2019-01-31 15:42:52 +00:00
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/**
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* Author......: See docs/credits.txt
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* License.....: MIT
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*/
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#include <inttypes.h>
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#include "common.h"
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#include "types.h"
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#include "modules.h"
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#include "bitops.h"
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#include "convert.h"
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#include "shared.h"
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static const u32 ATTACK_EXEC = ATTACK_EXEC_OUTSIDE_KERNEL;
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static const u32 DGST_POS0 = 0;
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static const u32 DGST_POS1 = 1;
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static const u32 DGST_POS2 = 2;
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static const u32 DGST_POS3 = 3;
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static const u32 DGST_SIZE = DGST_SIZE_4_8;
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static const u32 HASH_CATEGORY = HASH_CATEGORY_PASSWORD_MANAGER;
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static const char *HASH_NAME = "Ethereum Wallet, SCRYPT";
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static const u64 KERN_TYPE = 15700;
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static const u32 OPTI_TYPE = OPTI_TYPE_ZERO_BYTE;
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2019-02-12 15:02:27 +00:00
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static const u64 OPTS_TYPE = OPTS_TYPE_PT_GENERATE_LE
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2019-01-31 15:42:52 +00:00
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static const u32 SALT_TYPE = SALT_TYPE_EMBEDDED;
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static const char *ST_PASS = NULL; // the self-test is disabled, because the original scrypt settings would create a too long startup time
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static const char *ST_HASH = "$ethereum$s*262144*8*1*3134313837333434333838303231333633373433323633373534333136363537*73da7f80ec3bd4f2a128c3a815cfb4d576ecb1a9b47024c902e62ea926f7795b*910e0f8dc1f7ba41959e1089bb769f3e919109591913cc33ba03953d7a905efd";
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u32 module_attack_exec (MAYBE_UNUSED const hashconfig_t *hashconfig, MAYBE_UNUSED const user_options_t *user_options, MAYBE_UNUSED const user_options_extra_t *user_options_extra) { return ATTACK_EXEC; }
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u32 module_dgst_pos0 (MAYBE_UNUSED const hashconfig_t *hashconfig, MAYBE_UNUSED const user_options_t *user_options, MAYBE_UNUSED const user_options_extra_t *user_options_extra) { return DGST_POS0; }
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u32 module_dgst_pos1 (MAYBE_UNUSED const hashconfig_t *hashconfig, MAYBE_UNUSED const user_options_t *user_options, MAYBE_UNUSED const user_options_extra_t *user_options_extra) { return DGST_POS1; }
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u32 module_dgst_pos2 (MAYBE_UNUSED const hashconfig_t *hashconfig, MAYBE_UNUSED const user_options_t *user_options, MAYBE_UNUSED const user_options_extra_t *user_options_extra) { return DGST_POS2; }
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u32 module_dgst_pos3 (MAYBE_UNUSED const hashconfig_t *hashconfig, MAYBE_UNUSED const user_options_t *user_options, MAYBE_UNUSED const user_options_extra_t *user_options_extra) { return DGST_POS3; }
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u32 module_dgst_size (MAYBE_UNUSED const hashconfig_t *hashconfig, MAYBE_UNUSED const user_options_t *user_options, MAYBE_UNUSED const user_options_extra_t *user_options_extra) { return DGST_SIZE; }
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u32 module_hash_category (MAYBE_UNUSED const hashconfig_t *hashconfig, MAYBE_UNUSED const user_options_t *user_options, MAYBE_UNUSED const user_options_extra_t *user_options_extra) { return HASH_CATEGORY; }
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const char *module_hash_name (MAYBE_UNUSED const hashconfig_t *hashconfig, MAYBE_UNUSED const user_options_t *user_options, MAYBE_UNUSED const user_options_extra_t *user_options_extra) { return HASH_NAME; }
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u64 module_kern_type (MAYBE_UNUSED const hashconfig_t *hashconfig, MAYBE_UNUSED const user_options_t *user_options, MAYBE_UNUSED const user_options_extra_t *user_options_extra) { return KERN_TYPE; }
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u32 module_opti_type (MAYBE_UNUSED const hashconfig_t *hashconfig, MAYBE_UNUSED const user_options_t *user_options, MAYBE_UNUSED const user_options_extra_t *user_options_extra) { return OPTI_TYPE; }
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u64 module_opts_type (MAYBE_UNUSED const hashconfig_t *hashconfig, MAYBE_UNUSED const user_options_t *user_options, MAYBE_UNUSED const user_options_extra_t *user_options_extra) { return OPTS_TYPE; }
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u32 module_salt_type (MAYBE_UNUSED const hashconfig_t *hashconfig, MAYBE_UNUSED const user_options_t *user_options, MAYBE_UNUSED const user_options_extra_t *user_options_extra) { return SALT_TYPE; }
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const char *module_st_hash (MAYBE_UNUSED const hashconfig_t *hashconfig, MAYBE_UNUSED const user_options_t *user_options, MAYBE_UNUSED const user_options_extra_t *user_options_extra) { return ST_HASH; }
