author | Cezary Kaliszyk <kaliszyk@in.tum.de> |
Thu, 04 Mar 2010 10:59:52 +0100 | |
changeset 1337 | 7ae031bd5d2f |
parent 1336 | 6ab8c46b3b4b |
child 1338 | 95fb422bbb2b |
permissions | -rw-r--r-- |
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c009d2535896
very rough example file for how nominal2 specification can be parsed
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theory Test |
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imports "Parser" "../Attic/Prove" |
954
c009d2535896
very rough example file for how nominal2 specification can be parsed
Christian Urban <urbanc@in.tum.de>
parents:
diff
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begin |
c009d2535896
very rough example file for how nominal2 specification can be parsed
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parents:
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Another problem with permutations in alpha and possibly also in fv
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text {* weirdo example from Peter Sewell's bestiary *} |
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nominal_datatype weird = |
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WBind x::"name" y::"name" p1::"weird" p2::"weird" p3::"weird" |
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bind x in p1, bind x in p2, bind y in p2, bind y in p3 |
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| WV "name" |
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| WP "weird" "weird" |
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thm permute_weird_raw.simps[no_vars] |
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thm alpha_weird_raw.intros[no_vars] |
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thm fv_weird_raw.simps[no_vars] |
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thm eqvts |
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|
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local_setup {* (fn ctxt => snd (Local_Theory.note ((@{binding weird_inj}, []), (build_alpha_inj @{thms alpha_weird_raw.intros} @{thms weird_raw.distinct weird_raw.inject} @{thms alpha_weird_raw.cases} ctxt)) ctxt)) *} |
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thm weird_inj |
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|
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local_setup {* |
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(fn ctxt => snd (Local_Theory.note ((@{binding alpha_eqvt}, []), |
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build_alpha_eqvts [@{term alpha_weird_raw}] [@{term "permute :: perm \<Rightarrow> weird_raw \<Rightarrow> weird_raw"}] @{thms permute_weird_raw.simps weird_inj} @{thm alpha_weird_raw.induct} ctxt) ctxt)) *} |
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|
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Experiments with proving weird transp
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ML {* |
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fun is_ex (Const ("Ex", _) $ Abs _) = true |
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| is_ex _ = false; |
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*} |
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|
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Experiments with proving weird transp
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ML {* |
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fun eetac rule = Subgoal.FOCUS_PARAMS |
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(fn (focus) => |
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let |
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val concl = #concl focus |
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val prems = Logic.strip_imp_prems (term_of concl) |
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val exs = filter (fn x => is_ex (HOLogic.dest_Trueprop x)) prems |
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val cexs = map (SOME o (cterm_of (ProofContext.theory_of (#context focus)))) exs |
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val thins = map (fn cex => Drule.instantiate' [] [cex] Drule.thin_rl) cexs |
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in |
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(etac rule THEN' RANGE[ |
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42 |
atac, |
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43 |
eresolve_tac thins |
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44 |
]) 1 |
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end |
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) |
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*} |
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|
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Prove symp and transp of weird without the supp /\ supp = {} assumption.
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49 |
ML {* |
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fun transp_tac ctxt induct alpha_inj term_inj distinct cases eqvt = |
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ind_tac induct THEN_ALL_NEW |
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(TRY o rtac allI THEN' imp_elim_tac cases ctxt) THEN_ALL_NEW |
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asm_full_simp_tac ((mk_minimal_ss ctxt) addsimps alpha_inj) THEN_ALL_NEW |
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split_conjs THEN_ALL_NEW REPEAT o (eetac @{thm exi_sum} ctxt) |
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THEN_ALL_NEW split_conjs |
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*} |
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(*apply (tactic {* transp_tac @{context} @{thm alpha_weird_raw.induct} @{thms weird_inj} @{thms weird_raw.inject} @{thms weird_raw.distinct} @{thms alpha_weird_raw.cases} @{thms alpha_eqvt} 1 *})*) |
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|
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lemma "alpha_weird_raw x y \<longrightarrow> (\<forall>z. alpha_weird_raw y z \<longrightarrow> alpha_weird_raw x z)" |
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apply (rule impI) |
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apply (erule alpha_weird_raw.induct) |
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apply (simp_all add: weird_inj) |
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defer |
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apply (rule allI) |
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apply (rule impI) |
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apply (erule alpha_weird_raw.cases) |
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apply (simp_all add: weird_inj) |
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apply (rule allI) |
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apply (rule impI) |
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apply (erule alpha_weird_raw.cases) |
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apply (simp_all add: weird_inj) |
