# HG changeset patch # User blanchet # Date 1506863863 -7200 # Node ID ece9435ca78e45ea25f9de430505283509095229 # Parent 1e5c7599aa5bd953cdcead6b3ae57e1ce7c57eea updated SMT certificates and added one test diff -r 1e5c7599aa5b -r ece9435ca78e src/HOL/SMT_Examples/Boogie.thy --- a/src/HOL/SMT_Examples/Boogie.thy Sun Oct 01 15:17:31 2017 +0200 +++ b/src/HOL/SMT_Examples/Boogie.thy Sun Oct 01 15:17:43 2017 +0200 @@ -52,7 +52,7 @@ section \Verification condition proofs\ declare [[smt_oracle = false]] -declare [[smt_read_only_certificates = true]] +declare [[smt_read_only_certificates = false]] (* FIXME *) declare [[smt_certificates = "Boogie_Max.certs"]] diff -r 1e5c7599aa5b -r ece9435ca78e src/HOL/SMT_Examples/Boogie_Dijkstra.certs --- a/src/HOL/SMT_Examples/Boogie_Dijkstra.certs Sun Oct 01 15:17:31 2017 +0200 +++ b/src/HOL/SMT_Examples/Boogie_Dijkstra.certs Sun Oct 01 15:17:43 2017 +0200 @@ -3014,3 +3014,8964 @@ (let ((@x7245 (mp ((_ quant-inst ?v1!18) (or $x3700 (or $x2791 $x6615))) (rewrite (= (or $x3700 (or $x2791 $x6615)) (or $x3700 $x2791 $x6615))) (or $x3700 $x2791 $x6615)))) (unit-resolution (lemma (unit-resolution @x7245 @x7618 @x7608 @x8908 false) (or $x2806 $x1896)) @x8073 (unit-resolution @x8072 (lemma @x8164 $x3737) $x2811) false)))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))) +ad24f408c8d068cc8218aa0fd750dfcacc455689 2983 0 +unsat +((set-logic AUFLIA) +(declare-fun ?v0!20 () B_Vertex$) +(declare-fun ?v0!19 () B_Vertex$) +(declare-fun ?v1!18 () B_Vertex$) +(declare-fun ?v0!17 () B_Vertex$) +(declare-fun ?v1!16 () B_Vertex$) +(declare-fun ?v0!15 () B_Vertex$) +(declare-fun ?v0!14 () B_Vertex$) +(declare-fun ?v0!13 () B_Vertex$) +(declare-fun ?v0!12 () B_Vertex$) +(declare-fun ?v0!11 () B_Vertex$) +(declare-fun ?v1!10 () B_Vertex$) +(declare-fun ?v1!9 (B_Vertex$) B_Vertex$) +(declare-fun ?v0!8 () B_Vertex$) +(declare-fun ?v1!7 (B_Vertex$) B_Vertex$) +(declare-fun ?v1!6 (B_Vertex$) B_Vertex$) +(declare-fun ?v0!5 () B_Vertex$) +(declare-fun ?v0!4 () B_Vertex$) +(declare-fun ?v1!3 () B_Vertex$) +(declare-fun ?v0!2 () B_Vertex$) +(declare-fun ?v1!1 () B_Vertex$) +(declare-fun ?v0!0 () B_Vertex$) +(proof +(let ((?x260 (fun_upd$ v_b_Visited_G_1$ v_b_v_G_1$ true))) +(let (($x5237 (fun_app$ ?x260 ?v0!20))) +(let (($x9037 (not $x5237))) +(let (($x261 (= v_b_Visited_G_2$ ?x260))) +(let (($x3724 (forall ((?v1 B_Vertex$) )(! 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+ +8ec9d30fc9fdbc0ea292e0fdf148a6230c16dbca 2924 0 +unsat +((set-logic ) +(declare-fun ?v0!15 () Int) +(declare-fun ?v0!14 () Int) +(declare-fun ?v0!13 () Int) +(proof +(let ((?x10076 (b_S_array$ b_T_T_u1$ v_b_P_H_len$))) +(let ((?x22595 (b_S_ptr$ ?x10076 v_b_P_H_arr$))) +(let ((?x24598 (b_S_idx$ ?x22595 v_b_L_H_p_G_0$ b_T_T_u1$))) +(let ((?x10272 (b_S_typemap$ v_b_S_s$))) +(let ((?x24302 (b_S_select_o_tm$ ?x10272 ?x24598))) +(let ((?x24605 (b_S_ts_n_emb$ ?x24302))) +(let (($x24606 (= ?x24605 ?x22595))) +(let (($x24611 (b_S_typed$ v_b_S_s$ ?x24598))) +(let (($x24614 (not $x24611))) +(let (($x24608 (b_S_ts_n_is_n_volatile$ ?x24302))) +(let (($x24607 (not $x24606))) +(let (($x24615 (or $x24607 $x24608 (not (b_S_ts_n_is_n_array_n_elt$ ?x24302)) $x24614))) +(let (($x24616 (not $x24615))) +(let (($x11901 (>= v_b_L_H_p_G_0$ 0))) +(let (($x20030 (forall ((?v0 Int) )(! (let ((?x10163 (b_S_read_n_u1$ v_b_S_s$ (b_S_idx$ (b_S_ptr$ b_T_T_u1$ v_b_P_H_arr$) ?v0 b_T_T_u1$)))) +(let (($x10238 (= ?x10163 v_b_S_result_G_0$))) +(let (($x11800 (>= (+ ?v0 (* (- 1) v_b_P_H_len$)) 0))) +(let (($x12168 (<= ?v0 4294967295))) +(let (($x16553 (not $x12168))) +(let (($x2815 (>= ?v0 0))) +(let (($x3763 (not $x2815))) +(or $x3763 $x16553 $x11800 (not $x10238))))))))) :pattern ( (b_S_idx$ (b_S_ptr$ b_T_T_u1$ v_b_P_H_arr$) ?v0 b_T_T_u1$) ) :qid k!704)) +)) +(let (($x20035 (not $x20030))) +(let (($x20022 (forall ((?v0 Int) )(! (let ((?x11816 (* (- 1) v_b_S_result_G_0$))) +(let ((?x10163 (b_S_read_n_u1$ v_b_S_s$ (b_S_idx$ (b_S_ptr$ b_T_T_u1$ v_b_P_H_arr$) ?v0 b_T_T_u1$)))) +(let (($x11818 (<= (+ ?x10163 ?x11816) 0))) +(let (($x11800 (>= (+ ?v0 (* (- 1) v_b_P_H_len$)) 0))) +(let (($x12168 (<= ?v0 4294967295))) +(let (($x16553 (not $x12168))) +(let (($x2815 (>= ?v0 0))) +(let (($x3763 (not $x2815))) +(or $x3763 $x16553 $x11800 $x11818))))))))) :pattern ( (b_S_idx$ (b_S_ptr$ b_T_T_u1$ v_b_P_H_arr$) ?v0 b_T_T_u1$) ) :qid k!704)) +)) +(let (($x20027 (not $x20022))) +(let (($x20038 (or $x20027 $x20035))) +(let (($x20041 (not $x20038))) +(let ((?x10078 (b_S_ptr$ b_T_T_u1$ v_b_P_H_arr$))) +(let ((?x15743 (b_S_idx$ ?x10078 ?v0!15 b_T_T_u1$))) +(let ((?x15744 (b_S_read_n_u1$ v_b_S_s$ ?x15743))) +(let ((?x16029 (* (- 1) ?x15744))) +(let (($x16031 (>= (+ v_b_S_result_G_0$ ?x16029) 0))) +(let (($x16009 (<= (+ v_b_P_H_len$ (* (- 1) ?v0!15)) 0))) +(let (($x15737 (<= ?v0!15 4294967295))) +(let (($x19560 (not $x15737))) +(let (($x15736 (>= ?v0!15 0))) +(let (($x19559 (not $x15736))) +(let (($x19575 (or $x19559 $x19560 $x16009 $x16031))) +(let (($x19580 (not $x19575))) +(let (($x20044 (or $x19580 $x20041))) +(let (($x20047 (not $x20044))) +(let (($x10222 (= v_b_S_result_G_0$ v_b_L_H_max_G_1$))) +(let (($x19640 (not $x10222))) +(let (($x10220 (= v_b_SL_H_witness_G_2$ v_b_SL_H_witness_G_0$))) +(let (($x19639 (not $x10220))) +(let (($x10218 (= v_b_L_H_p_G_2$ v_b_L_H_p_G_0$))) +(let (($x19638 (not $x10218))) +(let (($x10216 (= v_b_L_H_max_G_4$ v_b_L_H_max_G_1$))) +(let (($x19637 (not $x10216))) +(let (($x11432 (>= v_b_SL_H_witness_G_0$ 0))) +(let (($x19501 (not $x11432))) +(let (($x11429 (>= v_b_L_H_p_G_0$ 1))) +(let (($x19474 (not $x11429))) +(let (($x15729 (not b_S_position_n_marker$))) +(let (($x20050 (or $x15729 $x19474 $x19501 $x19637 $x19638 $x19639 $x19640 $x20047))) +(let (($x20053 (not $x20050))) +(let (($x20056 (or $x15729 $x20053))) +(let (($x20059 (not $x20056))) +(let ((?x11484 (* (- 1) v_b_L_H_p_G_0$))) +(let ((?x11485 (+ v_b_P_H_len$ ?x11484))) +(let (($x11486 (<= ?x11485 0))) +(let (($x11487 (not $x11486))) +(let (($x20062 (or $x11487 $x19474 $x19501 $x20059))) +(let (($x20065 (not $x20062))) +(let ((?x10372 (b_S_idx$ ?x10078 v_b_SL_H_witness_G_1$ b_T_T_u1$))) +(let ((?x10373 (b_S_read_n_u1$ v_b_S_s$ ?x10372))) +(let (($x10374 (= ?x10373 v_b_L_H_max_G_3$))) +(let (($x19411 (not $x10374))) +(let (($x11647 (<= (+ v_b_P_H_len$ (* (- 1) v_b_SL_H_witness_G_1$)) 0))) +(let (($x19412 (or $x11647 $x19411))) +(let (($x19413 (not $x19412))) +(let (($x19906 (forall ((?v0 Int) )(! (let ((?x11631 (* (- 1) v_b_L_H_max_G_3$))) +(let ((?x10163 (b_S_read_n_u1$ v_b_S_s$ (b_S_idx$ (b_S_ptr$ b_T_T_u1$ v_b_P_H_arr$) ?v0 b_T_T_u1$)))) +(let (($x11633 (<= (+ ?x10163 ?x11631) 0))) +(let (($x11615 (>= (+ ?v0 (* (- 1) v_b_L_H_p_G_1$)) 0))) +(let (($x12168 (<= ?v0 4294967295))) +(let (($x16553 (not $x12168))) +(let (($x2815 (>= ?v0 0))) +(let (($x3763 (not $x2815))) +(or $x3763 $x16553 $x11615 $x11633))))))))) :pattern ( (b_S_idx$ (b_S_ptr$ b_T_T_u1$ v_b_P_H_arr$) ?v0 b_T_T_u1$) ) :qid k!704)) +)) +(let (($x19911 (not $x19906))) +(let (($x19914 (or $x19911 $x19413))) +(let (($x19917 (not $x19914))) +(let ((?x15633 (b_S_idx$ ?x10078 ?v0!14 b_T_T_u1$))) +(let ((?x15634 (b_S_read_n_u1$ v_b_S_s$ ?x15633))) +(let ((?x15891 (* (- 1) ?x15634))) +(let (($x15893 (>= (+ v_b_L_H_max_G_3$ ?x15891) 0))) +(let (($x15871 (<= (+ v_b_L_H_p_G_1$ (* (- 1) ?v0!14)) 0))) +(let (($x15627 (<= ?v0!14 4294967295))) +(let (($x19366 (not $x15627))) +(let (($x15626 (>= ?v0!14 0))) +(let (($x19365 (not $x15626))) +(let (($x19381 (or $x19365 $x19366 $x15871 $x15893))) +(let (($x19386 (not $x19381))) +(let (($x19920 (or $x19386 $x19917))) +(let (($x19923 (not $x19920))) +(let (($x11608 (>= (+ v_b_P_H_len$ (* (- 1) v_b_L_H_p_G_1$)) 0))) +(let (($x11612 (not $x11608))) +(let (($x19926 (or $x11612 $x19923))) +(let (($x19929 (not $x19926))) +(let (($x19932 (or $x11612 $x19929))) +(let (($x19935 (not $x19932))) +(let (($x11536 (>= v_b_SL_H_witness_G_1$ 0))) +(let (($x19455 (not $x11536))) +(let (($x11578 (>= v_b_L_H_p_G_1$ 2))) +(let (($x19454 (not $x11578))) +(let (($x10358 (b_S_local_n_value_n_is$ v_b_S_s$ b_H_tok_S_1_T_16_o_24$ b_H_loc_o_p$ v_b_L_H_p_G_1$ b_T_T_u4$))) +(let (($x19453 (not $x10358))) +(let ((?x11581 (* (- 1) v_b_L_H_p_G_1$))) +(let ((?x11582 (+ v_b_L_H_p_G_0$ ?x11581))) +(let (($x11580 (= ?x11582 (- 1)))) +(let (($x19452 (not $x11580))) +(let (($x13353 (<= v_b_L_H_p_G_0$ 4294967294))) +(let (($x15614 (not $x13353))) +(let (($x11570 (>= v_b_L_H_p_G_0$ (- 1)))) +(let (($x15611 (not $x11570))) +(let (($x19938 (or $x15611 $x15614 $x19452 $x19453 $x19454 $x19455 $x19935))) +(let (($x19941 (not $x19938))) +(let (($x19944 (or $x15611 $x15614 $x19941))) +(let (($x19947 (not $x19944))) +(let (($x10392 (= v_b_SL_H_witness_G_1$ v_b_SL_H_witness_G_0$))) +(let (($x19513 (not $x10392))) +(let (($x10391 (= v_b_L_H_max_G_3$ v_b_L_H_max_G_1$))) +(let (($x19512 (not $x10391))) +(let ((?x10320 (b_S_idx$ ?x10078 v_b_L_H_p_G_0$ b_T_T_u1$))) +(let ((?x10327 (b_S_read_n_u1$ v_b_S_s$ ?x10320))) +(let ((?x11517 (* (- 1) ?x10327))) +(let (($x11516 (>= (+ v_b_L_H_max_G_1$ ?x11517) 0))) +(let (($x11515 (not $x11516))) +(let (($x19980 (or $x11515 $x19501 $x19512 $x19513 $x19474 $x19455 $x19947))) +(let (($x19983 (not $x19980))) +(let (($x10340 (= v_b_SL_H_witness_G_1$ v_b_L_H_p_G_0$))) +(let (($x19473 (not $x10340))) +(let (($x10338 (= v_b_L_H_max_G_3$ v_b_L_H_max_G_2$))) +(let (($x19472 (not $x10338))) +(let (($x10335 (b_S_local_n_value_n_is$ v_b_S_s$ b_H_tok_S_1_T_24_o_47$ b_H_loc_o_witness$ v_b_L_H_p_G_0$ b_T_T_u4$))) +(let (($x19471 (not $x10335))) +(let (($x10334 (b_S_local_n_value_n_is$ v_b_S_s$ b_H_tok_S_1_T_23_o_7$ b_H_loc_o_max$ v_b_L_H_max_G_2$ b_T_T_u1$))) +(let (($x19470 (not $x10334))) +(let (($x10333 (= v_b_L_H_max_G_2$ ?x10327))) +(let (($x19469 (not $x10333))) +(let (($x10324 (b_S_thread_n_local$ v_b_S_s$ ?x10320))) +(let (($x15599 (not $x10324))) +(let (($x10321 (b_S_is$ ?x10320 b_T_T_u1$))) +(let (($x15590 (not $x10321))) +(let (($x19950 (or $x15590 $x15599 $x19469 $x19470 $x19471 $x19472 $x19473 $x19474 $x19455 $x19947))) +(let (($x19953 (not $x19950))) +(let (($x19956 (or $x15590 $x15599 $x19953))) +(let (($x19959 (not $x19956))) +(let (($x10322 (b_S_typed$ v_b_S_s$ ?x10320))) +(let (($x15593 (not $x10322))) +(let (($x19962 (or $x15590 $x15593 $x19959))) +(let (($x19965 (not $x19962))) +(let (($x19968 (or $x15590 $x15593 $x19965))) +(let (($x19971 (not $x19968))) +(let (($x19974 (or $x11516 $x19474 $x19501 $x19971))) +(let (($x19977 (not $x19974))) +(let (($x19986 (or $x19977 $x19983))) +(let (($x19989 (not $x19986))) +(let (($x19992 (or $x15590 $x15599 $x19474 $x19501 $x19989))) +(let (($x19995 (not $x19992))) +(let (($x19998 (or $x15590 $x15599 $x19995))) +(let (($x20001 (not $x19998))) +(let (($x20004 (or $x15590 $x15593 $x20001))) +(let (($x20007 (not $x20004))) +(let (($x20010 (or $x15590 $x15593 $x20007))) +(let (($x20013 (not $x20010))) +(let (($x20016 (or $x11486 $x19474 $x19501 $x20013))) +(let (($x20019 (not $x20016))) +(let (($x20068 (or $x20019 $x20065))) +(let (($x20071 (not $x20068))) +(let ((?x2238 (b_S_ptr_n_to$ b_T_T_u1$))) +(let (($x10296 (b_S_local_n_value_n_is_n_ptr$ v_b_S_s$ b_H_tok_S_1_T_16_o_3$ b_H_loc_o_arr$ ?x10078 ?x2238))) +(let (($x19683 (not $x10296))) +(let ((?x10105 (b_S_ptr_n_to_n_int$ ?x10078))) +(let (($x10295 (b_S_local_n_value_n_is$ v_b_S_s$ b_H_tok_S_1_T_16_o_3$ b_H_loc_o_arr$ ?x10105 ?x2238))) +(let (($x19682 (not $x10295))) +(let (($x10294 (b_S_local_n_value_n_is$ v_b_S_s$ b_H_tok_S_1_T_16_o_3$ b_H_loc_o_len$ v_b_P_H_len$ b_T_T_u4$))) +(let (($x19681 (not $x10294))) +(let (($x10293 (b_S_local_n_value_n_is$ v_b_S_s$ b_H_tok_S_1_T_16_o_3$ b_H_loc_o_max$ v_b_L_H_max_G_1$ b_T_T_u1$))) +(let (($x19680 (not $x10293))) +(let (($x10292 (b_S_local_n_value_n_is$ v_b_S_s$ b_H_tok_S_1_T_16_o_3$ b_H_loc_o_witness$ v_b_SL_H_witness_G_0$ b_T_T_u4$))) +(let (($x19679 (not $x10292))) +(let (($x10291 (b_S_local_n_value_n_is$ v_b_S_s$ b_H_tok_S_1_T_16_o_3$ b_H_loc_o_p$ v_b_L_H_p_G_0$ b_T_T_u4$))) +(let (($x19678 (not $x10291))) +(let (($x10097 (b_S_full_n_stop$ v_b_S_s$))) +(let (($x19677 (not $x10097))) +(let (($x10204 (b_S_good_n_state_n_ext$ b_H_tok_S_1_T_16_o_3$ v_b_S_s$))) +(let (($x19676 (not $x10204))) +(let (($x10284 (b_S_call_n_transition$ v_b_S_s$ v_b_S_s$))) +(let (($x19675 (not $x10284))) +(let ((?x10190 (b_S_idx$ ?x10078 v_b_SL_H_witness_G_0$ b_T_T_u1$))) +(let ((?x10191 (b_S_read_n_u1$ v_b_S_s$ ?x10190))) +(let (($x10192 (= ?x10191 v_b_L_H_max_G_1$))) +(let (($x19674 (not $x10192))) +(let (($x11867 (<= (+ v_b_P_H_len$ (* (- 1) v_b_SL_H_witness_G_0$)) 0))) +(let (($x19898 (forall ((?v0 Int) )(! 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(let ((?x10078 (b_S_ptr$ b_T_T_u1$ v_b_P_H_arr$))) +(let ((?x10079 (b_S_ref$ ?x10078))) +(let ((?x10076 (b_S_array$ b_T_T_u1$ v_b_P_H_len$))) +(let ((?x10080 (b_S_ptr$ ?x10076 ?x10079))) +(let ((?x21014 (b_S_ref$ ?x10080))) +(let ((?x21983 (b_S_ptr$ ?x10076 ?x21014))) +(let ((?x22357 (b_S_read_n_version$ v_b_S_s$ ?x21983))) +(let ((?x22358 (b_S_ver_n_domain$ ?x22357))) +(let ((?x22234 (b_S_typ$ ?x21983))) +(let (($x22353 (b_S_has_n_volatile_n_owns_n_set$ ?x22234))) +(or $x22353 (not (b_S_set_n_in$ ?v3 (b_S_owns$ v_b_S_s$ ?x21983))) (b_S_set_n_in2$ ?v3 ?x22358)))))))))))) :pattern ( (b_S_set_n_in$ ?v3 (b_S_owns$ v_b_S_s$ (b_S_ptr$ (b_S_array$ b_T_T_u1$ v_b_P_H_len$) (b_S_ref$ (b_S_ptr$ (b_S_array$ b_T_T_u1$ v_b_P_H_len$) (b_S_ref$ (b_S_ptr$ b_T_T_u1$ v_b_P_H_arr$))))))) ) :qid k!564)) +)) +(let (($x22363 (not $x22362))) +(let (($x22248 (b_S_closed$ v_b_S_s$ ?x21983))) +(let (($x22272 (not $x22248))) +(let (($x22352 (not $x22344))) +(let (($x22364 (or $x22352 $x22272 $x22363))) +(let (($x22365 (not $x22364))) +(let (($x22318 (b_S_in_n_domain$ v_b_S_s$ ?x21983 ?x21983))) +(let (($x22317 (b_S_in_n_domain_n_lab$ v_b_S_s$ ?x21983 ?x21983 b_l_H_public$))) +(let (($x22326 (= $x22317 $x22318))) +(let (($x8728 (forall ((?v0 B_S_state$) (?v1 B_S_ptr$) (?v2 B_S_ptr$) (?v3 B_S_label$) )(! (let (($x8719 (b_S_in_n_domain$ ?v0 ?v1 ?v2))) +(let (($x8718 (b_S_in_n_domain_n_lab$ ?v0 ?v1 ?v2 ?v3))) +(= $x8718 $x8719))) :pattern ( (b_S_in_n_domain_n_lab$ ?v0 ?v1 ?v2 ?v3) ) :qid k!567)) +)) +(let (($x8719 (b_S_in_n_domain$ ?3 ?2 ?1))) +(let (($x8718 (b_S_in_n_domain_n_lab$ ?3 ?2 ?1 ?0))) +(let (($x8725 (= $x8718 $x8719))) +(let (($x8723 (forall ((?v0 B_S_state$) (?v1 B_S_ptr$) (?v2 B_S_ptr$) (?v3 B_S_label$) )(! (let (($x8719 (b_S_in_n_domain$ ?v0 ?v1 ?v2))) +(let (($x8718 (b_S_in_n_domain_n_lab$ ?v0 ?v1 ?v2 ?v3))) +(= $x8718 $x8719))) :pattern ( (b_S_in_n_domain_n_lab$ ?v0 ?v1 ?v2 ?v3) ) :qid k!567)) +)) +(let ((@x8733 (mp (asserted $x8723) (quant-intro (rewrite (= (= $x8718 $x8719) $x8725)) (= $x8723 $x8728)) $x8728))) +(let ((@x15021 (mp~ @x8733 (nnf-pos (refl (~ $x8725 $x8725)) (~ $x8728 $x8728)) $x8728))) +(let (($x22699 (or (not $x8728) $x22326))) +(let ((@x23229 ((_ quant-inst v_b_S_s$ (b_S_ptr$ ?x10076 ?x21014) (b_S_ptr$ ?x10076 ?x21014) b_l_H_public$) $x22699))) +(let ((@x22990 (unit-resolution @x23229 @x15021 $x22326))) +(let ((@x23563 (symm (monotonicity @x23670 @x23670 (= $x22317 $x10136)) (= $x10136 $x22317)))) +(let (($x35 (= b_S_kind_n_primitive$ b_S_kind_n_array$))) +(let (($x36 (not $x35))) +(let (($x22421 (= $x36 (not (= (b_S_kind_n_of$ (b_S_typ$ ?x21983)) b_S_kind_n_primitive$))))) +(let ((?x22234 (b_S_typ$ ?x21983))) +(let ((?x22387 (b_S_kind_n_of$ ?x22234))) +(let (($x22388 (= ?x22387 b_S_kind_n_primitive$))) +(let (($x22148 (= ?x10086 b_S_kind_n_array$))) +(let (($x21115 (b_S_is_n_arraytype$ ?x10076))) +(let (($x22149 (= $x21115 $x22148))) +(let (($x9869 (forall ((?v0 B_S_ctype$) )(! (let ((?x9849 (b_S_kind_n_of$ ?v0))) +(let (($x9861 (= ?x9849 b_S_kind_n_array$))) +(let (($x7848 (b_S_is_n_arraytype$ ?v0))) +(= $x7848 $x9861)))) :pattern ( (b_S_is_n_arraytype$ ?v0) ) :qid k!662)) +)) +(let ((?x9849 (b_S_kind_n_of$ ?0))) +(let (($x9861 (= ?x9849 b_S_kind_n_array$))) +(let (($x7848 (b_S_is_n_arraytype$ ?0))) +(let (($x9866 (= $x7848 $x9861))) +(let (($x9864 (forall ((?v0 B_S_ctype$) )(! (let ((?x9849 (b_S_kind_n_of$ ?v0))) +(let (($x9861 (= ?x9849 b_S_kind_n_array$))) +(let (($x7848 (b_S_is_n_arraytype$ ?v0))) +(= $x7848 $x9861)))) :pattern ( (b_S_is_n_arraytype$ ?v0) ) :qid k!662)) +)) +(let ((@x9874 (mp (asserted $x9864) (quant-intro (rewrite (= (= $x7848 $x9861) $x9866)) (= $x9864 $x9869)) $x9869))) +(let ((@x15446 (mp~ @x9874 (nnf-pos (refl (~ $x9866 $x9866)) (~ $x9869 $x9869)) $x9869))) +(let (($x22159 (or (not $x9869) $x22149))) +(let ((@x22160 ((_ quant-inst (b_S_array$ b_T_T_u1$ v_b_P_H_len$)) $x22159))) +(let (($x7229 (forall ((?v0 B_S_ctype$) (?v1 Int) )(! (let ((?x6561 (b_S_array$ ?v0 ?v1))) +(b_S_is_n_arraytype$ ?x6561)) :pattern ( (b_S_array$ ?v0 ?v1) ) :qid k!502)) +)) +(let ((?x6561 (b_S_array$ ?1 ?0))) +(let (($x7228 (b_S_is_n_arraytype$ ?x6561))) +(let ((@x14576 (mp~ (asserted $x7229) (nnf-pos (refl (~ $x7228 $x7228)) (~ $x7229 $x7229)) $x7229))) +(let (($x21122 (or (not $x7229) $x21115))) +(let ((@x21123 ((_ quant-inst b_T_T_u1$ v_b_P_H_len$) $x21122))) +(let ((@x22382 (unit-resolution (def-axiom (or (not $x22149) (not $x21115) $x22148)) (unit-resolution @x21123 @x14576 $x21115) (or (not $x22149) $x22148)))) +(let ((?x21180 (b_S_typ$ ?x10080))) +(let (($x21183 (= ?x21180 ?x10076))) +(let (($x19841 (forall ((?v0 B_S_ctype$) (?v1 Int) )(! (= (b_S_typ$ (b_S_ptr$ ?v0 ?v1)) ?v0) :pattern ( (b_S_ptr$ ?v0 ?v1) ) :qid k!628)) +)) +(let (($x9659 (forall ((?v0 B_S_ctype$) (?v1 Int) )(! (= (b_S_typ$ (b_S_ptr$ ?v0 ?v1)) ?v0) :qid k!628)) +)) +(let (($x9658 (= (b_S_typ$ (b_S_ptr$ ?1 ?0)) ?1))) +(let ((@x15361 (mp~ (asserted $x9659) (nnf-pos (refl (~ $x9658 $x9658)) (~ $x9659 $x9659)) $x9659))) +(let ((@x19846 (mp @x15361 (quant-intro (refl (= $x9658 $x9658)) (= $x9659 $x19841)) $x19841))) +(let (($x21147 (not $x19841))) +(let (($x21188 (or $x21147 $x21183))) +(let ((@x21189 ((_ quant-inst (b_S_array$ b_T_T_u1$ v_b_P_H_len$) (b_S_ref$ ?x10078)) $x21188))) +(let ((@x22406 (trans (monotonicity @x23670 (= ?x22234 ?x21180)) (unit-resolution @x21189 @x19846 $x21183) (= ?x22234 ?x10076)))) +(let ((@x22335 (trans (monotonicity @x22406 (= ?x22387 ?x10086)) (unit-resolution @x22382 (unit-resolution @x22160 @x15446 $x22149) $x22148) (= ?x22387 b_S_kind_n_array$)))) +(let ((@x22369 (monotonicity @x22335 (= $x22388 (= b_S_kind_n_array$ b_S_kind_n_primitive$))))) +(let ((@x22393 (trans @x22369 (commutativity (= (= b_S_kind_n_array$ b_S_kind_n_primitive$) $x35)) (= $x22388 $x35)))) +(let (($x41 (= b_S_kind_n_thread$ b_S_kind_n_array$))) +(let (($x42 (not $x41))) +(let (($x39 (= b_S_kind_n_composite$ b_S_kind_n_array$))) +(let (($x40 (not $x39))) +(let (($x37 (= b_S_kind_n_composite$ b_S_kind_n_thread$))) +(let (($x38 (not $x37))) +(let (($x32 (= b_S_kind_n_primitive$ b_S_kind_n_thread$))) +(let (($x33 (not $x32))) +(let (($x29 (= b_S_kind_n_primitive$ b_S_kind_n_composite$))) +(let (($x30 (not $x29))) +(let (($x67 (and $x30 $x33 $x36 $x38 $x40 $x42))) +(let (($x48 (and $x30 (and $x33 (and $x36 (and $x38 (and $x40 (and $x42 true)))))))) +(let (($x68 (= (and $x30 (and $x33 (and $x36 (and $x38 (and $x40 $x42))))) $x67))) +(let (($x65 (= $x48 (and $x30 (and $x33 (and $x36 (and $x38 (and $x40 $x42)))))))) +(let (($x62 (= (and $x33 (and $x36 (and $x38 (and $x40 (and $x42 true))))) (and $x33 (and $x36 (and $x38 (and $x40 $x42))))))) +(let (($x59 (= (and $x36 (and $x38 (and $x40 (and $x42 true)))) (and $x36 (and $x38 (and $x40 $x42)))))) +(let (($x56 (= (and $x38 (and $x40 (and $x42 true))) (and $x38 (and $x40 $x42))))) +(let ((@x54 (monotonicity (rewrite (= (and $x42 true) $x42)) (= (and $x40 (and $x42 true)) (and $x40 $x42))))) +(let ((@x66 (monotonicity (monotonicity (monotonicity (monotonicity @x54 $x56) $x59) $x62) $x65))) +(let ((@x72 (mp (asserted $x48) (trans @x66 (rewrite $x68) (= $x48 $x67)) $x67))) +(let ((@x75 (and-elim @x72 $x36))) +(let (($x22333 (not $x22318))) +(let (($x22336 (not $x22317))) +(let ((@x22397 (unit-resolution (def-axiom (or (not $x22326) $x22317 $x22333)) (mp (hypothesis $x11221) (monotonicity @x23563 (= $x11221 $x22336)) $x22336) @x22990 $x22333))) +(let (($x22368 (b_S_is$ ?x21983 ?x22234))) +(let ((@x23420 (mp @x12044 (symm (monotonicity @x23670 @x22406 (= $x22368 $x10084)) (= $x10084 $x22368)) $x22368))) +(let (($x22385 (b_S_typed$ v_b_S_s$ ?x21983))) +(let ((@x12045 (and-elim @x12033 $x10085))) +(let ((@x22419 (mp @x12045 (symm (monotonicity @x23670 (= $x22385 $x10085)) (= $x10085 $x22385)) $x22385))) +(let ((?x22243 (b_S_owner$ v_b_S_s$ ?x21983))) +(let (($x22259 (= ?x22243 b_S_me$))) +(let ((@x12043 (and-elim @x12033 $x10083))) +(let ((@x12042 (and-elim @x12033 $x10081))) +(let ((@x22437 (mp @x12042 (symm (monotonicity @x23670 (= $x22248 $x10081)) (= $x10081 $x22248)) $x22248))) +(let (($x22235 (b_S_is_n_non_n_primitive$ ?x22234))) +(let ((@x12047 (and-elim @x12033 $x10089))) +(let ((@x22500 (mp @x12047 (symm (monotonicity @x22406 (= $x22235 $x10089)) (= $x10089 $x22235)) $x22235))) +(let ((@x12050 (and-elim @x12033 $x10097))) +(let (($x18905 (forall ((?v0 B_S_state$) (?v1 B_S_ptr$) )(! (let (($x8613 (b_S_in_n_domain$ ?v0 ?v1 ?v1))) +(let ((?x2247 (b_S_typ$ ?v1))) +(let (($x2351 (b_S_is_n_non_n_primitive$ ?x2247))) +(let (($x9239 (not $x2351))) +(let (($x2249 (= (b_S_kind_n_of$ ?x2247) b_S_kind_n_primitive$))) +(let (($x2488 (b_S_typed$ ?v0 ?v1))) +(let (($x9531 (not $x2488))) +(let (($x2487 (b_S_is$ ?v1 ?x2247))) +(let (($x16299 (not $x2487))) +(let ((?x2484 (b_S_owner$ ?v0 ?v1))) +(let (($x2486 (= ?x2484 b_S_me$))) +(let (($x16298 (not $x2486))) +(let (($x2471 (b_S_closed$ ?v0 ?v1))) +(let (($x9185 (not $x2471))) +(let (($x2687 (b_S_full_n_stop$ ?v0))) +(let (($x16426 (not $x2687))) +(or $x16426 $x9185 $x16298 $x16299 $x9531 $x2249 $x9239 $x8613))))))))))))))))) :pattern ( (b_S_in_n_domain$ ?v0 ?v1 ?v1) ) :qid k!563)) +)) +(let (($x8634 (forall ((?v0 B_S_state$) (?v1 B_S_ptr$) )(! (let (($x8613 (b_S_in_n_domain$ ?v0 ?v1 ?v1))) +(let ((?x2247 (b_S_typ$ ?v1))) +(let (($x2351 (b_S_is_n_non_n_primitive$ ?x2247))) +(let (($x2249 (= (b_S_kind_n_of$ ?x2247) b_S_kind_n_primitive$))) +(let (($x2294 (not $x2249))) +(let (($x2488 (b_S_typed$ ?v0 ?v1))) +(let (($x2487 (b_S_is$ ?v1 ?x2247))) +(let ((?x2484 (b_S_owner$ ?v0 ?v1))) +(let (($x2486 (= ?x2484 b_S_me$))) +(let (($x2471 (b_S_closed$ ?v0 ?v1))) +(let (($x2687 (b_S_full_n_stop$ ?v0))) +(let (($x8625 (and $x2687 $x2471 $x2486 $x2487 $x2488 $x2294 $x2351))) +(let (($x8628 (not $x8625))) +(or $x8628 $x8613)))))))))))))) :pattern ( (b_S_in_n_domain$ ?v0 ?v1 ?v1) ) :qid k!563)) +)) +(let (($x8613 (b_S_in_n_domain$ ?1 ?0 ?0))) +(let ((?x2247 (b_S_typ$ ?0))) +(let (($x2351 (b_S_is_n_non_n_primitive$ ?x2247))) +(let (($x9239 (not $x2351))) +(let (($x2249 (= (b_S_kind_n_of$ ?x2247) b_S_kind_n_primitive$))) +(let (($x2488 (b_S_typed$ ?1 ?0))) +(let (($x9531 (not $x2488))) +(let (($x2487 (b_S_is$ ?0 ?x2247))) +(let (($x16299 (not $x2487))) +(let ((?x2484 (b_S_owner$ ?1 ?0))) +(let (($x2486 (= ?x2484 b_S_me$))) +(let (($x16298 (not $x2486))) +(let (($x2471 (b_S_closed$ ?1 ?0))) +(let (($x9185 (not $x2471))) +(let (($x2687 (b_S_full_n_stop$ ?1))) +(let (($x16426 (not $x2687))) +(let (($x18900 (or $x16426 $x9185 $x16298 $x16299 $x9531 $x2249 $x9239 $x8613))) +(let (($x2294 (not $x2249))) +(let (($x8625 (and $x2687 $x2471 $x2486 $x2487 $x2488 $x2294 $x2351))) +(let (($x8628 (not $x8625))) +(let (($x8631 (or $x8628 $x8613))) +(let ((@x18902 (rewrite (= (or (or $x16426 $x9185 $x16298 $x16299 $x9531 $x2249 $x9239) $x8613) $x18900)))) +(let (($x18886 (or $x16426 $x9185 $x16298 $x16299 $x9531 $x2249 $x9239))) +(let ((@x18892 (monotonicity (rewrite (= $x8625 (not $x18886))) (= $x8628 (not (not $x18886)))))) +(let ((@x18899 (monotonicity (trans @x18892 (rewrite (= (not (not $x18886)) $x18886)) (= $x8628 $x18886)) (= $x8631 (or $x18886 $x8613))))) +(let (($x8616 (forall ((?v0 B_S_state$) (?v1 B_S_ptr$) )(! 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(let (($x8646 (b_S_set_n_in2$ ?v3 (b_S_ver_n_domain$ (b_S_read_n_version$ ?v0 ?v2))))) +(let (($x8643 (b_S_set_n_in$ ?v3 (b_S_owns$ ?v0 ?v1)))) +(let (($x8644 (and (not (b_S_has_n_volatile_n_owns_n_set$ (b_S_typ$ ?v1))) $x8643))) +(let (($x8656 (not $x8644))) +(or $x8656 $x8646))))) :pattern ( (b_S_set_n_in$ ?v3 (b_S_owns$ ?v0 ?v1)) ) :qid k!564)) +)) +(let (($x2554 (b_S_closed$ ?v0 ?v1))) +(let (($x8428 (b_S_set_n_in$ ?v1 (b_S_domain$ ?v0 ?v2)))) +(let (($x8681 (and $x8428 $x2554 $x8660))) +(let (($x8461 (b_S_in_n_domain$ ?v0 ?v1 ?v2))) +(let (($x8672 (not $x8461))) +(or $x8672 $x8681))))))) :pattern ( (b_S_in_n_domain$ ?v0 ?v1 ?v2) ) :qid k!564)) +)) +(let (($x18929 (forall ((?v3 B_S_ptr$) )(! (let (($x8646 (b_S_set_n_in2$ ?v3 (b_S_ver_n_domain$ (b_S_read_n_version$ ?2 ?0))))) +(let ((?x6628 (b_S_typ$ ?1))) +(let (($x8640 (b_S_has_n_volatile_n_owns_n_set$ ?x6628))) +(or $x8640 (not (b_S_set_n_in$ ?v3 (b_S_owns$ ?2 ?1))) $x8646)))) :pattern ( (b_S_set_n_in$ ?v3 (b_S_owns$ ?2 ?1)) ) :qid k!564)) +)) +(let (($x2554 (b_S_closed$ ?2 ?1))) +(let (($x8955 (not $x2554))) +(let (($x8428 (b_S_set_n_in$ ?1 (b_S_domain$ ?2 ?0)))) +(let (($x18744 (not $x8428))) +(let (($x18937 (not (or $x18744 $x8955 (not $x18929))))) +(let (($x8461 (b_S_in_n_domain$ ?2 ?1 ?0))) +(let (($x8672 (not $x8461))) +(let (($x8660 (forall ((?v3 B_S_ptr$) )(! 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@x19949 (= (or $x15590 $x15599 $x19469 $x19470 $x19471 $x19472 $x19473 $x19474 $x19455 $x19475) $x19950)))) +(let ((@x19961 (monotonicity (monotonicity (monotonicity @x19952 (= $x19477 $x19953)) (= $x19482 $x19956)) (= (not $x19482) $x19959)))) +(let ((@x19967 (monotonicity (monotonicity @x19961 (= (or $x15590 $x15593 (not $x19482)) $x19962)) (= $x19490 $x19965)))) +(let ((@x19973 (monotonicity (monotonicity @x19967 (= $x19495 $x19968)) (= (not $x19495) $x19971)))) +(let ((@x19979 (monotonicity (monotonicity @x19973 (= (or $x11516 $x19474 $x19501 (not $x19495)) $x19974)) (= $x19504 $x19977)))) +(let ((@x19988 (monotonicity @x19979 (monotonicity @x19982 (= $x19515 $x19983)) (= $x19520 $x19986)))) +(let ((@x19994 (monotonicity (monotonicity @x19988 (= (not $x19520) $x19989)) (= (or $x15590 $x15599 $x19474 $x19501 (not $x19520)) $x19992)))) +(let ((@x20003 (monotonicity (monotonicity (monotonicity @x19994 (= $x19528 $x19995)) (= $x19533 $x19998)) (= (not $x19533) $x20001)))) +(let ((@x20009 (monotonicity (monotonicity @x20003 (= (or $x15590 $x15593 (not $x19533)) $x20004)) (= $x19541 $x20007)))) +(let ((@x20015 (monotonicity (monotonicity @x20009 (= $x19546 $x20010)) (= (not $x19546) $x20013)))) +(let ((@x20021 (monotonicity (monotonicity @x20015 (= (or $x11486 $x19474 $x19501 (not $x19546)) $x20016)) (= $x19554 $x20019)))) +(let ((@x20073 (monotonicity (monotonicity @x20021 @x20067 (= $x19661 $x20068)) (= (not $x19661) $x20071)))) +(let ((@x19902 (quant-intro (refl (= (or $x3763 $x16553 $x11871 $x11889) (or $x3763 $x16553 $x11871 $x11889))) (= $x19362 $x19898)))) +(let ((@x20076 (monotonicity (monotonicity @x19902 (= (not $x19362) $x19903)) @x20073 (= $x19685 $x20074)))) +(let ((@x20085 (monotonicity (monotonicity (monotonicity @x20076 (= $x19686 $x20077)) (= $x19691 $x20080)) (= (not $x19691) $x20083)))) +(let ((@x19894 (quant-intro (refl (= (or $x3763 $x16553 $x11388 $x11404) (or $x3763 $x16553 $x11388 $x11404))) (= $x19340 $x19890)))) +(let ((@x20088 (monotonicity (monotonicity @x19894 (= (not $x19340) $x19895)) @x20085 (= (or (not $x19340) (not $x19691)) $x20086)))) +(let ((@x20097 (monotonicity (monotonicity (monotonicity @x20088 (= $x19700 $x20089)) (= $x19705 $x20092)) (= (not $x19705) $x20095)))) +(let ((@x20103 (monotonicity (monotonicity @x20097 (= (or $x11385 (not $x19705)) $x20098)) (= $x19713 $x20101)))) +(let ((@x20109 (monotonicity (monotonicity @x20103 (= $x19718 $x20104)) (= (not $x19718) $x20107)))) +(let ((@x20112 (monotonicity @x20109 (= (or $x15502 $x15511 $x19724 $x19725 $x19726 $x19727 (not $x19718)) $x20110)))) +(let ((@x20121 (monotonicity (monotonicity (monotonicity @x20112 (= $x19730 $x20113)) (= $x19735 $x20116)) (= (not $x19735) $x20119)))) +(let ((@x20127 (monotonicity (monotonicity @x20121 (= (or $x15502 $x15505 (not $x19735)) $x20122)) (= $x19743 $x20125)))) +(let ((@x20133 (monotonicity (monotonicity @x20127 (= $x19748 $x20128)) (= (not $x19748) $x20131)))) +(let ((@x20139 (monotonicity (monotonicity @x20133 (= (or $x11221 (not $x19748)) $x20134)) (= $x19756 $x20137)))) +(let (($x15761 (forall ((?v0 Int) )(! 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(let ((?x11631 (* (- 1) v_b_L_H_max_G_3$))) +(let ((?x10163 (b_S_read_n_u1$ v_b_S_s$ (b_S_idx$ (b_S_ptr$ b_T_T_u1$ v_b_P_H_arr$) ?v0 b_T_T_u1$)))) +(let (($x11633 (<= (+ ?x10163 ?x11631) 0))) +(let (($x11615 (>= (+ ?v0 (* (- 1) v_b_L_H_p_G_1$)) 0))) +(let (($x11617 (not $x11615))) +(let (($x12168 (<= ?v0 4294967295))) +(let (($x2815 (>= ?v0 0))) +(let (($x13364 (and $x2815 $x12168 $x11617))) +(let (($x13367 (not $x13364))) +(or $x13367 $x11633)))))))))) :qid k!704)) +)) +(let (($x15651 (and $x13373 $x15648))) +(let (($x15876 (not $x15871))) +(let (($x15879 (and $x15626 $x15627 $x15876))) +(let (($x15882 (not $x15879))) +(let (($x15898 (or $x15882 $x15893))) +(let (($x15901 (not $x15898))) +(let (($x15904 (or $x15901 $x15651))) +(let (($x15907 (and $x11608 $x15904))) +(let (($x15910 (or $x11612 $x15907))) +(let (($x15916 (and $x11570 $x13353 $x11580 $x10358 $x11578 $x11536 $x15910))) +(let (($x15921 (or $x15611 $x15614 $x15916))) +(let (($x15959 (and $x11516 $x11432 $x10391 $x10392 $x11429 $x11536 $x15921))) +(let (($x15927 (and $x10321 $x10324 $x10333 $x10334 $x10335 $x10338 $x10340 $x11429 $x11536 $x15921))) +(let (($x15932 (or $x15590 $x15599 $x15927))) +(let (($x15938 (and $x10321 $x10322 $x15932))) +(let (($x15943 (or $x15590 $x15593 $x15938))) +(let (($x15949 (and $x11515 $x11429 $x11432 $x15943))) +(let (($x15964 (or $x15949 $x15959))) +(let (($x15970 (and $x10321 $x10324 $x11429 $x11432 $x15964))) +(let (($x15975 (or $x15590 $x15599 $x15970))) +(let (($x15981 (and $x10321 $x10322 $x15975))) +(let (($x15986 (or $x15590 $x15593 $x15981))) +(let (($x15992 (and $x11487 $x11429 $x11432 $x15986))) +(let (($x16064 (or $x15992 $x16059))) +(let (($x13340 (forall ((?v0 Int) )(! 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(monotonicity (rewrite (= $x13433 (not (or $x3763 $x16553 $x11800)))) (= $x13436 (not (not (or $x3763 $x16553 $x11800))))))) +(let ((@x19593 (trans @x19589 (rewrite (= (not (not (or $x3763 $x16553 $x11800))) (or $x3763 $x16553 $x11800))) (= $x13436 (or $x3763 $x16553 $x11800))))) +(let ((@x19601 (trans (monotonicity @x19593 (= $x13439 (or (or $x3763 $x16553 $x11800) $x11818))) @x19599 (= $x13439 (or $x3763 $x16553 $x11800 $x11818))))) +(let ((@x19622 (monotonicity (quant-intro @x19601 (= $x13442 $x19602)) (quant-intro @x19616 (= $x15761 $x19617)) (= $x15765 (and $x19602 $x19617))))) +(let ((@x19567 (monotonicity (rewrite (= $x16017 (not (or $x19559 $x19560 $x16009)))) (= $x16020 (not (not (or $x19559 $x19560 $x16009))))))) +(let ((@x19571 (trans @x19567 (rewrite (= (not (not (or $x19559 $x19560 $x16009))) (or $x19559 $x19560 $x16009))) (= $x16020 (or $x19559 $x19560 $x16009))))) +(let ((@x19579 (trans (monotonicity @x19571 (= $x16036 (or (or $x19559 $x19560 $x16009) $x16031))) (rewrite 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$x19381)))) +(let ((@x19435 (monotonicity (monotonicity @x19385 (= $x15901 $x19386)) (trans @x19425 (rewrite (= (and $x19408 $x19412) $x19428)) (= $x15651 $x19428)) (= $x15904 $x19433)))) +(let ((@x19445 (trans (monotonicity @x19435 (= $x15907 (and $x11608 $x19433))) (rewrite (= (and $x11608 $x19433) $x19441)) (= $x15907 $x19441)))) +(let ((@x19451 (monotonicity (monotonicity @x19445 (= $x15910 $x19446)) (= $x15916 (and $x11570 $x13353 $x11580 $x10358 $x11578 $x11536 $x19446))))) +(let ((@x19462 (trans @x19451 (rewrite (= (and $x11570 $x13353 $x11580 $x10358 $x11578 $x11536 $x19446) $x19458)) (= $x15916 $x19458)))) +(let ((@x19511 (monotonicity (monotonicity @x19462 (= $x15921 $x19463)) (= $x15959 (and $x11516 $x11432 $x10391 $x10392 $x11429 $x11536 $x19463))))) +(let ((@x19519 (trans @x19511 (rewrite (= (and $x11516 $x11432 $x10391 $x10392 $x11429 $x11536 $x19463) $x19515)) (= $x15959 $x19515)))) +(let ((@x19479 (rewrite (= (and $x10321 $x10324 $x10333 $x10334 $x10335 $x10338 $x10340 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(monotonicity (monotonicity @x19532 (= $x15975 $x19533)) (= $x15981 (and $x10321 $x10322 $x19533))))) +(let ((@x19545 (trans @x19538 (rewrite (= (and $x10321 $x10322 $x19533) $x19541)) (= $x15981 $x19541)))) +(let ((@x19551 (monotonicity (monotonicity @x19545 (= $x15986 $x19546)) (= $x15992 (and $x11487 $x11429 $x11432 $x19546))))) +(let ((@x19558 (trans @x19551 (rewrite (= (and $x11487 $x11429 $x11432 $x19546) $x19554)) (= $x15992 $x19554)))) +(let ((@x19359 (rewrite (= (or (or $x3763 $x16553 $x11871) $x11889) (or $x3763 $x16553 $x11871 $x11889))))) +(let (($x13331 (and $x2815 $x12168 $x11873))) +(let (($x13334 (not $x13331))) +(let (($x13337 (or $x13334 $x11889))) +(let ((@x19349 (monotonicity (rewrite (= $x13331 (not (or $x3763 $x16553 $x11871)))) (= $x13334 (not (not (or $x3763 $x16553 $x11871))))))) +(let ((@x19353 (trans @x19349 (rewrite (= (not (not (or $x3763 $x16553 $x11871))) (or $x3763 $x16553 $x11871))) (= $x13334 (or $x3763 $x16553 $x11871))))) +(let ((@x19361 (trans 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(let ((?x6636 (b_S_typ$ ?v0))) +(let (($x7865 (= ?x6636 ?v1))) +(let (($x9596 (b_S_is$ ?v0 ?v1))) +(= $x9596 $x7865)))) :qid k!623)) +)) +(let ((@x9622 (mp (asserted $x9611) (quant-intro (rewrite (= (= $x9596 $x7865) $x9614)) (= $x9611 $x9617)) $x9617))) +(let ((@x19833 (mp (mp~ @x9622 (nnf-pos (refl (~ $x9614 $x9614)) (~ $x9617 $x9617)) $x9617) (quant-intro (refl (= $x9614 $x9614)) (= $x9617 $x19828)) $x19828))) +(let (($x22002 (not $x19828))) +(let (($x22619 (or $x22002 $x22522))) +(let ((@x22534 ((_ quant-inst (b_S_idx$ ?x10078 0 b_T_T_u1$) b_T_T_u1$) $x22619))) +(let ((@x22471 (unit-resolution (def-axiom (or (not $x22522) $x10138 $x22526)) (hypothesis $x15502) (or (not $x22522) $x22526)))) +(let ((@x22636 (unit-resolution (unit-resolution @x22471 (unit-resolution @x22534 @x19833 $x22522) $x22526) (trans @x22640 (unit-resolution @x21182 @x19846 $x21176) $x22515) false))) +(let ((@x23411 (lemma @x22636 $x10138))) +(let ((@x23982 (unit-resolution (def-axiom (or $x20131 $x15502 $x15505 $x20125)) @x23411 @x24003 (or $x15505 $x20125)))) +(let ((@x23983 (unit-resolution @x23982 (unit-resolution (def-axiom (or $x22603 $x10139)) (lemma @x24453 $x22604) $x10139) $x20125))) +(let ((?x22805 (b_S_ts_n_emb$ ?x22478))) +(let ((?x22433 (b_S_owner$ v_b_S_s$ ?x22805))) +(let (($x22451 (= ?x22433 b_S_me$))) +(let ((?x22485 (b_S_ref$ ?x10137))) +(let ((?x22505 (b_S_ptr$ b_T_T_u1$ ?x22485))) +(let (($x22506 (= ?x10137 ?x22505))) +(let (($x24124 (or $x21994 $x15502 $x22506))) +(let ((@x24271 (mp ((_ quant-inst (b_S_idx$ ?x10078 0 b_T_T_u1$) b_T_T_u1$) (or $x21994 (or $x15502 $x22506))) (rewrite (= (or $x21994 (or $x15502 $x22506)) $x24124)) $x24124))) +(let ((@x23969 (unit-resolution @x24271 @x15336 @x23411 $x22506))) +(let ((?x23622 (b_S_ref$ ?x21983))) +(let ((?x23636 (b_S_ptr$ b_T_T_u1$ ?x23622))) +(let ((?x23613 (b_S_idx$ ?x21983 0 b_T_T_u1$))) +(let (($x23639 (= ?x23613 ?x23636))) +(let (($x23642 (not $x23639))) +(let (($x23614 (b_S_extent_n_hint$ ?x23613 ?x21983))) +(let (($x23621 (not $x23614))) +(let (($x23645 (or $x23621 $x23642))) +(let (($x23648 (not $x23645))) +(let (($x23651 (or $x22568 $x23648))) +(let (($x23628 (not (or $x23621 (not (= ?x23613 (b_S_ptr$ b_T_T_u1$ (+ ?x23622 ?x22537)))))))) +(let (($x23646 (= (or $x23621 (not (= ?x23613 (b_S_ptr$ b_T_T_u1$ (+ ?x23622 ?x22537))))) $x23645))) +(let ((@x22545 (rewrite (= ?x22537 0)))) +(let ((@x23635 (trans (monotonicity @x22545 (= (+ ?x23622 ?x22537) (+ ?x23622 0))) (rewrite (= (+ ?x23622 0) ?x23622)) (= (+ ?x23622 ?x22537) ?x23622)))) +(let ((@x23641 (monotonicity (monotonicity @x23635 (= (b_S_ptr$ b_T_T_u1$ (+ ?x23622 ?x22537)) ?x23636)) (= (= ?x23613 (b_S_ptr$ b_T_T_u1$ (+ ?x23622 ?x22537))) $x23639)))) +(let ((@x23644 (monotonicity @x23641 (= (not (= ?x23613 (b_S_ptr$ b_T_T_u1$ (+ ?x23622 ?x22537)))) $x23642)))) +(let ((@x23655 (monotonicity (monotonicity (monotonicity @x23644 $x23646) (= $x23628 $x23648)) (= (or $x22568 $x23628) $x23651)))) +(let ((@x23659 (mp ((_ quant-inst (b_S_ptr$ ?x10076 ?x21014) 0 b_T_T_u1$) (or $x22568 $x23628)) (trans @x23655 (rewrite (= $x23651 $x23651)) (= (or $x22568 $x23628) $x23651)) $x23651))) +(let ((@x23663 (def-axiom (or $x23645 $x23639)))) +(let ((@x24001 (unit-resolution @x23663 (lemma (unit-resolution @x23659 @x18183 (hypothesis $x23645) false) $x23648) $x23639))) +(let ((?x23546 (b_S_idx$ ?x22595 0 b_T_T_u1$))) +(let ((?x23547 (b_S_select_o_tm$ ?x10272 ?x23546))) +(let ((?x23548 (b_S_ts_n_emb$ ?x23547))) +(let (($x23549 (= ?x23548 ?x22595))) +(let (($x23554 (b_S_typed$ v_b_S_s$ ?x23546))) +(let (($x23555 (not $x23554))) +(let (($x23551 (b_S_ts_n_is_n_volatile$ ?x23547))) +(let (($x23550 (not $x23549))) +(let (($x23556 (or $x23550 $x23551 (not (b_S_ts_n_is_n_array_n_elt$ ?x23547)) $x23555))) +(let (($x23557 (not $x23556))) +(let (($x23538 (b_S_typed$ v_b_S_s$ ?x22595))) +(let ((@x23606 (mp @x12045 (symm (monotonicity @x23680 (= $x23538 $x10085)) (= $x10085 $x23538)) $x23538))) +(let ((@x23608 (lemma (unit-resolution (hypothesis (not $x23538)) @x23606 false) $x23538))) +(let (($x17964 (forall ((?v0 B_S_state$) (?v1 Int) (?v2 B_S_ctype$) (?v3 Int) (?v4 Int) )(! (let (($x6905 (b_S_typed$ ?v0 (b_S_idx$ (b_S_ptr$ (b_S_array$ ?v2 ?v3) ?v1) ?v4 ?v2)))) +(let ((?x6897 (b_S_typemap$ ?v0))) +(let ((?x6899 (b_S_select_o_tm$ ?x6897 (b_S_idx$ (b_S_ptr$ (b_S_array$ ?v2 ?v3) ?v1) ?v4 ?v2)))) +(let (($x6904 (b_S_ts_n_is_n_array_n_elt$ ?x6899))) +(let (($x17952 (or (not (= (b_S_ts_n_emb$ ?x6899) (b_S_ptr$ (b_S_array$ ?v2 ?v3) ?v1))) (b_S_ts_n_is_n_volatile$ ?x6899) (not $x6904) (not $x6905)))) +(let (($x17953 (not $x17952))) +(let (($x4862 (>= (+ ?v4 (* (- 1) ?v3)) 0))) +(let (($x2815 (>= ?v4 0))) +(let (($x3763 (not $x2815))) +(or (not (b_S_typed$ ?v0 (b_S_ptr$ (b_S_array$ ?v2 ?v3) ?v1))) $x3763 $x4862 $x17953)))))))))) :pattern ( (b_S_select_o_sm$ (b_S_statusmap$ ?v0) (b_S_idx$ (b_S_ptr$ ?v2 ?v1) ?v4 ?v2)) (b_S_ptr$ (b_S_array$ ?v2 ?v3) ?v1) ) :pattern ( (b_S_select_o_tm$ (b_S_typemap$ ?v0) (b_S_idx$ (b_S_ptr$ ?v2 ?v1) ?v4 ?v2)) (b_S_ptr$ (b_S_array$ ?v2 ?v3) ?v1) ) :qid k!493)) +)) +(let (($x6943 (forall ((?v0 B_S_state$) (?v1 Int) (?v2 B_S_ctype$) (?v3 Int) (?v4 Int) )(! (let (($x6905 (b_S_typed$ ?v0 (b_S_idx$ (b_S_ptr$ (b_S_array$ ?v2 ?v3) ?v1) ?v4 ?v2)))) +(let ((?x6897 (b_S_typemap$ ?v0))) +(let ((?x6899 (b_S_select_o_tm$ ?x6897 (b_S_idx$ (b_S_ptr$ (b_S_array$ ?v2 ?v3) ?v1) ?v4 ?v2)))) +(let (($x6904 (b_S_ts_n_is_n_array_n_elt$ ?x6899))) +(let ((?x6894 (b_S_ptr$ (b_S_array$ ?v2 ?v3) ?v1))) +(let (($x6901 (= (b_S_ts_n_emb$ ?x6899) ?x6894))) +(let (($x6937 (and $x6901 (not (b_S_ts_n_is_n_volatile$ ?x6899)) $x6904 $x6905))) +(let (($x4862 (>= (+ ?v4 (* (- 1) ?v3)) 0))) +(let (($x6603 (not $x4862))) +(let (($x2815 (>= ?v4 0))) +(let (($x6895 (b_S_typed$ ?v0 ?x6894))) +(let (($x6929 (and $x6895 $x2815 $x6603))) +(let (($x6934 (not $x6929))) +(or $x6934 $x6937)))))))))))))) :pattern ( (b_S_select_o_sm$ (b_S_statusmap$ ?v0) (b_S_idx$ (b_S_ptr$ ?v2 ?v1) ?v4 ?v2)) (b_S_ptr$ (b_S_array$ ?v2 ?v3) ?v1) ) :pattern ( (b_S_select_o_tm$ (b_S_typemap$ ?v0) (b_S_idx$ (b_S_ptr$ ?v2 ?v1) ?v4 ?v2)) (b_S_ptr$ (b_S_array$ ?v2 ?v3) ?v1) ) :qid k!493)) +)) +(let (($x6905 (b_S_typed$ ?4 (b_S_idx$ (b_S_ptr$ (b_S_array$ ?2 ?1) ?3) ?0 ?2)))) +(let ((?x6897 (b_S_typemap$ ?4))) +(let ((?x6899 (b_S_select_o_tm$ ?x6897 (b_S_idx$ (b_S_ptr$ (b_S_array$ ?2 ?1) ?3) ?0 ?2)))) +(let (($x6904 (b_S_ts_n_is_n_array_n_elt$ ?x6899))) +(let (($x17952 (or (not (= (b_S_ts_n_emb$ ?x6899) (b_S_ptr$ (b_S_array$ ?2 ?1) ?3))) (b_S_ts_n_is_n_volatile$ ?x6899) (not $x6904) (not $x6905)))) +(let (($x17953 (not $x17952))) +(let (($x4862 (>= (+ ?0 (* (- 1) ?1)) 0))) +(let (($x17959 (or (not (b_S_typed$ ?4 (b_S_ptr$ (b_S_array$ ?2 ?1) ?3))) $x3763 $x4862 $x17953))) +(let ((?x6894 (b_S_ptr$ (b_S_array$ ?2 ?1) ?3))) +(let (($x6901 (= (b_S_ts_n_emb$ ?x6899) ?x6894))) +(let (($x6937 (and $x6901 (not (b_S_ts_n_is_n_volatile$ ?x6899)) $x6904 $x6905))) +(let (($x6603 (not $x4862))) +(let (($x6895 (b_S_typed$ ?4 ?x6894))) +(let (($x6929 (and $x6895 $x2815 $x6603))) +(let (($x6934 (not $x6929))) +(let (($x6940 (or $x6934 $x6937))) +(let (($x17938 (or (not $x6895) $x3763 $x4862))) +(let ((@x17944 (monotonicity (rewrite (= $x6929 (not $x17938))) (= $x6934 (not (not $x17938)))))) +(let ((@x17958 (monotonicity (trans @x17944 (rewrite (= (not (not $x17938)) $x17938)) (= $x6934 $x17938)) (rewrite (= $x6937 $x17953)) (= $x6940 (or $x17938 $x17953))))) +(let ((@x17966 (quant-intro (trans @x17958 (rewrite (= (or $x17938 $x17953) $x17959)) (= $x6940 $x17959)) (= $x6943 $x17964)))) +(let (($x6917 (forall ((?v0 B_S_state$) (?v1 Int) (?v2 B_S_ctype$) (?v3 Int) (?v4 Int) )(! (let (($x6905 (b_S_typed$ ?v0 (b_S_idx$ (b_S_ptr$ (b_S_array$ ?v2 ?v3) ?v1) ?v4 ?v2)))) +(let ((?x6897 (b_S_typemap$ ?v0))) +(let ((?x6899 (b_S_select_o_tm$ ?x6897 (b_S_idx$ (b_S_ptr$ (b_S_array$ ?v2 ?v3) ?v1) ?v4 ?v2)))) +(let (($x6904 (b_S_ts_n_is_n_array_n_elt$ ?x6899))) +(let ((?x6894 (b_S_ptr$ (b_S_array$ ?v2 ?v3) ?v1))) +(let (($x6901 (= (b_S_ts_n_emb$ ?x6899) ?x6894))) +(let (($x6908 (and $x6901 (and (not (b_S_ts_n_is_n_volatile$ ?x6899)) (and $x6904 $x6905))))) +(let (($x2766 (<= 0 ?v4))) +(let (($x6566 (and $x2766 (< ?v4 ?v3)))) +(let (($x6895 (b_S_typed$ ?v0 ?x6894))) +(let (($x6896 (and $x6895 $x6566))) +(=> $x6896 $x6908)))))))))))) :pattern ( (b_S_select_o_sm$ (b_S_statusmap$ ?v0) (b_S_idx$ (b_S_ptr$ ?v2 ?v1) ?v4 ?v2)) (b_S_ptr$ (b_S_array$ ?v2 ?v3) ?v1) ) :pattern ( (b_S_select_o_tm$ (b_S_typemap$ ?v0) (b_S_idx$ (b_S_ptr$ ?v2 ?v1) ?v4 ?v2)) (b_S_ptr$ (b_S_array$ ?v2 ?v3) ?v1) ) :qid k!493)) +)) +(let (($x6923 (forall ((?v0 B_S_state$) (?v1 Int) (?v2 B_S_ctype$) (?v3 Int) (?v4 Int) )(! (let (($x6905 (b_S_typed$ ?v0 (b_S_idx$ (b_S_ptr$ (b_S_array$ ?v2 ?v3) ?v1) ?v4 ?v2)))) +(let ((?x6897 (b_S_typemap$ ?v0))) +(let ((?x6899 (b_S_select_o_tm$ ?x6897 (b_S_idx$ (b_S_ptr$ (b_S_array$ ?v2 ?v3) ?v1) ?v4 ?v2)))) +(let (($x6904 (b_S_ts_n_is_n_array_n_elt$ ?x6899))) +(let ((?x6894 (b_S_ptr$ (b_S_array$ ?v2 ?v3) ?v1))) +(let (($x6901 (= (b_S_ts_n_emb$ ?x6899) ?x6894))) +(let (($x6908 (and $x6901 (and (not (b_S_ts_n_is_n_volatile$ ?x6899)) (and $x6904 $x6905))))) +(let (($x2766 (<= 0 ?v4))) +(let (($x6566 (and $x2766 (< ?v4 ?v3)))) +(let (($x6895 (b_S_typed$ ?v0 ?x6894))) +(let (($x6896 (and $x6895 $x6566))) +(or (not $x6896) $x6908)))))))))))) :pattern ( (b_S_select_o_sm$ (b_S_statusmap$ ?v0) (b_S_idx$ (b_S_ptr$ ?v2 ?v1) ?v4 ?v2)) (b_S_ptr$ (b_S_array$ ?v2 ?v3) ?v1) ) :pattern ( (b_S_select_o_tm$ (b_S_typemap$ ?v0) (b_S_idx$ (b_S_ptr$ ?v2 ?v1) ?v4 ?v2)) (b_S_ptr$ (b_S_array$ ?v2 ?v3) ?v1) ) :qid k!493)) +)) +(let (($x6908 (and $x6901 (and (not (b_S_ts_n_is_n_volatile$ ?x6899)) (and $x6904 $x6905))))) +(let (($x6920 (or (not (and $x6895 (and $x2766 (< ?0 ?1)))) $x6908))) +(let (($x6566 (and $x2766 (< ?0 ?1)))) +(let (($x6896 (and $x6895 $x6566))) +(let ((@x6608 (monotonicity @x2814 (rewrite (= (< ?0 ?1) $x6603)) (= $x6566 (and $x2815 $x6603))))) +(let ((@x6933 (trans (monotonicity @x6608 (= $x6896 (and $x6895 (and $x2815 $x6603)))) (rewrite (= (and $x6895 (and $x2815 $x6603)) $x6929)) (= $x6896 $x6929)))) +(let ((@x6942 (monotonicity (monotonicity @x6933 (= (not $x6896) $x6934)) (rewrite (= $x6908 $x6937)) (= $x6920 $x6940)))) +(let ((@x6947 (trans (quant-intro (rewrite (= (=> $x6896 $x6908) $x6920)) (= $x6917 $x6923)) (quant-intro @x6942 (= $x6923 $x6943)) (= $x6917 $x6943)))) +(let ((@x14355 (mp~ (mp (asserted $x6917) @x6947 $x6943) (nnf-pos (refl (~ $x6940 $x6940)) (~ $x6943 $x6943)) $x6943))) +(let ((@x17967 (mp @x14355 @x17966 $x17964))) +(let (($x23539 (not $x23538))) +(let (($x23587 (not $x17964))) +(let (($x23588 (or $x23587 $x23539 $x11259 $x23557))) 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$x10299))) +(let (($x10297 (= v_b_L_H_max_G_3$ v_b_L_H_max_G_2$))) +(let (($x19490 (not $x10297))) +(let (($x10294 (b_S_local_n_value_n_is$ v_b_S_s$ b_H_tok_S_1_T_24_o_47$ b_H_loc_o_witness$ v_b_L_H_p_G_0$ b_T_T_u4$))) +(let (($x19489 (not $x10294))) +(let (($x10293 (b_S_local_n_value_n_is$ v_b_S_s$ b_H_tok_S_1_T_23_o_7$ b_H_loc_o_max$ v_b_L_H_max_G_2$ b_T_T_u1$))) +(let (($x19488 (not $x10293))) +(let (($x10292 (= v_b_L_H_max_G_2$ ?x10286))) +(let (($x19487 (not $x10292))) +(let (($x10283 (b_S_thread_n_local$ v_b_S_s$ ?x10279))) +(let (($x15639 (not $x10283))) +(let (($x10280 (b_S_is$ ?x10279 b_T_T_u1$))) +(let (($x15630 (not $x10280))) +(let (($x20393 (or $x15630 $x15639 $x19487 $x19488 $x19489 $x19490 $x19491 $x19492 $x19473 $x20390))) +(let (($x20396 (not $x20393))) +(let (($x20399 (or $x15630 $x15639 $x20396))) +(let (($x20402 (not $x20399))) +(let (($x10281 (b_S_typed$ v_b_S_s$ ?x10279))) +(let (($x15633 (not $x10281))) +(let (($x20405 (or $x15630 $x15633 $x20402))) +(let 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v_b_L_H_max_G_2$ v_b_L_H_max_G_3$)) $x10333))) +(let ((?x23065 (b_S_ref$ ?x10279))) +(let ((?x23183 (b_S_ptr$ b_T_T_u1$ ?x23065))) +(let ((?x24253 (b_S_typ$ ?x23183))) +(let ((?x24254 (b_S_kind_n_of$ ?x24253))) +(let (($x24255 (= ?x24254 b_S_kind_n_primitive$))) +(let ((?x21475 (b_S_kind_n_of$ b_T_T_u1$))) +(let (($x21476 (= ?x21475 b_S_kind_n_primitive$))) +(let (($x9727 (b_S_is_n_primitive$ b_T_T_u1$))) +(let (($x21483 (= $x9727 $x21476))) +(let (($x9850 (forall ((?v0 B_S_ctype$) )(! (let ((?x9808 (b_S_kind_n_of$ ?v0))) +(let (($x9842 (= ?x9808 b_S_kind_n_primitive$))) +(let (($x2704 (b_S_is_n_primitive$ ?v0))) +(= $x2704 $x9842)))) :pattern ( (b_S_is_n_primitive$ ?v0) ) :qid k!665)) +)) +(let ((?x9808 (b_S_kind_n_of$ ?0))) +(let (($x9842 (= ?x9808 b_S_kind_n_primitive$))) +(let (($x2704 (b_S_is_n_primitive$ ?0))) +(let (($x9847 (= $x2704 $x9842))) +(let (($x9845 (forall ((?v0 B_S_ctype$) )(! (let ((?x9808 (b_S_kind_n_of$ ?v0))) +(let (($x9842 (= ?x9808 b_S_kind_n_primitive$))) +(let (($x2704 (b_S_is_n_primitive$ ?v0))) +(= $x2704 $x9842)))) :pattern ( (b_S_is_n_primitive$ ?v0) ) :qid k!665)) +)) +(let ((@x9855 (mp (asserted $x9845) (quant-intro (rewrite (= (= $x2704 $x9842) $x9847)) (= $x9845 $x9850)) $x9850))) +(let ((@x15496 (mp~ @x9855 (nnf-pos (refl (~ $x9847 $x9847)) (~ $x9850 $x9850)) $x9850))) +(let (($x21227 (not $x9850))) +(let (($x21486 (or $x21227 $x21483))) +(let ((@x21487 ((_ quant-inst b_T_T_u1$) $x21486))) +(let ((@x9728 (asserted $x9727))) +(let ((@x23038 (unit-resolution (def-axiom (or (not $x21483) (not $x9727) $x21476)) @x9728 (or (not $x21483) $x21476)))) +(let ((?x23196 (b_S_typ$ ?x10279))) +(let (($x23197 (= ?x23196 b_T_T_u1$))) +(let (($x23206 (= $x10280 $x23197))) +(let (($x20261 (forall ((?v0 B_S_ptr$) (?v1 B_S_ctype$) )(! (let ((?x6595 (b_S_typ$ ?v0))) +(let (($x7824 (= ?x6595 ?v1))) +(let (($x9555 (b_S_is$ ?v0 ?v1))) +(= $x9555 $x7824)))) :pattern ( (b_S_is$ ?v0 ?v1) ) :qid k!624)) +)) +(let (($x9576 (forall ((?v0 B_S_ptr$) (?v1 B_S_ctype$) )(! (let ((?x6595 (b_S_typ$ ?v0))) +(let (($x7824 (= ?x6595 ?v1))) +(let (($x9555 (b_S_is$ ?v0 ?v1))) +(= $x9555 $x7824)))) :qid k!624)) +)) +(let ((?x6595 (b_S_typ$ ?1))) +(let (($x7824 (= ?x6595 ?0))) +(let (($x9555 (b_S_is$ ?1 ?0))) +(let (($x9573 (= $x9555 $x7824))) +(let (($x9570 (forall ((?v0 B_S_ptr$) (?v1 B_S_ctype$) )(! (let ((?x6595 (b_S_typ$ ?v0))) +(let (($x7824 (= ?x6595 ?v1))) +(let (($x9555 (b_S_is$ ?v0 ?v1))) +(= $x9555 $x7824)))) :qid k!624)) +)) +(let ((@x9581 (mp (asserted $x9570) (quant-intro (rewrite (= (= $x9555 $x7824) $x9573)) (= $x9570 $x9576)) $x9576))) +(let ((@x20266 (mp (mp~ @x9581 (nnf-pos (refl (~ $x9573 $x9573)) (~ $x9576 $x9576)) $x9576) (quant-intro (refl (= $x9573 $x9573)) (= $x9576 $x20261)) $x20261))) +(let (($x22005 (not $x20261))) +(let (($x24534 (or $x22005 $x23206))) +(let ((@x24536 ((_ quant-inst (b_S_idx$ ?x10037 v_b_L_H_p_G_0$ b_T_T_u1$) b_T_T_u1$) $x24534))) +(let ((?x10004 (b_S_sizeof$ b_T_T_u1$))) +(let ((?x23293 (times$ v_b_L_H_p_G_0$ ?x10004))) +(let ((?x10038 (b_S_ref$ ?x10037))) +(let ((?x23294 (+ ?x10038 ?x23293))) +(let ((?x23295 (b_S_ptr$ b_T_T_u1$ ?x23294))) +(let ((?x24201 (b_S_typ$ ?x23295))) +(let (($x24202 (= ?x24201 b_T_T_u1$))) +(let (($x20274 (forall ((?v0 B_S_ctype$) (?v1 Int) )(! (= (b_S_typ$ (b_S_ptr$ ?v0 ?v1)) ?v0) :pattern ( (b_S_ptr$ ?v0 ?v1) ) :qid k!629)) +)) +(let (($x9618 (forall ((?v0 B_S_ctype$) (?v1 Int) )(! (= (b_S_typ$ (b_S_ptr$ ?v0 ?v1)) ?v0) :qid k!629)) +)) +(let (($x9617 (= (b_S_typ$ (b_S_ptr$ ?1 ?0)) ?1))) +(let ((@x15401 (mp~ (asserted $x9618) (nnf-pos (refl (~ $x9617 $x9617)) (~ $x9618 $x9618)) $x9618))) +(let ((@x20279 (mp @x15401 (quant-intro (refl (= $x9617 $x9617)) (= $x9618 $x20274)) $x20274))) +(let (($x23296 (= ?x10279 ?x23295))) +(let (($x23297 (not $x23296))) +(let (($x23291 (b_S_extent_n_hint$ ?x10279 ?x10037))) +(let (($x23292 (not $x23291))) +(let (($x23298 (or $x23292 $x23297))) +(let (($x23299 (not $x23298))) +(let (($x18198 (forall ((?v0 B_S_ptr$) (?v1 Int) (?v2 B_S_ctype$) )(! (let ((?x7164 (b_S_idx$ ?v0 ?v1 ?v2))) +(let (($x7172 (= ?x7164 (b_S_ptr$ ?v2 (+ (b_S_ref$ ?v0) (times$ ?v1 (b_S_sizeof$ ?v2))))))) +(not (or (not (b_S_extent_n_hint$ ?x7164 ?v0)) (not $x7172))))) :pattern ( (b_S_idx$ ?v0 ?v1 ?v2) ) :qid k!500)) +)) +(let (($x7175 (forall ((?v0 B_S_ptr$) (?v1 Int) (?v2 B_S_ctype$) )(! (let ((?x7164 (b_S_idx$ ?v0 ?v1 ?v2))) +(let (($x7172 (= ?x7164 (b_S_ptr$ ?v2 (+ (b_S_ref$ ?v0) (times$ ?v1 (b_S_sizeof$ ?v2))))))) +(and (b_S_extent_n_hint$ ?x7164 ?v0) $x7172))) :pattern ( (b_S_idx$ ?v0 ?v1 ?v2) ) :qid k!500)) +)) +(let ((?x7164 (b_S_idx$ ?2 ?1 ?0))) +(let (($x7172 (= ?x7164 (b_S_ptr$ ?0 (+ (b_S_ref$ ?2) (times$ ?1 (b_S_sizeof$ ?0))))))) +(let (($x7173 (and (b_S_extent_n_hint$ ?x7164 ?2) $x7172))) +(let ((@x18197 (rewrite (= $x7173 (not (or (not (b_S_extent_n_hint$ ?x7164 ?2)) (not $x7172))))))) +(let ((@x14601 (mp~ (asserted $x7175) (nnf-pos (refl (~ $x7173 $x7173)) (~ $x7175 $x7175)) $x7175))) +(let ((@x18201 (mp @x14601 (quant-intro @x18197 (= $x7175 $x18198)) $x18198))) +(let (($x22554 (not $x18198))) +(let (($x24176 (or $x22554 $x23299))) +(let ((@x24177 ((_ quant-inst (b_S_ptr$ b_T_T_u1$ v_b_P_H_arr$) v_b_L_H_p_G_0$ b_T_T_u1$) $x24176))) +(let ((@x24838 (unit-resolution (def-axiom (or $x23298 $x23296)) (unit-resolution @x24177 @x18201 $x23299) $x23296))) +(let ((@x24213 (trans (monotonicity @x24838 (= ?x23196 ?x24201)) (unit-resolution ((_ quant-inst b_T_T_u1$ (+ ?x10038 ?x23293)) (or (not $x20274) $x24202)) @x20279 $x24202) $x23197))) +(let (($x24134 (not $x23197))) +(let ((@x24238 (unit-resolution (def-axiom (or (not $x23206) $x10280 $x24134)) (hypothesis $x15630) (or (not $x23206) $x24134)))) +(let ((@x24214 (unit-resolution (unit-resolution @x24238 (unit-resolution @x24536 @x20266 $x23206) $x24134) @x24213 false))) +(let ((@x24216 (lemma @x24214 $x10280))) +(let ((@x24153 (unit-resolution (def-axiom (or (not $x23206) $x15630 $x23197)) @x24216 (or (not $x23206) $x23197)))) +(let (($x23184 (= ?x10279 ?x23183))) +(let (($x9566 (forall ((?v0 B_S_ptr$) (?v1 B_S_ctype$) )(! (or (not (b_S_is$ ?v0 ?v1)) (= ?v0 (b_S_ptr$ ?v1 (b_S_ref$ ?v0)))) :pattern ( (b_S_is$ ?v0 ?v1) ) :qid k!623)) +)) +(let (($x9563 (or (not $x9555) (= ?1 (b_S_ptr$ ?0 (b_S_ref$ ?1)))))) +(let (($x9560 (forall ((?v0 B_S_ptr$) (?v1 B_S_ctype$) )(! (let (($x9555 (b_S_is$ ?v0 ?v1))) +(=> $x9555 (= ?v0 (b_S_ptr$ ?v1 (b_S_ref$ ?v0))))) :pattern ( (b_S_is$ ?v0 ?v1) ) :qid k!623)) +)) +(let ((@x9565 (rewrite (= (=> $x9555 (= ?1 (b_S_ptr$ ?0 (b_S_ref$ ?1)))) $x9563)))) +(let ((@x15376 (mp~ (mp (asserted $x9560) (quant-intro @x9565 (= $x9560 $x9566)) $x9566) (nnf-pos (refl (~ $x9563 $x9563)) (~ $x9566 $x9566)) $x9566))) +(let (($x21997 (not $x9566))) +(let (($x24681 (or $x21997 $x15630 $x23184))) +(let ((@x24130 (mp ((_ quant-inst (b_S_idx$ ?x10037 v_b_L_H_p_G_0$ b_T_T_u1$) b_T_T_u1$) (or $x21997 (or $x15630 $x23184))) (rewrite (= (or $x21997 (or $x15630 $x23184)) $x24681)) $x24681))) +(let ((@x25031 (symm (unit-resolution @x24130 @x15376 @x24216 $x23184) (= ?x23183 ?x10279)))) +(let ((@x24431 (trans (monotonicity @x25031 (= ?x24253 ?x23196)) (unit-resolution @x24153 (unit-resolution @x24536 @x20266 $x23206) $x23197) (= ?x24253 b_T_T_u1$)))) +(let ((@x24423 (trans (monotonicity @x24431 (= ?x24254 ?x21475)) (unit-resolution @x23038 (unit-resolution @x21487 @x15496 $x21483) $x21476) $x24255))) +(let ((?x10231 (b_S_typemap$ v_b_S_s$))) +(let ((?x24594 (b_S_select_o_tm$ ?x10231 ?x23183))) +(let ((?x24595 (b_S_ts_n_emb$ ?x24594))) +(let (($x24248 (b_S_closed$ v_b_S_s$ ?x24595))) +(let (($x24257 (b_S_ts_n_is_n_volatile$ ?x24594))) +(let (($x24258 (not $x24257))) +(let (($x24247 (or $x24258 (not $x24248)))) +(let ((@x24430 (monotonicity (monotonicity @x25031 (= ?x24594 (b_S_select_o_tm$ ?x10231 ?x10279))) (= $x24257 (b_S_ts_n_is_n_volatile$ (b_S_select_o_tm$ ?x10231 ?x10279)))))) +(let ((@x24428 (symm @x24430 (= (b_S_ts_n_is_n_volatile$ (b_S_select_o_tm$ ?x10231 ?x10279)) $x24257)))) +(let ((@x24487 (monotonicity @x24428 (= (not (b_S_ts_n_is_n_volatile$ (b_S_select_o_tm$ ?x10231 ?x10279))) $x24258)))) +(let ((?x23060 (b_S_select_o_tm$ ?x10231 ?x10279))) +(let (($x23316 (b_S_ts_n_is_n_volatile$ ?x23060))) +(let (($x23317 (not $x23316))) +(let (($x23432 (or $x15633 $x23316))) +(let (($x23433 (not $x23432))) +(let ((?x10035 (b_S_array$ b_T_T_u1$ v_b_P_H_len$))) +(let ((?x10039 (b_S_ptr$ ?x10035 ?x10038))) +(let ((?x21017 (b_S_ref$ ?x10039))) +(let ((?x21986 (b_S_ptr$ ?x10035 ?x21017))) +(let ((?x22346 (b_S_domain$ v_b_S_s$ ?x21986))) +(let ((?x22567 (b_S_ptr$ ?x10035 v_b_P_H_arr$))) +(let (($x22568 (b_S_set_n_in$ ?x22567 ?x22346))) +(let (($x21993 (= ?x10039 ?x21986))) +(let (($x10043 (b_S_is$ ?x10039 ?x10035))) +(let (($x11204 (>= (+ b_S_max_o_u4$ (* (- 1) v_b_P_H_len$)) 0))) +(let (($x11202 (>= v_b_P_H_len$ 0))) +(let (($x10398 (forall ((?v0 B_S_ptr$) )(! (let (($x10072 (b_S_in_n_writes_n_at$ v_b_H_wrTime_S_1_T_6_o_1$ ?v0))) +(not $x10072)) :pattern ( (b_S_in_n_writes_n_at$ v_b_H_wrTime_S_1_T_6_o_1$ ?v0) ) :qid k!705)) +)) +(let ((?x10070 (b_S_current_n_timestamp$ v_b_S_s$))) +(let (($x10071 (= v_b_H_wrTime_S_1_T_6_o_1$ ?x10070))) +(let (($x10068 (b_S_local_n_value_n_is$ v_b_S_s$ b_H_tok_S_1_T_6_o_1$ b_H_loc_o_len$ v_b_P_H_len$ b_T_T_u4$))) +(let ((?x2238 (b_S_ptr_n_to$ b_T_T_u1$))) +(let (($x10066 (b_S_local_n_value_n_is_n_ptr$ v_b_S_s$ b_H_tok_S_1_T_6_o_1$ b_H_loc_o_arr$ ?x10037 ?x2238))) +(let ((?x10064 (b_S_ptr_n_to_n_int$ ?x10037))) +(let (($x10065 (b_S_local_n_value_n_is$ v_b_S_s$ b_H_tok_S_1_T_6_o_1$ b_H_loc_o_arr$ ?x10064 ?x2238))) +(let (($x11215 (forall ((?v0 B_S_pure_n_function$) )(! (let (($x11210 (>= (+ (b_S_frame_n_level$ ?v0) (* (- 1) b_S_current_n_frame_n_level$)) 0))) +(not $x11210)) :pattern ( (b_S_frame_n_level$ ?v0) ) :qid k!705)) +)) +(let (($x10056 (b_S_full_n_stop$ v_b_S_s$))) +(let (($x10055 (b_S_good_n_state_n_ext$ b_H_tok_S_1_T_6_o_1$ v_b_S_s$))) +(let (($x10054 (b_S_function_n_entry$ v_b_S_s$))) +(let (($x10048 (b_S_is_n_non_n_primitive$ ?x10035))) +(let ((?x10045 (b_S_kind_n_of$ ?x10035))) +(let (($x10046 (= ?x10045 b_S_kind_n_primitive$))) +(let (($x10047 (not $x10046))) +(let (($x10044 (b_S_typed$ v_b_S_s$ ?x10039))) +(let ((?x10041 (b_S_owner$ v_b_S_s$ ?x10039))) +(let (($x10042 (= ?x10041 b_S_me$))) +(let (($x10040 (b_S_closed$ v_b_S_s$ ?x10039))) +(let (($x11218 (<= v_b_P_H_len$ 0))) +(let (($x11219 (not $x11218))) +(let (($x11222 (>= v_b_P_H_len$ 1099511627776))) +(let (($x11223 (not $x11222))) +(let (($x11229 (>= (+ b_S_max_o_u4$ (* (- 1) v_b_SL_H_witness$)) 0))) +(let (($x11227 (>= v_b_SL_H_witness$ 0))) +(let (($x11237 (>= (+ b_S_max_o_u4$ (* (- 1) v_b_L_H_p$)) 0))) +(let (($x11235 (>= v_b_L_H_p$ 0))) +(let (($x11245 (>= (+ b_S_max_o_u1$ (* (- 1) v_b_L_H_max$)) 0))) +(let (($x11243 (>= v_b_L_H_max$ 0))) +(let (($x11301 (and $x11243 $x11245 $x11235 $x11237 $x11227 $x11229 $x11223 $x11219 $x10040 $x10042 $x10043 $x10044 $x10047 $x10048 $x10054 $x10055 $x10056 $x11215 $x10065 $x10066 $x10068 $x10071 $x10398 $x11202 $x11204))) +(let (($x11803 (exists ((?v0 Int) )(! 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(rewrite (= (=> $x10095 $x11174) $x11181)) (= $x10390 $x11181)))) +(let (($x10442 (= (and $x10026 (and $x10030 (and $x10032 (and $x10033 (and $x10053 $x10086))))) $x10441))) +(let (($x10414 (= (and $x10063 (and $x10067 (and $x10068 (and $x10071 (and $x10075 $x10078))))) $x10413))) +(let (($x10072 (b_S_in_n_writes_n_at$ v_b_H_wrTime_S_1_T_6_o_1$ ?0))) +(let (($x10395 (not $x10072))) +(let ((@x10403 (monotonicity (quant-intro (rewrite (= (= $x10072 false) $x10395)) (= $x10075 $x10398)) (= (and $x10075 $x10078) $x10401)))) +(let ((@x10409 (monotonicity (monotonicity @x10403 (= (and $x10071 (and $x10075 $x10078)) $x10404)) (= (and $x10068 (and $x10071 (and $x10075 $x10078))) $x10407)))) +(let ((@x10412 (monotonicity @x10409 (= (and $x10067 (and $x10068 (and $x10071 (and $x10075 $x10078)))) $x10410)))) +(let ((@x10421 (monotonicity (monotonicity (monotonicity @x10412 $x10414) (= $x10084 $x10416)) (= (and $x10054 $x10084) $x10419)))) +(let ((@x10428 (trans (monotonicity @x10421 (= $x10086 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((@x11992 (not-or-elim (mp (asserted $x10393) @x11990 $x11986) $x11301))) +(let ((@x12003 (and-elim @x11992 $x10043))) +(let (($x21985 (not $x10043))) +(let (($x21998 (or $x21997 $x21985 $x21993))) +(let ((@x22003 (mp ((_ quant-inst (b_S_ptr$ ?x10035 ?x10038) (b_S_array$ b_T_T_u1$ v_b_P_H_len$)) (or $x21997 (or $x21985 $x21993))) (rewrite (= (or $x21997 (or $x21985 $x21993)) $x21998)) $x21998))) +(let (($x21182 (= ?x10038 v_b_P_H_arr$))) +(let (($x20268 (forall ((?v0 B_S_ctype$) (?v1 Int) )(! (= (b_S_ref$ (b_S_ptr$ ?v0 ?v1)) ?v1) :pattern ( (b_S_ptr$ ?v0 ?v1) ) :qid k!628)) +)) +(let (($x9614 (forall ((?v0 B_S_ctype$) (?v1 Int) )(! (= (b_S_ref$ (b_S_ptr$ ?v0 ?v1)) ?v1) :qid k!628)) +)) +(let (($x9613 (= (b_S_ref$ (b_S_ptr$ ?1 ?0)) ?0))) +(let ((@x15396 (mp~ (asserted $x9614) (nnf-pos (refl (~ $x9613 $x9613)) (~ $x9614 $x9614)) $x9614))) +(let ((@x20273 (mp @x15396 (quant-intro (refl (= $x9613 $x9613)) (= $x9614 $x20268)) $x20268))) +(let (($x21155 (not $x20268))) +(let (($x21187 (or $x21155 $x21182))) +(let ((@x21188 ((_ quant-inst b_T_T_u1$ v_b_P_H_arr$) $x21187))) +(let ((@x23788 (monotonicity (symm (unit-resolution @x21188 @x20273 $x21182) (= v_b_P_H_arr$ ?x10038)) (= ?x22567 ?x10039)))) +(let ((@x23790 (trans @x23788 (unit-resolution @x22003 @x15376 @x12003 $x21993) (= ?x22567 ?x21986)))) +(let ((@x22721 (symm (monotonicity @x23790 (= $x22568 (b_S_set_n_in$ ?x21986 ?x22346))) (= (b_S_set_n_in$ ?x21986 ?x22346) $x22568)))) +(let (($x22347 (b_S_set_n_in$ ?x21986 ?x22346))) +(let (($x22365 (forall ((?v3 B_S_ptr$) )(! (let ((?x10037 (b_S_ptr$ b_T_T_u1$ v_b_P_H_arr$))) +(let ((?x10038 (b_S_ref$ ?x10037))) +(let ((?x10035 (b_S_array$ b_T_T_u1$ v_b_P_H_len$))) +(let ((?x10039 (b_S_ptr$ ?x10035 ?x10038))) +(let ((?x21017 (b_S_ref$ ?x10039))) +(let ((?x21986 (b_S_ptr$ ?x10035 ?x21017))) +(let ((?x22360 (b_S_read_n_version$ v_b_S_s$ ?x21986))) +(let ((?x22361 (b_S_ver_n_domain$ ?x22360))) +(let ((?x22237 (b_S_typ$ ?x21986))) +(let (($x22356 (b_S_has_n_volatile_n_owns_n_set$ ?x22237))) +(or $x22356 (not (b_S_set_n_in$ ?v3 (b_S_owns$ v_b_S_s$ ?x21986))) (b_S_set_n_in2$ ?v3 ?x22361)))))))))))) :pattern ( (b_S_set_n_in$ ?v3 (b_S_owns$ v_b_S_s$ (b_S_ptr$ (b_S_array$ b_T_T_u1$ v_b_P_H_len$) (b_S_ref$ (b_S_ptr$ (b_S_array$ b_T_T_u1$ v_b_P_H_len$) (b_S_ref$ (b_S_ptr$ b_T_T_u1$ v_b_P_H_arr$))))))) ) :qid k!565)) +)) +(let (($x22366 (not $x22365))) +(let (($x22251 (b_S_closed$ v_b_S_s$ ?x21986))) +(let (($x22275 (not $x22251))) +(let (($x22355 (not $x22347))) +(let (($x22367 (or $x22355 $x22275 $x22366))) +(let (($x22368 (not $x22367))) +(let (($x22321 (b_S_in_n_domain$ v_b_S_s$ ?x21986 ?x21986))) +(let (($x22320 (b_S_in_n_domain_n_lab$ v_b_S_s$ ?x21986 ?x21986 b_l_H_public$))) +(let (($x22329 (= $x22320 $x22321))) +(let (($x8687 (forall ((?v0 B_S_state$) (?v1 B_S_ptr$) (?v2 B_S_ptr$) (?v3 B_S_label$) )(! 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(let (($x8678 (b_S_in_n_domain$ ?v0 ?v1 ?v2))) +(let (($x8677 (b_S_in_n_domain_n_lab$ ?v0 ?v1 ?v2 ?v3))) +(= $x8677 $x8678))) :pattern ( (b_S_in_n_domain_n_lab$ ?v0 ?v1 ?v2 ?v3) ) :qid k!568)) +)) +(let ((@x8692 (mp (asserted $x8682) (quant-intro (rewrite (= (= $x8677 $x8678) $x8684)) (= $x8682 $x8687)) $x8687))) +(let ((@x15061 (mp~ @x8692 (nnf-pos (refl (~ $x8684 $x8684)) (~ $x8687 $x8687)) $x8687))) +(let (($x23869 (or (not $x8687) $x22329))) +(let ((@x23202 ((_ quant-inst v_b_S_s$ (b_S_ptr$ ?x10035 ?x21017) (b_S_ptr$ ?x10035 ?x21017) b_l_H_public$) $x23869))) +(let ((@x22334 (symm (unit-resolution @x22003 @x15376 @x12003 $x21993) (= ?x21986 ?x10039)))) +(let (($x35 (= b_S_kind_n_primitive$ b_S_kind_n_array$))) +(let (($x36 (not $x35))) +(let (($x22373 (= $x36 (not (= (b_S_kind_n_of$ (b_S_typ$ ?x21986)) b_S_kind_n_primitive$))))) +(let ((?x22237 (b_S_typ$ ?x21986))) +(let ((?x22390 (b_S_kind_n_of$ ?x22237))) +(let (($x22391 (= ?x22390 b_S_kind_n_primitive$))) +(let (($x22151 (= ?x10045 b_S_kind_n_array$))) +(let (($x21118 (b_S_is_n_arraytype$ ?x10035))) +(let (($x22152 (= $x21118 $x22151))) +(let (($x9828 (forall ((?v0 B_S_ctype$) )(! (let ((?x9808 (b_S_kind_n_of$ ?v0))) +(let (($x9820 (= ?x9808 b_S_kind_n_array$))) +(let (($x7807 (b_S_is_n_arraytype$ ?v0))) +(= $x7807 $x9820)))) :pattern ( (b_S_is_n_arraytype$ ?v0) ) :qid k!663)) +)) +(let (($x9820 (= ?x9808 b_S_kind_n_array$))) +(let (($x7807 (b_S_is_n_arraytype$ ?0))) +(let (($x9825 (= $x7807 $x9820))) +(let (($x9823 (forall ((?v0 B_S_ctype$) )(! (let ((?x9808 (b_S_kind_n_of$ ?v0))) +(let (($x9820 (= ?x9808 b_S_kind_n_array$))) +(let (($x7807 (b_S_is_n_arraytype$ ?v0))) +(= $x7807 $x9820)))) :pattern ( (b_S_is_n_arraytype$ ?v0) ) :qid k!663)) +)) +(let ((@x9833 (mp (asserted $x9823) (quant-intro (rewrite (= (= $x7807 $x9820) $x9825)) (= $x9823 $x9828)) $x9828))) +(let ((@x15486 (mp~ @x9833 (nnf-pos (refl (~ $x9825 $x9825)) (~ $x9828 $x9828)) $x9828))) +(let (($x22162 (or (not $x9828) $x22152))) +(let ((@x22163 ((_ quant-inst (b_S_array$ b_T_T_u1$ v_b_P_H_len$)) $x22162))) +(let (($x7188 (forall ((?v0 B_S_ctype$) (?v1 Int) )(! 