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const char *module_st_pass (MAYBE_UNUSED const hashconfig_t *hashconfig, MAYBE_UNUSED const user_options_t *user_options, MAYBE_UNUSED const user_options_extra_t *user_options_extra) { return ST_PASS; }
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typedef struct ethereum_scrypt
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{
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u32 salt_buf[16];
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u32 ciphertext[8];
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} ethereum_scrypt_t;
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// limit scrypt accel otherwise we hurt ourself when calculating the scrypt tmto
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// 16 is actually a bit low, we may need to change this depending on user response
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static const char *SIGNATURE_ETHEREUM_SCRYPT = "$ethereum$s";
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static const u32 SCRYPT_MAX_ACCEL = 16;
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static const u32 SCRYPT_MAX_THREADS = 1;
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u32 module_kernel_accel_min (MAYBE_UNUSED const hashconfig_t *hashconfig, MAYBE_UNUSED const user_options_t *user_options, MAYBE_UNUSED const user_options_extra_t *user_options_extra)
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{
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const u32 kernel_accel_min = 1;
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return kernel_accel_min;
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}
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u32 module_kernel_accel_max (MAYBE_UNUSED const hashconfig_t *hashconfig, MAYBE_UNUSED const user_options_t *user_options, MAYBE_UNUSED const user_options_extra_t *user_options_extra)
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{
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const u32 kernel_accel_max = (user_options->kernel_accel_chgd == true) ? user_options->kernel_accel : SCRYPT_MAX_ACCEL;
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return kernel_accel_max;
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}
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u32 module_kernel_loops_min (MAYBE_UNUSED const hashconfig_t *hashconfig, MAYBE_UNUSED const user_options_t *user_options, MAYBE_UNUSED const user_options_extra_t *user_options_extra)
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{
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const u32 kernel_loops_min = 1;
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return kernel_loops_min;
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}
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u32 module_kernel_loops_max (MAYBE_UNUSED const hashconfig_t *hashconfig, MAYBE_UNUSED const user_options_t *user_options, MAYBE_UNUSED const user_options_extra_t *user_options_extra)
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{
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const u32 kernel_loops_max = 1;
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return kernel_loops_max;
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}
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u32 module_kernel_threads_min (MAYBE_UNUSED const hashconfig_t *hashconfig, MAYBE_UNUSED const user_options_t *user_options, MAYBE_UNUSED const user_options_extra_t *user_options_extra)
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{
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const u32 kernel_threads_min = 1;
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return kernel_threads_min;
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}
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u32 module_kernel_threads_max (MAYBE_UNUSED const hashconfig_t *hashconfig, MAYBE_UNUSED const user_options_t *user_options, MAYBE_UNUSED const user_options_extra_t *user_options_extra)
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{
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// limit scrypt accel otherwise we hurt ourself when calculating the scrypt tmto
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// 16 is actually a bit low, we may need to change this depending on user response
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const u32 kernel_threads_max = (user_options->kernel_threads_chgd == true) ? user_options->kernel_threads : SCRYPT_MAX_THREADS;
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return kernel_threads_max;
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}
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u64 module_esalt_size (MAYBE_UNUSED const hashconfig_t *hashconfig, MAYBE_UNUSED const user_options_t *user_options, MAYBE_UNUSED const user_options_extra_t *user_options_extra)
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{
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const u64 esalt_size = (const u64) sizeof (ethereum_scrypt_t);
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return esalt_size;
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}
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u32 module_pw_max (MAYBE_UNUSED const hashconfig_t *hashconfig, MAYBE_UNUSED const user_options_t *user_options, MAYBE_UNUSED const user_options_extra_t *user_options_extra)
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{
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// this overrides the reductions of PW_MAX in case optimized kernel is selected
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// IOW, even in optimized kernel mode it support length 256
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const u32 pw_max = PW_MAX;
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return pw_max;
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}
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u64 module_extra_buffer_size (MAYBE_UNUSED const hashconfig_t *hashconfig, MAYBE_UNUSED const user_options_t *user_options, MAYBE_UNUSED const user_options_extra_t *user_options_extra, MAYBE_UNUSED const hashes_t *hashes, MAYBE_UNUSED const hc_device_param_t *device_param)