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apply (erule conjE)+ |
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apply (erule exE)+ |
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apply (rule conjI) |
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apply (rule_tac x="pica + pic" in exI) |
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apply (erule alpha_gen_compose_trans) |
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apply assumption |
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apply (simp add: alpha_eqvt) |
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apply (rule conjI) |
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defer |
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apply (rule_tac x="pia + pi" in exI) |
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apply (erule alpha_gen_compose_trans) |
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apply assumption |
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apply (simp add: alpha_eqvt) |
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(* Normally: (pia + pb + (pib + pa)) *) |
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apply (rule_tac x="piaa + pib" in exI) |
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apply (rule_tac x="piab + piba" in exI) |
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apply (erule alpha_gen_compose_trans) |
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apply assumption |
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apply (simp add: alpha_eqvt) |
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91 |
done |
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|
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lemma "alpha_weird_raw x y \<Longrightarrow> alpha_weird_raw y x" |
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apply (erule alpha_weird_raw.induct) |
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apply (simp_all add: weird_inj) |
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96 |
apply (erule conjE)+ |
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97 |
apply (erule exE)+ |
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98 |
apply (rule conjI) |
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99 |
defer (* simple *) |
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100 |
apply (rule conjI) |
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101 |
apply (rule_tac x="- pia" in exI) |
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102 |
apply (rule_tac x="- pib" in exI) |
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103 |
apply (simp add: minus_add[symmetric]) |
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Prove symp and transp of weird without the supp /\ supp = {} assumption.
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104 |
apply (erule alpha_gen_compose_sym) |
7ae031bd5d2f
Prove symp and transp of weird without the supp /\ supp = {} assumption.
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105 |
apply (simp_all add: alpha_eqvt) |
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Prove symp and transp of weird without the supp /\ supp = {} assumption.
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106 |
apply (rule_tac x="- pi" in exI) |
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Prove symp and transp of weird without the supp /\ supp = {} assumption.
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|
107 |
apply (erule alpha_gen_compose_sym) |
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Prove symp and transp of weird without the supp /\ supp = {} assumption.
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108 |
apply (simp_all add: alpha_eqvt) |
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Prove symp and transp of weird without the supp /\ supp = {} assumption.
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|
109 |
apply (rule_tac x="- pic" in exI) |
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Prove symp and transp of weird without the supp /\ supp = {} assumption.
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|
110 |
apply (erule alpha_gen_compose_sym) |
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Prove symp and transp of weird without the supp /\ supp = {} assumption.
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111 |
apply (simp_all add: alpha_eqvt) |
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Prove symp and transp of weird without the supp /\ supp = {} assumption.
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112 |
done |
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Experiments with proving weird transp
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113 |
|
1332 | 114 |
|
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115 |
abbreviation "WBind \<equiv> WBind_raw" |
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116 |
abbreviation "WP \<equiv> WP_raw" |
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117 |
abbreviation "WV \<equiv> WV_raw" |
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118 |
|
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119 |
lemma test: |
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120 |
assumes a: "distinct [x, y, z]" |
1332 | 121 |
shows "alpha_weird_raw (WBind x y (WP (WV x) (WV z)) (WP (WV x) (WV y)) (WP (WV z) (WV y))) |
122 |
(WBind y x (WP (WV y) (WV z)) (WP (WV y) (WV x)) (WP (WV z) (WV x)))" |
|
123 |
apply(rule_tac alpha_weird_raw.intros) |
|
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124 |
unfolding alpha_gen |
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125 |
using a |
1332 | 126 |
apply(auto) |
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127 |
apply(rule_tac x="(x \<leftrightarrow> y)" in exI) |
1332 | 128 |
apply(auto) |
129 |
apply(simp add: fresh_star_def flip_def fresh_def supp_swap) |
|
130 |
apply(rule alpha_weird_raw.intros) |
|
131 |
apply(simp add: alpha_weird_raw.intros(2)) |
|
132 |
apply(rule_tac x="(x \<leftrightarrow> y)" in exI) |
|
133 |
apply(rule_tac x="0" in exI) |
|
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134 |
apply(simp add: fresh_star_def) |
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135 |
apply(auto) |
1332 | 136 |
apply(rule alpha_weird_raw.intros) |
137 |
apply(simp add: alpha_weird_raw.intros(2)) |
|
138 |
apply(simp add: flip_def supp_swap supp_perm) |
|
139 |
apply(rule_tac x="(x \<leftrightarrow> y)" in exI) |
|
1321
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140 |
apply(simp) |
1332 | 141 |
apply(auto) |
142 |
apply(simp add: flip_def fresh_def supp_swap) |
|
143 |
apply(rule alpha_weird_raw.intros) |
|
144 |
apply(simp add: alpha_weird_raw.intros(2)) |
|
145 |
done |
|
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|
146 |
|
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147 |
text {* example 1 *} |
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148 |
|
1316
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Porting from Lift to Parser; until defining the Quotient type.
