Current library: Alpha v34, 4,223 checked-use theorems; Stable remains 432. Historical first admissions, original proof editions, and non-admitted aliases are preserved. Exact original first-admission records.
Exact expanded first-order arithmetic statement
forall s q t u v. (s = S ((q + t) * S (q + t) + (t + t))) -> (exists cfc_previous_numerator_initial_unique_given cfc_previous_denominator_initial_unique_given cfc_code_initial_unique_given cfc_scale_initial_unique_given. ((~(v = 0)) /\ (exists cfc_tail_initial_unique_givencomputation. ((exists cfc_state_initial_unique_givencomputationinitial. ((exists cfc_left_initial_unique_givencomputationinitialcode cfc_right_initial_unique_givencomputationinitialcode cfc_matrix_initial_unique_givencomputationinitialcode. ((cfc_left_initial_unique_givencomputationinitialcode = ((1) + (0)) * S ((1) + (0)) + ((0) + (0))) /\ ((cfc_right_initial_unique_givencomputationinitialcode = ((0) + (1)) * S ((0) + (1)) + ((1) + (1))) /\ ((cfc_matrix_initial_unique_givencomputationinitialcode = ((cfc_left_initial_unique_givencomputationinitialcode) + (cfc_right_initial_unique_givencomputationinitialcode)) * S ((cfc_left_initial_unique_givencomputationinitialcode) + (cfc_right_initial_unique_givencomputationinitialcode)) + ((cfc_right_initial_unique_givencomputationinitialcode) + (cfc_right_initial_unique_givencomputationinitialcode))) /\ ((cfc_state_initial_unique_givencomputationinitial) = ((cfc_tail_initial_unique_givencomputation) + (cfc_matrix_initial_unique_givencomputationinitialcode)) * S ((cfc_tail_initial_unique_givencomputation) + (cfc_matrix_initial_unique_givencomputationinitialcode)) + ((cfc_matrix_initial_unique_givencomputationinitialcode) + (cfc_matrix_initial_unique_givencomputationinitialcode))))))) /\ (((exists ff_h_initial_unique_givencomputationinitialentry. ff_h_initial_unique_givencomputationinitialentry + S (cfc_state_initial_unique_givencomputationinitial) = S ((S (0)) * cfc_scale_initial_unique_given)) /\ exists ff_q_initial_unique_givencomputationinitialentry. cfc_code_initial_unique_given = ff_q_initial_unique_givencomputationinitialentry * S ((S (0)) * cfc_scale_initial_unique_given) + (cfc_state_initial_unique_givencomputationinitial))))) /\ ((exists cfc_state_initial_unique_givencomputationterminal. ((exists cfc_left_initial_unique_givencomputationterminalcode cfc_right_initial_unique_givencomputationterminalcode cfc_matrix_initial_unique_givencomputationterminalcode. ((cfc_left_initial_unique_givencomputationterminalcode = ((u) + (cfc_previous_numerator_initial_unique_given)) * S ((u) + (cfc_previous_numerator_initial_unique_given)) + ((cfc_previous_numerator_initial_unique_given) + (cfc_previous_numerator_initial_unique_given))) /\ ((cfc_right_initial_unique_givencomputationterminalcode = ((v) + (cfc_previous_denominator_initial_unique_given)) * S ((v) + (cfc_previous_denominator_initial_unique_given)) + ((cfc_previous_denominator_initial_unique_given) + (cfc_previous_denominator_initial_unique_given))) /\ ((cfc_matrix_initial_unique_givencomputationterminalcode = ((cfc_left_initial_unique_givencomputationterminalcode) + (cfc_right_initial_unique_givencomputationterminalcode)) * S ((cfc_left_initial_unique_givencomputationterminalcode) + (cfc_right_initial_unique_givencomputationterminalcode)) + ((cfc_right_initial_unique_givencomputationterminalcode) + (cfc_right_initial_unique_givencomputationterminalcode))) /\ ((cfc_state_initial_unique_givencomputationterminal) = ((s) + (cfc_matrix_initial_unique_givencomputationterminalcode)) * S ((s) + (cfc_matrix_initial_unique_givencomputationterminalcode)) + ((cfc_matrix_initial_unique_givencomputationterminalcode) + (cfc_matrix_initial_unique_givencomputationterminalcode))))))) /\ (((exists ff_h_initial_unique_givencomputationterminalentry. ff_h_initial_unique_givencomputationterminalentry + S (cfc_state_initial_unique_givencomputationterminal) = S ((S (S (0))) * cfc_scale_initial_unique_given)) /\ exists ff_q_initial_unique_givencomputationterminalentry. cfc_code_initial_unique_given = ff_q_initial_unique_givencomputationterminalentry * S ((S (S (0))) * cfc_scale_initial_unique_given) + (cfc_state_initial_unique_givencomputationterminal))))) /\ (forall cfc_index_initial_unique_givencomputation. (exists