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{
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// we need to set the self-test hash settings to pass the self-test
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// the decoder for the self-test is called after this function
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const u32 scrypt_N = (hashes->salts_buf[0].scrypt_N) ? hashes->salts_buf[0].scrypt_N : 262144;
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const u32 scrypt_r = (hashes->salts_buf[0].scrypt_r) ? hashes->salts_buf[0].scrypt_r : 8;
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//const u32 scrypt_p = (hashes->salts_buf[0].scrypt_p) ? hashes->salts_buf[0].scrypt_p : 1;
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const u64 kernel_power_max = device_param->device_processors * hashconfig->kernel_threads_max * hashconfig->kernel_accel_max;
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u32 tmto_start = 1;
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u32 tmto_stop = 6;
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if (user_options->scrypt_tmto)
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{
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tmto_start = user_options->scrypt_tmto;
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tmto_stop = user_options->scrypt_tmto;
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}
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// size_pws
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const u64 size_pws = kernel_power_max * sizeof (pw_t);
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const u64 size_pws_amp = size_pws;
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// size_pws_comp
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const u64 size_pws_comp = kernel_power_max * (sizeof (u32) * 64);
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// size_pws_idx
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const u64 size_pws_idx = (kernel_power_max + 1) * sizeof (pw_idx_t);
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// size_tmps
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const u64 size_tmps = kernel_power_max * hashconfig->tmp_size;
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// size_hooks
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const u64 size_hooks = kernel_power_max * hashconfig->hook_size;
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const u64 scrypt_extra_space
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= device_param->size_bfs
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+ device_param->size_combs
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+ device_param->size_digests
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+ device_param->size_esalts
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+ device_param->size_markov_css
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+ device_param->size_plains
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+ device_param->size_results
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+ device_param->size_root_css
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+ device_param->size_rules
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+ device_param->size_rules_c
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+ device_param->size_salts
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+ device_param->size_shown
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+ device_param->size_tm
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+ device_param->size_st_digests
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+ device_param->size_st_salts
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+ device_param->size_st_esalts
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+ size_pws
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+ size_pws_amp
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+ size_pws_comp
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+ size_pws_idx
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+ size_tmps
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+ size_hooks;
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bool not_enough_memory = true;
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u64 size_scrypt = 0;
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u32 tmto;
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for (tmto = tmto_start; tmto <= tmto_stop; tmto++)
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{
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size_scrypt = (128 * scrypt_r) * scrypt_N;
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size_scrypt /= 1u << tmto;
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size_scrypt *= kernel_power_max;
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if ((size_scrypt / 4) > device_param->device_maxmem_alloc) continue;
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if ((size_scrypt + scrypt_extra_space) > device_param->device_available_mem) continue;
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not_enough_memory = false;
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break;
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}
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if (not_enough_memory == true) return -1;
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return size_scrypt;
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}
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u64 module_tmp_size (MAYBE_UNUSED const hashconfig_t *hashconfig, MAYBE_UNUSED const user_options_t *user_options, MAYBE_UNUSED const user_options_extra_t *user_options_extra)
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{
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const u64 tmp_size = 0; // we'll add some later