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149 |
(* ML {* set show_hyps *} *) |
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Porting from Lift to Parser; until defining the Quotient type.
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150 |
|
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151 |
nominal_datatype lam = |
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152 |
VAR "name" |
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| APP "lam" "lam" |
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154 |
| LET bp::"bp" t::"lam" bind "bi bp" in t |
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155 |
and bp = |
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156 |
BP "name" "lam" |
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157 |
binder |
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Link calls to Raw permutations, FV definition and alpha_definition into the parser.
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158 |
bi::"bp \<Rightarrow> atom set" |
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159 |
where |
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160 |
"bi (BP x t) = {atom x}" |
1228
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|
161 |
|
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|
162 |
typ lam_raw |
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|
163 |
term VAR_raw |
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164 |
term APP_raw |
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|
165 |
term LET_raw |
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|
166 |
term Test.BP_raw |
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|
167 |
thm bi_raw.simps |
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|
168 |
thm permute_lam_raw_permute_bp_raw.simps |
1319
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|
169 |
thm alpha_lam_raw_alpha_bp_raw.intros[no_vars] |
d793ce9cd06f
potential problem with the phd-example, where two permutations are generated, but only one is used
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|
170 |
thm fv_lam_raw_fv_bp_raw.simps[no_vars] |
1309 | 171 |
thm eqvts |
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|
172 |
|
961
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Variable takes a 'name'.
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diff
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|
173 |
print_theorems |
954
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changeset
|
174 |
|
1261
853abc14c5c6
added IsaMakefile...but so far included only a test for the parser
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|
175 |
text {* example 2 *} |
853abc14c5c6
added IsaMakefile...but so far included only a test for the parser
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|
176 |
|
1265
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first attempt to make sense out of the core-haskell definition
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|
177 |
nominal_datatype trm' = |
961
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Variable takes a 'name'.
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|
178 |
Var "name" |
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|
179 |
| App "trm'" "trm'" |
1272
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added ott-example about Leroy96
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|
180 |
| Lam x::"name" t::"trm'" bind x in t |
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181 |
| Let p::"pat'" "trm'" t::"trm'" bind "f p" in t |
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|
182 |
and pat' = |
954
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|
183 |
PN |
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|
184 |
| PS "name" |
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|
185 |
| PD "name" "name" |
954
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|
186 |
binder |
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|
187 |
f::"pat' \<Rightarrow> atom set" |
954
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diff
changeset
|
188 |
where |
978
b44592adf235
Improper interface for datatype and function packages and proper interface lateron.
Cezary Kaliszyk <kaliszyk@in.tum.de>
parents:
973
diff
changeset
|
189 |
"f PN = {}" |
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|
190 |
| "f (PS x) = {atom x}" |
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|
191 |
| "f (PD x y) = {atom x, atom y}" |
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|
192 |
|
1320
447666754176
Another problem with permutations in alpha and possibly also in fv
Christian Urban <urbanc@in.tum.de>
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1319
diff
changeset
|
193 |
|
447666754176
Another problem with permutations in alpha and possibly also in fv
Christian Urban <urbanc@in.tum.de>
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1319
diff
changeset
|
194 |
thm alpha_trm'_raw_alpha_pat'_raw.intros[no_vars] |
447666754176
Another problem with permutations in alpha and possibly also in fv
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|
195 |
thm fv_trm'_raw_fv_pat'_raw.simps[no_vars] |
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|
196 |
thm f_raw.simps |
954
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changeset
|
197 |
|
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|
198 |
nominal_datatype trm0 = |
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|
199 |
Var0 "name" |
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|
200 |
| App0 "trm0" "trm0" |
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|
201 |
| Lam0 x::"name" t::"trm0" bind x in t |
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|
202 |
| Let0 p::"pat0" "trm0" t::"trm0" bind "f0 p" in t |
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|
203 |
and pat0 = |
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|
204 |
PN0 |
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|
205 |
| PS0 "name" |
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|
206 |
| PD0 "pat0" "pat0" |
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|
207 |
binder |
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|
208 |
f0::"pat0 \<Rightarrow> atom set" |
954
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|
209 |
where |
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|
210 |
"f0 PN0 = {}" |
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|
211 |
| "f0 (PS0 x) = {atom x}" |
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|
212 |
| "f0 (PD0 p1 p2) = (f0 p1) \<union> (f0 p2)" |
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|
213 |
|
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|
214 |
thm f0_raw.simps |
954
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|
215 |
|
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|
216 |
text {* example type schemes *} |
1285
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added example from my phd
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|
217 |
|
1304
dc65319809cc
Change type schemes to name set.