cfba_gap_initial_unique_givencomputationbound. cfba_gap_initial_unique_givencomputationbound + S (cfc_index_initial_unique_givencomputation) = (S (0))) -> exists cfc_old_initial_unique_givencomputation cfc_a_initial_unique_givencomputation cfc_b_initial_unique_givencomputation cfc_c_initial_unique_givencomputation cfc_d_initial_unique_givencomputation cfc_new_initial_unique_givencomputation cfc_quotient_initial_unique_givencomputation. ((exists cfc_state_initial_unique_givencomputationprevious. ((exists cfc_left_initial_unique_givencomputationpreviouscode cfc_right_initial_unique_givencomputationpreviouscode cfc_matrix_initial_unique_givencomputationpreviouscode. ((cfc_left_initial_unique_givencomputationpreviouscode = ((cfc_a_initial_unique_givencomputation) + (cfc_b_initial_unique_givencomputation)) * S ((cfc_a_initial_unique_givencomputation) + (cfc_b_initial_unique_givencomputation)) + ((cfc_b_initial_unique_givencomputation) + (cfc_b_initial_unique_givencomputation))) /\ ((cfc_right_initial_unique_givencomputationpreviouscode = ((cfc_c_initial_unique_givencomputation) + (cfc_d_initial_unique_givencomputation)) * S ((cfc_c_initial_unique_givencomputation) + (cfc_d_initial_unique_givencomputation)) + ((cfc_d_initial_unique_givencomputation) + (cfc_d_initial_unique_givencomputation))) /\ ((cfc_matrix_initial_unique_givencomputationpreviouscode = ((cfc_left_initial_unique_givencomputationpreviouscode) + (cfc_right_initial_unique_givencomputationpreviouscode)) * S ((cfc_left_initial_unique_givencomputationpreviouscode) + (cfc_right_initial_unique_givencomputationpreviouscode)) + ((cfc_right_initial_unique_givencomputationpreviouscode) + (cfc_right_initial_unique_givencomputationpreviouscode))) /\ ((cfc_state_initial_unique_givencomputationprevious) = ((cfc_old_initial_unique_givencomputation) + (cfc_matrix_initial_unique_givencomputationpreviouscode)) * S ((cfc_old_initial_unique_givencomputation) + (cfc_matrix_initial_unique_givencomputationpreviouscode)) + ((cfc_matrix_initial_unique_givencomputationpreviouscode) + (cfc_matrix_initial_unique_givencomputationpreviouscode))))))) /\ (((exists ff_h_initial_unique_givencomputationpreviousentry. ff_h_initial_unique_givencomputationpreviousentry + S (cfc_state_initial_unique_givencomputationprevious) = S ((S (cfc_index_initial_unique_givencomputation)) * cfc_scale_initial_unique_given)) /\ exists ff_q_initial_unique_givencomputationpreviousentry. cfc_code_initial_unique_given = ff_q_initial_unique_givencomputationpreviousentry * S ((S (cfc_index_initial_unique_givencomputation)) * cfc_scale_initial_unique_given) + (cfc_state_initial_unique_givencomputationprevious))))) /\ ((exists cfc_state_initial_unique_givencomputationfollowing. ((exists cfc_left_initial_unique_givencomputationfollowingcode cfc_right_initial_unique_givencomputationfollowingcode cfc_matrix_initial_unique_givencomputationfollowingcode. ((cfc_left_initial_unique_givencomputationfollowingcode = (((cfc_quotient_initial_unique_givencomputation * cfc_a_initial_unique_givencomputation + cfc_c_initial_unique_givencomputation)) + ((cfc_quotient_initial_unique_givencomputation * cfc_b_initial_unique_givencomputation + cfc_d_initial_unique_givencomputation))) * S (((cfc_quotient_initial_unique_givencomputation * cfc_a_initial_unique_givencomputation + cfc_c_initial_unique_givencomputation)) + ((cfc_quotient_initial_unique_givencomputation * cfc_b_initial_unique_givencomputation + cfc_d_initial_unique_givencomputation))) + (((cfc_quotient_initial_unique_givencomputation * cfc_b_initial_unique_givencomputation + cfc_d_initial_unique_givencomputation)) + ((cfc_quotient_initial_unique_givencomputation * cfc_b_initial_unique_givencomputation + cfc_d_initial_unique_givencomputation)))) /\ ((cfc_right_initial_unique_givencomputationfollowingcode = ((cfc_a_initial_unique_givencomputation) + (cfc_b_initial_unique_givencomputation)) * S ((cfc_a_initial_unique_givencomputation) + (cfc_b_initial_unique_givencomputation)) + ((cfc_b_initial_unique_givencomputation) + (cfc_b_initial_unique_givencomputation))) /\ ((cfc_matrix_initial_unique_givencomputationfollowingcode = ((cfc_left_initial_unique_givencomputationfollowingcode) + (cfc_right_initial_unique_givencomputationfollowingcode)) * S ((cfc_left_initial_unique_givencomputationfollowingcode) + (cfc_right_initial_unique_givencomputationfollowingcode)) + ((cfc_right_initial_unique_givencomputationfollowingcode) + (cfc_right_initial_unique_givencomputationfollowingcode))) /\ ((cfc_state_initial_unique_givencomputationfollowing) = ((cfc_new_initial_unique_givencomputation) + (cfc_matrix_initial_unique_givencomputationfollowingcode)) * S ((cfc_new_initial_unique_givencomputation) + (cfc_matrix_initial_unique_givencomputationfollowingcode)) + ((cfc_matrix_initial_unique_givencomputationfollowingcode) + (cfc_matrix_initial_unique_givencomputationfollowingcode))))))) /\ (((exists ff_h_initial_unique_givencomputationfollowingentry. ff_h_initial_unique_givencomputationfollowingentry + S (cfc_state_initial_unique_givencomputationfollowing) = S ((S (S cfc_index_initial_unique_givencomputation)) * cfc_scale_initial_unique_given)) /\ exists ff_q_initial_unique_givencomputationfollowingentry. cfc_code_initial_unique_given = ff_q_initial_unique_givencomputationfollowingentry * S ((S (S cfc_index_initial_unique_givencomputation)) * cfc_scale_initial_unique_given) + (cfc_state_initial_unique_givencomputationfollowing))))) /\ (cfc_new_initial_unique_givencomputation = S ((cfc_quotient_initial_unique_givencomputation + cfc_old_initial_unique_givencomputation) * S (cfc_quotient_initial_unique_givencomputation + cfc_old_initial_unique_givencomputation) + (cfc_old_initial_unique_givencomputation + cfc_old_initial_unique_givencomputation))))))))))) -> u = q /\ v = 1Constructive proof overview
Generated structural guide
The uniquely determined zeroth convergent is the actual first quotient divided by one; this includes the zero-numerator boundary.
The unchanged tactic script uses 2 declared prerequisites and contains 20 exact native proof lines.
Alpha v34 checked-use · first admitted v29 · independently kernel and Lean verified; not Stable
Proof neighborhood
Direct dependencies
BA0044 continued_fraction_first_cell_is_initial_convergent BA004C continued_fraction_convergent_functionalDirect dependents
Formal native tactic body
Dependencies are introduced as named hypotheses before line 1. Local theorem links identify exact declared prerequisites. This exact body belongs to a complete independently kernel-checked constructive proof bundle and has Alpha checked-use authority; it does not imply Stable membership.
Read the argument
Proof checkpoints
This is a reading aid, not a new proof or a proof-tree certificate. Checkpoint groups are consecutive commands, not inferred branch boundaries. Every step links to the preserved script.
Named ingredients (2)
01Fix variables and assumptionsL1–7
02Use earlier factsL8–17
Instantiate or apply named facts and discharge the corresponding proof obligations.
- L8
specialize continued_fraction_convergent_functional (s) - L9
specialize continued_fraction_convergent_functional (0) - L10
specialize continued_fraction_convergent_functional (u) - L11
specialize continued_fraction_convergent_functional (v) - L12
specialize continued_fraction_convergent_functional (q) - L13
specialize continued_fraction_convergent_functional (1) - L14
apply continued_fraction_convergent_functional - L15
exact hc - L16
specialize continued_fraction_first_cell_is_initial_convergent (s) - L17
specialize continued_fraction_first_cell_is_initial_convergent (q)
Original exact command ledger · 20 lines
- 0001
intro s - 0002
intro q - 0003
intro t - 0004
intro u - 0005
intro v - 0006
intro hcell - 0007
intro hc - 0008
specialize continued_fraction_convergent_functional (s) - 0009
specialize continued_fraction_convergent_functional (0) - 0010
specialize continued_fraction_convergent_functional (u) - 0011
specialize continued_fraction_convergent_functional (v) - 0012
specialize continued_fraction_convergent_functional (q) - 0013
specialize continued_fraction_convergent_functional (1) - 0014
apply continued_fraction_convergent_functional - 0015
exact hc - 0016
specialize continued_fraction_first_cell_is_initial_convergent (s) - 0017
specialize continued_fraction_first_cell_is_initial_convergent (q) - 0018
specialize continued_fraction_first_cell_is_initial_convergent (t) - 0019
apply continued_fraction_first_cell_is_initial_convergent - 0020
exact hcell