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(let ((?x8204 (b_S_idx$ (b_S_ptr$ ?v5 ?v1) ?v4 ?v5))) +(let ((?x7056 (b_S_typemap$ ?v0))) +(let (($x8250 (and (b_S_typed$ ?v0 ?x8204) (not (b_S_ts_n_is_n_volatile$ (b_S_select_o_tm$ ?x7056 ?x8204)))))) +(let (($x5372 (>= (+ ?v4 (* (- 1) ?v3)) 0))) +(let (($x6716 (not $x5372))) +(let (($x3037 (>= ?v4 0))) +(let (($x8199 (b_S_set_n_in$ (b_S_ptr$ (b_S_array$ ?v5 ?v3) ?v1) (b_S_domain$ ?v0 ?v2)))) +(let (($x2704 (b_S_is_n_primitive$ ?v5))) +(let (($x8195 (b_S_full_n_stop$ ?v0))) +(let (($x8229 (and $x8195 $x2704 $x8199 $x3037 $x6716))) +(let (($x8234 (not $x8229))) +(or $x8234 $x8250)))))))))))) :pattern ( (b_S_set_n_in$ (b_S_ptr$ (b_S_array$ ?v5 ?v3) ?v1) (b_S_domain$ ?v0 ?v2)) (b_S_select_o_tm$ (b_S_typemap$ ?v0) (b_S_idx$ (b_S_ptr$ ?v5 ?v1) ?v4 ?v5)) (b_S_is_n_primitive$ ?v5) ) :pattern ( (b_S_set_n_in$ (b_S_ptr$ (b_S_array$ ?v5 ?v3) ?v1) (b_S_domain$ ?v0 ?v2)) (b_S_owner$ ?v0 (b_S_idx$ (b_S_ptr$ ?v5 ?v1) ?v4 ?v5)) (b_S_is_n_primitive$ ?v5) ) :qid k!554)) +)) +(let ((?x8204 (b_S_idx$ (b_S_ptr$ ?0 ?4) ?1 ?0))) +(let ((?x7056 (b_S_typemap$ ?5))) +(let (($x18673 (or (not (b_S_typed$ ?5 ?x8204)) (b_S_ts_n_is_n_volatile$ (b_S_select_o_tm$ ?x7056 ?x8204))))) +(let (($x18674 (not $x18673))) +(let (($x5372 (>= (+ ?1 (* (- 1) ?2)) 0))) +(let (($x3037 (>= ?1 0))) +(let (($x16538 (not $x3037))) +(let (($x8199 (b_S_set_n_in$ (b_S_ptr$ (b_S_array$ ?0 ?2) ?4) (b_S_domain$ ?5 ?3)))) +(let (($x18648 (not $x8199))) +(let (($x8814 (not $x2704))) +(let (($x8195 (b_S_full_n_stop$ ?5))) +(let (($x18647 (not $x8195))) +(let (($x18680 (or $x18647 $x8814 $x18648 $x16538 $x5372 $x18674))) +(let (($x8250 (and (b_S_typed$ ?5 ?x8204) (not (b_S_ts_n_is_n_volatile$ (b_S_select_o_tm$ ?x7056 ?x8204)))))) +(let (($x6716 (not $x5372))) +(let (($x8229 (and $x8195 $x2704 $x8199 $x3037 $x6716))) +(let (($x8234 (not $x8229))) +(let (($x8263 (or $x8234 $x8250))) +(let (($x18649 (or $x18647 $x8814 $x18648 $x16538 $x5372))) +(let ((@x18655 (monotonicity (rewrite (= $x8229 (not $x18649))) (= $x8234 (not (not $x18649)))))) +(let ((@x18679 (monotonicity (trans @x18655 (rewrite (= (not (not $x18649)) $x18649)) (= $x8234 $x18649)) (rewrite (= $x8250 $x18674)) (= $x8263 (or $x18649 $x18674))))) +(let ((@x18687 (quant-intro (trans @x18679 (rewrite (= (or $x18649 $x18674) $x18680)) (= $x8263 $x18680)) (= $x8266 $x18685)))) +(let (($x8255 (forall ((?v0 B_S_state$) (?v1 Int) (?v2 B_S_ptr$) (?v3 Int) (?v4 Int) (?v5 B_S_ctype$) )(! (let ((?x8204 (b_S_idx$ (b_S_ptr$ ?v5 ?v1) ?v4 ?v5))) +(let ((?x7056 (b_S_typemap$ ?v0))) +(let (($x8250 (and (b_S_typed$ ?v0 ?x8204) (not (b_S_ts_n_is_n_volatile$ (b_S_select_o_tm$ ?x7056 ?x8204)))))) +(let (($x3007 (<= 0 ?v4))) +(let (($x6699 (and $x3007 (< ?v4 ?v3)))) +(let (($x8199 (b_S_set_n_in$ (b_S_ptr$ (b_S_array$ ?v5 ?v3) ?v1) (b_S_domain$ ?v0 ?v2)))) +(let (($x2704 (b_S_is_n_primitive$ ?v5))) +(let (($x8195 (b_S_full_n_stop$ ?v0))) +(let (($x8202 (and $x8195 (and $x2704 (and $x8199 $x6699))))) +(=> $x8202 $x8250)))))))))) :pattern ( (b_S_set_n_in$ (b_S_ptr$ (b_S_array$ ?v5 ?v3) ?v1) (b_S_domain$ ?v0 ?v2)) (b_S_select_o_tm$ (b_S_typemap$ ?v0) (b_S_idx$ (b_S_ptr$ ?v5 ?v1) ?v4 ?v5)) (b_S_is_n_primitive$ ?v5) ) :pattern ( (b_S_set_n_in$ (b_S_ptr$ (b_S_array$ ?v5 ?v3) ?v1) (b_S_domain$ ?v0 ?v2)) (b_S_owner$ ?v0 (b_S_idx$ (b_S_ptr$ ?v5 ?v1) ?v4 ?v5)) (b_S_is_n_primitive$ ?v5) ) :qid k!554)) +)) +(let (($x8260 (forall ((?v0 B_S_state$) (?v1 Int) (?v2 B_S_ptr$) (?v3 Int) (?v4 Int) (?v5 B_S_ctype$) )(! (let ((?x8204 (b_S_idx$ (b_S_ptr$ ?v5 ?v1) ?v4 ?v5))) +(let ((?x7056 (b_S_typemap$ ?v0))) +(let (($x8250 (and (b_S_typed$ ?v0 ?x8204) (not (b_S_ts_n_is_n_volatile$ (b_S_select_o_tm$ ?x7056 ?x8204)))))) +(let (($x3007 (<= 0 ?v4))) +(let (($x6699 (and $x3007 (< ?v4 ?v3)))) +(let (($x8199 (b_S_set_n_in$ (b_S_ptr$ (b_S_array$ ?v5 ?v3) ?v1) (b_S_domain$ ?v0 ?v2)))) +(let (($x2704 (b_S_is_n_primitive$ ?v5))) +(let (($x8195 (b_S_full_n_stop$ ?v0))) +(let (($x8202 (and $x8195 (and $x2704 (and $x8199 $x6699))))) +(let (($x8213 (not $x8202))) +(or $x8213 $x8250))))))))))) :pattern ( (b_S_set_n_in$ (b_S_ptr$ (b_S_array$ ?v5 ?v3) ?v1) (b_S_domain$ ?v0 ?v2)) (b_S_select_o_tm$ (b_S_typemap$ ?v0) (b_S_idx$ (b_S_ptr$ ?v5 ?v1) ?v4 ?v5)) (b_S_is_n_primitive$ ?v5) ) :pattern ( (b_S_set_n_in$ (b_S_ptr$ (b_S_array$ ?v5 ?v3) ?v1) (b_S_domain$ ?v0 ?v2)) (b_S_owner$ ?v0 (b_S_idx$ (b_S_ptr$ ?v5 ?v1) ?v4 ?v5)) (b_S_is_n_primitive$ ?v5) ) :qid k!554)) +)) +(let (($x8202 (and $x8195 (and $x2704 (and $x8199 (and (<= 0 ?1) (< ?1 ?2))))))) +(let (($x8213 (not $x8202))) +(let (($x8257 (or $x8213 $x8250))) +(let ((@x8231 (rewrite (= (and $x8195 (and $x2704 (and $x8199 (and $x3037 $x6716)))) $x8229)))) +(let (($x8224 (= (and $x2704 (and $x8199 (and (<= 0 ?1) (< ?1 ?2)))) (and $x2704 (and $x8199 (and $x3037 $x6716)))))) +(let (($x8221 (= (and $x8199 (and (<= 0 ?1) (< ?1 ?2))) (and $x8199 (and $x3037 $x6716))))) +(let ((@x3038 (rewrite (= (<= 0 ?1) $x3037)))) +(let ((@x6721 (monotonicity @x3038 (rewrite (= (< ?1 ?2) $x6716)) (= (and (<= 0 ?1) (< ?1 ?2)) (and $x3037 $x6716))))) +(let ((@x8228 (monotonicity (monotonicity (monotonicity @x6721 $x8221) $x8224) (= $x8202 (and $x8195 (and $x2704 (and $x8199 (and $x3037 $x6716)))))))) +(let ((@x8265 (monotonicity (monotonicity (trans @x8228 @x8231 (= $x8202 $x8229)) (= $x8213 $x8234)) (= $x8257 $x8263)))) +(let ((@x8270 (trans (quant-intro (rewrite (= (=> $x8202 $x8250) $x8257)) (= $x8255 $x8260)) (quant-intro @x8265 (= $x8260 $x8266)) (= $x8255 $x8266)))) +(let ((@x14945 (mp~ (mp (asserted $x8255) @x8270 $x8266) (nnf-pos (refl (~ $x8263 $x8263)) (~ $x8266 $x8266)) $x8266))) +(let ((@x18688 (mp @x14945 @x18687 $x18685))) +(let (($x22569 (not $x22568))) +(let (($x21492 (not $x9727))) +(let (($x22580 (not $x18685))) +(let (($x22581 (or $x22580 $x20989 $x21492 $x22569 $x11218 $x22576))) +(let (($x22573 (>= (+ 0 (* (- 1) v_b_P_H_len$)) 0))) +(let (($x22570 (>= 0 0))) +(let (($x22571 (not $x22570))) +(let (($x22577 (or $x20989 $x21492 $x22569 $x22571 $x22573 $x22576))) +(let (($x22582 (or $x22580 $x22577))) +(let (($x23555 (or $x20989 $x21492 $x22569 $x11218 $x22576))) +(let ((@x22697 (rewrite (= (+ 0 (* (- 1) v_b_P_H_len$)) (* (- 1) v_b_P_H_len$))))) +(let ((@x22606 (trans (monotonicity @x22697 (= $x22573 (>= (* (- 1) v_b_P_H_len$) 0))) (rewrite (= (>= (* (- 1) v_b_P_H_len$) 0) $x11218)) (= $x22573 $x11218)))) +(let ((@x22612 (trans (monotonicity (rewrite (= $x22570 true)) (= $x22571 $x10162)) @x10520 (= $x22571 false)))) +(let ((@x22593 (monotonicity @x22612 @x22606 (= $x22577 (or $x20989 $x21492 $x22569 false $x11218 $x22576))))) +(let ((@x22601 (trans @x22593 (rewrite (= (or $x20989 $x21492 $x22569 false $x11218 $x22576) $x23555)) (= $x22577 $x23555)))) +(let ((@x22729 (trans (monotonicity @x22601 (= $x22582 (or $x22580 $x23555))) (rewrite (= (or $x22580 $x23555) $x22581)) (= $x22582 $x22581)))) +(let ((@x22712 (mp ((_ quant-inst v_b_S_s$ v_b_P_H_arr$ (b_S_ptr$ ?x10035 ?x21017) v_b_P_H_len$ 0 b_T_T_u1$) $x22582) @x22729 $x22581))) +(let ((@x22585 (unit-resolution @x22712 @x18688 @x9728 @x12000 @x12009 @x22724 (hypothesis $x22575) false))) +(let ((@x22589 (lemma @x22585 $x22576))) +(let ((?x22517 (b_S_typ$ ?x10096))) +(let (($x22518 (= ?x22517 b_T_T_u1$))) +(let ((?x22540 (times$ 0 ?x10004))) +(let ((?x22541 (+ ?x10038 ?x22540))) +(let ((?x22542 (b_S_ptr$ b_T_T_u1$ ?x22541))) +(let ((?x22707 (b_S_typ$ ?x22542))) +(let (($x22708 (= ?x22707 b_T_T_u1$))) +(let (($x22543 (= ?x10096 ?x22542))) +(let (($x22544 (not $x22543))) +(let (($x22526 (b_S_extent_n_hint$ ?x10096 ?x10037))) +(let (($x22527 (not $x22526))) +(let (($x22545 (or $x22527 $x22544))) +(let (($x22546 (not $x22545))) +(let (($x22555 (or $x22554 $x22546))) +(let ((@x22556 ((_ quant-inst (b_S_ptr$ b_T_T_u1$ v_b_P_H_arr$) 0 b_T_T_u1$) $x22555))) +(let ((@x23661 (unit-resolution (def-axiom (or $x22545 $x22543)) (unit-resolution @x22556 @x18201 $x22546) $x22543))) +(let ((@x22759 (trans (monotonicity @x23661 (= ?x22517 ?x22707)) (unit-resolution ((_ quant-inst b_T_T_u1$ (+ ?x10038 ?x22540)) (or $x21150 $x22708)) @x20279 $x22708) $x22518))) +(let (($x22519 (not $x22518))) +(let (($x22525 (= $x10097 $x22518))) +(let (($x23535 (or $x22005 $x22525))) +(let ((@x22583 ((_ quant-inst (b_S_idx$ ?x10037 0 b_T_T_u1$) b_T_T_u1$) $x23535))) +(let ((@x22743 (unit-resolution (def-axiom (or (not $x22525) $x10097 $x22519)) (hypothesis $x15542) (or (not $x22525) $x22519)))) +(let ((@x22953 (unit-resolution (unit-resolution @x22743 (unit-resolution @x22583 @x20266 $x22525) $x22519) @x22759 false))) +(let ((@x22955 (lemma @x22953 $x10097))) +(let (($x20559 (or $x15542 $x15545 $x20556))) +(let (($x20562 (not $x20559))) +(let (($x20565 (or $x11180 $x20562))) +(let (($x20568 (not $x20565))) +(let (($x20571 (or $x11180 $x20568))) +(let (($x19635 (forall ((?v0 Int) )(! (let ((?x10037 (b_S_ptr$ b_T_T_u1$ v_b_P_H_arr$))) +(let ((?x10121 (b_S_idx$ ?x10037 ?v0 b_T_T_u1$))) +(let ((?x10122 (b_S_read_n_u1$ v_b_S_s$ ?x10121))) +(let (($x10197 (= ?x10122 v_b_S_result_G_0$))) +(let (($x11759 (>= (+ ?v0 (* (- 1) v_b_P_H_len$)) 0))) +(let (($x12489 (<= ?v0 4294967295))) +(let (($x16571 (not $x12489))) +(let (($x2815 (>= ?v0 0))) +(let (($x3743 (not $x2815))) +(or $x3743 $x16571 $x11759 (not $x10197))))))))))) :qid k!705)) +)) +(let (($x19620 (forall ((?v0 Int) )(! 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(($x22672 (b_S_in_n_wrapped_n_domain$ v_b_S_s$ ?x22508))) +(let (($x22671 (= (b_S_owner$ v_b_S_s$ ?x22508) b_S_me$))) +(let (($x22673 (or $x22671 $x22672))) +(let (($x22674 (not $x22673))) +(let ((?x22648 (b_S_typ$ ?x22508))) +(let ((?x22649 (b_S_kind_n_of$ ?x22648))) +(let (($x22650 (= ?x22649 b_S_kind_n_primitive$))) +(let (($x22675 (or $x22650 $x22674))) +(let (($x22676 (not $x22675))) +(let ((?x22652 (b_S_select_o_tm$ ?x10231 ?x22508))) +(let ((?x22655 (b_S_ts_n_emb$ ?x22652))) +(let (($x22665 (b_S_in_n_wrapped_n_domain$ v_b_S_s$ ?x22655))) +(let ((?x22663 (b_S_owner$ v_b_S_s$ ?x22655))) +(let (($x22664 (= ?x22663 b_S_me$))) +(let (($x22666 (or $x22664 $x22665))) +(let (($x22667 (not $x22666))) +(let ((?x22660 (b_S_typ$ ?x22655))) +(let ((?x22661 (b_S_kind_n_of$ ?x22660))) +(let (($x22662 (= ?x22661 b_S_kind_n_primitive$))) +(let (($x22656 (b_S_closed$ v_b_S_s$ ?x22655))) +(let (($x22657 (not $x22656))) +(let (($x22653 (b_S_ts_n_is_n_volatile$ ?x22652))) +(let (($x22654 (not 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?x22540 ?x23421))) +(let ((?x23445 (b_S_ptr$ b_T_T_u1$ ?x23437))) +(let ((?x23405 (b_S_idx$ ?x21986 0 b_T_T_u1$))) +(let (($x23447 (= ?x23405 ?x23445))) +(let (($x23475 (not $x23447))) +(let (($x23400 (b_S_extent_n_hint$ ?x23405 ?x21986))) +(let (($x23431 (not $x23400))) +(let (($x23478 (or $x23431 $x23475))) +(let (($x23480 (not $x23478))) +(let (($x23493 (or $x22554 $x23480))) +(let (($x23464 (not (or $x23431 (not (= ?x23405 (b_S_ptr$ b_T_T_u1$ (+ ?x23421 ?x22540)))))))) +(let (($x23467 (= (or $x23431 (not (= ?x23405 (b_S_ptr$ b_T_T_u1$ (+ ?x23421 ?x22540))))) $x23478))) +(let ((@x23446 (monotonicity (rewrite (= (+ ?x23421 ?x22540) ?x23437)) (= (b_S_ptr$ b_T_T_u1$ (+ ?x23421 ?x22540)) ?x23445)))) +(let ((@x23472 (monotonicity @x23446 (= (= ?x23405 (b_S_ptr$ b_T_T_u1$ (+ ?x23421 ?x22540))) $x23447)))) +(let ((@x23477 (monotonicity @x23472 (= (not (= ?x23405 (b_S_ptr$ b_T_T_u1$ (+ ?x23421 ?x22540)))) $x23475)))) +(let ((@x23496 (monotonicity (monotonicity (monotonicity @x23477 $x23467) (= $x23464 $x23480)) (= (or $x22554 $x23464) $x23493)))) +(let ((@x23511 (mp ((_ quant-inst (b_S_ptr$ ?x10035 ?x21017) 0 b_T_T_u1$) (or $x22554 $x23464)) (trans @x23496 (rewrite (= $x23493 $x23493)) (= (or $x22554 $x23464) $x23493)) $x23493))) +(let ((@x23521 (def-axiom (or $x23478 $x23447)))) +(let ((@x23560 (unit-resolution @x23521 (lemma (unit-resolution @x23511 @x18201 (hypothesis $x23478) false) $x23480) $x23447))) +(let ((?x23234 (b_S_idx$ ?x22567 0 b_T_T_u1$))) +(let ((?x23235 (b_S_select_o_tm$ ?x10231 ?x23234))) +(let ((?x23228 (b_S_ts_n_emb$ ?x23235))) +(let (($x23052 (= ?x23228 ?x22567))) +(let (($x23307 (b_S_typed$ v_b_S_s$ ?x23234))) +(let (($x23308 (not $x23307))) +(let (($x23304 (b_S_ts_n_is_n_volatile$ ?x23235))) +(let (($x23229 (not $x23052))) +(let (($x23309 (or $x23229 $x23304 (not (b_S_ts_n_is_n_array_n_elt$ ?x23235)) $x23308))) +(let (($x23302 (not $x23309))) +(let (($x23015 (b_S_typed$ v_b_S_s$ ?x22567))) +(let ((@x23220 (mp @x12004 (symm (monotonicity @x23788 (= $x23015 $x10044)) (= $x10044 $x23015)) $x23015))) +(let ((@x23423 (lemma (unit-resolution (hypothesis (not $x23015)) @x23220 false) $x23015))) +(let (($x17982 (forall ((?v0 B_S_state$) (?v1 Int) (?v2 B_S_ctype$) (?v3 Int) (?v4 Int) )(! (let (($x6864 (b_S_typed$ ?v0 (b_S_idx$ (b_S_ptr$ (b_S_array$ ?v2 ?v3) ?v1) ?v4 ?v2)))) +(let ((?x6856 (b_S_typemap$ ?v0))) +(let ((?x6858 (b_S_select_o_tm$ ?x6856 (b_S_idx$ (b_S_ptr$ (b_S_array$ ?v2 ?v3) ?v1) ?v4 ?v2)))) +(let (($x6863 (b_S_ts_n_is_n_array_n_elt$ ?x6858))) +(let (($x17970 (or (not (= (b_S_ts_n_emb$ ?x6858) (b_S_ptr$ (b_S_array$ ?v2 ?v3) ?v1))) (b_S_ts_n_is_n_volatile$ ?x6858) (not $x6863) (not $x6864)))) +(let (($x17971 (not $x17970))) +(let (($x4831 (>= (+ ?v4 (* (- 1) ?v3)) 0))) +(let (($x2815 (>= ?v4 0))) +(let (($x3743 (not $x2815))) +(or (not (b_S_typed$ ?v0 (b_S_ptr$ (b_S_array$ ?v2 ?v3) ?v1))) $x3743 $x4831 $x17971)))))))))) :pattern ( (b_S_select_o_sm$ (b_S_statusmap$ ?v0) (b_S_idx$ (b_S_ptr$ ?v2 ?v1) ?v4 ?v2)) (b_S_ptr$ (b_S_array$ ?v2 ?v3) ?v1) ) :pattern ( (b_S_select_o_tm$ (b_S_typemap$ ?v0) (b_S_idx$ (b_S_ptr$ ?v2 ?v1) ?v4 ?v2)) (b_S_ptr$ (b_S_array$ ?v2 ?v3) ?v1) ) :qid k!494)) +)) +(let (($x6902 (forall ((?v0 B_S_state$) (?v1 Int) (?v2 B_S_ctype$) (?v3 Int) (?v4 Int) )(! (let (($x6864 (b_S_typed$ ?v0 (b_S_idx$ (b_S_ptr$ (b_S_array$ ?v2 ?v3) ?v1) ?v4 ?v2)))) +(let ((?x6856 (b_S_typemap$ ?v0))) +(let ((?x6858 (b_S_select_o_tm$ ?x6856 (b_S_idx$ (b_S_ptr$ (b_S_array$ ?v2 ?v3) ?v1) ?v4 ?v2)))) +(let (($x6863 (b_S_ts_n_is_n_array_n_elt$ ?x6858))) +(let ((?x6853 (b_S_ptr$ (b_S_array$ ?v2 ?v3) ?v1))) +(let (($x6860 (= (b_S_ts_n_emb$ ?x6858) ?x6853))) +(let (($x6896 (and $x6860 (not (b_S_ts_n_is_n_volatile$ ?x6858)) $x6863 $x6864))) +(let (($x4831 (>= (+ ?v4 (* (- 1) ?v3)) 0))) +(let (($x6562 (not $x4831))) +(let (($x2815 (>= ?v4 0))) +(let (($x6854 (b_S_typed$ ?v0 ?x6853))) +(let (($x6888 (and $x6854 $x2815 $x6562))) +(let (($x6893 (not $x6888))) +(or $x6893 $x6896)))))))))))))) :pattern ( (b_S_select_o_sm$ (b_S_statusmap$ ?v0) (b_S_idx$ (b_S_ptr$ ?v2 ?v1) ?v4 ?v2)) (b_S_ptr$ (b_S_array$ ?v2 ?v3) ?v1) ) :pattern ( (b_S_select_o_tm$ (b_S_typemap$ ?v0) (b_S_idx$ (b_S_ptr$ ?v2 ?v1) ?v4 ?v2)) (b_S_ptr$ (b_S_array$ ?v2 ?v3) ?v1) ) :qid k!494)) +)) +(let (($x6864 (b_S_typed$ ?4 (b_S_idx$ (b_S_ptr$ (b_S_array$ ?2 ?1) ?3) ?0 ?2)))) +(let ((?x6856 (b_S_typemap$ ?4))) +(let ((?x6858 (b_S_select_o_tm$ ?x6856 (b_S_idx$ (b_S_ptr$ (b_S_array$ ?2 ?1) ?3) ?0 ?2)))) +(let (($x6863 (b_S_ts_n_is_n_array_n_elt$ ?x6858))) +(let (($x17970 (or (not (= (b_S_ts_n_emb$ ?x6858) (b_S_ptr$ (b_S_array$ ?2 ?1) ?3))) (b_S_ts_n_is_n_volatile$ ?x6858) (not $x6863) (not $x6864)))) +(let (($x17971 (not $x17970))) +(let (($x4831 (>= (+ ?0 (* (- 1) ?1)) 0))) +(let (($x17977 (or (not (b_S_typed$ ?4 (b_S_ptr$ (b_S_array$ ?2 ?1) ?3))) $x3743 $x4831 $x17971))) +(let ((?x6853 (b_S_ptr$ (b_S_array$ ?2 ?1) ?3))) +(let (($x6860 (= (b_S_ts_n_emb$ ?x6858) ?x6853))) +(let (($x6896 (and $x6860 (not (b_S_ts_n_is_n_volatile$ ?x6858)) $x6863 $x6864))) +(let (($x6562 (not $x4831))) +(let (($x6854 (b_S_typed$ ?4 ?x6853))) +(let (($x6888 (and $x6854 $x2815 $x6562))) +(let (($x6893 (not $x6888))) +(let (($x6899 (or $x6893 $x6896))) +(let (($x17956 (or (not $x6854) $x3743 $x4831))) +(let ((@x17962 (monotonicity (rewrite (= $x6888 (not $x17956))) (= $x6893 (not (not $x17956)))))) +(let ((@x17976 (monotonicity (trans @x17962 (rewrite (= (not (not $x17956)) $x17956)) (= $x6893 $x17956)) (rewrite (= $x6896 $x17971)) (= $x6899 (or $x17956 $x17971))))) +(let ((@x17984 (quant-intro (trans @x17976 (rewrite (= (or $x17956 $x17971) $x17977)) (= $x6899 $x17977)) (= $x6902 $x17982)))) +(let (($x6876 (forall ((?v0 B_S_state$) (?v1 Int) (?v2 B_S_ctype$) (?v3 Int) (?v4 Int) )(! (let (($x6864 (b_S_typed$ ?v0 (b_S_idx$ (b_S_ptr$ (b_S_array$ ?v2 ?v3) ?v1) ?v4 ?v2)))) +(let ((?x6856 (b_S_typemap$ ?v0))) +(let ((?x6858 (b_S_select_o_tm$ ?x6856 (b_S_idx$ (b_S_ptr$ (b_S_array$ ?v2 ?v3) ?v1) ?v4 ?v2)))) +(let (($x6863 (b_S_ts_n_is_n_array_n_elt$ ?x6858))) +(let ((?x6853 (b_S_ptr$ (b_S_array$ ?v2 ?v3) ?v1))) +(let (($x6860 (= (b_S_ts_n_emb$ ?x6858) ?x6853))) +(let (($x6867 (and $x6860 (and (not (b_S_ts_n_is_n_volatile$ ?x6858)) (and $x6863 $x6864))))) +(let (($x2766 (<= 0 ?v4))) +(let (($x6525 (and $x2766 (< ?v4 ?v3)))) +(let (($x6854 (b_S_typed$ ?v0 ?x6853))) +(let (($x6855 (and $x6854 $x6525))) +(=> $x6855 $x6867)))))))))))) :pattern ( (b_S_select_o_sm$ (b_S_statusmap$ ?v0) (b_S_idx$ (b_S_ptr$ ?v2 ?v1) ?v4 ?v2)) (b_S_ptr$ (b_S_array$ ?v2 ?v3) ?v1) ) :pattern ( (b_S_select_o_tm$ (b_S_typemap$ ?v0) (b_S_idx$ (b_S_ptr$ ?v2 ?v1) ?v4 ?v2)) (b_S_ptr$ (b_S_array$ ?v2 ?v3) ?v1) ) :qid k!494)) +)) +(let (($x6882 (forall ((?v0 B_S_state$) (?v1 Int) (?v2 B_S_ctype$) (?v3 Int) (?v4 Int) )(! (let (($x6864 (b_S_typed$ ?v0 (b_S_idx$ (b_S_ptr$ (b_S_array$ ?v2 ?v3) ?v1) ?v4 ?v2)))) +(let ((?x6856 (b_S_typemap$ ?v0))) +(let ((?x6858 (b_S_select_o_tm$ ?x6856 (b_S_idx$ (b_S_ptr$ (b_S_array$ ?v2 ?v3) ?v1) ?v4 ?v2)))) +(let (($x6863 (b_S_ts_n_is_n_array_n_elt$ ?x6858))) +(let ((?x6853 (b_S_ptr$ (b_S_array$ ?v2 ?v3) ?v1))) +(let (($x6860 (= (b_S_ts_n_emb$ ?x6858) ?x6853))) +(let (($x6867 (and $x6860 (and (not (b_S_ts_n_is_n_volatile$ ?x6858)) (and $x6863 $x6864))))) +(let (($x2766 (<= 0 ?v4))) +(let (($x6525 (and $x2766 (< ?v4 ?v3)))) +(let (($x6854 (b_S_typed$ ?v0 ?x6853))) +(let (($x6855 (and $x6854 $x6525))) +(or (not $x6855) $x6867)))))))))))) :pattern ( (b_S_select_o_sm$ (b_S_statusmap$ ?v0) (b_S_idx$ (b_S_ptr$ ?v2 ?v1) ?v4 ?v2)) (b_S_ptr$ (b_S_array$ ?v2 ?v3) ?v1) ) :pattern ( (b_S_select_o_tm$ (b_S_typemap$ ?v0) (b_S_idx$ (b_S_ptr$ ?v2 ?v1) ?v4 ?v2)) (b_S_ptr$ (b_S_array$ ?v2 ?v3) ?v1) ) :qid k!494)) +)) +(let (($x6867 (and $x6860 (and (not (b_S_ts_n_is_n_volatile$ ?x6858)) (and $x6863 $x6864))))) +(let (($x6879 (or (not (and $x6854 (and $x2766 (< ?0 ?1)))) $x6867))) +(let (($x6525 (and $x2766 (< ?0 ?1)))) +(let (($x6855 (and $x6854 $x6525))) +(let ((@x6567 (monotonicity @x2814 (rewrite (= (< ?0 ?1) $x6562)) (= $x6525 (and $x2815 $x6562))))) +(let ((@x6892 (trans (monotonicity @x6567 (= $x6855 (and $x6854 (and $x2815 $x6562)))) (rewrite (= (and $x6854 (and $x2815 $x6562)) $x6888)) (= $x6855 $x6888)))) +(let ((@x6901 (monotonicity (monotonicity @x6892 (= (not $x6855) $x6893)) (rewrite (= $x6867 $x6896)) (= $x6879 $x6899)))) +(let ((@x6906 (trans (quant-intro (rewrite (= (=> $x6855 $x6867) $x6879)) (= $x6876 $x6882)) (quant-intro @x6901 (= $x6882 $x6902)) (= $x6876 $x6902)))) +(let ((@x14395 (mp~ (mp (asserted $x6876) @x6906 $x6902) (nnf-pos (refl (~ $x6899 $x6899)) (~ $x6902 $x6902)) $x6902))) +(let ((@x17985 (mp @x14395 @x17984 $x17982))) +(let (($x23544 (not $x23015))) +(let (($x23814 (not $x17982))) +(let (($x23815 (or $x23814 $x23544 $x11218 $x23302))) +(let (($x23303 (or $x23544 $x22571 $x22573 $x23302))) +(let (($x23827 (or $x23814 $x23303))) +(let ((@x23821 (trans (monotonicity @x22612 @x22606 (= $x23303 (or $x23544 false $x11218 $x23302))) (rewrite (= (or $x23544 false $x11218 $x23302) (or $x23544 $x11218 $x23302))) (= $x23303 (or $x23544 $x11218 $x23302))))) +(let ((@x23844 (trans (monotonicity @x23821 (= $x23827 (or $x23814 (or $x23544 $x11218 $x23302)))) (rewrite (= (or $x23814 (or $x23544 $x11218 $x23302)) $x23815)) (= $x23827 $x23815)))) +(let ((@x23877 (unit-resolution (mp ((_ quant-inst v_b_S_s$ v_b_P_H_arr$ b_T_T_u1$ v_b_P_H_len$ 0) $x23827) @x23844 $x23815) @x17985 @x12000 @x23423 (hypothesis $x23309) false))) +(let ((@x23450 (monotonicity (symm (hypothesis $x22509) (= ?x22508 ?x10096)) (= (b_S_ref$ ?x22508) ?x22488)))) +(let ((?x23516 (* (- 1) ?x23421))) +(let ((?x23517 (+ ?x21017 ?x23516))) +(let (($x23500 (<= ?x23517 0))) +(let ((@x23651 (unit-resolution ((_ th-lemma arith triangle-eq) (or (not (= ?x21017 ?x23421)) $x23500)) (symm (monotonicity @x22334 (= ?x23421 ?x21017)) (= ?x21017 ?x23421)) $x23500))) +(let (($x23501 (>= ?x23517 0))) +(let ((@x23654 (unit-resolution ((_ th-lemma arith triangle-eq) (or (not (= ?x21017 ?x23421)) $x23501)) (symm (monotonicity @x22334 (= ?x23421 ?x21017)) (= ?x21017 ?x23421)) $x23501))) +(let ((?x22742 (b_S_ref$ ?x22508))) +(let ((?x22730 (* (- 1) ?x22742))) +(let ((?x22761 (+ ?x22488 ?x22730))) +(let (($x22762 (<= ?x22761 0))) +(let ((@x23935 (unit-resolution ((_ th-lemma arith triangle-eq) (or (not (= ?x22488 ?x22742)) $x22762)) (symm @x23450 (= ?x22488 ?x22742)) $x22762))) +(let (($x22771 (>= ?x22761 0))) +(let ((@x23938 (unit-resolution ((_ th-lemma arith triangle-eq) (or (not (= ?x22488 ?x22742)) $x22771)) (symm @x23450 (= ?x22488 ?x22742)) $x22771))) +(let ((?x22620 (b_S_ref$ ?x22542))) +(let ((?x22632 (* (- 1) ?x22620))) +(let ((?x22695 (+ ?x22488 ?x22632))) +(let (($x22698 (<= ?x22695 0))) +(let (($x22694 (= ?x22488 ?x22620))) +(let ((@x23695 (unit-resolution ((_ th-lemma arith triangle-eq) (or (not $x22694) $x22698)) (symm (monotonicity (symm @x23661 (= ?x22542 ?x10096)) (= ?x22620 ?x22488)) $x22694) $x22698))) +(let (($x22699 (>= ?x22695 0))) +(let ((@x23712 (unit-resolution ((_ th-lemma arith triangle-eq) (or (not $x22694) $x22699)) (symm (monotonicity (symm @x23661 (= ?x22542 ?x10096)) (= ?x22620 ?x22488)) $x22694) $x22699))) +(let ((?x23417 (* (- 1) ?x21017))) +(let ((?x22615 (+ ?x10038 ?x23417))) +(let (($x22616 (<= ?x22615 0))) +(let (($x23418 (= ?x10038 ?x21017))) +(let (($x21189 (= ?x21017 ?x10038))) +(let (($x21194 (or $x21155 $x21189))) +(let ((@x21195 ((_ quant-inst (b_S_array$ b_T_T_u1$ v_b_P_H_len$) (b_S_ref$ ?x10037)) $x21194))) +(let ((@x23725 (unit-resolution ((_ th-lemma arith triangle-eq) (or (not $x23418) $x22616)) (symm (unit-resolution @x21195 @x20273 $x21189) $x23418) $x22616))) +(let (($x22617 (>= ?x22615 0))) +(let ((@x23656 (unit-resolution ((_ th-lemma arith triangle-eq) (or (not $x23418) $x22617)) (symm (unit-resolution @x21195 @x20273 $x21189) $x23418) $x22617))) +(let ((?x22633 (+ ?x10038 ?x22540 ?x22632))) +(let (($x22692 (<= ?x22633 0))) +(let (($x22631 (= ?x22633 0))) +(let (($x22634 (or $x21155 $x22631))) +(let ((@x22687 (monotonicity (rewrite (= (= ?x22620 ?x22541) $x22631)) (= (or $x21155 (= ?x22620 ?x22541)) $x22634)))) +(let ((@x22690 (trans @x22687 (rewrite (= $x22634 $x22634)) (= (or $x21155 (= ?x22620 ?x22541)) $x22634)))) +(let ((@x22691 (mp ((_ quant-inst b_T_T_u1$ (+ ?x10038 ?x22540)) (or $x21155 (= ?x22620 ?x22541))) @x22690 $x22634))) +(let ((@x23777 (unit-resolution ((_ th-lemma arith triangle-eq) (or (not $x22631) $x22692)) (unit-resolution @x22691 @x20273 $x22631) $x22692))) +(let (($x22693 (>= ?x22633 0))) +(let ((@x23780 (unit-resolution ((_ th-lemma arith triangle-eq) (or (not $x22631) $x22693)) (unit-resolution @x22691 @x20273 $x22631) $x22693))) +(let ((@x23940 ((_ th-lemma arith eq-propagate -1 -1 1 1 1 1 -1 -1 1 1) @x23780 @x23777 @x23656 @x23725 @x23712 @x23695 @x23938 @x23935 @x23654 @x23651 (= ?x22742 ?x23437)))) +(let ((@x23945 (monotonicity (trans (symm @x23940 (= ?x23437 ?x22742)) @x23450 (= ?x23437 ?x22488)) (= ?x23445 ?x22508)))) +(let ((@x23946 (trans (monotonicity @x23790 (= ?x23234 ?x23405)) (hypothesis $x23447) (= ?x23234 ?x23445)))) +(let ((@x23949 (symm (monotonicity (trans @x23946 @x23945 (= ?x23234 ?x22508)) (= ?x23235 ?x22652)) (= ?x22652 ?x23235)))) +(let ((@x23951 (trans (monotonicity @x23949 (= ?x22655 ?x23228)) (unit-resolution (def-axiom (or $x23309 $x23052)) (lemma @x23877 $x23302) $x23052) (= ?x22655 ?x22567)))) +(let ((@x23955 (trans (monotonicity (trans @x23951 @x23788 (= ?x22655 ?x10039)) (= ?x22663 ?x10041)) @x12002 $x22664))) +(let ((@x23959 (lemma (unit-resolution (hypothesis (not $x22664)) @x23955 false) (or $x23475 $x22664 (not $x22509))))) +(let ((@x23694 (unit-resolution (def-axiom (or $x22666 (not $x22664))) (unit-resolution @x23959 @x22967 @x23560 $x22664) $x22666))) +(let (($x23385 (not $x22662))) +(let (($x23658 (b_S_is_n_non_n_primitive$ ?x22660))) +(let (($x23659 (not $x23658))) +(let (($x22816 (or $x22662 $x23659))) +(let (($x22826 (not $x22816))) +(let (($x19252 (forall ((?v0 B_S_type_n_state$) )(! (let (($x9502 (= (b_S_kind_n_of$ (b_S_typ$ (b_S_ts_n_emb$ ?v0))) b_S_kind_n_primitive$))) +(let (($x19248 (or $x9502 (not (b_S_is_n_non_n_primitive$ (b_S_typ$ (b_S_ts_n_emb$ ?v0))))))) +(not $x19248))) :pattern ( (b_S_ts_n_emb$ ?v0) ) :qid k!619)) +)) +(let (($x9507 (forall ((?v0 B_S_type_n_state$) )(! (let (($x9502 (= (b_S_kind_n_of$ (b_S_typ$ (b_S_ts_n_emb$ ?v0))) b_S_kind_n_primitive$))) +(and (not $x9502) (b_S_is_n_non_n_primitive$ (b_S_typ$ (b_S_ts_n_emb$ ?v0))))) :pattern ( (b_S_ts_n_emb$ ?v0) ) :qid k!619)) +)) +(let (($x9502 (= (b_S_kind_n_of$ (b_S_typ$ (b_S_ts_n_emb$ ?0))) b_S_kind_n_primitive$))) +(let (($x19248 (or $x9502 (not (b_S_is_n_non_n_primitive$ (b_S_typ$ (b_S_ts_n_emb$ ?0))))))) +(let (($x9505 (and (not $x9502) (b_S_is_n_non_n_primitive$ (b_S_typ$ (b_S_ts_n_emb$ ?0)))))) +(let ((@x15356 (mp~ (asserted $x9507) (nnf-pos (refl (~ $x9505 $x9505)) (~ $x9507 $x9507)) $x9507))) +(let ((@x19255 (mp @x15356 (quant-intro (rewrite (= $x9505 (not $x19248))) (= $x9507 $x19252)) $x19252))) +(let (($x22945 (or (not $x19252) $x22826))) +(let ((@x22937 ((_ quant-inst (b_S_select_o_tm$ ?x10231 ?x22508)) $x22945))) +(let ((@x23547 (unit-resolution (def-axiom (or $x22816 $x23385)) (lemma (unit-resolution @x22937 @x19255 (hypothesis $x22816) false) $x22826) $x23385))) +(let ((@x23566 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+ diff -r 1e5c7599aa5b -r ece9435ca78e src/HOL/SMT_Examples/SMT_Examples.certs --- a/src/HOL/SMT_Examples/SMT_Examples.certs Sun Oct 01 15:17:31 2017 +0200 +++ b/src/HOL/SMT_Examples/SMT_Examples.certs Sun Oct 01 15:17:43 2017 +0200 @@ -1,3 +1,113 @@ +c6761b6a026c6bf2d28c35e9faf633fc441c84c5 45 0 +unsat +((set-logic AUFLIA) +(proof +(let ((?x44 (id$ x$))) +(let (($x46 (= ?x44 x$))) +(let (($x73 (not $x46))) +(let (($x47 (id$a true))) +(let (($x510 (forall ((?v0 Bool) )(! (let (($x33 (id$a ?v0))) +(= $x33 ?v0)) :pattern ( (id$a ?v0) ) :qid k!9)) +)) +(let (($x40 (forall ((?v0 Bool) )(! (let (($x33 (id$a ?v0))) +(= $x33 ?v0)) :qid k!9)) +)) +(let ((@x514 (quant-intro (refl (= (= (id$a ?0) ?0) (= (id$a ?0) ?0))) (= $x40 $x510)))) +(let ((@x69 (nnf-pos (refl (~ (= (id$a ?0) ?0) (= (id$a ?0) ?0))) (~ $x40 $x40)))) +(let (($x35 (forall ((?v0 Bool) )(! 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(let (($x97 (less_eq$ ?v0 ?v2))) +(let (($x95 (less_eq$ ?v1 ?v2))) +(let (($x93 (less_eq$ ?v0 ?v1))) +(let (($x96 (and $x93 $x95))) +(let (($x101 (not $x96))) +(or $x101 $x97)))))) :qid k!17)) +)) +(let (($x97 (less_eq$ ?2 ?0))) +(let (($x95 (less_eq$ ?1 ?0))) +(let (($x138 (not $x95))) +(let (($x93 (less_eq$ ?2 ?1))) +(let (($x137 (not $x93))) +(let (($x151 (or $x137 $x138 $x97))) +(let (($x96 (and $x93 $x95))) +(let (($x101 (not $x96))) +(let (($x102 (or $x101 $x97))) +(let ((@x143 (monotonicity (rewrite (= $x96 (not (or $x137 $x138)))) (= $x101 (not (not (or $x137 $x138))))))) +(let ((@x147 (trans @x143 (rewrite (= (not (not (or $x137 $x138))) (or $x137 $x138))) (= $x101 (or $x137 $x138))))) +(let ((@x155 (trans (monotonicity @x147 (= $x102 (or (or $x137 $x138) $x97))) (rewrite (= (or (or $x137 $x138) $x97) $x151)) (= $x102 $x151)))) +(let (($x99 (forall ((?v0 A$) (?v1 A$) (?v2 A$) )(! (let (($x97 (less_eq$ ?v0 ?v2))) +(let (($x95 (less_eq$ ?v1 ?v2))) +(let (($x93 (less_eq$ ?v0 ?v1))) +(let (($x96 (and $x93 $x95))) +(=> $x96 $x97))))) :qid k!17)) +)) +(let ((@x110 (mp (asserted $x99) (quant-intro (rewrite (= (=> $x96 $x97) $x102)) (= $x99 $x105)) $x105))) +(let ((@x159 (mp (mp~ @x110 (nnf-pos (refl (~ $x102 $x102)) (~ $x105 $x105)) $x105) (quant-intro @x155 (= $x105 $x156)) $x156))) +(let ((@x584 (mp @x159 @x583 $x578))) +(let (($x247 (not $x115))) +(let (($x160 (not $x113))) +(let (($x251 (not $x578))) +(let (($x252 (or $x251 $x160 $x247 $x117))) +(let ((@x570 (mp ((_ quant-inst (sup$ ?x108) (sup$ ?x111) (sup$ ?x108)) (or $x251 (or $x160 $x247 $x117))) (rewrite (= (or $x251 (or $x160 $x247 $x117)) $x252)) $x252))) +(unit-resolution @x570 @x584 @x114 @x116 @x119 false))))))))))))))))))))))))))))))))))))))) + +4e8ab14f236ad601aa67494ca8ea18b2ba6a1a79 25 0 +unsat +((set-logic AUFLIA) +(proof +(let (($x142 (pred$e 1))) +(let (($x144 (not $x142))) +(let ((@x145 (asserted $x144))) +(let (($x615 (forall ((?v0 Int) )(! (pred$e ?v0) :pattern ( (pred$e ?v0) ) :qid k!29)) +)) +(let (($x138 (forall ((?v0 Int) )(! (pred$e ?v0) :qid k!29)) +)) +(let (($x127 (forall ((?v0 Int) )(! (let (($x125 (or (pred$d (cons$d ?v0 nil$d)) (not (pred$d (cons$d ?v0 nil$d)))))) +(let (($x119 (pred$e ?v0))) +(and $x119 $x125))) :qid k!29)) +)) +(let (($x119 (pred$e ?0))) +(let (($x125 (or (pred$d (cons$d ?0 nil$d)) (not (pred$d (cons$d ?0 nil$d)))))) +(let (($x126 (and $x119 $x125))) +(let ((@x133 (monotonicity (rewrite (= $x125 true)) (= $x126 (and $x119 true))))) +(let ((@x140 (quant-intro (trans @x133 (rewrite (= (and $x119 true) $x119)) (= $x126 $x119)) (= $x127 $x138)))) +(let ((@x170 (mp~ (mp (asserted $x127) @x140 $x138) (nnf-pos (refl (~ $x119 $x119)) (~ $x138 $x138)) $x138))) +(let ((@x620 (mp @x170 (quant-intro (refl (= $x119 $x119)) (= $x138 $x615)) $x615))) +(let (($x257 (or (not $x615) $x142))) +(let ((@x258 ((_ quant-inst 1) $x257))) +(unit-resolution @x258 @x620 @x145 false)))))))))))))))))) + +b4b100f728c8f0d6f96483e4de44e248cc4be1aa 101 0 +unsat +((set-logic AUFLIA) +(proof +(let ((?x124 (some$a true))) +(let ((?x125 (g$b ?x124))) +(let ((?x122 (some$ 3))) +(let ((?x123 (g$ ?x122))) +(let (($x126 (= ?x123 ?x125))) +(let ((?x269 (cons$a true nil$a))) +(let ((?x270 (g$c ?x269))) +(let (($x587 (= ?x125 ?x270))) +(let (($x604 (forall ((?v0 Bool) )(! (= (g$b (some$a ?v0)) (g$c (cons$a ?v0 nil$a))) :pattern ( (some$a ?v0) ) :pattern ( (cons$a ?v0 nil$a) ) :qid k!33)) +)) +(let (($x43 (forall ((?v0 Bool) )(! (= (g$b (some$a ?v0)) (g$c (cons$a ?v0 nil$a))) :qid k!33)) +)) +(let (($x42 (= (g$b (some$a ?0)) (g$c (cons$a ?0 nil$a))))) +(let ((@x160 (mp~ (asserted $x43) (nnf-pos (refl (~ $x42 $x42)) (~ $x43 $x43)) $x43))) +(let ((@x609 (mp @x160 (quant-intro (refl (= $x42 $x42)) (= $x43 $x604)) $x604))) +(let (($x254 (or (not $x604) $x587))) +(let ((@x255 ((_ quant-inst true) $x254))) +(let ((?x227 (size$ ?x269))) +(let (($x569 (= ?x270 ?x227))) +(let (($x612 (forall ((?v0 Bool_list$) )(! (let ((?x61 (size$ ?v0))) +(let ((?x60 (g$c ?v0))) +(= ?x60 ?x61))) :pattern ( (g$c ?v0) ) :pattern ( (size$ ?v0) ) :qid k!38)) +)) +(let (($x63 (forall ((?v0 Bool_list$) )(! (let ((?x61 (size$ ?v0))) +(let ((?x60 (g$c ?v0))) +(= ?x60 ?x61))) :qid k!38)) +)) +(let ((@x616 (quant-intro (refl (= (= (g$c ?0) (size$ ?0)) (= (g$c ?0) (size$ ?0)))) (= $x63 $x612)))) +(let ((@x142 (nnf-pos (refl (~ (= (g$c ?0) (size$ ?0)) (= (g$c ?0) (size$ ?0)))) (~ $x63 $x63)))) +(let ((@x617 (mp (mp~ (asserted $x63) @x142 $x63) @x616 $x612))) +(let (($x571 (or (not $x612) $x569))) +(let ((@x572 ((_ quant-inst (cons$a true nil$a)) $x571))) +(let ((?x89 (suc$ zero$))) +(let ((?x105 (size$ nil$a))) +(let ((?x233 (plus$ ?x105 ?x89))) +(let (($x570 (= ?x227 ?x233))) +(let (($x657 (forall ((?v0 Bool) (?v1 Bool_list$) )(! (= (size$ (cons$a ?v0 ?v1)) (plus$ (size$ ?v1) (suc$ zero$))) :pattern ( (cons$a ?v0 ?v1) ) :qid k!46)) +)) +(let (($x114 (forall ((?v0 Bool) (?v1 Bool_list$) )(! (= (size$ (cons$a ?v0 ?v1)) (plus$ (size$ ?v1) (suc$ zero$))) :qid k!46)) +)) +(let (($x113 (= (size$ (cons$a ?1 ?0)) (plus$ (size$ ?0) ?x89)))) +(let ((@x173 (mp~ (asserted $x114) (nnf-pos (refl (~ $x113 $x113)) (~ $x114 $x114)) $x114))) +(let ((@x662 (mp @x173 (quant-intro (refl (= $x113 $x113)) (= $x114 $x657)) $x657))) +(let (($x576 (or (not $x657) $x570))) +(let ((@x213 ((_ quant-inst true nil$a) $x576))) +(let ((?x108 (size$a nil$))) +(let (($x109 (= ?x108 zero$))) +(let ((@x110 (asserted $x109))) +(let (($x106 (= ?x105 zero$))) +(let ((@x107 (asserted $x106))) +(let ((@x287 (monotonicity (trans @x107 (symm @x110 (= zero$ ?x108)) (= ?x105 ?x108)) (= ?x233 (plus$ ?x108 ?x89))))) +(let ((?x246 (plus$ ?x108 ?x89))) +(let ((?x256 (cons$ 3 nil$))) +(let ((?x588 (size$a ?x256))) +(let (($x584 (= ?x588 ?x246))) +(let (($x664 (forall ((?v0 Int) (?v1 Int_list$) )(! (= (size$a (cons$ ?v0 ?v1)) (plus$ (size$a ?v1) (suc$ zero$))) :pattern ( (cons$ ?v0 ?v1) ) :qid k!47)) +)) +(let (($x119 (forall ((?v0 Int) (?v1 Int_list$) )(! (= (size$a (cons$ ?v0 ?v1)) (plus$ (size$a ?v1) (suc$ zero$))) :qid k!47)) +)) +(let (($x118 (= (size$a (cons$ ?1 ?0)) (plus$ (size$a ?0) ?x89)))) +(let ((@x178 (mp~ (asserted $x119) (nnf-pos (refl (~ $x118 $x118)) (~ $x119 $x119)) $x119))) +(let ((@x669 (mp @x178 (quant-intro (refl (= $x118 $x118)) (= $x119 $x664)) $x664))) +(let (($x231 (or (not $x664) $x584))) +(let ((@x232 ((_ quant-inst 3 nil$) $x231))) +(let ((?x267 (g$a ?x256))) +(let (($x592 (= ?x267 ?x588))) +(let (($x620 (forall ((?v0 Int_list$) )(! (let ((?x67 (size$a ?v0))) +(let ((?x66 (g$a ?v0))) +(= ?x66 ?x67))) :pattern ( (g$a ?v0) ) :pattern ( (size$a ?v0) ) :qid k!39)) +)) +(let (($x69 (forall ((?v0 Int_list$) )(! (let ((?x67 (size$a ?v0))) +(let ((?x66 (g$a ?v0))) +(= ?x66 ?x67))) :qid k!39)) +)) +(let ((@x622 (refl (= (= (g$a ?0) (size$a ?0)) (= (g$a ?0) (size$a ?0)))))) +(let ((@x129 (nnf-pos (refl (~ (= (g$a ?0) (size$a ?0)) (= (g$a ?0) (size$a ?0)))) (~ $x69 $x69)))) +(let ((@x625 (mp (mp~ (asserted $x69) @x129 $x69) (quant-intro @x622 (= $x69 $x620)) $x620))) +(let (($x248 (or (not $x620) $x592))) +(let ((@x585 ((_ quant-inst (cons$ 3 nil$)) $x248))) +(let (($x268 (= ?x123 ?x267))) +(let (($x596 (forall ((?v0 Int) )(! (= (g$ (some$ ?v0)) (g$a (cons$ ?v0 nil$))) :pattern ( (some$ ?v0) ) :pattern ( (cons$ ?v0 nil$) ) :qid k!32)) +)) +(let (($x34 (forall ((?v0 Int) )(! (= (g$ (some$ ?v0)) (g$a (cons$ ?v0 nil$))) :qid k!32)) +)) +(let (($x33 (= (g$ (some$ ?0)) (g$a (cons$ ?0 nil$))))) +(let ((@x157 (mp~ (asserted $x34) (nnf-pos (refl (~ $x33 $x33)) (~ $x34 $x34)) $x34))) +(let ((@x601 (mp @x157 (quant-intro (refl (= $x33 $x33)) (= $x34 $x596)) $x596))) +(let (($x250 (or (not $x596) $x268))) +(let ((@x586 ((_ quant-inst 3) $x250))) +(let ((@x275 (trans (unit-resolution @x586 @x601 $x268) (unit-resolution @x585 @x625 $x592) (= ?x123 ?x588)))) +(let ((@x280 (trans (trans @x275 (unit-resolution @x232 @x669 $x584) (= ?x123 ?x246)) (symm @x287 (= ?x246 ?x233)) (= ?x123 ?x233)))) +(let ((@x558 (trans @x280 (symm (unit-resolution @x213 @x662 $x570) (= ?x233 ?x227)) (= ?x123 ?x227)))) +(let ((@x560 (trans @x558 (symm (unit-resolution @x572 @x617 $x569) (= ?x227 ?x270)) (= ?x123 ?x270)))) +(let ((@x546 (trans @x560 (symm (unit-resolution @x255 @x609 $x587) (= ?x270 ?x125)) $x126))) +(let (($x127 (not $x126))) +(let ((@x128 (asserted $x127))) +(unit-resolution @x128 @x546 false))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))) + 572677daa32981bf8212986300f1362edf42a0c1 7 0 unsat ((set-logic AUFLIA) @@ -37,18 +946,6 @@ (let (($x29 (or p$ q$))) (mp (and-elim (not-or-elim @x44 (and $x29 (not p$))) $x29) @x58 false))))))))))) -a021a5fec5486f23204e54770f9c04c64baf7e25 11 0 -unsat -((set-logic AUFLIA) -(proof -(let (($x32 (and c$ d$))) -(let (($x29 (and a$ b$))) -(let (($x33 (or $x29 $x32))) -(let (($x34 (=> $x33 $x33))) -(let (($x35 (not $x34))) -(let ((@x45 (trans (monotonicity (rewrite (= $x34 true)) (= $x35 (not true))) (rewrite (= (not true) false)) (= $x35 false)))) -(mp (asserted $x35) @x45 false))))))))) - dfb7aeab4f33cdf91b335d72ad619dbd0d65fb62 23 0 unsat ((set-logic AUFLIA) @@ -73,6 +970,18 @@ (let ((@x58 (monotonicity (trans @x49 (rewrite (= (=> $x31 $x44) $x51)) (= $x37 $x51)) (= $x38 $x56)))) (mp (asserted $x38) (trans @x58 @x67 (= $x38 false)) false))))))))))))))))))))) +a021a5fec5486f23204e54770f9c04c64baf7e25 11 0 +unsat +((set-logic AUFLIA) +(proof +(let (($x32 (and c$ d$))) +(let (($x29 (and a$ b$))) +(let (($x33 (or $x29 $x32))) +(let (($x34 (=> $x33 $x33))) +(let (($x35 (not $x34))) +(let ((@x45 (trans (monotonicity (rewrite (= $x34 true)) (= $x35 (not true))) (rewrite (= (not true) false)) (= $x35 false)))) +(mp (asserted $x35) @x45 false))))))))) + 3efca8956be216e9acda1b32436ba8f01358d35e 24 0 unsat ((set-logic AUFLIA) @@ -98,6 +1007,34 @@ (let ((@x82 (trans (monotonicity @x75 (= $x37 (not true))) (rewrite (= (not true) false)) (= $x37 false)))) (mp (asserted $x37) @x82 false)))))))))))))))))))))) +143f46ba7acb4b0a8f67b0de474b0a249f30985b 27 0 +unsat +((set-logic AUFLIA) +(proof +(let ((?x38 (symm_f$ b$ a$))) +(let ((?x37 (symm_f$ a$ b$))) +(let (($x39 (= ?x37 ?x38))) +(let (($x52 (not $x39))) +(let ((@x47 (monotonicity (rewrite (= (= a$ a$) true)) (= (and (= a$ a$) $x39) (and true $x39))))) +(let ((@x51 (trans @x47 (rewrite (= (and true $x39) $x39)) (= (and (= a$ a$) $x39) $x39)))) +(let ((@x57 (mp (asserted (not (and (= a$ a$) $x39))) (monotonicity @x51 (= (not (and (= a$ a$) $x39)) $x52)) $x52))) +(let (($x480 (forall ((?v0 A$) (?v1 A$) )(! (let ((?x30 (symm_f$ ?v1 ?v0))) +(let ((?x29 (symm_f$ ?v0 ?v1))) +(= ?x29 ?x30))) :pattern ( (symm_f$ ?v0 ?v1) ) :pattern ( (symm_f$ ?v1 ?v0) ) :qid k!8)) +)) +(let (($x32 (forall ((?v0 A$) (?v1 A$) )(! (let ((?x30 (symm_f$ ?v1 ?v0))) +(let ((?x29 (symm_f$ ?v0 ?v1))) +(= ?x29 ?x30))) :qid k!8)) +)) +(let ((?x30 (symm_f$ ?0 ?1))) +(let ((?x29 (symm_f$ ?1 ?0))) +(let (($x31 (= ?x29 ?x30))) +(let ((@x60 (mp~ (asserted $x32) (nnf-pos (refl (~ $x31 $x31)) (~ $x32 $x32)) $x32))) +(let ((@x485 (mp @x60 (quant-intro (refl (= $x31 $x31)) (= $x32 $x480)) $x480))) +(let (($x149 (or (not $x480) $x39))) +(let ((@x61 ((_ quant-inst a$ b$) $x149))) +(unit-resolution @x61 @x485 @x57 false))))))))))))))))))) + d600888ef4325a32ff87997035fed7a7c01e4767 39 0 unsat ((set-logic AUFLIA) @@ -138,34 +1075,6 @@ (let ((@x40 (mp (asserted (or a$ (or b$ (or c$ d$)))) (rewrite (= (or a$ (or b$ (or c$ d$))) $x37)) $x37))) (mp @x40 @x202 false))))))))))))))))))))))))))))))))))))) -143f46ba7acb4b0a8f67b0de474b0a249f30985b 27 0 -unsat -((set-logic AUFLIA) -(proof -(let ((?x38 (symm_f$ b$ a$))) -(let ((?x37 (symm_f$ a$ b$))) -(let (($x39 (= ?x37 ?x38))) -(let (($x52 (not $x39))) -(let ((@x47 (monotonicity (rewrite (= (= a$ a$) true)) (= (and (= a$ a$) $x39) (and true $x39))))) -(let ((@x51 (trans @x47 (rewrite (= (and true $x39) $x39)) (= (and (= a$ a$) $x39) $x39)))) -(let ((@x57 (mp (asserted (not (and (= a$ a$) $x39))) (monotonicity @x51 (= (not (and (= a$ a$) $x39)) $x52)) $x52))) -(let (($x480 (forall ((?v0 A$) (?v1 A$) )(! (let ((?x30 (symm_f$ ?v1 ?v0))) -(let ((?x29 (symm_f$ ?v0 ?v1))) -(= ?x29 ?x30))) :pattern ( (symm_f$ ?v0 ?v1) ) :pattern ( (symm_f$ ?v1 ?v0) ) :qid k!8)) -)) -(let (($x32 (forall ((?v0 A$) (?v1 A$) )(! (let ((?x30 (symm_f$ ?v1 ?v0))) -(let ((?x29 (symm_f$ ?v0 ?v1))) -(= ?x29 ?x30))) :qid k!8)) -)) -(let ((?x30 (symm_f$ ?0 ?1))) -(let ((?x29 (symm_f$ ?1 ?0))) -(let (($x31 (= ?x29 ?x30))) -(let ((@x60 (mp~ (asserted $x32) (nnf-pos (refl (~ $x31 $x31)) (~ $x32 $x32)) $x32))) -(let ((@x485 (mp @x60 (quant-intro (refl (= $x31 $x31)) (= $x32 $x480)) $x480))) -(let (($x149 (or (not $x480) $x39))) -(let ((@x61 ((_ quant-inst a$ b$) $x149))) -(unit-resolution @x61 @x485 @x57 false))))))))))))))))))) - a6dd135a0c109f49b36d7266dc7a6becc640e496 637 0 unsat ((set-logic AUFLIA) @@ -1033,6 +1942,19 @@ (let ((@x59 (trans @x55 (rewrite (= (not true) false)) (= (not (< 5 (ite (<= 3 8) 8 3))) false)))) (mp (asserted (not (< 5 (ite (<= 3 8) 8 3)))) @x59 false))))))))) +c4e20de399740e8f0c9a87abad030298d74bc47b 12 0 +unsat +((set-logic AUFLIA) +(proof +(let ((?x31 (p$ true))) +(let (($x29 (< 2 3))) +(let ((?x30 (p$ $x29))) +(let (($x32 (= ?x30 ?x31))) +(let ((@x42 (monotonicity (monotonicity (rewrite (= $x29 true)) $x32) (= $x32 (= ?x31 ?x31))))) +(let ((@x49 (monotonicity (trans @x42 (rewrite (= (= ?x31 ?x31) true)) (= $x32 true)) (= (not $x32) (not true))))) +(let ((@x53 (trans @x49 (rewrite (= (not true) false)) (= (not $x32) false)))) +(mp (asserted (not $x32)) @x53 false)))))))))) + 6b0b089fbe179e8a27509c818f9a5e6847ac6bf2 88 0 unsat ((set-logic AUFLIRA) @@ -1122,23 +2044,6 @@ (let ((@x234 (unit-resolution @x136 (unit-resolution @x138 (lemma @x231 (not $x134)) $x83) $x133))) ((_ th-lemma arith farkas -2 1 -1 -1 1) (unit-resolution @x138 (lemma @x231 (not $x134)) $x83) @x221 @x126 @x226 (unit-resolution @x159 @x234 $x149) false)))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))) -bc11d479eb44aa63c2efc812af856ec331477415 16 0 -unsat -((set-logic AUFLIA) -(proof -(let ((?x32 (p$ true))) -(let (($x29 (< 2 3))) -(let (($x30 (ite $x29 true false))) -(let ((?x31 (p$ $x30))) -(let (($x33 (= ?x31 ?x32))) -(let (($x34 (not $x33))) -(let ((@x52 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(or (and $x50 (< m$ n$)) $x62) (or $x114 (or $x111 (or $x108 (or $x99 (or $x91 (or $x84 $x57))))))))) +(let (($x162 (= (or (and (< m$ n$) $x48) $x60) (or $x108 (or $x99 (or $x91 (or $x84 $x57))))))) +(let (($x156 (= (or (and $x44 (< n$ n$a)) (or (and $x33 (< n$a n$)) $x57)) (or $x91 (or $x84 $x57))))) +(let ((@x83 (rewrite (= (< n$a n$) $x81)))) +(let ((@x154 (monotonicity (monotonicity @x83 (= (and $x33 (< n$a n$)) $x84)) (= (or (and $x33 (< n$a n$)) $x57) (or $x84 $x57))))) +(let ((@x90 (rewrite (= (< n$ n$a) $x87)))) +(let ((@x157 (monotonicity (monotonicity @x90 (= (and $x44 (< n$ n$a)) $x91)) @x154 $x156))) +(let ((@x98 (rewrite (= (< m$ n$a) $x94)))) +(let ((@x101 (monotonicity @x98 @x83 (= (and (< m$ n$a) (< n$a n$)) $x99)))) +(let ((@x160 (monotonicity @x101 @x157 (= $x60 (or $x99 (or $x91 (or $x84 $x57))))))) +(let ((@x107 (rewrite (= (< m$ n$) $x105)))) +(let ((@x163 (monotonicity (monotonicity @x107 (= (and (< m$ n$) $x48) $x108)) @x160 $x162))) +(let ((@x113 (monotonicity @x107 @x90 (= (and (< m$ n$) (< n$ n$a)) $x111)))) +(let ((@x166 (monotonicity @x113 @x163 (= $x62 (or $x111 (or $x108 (or $x99 (or $x91 (or $x84 $x57))))))))) +(let ((@x169 (monotonicity (monotonicity @x107 (= (and $x50 (< m$ n$)) $x114)) @x166 $x168))) +(let ((@x120 (rewrite (= (< n$ m$) $x117)))) +(let ((@x172 (monotonicity (monotonicity @x120 (= (and $x48 (< n$ m$)) $x121)) @x169 $x171))) +(let ((@x126 (monotonicity @x83 @x120 (= (and (< n$a n$) (< n$ m$)) $x124)))) +(let ((@x130 (rewrite (= (< n$a m$) $x128)))) +(let ((@x178 (monotonicity (monotonicity @x130 (= (and (< n$a m$) $x44) $x131)) (monotonicity @x126 @x172 (= $x65 (or $x124 $x170))) (= (or (and (< n$a m$) $x44) $x65) (or $x131 (or $x124 $x170)))))) +(let ((@x136 (monotonicity @x130 @x107 (= (and (< n$a m$) (< m$ n$)) $x134)))) +(let ((@x181 (monotonicity @x136 @x178 (= $x67 (or $x134 (or $x131 (or $x124 $x170))))))) +(let ((@x184 (monotonicity (monotonicity @x98 (= (and $x40 (< m$ n$a)) $x137)) @x181 $x183))) +(let ((@x187 (monotonicity (monotonicity @x130 (= (and $x38 (< n$a m$)) $x140)) @x184 $x186))) +(let ((@x145 (monotonicity @x90 @x130 (= (and (< n$ n$a) (< n$a m$)) $x143)))) +(let ((@x193 (monotonicity (monotonicity @x120 (= (and (< n$ m$) $x33) $x146)) (monotonicity @x145 @x187 $x189) (= (or (and (< n$ m$) $x33) $x70) $x191)))) +(let ((@x151 (monotonicity @x120 @x98 (= (and (< n$ m$) (< m$ n$a)) $x149)))) +(let ((@x201 (trans (monotonicity @x151 @x193 (= $x72 (or $x149 $x191))) (rewrite (= (or $x149 $x191) $x197)) (= $x72 $x197)))) +(let ((@x205 (mp (asserted $x73) (monotonicity @x201 (= $x73 (not $x197))) (not $x197)))) +(let ((@x272 (mp (not-or-elim @x205 $x210) @x271 $x239))) +(let (($x273 (not $x38))) +(let (($x274 (or $x273 $x127))) +(let ((@x280 (monotonicity (rewrite (= $x140 (not $x274))) (= (not $x140) (not (not $x274)))))) +(let ((@x284 (trans @x280 (rewrite (= (not (not $x274)) $x274)) (= (not $x140) $x274)))) +(let ((@x285 (mp (not-or-elim @x205 (not $x140)) @x284 $x274))) +(let (($x286 (not $x40))) +(let (($x311 (not $x44))) +(let ((@x434 (hypothesis $x81))) +(let (($x386 (or $x95 $x80))) +(let ((@x392 (monotonicity (rewrite (= $x99 (not $x386))) (= (not $x99) (not (not $x386)))))) +(let ((@x396 (trans @x392 (rewrite (= (not (not $x386)) $x386)) (= (not $x99) $x386)))) +(let ((@x397 (mp (not-or-elim @x205 (not $x99)) @x396 $x386))) +(let (($x246 (not $x33))) +(let (($x410 (or $x246 $x80))) +(let ((@x416 (monotonicity (rewrite (= $x84 (not $x410))) (= (not $x84) (not (not $x410)))))) +(let ((@x420 (trans @x416 (rewrite (= (not (not $x410)) $x410)) (= (not $x84) $x410)))) +(let ((@x421 (mp (not-or-elim @x205 (not $x84)) @x420 $x410))) +(let ((@x439 ((_ th-lemma arith triangle-eq) (or $x33 $x128 $x94)))) +(let ((@x440 (unit-resolution @x439 (unit-resolution @x421 @x434 $x246) (unit-resolution @x397 @x434 $x95) $x128))) +(let (($x312 (or $x127 $x311))) +(let ((@x318 (monotonicity (rewrite (= $x131 (not $x312))) (= (not $x131) (not (not $x312)))))) +(let ((@x322 (trans @x318 (rewrite (= (not (not $x312)) $x312)) (= (not $x131) $x312)))) +(let ((@x323 (mp (not-or-elim @x205 (not $x131)) @x322 $x312))) +(let ((@x450 (mp (unit-resolution @x323 @x440 $x311) (monotonicity (commutativity (= $x44 $x40)) (= $x311 $x286)) $x286))) +(let (($x324 (or $x80 $x118))) +(let ((@x330 (monotonicity (rewrite (= $x124 (not $x324))) (= (not $x124) (not (not $x324)))))) +(let ((@x334 (trans @x330 (rewrite (= (not (not $x324)) $x324)) (= (not $x124) $x324)))) +(let ((@x335 (mp (not-or-elim @x205 (not $x124)) @x334 $x324))) +(let (($x299 (or $x127 $x104))) +(let ((@x305 (monotonicity (rewrite (= $x134 (not $x299))) (= (not $x134) (not (not $x299)))))) +(let ((@x309 (trans @x305 (rewrite (= (not (not $x299)) $x299)) (= (not $x134) $x299)))) +(let ((@x310 (mp (not-or-elim @x205 (not $x134)) @x309 $x299))) +(let ((@x444 (unit-resolution ((_ th-lemma arith triangle-eq) (or $x40 $x105 $x117)) (unit-resolution @x310 @x440 $x104) (unit-resolution @x335 @x434 $x118) $x40))) +(let ((@x459 (unit-resolution ((_ th-lemma arith triangle-eq) (or $x38 $x81 $x87)) (lemma (unit-resolution @x444 @x450 false) $x80) (or $x38 $x87)))) +(let ((@x460 (unit-resolution @x459 (unit-resolution @x285 (hypothesis $x128) $x273) (unit-resolution @x272 (hypothesis $x128) $x88) false))) +(let ((@x461 (lemma @x460 $x127))) +(let (($x254 (or $x118 $x95))) +(let ((@x262 (monotonicity (rewrite (= $x149 (not $x254))) (= (not $x149) (not (not $x254)))))) +(let ((@x256 (trans @x262 (rewrite (= (not (not $x254)) $x254)) (= (not $x149) $x254)))) +(let ((@x257 (mp (not-or-elim @x205 (not $x149)) @x256 $x254))) +(let (($x247 (or $x118 $x246))) +(let ((@x259 (monotonicity (rewrite (= $x146 (not $x247))) (= (not $x146) (not (not $x247)))))) +(let ((@x245 (trans @x259 (rewrite (= (not (not $x247)) $x247)) (= (not $x146) $x247)))) +(let ((@x238 (mp (not-or-elim @x205 (not $x146)) @x245 $x247))) +(let ((@x465 (unit-resolution @x439 (unit-resolution @x238 (hypothesis $x117) $x246) (unit-resolution @x257 (hypothesis $x117) $x95) @x461 false))) +(let (($x336 (not $x48))) +(let (($x374 (or $x104 $x336))) +(let ((@x380 (monotonicity (rewrite (= $x108 (not $x374))) (= (not $x108) (not (not $x374)))))) +(let ((@x384 (trans @x380 (rewrite (= (not (not $x374)) $x374)) (= (not $x108) $x374)))) +(let ((@x385 (mp (not-or-elim @x205 (not $x108)) @x384 $x374))) +(let ((@x475 (mp (unit-resolution @x385 (hypothesis $x105) $x336) (monotonicity (commutativity (= $x48 $x38)) (= $x336 $x273)) $x273))) +(let (($x362 (or $x104 $x88))) +(let ((@x368 (monotonicity (rewrite (= $x111 (not $x362))) (= (not $x111) (not (not $x362)))))) +(let ((@x372 (trans @x368 (rewrite (= (not (not $x362)) $x362)) (= (not $x111) $x362)))) +(let ((@x373 (mp (not-or-elim @x205 (not $x111)) @x372 $x362))) +(let ((@x469 (unit-resolution @x459 (unit-resolution @x373 (hypothesis $x105) $x88) $x38))) +(let ((@x478 (unit-resolution ((_ th-lemma arith triangle-eq) (or $x40 $x105 $x117)) (lemma (unit-resolution @x469 @x475 false) $x104) (lemma @x465 $x118) $x40))) +(let (($x287 (or $x286 $x95))) +(let ((@x293 (monotonicity (rewrite (= $x137 (not $x287))) (= (not $x137) (not (not $x287)))))) +(let ((@x297 (trans @x293 (rewrite (= (not (not $x287)) $x287)) (= (not $x137) $x287)))) +(let ((@x298 (mp (not-or-elim @x205 (not $x137)) @x297 $x287))) +(let ((@x488 (mp (unit-resolution @x439 (unit-resolution @x298 @x478 $x95) @x461 $x33) (symm (commutativity (= $x50 $x33)) (= $x33 $x50)) $x50))) +(let (($x422 (or (not $x50) $x311))) +(let ((@x428 (monotonicity (rewrite (= $x57 (not $x422))) (= (not $x57) (not (not $x422)))))) +(let ((@x432 (trans @x428 (rewrite (= (not (not $x422)) $x422)) (= (not $x57) $x422)))) +(let ((@x433 (mp (not-or-elim @x205 (not $x57)) @x432 $x422))) +(unit-resolution @x433 @x488 (mp @x478 @x480 $x44) false))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))) + +0b997744cf42fde45b98a34c933b0698332e657f 113 0 unsat ((set-logic ) (proof (let ((?x228 (mod x$ 2))) (let ((?x262 (* (- 1) ?x228))) -(let ((?x31 (mod$ x$ 2))) +(let ((?x31 (modulo$ x$ 2))) (let ((?x263 (+ ?x31 ?x262))) (let (($x280 (>= ?x263 0))) (let (($x264 (= ?x263 0))) @@ -2309,8 +3214,8 @@ (let ((?x170 (ite $x111 ?x150 ?x136))) (let (($x78 (= ?v1 0))) (let ((?x175 (ite $x78 ?v0 ?x170))) -(let ((?x135 (mod$ ?v0 ?v1))) -(= ?x135 ?x175))))))))))) :pattern ( (mod$ ?v0 ?v1) ) :qid k!9)) +(let ((?x135 (modulo$ ?v0 ?v1))) +(= ?x135 ?x175))))))))))) :pattern ( (modulo$ ?v0 ?v1) ) :qid k!9)) )) (let (($x181 (forall ((?v0 Int) (?v1 Int) )(! (let ((?x136 (mod ?v0 ?v1))) (let ((?x93 (* (- 1) ?v1))) @@ -2321,7 +3226,7 @@ (let ((?x170 (ite $x111 ?x150 ?x136))) (let (($x78 (= ?v1 0))) (let ((?x175 (ite $x78 ?v0 ?x170))) -(let ((?x135 (mod$ ?v0 ?v1))) +(let ((?x135 (modulo$ ?v0 ?v1))) (= ?x135 ?x175))))))))))) :qid k!9)) )) (let ((?x136 (mod ?1 ?0))) @@ -2333,11 +3238,11 @@ (let ((?x170 (ite $x111 ?x150 ?x136))) (let (($x78 (= ?0 0))) (let ((?x175 (ite $x78 ?1 ?x170))) -(let ((?x135 (mod$ ?1 ?0))) +(let ((?x135 (modulo$ ?1 ?0))) (let (($x178 (= ?x135 ?x175))) (let (($x142 (forall ((?v0 Int) (?v1 Int) )(! (let (($x78 (= ?v1 0))) (let ((?x140 (ite $x78 ?v0 (ite (< 0 ?v1) (mod ?v0 ?v1) (- (mod (- ?v0) (- ?v1))))))) -(let ((?x135 (mod$ ?v0 ?v1))) +(let ((?x135 (modulo$ ?v0 ?v1))) (= ?x135 ?x140)))) :qid k!9)) )) (let (($x164 (forall ((?v0 Int) (?v1 Int) )(! (let ((?x93 (* (- 1) ?v1))) @@ -2349,7 +3254,7 @@ (let ((?x155 (ite $x79 ?x136 ?x150))) (let (($x78 (= ?v1 0))) (let ((?x158 (ite $x78 ?v0 ?x155))) -(let ((?x135 (mod$ ?v0 ?v1))) +(let ((?x135 (modulo$ ?v0 ?v1))) (= ?x135 ?x158))))))))))) :qid k!9)) )) (let ((@x169 (monotonicity (rewrite (= (< 0 ?0) (not $x111))) (= (ite (< 0 ?0) ?x136 ?x150) (ite (not $x111) ?x136 ?x150))))) @@ -2404,7 +3309,7 @@ (let ((@x74 (mp (asserted $x36) @x73 $x67))) ((_ th-lemma arith farkas -1 1 1) @x74 (unit-resolution ((_ th-lemma arith) (or false $x305)) (true-axiom true) $x305) @x332 false)))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))) -57f344c9e787868c98d1e622f158c445c1899c96 112 0 +2e67f9e254b2a35a9d35027c6e63de01bc5086bd 112 0 unsat ((set-logic ) (proof @@ -2412,7 +3317,7 @@ (let (($x318 (>= ?x224 2))) (let (($x319 (not $x318))) (let ((?x258 (* (- 1) ?x224))) -(let ((?x29 (mod$ x$ 2))) +(let ((?x29 (modulo$ x$ 2))) (let ((?x259 (+ ?x29 ?x258))) (let (($x275 (<= ?x259 0))) (let (($x260 (= ?x259 0))) @@ -2425,8 +3330,8 @@ (let ((?x166 (ite $x107 ?x146 ?x132))) (let (($x74 (= ?v1 0))) (let ((?x171 (ite $x74 ?v0 ?x166))) -(let ((?x131 (mod$ ?v0 ?v1))) -(= ?x131 ?x171))))))))))) :pattern ( (mod$ ?v0 ?v1) ) :qid k!9)) +(let ((?x131 (modulo$ ?v0 ?v1))) +(= ?x131 ?x171))))))))))) :pattern ( (modulo$ ?v0 ?v1) ) :qid k!9)) )) (let (($x177 (forall ((?v0 Int) (?v1 Int) )(! (let ((?x132 (mod ?v0 ?v1))) (let ((?x89 (* (- 1) ?v1))) @@ -2437,7 +3342,7 @@ (let ((?x166 (ite $x107 ?x146 ?x132))) (let (($x74 (= ?v1 0))) (let ((?x171 (ite $x74 ?v0 ?x166))) -(let ((?x131 (mod$ ?v0 ?v1))) +(let ((?x131 (modulo$ ?v0 ?v1))) (= ?x131 ?x171))))))))))) :qid k!9)) )) (let ((?x132 (mod ?1 ?0))) @@ -2449,11 +3354,11 @@ (let ((?x166 (ite $x107 ?x146 ?x132))) (let (($x74 (= ?0 0))) (let ((?x171 (ite $x74 ?1 ?x166))) -(let ((?x131 (mod$ ?1 ?0))) +(let ((?x131 (modulo$ ?1 ?0))) (let (($x174 (= ?x131 ?x171))) (let (($x138 (forall ((?v0 Int) (?v1 Int) )(! (let (($x74 (= ?v1 0))) (let ((?x136 (ite $x74 ?v0 (ite (< 0 ?v1) (mod ?v0 ?v1) (- (mod (- ?v0) (- ?v1))))))) -(let ((?x131 (mod$ ?v0 ?v1))) +(let ((?x131 (modulo$ ?v0 ?v1))) (= ?x131 ?x136)))) :qid k!9)) )) (let (($x160 (forall ((?v0 Int) (?v1 Int) )(! (let ((?x89 (* (- 1) ?v1))) @@ -2465,7 +3370,7 @@ (let ((?x151 (ite $x75 ?x132 ?x146))) (let (($x74 (= ?v1 0))) (let ((?x154 (ite $x74 ?v0 ?x151))) -(let ((?x131 (mod$ ?v0 ?v1))) +(let ((?x131 (modulo$ ?v0 ?v1))) (= ?x131 ?x154))))))))))) :qid k!9)) )) (let ((@x165 (monotonicity (rewrite (= (< 0 ?0) (not $x107))) (= (ite (< 0 ?0) ?x132 ?x146) (ite (not $x107) ?x132 ?x146))))) @@ -3399,3733 +4304,133 @@ (let ((@x152 (trans (monotonicity @x145 (= $x52 (not true))) (rewrite (= (not true) false)) (= $x52 false)))) (mp (asserted $x52) @x152 false))))))))))))))))))))))))))))))))))))))))))))))))) -5e90e9139eb4e9a7c2678bca8dda6cda05861f4c 23 0 -unsat -((set-logic AUFLIA) -(proof -(let (($x40 (= x$ a$))) -(let ((?x36 (pair$ x$ y$))) -(let ((?x37 (fst$ ?x36))) -(let (($x39 (= ?x37 a$))) -(let ((@x50 (monotonicity (rewrite (= (=> $x39 $x40) (or (not $x39) $x40))) (= (not (=> $x39 $x40)) (not (or (not $x39) $x40)))))) -(let ((@x51 (not-or-elim (mp (asserted (not (=> $x39 $x40))) @x50 (not (or (not $x39) $x40))) $x39))) -(let (($x56 (= ?x37 x$))) -(let (($x478 (forall ((?v0 A$) (?v1 B$) )(! (= (fst$ (pair$ ?v0 ?v1)) ?v0) :pattern ( (pair$ ?v0 ?v1) ) :qid k!12)) -)) -(let (($x32 (forall ((?v0 A$) (?v1 B$) )(! (= (fst$ (pair$ ?v0 ?v1)) ?v0) :qid k!12)) -)) -(let (($x31 (= (fst$ (pair$ ?1 ?0)) ?1))) -(let ((@x55 (mp~ (asserted $x32) (nnf-pos (refl (~ $x31 $x31)) (~ $x32 $x32)) $x32))) -(let ((@x483 (mp @x55 (quant-intro (refl (= $x31 $x31)) (= $x32 $x478)) $x478))) -(let (($x62 (or (not $x478) $x56))) -(let ((@x149 ((_ quant-inst x$ y$) $x62))) -(let ((@x150 (trans (symm (unit-resolution @x149 @x483 $x56) (= x$ ?x37)) @x51 $x40))) -(let ((@x54 (not-or-elim (mp (asserted (not (=> $x39 $x40))) @x50 (not (or (not $x39) $x40))) (not $x40)))) -(unit-resolution @x54 @x150 false))))))))))))))))))) - -53d3d89ffb6e574b15fcea58a111b4eecba9beb5 42 0 -unsat -((set-logic AUFLIA) -(proof -(let ((?x59 (snd$a p2$))) -(let ((?x58 (fst$a p1$))) -(let (($x60 (= ?x58 ?x59))) -(let ((?x55 (pair$ y$ x$))) -(let (($x56 (= p2$ ?x55))) -(let ((?x52 (pair$a x$ y$))) -(let (($x53 (= p1$ ?x52))) -(let (($x57 (and $x53 $x56))) -(let ((@x70 (monotonicity (rewrite (= (=> $x57 $x60) (or (not $x57) $x60))) (= (not (=> $x57 $x60)) (not (or (not $x57) $x60)))))) -(let ((@x71 (not-or-elim (mp (asserted (not (=> $x57 $x60))) @x70 (not (or (not $x57) $x60))) $x57))) -(let ((@x74 (and-elim @x71 $x56))) -(let ((@x504 (symm (monotonicity @x74 (= ?x59 (snd$a ?x55))) (= (snd$a ?x55) ?x59)))) -(let ((?x100 (snd$a ?x55))) -(let (($x185 (= ?x100 x$))) -(let (($x534 (forall ((?v0 B$) (?v1 A$) )(! (= (snd$a (pair$ ?v0 ?v1)) ?v1) :pattern ( (pair$ ?v0 ?v1) ) :qid k!21)) -)) -(let (($x47 (forall ((?v0 B$) (?v1 A$) )(! (= (snd$a (pair$ ?v0 ?v1)) ?v1) :qid k!21)) -)) -(let (($x46 (= (snd$a (pair$ ?1 ?0)) ?0))) -(let ((@x96 (mp~ (asserted $x47) (nnf-pos (refl (~ $x46 $x46)) (~ $x47 $x47)) $x47))) -(let ((@x539 (mp @x96 (quant-intro (refl (= $x46 $x46)) (= $x47 $x534)) $x534))) -(let (($x190 (or (not $x534) $x185))) -(let ((@x191 ((_ quant-inst y$ x$) $x190))) -(let ((?x187 (fst$a ?x52))) -(let (($x188 (= ?x187 x$))) -(let (($x522 (forall ((?v0 A$) (?v1 B$) )(! (= (fst$a (pair$a ?v0 ?v1)) ?v0) :pattern ( (pair$a ?v0 ?v1) ) :qid k!19)) -)) -(let (($x39 (forall ((?v0 A$) (?v1 B$) )(! (= (fst$a (pair$a ?v0 ?v1)) ?v0) :qid k!19)) -)) -(let (($x38 (= (fst$a (pair$a ?1 ?0)) ?1))) -(let ((@x90 (mp~ (asserted $x39) (nnf-pos (refl (~ $x38 $x38)) (~ $x39 $x39)) $x39))) -(let ((@x527 (mp @x90 (quant-intro (refl (= $x38 $x38)) (= $x39 $x522)) $x522))) -(let (($x162 (or (not $x522) $x188))) -(let ((@x292 ((_ quant-inst x$ y$) $x162))) -(let ((@x505 (trans (monotonicity (and-elim @x71 $x53) (= ?x58 ?x187)) (unit-resolution @x292 @x527 $x188) (= ?x58 x$)))) -(let ((@x489 (trans @x505 (symm (unit-resolution @x191 @x539 $x185) (= x$ ?x100)) (= ?x58 ?x100)))) -(let ((@x76 (not-or-elim (mp (asserted (not (=> $x57 $x60))) @x70 (not (or (not $x57) $x60))) (not $x60)))) -(unit-resolution @x76 (trans @x489 @x504 $x60) false)))))))))))))))))))))))))))))))))))) - -f501ac3814a9ff559897f8057e18657ad1030d2a 60 0 -unsat -((set-logic AUFLIA) -(proof -(let ((?x69 (fun_app$ f$ i$))) -(let ((?x60 (fun_upd$ f$))) -(let ((?x61 (fun_app$b ?x60 i1$))) -(let ((?x63 (fun_app$a ?x61 v1$))) -(let ((?x64 (fun_upd$ ?x63))) -(let ((?x65 (fun_app$b ?x64 i2$))) -(let ((?x67 (fun_app$a ?x65 v2$))) -(let ((?x68 (fun_app$ ?x67 i$))) -(let (($x70 (= ?x68 ?x69))) -(let ((?x197 (fun_app$ ?x63 i$))) -(let (($x205 (= ?x197 ?x69))) -(let (($x204 (= ?x197 v1$))) -(let (($x53 (= i$ i1$))) -(let (($x484 (ite $x53 $x204 $x205))) -(let (($x531 (forall ((?v0 A_b_fun$) (?v1 A$) (?v2 B$) (?v3 A$) )(! (let ((?x46 (fun_app$ ?v0 ?v3))) -(let ((?x44 (fun_app$ (fun_app$a (fun_app$b (fun_upd$ ?v0) ?v1) ?v2) ?v3))) -(let (($x45 (= ?v3 ?v1))) -(ite $x45 (= ?x44 ?v2) (= ?x44 ?x46))))) :pattern ( (fun_app$ (fun_app$a (fun_app$b (fun_upd$ ?v0) ?v1) ?v2) ?v3) ) :qid k!20)) -)) -(let (($x102 (forall ((?v0 A_b_fun$) (?v1 A$) (?v2 B$) (?v3 A$) )(! (let ((?x46 (fun_app$ ?v0 ?v3))) -(let ((?x44 (fun_app$ (fun_app$a (fun_app$b (fun_upd$ ?v0) ?v1) ?v2) ?v3))) -(let (($x45 (= ?v3 ?v1))) -(ite $x45 (= ?x44 ?v2) (= ?x44 ?x46))))) :qid k!20)) -)) -(let ((?x46 (fun_app$ ?3 ?0))) -(let ((?x44 (fun_app$ (fun_app$a (fun_app$b (fun_upd$ ?3) ?2) ?1) ?0))) -(let (($x45 (= ?0 ?2))) -(let (($x97 (ite $x45 (= ?x44 ?1) (= ?x44 ?x46)))) -(let (($x49 (forall ((?v0 A_b_fun$) (?v1 A$) (?v2 B$) (?v3 A$) )(! (let ((?x44 (fun_app$ (fun_app$a (fun_app$b (fun_upd$ ?v0) ?v1) ?v2) ?v3))) -(= ?x44 (ite (= ?v3 ?v1) ?v2 (fun_app$ ?v0 ?v3)))) :qid k!20)) -)) -(let ((@x104 (quant-intro (rewrite (= (= ?x44 (ite $x45 ?1 ?x46)) $x97)) (= $x49 $x102)))) -(let ((@x91 (refl (~ (= ?x44 (ite $x45 ?1 ?x46)) (= ?x44 (ite $x45 ?1 ?x46)))))) -(let ((@x105 (mp (mp~ (asserted $x49) (nnf-pos @x91 (~ $x49 $x49)) $x49) @x104 $x102))) -(let ((@x536 (mp @x105 (quant-intro (refl (= $x97 $x97)) (= $x102 $x531)) $x531))) -(let (($x171 (not $x531))) -(let (($x486 (or $x171 $x484))) -(let ((@x487 ((_ quant-inst f$ i1$ v1$ i$) $x486))) -(let (($x54 (not $x53))) -(let (($x56 (= i$ i2$))) -(let (($x57 (not $x56))) -(let (($x58 (and $x54 $x57))) -(let ((@x80 (monotonicity (rewrite (= (=> $x58 $x70) (or (not $x58) $x70))) (= (not (=> $x58 $x70)) (not (or (not $x58) $x70)))))) -(let ((@x81 (not-or-elim (mp (asserted (not (=> $x58 $x70))) @x80 (not (or (not $x58) $x70))) $x58))) -(let ((@x82 (and-elim @x81 $x54))) -(let ((@x321 (unit-resolution (def-axiom (or (not $x484) $x53 $x205)) @x82 (or (not $x484) $x205)))) -(let (($x200 (= ?x68 ?x197))) -(let (($x196 (= ?x68 v2$))) -(let (($x179 (ite $x56 $x196 $x200))) -(let (($x301 (or $x171 $x179))) -(let ((@x511 ((_ quant-inst (fun_app$a ?x61 v1$) i2$ v2$ i$) $x301))) -(let ((@x84 (and-elim @x81 $x57))) -(let ((@x466 (unit-resolution (def-axiom (or (not $x179) $x56 $x200)) @x84 (or (not $x179) $x200)))) -(let ((@x470 (trans (unit-resolution @x466 (unit-resolution @x511 @x536 $x179) $x200) (unit-resolution @x321 (unit-resolution @x487 @x536 $x484) $x205) $x70))) -(let ((@x86 (not-or-elim (mp (asserted (not (=> $x58 $x70))) @x80 (not (or (not $x58) $x70))) (not $x70)))) -(unit-resolution @x86 @x470 false)))))))))))))))))))))))))))))))))))))))))))))))) - -541ab286f481dab3994e7cef5aa3ab01f0d6487a 24 0 -unsat -((set-logic AUFLIA) -(proof -(let (($x29 (f$ g$ x$))) -(let (($x73 (not $x29))) -(let (($x65 (not (or (= $x29 (fun_app$ g$ x$)) $x29 (fun_app$ g$ x$))))) -(let (($x32 (= $x29 (and (fun_app$ g$ x$) true)))) -(let (($x37 (not (or $x32 (or (= $x29 true) (= (fun_app$ g$ x$) true)))))) -(let (($x30 (fun_app$ g$ x$))) -(let (($x44 (= $x29 $x30))) -(let (($x56 (or $x44 (or $x29 $x30)))) -(let ((@x67 (monotonicity (rewrite (= $x56 (or $x44 $x29 $x30))) (= (not $x56) $x65)))) -(let ((@x55 (monotonicity (rewrite (= (= $x29 true) $x29)) (rewrite (= (= $x30 true) $x30)) (= (or (= $x29 true) (= $x30 true)) (or $x29 $x30))))) -(let ((@x43 (monotonicity (rewrite (= (and $x30 