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return tmp_size;
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}
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u64 module_extra_tmp_size (MAYBE_UNUSED const hashconfig_t *hashconfig, MAYBE_UNUSED const user_options_t *user_options, MAYBE_UNUSED const user_options_extra_t *user_options_extra, MAYBE_UNUSED const hashes_t *hashes)
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{
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// we need to set the self-test hash settings to pass the self-test
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// the decoder for the self-test is called after this function
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const u32 scrypt_N = (hashes->salts_buf[0].scrypt_N) ? hashes->salts_buf[0].scrypt_N : 262144;
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const u32 scrypt_r = (hashes->salts_buf[0].scrypt_r) ? hashes->salts_buf[0].scrypt_r : 8;
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const u32 scrypt_p = (hashes->salts_buf[0].scrypt_p) ? hashes->salts_buf[0].scrypt_p : 1;
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// we need to check that all hashes have the same scrypt settings
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for (u32 i = 1; i < hashes->salts_cnt; i++)
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{
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if ((hashes->salts_buf[i].scrypt_N != scrypt_N)
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|| (hashes->salts_buf[i].scrypt_r != scrypt_r)
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|| (hashes->salts_buf[i].scrypt_p != scrypt_p))
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{
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return -1;
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}
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}
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const u64 tmp_size = (128 * scrypt_r * scrypt_p);
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return tmp_size;
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}
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char *module_jit_build_options (MAYBE_UNUSED const hashconfig_t *hashconfig, MAYBE_UNUSED const user_options_t *user_options, MAYBE_UNUSED const user_options_extra_t *user_options_extra, MAYBE_UNUSED const hashes_t *hashes, MAYBE_UNUSED const hc_device_param_t *device_param)
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{
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const u32 scrypt_N = (hashes->salts_buf[0].scrypt_N) ? hashes->salts_buf[0].scrypt_N : 262144;
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const u32 scrypt_r = (hashes->salts_buf[0].scrypt_r) ? hashes->salts_buf[0].scrypt_r : 8;
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const u32 scrypt_p = (hashes->salts_buf[0].scrypt_p) ? hashes->salts_buf[0].scrypt_p : 1;
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const u64 extra_buffer_size = device_param->extra_buffer_size;
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const u64 kernel_power_max = device_param->device_processors * hashconfig->kernel_threads_max * hashconfig->kernel_accel_max;
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const u64 size_scrypt = (128 * scrypt_r) * scrypt_N;
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const u64 scrypt_tmto_final = (kernel_power_max * size_scrypt) / extra_buffer_size;
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const u64 tmp_size = (128 * scrypt_r) * scrypt_p;
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char *jit_build_options = NULL;
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hc_asprintf (&jit_build_options, "-DSCRYPT_N=%u -DSCRYPT_R=%u -DSCRYPT_P=%u -DSCRYPT_TMTO=%" PRIu64 " -DSCRYPT_TMP_ELEM=%" PRIu64,
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hashes->salts_buf[0].scrypt_N,
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hashes->salts_buf[0].scrypt_r,
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hashes->salts_buf[0].scrypt_p,
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scrypt_tmto_final,
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tmp_size / 16);
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return jit_build_options;
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}
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bool module_unstable_warning (MAYBE_UNUSED const hashconfig_t *hashconfig, MAYBE_UNUSED const user_options_t *user_options, MAYBE_UNUSED const user_options_extra_t *user_options_extra)
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{
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#if defined (__APPLE__)
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return true;
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#endif // __APPLE__
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return false;
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}
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int module_hash_decode (MAYBE_UNUSED const hashconfig_t *hashconfig, MAYBE_UNUSED void *digest_buf, MAYBE_UNUSED salt_t *salt, MAYBE_UNUSED void *esalt_buf, MAYBE_UNUSED void *hook_salt_buf, MAYBE_UNUSED hashinfo_t *hash_info, const char *line_buf, MAYBE_UNUSED const int line_len)
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{
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u32 *digest = (u32 *) digest_buf;
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ethereum_scrypt_t *ethereum_scrypt = (ethereum_scrypt_t *) esalt_buf;
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token_t token;
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token.token_cnt = 7;
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token.signatures_cnt = 1;
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token.signatures_buf[0] = SIGNATURE_ETHEREUM_SCRYPT;
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token.sep[0] = '*';
