  4914 
  4915 * Pure: New generic framework for extracting programs from constructive
  4916   proofs. See HOL/Extraction.thy for an example instantiation, as well
  4917   as HOL/Extraction for some case studies.
  4918 
  4919 * Pure: The main goal of the proof state is no longer shown by default, only
  4920 the subgoals. This behaviour is controlled by a new flag.
  4921    PG menu: Isabelle/Isar -> Settings -> Show Main Goal
  4922 (ML: Proof.show_main_goal).
  4923 
  4924 * Pure: You can find all matching introduction rules for subgoal 1, i.e. all
  4925 rules whose conclusion matches subgoal 1:
  4926       PG menu: Isabelle/Isar -> Show me -> matching rules
  4927 The rules are ordered by how closely they match the subgoal.
  4928 In particular, rules that solve a subgoal outright are displayed first
  4929 (or rather last, the way they are printed).
  4930 (ML: ProofGeneral.print_intros())
  4931 
  4932 * Pure: New flag trace_unify_fail causes unification to print
  4933 diagnostic information (PG: in trace buffer) when it fails. This is
  4934 useful for figuring out why single step proofs like rule, erule or
  4935 assumption failed.
  4936 
  4937 * Pure: Locale specifications now produce predicate definitions
  4938 according to the body of text (covering assumptions modulo local
  4939 definitions); predicate "loc_axioms" covers newly introduced text,
  4940 while "loc" is cumulative wrt. all included locale expressions; the
  4941 latter view is presented only on export into the global theory
  4942 context; potential INCOMPATIBILITY, use "(open)" option to fall back
  4943 on the old view without predicates;
  4944 
  4945 * Pure: predefined locales "var" and "struct" are useful for sharing
  4946 parameters (as in CASL, for example); just specify something like
  4947 ``var x + var y + struct M'' as import;
  4948 
  4949 * Pure: improved thms_containing: proper indexing of facts instead of
  4950 raw theorems; check validity of results wrt. current name space;
  4951 include local facts of proof configuration (also covers active
  4952 locales), cover fixed variables in index; may use "_" in term
  4953 specification; an optional limit for the number of printed facts may
  4954 be given (the default is 40);
  4955 
  4956 * Pure: disallow duplicate fact bindings within new-style theory files
  4957 (batch-mode only);
  4958 
  4959 * Provers: improved induct method: assumptions introduced by case
  4960 "foo" are split into "foo.hyps" (from the rule) and "foo.prems" (from
  4961 the goal statement); "foo" still refers to all facts collectively;
  4962 
  4963 * Provers: the function blast.overloaded has been removed: all constants
  4964 are regarded as potentially overloaded, which improves robustness in exchange
  4965 for slight decrease in efficiency;
  4966 
  4967 * Provers/linorder: New generic prover for transitivity reasoning over
  4968 linear orders.  Note: this prover is not efficient!
  4969 
  4970 * Isar: preview of problems to finish 'show' now produce an error
  4971 rather than just a warning (in interactive mode);
  4972 
  4973 
  4974 *** HOL ***
  4975 
  4976 * arith(_tac)
  4977 
  4978  - Produces a counter example if it cannot prove a goal.
  4979    Note that the counter example may be spurious if the goal is not a formula
  4980    of quantifier-free linear arithmetic.
  4981    In ProofGeneral the counter example appears in the trace buffer.
  4982 
  4983  - Knows about div k and mod k where k is a numeral of type nat or int.
  4984 
  4985  - Calls full Presburger arithmetic (by Amine Chaieb) if quantifier-free
  4986    linear arithmetic fails. This takes account of quantifiers and divisibility.
  4987    Presburger arithmetic can also be called explicitly via presburger(_tac).
  4988 
  4989 * simp's arithmetic capabilities have been enhanced a bit: it now
  4990 takes ~= in premises into account (by performing a case split);
  4991 
  4992 * simp reduces "m*(n div m) + n mod m" to n, even if the two summands
  4993 are distributed over a sum of terms;
  4994 
  4995 * New tactic "trans_tac" and method "trans" instantiate
  4996 Provers/linorder.ML for axclasses "order" and "linorder" (predicates
  4997 "<=", "<" and "=").
  4998 
  4999 * function INCOMPATIBILITIES: Pi-sets have been redefined and moved from main
  5000 HOL to Library/FuncSet; constant "Fun.op o" is now called "Fun.comp";
  5001 
  5002 * 'typedef' command has new option "open" to suppress the set
  5003 definition;
  5004 
  5005 * functions Min and Max on finite sets have been introduced (theory
  5006 Finite_Set);
  5007 
  5008 * attribute [symmetric] now works for relations as well; it turns
  5009 (x,y) : R^-1 into (y,x) : R, and vice versa;
  5010 
  5011 * induct over a !!-quantified statement (say !!x1..xn):
  5012   each "case" automatically performs "fix x1 .. xn" with exactly those names.
  5013 
  5014 * Map: `empty' is no longer a constant but a syntactic abbreviation for
  5015 %x. None. Warning: empty_def now refers to the previously hidden definition
  5016 of the empty set.
  5017 
  5018 * Algebra: formalization of classical algebra.  Intended as base for
  5019 any algebraic development in Isabelle.  Currently covers group theory
  5020 (up to Sylow's theorem) and ring theory (Universal Property of
  5021 Univariate Polynomials).  Contributions welcome;
  5022 
  5023 * GroupTheory: deleted, since its material has been moved to Algebra;
  5024 
  5025 * Complex: new directory of the complex numbers with numeric constants,
  5026 nonstandard complex numbers, and some complex analysis, standard and
  5027 nonstandard (Jacques Fleuriot);
  5028 
  5029 * HOL-Complex: new image for analysis, replacing HOL-Real and HOL-Hyperreal;
  5030 
  5031 * Hyperreal: introduced Gauge integration and hyperreal logarithms (Jacques
  5032 Fleuriot);
  5033 
  5034 * Real/HahnBanach: updated and adapted to locales;
  5035 
  5036 * NumberTheory: added Gauss's law of quadratic reciprocity (by Avigad,
  5037 Gray and Kramer);
  5038 
  5039 * UNITY: added the Meier-Sanders theory of progress sets;
  5040 
  5041 * MicroJava: bytecode verifier and lightweight bytecode verifier
  5042 as abstract algorithms, instantiated to the JVM;
  5043 
  5044 * Bali: Java source language formalization. Type system, operational
  5045 semantics, axiomatic semantics. Supported language features:
  5046 classes, interfaces, objects,virtual methods, static methods,
  5047 static/instance fields, arrays, access modifiers, definite
  5048 assignment, exceptions.
  5049 
  5050 
  5051 *** ZF ***
  5052 
  5053 * ZF/Constructible: consistency proof for AC (Gdel's constructible
  5054 universe, etc.);
  5055 
  5056 * Main ZF: virtually all theories converted to new-style format;
  5057 
  5058 
  5059 *** ML ***
  5060 
  5061 * Pure: Tactic.prove provides sane interface for internal proofs;
  5062 omits the infamous "standard" operation, so this is more appropriate
  5063 than prove_goalw_cterm in many situations (e.g. in simprocs);
  5064 
  5065 * Pure: improved error reporting of simprocs;
  5066 
  5067 * Provers: Simplifier.simproc(_i) provides sane interface for setting
  5068 up simprocs;
  5069 
  5070 
  5071 *** Document preparation ***
  5072 
  5073 * uses \par instead of \\ for line breaks in theory text. This may
  5074 shift some page breaks in large documents. To get the old behaviour
  5075 use \renewcommand{\isanewline}{\mbox{}\\\mbox{}} in root.tex.
  5076 
  5077 * minimized dependencies of isabelle.sty and isabellesym.sty on
  5078 other packages
  5079 
  5080 * \<euro> now needs package babel/greek instead of marvosym (which
  5081 broke \Rightarrow)
  5082 
  5083 * normal size for \<zero>...\<nine> (uses \mathbf instead of
  5084 textcomp package)
  5085 
  5086 
  5087 
  5088 New in Isabelle2002 (March 2002)
  5089 --------------------------------
  5090 
  5091 *** Document preparation ***
  5092 
  5093 * greatly simplified document preparation setup, including more
  5094 graceful interpretation of isatool usedir -i/-d/-D options, and more
  5095 instructive isatool mkdir; users should basically be able to get
  5096 started with "isatool mkdir HOL Test && isatool make"; alternatively,
  5097 users may run a separate document processing stage manually like this:
  5098 "isatool usedir -D output HOL Test && isatool document Test/output";
  5099 
  5100 * theory dependency graph may now be incorporated into documents;
  5101 isatool usedir -g true will produce session_graph.eps/.pdf for use
  5102 with \includegraphics of LaTeX;
  5103 
  5104 * proper spacing of consecutive markup elements, especially text
  5105 blocks after section headings;
  5106 
  5107 * support bold style (for single symbols only), input syntax is like
  5108 this: "\<^bold>\<alpha>" or "\<^bold>A";
  5109 
  5110 * \<bullet> is now output as bold \cdot by default, which looks much
  5111 better in printed text;
  5112 
  5113 * added default LaTeX bindings for \<tturnstile> and \<TTurnstile>;
  5114 note that these symbols are currently unavailable in Proof General /
  5115 X-Symbol; new symbols \<zero>, \<one>, ..., \<nine>, and \<euro>;
  5116 
  5117 * isatool latex no longer depends on changed TEXINPUTS, instead
  5118 isatool document copies the Isabelle style files to the target
  5119 location;
  5120 
  5121 
  5122 *** Isar ***
  5123 
  5124 * Pure/Provers: improved proof by cases and induction;
  5125   - 'case' command admits impromptu naming of parameters (such as
  5126     "case (Suc n)");
  5127   - 'induct' method divinates rule instantiation from the inductive
  5128     claim; no longer requires excessive ?P bindings for proper
  5129     instantiation of cases;
  5130   - 'induct' method properly enumerates all possibilities of set/type
  5131     rules; as a consequence facts may be also passed through *type*
  5132     rules without further ado;
  5133   - 'induct' method now derives symbolic cases from the *rulified*
  5134     rule (before it used to rulify cases stemming from the internal
  5135     atomized version); this means that the context of a non-atomic
  5136     statement becomes is included in the hypothesis, avoiding the
  5137     slightly cumbersome show "PROP ?case" form;
  5138   - 'induct' may now use elim-style induction rules without chaining
  5139     facts, using ``missing'' premises from the goal state; this allows
  5140     rules stemming from inductive sets to be applied in unstructured
  5141     scripts, while still benefitting from proper handling of non-atomic
  5142     statements; NB: major inductive premises need to be put first, all
  5143     the rest of the goal is passed through the induction;
  5144   - 'induct' proper support for mutual induction involving non-atomic
  5145     rule statements (uses the new concept of simultaneous goals, see
  5146     below);
  5147   - append all possible rule selections, but only use the first
  5148     success (no backtracking);
  5149   - removed obsolete "(simplified)" and "(stripped)" options of methods;
  5150   - undeclared rule case names default to numbers 1, 2, 3, ...;
  5151   - added 'print_induct_rules' (covered by help item in recent Proof
  5152     General versions);
  5153   - moved induct/cases attributes to Pure, methods to Provers;
  5154   - generic method setup instantiated for FOL and HOL;
  5155 
  5156 * Pure: support multiple simultaneous goal statements, for example
  5157 "have a: A and b: B" (same for 'theorem' etc.); being a pure
  5158 meta-level mechanism, this acts as if several individual goals had
  5159 been stated separately; in particular common proof methods need to be
  5160 repeated in order to cover all claims; note that a single elimination
  5161 step is *not* sufficient to establish the two conjunctions, so this
  5162 fails:
  5163 
  5164   assume "A & B" then have A and B ..   (*".." fails*)
  5165 
  5166 better use "obtain" in situations as above; alternative refer to
  5167 multi-step methods like 'auto', 'simp_all', 'blast+' etc.;
  5168 
  5169 * Pure: proper integration with ``locales''; unlike the original
  5170 version by Florian Kammller, Isar locales package high-level proof
  5171 contexts rather than raw logical ones (e.g. we admit to include
  5172 attributes everywhere); operations on locales include merge and
  5173 rename; support for implicit arguments (``structures''); simultaneous
  5174 type-inference over imports and text; see also HOL/ex/Locales.thy for
  5175 some examples;
  5176 
  5177 * Pure: the following commands have been ``localized'', supporting a
  5178 target locale specification "(in name)": 'lemma', 'theorem',
  5179 'corollary', 'lemmas', 'theorems', 'declare'; the results will be
  5180 stored both within the locale and at the theory level (exported and
  5181 qualified by the locale name);
  5182 
  5183 * Pure: theory goals may now be specified in ``long'' form, with
  5184 ad-hoc contexts consisting of arbitrary locale elements. for example
  5185 ``lemma foo: fixes x assumes "A x" shows "B x"'' (local syntax and
  5186 definitions may be given, too); the result is a meta-level rule with
  5187 the context elements being discharged in the obvious way;
  5188 
  5189 * Pure: new proof command 'using' allows to augment currently used
  5190 facts after a goal statement ('using' is syntactically analogous to
  5191 'apply', but acts on the goal's facts only); this allows chained facts
  5192 to be separated into parts given before and after a claim, as in
  5193 ``from a and b have C using d and e <proof>'';
  5194 
  5195 * Pure: renamed "antecedent" case to "rule_context";
  5196 
  5197 * Pure: new 'judgment' command records explicit information about the
  5198 object-logic embedding (used by several tools internally); no longer
  5199 use hard-wired "Trueprop";
  5200 
  5201 * Pure: added 'corollary' command;
  5202 
  5203 * Pure: fixed 'token_translation' command;
  5204 
  5205 * Pure: removed obsolete 'exported' attribute;
  5206 
  5207 * Pure: dummy pattern "_" in is/let is now automatically lifted over
  5208 bound variables: "ALL x. P x --> Q x" (is "ALL x. _ --> ?C x")
  5209 supersedes more cumbersome ... (is "ALL x. _ x --> ?C x");
  5210 
  5211 * Pure: method 'atomize' presents local goal premises as object-level
  5212 statements (atomic meta-level propositions); setup controlled via
  5213 rewrite rules declarations of 'atomize' attribute; example
  5214 application: 'induct' method with proper rule statements in improper
  5215 proof *scripts*;
  5216 
  5217 * Pure: emulation of instantiation tactics (rule_tac, cut_tac, etc.)
