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https://github.com/hashcat/hashcat.git
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Added the execution time of the running kernel to the status display
This commit is contained in:
parent
acbae91750
commit
9fc360e39d
@ -68,6 +68,10 @@ File.: Host
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Desc.: Implemented a new feature that allows to quit at next restore point update (and disable it)
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Issue: 10
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Type.: Feature
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File.: Host
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Desc.: Added the execution time of the running kernel to the status display
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Type.: Feature
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File.: Host
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Desc.: Moved rules_optimize to hashcat-utils
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@ -59,6 +59,8 @@ typedef cl_int (*OCL_CLGETKERNELWORKGROUPINFO) (cl_kernel, cl_device_id, c
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typedef cl_int (*OCL_CLGETPROGRAMBUILDINFO) (cl_program, cl_device_id, cl_program_build_info, size_t, void *, size_t *);
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typedef cl_int (*OCL_CLGETPROGRAMINFO) (cl_program, cl_program_info, size_t, void *, size_t *);
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typedef cl_int (*OCL_CLGETEVENTINFO) (cl_event, cl_event_info, size_t, void *, size_t *);
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typedef cl_int (*OCL_CLWAITFOREVENTS) (cl_uint, const cl_event *);
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typedef cl_int (*OCL_CLGETEVENTPROFILINGINFO) (cl_event, cl_profiling_info, size_t, void *, size_t *);
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typedef struct
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{
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@ -94,6 +96,8 @@ typedef struct
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OCL_CLRELEASEMEMOBJECT clReleaseMemObject;
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OCL_CLRELEASEPROGRAM clReleaseProgram;
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OCL_CLSETKERNELARG clSetKernelArg;
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OCL_CLWAITFOREVENTS clWaitForEvents;
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OCL_CLGETEVENTPROFILINGINFO clGetEventProfilingInfo;
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} hc_opencl_lib_t;
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@ -133,4 +137,7 @@ void hc_clGetKernelWorkGroupInfo (OCL_PTR *ocl, cl_kernel kernel, cl_device_id d
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cl_int hc_clGetProgramBuildInfo (OCL_PTR *ocl, cl_program program, cl_device_id device, cl_program_build_info param_name, size_t param_value_size, void *param_value, size_t *param_value_size_ret);
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void hc_clGetProgramInfo (OCL_PTR *ocl, cl_program program, cl_program_info param_name, size_t param_value_size, void *param_value, size_t * param_value_size_ret);
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void hc_clGetEventInfo (OCL_PTR *ocl, cl_event event, cl_event_info param_name, size_t param_value_size, void *param_value, size_t *param_value_size_ret);
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void hc_clWaitForEvents (OCL_PTR *ocl, cl_uint num_events, const cl_event *event_list);
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void hc_clGetEventProfilingInfo (OCL_PTR *ocl, cl_event event, cl_profiling_info param_name, size_t param_value_size, void *param_value, size_t *param_value_size_ret);
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#endif
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@ -831,6 +831,8 @@ struct __hc_device_param
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cl_device_id device;
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cl_device_type device_type;
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cl_event event;
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uint device_id;
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uint platform_devices_id; // for mapping with hms devices
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@ -112,6 +112,8 @@ int ocl_init (OCL_PTR *ocl)
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HC_LOAD_FUNC(ocl, clReleaseMemObject, OCL_CLRELEASEMEMOBJECT, OpenCL, 1)
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HC_LOAD_FUNC(ocl, clReleaseProgram, OCL_CLRELEASEPROGRAM, OpenCL, 1)
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HC_LOAD_FUNC(ocl, clSetKernelArg, OCL_CLSETKERNELARG, OpenCL, 1)
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HC_LOAD_FUNC(ocl, clWaitForEvents, OCL_CLWAITFOREVENTS, OpenCL, 1)
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HC_LOAD_FUNC(ocl, clGetEventProfilingInfo, OCL_CLGETEVENTPROFILINGINFO, OpenCL, 1)
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return 0;
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}
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@ -582,3 +584,27 @@ void hc_clGetProgramInfo (OCL_PTR *ocl, cl_program program, cl_program_info para
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exit (-1);
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}
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}
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void hc_clWaitForEvents (OCL_PTR *ocl, cl_uint num_events, const cl_event *event_list)
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{
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cl_int CL_err = ocl->clWaitForEvents (num_events, event_list);
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if (CL_err != CL_SUCCESS)
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{
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log_error ("ERROR: %s : %d : %s\n", "clWaitForEvents()", CL_err, val2cstr_cl (CL_err));
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exit (-1);
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}
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}
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void hc_clGetEventProfilingInfo (OCL_PTR *ocl, cl_event event, cl_profiling_info param_name, size_t param_value_size, void *param_value, size_t *param_value_size_ret)
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{
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cl_int CL_err = ocl->clGetEventProfilingInfo (event, param_name, param_value_size, param_value, param_value_size_ret);
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if (CL_err != CL_SUCCESS)