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token.len_min[0] = 11;
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token.len_max[0] = 11;
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token.attr[0] = TOKEN_ATTR_VERIFY_LENGTH
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| TOKEN_ATTR_VERIFY_SIGNATURE;
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token.sep[1] = '*';
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token.len_min[1] = 1;
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token.len_max[1] = 6;
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token.attr[1] = TOKEN_ATTR_VERIFY_LENGTH
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| TOKEN_ATTR_VERIFY_DIGIT;
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token.sep[2] = '*';
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token.len_min[2] = 1;
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token.len_max[2] = 6;
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token.attr[2] = TOKEN_ATTR_VERIFY_LENGTH
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| TOKEN_ATTR_VERIFY_DIGIT;
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token.sep[3] = '*';
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token.len_min[3] = 1;
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token.len_max[3] = 6;
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token.attr[3] = TOKEN_ATTR_VERIFY_LENGTH
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| TOKEN_ATTR_VERIFY_DIGIT;
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token.sep[4] = '*';
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token.len_min[4] = 64;
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token.len_max[4] = 64;
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token.attr[4] = TOKEN_ATTR_VERIFY_LENGTH
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| TOKEN_ATTR_VERIFY_HEX;
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token.sep[5] = '*';
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token.len_min[5] = 64;
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token.len_max[5] = 64;
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token.attr[5] = TOKEN_ATTR_VERIFY_LENGTH
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| TOKEN_ATTR_VERIFY_HEX;
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token.sep[6] = '*';
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token.len_min[6] = 64;
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token.len_max[6] = 64;
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token.attr[6] = TOKEN_ATTR_VERIFY_LENGTH
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| TOKEN_ATTR_VERIFY_HEX;
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const int rc_tokenizer = input_tokenizer ((const u8 *) line_buf, line_len, &token);
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if (rc_tokenizer != PARSER_OK) return (rc_tokenizer);
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// scrypt settings
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const u8 *scryptN_pos = token.buf[1];
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const u8 *scryptr_pos = token.buf[2];
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const u8 *scryptp_pos = token.buf[3];
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const u32 scrypt_N = hc_strtoul ((const char *) scryptN_pos, NULL, 10);
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const u32 scrypt_r = hc_strtoul ((const char *) scryptr_pos, NULL, 10);
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const u32 scrypt_p = hc_strtoul ((const char *) scryptp_pos, NULL, 10);
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salt->scrypt_N = scrypt_N;
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salt->scrypt_r = scrypt_r;
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salt->scrypt_p = scrypt_p;
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// salt
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const u8 *salt_pos = token.buf[4];
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const int salt_len = token.len[4];
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const bool parse_rc = parse_and_store_generic_salt ((u8 *) salt->salt_buf, (int *) &salt->salt_len, salt_pos, salt_len, hashconfig);
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if (parse_rc == false) return (PARSER_SALT_LENGTH);
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ethereum_scrypt->salt_buf[0] = salt->salt_buf[0];
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ethereum_scrypt->salt_buf[1] = salt->salt_buf[1];
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ethereum_scrypt->salt_buf[2] = salt->salt_buf[2];
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ethereum_scrypt->salt_buf[3] = salt->salt_buf[3];
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ethereum_scrypt->salt_buf[4] = salt->salt_buf[4];
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ethereum_scrypt->salt_buf[5] = salt->salt_buf[5];
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ethereum_scrypt->salt_buf[6] = salt->salt_buf[6];
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ethereum_scrypt->salt_buf[7] = salt->salt_buf[7];
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salt->salt_iter = 1;
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// ciphertext
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const u8 *ciphertext_pos = token.buf[5];
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ethereum_scrypt->ciphertext[0] = hex_to_u32 ((const u8 *) &ciphertext_pos[ 0]);
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ethereum_scrypt->ciphertext[1] = hex_to_u32 ((const u8 *) &ciphertext_pos[ 8]);
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ethereum_scrypt->ciphertext[2] = hex_to_u32 ((const u8 *) &ciphertext_pos[16]);
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ethereum_scrypt->ciphertext[3] = hex_to_u32 ((const u8 *) &ciphertext_pos[24]);