  5218 now consider the syntactic context of assumptions, giving a better
  5219 chance to get type-inference of the arguments right (this is
  5220 especially important for locales);
  5221 
  5222 * Pure: "sorry" no longer requires quick_and_dirty in interactive
  5223 mode;
  5224 
  5225 * Pure/obtain: the formal conclusion "thesis", being marked as
  5226 ``internal'', may no longer be reference directly in the text;
  5227 potential INCOMPATIBILITY, may need to use "?thesis" in rare
  5228 situations;
  5229 
  5230 * Pure: generic 'sym' attribute which declares a rule both as pure
  5231 'elim?' and for the 'symmetric' operation;
  5232 
  5233 * Pure: marginal comments ``--'' may now occur just anywhere in the
  5234 text; the fixed correlation with particular command syntax has been
  5235 discontinued;
  5236 
  5237 * Pure: new method 'rules' is particularly well-suited for proof
  5238 search in intuitionistic logic; a bit slower than 'blast' or 'fast',
  5239 but often produces more compact proof terms with less detours;
  5240 
  5241 * Pure/Provers/classical: simplified integration with pure rule
  5242 attributes and methods; the classical "intro?/elim?/dest?"
  5243 declarations coincide with the pure ones; the "rule" method no longer
  5244 includes classically swapped intros; "intro" and "elim" methods no
  5245 longer pick rules from the context; also got rid of ML declarations
  5246 AddXIs/AddXEs/AddXDs; all of this has some potential for
  5247 INCOMPATIBILITY;
  5248 
  5249 * Provers/classical: attribute 'swapped' produces classical inversions
  5250 of introduction rules;
  5251 
  5252 * Provers/simplifier: 'simplified' attribute may refer to explicit
  5253 rules instead of full simplifier context; 'iff' attribute handles
  5254 conditional rules;
  5255 
  5256 * HOL: 'typedef' now allows alternative names for Rep/Abs morphisms;
  5257 
  5258 * HOL: 'recdef' now fails on unfinished automated proofs, use
  5259 "(permissive)" option to recover old behavior;
  5260 
  5261 * HOL: 'inductive' no longer features separate (collective) attributes
  5262 for 'intros' (was found too confusing);
  5263 
  5264 * HOL: properly declared induction rules less_induct and
  5265 wf_induct_rule;
  5266 
  5267 
  5268 *** HOL ***
  5269 
  5270 * HOL: moved over to sane numeral syntax; the new policy is as
  5271 follows:
  5272 
  5273   - 0 and 1 are polymorphic constants, which are defined on any
  5274   numeric type (nat, int, real etc.);
  5275 
  5276   - 2, 3, 4, ... and -1, -2, -3, ... are polymorphic numerals, based
  5277   binary representation internally;
  5278 
  5279   - type nat has special constructor Suc, and generally prefers Suc 0
  5280   over 1::nat and Suc (Suc 0) over 2::nat;
  5281 
  5282 This change may cause significant problems of INCOMPATIBILITY; here
  5283 are some hints on converting existing sources:
  5284 
  5285   - due to the new "num" token, "-0" and "-1" etc. are now atomic
  5286   entities, so expressions involving "-" (unary or binary minus) need
  5287   to be spaced properly;
  5288 
  5289   - existing occurrences of "1" may need to be constraint "1::nat" or
  5290   even replaced by Suc 0; similar for old "2";
  5291 
  5292   - replace "#nnn" by "nnn", and "#-nnn" by "-nnn";
  5293 
  5294   - remove all special provisions on numerals in proofs;
  5295 
  5296 * HOL: simp rules nat_number expand numerals on nat to Suc/0
  5297 representation (depends on bin_arith_simps in the default context);
  5298 
  5299 * HOL: symbolic syntax for x^2 (numeral 2);
  5300 
  5301 * HOL: the class of all HOL types is now called "type" rather than
  5302 "term"; INCOMPATIBILITY, need to adapt references to this type class
  5303 in axclass/classes, instance/arities, and (usually rare) occurrences
  5304 in typings (of consts etc.); internally the class is called
  5305 "HOL.type", ML programs should refer to HOLogic.typeS;
  5306 
  5307 * HOL/record package improvements:
  5308   - new derived operations "fields" to build a partial record section,
  5309     "extend" to promote a fixed record to a record scheme, and
  5310     "truncate" for the reverse; cf. theorems "xxx.defs", which are *not*
  5311     declared as simp by default;
  5312   - shared operations ("more", "fields", etc.) now need to be always
  5313     qualified) --- potential INCOMPATIBILITY;
  5314   - removed "make_scheme" operations (use "make" with "extend") --
  5315     INCOMPATIBILITY;
  5316   - removed "more" class (simply use "term") -- INCOMPATIBILITY;
  5317   - provides cases/induct rules for use with corresponding Isar
  5318     methods (for concrete records, record schemes, concrete more
  5319     parts, and schematic more parts -- in that order);
  5320   - internal definitions directly based on a light-weight abstract
  5321     theory of product types over typedef rather than datatype;
  5322 
  5323 * HOL: generic code generator for generating executable ML code from
  5324 specifications; specific support for HOL constructs such as inductive
  5325 datatypes and sets, as well as recursive functions; can be invoked
  5326 via 'generate_code' theory section;
  5327 
  5328 * HOL: canonical cases/induct rules for n-tuples (n = 3..7);
  5329 
  5330 * HOL: consolidated and renamed several theories.  In particular:
  5331         Ord.thy has been absorbed into HOL.thy
  5332         String.thy has been absorbed into List.thy
  5333 
  5334 * HOL: concrete setsum syntax "\<Sum>i:A. b" == "setsum (%i. b) A"
  5335 (beware of argument permutation!);
  5336 
  5337 * HOL: linorder_less_split superseded by linorder_cases;
  5338 
  5339 * HOL/List: "nodups" renamed to "distinct";
  5340 
  5341 * HOL: added "The" definite description operator; move Hilbert's "Eps"
  5342 to peripheral theory "Hilbert_Choice"; some INCOMPATIBILITIES:
  5343   - Ex_def has changed, now need to use some_eq_ex
  5344 
  5345 * HOL: made split_all_tac safe; EXISTING PROOFS MAY FAIL OR LOOP, so
  5346 in this (rare) case use:
  5347 
  5348   delSWrapper "split_all_tac"
  5349   addSbefore ("unsafe_split_all_tac", unsafe_split_all_tac)
  5350 
  5351 * HOL: added safe wrapper "split_conv_tac" to claset; EXISTING PROOFS
  5352 MAY FAIL;
  5353 
  5354 * HOL: introduced f^n = f o ... o f; warning: due to the limits of
  5355 Isabelle's type classes, ^ on functions and relations has too general
  5356 a domain, namely ('a * 'b) set and 'a => 'b; this means that it may be
  5357 necessary to attach explicit type constraints;
  5358 
  5359 * HOL/Relation: the prefix name of the infix "O" has been changed from
  5360 "comp" to "rel_comp"; INCOMPATIBILITY: a few theorems have been
  5361 renamed accordingly (eg "compI" -> "rel_compI").
  5362 
  5363 * HOL: syntax translations now work properly with numerals and records
  5364 expressions;
  5365 
  5366 * HOL: bounded abstraction now uses syntax "%" / "\<lambda>" instead
  5367 of "lam" -- INCOMPATIBILITY;
  5368 
  5369 * HOL: got rid of some global declarations (potential INCOMPATIBILITY
  5370 for ML tools): const "()" renamed "Product_Type.Unity", type "unit"
  5371 renamed "Product_Type.unit";
  5372 
  5373 * HOL: renamed rtrancl_into_rtrancl2 to converse_rtrancl_into_rtrancl
  5374 
  5375 * HOL: removed obsolete theorem "optionE" (use "option.exhaust", or
  5376 the "cases" method);
  5377 
  5378 * HOL/GroupTheory: group theory examples including Sylow's theorem (by
  5379 Florian Kammller);
  5380 
  5381 * HOL/IMP: updated and converted to new-style theory format; several
  5382 parts turned into readable document, with proper Isar proof texts and
  5383 some explanations (by Gerwin Klein);
  5384 
  5385 * HOL-Real: added Complex_Numbers (by Gertrud Bauer);
  5386 
  5387 * HOL-Hyperreal is now a logic image;
  5388 
  5389 
  5390 *** HOLCF ***
  5391 
  5392 * Isar: consts/constdefs supports mixfix syntax for continuous
  5393 operations;
  5394 
  5395 * Isar: domain package adapted to new-style theory format, e.g. see
  5396 HOLCF/ex/Dnat.thy;
  5397 
  5398 * theory Lift: proper use of rep_datatype lift instead of ML hacks --
  5399 potential INCOMPATIBILITY; now use plain induct_tac instead of former
  5400 lift.induct_tac, always use UU instead of Undef;
  5401 
  5402 * HOLCF/IMP: updated and converted to new-style theory;
  5403 
  5404 
  5405 *** ZF ***
  5406 
  5407 * Isar: proper integration of logic-specific tools and packages,
  5408 including theory commands '(co)inductive', '(co)datatype',
  5409 'rep_datatype', 'inductive_cases', as well as methods 'ind_cases',
  5410 'induct_tac', 'case_tac', and 'typecheck' (with attribute 'TC');
  5411 
  5412 * theory Main no longer includes AC; for the Axiom of Choice, base
  5413 your theory on Main_ZFC;
  5414 
  5415 * the integer library now covers quotients and remainders, with many
  5416 laws relating division to addition, multiplication, etc.;
  5417 
  5418 * ZF/UNITY: Chandy and Misra's UNITY is now available in ZF, giving a
  5419 typeless version of the formalism;
  5420 
  5421 * ZF/AC, Coind, IMP, Resid: updated and converted to new-style theory
  5422 format;
  5423 
  5424 * ZF/Induct: new directory for examples of inductive definitions,
  5425 including theory Multiset for multiset orderings; converted to
  5426 new-style theory format;
  5427 
  5428 * ZF: many new theorems about lists, ordinals, etc.;
  5429 
  5430 
  5431 *** General ***
  5432 
  5433 * Pure/kernel: meta-level proof terms (by Stefan Berghofer); reference
  5434 variable proof controls level of detail: 0 = no proofs (only oracle
  5435 dependencies), 1 = lemma dependencies, 2 = compact proof terms; see
  5436 also ref manual for further ML interfaces;
  5437 
  5438 * Pure/axclass: removed obsolete ML interface
  5439 goal_subclass/goal_arity;
  5440 
  5441 * Pure/syntax: new token syntax "num" for plain numerals (without "#"
  5442 of "xnum"); potential INCOMPATIBILITY, since -0, -1 etc. are now
  5443 separate tokens, so expressions involving minus need to be spaced
  5444 properly;
  5445 
  5446 * Pure/syntax: support non-oriented infixes, using keyword "infix"
  5447 rather than "infixl" or "infixr";
  5448 
  5449 * Pure/syntax: concrete syntax for dummy type variables admits genuine
  5450 sort constraint specifications in type inference; e.g. "x::_::foo"
  5451 ensures that the type of "x" is of sort "foo" (but not necessarily a
  5452 type variable);
  5453 
  5454 * Pure/syntax: print modes "type_brackets" and "no_type_brackets"
  5455 control output of nested => (types); the default behavior is
  5456 "type_brackets";
  5457 
  5458 * Pure/syntax: builtin parse translation for "_constify" turns valued
  5459 tokens into AST constants;
  5460 
  5461 * Pure/syntax: prefer later declarations of translations and print
  5462 translation functions; potential INCOMPATIBILITY: need to reverse
  5463 multiple declarations for same syntax element constant;
  5464 
  5465 * Pure/show_hyps reset by default (in accordance to existing Isar
  5466 practice);
  5467 
  5468 * Provers/classical: renamed addaltern to addafter, addSaltern to
  5469 addSafter;
  5470 
  5471 * Provers/clasimp: ``iff'' declarations now handle conditional rules
  5472 as well;
  5473 
  5474 * system: tested support for MacOS X; should be able to get Isabelle +
  5475 Proof General to work in a plain Terminal after installing Poly/ML
  5476 (e.g. from the Isabelle distribution area) and GNU bash alone
  5477 (e.g. from http://www.apple.com); full X11, XEmacs and X-Symbol
  5478 support requires further installations, e.g. from
  5479 http://fink.sourceforge.net/);
  5480 
  5481 * system: support Poly/ML 4.1.1 (able to manage larger heaps);
  5482 
  5483 * system: reduced base memory usage by Poly/ML (approx. 20 MB instead
  5484 of 40 MB), cf. ML_OPTIONS;
  5485 
  5486 * system: Proof General keywords specification is now part of the
  5487 Isabelle distribution (see etc/isar-keywords.el);
  5488 
  5489 * system: support for persistent Proof General sessions (refrain from
  5490 outdating all loaded theories on startup); user may create writable
  5491 logic images like this: ``isabelle -q HOL Test'';
  5492 
  5493 * system: smart selection of Isabelle process versus Isabelle
  5494 interface, accommodates case-insensitive file systems (e.g. HFS+); may
  5495 run both "isabelle" and "Isabelle" even if file names are badly
  5496 damaged (executable inspects the case of the first letter of its own
  5497 name); added separate "isabelle-process" and "isabelle-interface";
  5498 
  5499 * system: refrain from any attempt at filtering input streams; no
  5500 longer support ``8bit'' encoding of old isabelle font, instead proper
  5501 iso-latin characters may now be used; the related isatools
  5502 "symbolinput" and "nonascii" have disappeared as well;
  5503 
  5504 * system: removed old "xterm" interface (the print modes "xterm" and
  5505 "xterm_color" are still available for direct use in a suitable
  5506 terminal);
  5507 
  5508 
  5509 
  5510 New in Isabelle99-2 (February 2001)
  5511 -----------------------------------
  5512 
  5513 *** Overview of INCOMPATIBILITIES ***
  5514 
  5515 * HOL: please note that theories in the Library and elsewhere often use the
  5516 new-style (Isar) format; to refer to their theorems in an ML script you must
  5517 bind them to ML identifers by e.g.      val thm_name = thm "thm_name";
  5518 
  5519 * HOL: inductive package no longer splits induction rule aggressively,
  5520 but only as far as specified by the introductions given; the old
  5521 format may be recovered via ML function complete_split_rule or attribute
  5522 'split_rule (complete)';
  5523 
  5524 * HOL: induct renamed to lfp_induct, lfp_Tarski to lfp_unfold,
  5525 gfp_Tarski to gfp_unfold;
  5526 
  5527 * HOL: contrapos, contrapos2 renamed to contrapos_nn, contrapos_pp;
  5528 
  5529 * HOL: infix "dvd" now has priority 50 rather than 70 (because it is a
  5530 relation); infix "^^" has been renamed "``"; infix "``" has been
  5531 renamed "`"; "univalent" has been renamed "single_valued";
  5532 
  5533 * HOL/Real: "rinv" and "hrinv" replaced by overloaded "inverse"
  5534 operation;
  5535 
  5536 * HOLCF: infix "`" has been renamed "$"; the symbol syntax is \<cdot>;
  5537 
  5538 * Isar: 'obtain' no longer declares "that" fact as simp/intro;
  5539 
  5540 * Isar/HOL: method 'induct' now handles non-atomic goals; as a
  5541 consequence, it is no longer monotonic wrt. the local goal context
  5542 (which is now passed through the inductive cases);
  5543 
  5544 * Document preparation: renamed standard symbols \<ll> to \<lless> and
  5545 \<gg> to \<ggreater>;
  5546 
  5547 
  5548 *** Document preparation ***
  5549 
  5550 * \isabellestyle{NAME} selects version of Isabelle output (currently
  5551 available: are "it" for near math-mode best-style output, "sl" for
  5552 slanted text style, and "tt" for plain type-writer; if no
  5553 \isabellestyle command is given, output is according to slanted
  5554 type-writer);
  5555 
  5556 * support sub/super scripts (for single symbols only), input syntax is
  5557 like this: "A\<^sup>*" or "A\<^sup>\<star>";
  5558 
  5559 * some more standard symbols; see Appendix A of the system manual for
  5560 the complete list of symbols defined in isabellesym.sty;
  5561 
  5562 * improved isabelle style files; more abstract symbol implementation
  5563 (should now use \isamath{...} and \isatext{...} in custom symbol
  5564 definitions);
  5565 
  5566 * antiquotation @{goals} and @{subgoals} for output of *dynamic* goals
  5567 state; Note that presentation of goal states does not conform to
  5568 actual human-readable proof documents.  Please do not include goal
  5569 states into document output unless you really know what you are doing!
