(sum_lemmas
(mant_digit_fun_TCC1 0
(mant_digit_fun_TCC1-1 nil 3321198912 ("" (tcc) nil nil )
((boolean nonempty-type-decl nil booleans nil )
(bool nonempty-type-eq-decl nil booleans nil )
(NOT const-decl "[bool -> bool]" booleans nil )
(number nonempty-type-decl nil numbers nil )
(number_field_pred const-decl "[number -> boolean]" number_fields
nil )
(number_field nonempty-type-from-decl nil number_fields nil )
(real_pred const-decl "[number_field -> boolean]" reals nil )
(real nonempty-type-from-decl nil reals nil )
(>= const-decl "bool" reals nil )
(rational_pred const-decl "[real -> boolean]" rationals nil )
(rational nonempty-type-from-decl nil rationals nil )
(integer_pred const-decl "[rational -> boolean]" integers nil )
(int nonempty-type-eq-decl nil integers nil )
(nat nonempty-type-eq-decl nil naturalnumbers nil )
(real_ge_is_total_order name-judgement "(total_order?[real])"
real_props nil )
(/= const-decl "boolean" notequal nil )
(minus_int_is_int application-judgement "int" integers nil ))
nil ))
(Sum_pos_less_1_TCC1 0
(Sum_pos_less_1_TCC1-1 nil 3321198912 ("" (tcc) nil nil )
((boolean nonempty-type-decl nil booleans nil )
(bool nonempty-type-eq-decl nil booleans nil )
(NOT const-decl "[bool -> bool]" booleans nil )
(number nonempty-type-decl nil numbers nil )
(number_field_pred const-decl "[number -> boolean]" number_fields
nil )
(number_field nonempty-type-from-decl nil number_fields nil )
(real_pred const-decl "[number_field -> boolean]" reals nil )
(real nonempty-type-from-decl nil reals nil )
(rational_pred const-decl "[real -> boolean]" rationals nil )
(rational nonempty-type-from-decl nil rationals nil )
(integer_pred const-decl "[rational -> boolean]" integers nil )
(int nonempty-type-eq-decl nil integers nil )
(>= const-decl "bool" reals nil )
(nat nonempty-type-eq-decl nil naturalnumbers nil )
(<= const-decl "bool" reals nil )
(nonneg_real nonempty-type-eq-decl nil real_types nil )
(numfield nonempty-type-eq-decl nil number_fields nil )
(- const-decl "[numfield, numfield -> numfield]" number_fields nil )
(* const-decl "[numfield, numfield -> numfield]" number_fields nil )
(OR const-decl "[bool, bool -> bool]" booleans nil )
(^ const-decl "real" exponentiation nil )
(> const-decl "bool" reals nil )
(above nonempty-type-eq-decl nil integers nil )
(b formal-const-decl "above(1)" sum_lemmas nil )
(- const-decl "[numfield -> numfield]" number_fields nil )
(mant_digit_fun type-eq-decl nil sum_lemmas nil )
(real_ge_is_total_order name-judgement "(total_order?[real])"
real_props nil )
(real_le_is_total_order name-judgement "(total_order?[real])"
real_props nil )
(/= const-decl "boolean" notequal nil )
(minus_int_is_int application-judgement "int" integers nil )
(nnrat_exp application-judgement "nnrat" exponentiation nil )
(posrat_exp application-judgement "posrat" exponentiation nil )
(posrat_times_posrat_is_posrat application-judgement "posrat"
rationals nil ))
nil ))
(Sum_pos_less_1 0
(Sum_pos_less_1-1 nil 3321198912
("" (induct "i" )
(("1" (expand "Sum" )
(("1" (rewrite "expt_x0" ) (("1" (assert ) nil nil )) nil )) nil )
("2" (skosimp*)
(("2" (rewrite "Sum" )
(("2" (inst?)
(("2" (assert )
(("2" (typepred "d!1" )
(("2" (inst?)