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ethereum_scrypt->ciphertext[4] = hex_to_u32 ((const u8 *) &ciphertext_pos[32]);
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ethereum_scrypt->ciphertext[5] = hex_to_u32 ((const u8 *) &ciphertext_pos[40]);
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ethereum_scrypt->ciphertext[6] = hex_to_u32 ((const u8 *) &ciphertext_pos[48]);
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ethereum_scrypt->ciphertext[7] = hex_to_u32 ((const u8 *) &ciphertext_pos[56]);
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// hash
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const u8 *hash_pos = token.buf[6];
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digest[0] = hex_to_u32 ((const u8 *) &hash_pos[ 0]);
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digest[1] = hex_to_u32 ((const u8 *) &hash_pos[ 8]);
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digest[2] = hex_to_u32 ((const u8 *) &hash_pos[16]);
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digest[3] = hex_to_u32 ((const u8 *) &hash_pos[24]);
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digest[4] = hex_to_u32 ((const u8 *) &hash_pos[32]);
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digest[5] = hex_to_u32 ((const u8 *) &hash_pos[40]);
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digest[6] = hex_to_u32 ((const u8 *) &hash_pos[48]);
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digest[7] = hex_to_u32 ((const u8 *) &hash_pos[56]);
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return (PARSER_OK);
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}
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int module_hash_encode (MAYBE_UNUSED const hashconfig_t *hashconfig, MAYBE_UNUSED const void *digest_buf, MAYBE_UNUSED const salt_t *salt, MAYBE_UNUSED const void *esalt_buf, MAYBE_UNUSED const void *hook_salt_buf, MAYBE_UNUSED const hashinfo_t *hash_info, char *line_buf, MAYBE_UNUSED const int line_size)
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{
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const u32 *digest = (const u32 *) digest_buf;
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char *salt_ptr = (char *) salt->salt_buf;
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u8 tmp_buf[128];
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for (u32 i = 0, j = 0; i < salt->salt_len; i += 1, j += 2)
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{
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u8_to_hex (salt_ptr[i], tmp_buf + j);
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}
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tmp_buf[salt->salt_len * 2] = 0;
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ethereum_scrypt_t *ethereum_scrypt = (ethereum_scrypt_t *) esalt_buf;
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const int line_len = snprintf (line_buf, line_size, "%s*%u*%u*%u*%s*%08x%08x%08x%08x%08x%08x%08x%08x*%08x%08x%08x%08x%08x%08x%08x%08x",
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SIGNATURE_ETHEREUM_SCRYPT,
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salt->scrypt_N,
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salt->scrypt_r,
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salt->scrypt_p,
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(char *) tmp_buf,
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byte_swap_32 (ethereum_scrypt->ciphertext[0]),
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byte_swap_32 (ethereum_scrypt->ciphertext[1]),
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byte_swap_32 (ethereum_scrypt->ciphertext[2]),
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byte_swap_32 (ethereum_scrypt->ciphertext[3]),
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byte_swap_32 (ethereum_scrypt->ciphertext[4]),
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byte_swap_32 (ethereum_scrypt->ciphertext[5]),
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byte_swap_32 (ethereum_scrypt->ciphertext[6]),
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byte_swap_32 (ethereum_scrypt->ciphertext[7]),
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byte_swap_32 (digest[0]),
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byte_swap_32 (digest[1]),
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byte_swap_32 (digest[2]),
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byte_swap_32 (digest[3]),
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byte_swap_32 (digest[4]),
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byte_swap_32 (digest[5]),
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byte_swap_32 (digest[6]),
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byte_swap_32 (digest[7])
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);
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return line_len;
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}
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void module_init (module_ctx_t *module_ctx)
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{
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module_ctx->module_context_size = MODULE_CONTEXT_SIZE_CURRENT;
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module_ctx->module_interface_version = MODULE_INTERFACE_VERSION_CURRENT;
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module_ctx->module_attack_exec = module_attack_exec;
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module_ctx->module_benchmark_esalt = MODULE_DEFAULT;
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module_ctx->module_benchmark_hook_salt = MODULE_DEFAULT;
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module_ctx->module_benchmark_mask = MODULE_DEFAULT;
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module_ctx->module_benchmark_salt = MODULE_DEFAULT;
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module_ctx->module_build_plain_postprocess = MODULE_DEFAULT;
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module_ctx->module_deep_comp_kernel = MODULE_DEFAULT;