  5570 
  5571 * proper indentation of antiquoted output with proportional LaTeX
  5572 fonts;
  5573 
  5574 * no_document ML operator temporarily disables LaTeX document
  5575 generation;
  5576 
  5577 * isatool unsymbolize tunes sources for plain ASCII communication;
  5578 
  5579 
  5580 *** Isar ***
  5581 
  5582 * Pure: Isar now suffers initial goal statements to contain unbound
  5583 schematic variables (this does not conform to actual readable proof
  5584 documents, due to unpredictable outcome and non-compositional proof
  5585 checking); users who know what they are doing may use schematic goals
  5586 for Prolog-style synthesis of proven results;
  5587 
  5588 * Pure: assumption method (an implicit finishing) now handles actual
  5589 rules as well;
  5590 
  5591 * Pure: improved 'obtain' --- moved to Pure, insert "that" into
  5592 initial goal, declare "that" only as Pure intro (only for single
  5593 steps); the "that" rule assumption may now be involved in implicit
  5594 finishing, thus ".." becomes a feasible for trivial obtains;
  5595 
  5596 * Pure: default proof step now includes 'intro_classes'; thus trivial
  5597 instance proofs may be performed by "..";
  5598 
  5599 * Pure: ?thesis / ?this / "..." now work for pure meta-level
  5600 statements as well;
  5601 
  5602 * Pure: more robust selection of calculational rules;
  5603 
  5604 * Pure: the builtin notion of 'finished' goal now includes the ==-refl
  5605 rule (as well as the assumption rule);
  5606 
  5607 * Pure: 'thm_deps' command visualizes dependencies of theorems and
  5608 lemmas, using the graph browser tool;
  5609 
  5610 * Pure: predict failure of "show" in interactive mode;
  5611 
  5612 * Pure: 'thms_containing' now takes actual terms as arguments;
  5613 
  5614 * HOL: improved method 'induct' --- now handles non-atomic goals
  5615 (potential INCOMPATIBILITY); tuned error handling;
  5616 
  5617 * HOL: cases and induct rules now provide explicit hints about the
  5618 number of facts to be consumed (0 for "type" and 1 for "set" rules);
  5619 any remaining facts are inserted into the goal verbatim;
  5620 
  5621 * HOL: local contexts (aka cases) may now contain term bindings as
  5622 well; the 'cases' and 'induct' methods new provide a ?case binding for
  5623 the result to be shown in each case;
  5624 
  5625 * HOL: added 'recdef_tc' command;
  5626 
  5627 * isatool convert assists in eliminating legacy ML scripts;
  5628 
  5629 
  5630 *** HOL ***
  5631 
  5632 * HOL/Library: a collection of generic theories to be used together
  5633 with main HOL; the theory loader path already includes this directory
  5634 by default; the following existing theories have been moved here:
  5635 HOL/Induct/Multiset, HOL/Induct/Acc (as Accessible_Part), HOL/While
  5636 (as While_Combinator), HOL/Lex/Prefix (as List_Prefix);
  5637 
  5638 * HOL/Unix: "Some aspects of Unix file-system security", a typical
  5639 modelling and verification task performed in Isabelle/HOL +
  5640 Isabelle/Isar + Isabelle document preparation (by Markus Wenzel).
  5641 
  5642 * HOL/Algebra: special summation operator SUM no longer exists, it has
  5643 been replaced by setsum; infix 'assoc' now has priority 50 (like
  5644 'dvd'); axiom 'one_not_zero' has been moved from axclass 'ring' to
  5645 'domain', this makes the theory consistent with mathematical
  5646 literature;
  5647 
  5648 * HOL basics: added overloaded operations "inverse" and "divide"
  5649 (infix "/"), syntax for generic "abs" operation, generic summation
  5650 operator \<Sum>;
  5651 
  5652 * HOL/typedef: simplified package, provide more useful rules (see also
  5653 HOL/subset.thy);
  5654 
  5655 * HOL/datatype: induction rule for arbitrarily branching datatypes is
  5656 now expressed as a proper nested rule (old-style tactic scripts may
  5657 require atomize_strip_tac to cope with non-atomic premises);
  5658 
  5659 * HOL: renamed theory "Prod" to "Product_Type", renamed "split" rule
  5660 to "split_conv" (old name still available for compatibility);
  5661 
  5662 * HOL: improved concrete syntax for strings (e.g. allows translation
  5663 rules with string literals);
  5664 
  5665 * HOL-Real-Hyperreal: this extends HOL-Real with the hyperreals
  5666  and Fleuriot's mechanization of analysis, including the transcendental
  5667  functions for the reals;
  5668 
  5669 * HOL/Real, HOL/Hyperreal: improved arithmetic simplification;
  5670 
  5671 
  5672 *** CTT ***
  5673 
  5674 * CTT: x-symbol support for Pi, Sigma, -->, : (membership); note that
  5675 "lam" is displayed as TWO lambda-symbols
  5676 
  5677 * CTT: theory Main now available, containing everything (that is, Bool
  5678 and Arith);
  5679 
  5680 
  5681 *** General ***
  5682 
  5683 * Pure: the Simplifier has been implemented properly as a derived rule
  5684 outside of the actual kernel (at last!); the overall performance
  5685 penalty in practical applications is about 50%, while reliability of
  5686 the Isabelle inference kernel has been greatly improved;
  5687 
  5688 * print modes "brackets" and "no_brackets" control output of nested =>
  5689 (types) and ==> (props); the default behaviour is "brackets";
  5690 
  5691 * Provers: fast_tac (and friends) now handle actual object-logic rules
  5692 as assumptions as well;
  5693 
  5694 * system: support Poly/ML 4.0;
  5695 
  5696 * system: isatool install handles KDE version 1 or 2;
  5697 
  5698 
  5699 
  5700 New in Isabelle99-1 (October 2000)
  5701 ----------------------------------
  5702 
  5703 *** Overview of INCOMPATIBILITIES ***
  5704 
  5705 * HOL: simplification of natural numbers is much changed; to partly
  5706 recover the old behaviour (e.g. to prevent n+n rewriting to #2*n)
  5707 issue the following ML commands:
  5708 
  5709   Delsimprocs Nat_Numeral_Simprocs.cancel_numerals;
  5710   Delsimprocs [Nat_Numeral_Simprocs.combine_numerals];
  5711 
  5712 * HOL: simplification no longer dives into case-expressions; this is
  5713 controlled by "t.weak_case_cong" for each datatype t;
  5714 
  5715 * HOL: nat_less_induct renamed to less_induct;
  5716 
  5717 * HOL: systematic renaming of the SOME (Eps) rules, may use isatool
  5718 fixsome to patch .thy and .ML sources automatically;
  5719 
  5720   select_equality  -> some_equality
  5721   select_eq_Ex     -> some_eq_ex
  5722   selectI2EX       -> someI2_ex
  5723   selectI2         -> someI2
  5724   selectI          -> someI
  5725   select1_equality -> some1_equality
  5726   Eps_sym_eq       -> some_sym_eq_trivial
  5727   Eps_eq           -> some_eq_trivial
  5728 
  5729 * HOL: exhaust_tac on datatypes superceded by new generic case_tac;
  5730 
  5731 * HOL: removed obsolete theorem binding expand_if (refer to split_if
  5732 instead);
  5733 
  5734 * HOL: the recursion equations generated by 'recdef' are now called
  5735 f.simps instead of f.rules;
  5736 
  5737 * HOL: qed_spec_mp now also handles bounded ALL as well;
  5738 
  5739 * HOL: 0 is now overloaded, so the type constraint ":: nat" may
  5740 sometimes be needed;
  5741 
  5742 * HOL: the constant for "f``x" is now "image" rather than "op ``";
  5743 
  5744 * HOL: the constant for "f-``x" is now "vimage" rather than "op -``";
  5745 
  5746 * HOL: the disjoint sum is now "<+>" instead of "Plus"; the cartesian
  5747 product is now "<*>" instead of "Times"; the lexicographic product is
  5748 now "<*lex*>" instead of "**";
  5749 
  5750 * HOL: theory Sexp is now in HOL/Induct examples (it used to be part
  5751 of main HOL, but was unused); better use HOL's datatype package;
  5752 
  5753 * HOL: removed "symbols" syntax for constant "override" of theory Map;
  5754 the old syntax may be recovered as follows:
  5755 
  5756   syntax (symbols)
  5757     override  :: "('a ~=> 'b) => ('a ~=> 'b) => ('a ~=> 'b)"
  5758       (infixl "\\<oplus>" 100)
  5759 
  5760 * HOL/Real: "rabs" replaced by overloaded "abs" function;
  5761 
  5762 * HOL/ML: even fewer consts are declared as global (see theories Ord,
  5763 Lfp, Gfp, WF); this only affects ML packages that refer to const names
  5764 internally;
  5765 
  5766 * HOL and ZF: syntax for quotienting wrt an equivalence relation
  5767 changed from A/r to A//r;
  5768 
  5769 * ZF: new treatment of arithmetic (nat & int) may break some old
  5770 proofs;
  5771 
  5772 * Isar: renamed some attributes (RS -> THEN, simplify -> simplified,
  5773 rulify -> rule_format, elimify -> elim_format, ...);
  5774 
  5775 * Isar/Provers: intro/elim/dest attributes changed; renamed
  5776 intro/intro!/intro!! flags to intro!/intro/intro? (in most cases, one
  5777 should have to change intro!! to intro? only); replaced "delrule" by
  5778 "rule del";
  5779 
  5780 * Isar/HOL: renamed "intrs" to "intros" in inductive definitions;
  5781 
  5782 * Provers: strengthened force_tac by using new first_best_tac;
  5783 
  5784 * LaTeX document preparation: several changes of isabelle.sty (see
  5785 lib/texinputs);
  5786 
  5787 
  5788 *** Document preparation ***
  5789 
  5790 * formal comments (text blocks etc.) in new-style theories may now
  5791 contain antiquotations of thm/prop/term/typ/text to be presented
  5792 according to latex print mode; concrete syntax is like this:
  5793 @{term[show_types] "f(x) = a + x"};
  5794 
  5795 * isatool mkdir provides easy setup of Isabelle session directories,
  5796 including proper document sources;
  5797 
  5798 * generated LaTeX sources are now deleted after successful run
  5799 (isatool document -c); may retain a copy somewhere else via -D option
  5800 of isatool usedir;
  5801 
  5802 * isatool usedir -D now lets isatool latex -o sty update the Isabelle
  5803 style files, achieving self-contained LaTeX sources and simplifying
  5804 LaTeX debugging;
  5805 
  5806 * old-style theories now produce (crude) LaTeX output as well;
  5807 
  5808 * browser info session directories are now self-contained (may be put
  5809 on WWW server seperately); improved graphs of nested sessions; removed
  5810 graph for 'all sessions';
  5811 
  5812 * several improvements in isabelle style files; \isabellestyle{it}
  5813 produces fake math mode output; \isamarkupheader is now \section by
  5814 default; see lib/texinputs/isabelle.sty etc.;
  5815 
  5816 
  5817 *** Isar ***
  5818 
  5819 * Isar/Pure: local results and corresponding term bindings are now
  5820 subject to Hindley-Milner polymorphism (similar to ML); this
  5821 accommodates incremental type-inference very nicely;
  5822 
  5823 * Isar/Pure: new derived language element 'obtain' supports
  5824 generalized existence reasoning;
  5825 
  5826 * Isar/Pure: new calculational elements 'moreover' and 'ultimately'
  5827 support accumulation of results, without applying any rules yet;
  5828 useful to collect intermediate results without explicit name
  5829 references, and for use with transitivity rules with more than 2
  5830 premises;
  5831 
  5832 * Isar/Pure: scalable support for case-analysis type proofs: new
  5833 'case' language element refers to local contexts symbolically, as
  5834 produced by certain proof methods; internally, case names are attached
  5835 to theorems as "tags";
  5836 
  5837 * Isar/Pure: theory command 'hide' removes declarations from
  5838 class/type/const name spaces;
  5839 
  5840 * Isar/Pure: theory command 'defs' supports option "(overloaded)" to
  5841 indicate potential overloading;
  5842 
  5843 * Isar/Pure: changed syntax of local blocks from {{ }} to { };
  5844 
  5845 * Isar/Pure: syntax of sorts made 'inner', i.e. have to write
  5846 "{a,b,c}" instead of {a,b,c};
  5847 
  5848 * Isar/Pure now provides its own version of intro/elim/dest
  5849 attributes; useful for building new logics, but beware of confusion
  5850 with the version in Provers/classical;
  5851 
  5852 * Isar/Pure: the local context of (non-atomic) goals is provided via
  5853 case name 'antecedent';
  5854 
  5855 * Isar/Pure: removed obsolete 'transfer' attribute (transfer of thms
  5856 to the current context is now done automatically);
  5857 
  5858 * Isar/Pure: theory command 'method_setup' provides a simple interface
  5859 for definining proof methods in ML;
  5860 
  5861 * Isar/Provers: intro/elim/dest attributes changed; renamed
  5862 intro/intro!/intro!! flags to intro!/intro/intro? (INCOMPATIBILITY, in
  5863 most cases, one should have to change intro!! to intro? only);
  5864 replaced "delrule" by "rule del";
  5865 
  5866 * Isar/Provers: new 'hypsubst' method, plain 'subst' method and
  5867 'symmetric' attribute (the latter supercedes [RS sym]);
  5868 
  5869 * Isar/Provers: splitter support (via 'split' attribute and 'simp'
  5870 method modifier); 'simp' method: 'only:' modifier removes loopers as
  5871 well (including splits);
  5872 
  5873 * Isar/Provers: Simplifier and Classical methods now support all kind
  5874 of modifiers used in the past, including 'cong', 'iff', etc.