(("2" (assert )
(("2" (case-replace "b ^ (-j!1 - 1) * b = b^(-j!1)" )
(("1" (assert )
(("1" (skosimp*) (("1" (assert ) nil nil )) nil ))
nil )
("2" (hide -1 -2 2)
(("2" (lemma "expt_plus" )
(("2" (inst - "(-(j!1+1))" "1" "b" )
(("2" (rewrite "expt_x1" )
(("2" (assert ) nil nil )) nil ))
nil ))
nil ))
nil ))
nil ))
nil ))
nil ))
nil ))
nil ))
nil ))
nil ))
nil )
("3" (hide 2) (("3" (skosimp*) (("3" (assert ) nil nil )) nil ))
nil ))
nil )
((NOT const-decl "[bool -> bool]" booleans nil )
(minus_nzint_is_nzint application-judgement "nzint" integers nil )
(nzreal nonempty-type-eq-decl nil reals nil )
(int_plus_int_is_int application-judgement "int" integers nil )
(posint_exp application-judgement "posint" exponentiation nil )
(expt_x1 formula-decl nil exponentiation nil )
(expt_plus formula-decl nil exponentiation nil )
(minus_odd_is_odd application-judgement "odd_int" integers nil )
(= const-decl "[T, T -> boolean]" equalities nil )
(real_le_is_total_order name-judgement "(total_order?[real])"
real_props nil )
(posint_plus_nnint_is_posint application-judgement "posint"
integers nil )
(real_plus_real_is_real application-judgement "real" reals nil )
(int_minus_int_is_int application-judgement "int" integers nil )
(nnint_plus_posint_is_posint application-judgement "posint"
integers nil )
(+ const-decl "[numfield, numfield -> numfield]" number_fields nil )
(expt_x0 formula-decl nil exponentiation nil )
(nat_induction formula-decl nil naturalnumbers nil )
(AND const-decl "[bool, bool -> bool]" booleans nil )
(pred type-eq-decl nil defined_types nil )
(number nonempty-type-decl nil numbers nil )
(boolean nonempty-type-decl nil booleans nil )
(number_field_pred const-decl "[number -> boolean]" number_fields
nil )
(number_field nonempty-type-from-decl nil number_fields nil )
(real_pred const-decl "[number_field -> boolean]" reals nil )
(real nonempty-type-from-decl nil reals nil )
(rational_pred const-decl "[real -> boolean]" rationals nil )
(rational nonempty-type-from-decl nil rationals nil )
(integer_pred const-decl "[rational -> boolean]" integers nil )
(int nonempty-type-eq-decl nil integers nil )
(bool nonempty-type-eq-decl nil booleans nil )
(>= const-decl "bool" reals nil )
(nat nonempty-type-eq-decl nil naturalnumbers nil )
(nonneg_real nonempty-type-eq-decl nil real_types nil )
(<= const-decl "bool" reals nil )
(numfield nonempty-type-eq-decl nil number_fields nil )
(- const-decl "[numfield, numfield -> numfield]" number_fields nil )
(* const-decl "[numfield, numfield -> numfield]" number_fields nil )
(OR const-decl "[bool, bool -> bool]" booleans nil )
(/= const-decl "boolean" notequal nil )
(^ const-decl "real" exponentiation nil )
(> const-decl "bool" reals nil )
(above nonempty-type-eq-decl nil integers nil )
(b formal-const-decl "above(1)" sum_lemmas nil )
(- const-decl "[numfield -> numfield]" number_fields nil )
(mant_digit_fun type-eq-decl nil sum_lemmas nil )
(IMPLIES const-decl "[bool, bool -> bool]" booleans nil )
(Sum def-decl "real" sum_hack nil )
(minus_int_is_int application-judgement "int" integers nil )
(rat_minus_rat_is_rat application-judgement "rat" rationals nil )
(nnrat_exp application-judgement "nnrat" exponentiation nil )
(posrat_exp application-judgement "posrat" exponentiation nil )
(posrat_times_posrat_is_posrat application-judgement "posrat"
rationals nil ))
nil ))
(floor_Sum_mant 0
(floor_Sum_mant-1 nil 3321198912
("" (skosimp*)
(("" (lemma "Sum_pos_less_1" )
(("" (inst?)