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{
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log_error ("ERROR: %s : %d : %s\n", "clGetEventProfilingInfo()", CL_err, val2cstr_cl (CL_err));
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exit (-1);
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}
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}
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127
src/oclHashcat.c
127
src/oclHashcat.c
@ -777,6 +777,31 @@ void status_display_automat ()
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fprintf (out, "%llu\t%f\t", (unsigned long long int) speed_cnt, speed_ms);
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}
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/**
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* exec time
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*/
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fprintf (out, "EXEC_RUNTIME\t");
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for (uint device_id = 0; device_id < data.devices_cnt; device_id++)
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{
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hc_device_param_t *device_param = &data.devices_param[device_id];
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if (device_param->skipped) continue;
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if (device_param->event == NULL) continue;
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cl_ulong time_start;
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cl_ulong time_end;
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hc_clGetEventProfilingInfo (data.ocl, device_param->event, CL_PROFILING_COMMAND_START, sizeof (time_start), &time_start, NULL);
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hc_clGetEventProfilingInfo (data.ocl, device_param->event, CL_PROFILING_COMMAND_END, sizeof (time_end), &time_end, NULL);
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const double total_time = (time_end - time_start) / 1000000.0;
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fprintf (out, "%f\t", total_time);
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}
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/**
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* words_cur
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*/
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@ -874,6 +899,10 @@ void status_display_automat ()
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}
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#endif // HAVE_HWMON
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/**
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* flush
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*/
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#ifdef _WIN
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fputc ('\r', out);
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fputc ('\n', out);
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@ -1157,6 +1186,31 @@ void status_display ()
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}
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}
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/**
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* exec time
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*/
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double exec_runtime_ms[DEVICES_MAX] = { 0 };
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for (uint device_id = 0; device_id < data.devices_cnt; device_id++)
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{
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hc_device_param_t *device_param = &data.devices_param[device_id];
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if (device_param->skipped) continue;
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if (device_param->event == NULL) continue;
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cl_ulong time_start;
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cl_ulong time_end;
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hc_clGetEventProfilingInfo (data.ocl, device_param->event, CL_PROFILING_COMMAND_START, sizeof (time_start), &time_start, NULL);
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hc_clGetEventProfilingInfo (data.ocl, device_param->event, CL_PROFILING_COMMAND_END, sizeof (time_end), &time_end, NULL);
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const double total_time = (time_end - time_start) / 1000000.0;
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exec_runtime_ms[device_id] = total_time;
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}
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/**
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* timers
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*/
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@ -1375,7 +1429,7 @@ void status_display ()
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format_speed_display (hashes_dev_ms[device_id] * 1000, display_dev_cur, sizeof (display_dev_cur));
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log_info ("Speed.Dev.#%d...: %9sH/s", device_id + 1, display_dev_cur);
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log_info ("Speed.Dev.#%d...: %9sH/s (%0.2fms)", device_id + 1, display_dev_cur, exec_runtime_ms[device_id]);
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}
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char display_all_cur[16] = { 0 };
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@ -1621,6 +1675,31 @@ static void status_benchmark ()
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}
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}
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/**
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* exec time
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*/
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double exec_runtime_ms[DEVICES_MAX] = { 0 };
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for (uint device_id = 0; device_id < data.devices_cnt; device_id++)
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{
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hc_device_param_t *device_param = &data.devices_param[device_id];
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if (device_param->skipped) continue;
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if (device_param->event == NULL) continue;
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cl_ulong time_start;
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cl_ulong time_end;
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hc_clGetEventProfilingInfo (data.ocl, device_param->event, CL_PROFILING_COMMAND_START, sizeof (time_start), &time_start, NULL);