  5875 
  5876 * Isar/Provers: added 'fastsimp' and 'clarsimp' methods (combination
  5877 of Simplifier and Classical reasoner);
  5878 
  5879 * Isar/HOL: new proof method 'cases' and improved version of 'induct'
  5880 now support named cases; major packages (inductive, datatype, primrec,
  5881 recdef) support case names and properly name parameters;
  5882 
  5883 * Isar/HOL: new transitivity rules for substitution in inequalities --
  5884 monotonicity conditions are extracted to be proven at end of
  5885 calculations;
  5886 
  5887 * Isar/HOL: removed 'case_split' thm binding, should use 'cases' proof
  5888 method anyway;
  5889 
  5890 * Isar/HOL: removed old expand_if = split_if; theorems if_splits =
  5891 split_if split_if_asm; datatype package provides theorems foo.splits =
  5892 foo.split foo.split_asm for each datatype;
  5893 
  5894 * Isar/HOL: tuned inductive package, rename "intrs" to "intros"
  5895 (potential INCOMPATIBILITY), emulation of mk_cases feature for proof
  5896 scripts: new 'inductive_cases' command and 'ind_cases' method; (Note:
  5897 use "(cases (simplified))" method in proper proof texts);
  5898 
  5899 * Isar/HOL: added global 'arith_split' attribute for 'arith' method;
  5900 
  5901 * Isar: names of theorems etc. may be natural numbers as well;
  5902 
  5903 * Isar: 'pr' command: optional arguments for goals_limit and
  5904 ProofContext.prems_limit; no longer prints theory contexts, but only
  5905 proof states;
  5906 
  5907 * Isar: diagnostic commands 'pr', 'thm', 'prop', 'term', 'typ' admit
  5908 additional print modes to be specified; e.g. "pr(latex)" will print
  5909 proof state according to the Isabelle LaTeX style;
  5910 
  5911 * Isar: improved support for emulating tactic scripts, including proof
  5912 methods 'rule_tac' etc., 'cut_tac', 'thin_tac', 'subgoal_tac',
  5913 'rename_tac', 'rotate_tac', 'tactic', and 'case_tac' / 'induct_tac'
  5914 (for HOL datatypes);
  5915 
  5916 * Isar: simplified (more robust) goal selection of proof methods: 1st
  5917 goal, all goals, or explicit goal specifier (tactic emulation); thus
  5918 'proof method scripts' have to be in depth-first order;
  5919 
  5920 * Isar: tuned 'let' syntax: replaced 'as' keyword by 'and';
  5921 
  5922 * Isar: removed 'help' command, which hasn't been too helpful anyway;
  5923 should instead use individual commands for printing items
  5924 (print_commands, print_methods etc.);
  5925 
  5926 * Isar: added 'nothing' --- the empty list of theorems;
  5927 
  5928 
  5929 *** HOL ***
  5930 
  5931 * HOL/MicroJava: formalization of a fragment of Java, together with a
  5932 corresponding virtual machine and a specification of its bytecode
  5933 verifier and a lightweight bytecode verifier, including proofs of
  5934 type-safety; by Gerwin Klein, Tobias Nipkow, David von Oheimb, and
  5935 Cornelia Pusch (see also the homepage of project Bali at
  5936 http://isabelle.in.tum.de/Bali/);
  5937 
  5938 * HOL/Algebra: new theory of rings and univariate polynomials, by
  5939 Clemens Ballarin;
  5940 
  5941 * HOL/NumberTheory: fundamental Theorem of Arithmetic, Chinese
  5942 Remainder Theorem, Fermat/Euler Theorem, Wilson's Theorem, by Thomas M
  5943 Rasmussen;
  5944 
  5945 * HOL/Lattice: fundamental concepts of lattice theory and order
  5946 structures, including duals, properties of bounds versus algebraic
  5947 laws, lattice operations versus set-theoretic ones, the Knaster-Tarski
  5948 Theorem for complete lattices etc.; may also serve as a demonstration
  5949 for abstract algebraic reasoning using axiomatic type classes, and
  5950 mathematics-style proof in Isabelle/Isar; by Markus Wenzel;
  5951 
  5952 * HOL/Prolog: a (bare-bones) implementation of Lambda-Prolog, by David
  5953 von Oheimb;
  5954 
  5955 * HOL/IMPP: extension of IMP with local variables and mutually
  5956 recursive procedures, by David von Oheimb;
  5957 
  5958 * HOL/Lambda: converted into new-style theory and document;
  5959 
  5960 * HOL/ex/Multiquote: example of multiple nested quotations and
  5961 anti-quotations -- basically a generalized version of de-Bruijn
  5962 representation; very useful in avoiding lifting of operations;
  5963 
  5964 * HOL/record: added general record equality rule to simpset; fixed
  5965 select-update simplification procedure to handle extended records as
  5966 well; admit "r" as field name;
  5967 
  5968 * HOL: 0 is now overloaded over the new sort "zero", allowing its use with
  5969 other numeric types and also as the identity of groups, rings, etc.;
  5970 
  5971 * HOL: new axclass plus_ac0 for addition with the AC-laws and 0 as identity.
  5972 Types nat and int belong to this axclass;
  5973 
  5974 * HOL: greatly improved simplification involving numerals of type nat, int, real:
  5975    (i + #8 + j) = Suc k simplifies to  #7 + (i + j) = k
  5976    i*j + k + j*#3*i     simplifies to  #4*(i*j) + k
  5977   two terms #m*u and #n*u are replaced by #(m+n)*u
  5978     (where #m, #n and u can implicitly be 1; this is simproc combine_numerals)
  5979   and the term/formula #m*u+x ~~ #n*u+y simplifies simplifies to #(m-n)+x ~~ y
  5980     or x ~~ #(n-m)+y, where ~~ is one of = < <= or - (simproc cancel_numerals);
  5981 
  5982 * HOL: meson_tac is available (previously in ex/meson.ML); it is a
  5983 powerful prover for predicate logic but knows nothing of clasets; see
  5984 ex/mesontest.ML and ex/mesontest2.ML for example applications;
  5985 
  5986 * HOL: new version of "case_tac" subsumes both boolean case split and
  5987 "exhaust_tac" on datatypes; INCOMPATIBILITY: exhaust_tac no longer
  5988 exists, may define val exhaust_tac = case_tac for ad-hoc portability;
  5989 
  5990 * HOL: simplification no longer dives into case-expressions: only the
  5991 selector expression is simplified, but not the remaining arms; to
  5992 enable full simplification of case-expressions for datatype t, you may
  5993 remove t.weak_case_cong from the simpset, either globally (Delcongs
  5994 [thm"t.weak_case_cong"];) or locally (delcongs [...]).
  5995 
  5996 * HOL/recdef: the recursion equations generated by 'recdef' for
  5997 function 'f' are now called f.simps instead of f.rules; if all
  5998 termination conditions are proved automatically, these simplification
  5999 rules are added to the simpset, as in primrec; rules may be named
  6000 individually as well, resulting in a separate list of theorems for
  6001 each equation;
  6002 
  6003 * HOL/While is a new theory that provides a while-combinator. It
  6004 permits the definition of tail-recursive functions without the
  6005 provision of a termination measure. The latter is necessary once the
  6006 invariant proof rule for while is applied.
  6007 
  6008 * HOL: new (overloaded) notation for the set of elements below/above
  6009 some element: {..u}, {..u(}, {l..}, {)l..}. See theory SetInterval.
  6010 
  6011 * HOL: theorems impI, allI, ballI bound as "strip";
  6012 
  6013 * HOL: new tactic induct_thm_tac: thm -> string -> int -> tactic
  6014 induct_tac th "x1 ... xn" expects th to have a conclusion of the form
  6015 P v1 ... vn and abbreviates res_inst_tac [("v1","x1"),...,("vn","xn")] th;
  6016 
  6017 * HOL/Real: "rabs" replaced by overloaded "abs" function;
  6018 
  6019 * HOL: theory Sexp now in HOL/Induct examples (it used to be part of
  6020 main HOL, but was unused);
  6021 
  6022 * HOL: fewer consts declared as global (e.g. have to refer to
  6023 "Lfp.lfp" instead of "lfp" internally; affects ML packages only);
  6024 
  6025 * HOL: tuned AST representation of nested pairs, avoiding bogus output
  6026 in case of overlap with user translations (e.g. judgements over
  6027 tuples); (note that the underlying logical represenation is still
  6028 bogus);
  6029 
  6030 
  6031 *** ZF ***
  6032 
  6033 * ZF: simplification automatically cancels common terms in arithmetic
  6034 expressions over nat and int;
  6035 
  6036 * ZF: new treatment of nat to minimize type-checking: all operators
  6037 coerce their operands to a natural number using the function natify,
  6038 making the algebraic laws unconditional;
  6039 
  6040 * ZF: as above, for int: operators coerce their operands to an integer
  6041 using the function intify;
  6042 
  6043 * ZF: the integer library now contains many of the usual laws for the
  6044 orderings, including $<=, and monotonicity laws for $+ and $*;
  6045 
  6046 * ZF: new example ZF/ex/NatSum to demonstrate integer arithmetic
  6047 simplification;
  6048 
  6049 * FOL and ZF: AddIffs now available, giving theorems of the form P<->Q
  6050 to the simplifier and classical reasoner simultaneously;
  6051 
  6052 
  6053 *** General ***
  6054 
  6055 * Provers: blast_tac now handles actual object-logic rules as
  6056 assumptions; note that auto_tac uses blast_tac internally as well;
  6057 
  6058 * Provers: new functions rulify/rulify_no_asm: thm -> thm for turning
  6059 outer -->/All/Ball into ==>/!!; qed_spec_mp now uses rulify_no_asm;
  6060 
  6061 * Provers: delrules now handles destruct rules as well (no longer need
  6062 explicit make_elim);
  6063 
  6064 * Provers: Blast_tac now warns of and ignores "weak elimination rules" e.g.