(("" (lemma "expt_pos" )
(("" (inst?)
(("1" (case "1-b^(-i!1)<1" )
(("1" (case "Sum(i!1, d!1) < 1" )
(("1" (flatten)
(("1" (hide -2 -3 -5)
(("1" (assert )
(("1"
(case "forall (r:real): floor(r)=0 iff 0<=r & r<1" )
(("1" (inst?) (("1" (assert ) nil )))
("2" (hide -1 -2 2) (("2" (tcc) nil )))))))))))
("2" (assert ) nil )))
("2" (assert ) nil ) ("3" (assert ) nil )))
("2" (split)
(("1" (assert ) nil ) ("2" (assert ) nil ))))))))))))
nil )
((Sum_pos_less_1 formula-decl nil sum_lemmas nil )
(expt_pos formula-decl nil exponentiation nil )
(rat_minus_rat_is_rat application-judgement "rat" rationals nil )
(< const-decl "bool" reals nil )
(real_gt_is_strict_total_order name-judgement
"(strict_total_order?[real])" real_props nil )
(real_le_is_total_order name-judgement "(total_order?[real])"
real_props nil )
(real_lt_is_strict_total_order name-judgement
"(strict_total_order?[real])" real_props nil )
(NOT const-decl "[bool -> bool]" booleans nil )
(floor const-decl "{i | i <= x & x < i + 1}" floor_ceil nil )
(+ const-decl "[numfield, numfield -> numfield]" number_fields nil )
(AND const-decl "[bool, bool -> bool]" booleans nil )
(integer nonempty-type-from-decl nil integers nil )
(= const-decl "[T, T -> boolean]" equalities nil )
(IFF const-decl "[bool, bool -> bool]" booleans nil )
(Sum def-decl "real" sum_hack nil )
(posreal nonempty-type-eq-decl nil real_types nil )
(mant_digit_fun type-eq-decl nil sum_lemmas nil )
(- const-decl "[numfield -> numfield]" number_fields nil )
(b formal-const-decl "above(1)" sum_lemmas nil )
(above nonempty-type-eq-decl nil integers nil )
(> const-decl "bool" reals nil )
(^ const-decl "real" exponentiation nil )
(/= const-decl "boolean" notequal nil )
(OR const-decl "[bool, bool -> bool]" booleans nil )
(* const-decl "[numfield, numfield -> numfield]" number_fields nil )
(- const-decl "[numfield, numfield -> numfield]" number_fields nil )
(numfield nonempty-type-eq-decl nil number_fields nil )
(<= const-decl "bool" reals nil )
(nonneg_real nonempty-type-eq-decl nil real_types nil )
(nat nonempty-type-eq-decl nil naturalnumbers nil )
(>= const-decl "bool" reals nil )
(bool nonempty-type-eq-decl nil booleans nil )
(int nonempty-type-eq-decl nil integers nil )
(integer_pred const-decl "[rational -> boolean]" integers nil )
(rational nonempty-type-from-decl nil rationals nil )
(rational_pred const-decl "[real -> boolean]" rationals nil )
(real nonempty-type-from-decl nil reals nil )
(real_pred const-decl "[number_field -> boolean]" reals nil )
(number_field nonempty-type-from-decl nil number_fields nil )
(number_field_pred const-decl "[number -> boolean]" number_fields
nil )
(boolean nonempty-type-decl nil booleans nil )
(number nonempty-type-decl nil numbers nil )
(posrat_times_posrat_is_posrat application-judgement "posrat"
rationals nil )
(posrat_exp application-judgement "posrat" exponentiation nil )
(nnrat_exp application-judgement "nnrat" exponentiation nil )
(minus_int_is_int application-judgement "int" integers nil ))
nil )))
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