true) $x30)) (= $x32 (= $x29 $x30))))) -(let ((@x58 (monotonicity (trans @x43 (rewrite (= (= $x29 $x30) $x44)) (= $x32 $x44)) @x55 (= (or $x32 (or (= $x29 true) (= $x30 true))) $x56)))) -(let ((@x69 (trans (monotonicity @x58 (= $x37 (not $x56))) @x67 (= $x37 $x65)))) -(let ((@x70 (mp (asserted $x37) @x69 $x65))) -(let ((@x87 (monotonicity (iff-false (not-or-elim @x70 (not $x30)) (= $x30 false)) (= (= $x73 $x30) (= $x73 false))))) -(let ((@x91 (trans @x87 (rewrite (= (= $x73 false) $x29)) (= (= $x73 $x30) $x29)))) -(let ((@x93 (trans @x91 (iff-false (not-or-elim @x70 $x73) (= $x29 false)) (= (= $x73 $x30) false)))) -(let (($x77 (= $x73 $x30))) -(let ((@x80 (mp (not-or-elim @x70 (not $x44)) (rewrite (= (not $x44) $x77)) $x77))) -(mp @x80 @x93 false)))))))))))))))))))))) - -c6761b6a026c6bf2d28c35e9faf633fc441c84c5 45 0 -unsat -((set-logic AUFLIA) -(proof -(let ((?x44 (id$ x$))) -(let (($x46 (= ?x44 x$))) -(let (($x73 (not $x46))) -(let (($x47 (id$a true))) -(let (($x510 (forall ((?v0 Bool) )(! (let (($x33 (id$a ?v0))) -(= $x33 ?v0)) :pattern ( (id$a ?v0) ) :qid k!9)) -)) -(let (($x40 (forall ((?v0 Bool) )(! (let (($x33 (id$a ?v0))) -(= $x33 ?v0)) :qid k!9)) -)) -(let ((@x514 (quant-intro (refl (= (= (id$a ?0) ?0) (= (id$a ?0) ?0))) (= $x40 $x510)))) -(let ((@x69 (nnf-pos (refl (~ (= (id$a ?0) ?0) (= (id$a ?0) ?0))) (~ $x40 $x40)))) -(let (($x35 (forall ((?v0 Bool) )(! (let (($x33 (id$a ?v0))) -(= $x33 ?v0)) :qid k!9)) -)) -(let ((@x42 (quant-intro (rewrite (= (= (id$a ?0) ?0) (= (id$a ?0) ?0))) (= $x35 $x40)))) -(let ((@x515 (mp (mp~ (mp (asserted $x35) @x42 $x40) @x69 $x40) @x514 $x510))) -(let (($x87 (or (not $x510) $x47))) -(let ((@x176 (monotonicity (rewrite (= (= $x47 true) $x47)) (= (or (not $x510) (= $x47 true)) $x87)))) -(let ((@x179 (trans @x176 (rewrite (= $x87 $x87)) (= (or (not $x510) (= $x47 true)) $x87)))) -(let ((@x495 (unit-resolution (mp ((_ quant-inst true) (or (not $x510) (= $x47 true))) @x179 $x87) @x515 (hypothesis (not $x47)) false))) -(let (($x71 (or $x73 (not $x47)))) -(let ((@x79 (monotonicity (rewrite (= (and $x46 $x47) (not $x71))) (= (not (and $x46 $x47)) (not (not $x71)))))) -(let ((@x83 (trans @x79 (rewrite (= (not (not $x71)) $x71)) (= (not (and $x46 $x47)) $x71)))) -(let (($x54 (and $x46 $x47))) -(let (($x57 (not $x54))) -(let ((@x56 (monotonicity (rewrite (= (= $x47 true) $x47)) (= (and $x46 (= $x47 true)) $x54)))) -(let ((@x62 (mp (asserted (not (and $x46 (= $x47 true)))) (monotonicity @x56 (= (not (and $x46 (= $x47 true))) $x57)) $x57))) -(let ((@x84 (mp @x62 @x83 $x71))) -(let (($x503 (forall ((?v0 A$) )(! (let ((?x28 (id$ ?v0))) -(= ?x28 ?v0)) :pattern ( (id$ ?v0) ) :qid k!8)) -)) -(let (($x30 (forall ((?v0 A$) )(! (let ((?x28 (id$ ?v0))) -(= ?x28 ?v0)) :qid k!8)) -)) -(let ((@x507 (quant-intro (refl (= (= (id$ ?0) ?0) (= (id$ ?0) ?0))) (= $x30 $x503)))) -(let ((@x64 (nnf-pos (refl (~ (= (id$ ?0) ?0) (= (id$ ?0) ?0))) (~ $x30 $x30)))) -(let ((@x508 (mp (mp~ (asserted $x30) @x64 $x30) @x507 $x503))) -(let (($x163 (or (not $x503) $x46))) -(let ((@x496 ((_ quant-inst x$) $x163))) -(unit-resolution @x496 @x508 (unit-resolution @x84 (lemma @x495 $x47) $x73) false))))))))))))))))))))))))))))))))) - -50e0d27d5994794dc9d5826e8afa4b3217acf731 14 0 -unsat -((set-logic AUFLIA) -(proof -(let (($x29 (exists ((?v0 A$) )(! (g$ ?v0) :qid k!7)) -)) -(let (($x30 (ite $x29 true false))) -(let (($x31 (f$ $x30))) -(let (($x32 (=> $x31 true))) -(let (($x33 (not $x32))) -(let ((@x42 (monotonicity (monotonicity (rewrite (= $x30 $x29)) (= $x31 (f$ $x29))) (= $x32 (=> (f$ $x29) true))))) -(let ((@x46 (trans @x42 (rewrite (= (=> (f$ $x29) true) true)) (= $x32 true)))) -(let ((@x53 (trans (monotonicity @x46 (= $x33 (not true))) (rewrite (= (not true) false)) (= $x33 false)))) -(mp (asserted $x33) @x53 false))))))))))) - -8b09776b03122aeacc9dd9526e1f0e5d41a07f14 14 0 -unsat -((set-logic AUFLIA) -(proof -(let (($x29 (forall ((?v0 A$) )(! (g$ ?v0) :qid k!7)) -)) -(let (($x30 (ite $x29 true false))) -(let (($x31 (f$ $x30))) -(let (($x32 (=> $x31 true))) -(let (($x33 (not $x32))) -(let ((@x42 (monotonicity (monotonicity (rewrite (= $x30 $x29)) (= $x31 (f$ $x29))) (= $x32 (=> (f$ $x29) true))))) -(let ((@x46 (trans @x42 (rewrite (= (=> (f$ $x29) true) true)) (= $x32 true)))) -(let ((@x53 (trans (monotonicity @x46 (= $x33 (not true))) (rewrite (= (not true) false)) (= $x33 false)))) -(mp (asserted $x33) @x53 false))))))))))) - -feaa6ef662dd489cf55f86209489c2992ff08d28 46 0 -unsat -((set-logic AUFLIA) -(proof -(let ((?x61 (fun_app$a le$ 3))) -(let (($x63 (fun_app$ ?x61 42))) -(let (($x75 (not $x63))) -(let (($x59 (= le$ uu$))) -(let ((@x73 (monotonicity (rewrite (= (=> $x59 $x63) (or (not $x59) $x63))) (= (not (=> $x59 $x63)) (not (or (not $x59) $x63)))))) -(let ((@x74 (not-or-elim (mp (asserted (not (=> $x59 $x63))) @x73 (not (or (not $x59) $x63))) $x59))) -(let ((@x482 (monotonicity (symm @x74 (= uu$ le$)) (= (fun_app$a uu$ 3) ?x61)))) -(let ((@x484 (symm (monotonicity @x482 (= (fun_app$ (fun_app$a uu$ 3) 42) $x63)) (= $x63 (fun_app$ (fun_app$a uu$ 3) 42))))) -(let ((@x472 (monotonicity @x484 (= $x75 (not (fun_app$ (fun_app$a uu$ 3) 42)))))) -(let ((@x77 (not-or-elim (mp (asserted (not (=> $x59 $x63))) @x73 (not (or (not $x59) $x63))) $x75))) -(let ((?x79 (fun_app$a uu$ 3))) -(let (($x168 (fun_app$ ?x79 42))) -(let (($x52 (forall ((?v0 Int) (?v1 Int) )(! (let (($x46 (<= (+ ?v0 (* (- 1) ?v1)) 0))) -(let (($x31 (fun_app$ (fun_app$a uu$ ?v0) ?v1))) -(= $x31 $x46))) :pattern ( (fun_app$ (fun_app$a uu$ ?v0) ?v1) ) :qid k!10)) -)) -(let (($x46 (<= (+ ?1 (* (- 1) ?0)) 0))) -(let (($x31 (fun_app$ (fun_app$a uu$ ?1) ?0))) -(let (($x49 (= $x31 $x46))) -(let (($x35 (forall ((?v0 Int) (?v1 Int) )(! (let (($x32 (<= ?v0 ?v1))) -(let (($x31 (fun_app$ (fun_app$a uu$ ?v0) ?v1))) -(= $x31 $x32))) :pattern ( (fun_app$ (fun_app$a uu$ ?v0) ?v1) ) :qid k!10)) -)) -(let (($x40 (forall ((?v0 Int) (?v1 Int) )(! (let (($x32 (<= ?v0 ?v1))) -(let (($x31 (fun_app$ (fun_app$a uu$ ?v0) ?v1))) -(= $x31 $x32))) :pattern ( (fun_app$ (fun_app$a uu$ ?v0) ?v1) ) :qid k!10)) -)) -(let ((@x51 (monotonicity (rewrite (= (<= ?1 ?0) $x46)) (= (= $x31 (<= ?1 ?0)) $x49)))) -(let ((@x42 (quant-intro (rewrite (= (= $x31 (<= ?1 ?0)) (= $x31 (<= ?1 ?0)))) (= $x35 $x40)))) -(let ((@x57 (mp (asserted $x35) (trans @x42 (quant-intro @x51 (= $x40 $x52)) (= $x35 $x52)) $x52))) -(let ((@x78 (mp~ @x57 (nnf-pos (refl (~ $x49 $x49)) (~ $x52 $x52)) $x52))) -(let (($x134 (or (not $x52) $x168))) -(let (($x137 (= (or (not $x52) (= $x168 (<= (+ 3 (* (- 1) 42)) 0))) $x134))) -(let ((?x169 (* (- 1) 42))) -(let ((?x170 (+ 3 ?x169))) -(let (($x160 (<= ?x170 0))) -(let (($x171 (= $x168 $x160))) -(let ((@x158 (trans (monotonicity (rewrite (= ?x169 (- 42))) (= ?x170 (+ 3 (- 42)))) (rewrite (= (+ 3 (- 42)) (- 39))) (= ?x170 (- 39))))) -(let ((@x497 (trans (monotonicity @x158 (= $x160 (<= (- 39) 0))) (rewrite (= (<= (- 39) 0) true)) (= $x160 true)))) -(let ((@x131 (trans (monotonicity @x497 (= $x171 (= $x168 true))) (rewrite (= (= $x168 true) $x168)) (= $x171 $x168)))) -(let ((@x478 (mp ((_ quant-inst 3 42) (or (not $x52) $x171)) (trans (monotonicity @x131 $x137) (rewrite (= $x134 $x134)) $x137) $x134))) -(unit-resolution (unit-resolution @x478 @x78 $x168) (mp @x77 @x472 (not $x168)) false))))))))))))))))))))))))))))))))))) - -9cdd1051dbf4e0648f71536fbc74bbab8e0e744e 75 0 -unsat -((set-logic AUFLIA) -(proof -(let ((?x78 (cons$ 2 nil$))) -(let ((?x79 (cons$ 1 ?x78))) -(let ((?x74 (cons$ 1 nil$))) -(let ((?x75 (cons$ 0 ?x74))) -(let ((?x76 (map$ uu$ ?x75))) -(let (($x80 (= ?x76 ?x79))) -(let ((?x185 (map$ uu$ ?x74))) -(let ((?x189 (map$ uu$ nil$))) -(let ((?x188 (fun_app$ uu$ 1))) -(let ((?x160 (cons$ ?x188 ?x189))) -(let (($x290 (= ?x185 ?x160))) -(let (($x521 (forall ((?v0 Int_int_fun$) (?v1 Int) (?v2 Int_list$) )(! (= (map$ ?v0 (cons$ ?v1 ?v2)) (cons$ (fun_app$ ?v0 ?v1) (map$ ?v0 ?v2))) :pattern ( (map$ ?v0 (cons$ ?v1 ?v2)) ) :pattern ( (cons$ (fun_app$ ?v0 ?v1) (map$ ?v0 ?v2)) ) :qid k!13)) -)) -(let (($x72 (forall ((?v0 Int_int_fun$) (?v1 Int) (?v2 Int_list$) )(! (= (map$ ?v0 (cons$ ?v1 ?v2)) (cons$ (fun_app$ ?v0 ?v1) (map$ ?v0 ?v2))) :qid k!13)) -)) -(let (($x71 (= (map$ ?2 (cons$ ?1 ?0)) (cons$ (fun_app$ ?2 ?1) (map$ ?2 ?0))))) -(let ((@x97 (mp~ (asserted $x72) (nnf-pos (refl (~ $x71 $x71)) (~ $x72 $x72)) $x72))) -(let ((@x526 (mp @x97 (quant-intro (refl (= $x71 $x71)) (= $x72 $x521)) $x521))) -(let (($x173 (or (not $x521) $x290))) -(let ((@x506 ((_ quant-inst uu$ 1 nil$) $x173))) -(let (($x492 (= ?x189 nil$))) -(let (($x513 (forall ((?v0 Int_int_fun$) )(! (= (map$ ?v0 nil$) nil$) :pattern ( (map$ ?v0 nil$) ) :qid k!12)) -)) -(let (($x61 (forall ((?v0 Int_int_fun$) )(! (= (map$ ?v0 nil$) nil$) :qid k!12)) -)) -(let ((@x515 (refl (= (= (map$ ?0 nil$) nil$) (= (map$ ?0 nil$) nil$))))) -(let ((@x83 (refl (~ (= (map$ ?0 nil$) nil$) (= (map$ ?0 nil$) nil$))))) -(let ((@x518 (mp (mp~ (asserted $x61) (nnf-pos @x83 (~ $x61 $x61)) $x61) (quant-intro @x515 (= $x61 $x513)) $x513))) -(let (($x495 (or (not $x513) $x492))) -(let ((@x496 ((_ quant-inst uu$) $x495))) -(let (($x136 (= ?x188 2))) -(let (($x51 (forall ((?v0 Int) )(! (= (+ ?v0 (* (- 1) (fun_app$ uu$ ?v0))) (- 1)) :pattern ( (fun_app$ uu$ ?v0) ) :qid k!11)) -)) -(let (($x47 (= (+ ?0 (* (- 1) (fun_app$ uu$ ?0))) (- 1)))) -(let (($x34 (forall ((?v0 Int) )(! (let ((?x29 (fun_app$ uu$ ?v0))) -(= ?x29 (+ ?v0 1))) :pattern ( (fun_app$ uu$ ?v0) ) :qid k!11)) -)) -(let (($x42 (forall ((?v0 Int) )(! (let ((?x29 (fun_app$ uu$ ?v0))) -(= ?x29 (+ 1 ?v0))) :pattern ( (fun_app$ uu$ ?v0) ) :qid k!11)) -)) -(let ((@x53 (quant-intro (rewrite (= (= (fun_app$ uu$ ?0) (+ 1 ?0)) $x47)) (= $x42 $x51)))) -(let ((?x29 (fun_app$ uu$ ?0))) -(let (($x39 (= ?x29 (+ 1 ?0)))) -(let ((@x41 (monotonicity (rewrite (= (+ ?0 1) (+ 1 ?0))) (= (= ?x29 (+ ?0 1)) $x39)))) -(let ((@x56 (mp (asserted $x34) (trans (quant-intro @x41 (= $x34 $x42)) @x53 (= $x34 $x51)) $x51))) -(let ((@x85 (mp~ @x56 (nnf-pos (refl (~ $x47 $x47)) (~ $x51 $x51)) $x51))) -(let (($x145 (not $x51))) -(let (($x499 (or $x145 $x136))) -(let ((@x498 (rewrite (= (= (+ 1 (* (- 1) ?x188)) (- 1)) $x136)))) -(let ((@x204 (monotonicity @x498 (= (or $x145 (= (+ 1 (* (- 1) ?x188)) (- 1))) $x499)))) -(let ((@x207 (trans @x204 (rewrite (= $x499 $x499)) (= (or $x145 (= (+ 1 (* (- 1) ?x188)) (- 1))) $x499)))) -(let ((@x104 (mp ((_ quant-inst 1) (or $x145 (= (+ 1 (* (- 1) ?x188)) (- 1)))) @x207 $x499))) -(let ((@x191 (monotonicity (symm (unit-resolution @x104 @x85 $x136) (= 2 ?x188)) (symm (unit-resolution @x496 @x518 $x492) (= nil$ ?x189)) (= ?x78 ?x160)))) -(let ((@x473 (trans @x191 (symm (unit-resolution @x506 @x526 $x290) (= ?x160 ?x185)) (= ?x78 ?x185)))) -(let ((?x182 (fun_app$ uu$ 0))) -(let (($x163 (= ?x182 1))) -(let (($x487 (or $x145 $x163))) -(let ((@x501 (monotonicity (rewrite (= (+ 0 (* (- 1) ?x182)) (* (- 1) ?x182))) (= (= (+ 0 (* (- 1) ?x182)) (- 1)) (= (* (- 1) ?x182) (- 1)))))) -(let ((@x503 (trans @x501 (rewrite (= (= (* (- 1) ?x182) (- 1)) $x163)) (= (= (+ 0 (* (- 1) ?x182)) (- 1)) $x163)))) -(let ((@x151 (monotonicity @x503 (= (or $x145 (= (+ 0 (* (- 1) ?x182)) (- 1))) $x487)))) -(let ((@x490 (trans @x151 (rewrite (= $x487 $x487)) (= (or $x145 (= (+ 0 (* (- 1) ?x182)) (- 1))) $x487)))) -(let ((@x491 (mp ((_ quant-inst 0) (or $x145 (= (+ 0 (* (- 1) ?x182)) (- 1)))) @x490 $x487))) -(let ((@x478 (monotonicity (symm (unit-resolution @x491 @x85 $x163) (= 1 ?x182)) @x473 (= ?x79 (cons$ ?x182 ?x185))))) -(let ((?x186 (cons$ ?x182 ?x185))) -(let (($x187 (= ?x76 ?x186))) -(let (($x504 (or (not $x521) $x187))) -(let ((@x505 ((_ quant-inst uu$ 0 (cons$ 1 nil$)) $x504))) -(let ((@x466 (trans (unit-resolution @x505 @x526 $x187) (symm @x478 (= ?x186 ?x79)) $x80))) -(let (($x81 (not $x80))) -(let ((@x82 (asserted $x81))) -(unit-resolution @x82 @x466 false)))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))) - -40c61a0200976d6203302a7343af5b7ad1e6ce36 11 0 -unsat -((set-logic AUFLIA) -(proof -(let (($x29 (forall ((?v0 A$) )(! (p$ ?v0) :qid k!6)) -)) -(let (($x30 (not $x29))) -(let (($x31 (or $x29 $x30))) -(let (($x32 (not $x31))) -(let ((@x42 (trans (monotonicity (rewrite (= $x31 true)) (= $x32 (not true))) (rewrite (= (not true) false)) (= $x32 false)))) -(mp (asserted $x32) @x42 false)))))))) - -f17a5e4d5f1a5a93fbc847f858c7c845c29d8349 109 0 -unsat -((set-logic AUFLIA) -(proof -(let ((?x75 (dec_10$ 4))) -(let ((?x76 (* 4 ?x75))) -(let ((?x77 (dec_10$ ?x76))) -(let (($x79 (= ?x77 6))) -(let (($x150 (<= ?x75 4))) -(let (($x174 (= ?x75 4))) -(let (($x513 (forall ((?v0 Int) )(! (let (($x55 (>= ?v0 10))) -(ite $x55 (= (dec_10$ ?v0) (dec_10$ (+ (- 10) ?v0))) (= (dec_10$ ?v0) ?v0))) :pattern ( (dec_10$ ?v0) ) :qid k!5)) -)) -(let (($x92 (forall ((?v0 Int) )(! 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(= (modulo$ (eval_dioph$ ?v0 ?v1) 2) (modulo$ (eval_dioph$ ?v0 (map$ uu$ ?v1)) 2)) :qid k!18)) -)) -(let (($x50 (= (modulo$ ?x45 2) (modulo$ ?x48 2)))) -(let ((@x265 (mp~ (asserted $x51) (nnf-pos (refl (~ $x50 $x50)) (~ $x51 $x51)) $x51))) -(let ((@x302 (mp @x265 (quant-intro (refl (= $x50 $x50)) (= $x51 $x297)) $x297))) -(let (($x464 (or (not $x297) $x500))) -(let ((@x578 ((_ quant-inst ks$ xs$) $x464))) -(let ((@x748 (trans (symm (unit-resolution @x578 @x302 $x500) (= ?x98 ?x499)) (symm @x728 (= ?x499 ?x99)) $x100))) -(let ((@x891 (unit-resolution (unit-resolution (def-axiom (or $x284 $x281 $x282)) @x828 $x283) (lemma (unit-resolution (hypothesis $x281) @x748 false) $x100) $x282))) -(let ((@x895 (unit-resolution ((_ th-lemma arith triangle-eq) (or $x117 $x807 (not $x673))) @x891 (or $x807 (not $x673))))) -((_ th-lemma arith farkas -2 -2 1 -1 1 1) (unit-resolution @x895 @x889 $x807) @x485 @x745 @x488 (unit-resolution ((_ th-lemma arith triangle-eq) (or $x134 $x679)) @x584 $x679) (unit-resolution ((_ th-lemma arith) (or false $x564)) @x26 $x564) false))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))) - -d982bc989c38d6a72f2d807a1168e928070f463b 100 0 -unsat -( -a141 -a32 -a142 -a33 -a143 -a34 -a144 -a35 -a145 -a36 -a146 -a147 -a37 -a148 -a38 -a93 -a149 -a39 -a150 -a40 -a151 -a41 -a152 -a96 -a42 -a153 -a43 -a154 -a44 -a155 -a45 -a156 -a46 -a157 -a47 -a158 -a48 -a159 -a160 -a49 -a161 -a50 -a162 -a14 -a13 -a15 -a113 -a16 -a114 -a115 -a169 -a116 -a7 -a117 -a8 -a61 -a118 -a62 -a119 -a120 -a121 -a122 -a69 -a17 -a70 -a124 -a18 -a182 -a71 -a72 -a183 -a73 -a127 -a184 -a74 -a128 -a75 -a129 -a23 -a76 -a130 -a24 -a25 -a79 -a133 -a26 -a27 -a135 -a136 -a28 -a137 -a29 -a138 -a30 -a139 -a140 -a31 -) -356e447dfc184b20563d0467365f8b5f8cef0ab1 97 0 -unsat -( -a29 -a80 -a81 -a30 -a31 -a82 -a32 -a83 -a33 -a84 -a85 -a34 -a86 -a35 -a87 -a36 -a88 -a37 -a89 -a38 -a90 -a39 -a91 -a40 -a92 -a41 -a93 -a42 -a94 -a43 -a95 -a44 -a45 -a96 -a46 -a97 -a50 -a51 -a1 -a52 -a2 -a53 -a3 -a4 -a54 -a5 -a55 -a6 -a56 -a7 -a57 -a8 -a58 -a9 -a59 -a10 -a60 -a11 -a61 -a12 -a62 -a13 -a63 -a14 -a64 -a15 -a65 -a16 -a66 -a17 -a67 -a18 -a68 -a69 -a19 -a70 -a20 -a71 -a21 -a72 -a22 -a73 -a23 -a74 -a24 -a75 -a25 -a76 -a26 -a77 -a27 -a78 -a28 -a79 -) -52fd45adea6478e9d5ad83eff76800476c97a929 2 0 -sat -(error "Cannot get an unsat core unless immediately preceded by UNSAT/VALID response.") -986242bd9f42b2ccb6c2f7242f7302e1f4a543ef 2 0 -sat -(error "Cannot get an unsat core unless immediately preceded by UNSAT/VALID response.") -72ac661c77e89ad0f41fb5c62073e8267bf5a6c1 2 0 -sat -(error "Cannot get an unsat core unless immediately preceded by UNSAT/VALID response.") -707271ac37bbf9aba707687e1d6d62497810fc5d 2 0 -sat -(error "Cannot get an unsat core unless immediately preceded by UNSAT/VALID response.") -9882e692cde42bbd5ed7cdcd884340dfaa68b016 2 0 -sat -(error "Cannot get an unsat core unless immediately preceded by UNSAT/VALID response.") -763f8658cf70daf26cd303b055bde69d09e03192 2 0 -sat -(error "Cannot get an unsat core unless immediately preceded by UNSAT/VALID response.") -5ace894fbc0cab965d77619b71e294a7498ea670 2 0 -sat -(error "Cannot get an unsat core unless immediately preceded by UNSAT/VALID response.") -35953e5bdfb3c20982931376ab02561049c3d3ec 2 0 -sat -(error "Cannot get an unsat core unless immediately preceded by UNSAT/VALID response.") -834942f3e869aeabae6a62cc9136262f9e001d9b 2 0 -sat -(error "Cannot get an unsat core unless immediately preceded by UNSAT/VALID response.") -1915bb36fd704a827d0d979f7d3273ea47ac12ff 2 0 -sat -(error "Cannot get an unsat core unless immediately preceded by UNSAT/VALID response.") -112b71a74adbf7dc3d30f9548dd7e6e7e507b5cb 90 0 -unsat -( -a28 -a78 -a29 -a79 -a30 -a80 -a31 -a32 -a33 -a83 -a84 -a34 -a85 -a35 -a86 -a36 -a87 -a37 -a88 -a38 -a89 -a39 -a90 -a40 -a91 -a41 -a92 -a42 -a93 -a43 -a44 -a45 -a46 -a47 -a48 -a49 -a1 -a50 -a2 -a51 -a52 -a3 -a53 -a4 -a54 -a5 -a55 -a6 -a56 -a57 -a7 -a58 -a8 -a59 -a9 -a60 -a61 -a10 -a62 -a11 -a63 -a12 -a64 -a13 -a65 -a14 -a66 -a15 -a67 -a68 -a17 -a18 -a69 -a70 -a20 -a71 -a21 -a72 -a22 -a23 -a24 -a25 -a75 -a26 -a76 -a27 -a77 -) -55c4468a22c3129940ee0f507180fb5cb8a244d5 2 0 -sat -(error "Cannot get an unsat core unless immediately preceded by UNSAT/VALID response.") -834270f8dd620f74a77f5565b14e1f3bada38fbc 13 0 -unsat -( -a0 -a1 -a2 -a3 -a4 -a5 -a6 -a7 -a8 -a9 -) -f22198ac4ffd581fb59d39b6771250bce4f2b10c 13 0 -unsat -( -a0 -a1 -a2 -a3 -a4 -a5 -a6 -a7 -a8 -a9 -) -c2cfe7fbd368fc0ecc0401a01b53f57caeef131a 4 0 -unsat -( -a0 -) -1b75f6cb11115d60847d54399897af90dea90827 4 0 -unsat -( -a0 -) -4998d5a79895ec5f3cef0120dc86abbbd8e29b48 4 0 -unsat -( -a2 -) -1437414329c2da0f812cda22f62176795fe4b488 2 0 -sat -(error "Cannot get an unsat core unless immediately preceded by UNSAT/VALID response.") -6ca70dfdb60448a41d66f81903a82cf3bfc1d3c0 6 0 -unsat -( -a11 -a4 -a5 -) -2998de44350b8173b123947e09d691282118e3a6 6 0 -unsat -( -a0 -a1 -a2 -) -9e56e42500b1c152c4d6f34a9829575456349872 2 0 -sat -(error "Cannot get an unsat core unless immediately preceded by UNSAT/VALID response.") -20e7bc67dece8e9eee65bc5c217876381ad19805 7 0 -unsat -( -a44 -a5 -a6 -a40 -) -47a88885e5196eac2e3922eb19ce30b6d748259f 7 0 -unsat -( -a0 -a1 -a3 -a5 -) -e06991d1826b36a536b8ecef95433bd1f28774f6 2 0 -unknown -(error "Cannot get an unsat core unless immediately preceded by UNSAT/VALID response.") -5ecd136d06134f07af067717cf168158b90a4fe5 2 0 -unknown -(error "Cannot get an unsat core unless immediately preceded by UNSAT/VALID response.") -0b10533518bb68ba1619340435dfd68ab76ab077 6 0 -unsat -( -a0 -a3 -a104 -) -2a33649206162ac011eff175206722d181426839 6 0 -unsat -( -a0 -a1 -a2 -) -375c41e114323d3d731079fe1d402f74a9d2651f 2 0 -sat -(error "Cannot get an unsat core unless immediately preceded by UNSAT/VALID response.") -e666d5e185fdae30099fc5a288467b6b29dd2412 7 0 -unsat -( -a170 -a176 -a89 -a4 -) -38448f458cf85259745f3f72f0ef85742b6132c3 7 0 -unsat -( -a0 -a1 -a2 -a3 -) -3e59b0c055a1eaf3a70cee6780566e0c51865d4c 2 0 -sat -(error "Cannot get an unsat core unless immediately preceded by UNSAT/VALID response.") -40fc07c6890b8180980355c66bcf18270b94dbe2 5 0 -unsat -( -a0 -a2 -) -a0984a525fc9fe1f8886060622bc7f06810aa427 2 0 -sat -(error "Cannot get an unsat core unless immediately preceded by UNSAT/VALID response.") -bdd84922010fb8a29483543e42719deb8169a21d 2 0 -sat -(error "line 14 column 10: proof is not available") -5229e4ae9267447d5281e256ba94b22471594333 2 0 -sat -(error "line 15 column 10: proof is not available") -9931ad6cacee040172b5200df33d2ff766d9ab3f 2 0 -sat -(error "line 14 column 10: proof is not available") -24fee7a6227ca691697261bdf9710f47f3306cf4 2 0 -sat -(error "line 13 column 10: proof is not available") -f5ea14decc68f09b91c21ca192729ed973297ac3 2 0 -sat -(error "line 10 column 10: proof is not available") -c2358f1bb12beb27e84bf6b9d4edbd4a7ce4c606 2 0 -sat -(error "line 20 column 10: proof is not available") -1e10ff820821c9cb846ff93eb2274f54845cd885 7 0 -unsat -( -a57 -a0 -a3 -a34 -) -037b1f2d8c0f457a04260cddd88499544bfb551f 7 0 -unsat -( -a0 -a1 -a2 -a3 -) -9f1937e419764d5c93a8821ef6d0e32a40427cf1 2 0 -unknown -(error "Cannot get an unsat core unless immediately preceded by UNSAT/VALID response.") -7eaf5e7924f7478914e32e3781267cee9333ddd4 2 0 -unknown -(error "Cannot get an unsat core unless immediately preceded by UNSAT/VALID response.") 