  6065   [| inj ?f;          ?f ?x = ?f ?y; ?x = ?y ==> ?W |] ==> ?W
  6066 use instead the strong form,
  6067   [| inj ?f; ~ ?W ==> ?f ?x = ?f ?y; ?x = ?y ==> ?W |] ==> ?W
  6068 in HOL, FOL and ZF the function cla_make_elim will create such rules
  6069 from destruct-rules;
  6070 
  6071 * Provers: Simplifier.easy_setup provides a fast path to basic
  6072 Simplifier setup for new object-logics;
  6073 
  6074 * Pure: AST translation rules no longer require constant head on LHS;
  6075 
  6076 * Pure: improved name spaces: ambiguous output is qualified; support
  6077 for hiding of names;
  6078 
  6079 * system: smart setup of canonical ML_HOME, ISABELLE_INTERFACE, and
  6080 XSYMBOL_HOME; no longer need to do manual configuration in most
  6081 situations;
  6082 
  6083 * system: compression of ML heaps images may now be controlled via -c
  6084 option of isabelle and isatool usedir (currently only observed by
  6085 Poly/ML);
  6086 
  6087 * system: isatool installfonts may handle X-Symbol fonts as well (very
  6088 useful for remote X11);
  6089 
  6090 * system: provide TAGS file for Isabelle sources;
  6091 
  6092 * ML: infix 'OF' is a version of 'MRS' with more appropriate argument
  6093 order;
  6094 
  6095 * ML: renamed flags Syntax.trace_norm_ast to Syntax.trace_ast; global
  6096 timing flag supersedes proof_timing and Toplevel.trace;
  6097 
  6098 * ML: new combinators |>> and |>>> for incremental transformations
  6099 with secondary results (e.g. certain theory extensions):
  6100 
  6101 * ML: PureThy.add_defs gets additional argument to indicate potential
  6102 overloading (usually false);
  6103 
  6104 * ML: PureThy.add_thms/add_axioms/add_defs now return theorems as
  6105 results;
  6106 
  6107 
  6108 
  6109 New in Isabelle99 (October 1999)
  6110 --------------------------------
  6111 
  6112 *** Overview of INCOMPATIBILITIES (see below for more details) ***
  6113 
  6114 * HOL: The THEN and ELSE parts of conditional expressions (if P then x else y)
  6115 are no longer simplified.  (This allows the simplifier to unfold recursive
  6116 functional programs.)  To restore the old behaviour, declare
  6117 
  6118     Delcongs [if_weak_cong];
  6119 
  6120 * HOL: Removed the obsolete syntax "Compl A"; use -A for set
  6121 complement;
  6122 
  6123 * HOL: the predicate "inj" is now defined by translation to "inj_on";
  6124 
  6125 * HOL/datatype: mutual_induct_tac no longer exists --
  6126   use induct_tac "x_1 ... x_n" instead of mutual_induct_tac ["x_1", ..., "x_n"]
  6127 
  6128 * HOL/typedef: fixed type inference for representing set; type
  6129 arguments now have to occur explicitly on the rhs as type constraints;
  6130 
  6131 * ZF: The con_defs part of an inductive definition may no longer refer
  6132 to constants declared in the same theory;
  6133 
  6134 * HOL, ZF: the function mk_cases, generated by the inductive
  6135 definition package, has lost an argument.  To simplify its result, it
  6136 uses the default simpset instead of a supplied list of theorems.
  6137 
  6138 * HOL/List: the constructors of type list are now Nil and Cons;
  6139 
  6140 * Simplifier: the type of the infix ML functions
  6141         setSSolver addSSolver setSolver addSolver
  6142 is now  simpset * solver -> simpset  where `solver' is a new abstract type
  6143 for packaging solvers. A solver is created via
  6144         mk_solver: string -> (thm list -> int -> tactic) -> solver
  6145 where the string argument is only a comment.
  6146 
  6147 
  6148 *** Proof tools ***
  6149 
  6150 * Provers/Arith/fast_lin_arith.ML contains a functor for creating a
  6151 decision procedure for linear arithmetic. Currently it is used for
  6152 types `nat', `int', and `real' in HOL (see below); it can, should and
  6153 will be instantiated for other types and logics as well.
  6154 
  6155 * The simplifier now accepts rewrite rules with flexible heads, eg
  6156      hom ?f ==> ?f(?x+?y) = ?f ?x + ?f ?y
  6157   They are applied like any rule with a non-pattern lhs, i.e. by first-order
  6158   matching.
  6159 
  6160 
  6161 *** General ***
  6162 
  6163 * New Isabelle/Isar subsystem provides an alternative to traditional
  6164 tactical theorem proving; together with the ProofGeneral/isar user
  6165 interface it offers an interactive environment for developing human
  6166 readable proof documents (Isar == Intelligible semi-automated
  6167 reasoning); for further information see isatool doc isar-ref,
  6168 src/HOL/Isar_examples and http://isabelle.in.tum.de/Isar/
  6169 
  6170 * improved and simplified presentation of theories: better HTML markup
  6171 (including colors), graph views in several sizes; isatool usedir now
  6172 provides a proper interface for user theories (via -P option); actual
  6173 document preparation based on (PDF)LaTeX is available as well (for
  6174 new-style theories only); see isatool doc system for more information;
  6175 
  6176 * native support for Proof General, both for classic Isabelle and
  6177 Isabelle/Isar;
  6178 
  6179 * ML function thm_deps visualizes dependencies of theorems and lemmas,
  6180 using the graph browser tool;
  6181 
  6182 * Isabelle manuals now also available as PDF;
  6183 
  6184 * theory loader rewritten from scratch (may not be fully
  6185 bug-compatible); old loadpath variable has been replaced by show_path,
  6186 add_path, del_path, reset_path functions; new operations such as
  6187 update_thy, touch_thy, remove_thy, use/update_thy_only (see also
  6188 isatool doc ref);
  6189 
  6190 * improved isatool install: option -k creates KDE application icon,
  6191 option -p DIR installs standalone binaries;
  6192 
  6193 * added ML_PLATFORM setting (useful for cross-platform installations);
  6194 more robust handling of platform specific ML images for SML/NJ;
  6195 
  6196 * the settings environment is now statically scoped, i.e. it is never
  6197 created again in sub-processes invoked from isabelle, isatool, or
  6198 Isabelle;
  6199 
  6200 * path element specification '~~' refers to '$ISABELLE_HOME';
  6201 
  6202 * in locales, the "assumes" and "defines" parts may be omitted if
  6203 empty;
  6204 
  6205 * new print_mode "xsymbols" for extended symbol support (e.g. genuine
  6206 long arrows);
  6207 
  6208 * new print_mode "HTML";
  6209 
  6210 * new flag show_tags controls display of tags of theorems (which are
  6211 basically just comments that may be attached by some tools);
  6212 
  6213 * Isamode 2.6 requires patch to accomodate change of Isabelle font
  6214 mode and goal output format:
  6215 
  6216 diff -r Isamode-2.6/elisp/isa-load.el Isamode/elisp/isa-load.el
  6217 244c244
  6218 <       (list (isa-getenv "ISABELLE") "-msymbols" logic-name)
  6219 ---
  6220 >       (list (isa-getenv "ISABELLE") "-misabelle_font" "-msymbols" logic-name)
  6221 diff -r Isabelle-2.6/elisp/isa-proofstate.el Isamode/elisp/isa-proofstate.el
  6222 181c181
  6223 < (defconst proofstate-proofstart-regexp "^Level [0-9]+$"
  6224 ---
  6225 > (defconst proofstate-proofstart-regexp "^Level [0-9]+"
  6226 
  6227 * function bind_thms stores lists of theorems (cf. bind_thm);
  6228 
  6229 * new shorthand tactics ftac, eatac, datac, fatac;
  6230 
  6231 * qed (and friends) now accept "" as result name; in that case the
  6232 theorem is not stored, but proper checks and presentation of the
  6233 result still apply;
  6234 
  6235 * theorem database now also indexes constants "Trueprop", "all",
  6236 "==>", "=="; thus thms_containing, findI etc. may retrieve more rules;
  6237 
  6238 
  6239 *** HOL ***
  6240 
  6241 ** HOL arithmetic **
  6242 
  6243 * There are now decision procedures for linear arithmetic over nat and
  6244 int:
  6245 
  6246 1. arith_tac copes with arbitrary formulae involving `=', `<', `<=',
  6247 `+', `-', `Suc', `min', `max' and numerical constants; other subterms
  6248 are treated as atomic; subformulae not involving type `nat' or `int'
  6249 are ignored; quantified subformulae are ignored unless they are
  6250 positive universal or negative existential. The tactic has to be
  6251 invoked by hand and can be a little bit slow. In particular, the
  6252 running time is exponential in the number of occurrences of `min' and
  6253 `max', and `-' on `nat'.
  6254 
  6255 2. fast_arith_tac is a cut-down version of arith_tac: it only takes
  6256 (negated) (in)equalities among the premises and the conclusion into
  6257 account (i.e. no compound formulae) and does not know about `min' and
  6258 `max', and `-' on `nat'. It is fast and is used automatically by the
  6259 simplifier.
  6260 
  6261 NB: At the moment, these decision procedures do not cope with mixed
  6262 nat/int formulae where the two parts interact, such as `m < n ==>
  6263 int(m) < int(n)'.
  6264 
  6265 * HOL/Numeral provides a generic theory of numerals (encoded
  6266 efficiently as bit strings); setup for types nat/int/real is in place;
  6267 INCOMPATIBILITY: since numeral syntax is now polymorphic, rather than
  6268 int, existing theories and proof scripts may require a few additional
  6269 type constraints;
  6270 
  6271 * integer division and remainder can now be performed on constant
  6272 arguments;
  6273 
  6274 * many properties of integer multiplication, division and remainder
  6275 are now available;
  6276 
  6277 * An interface to the Stanford Validity Checker (SVC) is available through the
  6278 tactic svc_tac.  Propositional tautologies and theorems of linear arithmetic
  6279 are proved automatically.  SVC must be installed separately, and its results
  6280 must be TAKEN ON TRUST (Isabelle does not check the proofs, but tags any
  6281 invocation of the underlying oracle).  For SVC see
  6282   http://verify.stanford.edu/SVC
  6283 
  6284 * IsaMakefile: the HOL-Real target now builds an actual image;
  6285 
  6286 
  6287 ** HOL misc **
  6288 
  6289 * HOL/Real/HahnBanach: the Hahn-Banach theorem for real vector spaces
  6290 (in Isabelle/Isar) -- by Gertrud Bauer;
  6291 
  6292 * HOL/BCV: generic model of bytecode verification, i.e. data-flow
  6293 analysis for assembly languages with subtypes;
  6294 
  6295 * HOL/TLA (Lamport's Temporal Logic of Actions): major reorganization
  6296 -- avoids syntactic ambiguities and treats state, transition, and
  6297 temporal levels more uniformly; introduces INCOMPATIBILITIES due to
  6298 changed syntax and (many) tactics;
  6299 
  6300 * HOL/inductive: Now also handles more general introduction rules such
  6301   as "ALL y. (y, x) : r --> y : acc r ==> x : acc r"; monotonicity
  6302   theorems are now maintained within the theory (maintained via the
  6303   "mono" attribute);
  6304 
  6305 * HOL/datatype: Now also handles arbitrarily branching datatypes
  6306   (using function types) such as
  6307 
  6308   datatype 'a tree = Atom 'a | Branch "nat => 'a tree"
  6309 
  6310 * HOL/record: record_simproc (part of the default simpset) takes care
  6311 of selectors applied to updated records; record_split_tac is no longer
  6312 part of the default claset; update_defs may now be removed from the
  6313 simpset in many cases; COMPATIBILITY: old behavior achieved by
  6314 
  6315   claset_ref () := claset() addSWrapper record_split_wrapper;
  6316   Delsimprocs [record_simproc]
  6317 
  6318 * HOL/typedef: fixed type inference for representing set; type
  6319 arguments now have to occur explicitly on the rhs as type constraints;
  6320 
  6321 * HOL/recdef (TFL): 'congs' syntax now expects comma separated list of theorem
  6322 names rather than an ML expression;
  6323 
  6324 * HOL/defer_recdef (TFL): like recdef but the well-founded relation can be
  6325 supplied later.  Program schemes can be defined, such as
  6326     "While B C s = (if B s then While B C (C s) else s)"
  6327 where the well-founded relation can be chosen after B and C have been given.
