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Dash Core
0.12.2.1
P2P Digital Currency
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Go to the source code of this file.
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Adds a field element to another. The result has the sum of the inputs' magnitudes as magnitude.
Referenced by bench_field_inverse(), bench_field_inverse_var(), bench_field_sqrt_var(), random_field_element_magnitude(), run_field_misc(), secp256k1_ecdsa_sig_recover(), secp256k1_ecdsa_sig_verify(), secp256k1_fe_equal_var(), secp256k1_fe_inv_var(), secp256k1_ge_is_valid_var(), secp256k1_ge_set_xquad_var(), secp256k1_gej_add_ge(), secp256k1_gej_add_ge_var(), secp256k1_gej_add_var(), secp256k1_gej_add_zinv_var(), secp256k1_gej_double_var(), secp256k1_gej_is_valid_var(), and test_sqrt().
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If flag is true, set *r equal to *a; otherwise leave it. Constant-time.
Referenced by run_field_misc(), and secp256k1_gej_add_ge().
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Compare two field elements. Requires both inputs to be normalized
Referenced by gej_xyz_equals_gej(), run_field_misc(), secp256k1_ecdsa_sig_recover(), and secp256k1_ecdsa_sig_verify().
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Compare two field elements. Requires magnitude-1 inputs.
Referenced by check_fe_equal(), ge_equals_ge(), ge_equals_gej(), run_field_convert(), run_field_misc(), run_point_times_order(), secp256k1_ge_is_valid_var(), secp256k1_gej_eq_x_var(), secp256k1_gej_is_valid_var(), secp256k1_schnorr_sig_verify(), test_ge(), and test_group_decompress().
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Convert a field element back from the storage type.
Referenced by run_field_convert(), run_field_misc(), and secp256k1_ge_from_storage().
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Convert a field element to a 32-byte big endian value. Requires the input to be normalized
Referenced by run_field_convert(), secp256k1_ecdh(), secp256k1_ecdsa_sig_sign(), secp256k1_eckey_pubkey_serialize(), secp256k1_fe_inv_var(), secp256k1_pubkey_save(), and secp256k1_schnorr_sig_sign().
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Sets a field element to be the (modular) inverse of another. Requires the input's magnitude to be at most 8. The output magnitude is 1 (but not guaranteed to be normalized).
Referenced by bench_field_inverse(), run_field_inv(), secp256k1_ge_set_gej(), and secp256k1_ge_set_table_gej_var().
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Calculate the (modular) inverses of a batch of field elements. Requires the inputs' magnitudes to be at most 8. The output magnitudes are 1 (but not guaranteed to be normalized). The inputs and outputs must not overlap in memory.
Referenced by run_field_inv_all_var(), secp256k1_ge_set_all_gej_var(), and test_ge().
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Potentially faster version of secp256k1_fe_inv, without constant-time guarantee.
Referenced by bench_field_inverse_var(), run_field_inv_var(), secp256k1_ge_set_gej_var(), and test_ge().
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Check the "oddness" of a field element. Requires the input to be normalized.
Referenced by secp256k1_ecdh(), secp256k1_ecdsa_sig_sign(), secp256k1_eckey_pubkey_parse(), secp256k1_eckey_pubkey_serialize(), secp256k1_ge_set_xo_var(), secp256k1_schnorr_sig_sign(), secp256k1_schnorr_sig_verify(), and test_group_decompress().
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Verify whether a field element is zero. Requires the input to be normalized.
Referenced by random_fe_non_zero(), random_group_element_jacobian_test(), secp256k1_ecmult_gen_blind(), secp256k1_gej_rescale(), secp256k1_pubkey_load(), test_ge(), and test_sqrt().
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Sets a field element to be the product of two others. Requires the inputs' magnitudes to be at most 8. The output magnitude is 1 (but not guaranteed to be normalized).
Referenced by bench_field_mul(), check_fe_inverse(), ge_equals_gej(), random_group_element_jacobian_test(), run_field_misc(), run_sqrt(), secp256k1_ecmult(), secp256k1_ecmult_const(), secp256k1_ecmult_odd_multiples_table(), secp256k1_fe_inv(), secp256k1_fe_inv_all_var(), secp256k1_fe_inv_var(), secp256k1_fe_sqrt_var(), secp256k1_ge_globalz_set_table_gej(), secp256k1_ge_is_valid_var(), secp256k1_ge_set_gej(), secp256k1_ge_set_gej_var(), secp256k1_ge_set_gej_zinv(), secp256k1_ge_set_table_gej_var(), secp256k1_ge_set_xquad_var(), secp256k1_gej_add_ge(), secp256k1_gej_add_ge_var(), secp256k1_gej_add_var(), secp256k1_gej_add_zinv_var(), secp256k1_gej_double_var(), secp256k1_gej_eq_x_var(), secp256k1_gej_is_valid_var(), secp256k1_gej_rescale(), and test_ge().
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Multiplies the passed field element with a small integer constant. Multiplies the magnitude by that small integer.
Referenced by random_field_element_magnitude(), run_field_misc(), run_sqr(), secp256k1_gej_add_ge(), secp256k1_gej_add_ge_var(), secp256k1_gej_add_var(), secp256k1_gej_add_zinv_var(), secp256k1_gej_double_var(), and secp256k1_gej_is_valid_var().
