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.
Readable signature
BitCount(b,c,l,z)Exact expansion
((exists ff_u_defined_bit_count_sum ff_v_defined_bit_count_sum. ((((exists ff_h_defined_bit_count_sum_start. ff_h_defined_bit_count_sum_start + S (0) = S ((S (0)) * ff_v_defined_bit_count_sum)) /\ exists ff_q_defined_bit_count_sum_start. ff_u_defined_bit_count_sum = ff_q_defined_bit_count_sum_start * S ((S (0)) * ff_v_defined_bit_count_sum) + (0))) /\ ((((exists ff_h_defined_bit_count_sum_terminal. ff_h_defined_bit_count_sum_terminal + S (z) = S ((S (l)) * ff_v_defined_bit_count_sum)) /\ exists ff_q_defined_bit_count_sum_terminal. ff_u_defined_bit_count_sum = ff_q_defined_bit_count_sum_terminal * S ((S (l)) * ff_v_defined_bit_count_sum) + (z))) /\ forall ff_i_defined_bit_count_sum. (exists ff_lt_defined_bit_count_sum_bound. ff_lt_defined_bit_count_sum_bound + S ff_i_defined_bit_count_sum = l) -> exists ff_a_defined_bit_count_sum ff_r_defined_bit_count_sum ff_s_defined_bit_count_sum. ((((exists ff_h_defined_bit_count_sum_summand. ff_h_defined_bit_count_sum_summand + S (ff_a_defined_bit_count_sum) = S ((S (ff_i_defined_bit_count_sum)) * c)) /\ exists ff_q_defined_bit_count_sum_summand. b = ff_q_defined_bit_count_sum_summand * S ((S (ff_i_defined_bit_count_sum)) * c) + (ff_a_defined_bit_count_sum))) /\ ((((exists ff_h_defined_bit_count_sum_partial. ff_h_defined_bit_count_sum_partial + S (ff_r_defined_bit_count_sum) = S ((S (ff_i_defined_bit_count_sum)) * ff_v_defined_bit_count_sum)) /\ exists ff_q_defined_bit_count_sum_partial. ff_u_defined_bit_count_sum = ff_q_defined_bit_count_sum_partial * S ((S (ff_i_defined_bit_count_sum)) * ff_v_defined_bit_count_sum) + (ff_r_defined_bit_count_sum))) /\ ((((exists ff_h_defined_bit_count_sum_successor. ff_h_defined_bit_count_sum_successor + S (ff_s_defined_bit_count_sum) = S ((S (S ff_i_defined_bit_count_sum)) * ff_v_defined_bit_count_sum)) /\ exists ff_q_defined_bit_count_sum_successor. ff_u_defined_bit_count_sum = ff_q_defined_bit_count_sum_successor * S ((S (S ff_i_defined_bit_count_sum)) * ff_v_defined_bit_count_sum) + (ff_s_defined_bit_count_sum))) /\ ff_s_defined_bit_count_sum = ff_r_defined_bit_count_sum + ff_a_defined_bit_count_sum)))))) /\ (forall ff_i_defined_bit_count_bits. (exists ff_lt_defined_bit_count_bits_bound. ff_lt_defined_bit_count_bits_bound + S ff_i_defined_bit_count_bits = l) -> exists ff_bit_defined_bit_count_bits. ((((exists ff_h_defined_bit_count_bits_decoded. ff_h_defined_bit_count_bits_decoded + S (ff_bit_defined_bit_count_bits) = S ((S (ff_i_defined_bit_count_bits)) * c)) /\ exists ff_q_defined_bit_count_bits_decoded. b = ff_q_defined_bit_count_bits_decoded * S ((S (ff_i_defined_bit_count_bits)) * c) + (ff_bit_defined_bit_count_bits))) /\ (ff_bit_defined_bit_count_bits = 0 \/ ff_bit_defined_bit_count_bits = 1))))This node is conservative notation, not a theorem, new axiom, predicate constant, or kernel rule. Its expansion is checked for exact first-order AST equivalence.
Definition neighborhood
Expands using
Used by definitions
none
Used by theorem statements or local proof propositions
BT008L bit_count_exists BT008N bit_count_zero BT008O bit_count_succ_decompose BT008P bit_count_bounded BT00JC beta_all_one_bit_count_exact BT00JD eisenstein_initial_segment_bit_count_functional BT00JE eisenstein_initial_segment_bit_count_exact BT00SU initial_segment_prefix_sum_exists BT00Y1 bit_count_positive_last_one BT00Y3 beta_sum_double_carry_exact BT00Y4 central_binom_carry_bit_count BT00Y5 central_binom_prime_power_contribution_le_double BT00YD central_binom_prime_valuation_zero_of_exact_double_quotients