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module_ctx->module_dgst_pos0 = module_dgst_pos0;
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module_ctx->module_dgst_pos1 = module_dgst_pos1;
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module_ctx->module_dgst_pos2 = module_dgst_pos2;
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module_ctx->module_dgst_pos3 = module_dgst_pos3;
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module_ctx->module_dgst_size = module_dgst_size;
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module_ctx->module_dictstat_disable = MODULE_DEFAULT;
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module_ctx->module_esalt_size = module_esalt_size;
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module_ctx->module_extra_buffer_size = module_extra_buffer_size;
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module_ctx->module_extra_tmp_size = module_extra_tmp_size;
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module_ctx->module_forced_outfile_format = MODULE_DEFAULT;
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module_ctx->module_hash_binary_count = MODULE_DEFAULT;
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module_ctx->module_hash_binary_parse = MODULE_DEFAULT;
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module_ctx->module_hash_binary_save = MODULE_DEFAULT;
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module_ctx->module_hash_decode_outfile = MODULE_DEFAULT;
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module_ctx->module_hash_decode_zero_hash = MODULE_DEFAULT;
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module_ctx->module_hash_decode = module_hash_decode;
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module_ctx->module_hash_encode_status = MODULE_DEFAULT;
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module_ctx->module_hash_encode = module_hash_encode;
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module_ctx->module_hash_init_selftest = MODULE_DEFAULT;
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module_ctx->module_hash_mode = MODULE_DEFAULT;
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module_ctx->module_hash_category = module_hash_category;
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module_ctx->module_hash_name = module_hash_name;
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module_ctx->module_hlfmt_disable = MODULE_DEFAULT;
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module_ctx->module_hook12 = MODULE_DEFAULT;
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module_ctx->module_hook23 = MODULE_DEFAULT;
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module_ctx->module_hook_salt_size = MODULE_DEFAULT;
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module_ctx->module_hook_size = MODULE_DEFAULT;
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module_ctx->module_jit_build_options = module_jit_build_options;
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module_ctx->module_kernel_accel_max = module_kernel_accel_max;
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module_ctx->module_kernel_accel_min = module_kernel_accel_min;
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module_ctx->module_kernel_loops_max = module_kernel_loops_max;
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module_ctx->module_kernel_loops_min = module_kernel_loops_min;
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module_ctx->module_kernel_threads_max = module_kernel_threads_max;
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module_ctx->module_kernel_threads_min = module_kernel_threads_min;
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module_ctx->module_kern_type = module_kern_type;
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2019-02-02 10:11:27 +00:00
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module_ctx->module_kern_type_dynamic = MODULE_DEFAULT;
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2019-01-31 15:42:52 +00:00
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module_ctx->module_opti_type = module_opti_type;
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module_ctx->module_opts_type = module_opts_type;
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module_ctx->module_outfile_check_disable = MODULE_DEFAULT;
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module_ctx->module_outfile_check_nocomp = MODULE_DEFAULT;
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module_ctx->module_potfile_disable = MODULE_DEFAULT;
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module_ctx->module_potfile_keep_all_hashes = MODULE_DEFAULT;
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module_ctx->module_pwdump_column = MODULE_DEFAULT;
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module_ctx->module_pw_max = module_pw_max;
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module_ctx->module_pw_min = MODULE_DEFAULT;
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module_ctx->module_salt_max = MODULE_DEFAULT;
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module_ctx->module_salt_min = MODULE_DEFAULT;
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module_ctx->module_salt_type = module_salt_type;
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module_ctx->module_separator = MODULE_DEFAULT;
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module_ctx->module_st_hash = module_st_hash;
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module_ctx->module_st_pass = module_st_pass;
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module_ctx->module_tmp_size = module_tmp_size;
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module_ctx->module_unstable_warning = module_unstable_warning;
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module_ctx->module_warmup_disable = MODULE_DEFAULT;
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}
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