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Set a field element equal to the additive inverse of another. Takes a maximum magnitude of the input as an argument. The magnitude of the output is one higher.
Referenced by random_fe_non_square(), random_field_element_magnitude(), run_field_misc(), run_sqr(), run_sqrt(), secp256k1_fe_equal_var(), secp256k1_ge_neg(), secp256k1_ge_set_xo_var(), secp256k1_gej_add_ge(), secp256k1_gej_add_ge_var(), secp256k1_gej_add_var(), secp256k1_gej_add_zinv_var(), secp256k1_gej_double_var(), secp256k1_gej_neg(), and test_sqrt().
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Field element module.
Field elements can be represented in several ways, but code accessing it (and implementations) need to take certain properties into account:
Referenced by bench_field_normalize(), gej_xyz_equals_gej(), random_fe_non_zero(), random_field_element_magnitude(), random_group_element_test(), run_sqr(), secp256k1_ecdh(), secp256k1_ecdsa_sig_sign(), secp256k1_ge_to_storage(), secp256k1_schnorr_sig_sign(), and test_sqrt().
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Normalize a field element, without constant-time guarantee.
Referenced by check_fe_equal(), run_field_misc(), run_point_times_order(), secp256k1_eckey_pubkey_serialize(), secp256k1_fe_inv_var(), secp256k1_ge_set_xo_var(), secp256k1_pubkey_save(), secp256k1_schnorr_sig_verify(), and test_group_decompress().
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Weakly normalize a field element: reduce it magnitude to 1, but don't fully normalize.
Referenced by bench_field_normalize_weak(), check_fe_equal(), ge_equals_gej(), secp256k1_ecmult_const(), secp256k1_ge_is_valid_var(), secp256k1_ge_neg(), secp256k1_gej_add_ge(), secp256k1_gej_add_ge_var(), secp256k1_gej_add_zinv_var(), secp256k1_gej_double_var(), secp256k1_gej_eq_x_var(), secp256k1_gej_is_valid_var(), and secp256k1_gej_neg().
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Verify whether a field element represents zero i.e. would normalize to a zero value. The field implementation may optionally normalize the input, but this should not be relied upon.
Referenced by secp256k1_gej_add_ge().
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Verify whether a field element represents zero i.e. would normalize to a zero value. The field implementation may optionally normalize the input, but this should not be relied upon.
Referenced by secp256k1_fe_equal_var(), secp256k1_fe_inv_var(), secp256k1_gej_add_ge_var(), secp256k1_gej_add_var(), and secp256k1_gej_add_zinv_var().
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Set a field element equal to 32-byte big endian value. If successful, the resulting field element is normalized.
Referenced by bench_setup(), random_fe(), random_fe_test(), random_field_element_test(), run_field_convert(), secp256k1_ecdsa_sig_recover(), secp256k1_ecdsa_sig_verify(), secp256k1_eckey_pubkey_parse(), secp256k1_ecmult_gen_blind(), secp256k1_ecmult_gen_context_build(), secp256k1_fe_inv_var(), secp256k1_pubkey_load(), secp256k1_schnorr_sig_recover(), and secp256k1_schnorr_sig_verify().
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Set a field element equal to a small integer. Resulting field element is normalized.
Referenced by run_sqr(), run_sqrt(), secp256k1_ge_is_valid_var(), secp256k1_ge_set_gej(), secp256k1_ge_set_gej_var(), secp256k1_ge_set_xquad_var(), secp256k1_gej_add_ge_var(), secp256k1_gej_add_var(), secp256k1_gej_add_zinv_var(), secp256k1_gej_double_var(), secp256k1_gej_set_ge(), and secp256k1_gej_set_infinity().
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Sets a field element to be the square of another. Requires the input's magnitude to be at most 8. The output magnitude is 1 (but not guaranteed to be normalized).
Referenced by bench_field_sqr(), ge_equals_gej(), random_group_element_jacobian_test(), run_point_times_order(), run_sqr(), run_sqrt(), secp256k1_fe_inv(), secp256k1_fe_sqrt_var(), secp256k1_ge_is_valid_var(), secp256k1_ge_set_gej(), secp256k1_ge_set_gej_var(), secp256k1_ge_set_gej_zinv(), secp256k1_ge_set_xquad_var(), secp256k1_gej_add_ge(), secp256k1_gej_add_ge_var(), secp256k1_gej_add_var(), secp256k1_gej_add_zinv_var(), secp256k1_gej_double_var(), secp256k1_gej_eq_x_var(), secp256k1_gej_is_valid_var(), secp256k1_gej_rescale(), test_ge(), and test_group_decompress().
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If a has a square root, it is computed in r and 1 is returned. If a does not have a square root, the root of its negation is computed and 0 is returned. The input's magnitude can be at most 8. The output magnitude is 1 (but not guaranteed to be normalized). The result in r will always be a square itself.
Referenced by bench_field_sqrt_var(), random_fe_non_square(), secp256k1_ge_set_xquad_var(), test_group_decompress(), and test_sqrt().
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If flag is true, set *r equal to *a; otherwise leave it. Constant-time.
Referenced by run_field_misc(), and secp256k1_ge_storage_cmov().
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Convert a field element to the storage type.
Referenced by run_field_convert(), run_field_misc(), and secp256k1_ge_to_storage().