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hc_clGetEventProfilingInfo (data.ocl, device_param->event, CL_PROFILING_COMMAND_END, sizeof (time_end), &time_end, NULL);
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const double total_time = (time_end - time_start) / 1000000.0;
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exec_runtime_ms[device_id] = total_time;
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}
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for (uint device_id = 0; device_id < data.devices_cnt; device_id++)
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{
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hc_device_param_t *device_param = &data.devices_param[device_id];
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@ -1633,7 +1712,7 @@ static void status_benchmark ()
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format_speed_display (hashes_dev_ms[device_id] * 1000, display_dev_cur, sizeof (display_dev_cur));
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log_info ("Speed.Dev.#%d.: %9sH/s", device_id + 1, display_dev_cur);
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log_info ("Speed.Dev.#%d.: %9sH/s (%0.2fms)", device_id + 1, display_dev_cur, exec_runtime_ms[device_id]);
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}
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char display_all_cur[16] = { 0 };
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@ -2379,7 +2458,7 @@ static float find_kernel_blocks_div (const u64 total_left, const uint kernel_blo
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return kernel_blocks_div;
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}
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static void run_kernel (const uint kern_run, hc_device_param_t *device_param, const uint num)
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static void run_kernel (const uint kern_run, hc_device_param_t *device_param, const uint num, const uint event_update)
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{
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uint num_elements = num;
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@ -2413,31 +2492,37 @@ static void run_kernel (const uint kern_run, hc_device_param_t *device_param, co
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hc_clSetKernelArg (data.ocl, kernel, 30, sizeof (cl_uint), device_param->kernel_params[30]);
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hc_clSetKernelArg (data.ocl, kernel, 31, sizeof (cl_uint), device_param->kernel_params[31]);
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cl_event event;
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if ((data.opts_type & OPTS_TYPE_PT_BITSLICE) && (data.attack_mode == ATTACK_MODE_BF))
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{
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const size_t global_work_size[3] = { num_elements, 32, 1 };
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const size_t local_work_size[3] = { kernel_threads / 32, 32, 1 };
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hc_clEnqueueNDRangeKernel (data.ocl, device_param->command_queue, kernel, 2, NULL, global_work_size, local_work_size, 0, NULL, NULL, true);
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hc_clEnqueueNDRangeKernel (data.ocl, device_param->command_queue, kernel, 2, NULL, global_work_size, local_work_size, 0, NULL, &event, true);
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}
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else
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{
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const size_t global_work_size[3] = { num_elements, 1, 1 };
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const size_t local_work_size[3] = { kernel_threads, 1, 1 };
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const cl_int rc = hc_clEnqueueNDRangeKernel (data.ocl, device_param->command_queue, kernel, 1, NULL, global_work_size, local_work_size, 0, NULL, NULL, false);
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const cl_int rc = hc_clEnqueueNDRangeKernel (data.ocl, device_param->command_queue, kernel, 1, NULL, global_work_size, local_work_size, 0, NULL, &event, false);
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if (rc != CL_SUCCESS)
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{
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const size_t local_work_size_fallback[3] = { 1, 1, 1 };
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hc_clEnqueueNDRangeKernel (data.ocl, device_param->command_queue, kernel, 1, NULL, global_work_size, local_work_size_fallback, 0, NULL, NULL, true);
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hc_clEnqueueNDRangeKernel (data.ocl, device_param->command_queue, kernel, 1, NULL, global_work_size, local_work_size_fallback, 0, NULL, &event, true);
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}
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}
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hc_clFlush (data.ocl, device_param->command_queue);
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hc_clFinish (data.ocl, device_param->command_queue);
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//hc_clFinish (data.ocl, device_param->command_queue);
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hc_clWaitForEvents (data.ocl, 1, &event);
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if (event_update) device_param->event = event;
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}
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static void run_kernel_mp (const uint kern_run, hc_device_param_t *device_param, const uint num)
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@ -2936,26 +3021,26 @@ static void run_cracker (hc_device_param_t *device_param, const uint pw_cnt, con
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if (highest_pw_len < 16)
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{
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run_kernel (KERN_RUN_1, device_param, pws_cnt);
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run_kernel (KERN_RUN_1, device_param, pws_cnt, true);
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}
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else if (highest_pw_len < 32)
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{
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run_kernel (KERN_RUN_2, device_param, pws_cnt);
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run_kernel (KERN_RUN_2, device_param, pws_cnt, true);
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}
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else
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{