Cezary Kaliszyk <kaliszyk@in.tum.de>
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|
218 |
(* does not work yet |
1302
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Length fix for nested recursions.
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|
219 |
nominal_datatype t = |
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Length fix for nested recursions.
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|
220 |
Var "name" |
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|
221 |
| Fun "t" "t" |
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|
222 |
|
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Length fix for nested recursions.
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|
223 |
nominal_datatype tyS = |
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|
224 |
All xs::"name list" ty::"t_raw" bind xs in ty |
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|
225 |
*) |
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|
226 |
|
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(* alpha_eqvt fails... |
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nominal_datatype t = |
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Var "name" |
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| Fun "t" "t" |
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and tyS = |
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All xs::"name set" ty::"t" bind xs in ty *) |
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234 |
|
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(* example 1 from Terms.thy *) |
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|
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nominal_datatype trm1 = |
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Vr1 "name" |
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| Ap1 "trm1" "trm1" |
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| Lm1 x::"name" t::"trm1" bind x in t |
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| Lt1 p::"bp1" "trm1" t::"trm1" bind "bv1 p" in t |
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and bp1 = |
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BUnit1 |
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| BV1 "name" |
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| BP1 "bp1" "bp1" |
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binder |
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bv1 |
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where |
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"bv1 (BUnit1) = {}" |
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| "bv1 (BV1 x) = {atom x}" |
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| "bv1 (BP1 bp1 bp2) = (bv1 bp1) \<union> (bv1 bp2)" |
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252 |
|
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thm bv1_raw.simps |
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254 |
|
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255 |
(* example 2 from Terms.thy *) |
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256 |
|
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257 |
nominal_datatype trm2 = |
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258 |
Vr2 "name" |
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| Ap2 "trm2" "trm2" |
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| Lm2 x::"name" t::"trm2" bind x in t |
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261 |
| Lt2 r::"rassign" t::"trm2" bind "bv2 r" in t |
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262 |
and rassign = |
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As "name" "trm2" |
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binder |
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265 |
bv2 |
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266 |
where |
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267 |
"bv2 (As x t) = {atom x}" |
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268 |
|
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269 |
(* example 3 from Terms.thy *) |
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270 |
|
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271 |
nominal_datatype trm3 = |
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272 |
Vr3 "name" |
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273 |
| Ap3 "trm3" "trm3" |
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274 |
| Lm3 x::"name" t::"trm3" bind x in t |
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275 |
| Lt3 r::"rassigns3" t::"trm3" bind "bv3 r" in t |
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276 |
and rassigns3 = |
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277 |
ANil |
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| ACons "name" "trm3" "rassigns3" |
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279 |
binder |
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280 |
bv3 |
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281 |
where |
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282 |
"bv3 ANil = {}" |
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283 |
| "bv3 (ACons x t as) = {atom x} \<union> (bv3 as)" |
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284 |
|
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285 |
(* example 4 from Terms.thy *) |
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286 |
|
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(* fv_eqvt does not work, we need to repaire defined permute functions |
288 |
defined fv and defined alpha... *) |
|
289 |
(*nominal_datatype trm4 = |
|
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290 |
Vr4 "name" |
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291 |
| Ap4 "trm4" "trm4 list" |
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292 |
| Lm4 x::"name" t::"trm4" bind x in t |
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293 |
|
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294 |
thm alpha_trm4_raw_alpha_trm4_raw_list.intros[no_vars] |
1326 | 295 |
thm fv_trm4_raw_fv_trm4_raw_list.simps[no_vars]*) |
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296 |
|
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297 |
(* example 5 from Terms.thy *) |
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298 |
|
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299 |
nominal_datatype trm5 = |
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300 |
Vr5 "name" |
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301 |
| Ap5 "trm5" "trm5" |