  6328 
  6329 * HOL/List: the constructors of type list are now Nil and Cons;
  6330 INCOMPATIBILITY: while [] and infix # syntax is still there, of
  6331 course, ML tools referring to List.list.op # etc. have to be adapted;
  6332 
  6333 * HOL_quantifiers flag superseded by "HOL" print mode, which is
  6334 disabled by default; run isabelle with option -m HOL to get back to
  6335 the original Gordon/HOL-style output;
  6336 
  6337 * HOL/Ord.thy: new bounded quantifier syntax (input only): ALL x<y. P,
  6338 ALL x<=y. P, EX x<y. P, EX x<=y. P;
  6339 
  6340 * HOL basic syntax simplified (more orthogonal): all variants of
  6341 All/Ex now support plain / symbolic / HOL notation; plain syntax for
  6342 Eps operator is provided as well: "SOME x. P[x]";
  6343 
  6344 * HOL/Sum.thy: sum_case has been moved to HOL/Datatype;
  6345 
  6346 * HOL/Univ.thy: infix syntax <*>, <+>, <**>, <+> eliminated and made
  6347 thus available for user theories;
  6348 
  6349 * HOLCF/IOA/Sequents: renamed 'Cons' to 'Consq' to avoid clash with
  6350 HOL/List; hardly an INCOMPATIBILITY since '>>' syntax is used all the
  6351 time;
  6352 
  6353 * HOL: new tactic smp_tac: int -> int -> tactic, which applies spec
  6354 several times and then mp;
  6355 
  6356 
  6357 *** LK ***
  6358 
  6359 * the notation <<...>> is now available as a notation for sequences of
  6360 formulas;
  6361 
  6362 * the simplifier is now installed
  6363 
  6364 * the axiom system has been generalized (thanks to Soren Heilmann)
  6365 
  6366 * the classical reasoner now has a default rule database
  6367 
  6368 
  6369 *** ZF ***
  6370 
  6371 * new primrec section allows primitive recursive functions to be given
  6372 directly (as in HOL) over datatypes and the natural numbers;
  6373 
  6374 * new tactics induct_tac and exhaust_tac for induction (or case
  6375 analysis) over datatypes and the natural numbers;
  6376 
  6377 * the datatype declaration of type T now defines the recursor T_rec;
  6378 
  6379 * simplification automatically does freeness reasoning for datatype
  6380 constructors;
  6381 
  6382 * automatic type-inference, with AddTCs command to insert new
  6383 type-checking rules;
  6384 
  6385 * datatype introduction rules are now added as Safe Introduction rules
  6386 to the claset;
  6387 
  6388 * the syntax "if P then x else y" is now available in addition to
  6389 if(P,x,y);
  6390 
  6391 
  6392 *** Internal programming interfaces ***
  6393 
  6394 * tuned simplifier trace output; new flag debug_simp;
  6395 
  6396 * structures Vartab / Termtab (instances of TableFun) offer efficient
  6397 tables indexed by indexname_ord / term_ord (compatible with aconv);
  6398 
  6399 * AxClass.axclass_tac lost the theory argument;
  6400 
  6401 * tuned current_goals_markers semantics: begin / end goal avoids
  6402 printing empty lines;
  6403 
  6404 * removed prs and prs_fn hook, which was broken because it did not
  6405 include \n in its semantics, forcing writeln to add one
  6406 uncoditionally; replaced prs_fn by writeln_fn; consider std_output:
  6407 string -> unit if you really want to output text without newline;
  6408 
  6409 * Symbol.output subject to print mode; INCOMPATIBILITY: defaults to
  6410 plain output, interface builders may have to enable 'isabelle_font'
  6411 mode to get Isabelle font glyphs as before;
  6412 
  6413 * refined token_translation interface; INCOMPATIBILITY: output length
  6414 now of type real instead of int;
  6415 
  6416 * theory loader actions may be traced via new ThyInfo.add_hook
  6417 interface (see src/Pure/Thy/thy_info.ML); example application: keep
  6418 your own database of information attached to *whole* theories -- as
  6419 opposed to intra-theory data slots offered via TheoryDataFun;
  6420 
  6421 * proper handling of dangling sort hypotheses (at last!);
  6422 Thm.strip_shyps and Drule.strip_shyps_warning take care of removing
  6423 extra sort hypotheses that can be witnessed from the type signature;
  6424 the force_strip_shyps flag is gone, any remaining shyps are simply
  6425 left in the theorem (with a warning issued by strip_shyps_warning);
  6426 
  6427 
  6428 
  6429 New in Isabelle98-1 (October 1998)
  6430 ----------------------------------
  6431 
  6432 *** Overview of INCOMPATIBILITIES (see below for more details) ***
  6433 
  6434 * several changes of automated proof tools;
  6435 
  6436 * HOL: major changes to the inductive and datatype packages, including
  6437 some minor incompatibilities of theory syntax;
  6438 
  6439 * HOL: renamed r^-1 to 'converse' from 'inverse'; 'inj_onto' is now
  6440 called `inj_on';
  6441 
  6442 * HOL: removed duplicate thms in Arith:
  6443   less_imp_add_less  should be replaced by  trans_less_add1
  6444   le_imp_add_le      should be replaced by  trans_le_add1
  6445 
  6446 * HOL: unary minus is now overloaded (new type constraints may be
  6447 required);
  6448 
  6449 * HOL and ZF: unary minus for integers is now #- instead of #~.  In
  6450 ZF, expressions such as n#-1 must be changed to n#- 1, since #-1 is
  6451 now taken as an integer constant.
  6452 
  6453 * Pure: ML function 'theory_of' renamed to 'theory';
  6454 
  6455 
  6456 *** Proof tools ***
  6457 
  6458 * Simplifier:
  6459   1. Asm_full_simp_tac is now more aggressive.
  6460      1. It will sometimes reorient premises if that increases their power to
  6461         simplify.
  6462      2. It does no longer proceed strictly from left to right but may also
  6463         rotate premises to achieve further simplification.
  6464      For compatibility reasons there is now Asm_lr_simp_tac which is like the
  6465      old Asm_full_simp_tac in that it does not rotate premises.
  6466   2. The simplifier now knows a little bit about nat-arithmetic.
  6467 
  6468 * Classical reasoner: wrapper mechanism for the classical reasoner now
  6469 allows for selected deletion of wrappers, by introduction of names for
  6470 wrapper functionals.  This implies that addbefore, addSbefore,
  6471 addaltern, and addSaltern now take a pair (name, tactic) as argument,
  6472 and that adding two tactics with the same name overwrites the first
  6473 one (emitting a warning).
  6474   type wrapper = (int -> tactic) -> (int -> tactic)
  6475   setWrapper, setSWrapper, compWrapper and compSWrapper are replaced by
  6476   addWrapper, addSWrapper: claset * (string * wrapper) -> claset
  6477   delWrapper, delSWrapper: claset *  string            -> claset
  6478   getWrapper is renamed to appWrappers, getSWrapper to appSWrappers;
  6479 
  6480 * Classical reasoner: addbefore/addSbefore now have APPEND/ORELSE
  6481 semantics; addbefore now affects only the unsafe part of step_tac
  6482 etc.; this affects addss/auto_tac/force_tac, so EXISTING PROOFS MAY
  6483 FAIL, but proofs should be fixable easily, e.g. by replacing Auto_tac
  6484 by Force_tac;
  6485 
  6486 * Classical reasoner: setwrapper to setWrapper and compwrapper to
  6487 compWrapper; added safe wrapper (and access functions for it);
  6488 
  6489 * HOL/split_all_tac is now much faster and fails if there is nothing
  6490 to split.  Some EXISTING PROOFS MAY REQUIRE ADAPTION because the order
  6491 and the names of the automatically generated variables have changed.
  6492 split_all_tac has moved within claset() from unsafe wrappers to safe
  6493 wrappers, which means that !!-bound variables are split much more
  6494 aggressively, and safe_tac and clarify_tac now split such variables.
  6495 If this splitting is not appropriate, use delSWrapper "split_all_tac".
  6496 Note: the same holds for record_split_tac, which does the job of
  6497 split_all_tac for record fields.
  6498 
  6499 * HOL/Simplifier: Rewrite rules for case distinctions can now be added
  6500 permanently to the default simpset using Addsplits just like
  6501 Addsimps. They can be removed via Delsplits just like
  6502 Delsimps. Lower-case versions are also available.
  6503 
  6504 * HOL/Simplifier: The rule split_if is now part of the default
  6505 simpset. This means that the simplifier will eliminate all occurrences
  6506 of if-then-else in the conclusion of a goal. To prevent this, you can
  6507 either remove split_if completely from the default simpset by
  6508 `Delsplits [split_if]' or remove it in a specific call of the
  6509 simplifier using `... delsplits [split_if]'.  You can also add/delete
  6510 other case splitting rules to/from the default simpset: every datatype
  6511 generates suitable rules `split_t_case' and `split_t_case_asm' (where
  6512 t is the name of the datatype).
  6513 
  6514 * Classical reasoner / Simplifier combination: new force_tac (and
  6515 derivatives Force_tac, force) combines rewriting and classical
  6516 reasoning (and whatever other tools) similarly to auto_tac, but is
  6517 aimed to solve the given subgoal completely.
  6518 
  6519 
  6520 *** General ***
  6521 
  6522 * new top-level commands `Goal' and `Goalw' that improve upon `goal'
  6523 and `goalw': the theory is no longer needed as an explicit argument -
  6524 the current theory context is used; assumptions are no longer returned
  6525 at the ML-level unless one of them starts with ==> or !!; it is
  6526 recommended to convert to these new commands using isatool fixgoal
  6527 (backup your sources first!);
  6528 
  6529 * new top-level commands 'thm' and 'thms' for retrieving theorems from
  6530 the current theory context, and 'theory' to lookup stored theories;
  6531 
  6532 * new theory section 'locale' for declaring constants, assumptions and
  6533 definitions that have local scope;
  6534 
  6535 * new theory section 'nonterminals' for purely syntactic types;
  6536 
  6537 * new theory section 'setup' for generic ML setup functions
  6538 (e.g. package initialization);
  6539 
  6540 * the distribution now includes Isabelle icons: see
  6541 lib/logo/isabelle-{small,tiny}.xpm;
  6542 
  6543 * isatool install - install binaries with absolute references to
  6544 ISABELLE_HOME/bin;
  6545 
  6546 * isatool logo -- create instances of the Isabelle logo (as EPS);
  6547 
  6548 * print mode 'emacs' reserved for Isamode;
  6549 
  6550 * support multiple print (ast) translations per constant name;
  6551 
  6552 * theorems involving oracles are now printed with a suffixed [!];
  6553 
  6554 
  6555 *** HOL ***
  6556 
  6557 * there is now a tutorial on Isabelle/HOL (do 'isatool doc tutorial');
  6558 
  6559 * HOL/inductive package reorganized and improved: now supports mutual
  6560 definitions such as
  6561 
  6562   inductive EVEN ODD
  6563     intrs
  6564       null "0 : EVEN"
  6565       oddI "n : EVEN ==> Suc n : ODD"
  6566       evenI "n : ODD ==> Suc n : EVEN"
  6567 
  6568 new theorem list "elims" contains an elimination rule for each of the
  6569 recursive sets; inductive definitions now handle disjunctive premises
  6570 correctly (also ZF);
  6571 
  6572 INCOMPATIBILITIES: requires Inductive as an ancestor; component
  6573 "mutual_induct" no longer exists - the induction rule is always
  6574 contained in "induct";
  6575 
  6576 
  6577 * HOL/datatype package re-implemented and greatly improved: now
  6578 supports mutually recursive datatypes such as
  6579 
  6580   datatype
  6581     'a aexp = IF_THEN_ELSE ('a bexp) ('a aexp) ('a aexp)
  6582             | SUM ('a aexp) ('a aexp)
  6583             | DIFF ('a aexp) ('a aexp)
  6584             | NUM 'a
  6585   and
  6586     'a bexp = LESS ('a aexp) ('a aexp)
  6587             | AND ('a bexp) ('a bexp)
  6588             | OR ('a bexp) ('a bexp)
  6589 
  6590 as well as indirectly recursive datatypes such as
  6591 
  6592   datatype
  6593     ('a, 'b) term = Var 'a
  6594                   | App 'b ((('a, 'b) term) list)
  6595 
  6596 The new tactic  mutual_induct_tac [<var_1>, ..., <var_n>] i  performs
  6597 induction on mutually / indirectly recursive datatypes.
  6598 
  6599 Primrec equations are now stored in theory and can be accessed via
  6600 <function_name>.simps.
  6601 
  6602 INCOMPATIBILITIES:
  6603 
  6604   - Theories using datatypes must now have theory Datatype as an
  6605     ancestor.
  6606   - The specific <typename>.induct_tac no longer exists - use the
  6607     generic induct_tac instead.
  6608   - natE has been renamed to nat.exhaust - use exhaust_tac
  6609     instead of res_inst_tac ... natE. Note that the variable
  6610     names in nat.exhaust differ from the names in natE, this
  6611     may cause some "fragile" proofs to fail.
  6612   - The theorems split_<typename>_case and split_<typename>_case_asm
  6613     have been renamed to <typename>.split and <typename>.split_asm.
  6614   - Since default sorts of type variables are now handled correctly,
  6615     some datatype definitions may have to be annotated with explicit
  6616     sort constraints.
  6617   - Primrec definitions no longer require function name and type
  6618     of recursive argument.
  6619 
  6620 Consider using isatool fixdatatype to adapt your theories and proof
  6621 scripts to the new package (backup your sources first!).
  6622 
  6623 
  6624 * HOL/record package: considerably improved implementation; now
  6625 includes concrete syntax for record types, terms, updates; theorems
  6626 for surjective pairing and splitting !!-bound record variables; proof
  6627 support is as follows:
  6628 
  6629   1) standard conversions (selectors or updates applied to record
  6630 constructor terms) are part of the standard simpset;
  6631 
  6632   2) inject equations of the form ((x, y) = (x', y')) == x=x' & y=y' are
  6633 made part of standard simpset and claset via addIffs;
  6634 
  6635   3) a tactic for record field splitting (record_split_tac) is part of
  6636 the standard claset (addSWrapper);
  6637 
  6638 To get a better idea about these rules you may retrieve them via
  6639 something like 'thms "foo.simps"' or 'thms "foo.iffs"', where "foo" is
  6640 the name of your record type.
  6641 
  6642 The split tactic 3) conceptually simplifies by the following rule:
  6643 
  6644   "(!!x. PROP ?P x) == (!!a b. PROP ?P (a, b))"
  6645 
  6646 Thus any record variable that is bound by meta-all will automatically
  6647 blow up into some record constructor term, consequently the
  6648 simplifications of 1), 2) apply.  Thus force_tac, auto_tac etc. shall
  6649 solve record problems automatically.
  6650 
  6651 
  6652 * reorganized the main HOL image: HOL/Integ and String loaded by
  6653 default; theory Main includes everything;
  6654 
  6655 * automatic simplification of integer sums and comparisons, using cancellation;
  6656 
  6657 * added option_map_eq_Some and not_Some_eq to the default simpset and claset;
  6658 
  6659 * added disj_not1 = "(~P | Q) = (P --> Q)" to the default simpset;
  6660 
  6661 * many new identities for unions, intersections, set difference, etc.;
  6662 
  6663 * expand_if, expand_split, expand_sum_case and expand_nat_case are now
  6664 called split_if, split_split, split_sum_case and split_nat_case (to go
  6665 with add/delsplits);
  6666 
  6667 * HOL/Prod introduces simplification procedure unit_eq_proc rewriting
  6668 (?x::unit) = (); this is made part of the default simpset, which COULD
  6669 MAKE EXISTING PROOFS FAIL under rare circumstances (consider
  6670 'Delsimprocs [unit_eq_proc];' as last resort); also note that
  6671 unit_abs_eta_conv is added in order to counter the effect of
  6672 unit_eq_proc on (%u::unit. f u), replacing it by f rather than by
  6673 %u.f();
  6674 
  6675 * HOL/Fun INCOMPATIBILITY: `inj_onto' is now called `inj_on' (which
  6676 makes more sense);
  6677 
  6678 * HOL/Set INCOMPATIBILITY: rule `equals0D' is now a well-formed destruct rule;
  6679   It and 'sym RS equals0D' are now in the default  claset, giving automatic
  6680   disjointness reasoning but breaking a few old proofs.