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run_kernel (KERN_RUN_3, device_param, pws_cnt);
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run_kernel (KERN_RUN_3, device_param, pws_cnt, true);
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}
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}
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else
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{
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run_kernel_amp (device_param, pws_cnt);
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run_kernel (KERN_RUN_1, device_param, pws_cnt);
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run_kernel (KERN_RUN_1, device_param, pws_cnt, false);
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if (data.opts_type & OPTS_TYPE_HOOK12)
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{
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run_kernel (KERN_RUN_12, device_param, pws_cnt);
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run_kernel (KERN_RUN_12, device_param, pws_cnt, false);
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}
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uint iter = salt_buf->salt_iter;
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@ -2969,7 +3054,7 @@ static void run_cracker (hc_device_param_t *device_param, const uint pw_cnt, con
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device_param->kernel_params_buf32[25] = loop_pos;
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device_param->kernel_params_buf32[26] = loop_left;
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run_kernel (KERN_RUN_2, device_param, pws_cnt);
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run_kernel (KERN_RUN_2, device_param, pws_cnt, true);
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if (data.devices_status == STATUS_STOP_AT_CHECKPOINT) check_checkpoint ();
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@ -2980,7 +3065,7 @@ static void run_cracker (hc_device_param_t *device_param, const uint pw_cnt, con
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if (data.opts_type & OPTS_TYPE_HOOK23)
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{
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run_kernel (KERN_RUN_23, device_param, pws_cnt);
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run_kernel (KERN_RUN_23, device_param, pws_cnt, false);
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hc_clEnqueueReadBuffer (data.ocl, device_param->command_queue, device_param->d_hooks, CL_TRUE, 0, device_param->size_hooks, device_param->hooks_buf, 0, NULL, NULL);
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@ -2989,7 +3074,7 @@ static void run_cracker (hc_device_param_t *device_param, const uint pw_cnt, con
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hc_clEnqueueWriteBuffer (data.ocl, device_param->command_queue, device_param->d_hooks, CL_TRUE, 0, device_param->size_hooks, device_param->hooks_buf, 0, NULL, NULL);
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}
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run_kernel (KERN_RUN_3, device_param, pws_cnt);
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run_kernel (KERN_RUN_3, device_param, pws_cnt, false);
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}
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if (data.devices_status == STATUS_STOP_AT_CHECKPOINT) check_checkpoint ();
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@ -4647,11 +4732,11 @@ static void weak_hash_check (hc_device_param_t *device_param, const uint salt_po
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if (data.attack_exec == ATTACK_EXEC_INSIDE_KERNEL)
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{
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run_kernel (KERN_RUN_1, device_param, 1);
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run_kernel (KERN_RUN_1, device_param, 1, false);
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}
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else
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{
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run_kernel (KERN_RUN_1, device_param, 1);
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run_kernel (KERN_RUN_1, device_param, 1, false);
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const uint iter = salt_buf->salt_iter;
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@ -4664,10 +4749,10 @@ static void weak_hash_check (hc_device_param_t *device_param, const uint salt_po
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device_param->kernel_params_buf32[25] = loop_pos;
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device_param->kernel_params_buf32[26] = loop_left;
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run_kernel (KERN_RUN_2, device_param, 1);
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run_kernel (KERN_RUN_2, device_param, 1, false);
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}
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run_kernel (KERN_RUN_3, device_param, 1);
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run_kernel (KERN_RUN_3, device_param, 1, false);
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}
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/**
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@ -5924,7 +6009,7 @@ int main (int argc, char **argv)
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return (-1);
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}
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if (kernel_accel > 800)
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if (kernel_accel > 1024)
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{
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log_error ("ERROR: Invalid kernel-accel specified");
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@ -13469,7 +13554,7 @@ int main (int argc, char **argv)
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// not supported with NV
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// device_param->command_queue = hc_clCreateCommandQueueWithProperties (device_param->context, device_param->device, NULL);
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device_param->command_queue = hc_clCreateCommandQueue (data.ocl, device_param->context, device_param->device, 0);
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device_param->command_queue = hc_clCreateCommandQueue (data.ocl, device_param->context, device_param->device, CL_QUEUE_PROFILING_ENABLE);
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/**
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* create input buffers on device
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