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302 |
| Lt5 l::"lts" t::"trm5" bind "bv5 l" in t |
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303 |
and lts = |
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304 |
Lnil |
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305 |
| Lcons "name" "trm5" "lts" |
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306 |
binder |
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307 |
bv5 |
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308 |
where |
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309 |
"bv5 Lnil = {}" |
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310 |
| "bv5 (Lcons n t ltl) = {atom n} \<union> (bv5 ltl)" |
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311 |
|
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312 |
(* example 6 from Terms.thy *) |
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|
313 |
|
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314 |
nominal_datatype trm6 = |
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315 |
Vr6 "name" |
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316 |
| Lm6 x::"name" t::"trm6" bind x in t |
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317 |
| Lt6 left::"trm6" right::"trm6" bind "bv6 left" in right |
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318 |
binder |
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319 |
bv6 |
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320 |
where |
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321 |
"bv6 (Vr6 n) = {}" |
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322 |
| "bv6 (Lm6 n t) = {atom n} \<union> bv6 t" |
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323 |
| "bv6 (Lt6 l r) = bv6 l \<union> bv6 r" |
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324 |
|
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325 |
(* example 7 from Terms.thy *) |
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326 |
|
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327 |
nominal_datatype trm7 = |
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328 |
Vr7 "name" |
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329 |
| Lm7 l::"name" r::"trm7" bind l in r |
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330 |
| Lt7 l::"trm7" r::"trm7" bind "bv7 l" in r |
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331 |
binder |
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332 |
bv7 |
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|
333 |
where |
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|
334 |
"bv7 (Vr7 n) = {atom n}" |
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|
335 |
| "bv7 (Lm7 n t) = bv7 t - {atom n}" |
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|
336 |
| "bv7 (Lt7 l r) = bv7 l \<union> bv7 r" |
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|
337 |
|
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|
338 |
(* example 8 from Terms.thy *) |
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|
339 |
|
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|
340 |
nominal_datatype foo8 = |
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|
341 |
Foo0 "name" |
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|
342 |
| Foo1 b::"bar8" f::"foo8" bind "bv8 b" in f --"check fo error if this is called foo" |
1251
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|
343 |
and bar8 = |
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|
344 |
Bar0 "name" |
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|
345 |
| Bar1 "name" s::"name" b::"bar8" bind s in b |
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|
346 |
binder |
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|
347 |
bv8 |
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|
348 |
where |
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|
349 |
"bv8 (Bar0 x) = {}" |
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|
350 |
| "bv8 (Bar1 v x b) = {atom v}" |
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|
351 |
|
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|
352 |
(* example 9 from Terms.thy *) |
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|
353 |
|
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|
354 |
nominal_datatype lam9 = |
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|
355 |
Var9 "name" |
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|
356 |
| Lam9 n::"name" l::"lam9" bind n in l |
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|
357 |
and bla9 = |
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|
358 |
Bla9 f::"lam9" s::"lam9" bind "bv9 f" in s |
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|
359 |
binder |
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|
360 |
bv9 |
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|
361 |
where |
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|
362 |
"bv9 (Var9 x) = {}" |
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|
363 |
| "bv9 (Lam9 x b) = {atom x}" |
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|
364 |
|
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|
365 |
(* example from my PHD *) |
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|
366 |
|
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|
367 |
atom_decl coname |
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|
368 |
|
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|
369 |
nominal_datatype phd = |
1290
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|
370 |
Ax "name" "coname" |
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|
371 |
| Cut n::"coname" t1::"phd" c::"coname" t2::"phd" bind n in t1, bind c in t2 |
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|
372 |
| AndR c1::"coname" t1::"phd" c2::"coname" t2::"phd" "coname" bind c1 in t1, bind c2 in t2 |
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|
373 |
| AndL1 n::"name" t::"phd" "name" bind n in t |
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|
374 |
| AndL2 n::"name" t::"phd" "name" bind n in t |
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|
375 |
| ImpL c::"coname" t1::"phd" n::"name" t2::"phd" "name" bind c in t1, bind n in t2 |
1319
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|
376 |
| ImpR c::"coname" n::"name" t::"phd" "coname" bind n in t, bind c in t |
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|
377 |
|
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|
378 |
(* PROBLEM?: why does it create for the Cut AndR ImpL cases |
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|
379 |
two permutations, but only one is used *) |
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|
380 |
thm alpha_phd_raw.intros[no_vars] |
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|
381 |
thm fv_phd_raw.simps[no_vars] |
1285
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|
382 |
|
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|
383 |
(* example form Leroy 96 about modules; OTT *) |
1284 | 384 |
|
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|
385 |
nominal_datatype mexp = |
1296 | 386 |
Acc "path" |
387 |
| Stru "body" |
|
388 |
| Funct x::"name" "sexp" m::"mexp" bind x in m |
|
389 |
| FApp "mexp" "path" |
|
390 |
| Ascr "mexp" "sexp" |
|
1272
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|
391 |
and body = |
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|
392 |
Empty |
1296 | 393 |
| Seq c::defn d::"body" bind "cbinders c" in d |
1272
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|
394 |
and defn = |
1296 | 395 |
Type "name" "tyty" |
396 |
| Dty "name" |
|
397 |
| DStru "name" "mexp" |
|
398 |
| Val "name" "trmtrm" |
|
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|
399 |
and sexp = |
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|
400 |
Sig sbody |
1296 | 401 |
| SFunc "name" "sexp" "sexp" |
1272
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|
402 |
and sbody = |
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|
403 |
SEmpty |
1296 | 404 |
| SSeq C::spec D::sbody bind "Cbinders C" in D |
1272
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|
405 |
and spec = |
1296 | 406 |
Type1 "name" |
407 |
| Type2 "name" "tyty" |
|
408 |
| SStru "name" "sexp" |
|
409 |
| SVal "name" "tyty" |
|
1272
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|
410 |
and tyty = |
1296 | 411 |
Tyref1 "name" |
412 |
| Tyref2 "path" "tyty" |
|
413 |
| Fun "tyty" "tyty" |
|
1272
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|
414 |
and path = |
1296 | 415 |
Sref1 "name" |
416 |
| Sref2 "path" "name" |
|
1272
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diff
changeset
|
417 |
and trmtrm = |
1296 | 418 |
Tref1 "name" |
419 |
| Tref2 "path" "name" |
|
420 |
| Lam v::"name" "tyty" M::"trmtrm" bind v in M |
|
421 |
| App "trmtrm" "trmtrm" |
|
422 |
| Let "body" "trmtrm" |
|
1272
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|
423 |
binder |
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changeset
|
424 |
cbinders :: "defn \<Rightarrow> atom set" |
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|
425 |
and Cbinders :: "spec \<Rightarrow> atom set" |
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|
426 |
where |
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|
427 |
"cbinders (Type t T) = {atom t}" |
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|
428 |
| "cbinders (Dty t) = {atom t}" |
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|
429 |
| "cbinders (DStru x s) = {atom x}" |
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|
430 |
| "cbinders (Val v M) = {atom v}" |
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|
431 |
| "Cbinders (Type1 t) = {atom t}" |
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|
432 |
| "Cbinders (Type2 t T) = {atom t}" |
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|
433 |
| "Cbinders (SStru x S) = {atom x}" |
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changeset
|
434 |
| "Cbinders (SVal v T) = {atom v}" |
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|
435 |
|
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|
436 |
(* core haskell *) |
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|
437 |
|
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|
438 |
atom_decl var |
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|
439 |
atom_decl tvar |
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|
440 |
atom_decl co |
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|
441 |
|
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|
442 |
datatype sort = |
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|
443 |
TY tvar |
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|
444 |
| CO co |
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|
445 |
|
1299
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|
446 |
nominal_datatype kind = |
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|
447 |
KStar |
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|
448 |
| KFun kind kind |
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|
449 |
| KEq kind kind |
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|
450 |
|
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|
451 |
(* there are types, coercion types and regular types *) |
1299
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|
452 |
(* |
1265
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|
453 |
nominal_datatype ty = |
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|
454 |
TVar tvar |
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|
455 |
| TFun string "ty list" |
1299
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|
456 |
| TAll tvar kind_raw ty --"some binding" |
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|
457 |
| TSym ty |
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|
458 |
| TCir ty ty |
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|
459 |
| TApp ty ty |
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|
460 |
| TLeft ty |
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|
461 |
| TRight ty |
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|
462 |
| TEq ty |
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|
463 |
| TRightc ty |
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|
464 |
| TLeftc ty |
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|
465 |
| TCoe ty ty |
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|
466 |
*) |
1265
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|
467 |
typedecl ty --"hack since ty is not yet defined" |
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|
468 |
|
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|
469 |
abbreviation |
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|
470 |
"atoms A \<equiv> atom ` A" |
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|
471 |
|
1299
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|
472 |
(* does not work yet |
1265
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|
473 |
nominal_datatype trm = |
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|
474 |
Var var |
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|
475 |
| LAM tv::tvar kind_raw t::trm bind tv in t |
1265
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|
476 |
| APP trm ty |
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|
477 |
| Lam v::var ty t::trm bind v in t |
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|
478 |
| App trm trm |
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|
479 |
| Let x::var ty trm t::trm bind x in t |
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|
480 |
| Case trm "assoc list" |
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|
481 |
| Cast trm ty --"ty is supposed to be a coercion type only" |
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|
482 |
and assoc = |
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|
483 |
A p::pat t::trm bind "bv p" in t |
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|
484 |
and pat = |
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|
485 |
K string "(tvar \<times> kind_raw) list" "(var \<times> ty) list" |
1265
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|
486 |
binder |
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diff
changeset
|
487 |
bv :: "pat \<Rightarrow> atom set" |
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|
488 |
where |
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|
489 |
"bv (K s ts vs) = (atoms (set (map fst ts))) \<union> (atoms (set (map fst vs)))" |
1299
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|
490 |
*) |
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|
491 |
|
1312
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|
492 |
(*thm bv_raw.simps*) |
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|
493 |
|
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|
494 |
(* example 3 from Peter Sewell's bestiary *) |
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|
495 |
nominal_datatype exp = |
1319
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|
496 |
Var "name" |
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changeset
|
497 |
| App "exp" "exp" |
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parents:
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|
498 |
| Lam x::"name" e::"exp" bind x in e |
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|
499 |
| Let x::"name" p::"pat" e1::"exp" e2::"exp" bind x in e2, bind "bp p" in e1 |
1312
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|
500 |
and pat = |
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|
501 |
PVar "name" |
1312
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|
502 |
| PUnit |
1319
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parents:
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|
503 |
| PPair "pat" "pat" |
1312
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|
504 |
binder |
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changeset
|
505 |
bp :: "pat \<Rightarrow> atom set" |
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|
506 |
where |
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changeset
|
507 |
"bp (PVar x) = {atom x}" |
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|
508 |
| "bp (PUnit) = {}" |
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parents:
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changeset
|
509 |
| "bp (PPair p1 p2) = bp p1 \<union> bp p2" |
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|
510 |
|
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changeset
|
511 |
(* example 6 from Peter Sewell's bestiary *) |
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changeset
|
512 |
nominal_datatype exp6 = |
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|
513 |
EVar name |
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|
514 |
| EPair exp6 exp6 |
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parents:
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changeset
|
515 |
| ELetRec x::name p::pat6 e1::exp6 e2::exp6 bind x in e1, bind x in e2, bind "bp6 p" in e1 |
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changeset
|
516 |
and pat6 = |
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|
517 |
PVar name |
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|
518 |
| PUnit |
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changeset
|
519 |
| PPair pat6 pat6 |
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|
520 |
binder |
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parents:
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diff
changeset
|
521 |
bp6 :: "pat6 \<Rightarrow> atom set" |
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parents:
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changeset
|
522 |
where |
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parents:
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diff
changeset
|
523 |
"bp6 (PVar x) = {atom x}" |
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|
524 |
| "bp6 (PUnit) = {}" |
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changeset
|
525 |
| "bp6 (PPair p1 p2) = bp6 p1 \<union> bp6 p2" |
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changeset
|
526 |
|
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parents:
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changeset
|
527 |
(* example 7 from Peter Sewell's bestiary *) |
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changeset
|
528 |
nominal_datatype exp7 = |
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changeset
|
529 |
EVar name |
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changeset
|
530 |
| EUnit |
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diff
changeset
|
531 |
| EPair exp7 exp7 |
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parents:
1304
diff
changeset
|
532 |
| ELetRec l::lrbs e::exp7 bind "b7s l" in e, bind "b7s l" in l |
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changeset
|
533 |
and lrb = |
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changeset
|
534 |
Assign name exp7 |
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parents:
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changeset
|
535 |
and lrbs = |
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changeset
|
536 |
Single lrb |
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parents:
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changeset
|
537 |
| More lrb lrbs |
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changeset
|
538 |
binder |
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changeset
|
539 |
b7 :: "lrb \<Rightarrow> atom set" and |
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parents:
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diff
changeset
|
540 |
b7s :: "lrbs \<Rightarrow> atom set" |
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changeset
|
541 |
where |
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parents:
1304
diff
changeset
|
542 |
"b7 (Assign x e) = {atom x}" |
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parents:
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changeset
|
543 |
| "b7s (Single a) = b7 a" |
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changeset
|
544 |
| "b7s (More a as) = (b7 a) \<union> (b7s as)" |
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changeset
|
545 |
|
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parents:
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changeset
|
546 |
(* example 8 from Peter Sewell's bestiary *) |
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changeset
|
547 |
nominal_datatype exp8 = |
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changeset
|
548 |
EVar name |
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changeset
|
549 |
| EUnit |
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parents:
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diff
changeset
|
550 |
| EPair exp8 exp8 |
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parents:
1304
diff
changeset
|
551 |
| ELetRec l::lrbs8 e::exp8 bind "b_lrbs8 l" in e, bind "b_lrbs8 l" in l |
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changeset
|
552 |
and fnclause = |
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changeset
|
553 |
K x::name p::pat8 e::exp8 bind "b_pat p" in e |
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parents:
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changeset
|
554 |
and fnclauses = |
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changeset
|
555 |
S fnclause |
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changeset
|
556 |
| ORs fnclause fnclauses |
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changeset
|
557 |
and lrb8 = |
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changeset
|
558 |
Clause fnclauses |
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changeset
|
559 |
and lrbs8 = |
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parents:
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changeset
|
560 |
Single lrb8 |
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parents:
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changeset
|
561 |
| More lrb8 lrbs8 |
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changeset
|
562 |
and pat8 = |
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changeset
|
563 |
PVar name |
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changeset
|
564 |
| PUnit |
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changeset
|
565 |
| PPair pat8 pat8 |
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|
566 |
binder |
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parents:
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diff
changeset
|
567 |
b_lrbs8 :: "lrbs8 \<Rightarrow> atom set" and |
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changeset
|
568 |
b_pat :: "pat8 \<Rightarrow> atom set" and |
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|
569 |
b_fnclauses :: "fnclauses \<Rightarrow> atom set" and |
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parents:
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changeset
|
570 |
b_fnclause :: "fnclause \<Rightarrow> atom set" and |
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changeset
|
571 |
b_lrb8 :: "lrb8 \<Rightarrow> atom set" |
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|
572 |
where |
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parents:
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diff
changeset
|
573 |
"b_lrbs8 (Single l) = b_lrb8 l" |
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|
574 |
| "b_lrbs8 (More l ls) = b_lrb8 l \<union> b_lrbs8 ls" |
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parents:
1304
diff
changeset
|
575 |
| "b_pat (PVar x) = {atom x}" |
b0eae8c93314
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Christian Urban <urbanc@in.tum.de>
parents:
1304
diff
changeset
|
576 |
| "b_pat (PUnit) = {}" |
b0eae8c93314
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Christian Urban <urbanc@in.tum.de>
parents:
1304
diff
changeset
|
577 |
| "b_pat (PPair p1 p2) = b_pat p1 \<union> b_pat p2" |
b0eae8c93314
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parents:
1304
diff
changeset
|
578 |
| "b_fnclauses (S fc) = (b_fnclause fc)" |
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parents:
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diff
changeset
|
579 |
| "b_fnclauses (ORs fc fcs) = (b_fnclause fc) \<union> (b_fnclauses fcs)" |
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parents:
1304
diff
changeset
|
580 |
| "b_lrb8 (Clause fcs) = (b_fnclauses fcs)" |
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Christian Urban <urbanc@in.tum.de>
parents:
1304
diff
changeset
|
581 |
| "b_fnclause (K x pat exp8) = {atom x}" |
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parents:
1304
diff
changeset
|
582 |
|
b0eae8c93314
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Christian Urban <urbanc@in.tum.de>
parents:
1304
diff
changeset
|
583 |
|
b0eae8c93314
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Christian Urban <urbanc@in.tum.de>
parents:
1304
diff
changeset
|
584 |
|
b0eae8c93314
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Christian Urban <urbanc@in.tum.de>
parents:
1304
diff
changeset
|
585 |
|
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parents:
1304
diff
changeset
|
586 |
(* example 9 from Peter Sewell's bestiary *) |
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parents:
1304
diff
changeset
|
587 |
(* run out of steam at the moment *) |
1265
fc8f5897b00a
first attempt to make sense out of the core-haskell definition
Christian Urban <urbanc@in.tum.de>
parents:
1261
diff
changeset
|
588 |
|
961
0f88e04eb486
Variable takes a 'name'.
Cezary Kaliszyk <kaliszyk@in.tum.de>
parents:
954
diff
changeset
|
589 |
end |
1223
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"raw"-ified the term-constructors and types given in the specification
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parents:
1194
diff
changeset
|
590 |
|
160343d86a6f
"raw"-ified the term-constructors and types given in the specification
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parents:
1194
diff
changeset
|
591 |
|
1228
c179ad9d2446
declarartion of the raw datatype already works; raw binding functions throw an exception about mutual recursive types
Christian Urban <urbanc@in.tum.de>
parents:
1223
diff
changeset
|
592 |