  6681 
  6682 * HOL/Relation INCOMPATIBILITY: renamed the relational operator r^-1
  6683 to 'converse' from 'inverse' (for compatibility with ZF and some
  6684 literature);
  6685 
  6686 * HOL/recdef can now declare non-recursive functions, with {} supplied as
  6687 the well-founded relation;
  6688 
  6689 * HOL/Set INCOMPATIBILITY: the complement of set A is now written -A instead of
  6690     Compl A.  The "Compl" syntax remains available as input syntax for this
  6691     release ONLY.
  6692 
  6693 * HOL/Update: new theory of function updates:
  6694     f(a:=b) == %x. if x=a then b else f x
  6695 may also be iterated as in f(a:=b,c:=d,...);
  6696 
  6697 * HOL/Vimage: new theory for inverse image of a function, syntax f-``B;
  6698 
  6699 * HOL/List:
  6700   - new function list_update written xs[i:=v] that updates the i-th
  6701     list position. May also be iterated as in xs[i:=a,j:=b,...].
  6702   - new function `upt' written [i..j(] which generates the list
  6703     [i,i+1,...,j-1], i.e. the upper bound is excluded. To include the upper
  6704     bound write [i..j], which is a shorthand for [i..j+1(].
  6705   - new lexicographic orderings and corresponding wellfoundedness theorems.
  6706 
  6707 * HOL/Arith:
  6708   - removed 'pred' (predecessor) function;
  6709   - generalized some theorems about n-1;
  6710   - many new laws about "div" and "mod";
  6711   - new laws about greatest common divisors (see theory ex/Primes);
  6712 
  6713 * HOL/Relation: renamed the relational operator r^-1 "converse"
  6714 instead of "inverse";
  6715 
  6716 * HOL/Induct/Multiset: a theory of multisets, including the wellfoundedness
  6717   of the multiset ordering;
  6718 
  6719 * directory HOL/Real: a construction of the reals using Dedekind cuts
  6720   (not included by default);
  6721 
  6722 * directory HOL/UNITY: Chandy and Misra's UNITY formalism;
  6723 
  6724 * directory HOL/Hoare: a new version of Hoare logic which permits many-sorted
  6725   programs, i.e. different program variables may have different types.
  6726 
  6727 * calling (stac rew i) now fails if "rew" has no effect on the goal
  6728   [previously, this check worked only if the rewrite rule was unconditional]
  6729   Now rew can involve either definitions or equalities (either == or =).
  6730 
  6731 
  6732 *** ZF ***
  6733 
  6734 * theory Main includes everything; INCOMPATIBILITY: theory ZF.thy contains
  6735   only the theorems proved on ZF.ML;
  6736 
  6737 * ZF INCOMPATIBILITY: rule `equals0D' is now a well-formed destruct rule;
  6738   It and 'sym RS equals0D' are now in the default  claset, giving automatic
  6739   disjointness reasoning but breaking a few old proofs.
  6740 
  6741 * ZF/Update: new theory of function updates
  6742     with default rewrite rule  f(x:=y) ` z = if(z=x, y, f`z)
  6743   may also be iterated as in f(a:=b,c:=d,...);
  6744 
  6745 * in  let x=t in u(x), neither t nor u(x) has to be an FOL term.
  6746 
  6747 * calling (stac rew i) now fails if "rew" has no effect on the goal
  6748   [previously, this check worked only if the rewrite rule was unconditional]
  6749   Now rew can involve either definitions or equalities (either == or =).
  6750 
  6751 * case_tac provided for compatibility with HOL
  6752     (like the old excluded_middle_tac, but with subgoals swapped)
  6753 
  6754 
  6755 *** Internal programming interfaces ***
  6756 
  6757 * Pure: several new basic modules made available for general use, see
  6758 also src/Pure/README;
  6759 
  6760 * improved the theory data mechanism to support encapsulation (data
  6761 kind name replaced by private Object.kind, acting as authorization
  6762 key); new type-safe user interface via functor TheoryDataFun; generic
  6763 print_data function becomes basically useless;
  6764 
  6765 * removed global_names compatibility flag -- all theory declarations
  6766 are qualified by default;
  6767 
  6768 * module Pure/Syntax now offers quote / antiquote translation
  6769 functions (useful for Hoare logic etc. with implicit dependencies);
  6770 see HOL/ex/Antiquote for an example use;
  6771 
  6772 * Simplifier now offers conversions (asm_)(full_)rewrite: simpset ->
  6773 cterm -> thm;
  6774 
  6775 * new tactical CHANGED_GOAL for checking that a tactic modifies a
  6776 subgoal;
  6777 
  6778 * Display.print_goals function moved to Locale.print_goals;
  6779 
  6780 * standard print function for goals supports current_goals_markers
  6781 variable for marking begin of proof, end of proof, start of goal; the
  6782 default is ("", "", ""); setting current_goals_markers := ("<proof>",
  6783 "</proof>", "<goal>") causes SGML like tagged proof state printing,
  6784 for example;
  6785 
  6786 
  6787 
  6788 New in Isabelle98 (January 1998)
  6789 --------------------------------
  6790 
  6791 *** Overview of INCOMPATIBILITIES (see below for more details) ***
  6792 
  6793 * changed lexical syntax of terms / types: dots made part of long
  6794 identifiers, e.g. "%x.x" no longer possible, should be "%x. x";
  6795 
  6796 * simpset (and claset) reference variable replaced by functions
  6797 simpset / simpset_ref;
  6798 
  6799 * no longer supports theory aliases (via merge) and non-trivial
  6800 implicit merge of thms' signatures;
  6801 
  6802 * most internal names of constants changed due to qualified names;
  6803 
  6804 * changed Pure/Sequence interface (see Pure/seq.ML);
  6805 
  6806 
  6807 *** General Changes ***
  6808 
  6809 * hierachically structured name spaces (for consts, types, axms, thms
  6810 etc.); new lexical class 'longid' (e.g. Foo.bar.x) may render much of
  6811 old input syntactically incorrect (e.g. "%x.x"); COMPATIBILITY:
  6812 isatool fixdots ensures space after dots (e.g. "%x. x"); set
  6813 long_names for fully qualified output names; NOTE: ML programs
  6814 (special tactics, packages etc.) referring to internal names may have
  6815 to be adapted to cope with fully qualified names; in case of severe
  6816 backward campatibility problems try setting 'global_names' at compile
  6817 time to have enrything declared within a flat name space; one may also
  6818 fine tune name declarations in theories via the 'global' and 'local'
  6819 section;
  6820 
  6821 * reimplemented the implicit simpset and claset using the new anytype
  6822 data filed in signatures; references simpset:simpset ref etc. are
  6823 replaced by functions simpset:unit->simpset and
  6824 simpset_ref:unit->simpset ref; COMPATIBILITY: use isatool fixclasimp
  6825 to patch your ML files accordingly;
  6826 
  6827 * HTML output now includes theory graph data for display with Java
  6828 applet or isatool browser; data generated automatically via isatool
  6829 usedir (see -i option, ISABELLE_USEDIR_OPTIONS);
  6830 
  6831 * defs may now be conditional; improved rewrite_goals_tac to handle
  6832 conditional equations;
  6833 
  6834 * defs now admits additional type arguments, using TYPE('a) syntax;
  6835 
  6836 * theory aliases via merge (e.g. M=A+B+C) no longer supported, always
  6837 creates a new theory node; implicit merge of thms' signatures is
  6838 restricted to 'trivial' ones; COMPATIBILITY: one may have to use
  6839 transfer:theory->thm->thm in (rare) cases;
  6840 
  6841 * improved handling of draft signatures / theories; draft thms (and
  6842 ctyps, cterms) are automatically promoted to real ones;
  6843 
  6844 * slightly changed interfaces for oracles: admit many per theory, named
  6845 (e.g. oracle foo = mlfun), additional name argument for invoke_oracle;
  6846 
  6847 * print_goals: optional output of const types (set show_consts and
  6848 show_types);
  6849 
  6850 * improved output of warnings (###) and errors (***);
  6851 
  6852 * subgoal_tac displays a warning if the new subgoal has type variables;
  6853 
  6854 * removed old README and Makefiles;
  6855 
  6856 * replaced print_goals_ref hook by print_current_goals_fn and result_error_fn;
  6857 
  6858 * removed obsolete init_pps and init_database;
  6859 
  6860 * deleted the obsolete tactical STATE, which was declared by
  6861     fun STATE tacfun st = tacfun st st;
  6862 
  6863 * cd and use now support path variables, e.g. $ISABELLE_HOME, or ~
  6864 (which abbreviates $HOME);
  6865 
  6866 * changed Pure/Sequence interface (see Pure/seq.ML); COMPATIBILITY:
  6867 use isatool fixseq to adapt your ML programs (this works for fully
  6868 qualified references to the Sequence structure only!);
  6869 
  6870 * use_thy no longer requires writable current directory; it always
  6871 reloads .ML *and* .thy file, if either one is out of date;
  6872 
  6873 
  6874 *** Classical Reasoner ***
  6875 
  6876 * Clarify_tac, clarify_tac, clarify_step_tac, Clarify_step_tac: new
  6877 tactics that use classical reasoning to simplify a subgoal without
  6878 splitting it into several subgoals;
  6879 
  6880 * Safe_tac: like safe_tac but uses the default claset;
  6881 
  6882 
  6883 *** Simplifier ***
  6884 
  6885 * added simplification meta rules:
  6886     (asm_)(full_)simplify: simpset -> thm -> thm;
  6887 
  6888 * simplifier.ML no longer part of Pure -- has to be loaded by object
  6889 logics (again);
  6890 
  6891 * added prems argument to simplification procedures;
  6892 
  6893 * HOL, FOL, ZF: added infix function `addsplits':
  6894   instead of `<simpset> setloop (split_tac <thms>)'
  6895   you can simply write `<simpset> addsplits <thms>'
  6896 
  6897 
  6898 *** Syntax ***
  6899 
  6900 * TYPE('a) syntax for type reflection terms;
  6901 
  6902 * no longer handles consts with name "" -- declare as 'syntax' instead;
  6903 
  6904 * pretty printer: changed order of mixfix annotation preference (again!);
  6905 
  6906 * Pure: fixed idt/idts vs. pttrn/pttrns syntactic categories;
  6907 
  6908 
  6909 *** HOL ***
  6910 
  6911 * HOL: there is a new splitter `split_asm_tac' that can be used e.g.
  6912   with `addloop' of the simplifier to faciliate case splitting in premises.
  6913 
  6914 * HOL/TLA: Stephan Merz's formalization of Lamport's Temporal Logic of Actions;
  6915 
  6916 * HOL/Auth: new protocol proofs including some for the Internet
  6917   protocol TLS;
  6918 
  6919 * HOL/Map: new theory of `maps' a la VDM;
  6920 
  6921 * HOL/simplifier: simplification procedures nat_cancel_sums for
  6922 cancelling out common nat summands from =, <, <= (in)equalities, or
  6923 differences; simplification procedures nat_cancel_factor for
  6924 cancelling common factor from =, <, <= (in)equalities over natural
  6925 sums; nat_cancel contains both kinds of procedures, it is installed by
  6926 default in Arith.thy -- this COULD MAKE EXISTING PROOFS FAIL;
  6927 
  6928 * HOL/simplifier: terms of the form
  6929   `? x. P1(x) & ... & Pn(x) & x=t & Q1(x) & ... Qn(x)'  (or t=x)
  6930   are rewritten to
  6931   `P1(t) & ... & Pn(t) & Q1(t) & ... Qn(t)',
  6932   and those of the form
  6933   `! x. P1(x) & ... & Pn(x) & x=t & Q1(x) & ... Qn(x) --> R(x)'  (or t=x)
  6934   are rewritten to
  6935   `P1(t) & ... & Pn(t) & Q1(t) & ... Qn(t) --> R(t)',
  6936 
  6937 * HOL/datatype
  6938   Each datatype `t' now comes with a theorem `split_t_case' of the form
  6939 
  6940   P(t_case f1 ... fn x) =
  6941      ( (!y1 ... ym1. x = C1 y1 ... ym1 --> P(f1 y1 ... ym1)) &
  6942         ...
  6943        (!y1 ... ymn. x = Cn y1 ... ymn --> P(f1 y1 ... ymn))
  6944      )
  6945 
  6946   and a theorem `split_t_case_asm' of the form
  6947 
  6948   P(t_case f1 ... fn x) =
  6949     ~( (? y1 ... ym1. x = C1 y1 ... ym1 & ~P(f1 y1 ... ym1)) |
  6950         ...
  6951        (? y1 ... ymn. x = Cn y1 ... ymn & ~P(f1 y1 ... ymn))
  6952      )
  6953   which can be added to a simpset via `addsplits'. The existing theorems
  6954   expand_list_case and expand_option_case have been renamed to
  6955   split_list_case and split_option_case.
  6956 
  6957 * HOL/Arithmetic:
  6958   - `pred n' is automatically converted to `n-1'.
  6959     Users are strongly encouraged not to use `pred' any longer,
  6960     because it will disappear altogether at some point.
  6961   - Users are strongly encouraged to write "0 < n" rather than
  6962     "n ~= 0". Theorems and proof tools have been modified towards this
  6963     `standard'.