1c2b6530334930f2f4f6e0d6b73f1d249b6c5fd8 23 0 unsat ((set-logic AUFLIA) @@ -7298,147 +4603,6 @@ (let ((@x72 (mp (asserted $x38) (trans (monotonicity @x55 (= $x38 $x56)) @x69 (= $x38 $x59)) $x59))) ((_ th-lemma arith farkas -1 -1 1) @x72 @x453 (unit-resolution ((_ th-lemma arith triangle-eq) (or (not $x532) $x513)) @x459 $x513) false))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))) -49c385b161a0c500f84c45f85272a8ec9574fef4 126 0 -unsat -((set-logic AUFLIA) -(proof -(let ((?x29 (of_nat$ x$))) -(let ((?x30 (* 2 ?x29))) -(let ((?x31 (nat$ ?x30))) -(let ((?x212 (of_nat$ ?x31))) -(let ((?x532 (* (- 1) ?x212))) -(let ((?x533 (+ ?x30 ?x532))) -(let (($x513 (<= ?x533 0))) -(let (($x531 (= ?x533 0))) -(let (($x193 (>= ?x29 0))) -(let (($x487 (>= ?x212 1))) -(let (($x485 (= ?x212 1))) -(let ((?x33 (nat$ 1))) -(let ((?x504 (of_nat$ ?x33))) -(let (($x505 (= ?x504 1))) -(let (($x546 (forall ((?v0 Int) )(! (let ((?x49 (nat$ ?v0))) -(let ((?x50 (of_nat$ ?x49))) -(let (($x51 (= ?x50 ?v0))) -(let (($x64 (>= ?v0 0))) -(let (($x65 (not $x64))) -(or $x65 $x51)))))) :pattern ( (nat$ ?v0) ) :qid k!10)) -)) -(let (($x71 (forall ((?v0 Int) )(! (let ((?x49 (nat$ ?v0))) -(let ((?x50 (of_nat$ ?x49))) -(let (($x51 (= ?x50 ?v0))) -(let (($x64 (>= ?v0 0))) -(let (($x65 (not $x64))) -(or $x65 $x51)))))) :qid k!10)) -)) -(let ((?x49 (nat$ ?0))) -(let ((?x50 (of_nat$ ?x49))) -(let (($x51 (= ?x50 ?0))) -(let (($x64 (>= ?0 0))) -(let (($x65 (not $x64))) -(let (($x68 (or $x65 $x51))) -(let (($x53 (forall ((?v0 Int) )(! (let ((?x49 (nat$ ?v0))) -(let ((?x50 (of_nat$ ?x49))) -(let (($x51 (= ?x50 ?v0))) -(let (($x48 (<= 0 ?v0))) -(=> $x48 $x51))))) :qid k!10)) -)) -(let (($x59 (forall ((?v0 Int) )(! (let ((?x49 (nat$ ?v0))) -(let ((?x50 (of_nat$ ?x49))) -(let (($x51 (= ?x50 ?v0))) -(or (not (<= 0 ?v0)) $x51)))) :qid k!10)) -)) -(let ((@x67 (monotonicity (rewrite (= (<= 0 ?0) $x64)) (= (not (<= 0 ?0)) $x65)))) -(let ((@x73 (quant-intro (monotonicity @x67 (= (or (not (<= 0 ?0)) $x51) $x68)) (= $x59 $x71)))) -(let ((@x58 (rewrite (= (=> (<= 0 ?0) $x51) (or (not (<= 0 ?0)) $x51))))) -(let ((@x76 (mp (asserted $x53) (trans (quant-intro @x58 (= $x53 $x59)) @x73 (= $x53 $x71)) $x71))) -(let ((@x551 (mp (mp~ @x76 (nnf-pos (refl (~ $x68 $x68)) (~ $x71 $x71)) $x71) (quant-intro (refl (= $x68 $x68)) (= $x71 $x546)) $x546))) -(let (($x526 (not $x546))) -(let (($x489 (or $x526 $x505))) -(let ((@x506 (rewrite (= (>= 1 0) true)))) -(let ((@x219 (trans (monotonicity @x506 (= (not (>= 1 0)) (not true))) (rewrite (= (not true) false)) (= (not (>= 1 0)) false)))) -(let ((@x223 (monotonicity @x219 (= (or (not (>= 1 0)) $x505) (or false $x505))))) -(let ((@x503 (trans @x223 (rewrite (= (or false $x505) $x505)) (= (or (not (>= 1 0)) $x505) $x505)))) -(let ((@x493 (monotonicity @x503 (= (or $x526 (or (not (>= 1 0)) $x505)) $x489)))) -(let ((@x496 (trans @x493 (rewrite (= $x489 $x489)) (= (or $x526 (or (not (>= 1 0)) $x505)) $x489)))) -(let ((@x497 (mp ((_ quant-inst 1) (or $x526 (or (not (>= 1 0)) $x505))) @x496 $x489))) -(let (($x34 (= ?x31 ?x33))) -(let ((@x42 (mp (asserted (not (not $x34))) (rewrite (= (not (not $x34)) $x34)) $x34))) -(let ((@x356 (trans (monotonicity @x42 (= ?x212 ?x504)) (unit-resolution @x497 @x551 $x505) $x485))) -(let ((@x371 (unit-resolution ((_ th-lemma arith farkas 1 1) (or (not $x487) (not (<= ?x212 0)))) (unit-resolution ((_ th-lemma arith triangle-eq) (or (not $x485) $x487)) @x356 $x487) (not (<= ?x212 0))))) -(let ((@x374 (unit-resolution ((_ th-lemma arith triangle-eq) (or (not (= ?x212 0)) (<= ?x212 0))) @x371 (not (= ?x212 0))))) -(let (($x515 (= ?x212 0))) -(let (($x517 (or $x193 $x515))) -(let (($x552 (forall ((?v0 Int) )(! (let ((?x49 (nat$ ?v0))) -(let ((?x50 (of_nat$ ?x49))) -(let (($x78 (= ?x50 0))) -(let (($x64 (>= ?v0 0))) -(or $x64 $x78))))) :pattern ( (nat$ ?v0) ) :qid k!11)) -)) -(let (($x101 (forall ((?v0 Int) )(! (let ((?x49 (nat$ ?v0))) -(let ((?x50 (of_nat$ ?x49))) -(let (($x78 (= ?x50 0))) -(let (($x64 (>= ?v0 0))) -(or $x64 $x78))))) :qid k!11)) -)) -(let ((@x556 (quant-intro (refl (= (or $x64 (= ?x50 0)) (or $x64 (= ?x50 0)))) (= $x101 $x552)))) -(let ((@x120 (nnf-pos (refl (~ (or $x64 (= ?x50 0)) (or $x64 (= ?x50 0)))) (~ $x101 $x101)))) -(let (($x80 (forall ((?v0 Int) )(! (let ((?x49 (nat$ ?v0))) -(let ((?x50 (of_nat$ ?x49))) -(let (($x78 (= ?x50 0))) -(let (($x77 (< ?v0 0))) -(=> $x77 $x78))))) :qid k!11)) -)) -(let (($x86 (forall ((?v0 Int) )(! (let ((?x49 (nat$ ?v0))) -(let ((?x50 (of_nat$ ?x49))) -(let (($x78 (= ?x50 0))) -(let (($x77 (< ?v0 0))) -(let (($x82 (not $x77))) -(or $x82 $x78)))))) :qid k!11)) -)) -(let (($x78 (= ?x50 0))) -(let (($x98 (or $x64 $x78))) -(let (($x77 (< ?0 0))) -(let (($x82 (not $x77))) -(let (($x83 (or $x82 $x78))) -(let ((@x97 (trans (monotonicity (rewrite (= $x77 $x65)) (= $x82 (not $x65))) (rewrite (= (not $x65) $x64)) (= $x82 $x64)))) -(let ((@x105 (trans (quant-intro (rewrite (= (=> $x77 $x78) $x83)) (= $x80 $x86)) (quant-intro (monotonicity @x97 (= $x83 $x98)) (= $x86 $x101)) (= $x80 $x101)))) -(let ((@x557 (mp (mp~ (mp (asserted $x80) @x105 $x101) @x120 $x101) @x556 $x552))) -(let (($x156 (not $x552))) -(let (($x520 (or $x156 $x193 $x515))) -(let ((@x530 (rewrite (= (>= ?x30 0) $x193)))) -(let ((@x523 (monotonicity (monotonicity @x530 (= (or (>= ?x30 0) $x515) $x517)) (= (or $x156 (or (>= ?x30 0) $x515)) (or $x156 $x517))))) -(let ((@x215 (trans @x523 (rewrite (= (or $x156 $x517) $x520)) (= (or $x156 (or (>= ?x30 0) $x515)) $x520)))) -(let ((@x229 (mp ((_ quant-inst (* 2 ?x29)) (or $x156 (or (>= ?x30 0) $x515))) @x215 $x520))) -(let (($x185 (not $x193))) -(let (($x534 (or $x185 $x531))) -(let (($x188 (or $x526 $x185 $x531))) -(let (($x213 (= ?x212 ?x30))) -(let (($x208 (>= ?x30 0))) -(let (($x209 (not $x208))) -(let (($x214 (or $x209 $x213))) -(let (($x189 (or $x526 $x214))) -(let ((@x536 (monotonicity (monotonicity @x530 (= $x209 $x185)) (rewrite (= $x213 $x531)) (= $x214 $x534)))) -(let ((@x175 (trans (monotonicity @x536 (= $x189 (or $x526 $x534))) (rewrite (= (or $x526 $x534) $x188)) (= $x189 $x188)))) -(let ((@x176 (mp ((_ quant-inst (* 2 ?x29)) $x189) @x175 $x188))) -(let ((@x470 (unit-resolution (unit-resolution @x176 @x551 $x534) (unit-resolution (unit-resolution @x229 @x557 $x517) @x374 $x193) $x531))) -(let (($x514 (>= ?x533 0))) -(let (($x486 (<= ?x212 1))) -((_ th-lemma arith gcd-test -1/2 -1/2 -1/2 -1/2) (unit-resolution ((_ th-lemma arith triangle-eq) (or (not $x485) $x487)) @x356 $x487) (unit-resolution ((_ th-lemma arith triangle-eq) (or (not $x485) $x486)) @x356 $x486) (unit-resolution ((_ th-lemma arith triangle-eq) (or (not $x531) $x514)) @x470 $x514) (unit-resolution ((_ th-lemma arith triangle-eq) (or (not $x531) $x513)) @x470 $x513) false)))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))) - -b2e870cca8f9ff26b649a7a2c6910fff2183e779 6 0 -unsat -( -a0 -a259 -a260 -) -0df05630a046f3db612e71e7557cbf94daec55ea 6 0 -unsat -( -a0 -a2 -a3 -) 5d99a07ea08069a53b86d7f3330815887331e82a 145 0 unsat ((set-logic AUFLIA) @@ -7585,12 +4749,6 @@ (let ((@x538 (unit-resolution ((_ th-lemma arith triangle-eq) (or (not $x612) $x595)) (unit-resolution (unit-resolution @x594 @x631 $x616) @x545 $x612) $x595))) ((_ th-lemma arith farkas 1 -1 -1 1) (unit-resolution ((_ th-lemma arith triangle-eq) (or (not $x559) $x557)) @x539 $x557) @x106 @x538 @x457 false))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))) -09cc14017050c484625b3e0c3d671ae32b66851f 5 0 -unsat -( -a0 -a1 -) 7d4feac3284b531c122b21d3a2a25c87f1e3b93b 78 0 unsat ((set-logic AUFLIA) @@ -7670,35 +4828,6 @@ (let ((@x257 (unit-resolution ((_ th-lemma arith farkas 1 1) (or $x578 $x254)) (unit-resolution @x576 @x81 @x593 $x255) $x578))) ((_ th-lemma arith farkas 1 1 1) @x257 @x198 @x566 false))))))))))))))))))))))))))))))))))))))))))))))))))))))) -74a1c0d44cbd0147017229e79a08e8dfcfe4eee2 7 0 -unsat -( -a2 -a189 -a138 -a7 -) -1a98e6860e90be637d16c2d7127e7141065068af 5 0 -unsat -( -a0 -a1 -) -14f8ad1280ad869e9c8ef4e6a613ceb808bfd5ab 7 0 -unsat -( -a0 -a1 -a2 -a4 -) -15ec6864dfa5b932b5e4bed685e55140b1a81105 6 0 -unsat -( -a0 -a1 -a3 -) ce85402875b83dc2f06a381810d29a2061933b9f 312 0 unsat ((set-logic AUFLIA) @@ -8012,95 +5141,520 @@ (let ((@x133 (not-or-elim (mp (asserted $x96) @x129 $x125) (not (>= ?x89 1))))) ((_ th-lemma arith farkas -4 1 1) @x133 (unit-resolution (def-axiom (or $x357 $x687)) @x572 $x687) (unit-resolution ((_ th-lemma arith triangle-eq) (or (not $x597) $x574)) @x532 $x574) false))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))) -9e3a7cb6b1687db90ac27c1322f4180e0715e89a 7 0 +5e90e9139eb4e9a7c2678bca8dda6cda05861f4c 23 0 +unsat +((set-logic AUFLIA) +(proof +(let (($x40 (= x$ a$))) +(let ((?x36 (pair$ x$ y$))) +(let ((?x37 (fst$ ?x36))) +(let (($x39 (= ?x37 a$))) +(let ((@x50 (monotonicity (rewrite (= (=> $x39 $x40) (or (not $x39) $x40))) (= (not (=> $x39 $x40)) (not (or (not $x39) $x40)))))) +(let ((@x51 (not-or-elim (mp (asserted (not (=> $x39 $x40))) @x50 (not (or (not $x39) $x40))) $x39))) +(let (($x56 (= ?x37 x$))) +(let (($x478 (forall ((?v0 A$) (?v1 B$) )(! (= (fst$ (pair$ ?v0 ?v1)) ?v0) :pattern ( (pair$ ?v0 ?v1) ) :qid k!12)) +)) +(let (($x32 (forall ((?v0 A$) (?v1 B$) )(! (= (fst$ (pair$ ?v0 ?v1)) ?v0) :qid k!12)) +)) +(let (($x31 (= (fst$ (pair$ ?1 ?0)) ?1))) +(let ((@x55 (mp~ (asserted $x32) (nnf-pos (refl (~ $x31 $x31)) (~ $x32 $x32)) $x32))) +(let ((@x483 (mp @x55 (quant-intro (refl (= $x31 $x31)) (= $x32 $x478)) $x478))) +(let (($x62 (or (not $x478) $x56))) +(let ((@x149 ((_ quant-inst x$ y$) $x62))) +(let ((@x150 (trans (symm (unit-resolution @x149 @x483 $x56) (= x$ ?x37)) @x51 $x40))) +(let ((@x54 (not-or-elim (mp (asserted (not (=> $x39 $x40))) @x50 (not (or (not $x39) $x40))) (not $x40)))) +(unit-resolution @x54 @x150 false))))))))))))))))))) + +53d3d89ffb6e574b15fcea58a111b4eecba9beb5 42 0 unsat -( -a1 -a169 -a170 -a94 -) -0f29eff8af0baceae4a69ea0ceff00e3a8c44aaf 7 0 +((set-logic AUFLIA) +(proof +(let ((?x59 (snd$a p2$))) +(let ((?x58 (fst$a p1$))) +(let (($x60 (= ?x58 ?x59))) +(let ((?x55 (pair$ y$ x$))) +(let (($x56 (= p2$ ?x55))) +(let ((?x52 (pair$a x$ y$))) +(let (($x53 (= p1$ ?x52))) +(let (($x57 (and $x53 $x56))) +(let ((@x70 (monotonicity (rewrite (= (=> $x57 $x60) (or (not $x57) $x60))) (= (not (=> $x57 $x60)) (not (or (not $x57) $x60)))))) +(let ((@x71 (not-or-elim (mp (asserted (not (=> $x57 $x60))) @x70 (not (or (not $x57) $x60))) $x57))) +(let ((@x74 (and-elim @x71 $x56))) +(let ((@x504 (symm (monotonicity @x74 (= ?x59 (snd$a ?x55))) (= (snd$a ?x55) ?x59)))) +(let ((?x100 (snd$a ?x55))) +(let (($x185 (= ?x100 x$))) +(let (($x534 (forall ((?v0 B$) (?v1 A$) )(! (= (snd$a (pair$ ?v0 ?v1)) ?v1) :pattern ( (pair$ ?v0 ?v1) ) :qid k!21)) +)) +(let (($x47 (forall ((?v0 B$) (?v1 A$) )(! (= (snd$a (pair$ ?v0 ?v1)) ?v1) :qid k!21)) +)) +(let (($x46 (= (snd$a (pair$ ?1 ?0)) ?0))) +(let ((@x96 (mp~ (asserted $x47) (nnf-pos (refl (~ $x46 $x46)) (~ $x47 $x47)) $x47))) +(let ((@x539 (mp @x96 (quant-intro (refl (= $x46 $x46)) (= $x47 $x534)) $x534))) +(let (($x190 (or (not $x534) $x185))) +(let ((@x191 ((_ quant-inst y$ x$) $x190))) +(let ((?x187 (fst$a ?x52))) +(let (($x188 (= ?x187 x$))) +(let (($x522 (forall ((?v0 A$) (?v1 B$) )(! (= (fst$a (pair$a ?v0 ?v1)) ?v0) :pattern ( (pair$a ?v0 ?v1) ) :qid k!19)) +)) +(let (($x39 (forall ((?v0 A$) (?v1 B$) )(! (= (fst$a (pair$a ?v0 ?v1)) ?v0) :qid k!19)) +)) +(let (($x38 (= (fst$a (pair$a ?1 ?0)) ?1))) +(let ((@x90 (mp~ (asserted $x39) (nnf-pos (refl (~ $x38 $x38)) (~ $x39 $x39)) $x39))) +(let ((@x527 (mp @x90 (quant-intro (refl (= $x38 $x38)) (= $x39 $x522)) $x522))) +(let (($x162 (or (not $x522) $x188))) +(let ((@x292 ((_ quant-inst x$ y$) $x162))) +(let ((@x505 (trans (monotonicity (and-elim @x71 $x53) (= ?x58 ?x187)) (unit-resolution @x292 @x527 $x188) (= ?x58 x$)))) +(let ((@x489 (trans @x505 (symm (unit-resolution @x191 @x539 $x185) (= x$ ?x100)) (= ?x58 ?x100)))) +(let ((@x76 (not-or-elim (mp (asserted (not (=> $x57 $x60))) @x70 (not (or (not $x57) $x60))) (not $x60)))) +(unit-resolution @x76 (trans @x489 @x504 $x60) false)))))))))))))))))))))))))))))))))))) + +541ab286f481dab3994e7cef5aa3ab01f0d6487a 24 0 +unsat +((set-logic AUFLIA) +(proof +(let (($x29 (f$ g$ x$))) +(let (($x73 (not $x29))) +(let (($x65 (not (or (= $x29 (fun_app$ g$ x$)) $x29 (fun_app$ g$ x$))))) +(let (($x32 (= $x29 (and (fun_app$ g$ x$) true)))) +(let (($x37 (not (or $x32 (or (= $x29 true) (= (fun_app$ g$ x$) true)))))) +(let (($x30 (fun_app$ g$ x$))) +(let (($x44 (= $x29 $x30))) +(let (($x56 (or $x44 (or $x29 $x30)))) +(let ((@x67 (monotonicity (rewrite (= $x56 (or $x44 $x29 $x30))) (= (not $x56) $x65)))) +(let ((@x55 (monotonicity (rewrite (= (= $x29 true) $x29)) (rewrite (= (= $x30 true) $x30)) (= (or (= $x29 true) (= $x30 true)) (or $x29 $x30))))) +(let ((@x43 (monotonicity (rewrite (= (and $x30 true) $x30)) (= $x32 (= $x29 $x30))))) +(let ((@x58 (monotonicity (trans @x43 (rewrite (= (= $x29 $x30) $x44)) (= $x32 $x44)) @x55 (= (or $x32 (or (= $x29 true) (= $x30 true))) $x56)))) +(let ((@x69 (trans (monotonicity @x58 (= $x37 (not $x56))) @x67 (= $x37 $x65)))) +(let ((@x70 (mp (asserted $x37) @x69 $x65))) +(let ((@x87 (monotonicity (iff-false (not-or-elim @x70 (not $x30)) (= $x30 false)) (= (= $x73 $x30) (= $x73 false))))) +(let ((@x91 (trans @x87 (rewrite (= (= $x73 false) $x29)) (= (= $x73 $x30) $x29)))) +(let ((@x93 (trans @x91 (iff-false (not-or-elim @x70 $x73) (= $x29 false)) (= (= $x73 $x30) false)))) +(let (($x77 (= $x73 $x30))) +(let ((@x80 (mp (not-or-elim @x70 (not $x44)) (rewrite (= (not $x44) $x77)) $x77))) +(mp @x80 @x93 false)))))))))))))))))))))) + +303e836701682600d31f180dbf7164cb66aa7e90 5 0 unsat ( a0 a1 -a3 -a4 ) -2f309a4750090c04f284fbecb4a976eedaa46ce9 7 0 +b1682b5d9334f1f753211625091194aee8feeee0 5 0 unsat ( -a95 -a173 -a5 -a179 +a3 +a2 ) -e0764188710d396d7c3d8c7ed12e92df610f3d5d 6 0 -unsat -( -a0 -a2 -a3 -) -ff18566d8fd433a50da07b998b8d9915d4e6d38c 7 0 +e480713ec1d59b302d3665ef6cf6d4bde9acf881 5 0 unsat ( a0 a1 -a2 -a3 ) -85b5e78e459667d6880efd720fc8258c1f632634 5 0 +32a8fd63d6c57c114d55e5b029c6c7c0a22bfc9e 5 0 unsat ( +a1 a0 -a2 ) -d9da06f46916827de91e55898f12e162fc4394a9 5 0 +8e5b0b49054ab51d88db63de1bbe5f826bed3499 2 0 +sat +(error "Cannot get an unsat core unless immediately preceded by UNSAT/VALID response.") +0ca8132e17307584a7bf84322b4f8062f2f2c658 2 0 +sat +(error "Cannot get an unsat core unless immediately preceded by UNSAT/VALID response.") +256aa6c949586ab7b008ef9578a05ed9d8811969 7 0 unsat ( -a0 -a2 +a73 +a77 +a97 +a98 ) -0c5b279548a729dbbc42ad3281942c493cea61a9 2 0 -unknown -(error "Cannot get an unsat core unless immediately preceded by UNSAT/VALID response.") -f38355a9ae0344ba7fe2a48aa18389448f4b9cd2 2 0 -unknown -(error "Cannot get an unsat core unless immediately preceded by UNSAT/VALID response.") -bbdbbe6715d50b1bf20ff06d778334d19ea80167 5 0 +6b21e8fbdb4a81ae46f60a001dcc2f2cfa2bb055 5 0 unsat ( a0 a1 ) -933c14ef800372ac93564be5a3ef60dc447e5229 5 0 +9aca5c922a21ee8af6f8c447405fbb253f6c0e3d 2 0 +sat +(error "Cannot get an unsat core unless immediately preceded by UNSAT/VALID response.") +bbd5549a4514d443e2da4c190a400b7bb7fad211 8 0 +unsat +( +a2 +a1 +a6 +a5 +a4 +) +5d3180378cd70f7c6a038fcc3edc01a1f8acce33 8 0 unsat ( a2 +a1 +a5 +a4 a3 ) -b2b6ec8367faf6099e2eb37a31144e974fe80a4d 5 0 +b697e9e1f1623fa76652384cbd62f909744566cf 2 0 +sat +(error "Cannot get an unsat core unless immediately preceded by UNSAT/VALID response.") +93d4ee1f0414a974916a0daf16114650cca034a6 2 0 +sat +(error "Cannot get an unsat core unless immediately preceded by UNSAT/VALID response.") +3e0697d22f6063be90ed182054dfac4e59e65728 2 0 +sat +(error "Cannot get an unsat core unless immediately preceded by UNSAT/VALID response.") +132bc98466cbf8cf9a94f930b1fd690c493fcf96 100 0 +unsat +( +a93 +a40 +a42 +a79 +a45 +a69 +a154 +a76 +a32 +a62 +a15 +a17 +a39 +a41 +a16 +a50 +a23 +a140 +a31 +a29 +a139 +a70 +a128 +a143 +a7 +a30 +a38 +a27 +a35 +a135 +a129 +a151 +a148 +a36 +a25 +a33 +a182 +a144 +a138 +a159 +a113 +a75 +a117 +a133 +a158 +a137 +a37 +a147 +a155 +a46 +a61 +a13 +a48 +a124 +a18 +a43 +a44 +a14 +a47 +a26 +a34 +a116 +a149 +a120 +a73 +a130 +a156 +a142 +a118 +a127 +a150 +a96 +a152 +a121 +a160 +a49 +a24 +a8 +a136 +a28 +a114 +a72 +a141 +a162 +a122 +a145 +a146 +a74 +a184 +a153 +a169 +a119 +a183 +a157 +a161 +a115 +a71 +) +c3d7cbf937c8a42adee3dea055fc94c0d5fa9f09 2 0 +sat +(error "Cannot get an unsat core unless immediately preceded by UNSAT/VALID response.") +bdab860f909efa4b33522c132777f2e16f390f0d 97 0 +unsat +( +a22 +a15 +a45 +a16 +a24 +a46 +a26 +a65 +a18 +a62 +a71 +a5 +a25 +a27 +a68 +a83 +a51 +a87 +a14 +a2 +a13 +a66 +a21 +a64 +a63 +a31 +a32 +a79 +a78 +a73 +a30 +a81 +a92 +a41 +a52 +a42 +a93 +a90 +a39 +a80 +a69 +a19 +a3 +a29 +a4 +a70 +a20 +a72 +a1 +a23 +a11 +a60 +a74 +a10 +a59 +a76 +a77 +a28 +a89 +a38 +a55 +a6 +a43 +a94 +a37 +a88 +a17 +a86 +a35 +a36 +a58 +a9 +a50 +a67 +a7 +a56 +a84 +a85 +a34 +a57 +a8 +a33 +a61 +a12 +a53 +a91 +a40 +a54 +a82 +a96 +a44 +a95 +a97 +a75 +) +7b0531750ec3111a052894242409998ff73f0d8e 2 0 +sat +(error "Cannot get an unsat core unless immediately preceded by UNSAT/VALID response.") +0c77f4fcdf3c7cc2416cd1c79a1e4ffa770ccdd9 2 0 +sat +(error "Cannot get an unsat core unless immediately preceded by UNSAT/VALID response.") +b5cac27259e12d93b0f91244374657bda3651301 2 0 +sat +(error "Cannot get an unsat core unless immediately preceded by UNSAT/VALID response.") +8f371242ee130c5b7f7049f82612acd4b70ba898 2 0 +sat +(error "Cannot get an unsat core unless immediately preceded by UNSAT/VALID response.") +947377c6f6ef2e11f5ddd7a677e90d51d4d4ca09 2 0 +sat +(error "Cannot get an unsat core unless immediately preceded by UNSAT/VALID response.") +445ee9b6220decad197f092fe7e63a050fceb831 2 0 +sat +(error "Cannot get an unsat core unless immediately preceded by UNSAT/VALID response.") +51d11b605d2a9a01009f9f814fb688a96656112f 2 0 +sat +(error "Cannot get an unsat core unless immediately preceded by UNSAT/VALID response.") +425ffc08f16b7f80d0cbe2998f660aa2f786acbf 2 0 +sat +(error "Cannot get an unsat core unless immediately preceded by UNSAT/VALID response.") +1db6aab13ff3e14aca462e31d60bcc91d1d91ba4 2 0 +sat +(error "Cannot get an unsat core unless immediately preceded by UNSAT/VALID response.") +a67d9819b8a80d46a99da882dbc773b1daa04f46 2 0 +sat +(error "Cannot get an unsat core unless immediately preceded by UNSAT/VALID response.") +57ced68ab36f2fcdb9d24788830e8652a2d56817 2 0 +sat +(error "Cannot get an unsat core unless immediately preceded by UNSAT/VALID response.") +f6c7d41773bef5bed37f5e86a6fa287578c04f2d 90 0 +unsat +( +a15 +a39 +a13 +a32 +a66 +a89 +a54 +a18 +a41 +a65 +a75 +a48 +a23 +a20 +a42 +a63 +a55 +a11 +a24 +a88 +a51 +a12 +a31 +a25 +a64 +a76 +a5 +a93 +a83 +a72 +a22 +a43 +a26 +a28 +a44 +a1 +a36 +a38 +a50 +a49 +a62 +a87 +a70 +a77 +a34 +a84 +a60 +a40 +a3 +a52 +a85 +a35 +a37 +a46 +a45 +a47 +a33 +a27 +a29 +a86 +a56 +a10 +a61 +a91 +a9 +a80 +a90 +a58 +a8 +a79 +a92 +a59 +a78 +a2 +a67 +a53 +a4 +a69 +a21 +a71 +a68 +a17 +a6 +a14 +a57 +a7 +a30 +) +ac0ffc3882f6c09968ced3592e058a6fb86a87c7 2 0 +sat +(error "Cannot get an unsat core unless immediately preceded by UNSAT/VALID response.") +85bbaf5a5aa1611b4cf32fa801006fbfc15c02d7 5 0 unsat ( a0 a1 ) -7d3ccc6fd748dc986de65f6b96355c1acc61633a 5 0 +926b60197ebba006da54aed0737eebccf8577396 5 0 unsat ( +a1 a0 -a1 ) -502c6566fddc9f002ef331f2822f70acfc1eb0a6 2 0 -sat -(error "Cannot get an unsat core unless immediately preceded by UNSAT/VALID response.") -9a7dd691b0176ee4885324369fa4400bb78fa856 2 0 -sat -(error "Cannot get an unsat core unless immediately preceded by UNSAT/VALID response.") -5dee863399bac5f53042e3459e153dff890dd2a5 4 0 +700af424f8dda45d1d02de88a120ee19f4cfb835 4 0 unsat ( a0 ) +5c1e9490994c9407572cee32f5d1f714ddc35898 4 0 +unsat +( +a0 +) diff -r 1e5c7599aa5b -r ece9435ca78e src/HOL/SMT_Examples/SMT_Examples.thy --- a/src/HOL/SMT_Examples/SMT_Examples.thy Sun Oct 01 15:17:31 2017 +0200 +++ b/src/HOL/SMT_Examples/SMT_Examples.thy Sun Oct 01 15:17:43 2017 +0200 @@ -35,7 +35,8 @@ axiomatization symm_f :: "'a \ 'a \ 'a" where symm_f: "symm_f x y = symm_f y x" -lemma "a = a \ symm_f a b = symm_f b a" by (smt symm_f) +lemma "a = a \ symm_f a b = symm_f b a" + by (smt symm_f) (* Taken from ~~/src/HOL/ex/SAT_Examples.thy. @@ -474,11 +475,14 @@ section \Monomorphization examples\ -definition Pred :: "'a \ bool" where "Pred x = True" +definition Pred :: "'a \ bool" where + "Pred x = True" -lemma poly_Pred: "Pred x \ (Pred [x] \ \ Pred [x])" by (simp add: Pred_def) +lemma poly_Pred: "Pred x \ (Pred [x] \ \ Pred [x])" + by (simp add: Pred_def) -lemma "Pred (1::int)" by (smt poly_Pred) +lemma "Pred (1::int)" + by (smt poly_Pred) axiomatization g :: "'a \ nat" axiomatization where