  6964 
  6965 * HOL/Lists:
  6966   the function "set_of_list" has been renamed "set" (and its theorems too);
  6967   the function "nth" now takes its arguments in the reverse order and
  6968   has acquired the infix notation "!" as in "xs!n".
  6969 
  6970 * HOL/Set: UNIV is now a constant and is no longer translated to Compl{};
  6971 
  6972 * HOL/Set: The operator (UN x.B x) now abbreviates (UN x:UNIV. B x) and its
  6973   specialist theorems (like UN1_I) are gone.  Similarly for (INT x.B x);
  6974 
  6975 * HOL/record: extensible records with schematic structural subtyping
  6976 (single inheritance); EXPERIMENTAL version demonstrating the encoding,
  6977 still lacks various theorems and concrete record syntax;
  6978 
  6979 
  6980 *** HOLCF ***
  6981 
  6982 * removed "axioms" and "generated by" sections;
  6983 
  6984 * replaced "ops" section by extended "consts" section, which is capable of
  6985   handling the continuous function space "->" directly;
  6986 
  6987 * domain package:
  6988   . proves theorems immediately and stores them in the theory,
  6989   . creates hierachical name space,
  6990   . now uses normal mixfix annotations (instead of cinfix...),
  6991   . minor changes to some names and values (for consistency),
  6992   . e.g. cases -> casedist, dists_eq -> dist_eqs, [take_lemma] -> take_lemmas,
  6993   . separator between mutual domain defs: changed "," to "and",
  6994   . improved handling of sort constraints;  now they have to
  6995     appear on the left-hand side of the equations only;
  6996 
  6997 * fixed LAM <x,y,zs>.b syntax;
  6998 
  6999 * added extended adm_tac to simplifier in HOLCF -- can now discharge
  7000 adm (%x. P (t x)), where P is chainfinite and t continuous;
  7001 
  7002 
  7003 *** FOL and ZF ***
  7004 
  7005 * FOL: there is a new splitter `split_asm_tac' that can be used e.g.
  7006   with `addloop' of the simplifier to faciliate case splitting in premises.
  7007 
  7008 * qed_spec_mp, qed_goal_spec_mp, qed_goalw_spec_mp are available, as
  7009 in HOL, they strip ALL and --> from proved theorems;
  7010 
  7011 
  7012 
  7013 New in Isabelle94-8 (May 1997)
  7014 ------------------------------
  7015 
  7016 *** General Changes ***
  7017 
  7018 * new utilities to build / run / maintain Isabelle etc. (in parts
  7019 still somewhat experimental); old Makefiles etc. still functional;
  7020 
  7021 * new 'Isabelle System Manual';
  7022 
  7023 * INSTALL text, together with ./configure and ./build scripts;
  7024 
  7025 * reimplemented type inference for greater efficiency, better error
  7026 messages and clean internal interface;
  7027 
  7028 * prlim command for dealing with lots of subgoals (an easier way of
  7029 setting goals_limit);
  7030 
  7031 
  7032 *** Syntax ***
  7033 
  7034 * supports alternative (named) syntax tables (parser and pretty
  7035 printer); internal interface is provided by add_modesyntax(_i);
  7036 
  7037 * Pure, FOL, ZF, HOL, HOLCF now support symbolic input and output; to
  7038 be used in conjunction with the Isabelle symbol font; uses the
  7039 "symbols" syntax table;
  7040 
  7041 * added token_translation interface (may translate name tokens in
  7042 arbitrary ways, dependent on their type (free, bound, tfree, ...) and
  7043 the current print_mode); IMPORTANT: user print translation functions
  7044 are responsible for marking newly introduced bounds
  7045 (Syntax.mark_boundT);
  7046 
  7047 * token translations for modes "xterm" and "xterm_color" that display
  7048 names in bold, underline etc. or colors (which requires a color
  7049 version of xterm);
  7050 
  7051 * infixes may now be declared with names independent of their syntax;
  7052 
  7053 * added typed_print_translation (like print_translation, but may
  7054 access type of constant);
  7055 
  7056 
  7057 *** Classical Reasoner ***
  7058 
  7059 Blast_tac: a new tactic!  It is often more powerful than fast_tac, but has
  7060 some limitations.  Blast_tac...
  7061   + ignores addss, addbefore, addafter; this restriction is intrinsic
  7062   + ignores elimination rules that don't have the correct format
  7063         (the conclusion MUST be a formula variable)
  7064   + ignores types, which can make HOL proofs fail
  7065   + rules must not require higher-order unification, e.g. apply_type in ZF
  7066     [message "Function Var's argument not a bound variable" relates to this]
  7067   + its proof strategy is more general but can actually be slower
  7068 
  7069 * substitution with equality assumptions no longer permutes other
  7070 assumptions;
  7071 
  7072 * minor changes in semantics of addafter (now called addaltern); renamed
  7073 setwrapper to setWrapper and compwrapper to compWrapper; added safe wrapper
  7074 (and access functions for it);
  7075 
  7076 * improved combination of classical reasoner and simplifier:
  7077   + functions for handling clasimpsets
  7078   + improvement of addss: now the simplifier is called _after_ the
  7079     safe steps.
  7080   + safe variant of addss called addSss: uses safe simplifications
  7081     _during_ the safe steps. It is more complete as it allows multiple
  7082     instantiations of unknowns (e.g. with slow_tac).
  7083 
  7084 *** Simplifier ***
  7085 
  7086 * added interface for simplification procedures (functions that
  7087 produce *proven* rewrite rules on the fly, depending on current
  7088 redex);
  7089 
  7090 * ordering on terms as parameter (used for ordered rewriting);
  7091 
  7092 * new functions delcongs, deleqcongs, and Delcongs. richer rep_ss;
  7093 
  7094 * the solver is now split into a safe and an unsafe part.
  7095 This should be invisible for the normal user, except that the
  7096 functions setsolver and addsolver have been renamed to setSolver and
  7097 addSolver; added safe_asm_full_simp_tac;
  7098 
  7099 
  7100 *** HOL ***
  7101 
  7102 * a generic induction tactic `induct_tac' which works for all datatypes and
  7103 also for type `nat';
  7104 
  7105 * a generic case distinction tactic `exhaust_tac' which works for all
  7106 datatypes and also for type `nat';
  7107 
  7108 * each datatype comes with a function `size';
  7109 
  7110 * patterns in case expressions allow tuple patterns as arguments to
  7111 constructors, for example `case x of [] => ... | (x,y,z)#ps => ...';
  7112 
  7113 * primrec now also works with type nat;
  7114 
  7115 * recdef: a new declaration form, allows general recursive functions to be
  7116 defined in theory files.  See HOL/ex/Fib, HOL/ex/Primes, HOL/Subst/Unify.
  7117 
  7118 * the constant for negation has been renamed from "not" to "Not" to
  7119 harmonize with FOL, ZF, LK, etc.;
  7120 
  7121 * HOL/ex/LFilter theory of a corecursive "filter" functional for
  7122 infinite lists;
  7123 
  7124 * HOL/Modelcheck demonstrates invocation of model checker oracle;
  7125 
  7126 * HOL/ex/Ring.thy declares cring_simp, which solves equational
  7127 problems in commutative rings, using axiomatic type classes for + and *;
  7128 
  7129 * more examples in HOL/MiniML and HOL/Auth;
  7130 
  7131 * more default rewrite rules for quantifiers, union/intersection;
  7132 
  7133 * a new constant `arbitrary == @x.False';
  7134 
  7135 * HOLCF/IOA replaces old HOL/IOA;
  7136 
  7137 * HOLCF changes: derived all rules and arities
  7138   + axiomatic type classes instead of classes
  7139   + typedef instead of faking type definitions
  7140   + eliminated the internal constants less_fun, less_cfun, UU_fun, UU_cfun etc.
  7141   + new axclasses cpo, chfin, flat with flat < chfin < pcpo < cpo < po
  7142   + eliminated the types void, one, tr
  7143   + use unit lift and bool lift (with translations) instead of one and tr
  7144   + eliminated blift from Lift3.thy (use Def instead of blift)
  7145   all eliminated rules are derived as theorems --> no visible changes ;
  7146 
  7147 
  7148 *** ZF ***
  7149 
  7150 * ZF now has Fast_tac, Simp_tac and Auto_tac.  Union_iff is a now a default
  7151 rewrite rule; this may affect some proofs.  eq_cs is gone but can be put back
  7152 as ZF_cs addSIs [equalityI];
  7153 
  7154 
  7155 
  7156 New in Isabelle94-7 (November 96)
  7157 ---------------------------------
  7158 
  7159 * allowing negative levels (as offsets) in prlev and choplev;
  7160 
  7161 * super-linear speedup for large simplifications;
  7162 
  7163 * FOL, ZF and HOL now use miniscoping: rewriting pushes
  7164 quantifications in as far as possible (COULD MAKE EXISTING PROOFS
  7165 FAIL); can suppress it using the command Delsimps (ex_simps @
  7166 all_simps); De Morgan laws are also now included, by default;
  7167 
  7168 * improved printing of ==>  :  ~:
  7169 
  7170 * new object-logic "Sequents" adds linear logic, while replacing LK
  7171 and Modal (thanks to Sara Kalvala);
  7172 
  7173 * HOL/Auth: correctness proofs for authentication protocols;
  7174 
  7175 * HOL: new auto_tac combines rewriting and classical reasoning (many
  7176 examples on HOL/Auth);
  7177 
  7178 * HOL: new command AddIffs for declaring theorems of the form P=Q to
  7179 the rewriter and classical reasoner simultaneously;
  7180 
  7181 * function uresult no longer returns theorems in "standard" format;
  7182 regain previous version by: val uresult = standard o uresult;
  7183 
  7184 
  7185 
  7186 New in Isabelle94-6
  7187 -------------------
  7188 
  7189 * oracles -- these establish an interface between Isabelle and trusted
  7190 external reasoners, which may deliver results as theorems;
  7191 
  7192 * proof objects (in particular record all uses of oracles);
  7193 
  7194 * Simp_tac, Fast_tac, etc. that refer to implicit simpset / claset;
  7195 
  7196 * "constdefs" section in theory files;
  7197 
  7198 * "primrec" section (HOL) no longer requires names;
  7199 
  7200 * internal type "tactic" now simply "thm -> thm Sequence.seq";
  7201 
  7202 
  7203 
  7204 New in Isabelle94-5
  7205 -------------------
  7206 
  7207 * reduced space requirements;
  7208 
  7209 * automatic HTML generation from theories;
  7210 
  7211 * theory files no longer require "..." (quotes) around most types;
  7212 
  7213 * new examples, including two proofs of the Church-Rosser theorem;
  7214 
  7215 * non-curried (1994) version of HOL is no longer distributed;
  7216 
  7217 
  7218 
  7219 New in Isabelle94-4
  7220 -------------------
  7221 
  7222 * greatly reduced space requirements;
  7223 
  7224 * theory files (.thy) no longer require \...\ escapes at line breaks;
  7225 
  7226 * searchable theorem database (see the section "Retrieving theorems" on
  7227 page 8 of the Reference Manual);
  7228 
  7229 * new examples, including Grabczewski's monumental case study of the
  7230 Axiom of Choice;
  7231 
  7232 * The previous version of HOL renamed to Old_HOL;
  7233 
  7234 * The new version of HOL (previously called CHOL) uses a curried syntax
  7235 for functions.  Application looks like f a b instead of f(a,b);
  7236 
  7237 * Mutually recursive inductive definitions finally work in HOL;
  7238 
  7239 * In ZF, pattern-matching on tuples is now available in all abstractions and
  7240 translates to the operator "split";
  7241 
  7242 
  7243 
  7244 New in Isabelle94-3
  7245 -------------------
  7246 
  7247 * new infix operator, addss, allowing the classical reasoner to
  7248 perform simplification at each step of its search.  Example:
  7249         fast_tac (cs addss ss)
  7250 
  7251 * a new logic, CHOL, the same as HOL, but with a curried syntax
  7252 for functions.  Application looks like f a b instead of f(a,b).  Also pairs
  7253 look like (a,b) instead of <a,b>;
  7254 
  7255 * PLEASE NOTE: CHOL will eventually replace HOL!
  7256 
  7257 * In CHOL, pattern-matching on tuples is now available in all abstractions.
  7258 It translates to the operator "split".  A new theory of integers is available;
  7259 
  7260 * In ZF, integer numerals now denote two's-complement binary integers.
  7261 Arithmetic operations can be performed by rewriting.  See ZF/ex/Bin.ML;
  7262 
  7263 * Many new examples: I/O automata, Church-Rosser theorem, equivalents
  7264 of the Axiom of Choice;
  7265 
  7266 
  7267 
  7268 New in Isabelle94-2
  7269 -------------------
  7270 
  7271 * Significantly faster resolution;
  7272 
  7273 * the different sections in a .thy file can now be mixed and repeated
  7274 freely;
  7275 
  7276 * Database of theorems for FOL, HOL and ZF.  New
  7277 commands including qed, qed_goal and bind_thm store theorems in the database.
  7278 
  7279 * Simple database queries: return a named theorem (get_thm) or all theorems of
  7280 a given theory (thms_of), or find out what theory a theorem was proved in
  7281 (theory_of_thm);
  7282 
  7283 * Bugs fixed in the inductive definition and datatype packages;
  7284 
  7285 * The classical reasoner provides deepen_tac and depth_tac, making FOL_dup_cs
  7286 and HOL_dup_cs obsolete;
  7287 
  7288 * Syntactic ambiguities caused by the new treatment of syntax in Isabelle94-1
  7289 have been removed;
  7290 
  7291 * Simpler definition of function space in ZF;
  7292 
  7293 * new results about cardinal and ordinal arithmetic in ZF;
  7294 
  7295 * 'subtype' facility in HOL for introducing new types as subsets of existing
  7296 types;
  7297 
  7298 :mode=text:wrap=hard:maxLineLen=72: