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PerfMonAuditor.cpp
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1 /***********************************************************************************\
2 * (c) Copyright 1998-2019 CERN for the benefit of the LHCb and ATLAS collaborations *
3 * *
4 * This software is distributed under the terms of the Apache version 2 licence, *
5 * copied verbatim in the file "LICENSE". *
6 * *
7 * In applying this licence, CERN does not waive the privileges and immunities *
8 * granted to it by virtue of its status as an Intergovernmental Organization *
9 * or submit itself to any jurisdiction. *
10 \***********************************************************************************/
11 #include "GaudiKernel/Auditor.h"
12 #include "GaudiKernel/HashMap.h"
15 #include "GaudiKernel/IToolSvc.h"
16 #include "GaudiKernel/MsgStream.h"
17 #include "GaudiKernel/VectorMap.h"
18 
19 /*BEGIN: perfmon*/
20 #include <cstring>
21 #include <fstream>
22 #include <iostream>
23 #include <map>
24 #include <perfmon/pfmlib.h>
25 #include <perfmon/pfmlib_core.h>
27 #include <sstream>
28 #include <string>
29 #include <utility>
30 #include <vector>
31 
32 #include <perfmon/perfmon.h>
34 
36 
38 
39 #include <errno.h>
40 #include <fcntl.h>
41 #include <getopt.h>
42 #include <signal.h>
43 #include <stdarg.h>
44 #include <stdint.h>
45 #include <stdio.h>
46 #include <stdlib.h>
47 #include <string.h>
48 #include <sys/mman.h>
49 #include <sys/ptrace.h>
50 #include <sys/resource.h>
51 #include <sys/time.h>
52 #include <sys/types.h>
53 #include <sys/wait.h>
54 #include <time.h>
55 #include <unistd.h>
56 #include <zlib.h>
57 
58 #include "IgHook_IgHookTrace.h"
59 #include <algorithm>
60 #include <cmath>
61 #include <list>
62 #include <stack>
63 #include <sys/stat.h>
64 
65 // dlopen (link with -ldl)
66 #include <dlfcn.h>
67 
68 #define MAX_EVT_NAME_LEN 256
69 #define NUM_PMCS PFMLIB_MAX_PMCS
70 #define NUM_PMDS PFMLIB_MAX_PMDS
71 #define FMT_NAME PFM_DFL_SMPL_NAME
72 #define BPL ( sizeof( uint64_t ) << 3 )
73 #define LBPL 6
74 
75 #define SYM_NAME_MAX_LENGTH 10000
76 #define MAX_OUTPUT_FILENAME_LENGTH 1024
77 #define MAX_EVENT_NAME_LENGTH 500
78 #define MAX_PREFIX_NAME_LENGTH 1024
79 #define FILENAME_MAX_LENGTH 1024
80 
81 #define MAX_NUMBER_OF_PROGRAMMABLE_COUNTERS 4
82 
83 #define cpuid( func, ax, bx, cx, dx ) \
84  __asm__ __volatile__( "cpuid" : "=a"( ax ), "=b"( bx ), "=c"( cx ), "=d"( dx ) : "a"( func ) );
85 
86 static pfarg_pmd_t pd_smpl[NUM_PMDS];
87 static uint64_t collected_samples, collected_partial;
88 static int ctx_fd;
89 static pfm_dfl_smpl_hdr_t* hdr;
90 static uint64_t ovfl_count;
91 static size_t entry_size;
92 static unsigned int num_smpl_pmds;
94  samples( MAX_NUMBER_OF_PROGRAMMABLE_COUNTERS ); // a map of modules each containing numbers of samples of their
95  // addresses
97  results( MAX_NUMBER_OF_PROGRAMMABLE_COUNTERS ); // a map of modules and their result values across multiple events
98 static uint64_t last_overflow;
99 static uint64_t last_count;
101 
103 /*END: perfmon*/
104 
105 namespace {
107  template <typename T>
108  inline T function_cast( void* p ) {
109  union {
110  void* object;
111  T function;
112  } caster;
113  caster.object = p;
114  return caster.function;
115  }
116  class PFMon {
117  public:
118  bool loaded;
119  typedef void ( *pfm_stop_t )( int );
120  pfm_stop_t pfm_stop{ nullptr };
121  typedef void ( *pfm_self_stop_t )( int );
122  pfm_self_stop_t pfm_self_stop{ nullptr };
123  typedef os_err_t ( *pfm_restart_t )( int );
124  pfm_restart_t pfm_restart{ nullptr };
125  typedef int ( *pfm_read_pmds_t )( int, pfarg_pmd_t*, int );
126  pfm_read_pmds_t pfm_read_pmds{ nullptr };
127  typedef pfm_err_t ( *pfm_initialize_t )();
128  pfm_initialize_t pfm_initialize{ nullptr };
129  typedef pfm_err_t ( *pfm_find_full_event_t )( const char*, pfmlib_event_t* );
130  pfm_find_full_event_t pfm_find_full_event{ nullptr };
131  typedef pfm_err_t ( *pfm_dispatch_events_t )( pfmlib_input_param_t*, void*, pfmlib_output_param_t*, void* );
132  pfm_dispatch_events_t pfm_dispatch_events{ nullptr };
133  typedef os_err_t ( *pfm_create_context_t )( pfarg_ctx_t*, char*, void*, size_t );
134  pfm_create_context_t pfm_create_context{ nullptr };
135  typedef os_err_t ( *pfm_write_pmcs_t )( int, pfarg_pmc_t*, int );
136  pfm_write_pmcs_t pfm_write_pmcs{ nullptr };
137  typedef os_err_t ( *pfm_write_pmds_t )( int, pfarg_pmd_t*, int );
138  pfm_write_pmds_t pfm_write_pmds{ nullptr };
139  typedef os_err_t ( *pfm_load_context_t )( int, pfarg_load_t* );
140  pfm_load_context_t pfm_load_context{ nullptr };
141  typedef os_err_t ( *pfm_start_t )( int fd, pfarg_start_t* );
142  pfm_start_t pfm_start{ nullptr };
143  typedef char* ( *pfm_strerror_t )( int );
144  pfm_strerror_t pfm_strerror{ nullptr };
145  typedef pfm_err_t ( *pfm_set_options_t )( pfmlib_options_t* );
146  pfm_set_options_t pfm_set_options{ nullptr };
147  typedef pfm_err_t ( *pfm_get_num_counters_t )( unsigned int* );
148  pfm_get_num_counters_t pfm_get_num_counters{ nullptr };
149  static PFMon& instance() { return s_instance; }
150 
151  private:
152  // static void failure() { throw 1; }
153 
154  void* handle;
155 
156  PFMon() {
157  handle = dlopen( "libpfm.so", RTLD_NOW );
158  if ( handle ) {
159  loaded = true;
160  } else {
161  loaded = false;
162  }
163  if ( loaded ) {
164  pfm_start = function_cast<pfm_start_t>( dlsym( handle, "pfm_start" ) );
165  pfm_stop = function_cast<pfm_stop_t>( dlsym( handle, "pfm_stop" ) );
166  pfm_self_stop = function_cast<pfm_self_stop_t>( dlsym( handle, "pfm_stop" ) ); // it's the same
167  pfm_restart = function_cast<pfm_restart_t>( dlsym( handle, "pfm_restart" ) );
168  pfm_read_pmds = function_cast<pfm_read_pmds_t>( dlsym( handle, "pfm_read_pmds" ) );
169  pfm_initialize = function_cast<pfm_initialize_t>( dlsym( handle, "pfm_initialize" ) );
170  pfm_find_full_event = function_cast<pfm_find_full_event_t>( dlsym( handle, "pfm_find_full_event" ) );
171  pfm_dispatch_events = function_cast<pfm_dispatch_events_t>( dlsym( handle, "pfm_dispatch_events" ) );
172  pfm_create_context = function_cast<pfm_create_context_t>( dlsym( handle, "pfm_create_context" ) );
173  pfm_write_pmcs = function_cast<pfm_write_pmcs_t>( dlsym( handle, "pfm_write_pmcs" ) );
174  pfm_write_pmds = function_cast<pfm_write_pmds_t>( dlsym( handle, "pfm_write_pmds" ) );
175  pfm_load_context = function_cast<pfm_load_context_t>( dlsym( handle, "pfm_load_context" ) );
176  pfm_strerror = function_cast<pfm_strerror_t>( dlsym( handle, "pfm_strerror" ) );
177  pfm_set_options = function_cast<pfm_set_options_t>( dlsym( handle, "pfm_set_options" ) );
178  pfm_get_num_counters = function_cast<pfm_get_num_counters_t>( dlsym( handle, "pfm_get_num_counters" ) );
179  } else {
180  // pfm_start = pfm_stop = pfm_self_stop = pfm_restart = pfm_read_pmds = pfm_initialize = pfm_find_full_event =
181  // pfm_dispatch_events = pfm_create_context = pfm_write_pmcs = pfm_write_pmds = pfm_load_context = pfm_strerror
182  // = pfm_set_options = pfm_get_num_counters = failure;
183  }
184  }
185  ~PFMon() {
186  if ( handle ) dlclose( handle );
187  }
188 
189  static PFMon s_instance;
190  };
191 
192  PFMon PFMon::s_instance;
193 } // namespace
194 
195 // ============================================================================
196 // GaudiAlg
197 // ============================================================================
198 // ============================================================================
208 class PerfMonAuditor : virtual public Auditor {
209 public:
210  void before( StandardEventType evt, INamedInterface* alg ) override;
211  void after( StandardEventType evt, INamedInterface* alg, const StatusCode& sc ) override;
212  using Auditor::after;
213  using Auditor::before;
214 
215 private:
220 
221 public:
222  StatusCode initialize() override;
223  StatusCode finalize() override;
224  int is_nehalem() {
225 #ifdef __ICC
226 // Disable ICC remark #593: variable "x" was set but never used
227 # pragma warning( push )
228 # pragma warning( disable : 593 )
229 #endif
230  int a, b, c, d;
231  cpuid( 1, a, b, c, d );
232  int sse4_2_mask = 1 << 20;
233  if ( c & sse4_2_mask )
234  return 1;
235  else
236  return 0;
237 #ifdef __ICC
238 # pragma warning( pop )
239 #endif
240  }
241 
242 private:
243  PFMon& m_pfm;
244  /*
245  typedef void (*pfm_stop_t)(int);
246  pfm_stop_t pfm_stop;
247  typedef void (*pfm_self_stop_t)(int);
248  pfm_self_stop_t pfm_self_stop;
249 
250  typedef os_err_t (*pfm_restart_t)(int);
251  pfm_restart_t pfm_restart;
252 
253  //typedef int (*pfm_read_pmds_t)(int, pfarg_pmd_t*, int);
254  //pfm_read_pmds_t pfm_read_pmds;
255 
256  typedef pfm_err_t (*pfm_initialize_t)();
257  pfm_initialize_t pfm_initialize;
258  typedef pfm_err_t (*pfm_find_full_event_t)(const char *, pfmlib_event_t *);
259  pfm_find_full_event_t pfm_find_full_event;
260  typedef pfm_err_t (*pfm_dispatch_events_t)(pfmlib_input_param_t *, void *, pfmlib_output_param_t *, void *);
261  pfm_dispatch_events_t pfm_dispatch_events;
262  typedef os_err_t (*pfm_create_context_t)(pfarg_ctx_t *, char *, void *, size_t);
263  pfm_create_context_t pfm_create_context;
264  typedef os_err_t (*pfm_write_pmcs_t)(int, pfarg_pmc_t *, int);
265  pfm_write_pmcs_t pfm_write_pmcs;
266  typedef os_err_t (*pfm_write_pmds_t)(int, pfarg_pmd_t *, int);
267  pfm_write_pmds_t pfm_write_pmds;
268  typedef os_err_t (*pfm_load_context_t)(int, pfarg_load_t *);
269  pfm_load_context_t pfm_load_context;
270  typedef os_err_t (*pfm_start_t)(int fd, pfarg_start_t *);
271  pfm_start_t pfm_start;
272  typedef char* (*pfm_strerror_t)(int);
273  pfm_strerror_t pfm_strerror;
274  typedef pfm_err_t (*pfm_set_options_t)(pfmlib_options_t *);
275  pfm_set_options_t pfm_set_options;
276  typedef pfm_err_t (*pfm_get_num_counters_t)(unsigned int *);
277  pfm_get_num_counters_t pfm_get_num_counters;
278  */
279 
280 public:
282  : // standard constructor
283  Auditor( name, pSvc )
284  , m_pfm( PFMon::instance() )
285  , m_map()
286  , m_indent( 0 )
287  , m_inEvent( false ) {
289  declareProperty( "EVENT0", event_str[0] );
290  declareProperty( "EVENT1", event_str[1] );
291  declareProperty( "EVENT2", event_str[2] );
292  declareProperty( "EVENT3", event_str[3] );
293  declareProperty( "FAMILY", family );
294  declareProperty( "PREFIX", prefix );
295  declareProperty( "INV0", inv[0] );
296  declareProperty( "INV1", inv[1] );
297  declareProperty( "INV2", inv[2] );
298  declareProperty( "INV3", inv[3] );
299  declareProperty( "CMASK0", cmask[0] );
300  declareProperty( "CMASK1", cmask[1] );
301  declareProperty( "CMASK2", cmask[2] );
302  declareProperty( "CMASK3", cmask[3] );
303  declareProperty( "SP0", sp[0] );
304  declareProperty( "SP1", sp[1] );
305  declareProperty( "SP2", sp[2] );
306  declareProperty( "SP3", sp[3] );
307  declareProperty( "SAMPLE", sampling );
308  declareProperty( "START_AT_EVENT", start_at_event );
309  declareProperty( "IS_NEHALEM", is_nehalem_ret );
310 
312  /*
313  // loading functions from PFM library
314  void* handle = dlopen("libpfm.so", RTLD_NOW);
315  if (!handle) {
316  // error() << "Cannot open library: " << dlerror() << endmsg;
317  }
318  typedef void (*hello_t)();
319  hello_t hello = (hello_t) dlsym(handle, "hello");
320  if (!hello) {
321  // error() << "Cannot load symbol 'hello': " << dlerror() << endmsg;
322  dlclose(handle);
323  }
324 
325  pfm_start = (pfm_start_t) dlsym(handle, "pfm_start");
326  pfm_stop = (pfm_stop_t) dlsym(handle, "pfm_stop");
327  pfm_self_stop = (pfm_self_stop_t) dlsym(handle, "pfm_stop"); //it's the same
328  pfm_restart = (pfm_restart_t) dlsym(handle, "pfm_restart");
329  //pfm_read_pmds = (pfm_read_pmds_t) dlsym(handle, "pfm_read_pmds");
330  pfm_initialize = (pfm_initialize_t) dlsym(handle, "pfm_initialize");
331  pfm_find_full_event = (pfm_find_full_event_t) dlsym(handle, "pfm_find_full_event");
332  pfm_dispatch_events = (pfm_dispatch_events_t) dlsym(handle, "pfm_dispatch_events");
333  pfm_create_context = (pfm_create_context_t) dlsym(handle, "pfm_create_context");
334  pfm_write_pmcs = (pfm_write_pmcs_t) dlsym(handle, "pfm_write_pmcs");
335  pfm_write_pmds = (pfm_write_pmds_t) dlsym(handle, "pfm_write_pmds");
336  pfm_load_context = (pfm_load_context_t) dlsym(handle, "pfm_load_context");
337  pfm_strerror = (pfm_strerror_t) dlsym(handle, "pfm_strerror");
338  pfm_set_options = (pfm_set_options_t) dlsym(handle, "pfm_set_options");
339  pfm_get_num_counters = (pfm_get_num_counters_t) dlsym(handle, "pfm_get_num_counters");
340  // use it to do the calculation
341  // info() << "Calling hello..." << endmsg;
342  // hello();
343 
344  // close the library
345  // info() << "Closing library..." << endmsg;
346  dlclose(handle);
347  */
348 
350  }
351 
352  virtual ~PerfMonAuditor() {} // virtual destructor
353 
354 private:
355  PerfMonAuditor(); // the default constructor is disabled
356  PerfMonAuditor( const PerfMonAuditor& ); // copy constructor is disabled
357  PerfMonAuditor& operator=( const PerfMonAuditor& ); // assignement operator is disabled
358 
359 private:
362  int m_indent; // indentation level
363  bool m_inEvent; // "In event" flag
364 
365 private:
367 
374  int fd;
375  unsigned int i;
376  int ret{ 0 };
377  void startpm();
378  void pausepm();
379  void stoppm();
380  void finalizepm();
386  unsigned int ph_ev_count{ 0 };
389  unsigned int start_at_event;
393  bool nehalem;
394  bool westmere;
395  bool core;
396 
397  bool sampling;
399  int detect_unavail_pmcs( int fd, pfmlib_regmask_t* r_pmcs ) { return detect_unavail_pmu_regs( fd, r_pmcs, NULL ); }
400  void pfm_bv_set( uint64_t* bv, uint16_t rnum ) { bv[rnum >> LBPL] |= 1UL << ( rnum & ( BPL - 1 ) ); }
401  int pfm_bv_isset( uint64_t* bv, uint16_t rnum ) {
402  return bv[rnum >> LBPL] & ( 1UL << ( rnum & ( BPL - 1 ) ) ) ? 1 : 0;
403  }
404  void pfm_bv_copy( uint64_t* d, uint64_t* j, uint16_t n ) {
405  if ( n <= BPL )
406  *d = *j;
407  else { memcpy( d, j, ( n >> LBPL ) * sizeof( uint64_t ) ); }
408  }
409  static void process_smpl_buf( pfm_dfl_smpl_hdr_t* hdr, size_t entry_size );
410  static void sigio_handler( int, siginfo_t*, void* ); // dlopen ==>
411  // void sigio_handler(int, struct siginfo *, struct sigcontext *);
412  void start_smpl();
413  void stop_smpl();
414  void finalize_smpl();
417  void* buf_addr;
418  unsigned num_counters;
419  unsigned int max_pmd;
421 
422  int level;
423 
424  bool first_alg;
427 };
428 
430  memset( &ctx, 0, sizeof( ctx ) );
431  memset( &inp, 0, sizeof( inp ) );
432  memset( &outp, 0, sizeof( outp ) );
433  memset( pd, 0, sizeof( pd ) );
434  memset( pc, 0, sizeof( pc ) );
435  memset( &load_arg, 0, sizeof( load_arg ) );
436  memset( &params, 0, sizeof( params ) );
437  memset( &nhm_params, 0, sizeof( nhm_params ) );
438 
439  for ( int i = 0; i < used_counters_number; i++ ) {
440  ret = m_pfm.pfm_find_full_event( event_cstr[i], &inp.pfp_events[i] );
441  if ( ret != PFMLIB_SUCCESS ) {
442  error() << "ERROR: cannot find event: " << event_cstr[i] << ". Aborting..." << endmsg;
443  }
444  }
446  inp.pfp_event_count = 4;
447  for ( int i = 0; i < used_counters_number; i++ ) {
448  if ( inv[i] ) {
451  }
452  if ( cmask[i] > 0 ) {
453  ( params.pfp_core_counters[i] ).cnt_mask = cmask[i];
454  ( nhm_params.pfp_nhm_counters[i] ).cnt_mask = cmask[i];
455  }
456  }
457  if ( nehalem || westmere ) {
458  ret = m_pfm.pfm_dispatch_events( &inp, &nhm_params, &outp, NULL );
459  } else {
460  ret = m_pfm.pfm_dispatch_events( &inp, &params, &outp, NULL );
461  }
462  if ( ret != PFMLIB_SUCCESS ) {
463  error() << "ERROR: cannot dispatch events: " << m_pfm.pfm_strerror( ret ) << ". Aborting..." << endmsg;
464  }
465  for ( unsigned int i = 0; i < outp.pfp_pmc_count; i++ ) {
468  }
469  for ( unsigned int i = 0; i < outp.pfp_pmd_count; i++ ) {
471  pd[i].reg_value = 0;
472  }
473  fd = m_pfm.pfm_create_context( &ctx, NULL, 0, 0 );
474  if ( fd == -1 ) { error() << "ERROR: Context not created. Aborting..." << endmsg; }
475  if ( m_pfm.pfm_write_pmcs( fd, pc, outp.pfp_pmc_count ) == -1 ) {
476  error() << "ERROR: Could not write pmcs. Aborting..." << endmsg;
477  }
478  if ( m_pfm.pfm_write_pmds( fd, pd, outp.pfp_pmd_count ) == -1 ) {
479  error() << "ERROR: Could not write pmds. Aborting..." << endmsg;
480  }
481  load_arg.load_pid = getpid();
482  if ( m_pfm.pfm_load_context( fd, &load_arg ) == -1 ) {
483  error() << "ERROR: Could not load context. Aborting..." << endmsg;
484  // error() << "Could not read pmds" << endmsg;
485  }
486 
487  m_pfm.pfm_start( fd, NULL );
488 }
489 
490 // stoppm()
491 // const ModuleDescription& desc : description of the module that just finished its execution (we are only interested in
492 // its name)
493 // stops the counting calling pfm_stop() and stores the counting results into the "results" map
495  m_pfm.pfm_stop( fd );
496  if ( m_pfm.pfm_read_pmds( fd, pd, inp.pfp_event_count ) == -1 ) { error() << "Could not read pmds" << endmsg; }
497  for ( int i = 0; i < used_counters_number; i++ ) {
498  results[i][( alg_stack.top().first )->name()].push_back( alg_stack.top().second[i] + pd[i].reg_value );
499  }
500 
501  close( fd );
502 }
503 
505  m_pfm.pfm_stop( fd );
506  if ( m_pfm.pfm_read_pmds( fd, pd, inp.pfp_event_count ) == -1 ) { error() << "Could not read pmds" << endmsg; }
507 
508  for ( int i = 0; i < used_counters_number; i++ ) { alg_stack.top().second[i] += pd[i].reg_value; }
509 
510  close( fd );
511 }
512 
513 // finalizepm()
514 // called when all the countings of the current event are finished, it dumps the results
515 // into the output file corresponding to the event being counted
517  info() << "start of finalizepm ucn:" << used_counters_number << endmsg;
518  for ( int i = 0; i < used_counters_number; i++ ) {
520  filename += '_';
521  filename += event_cstr[i];
522 
523  for ( auto& c : filename )
524  if ( c == ':' ) c = '-';
525 
526  if ( inv[i] ) filename += "_INV_1";
527  if ( cmask[i] > 0 ) filename += "_CMASK_" + std::to_string( cmask[i] );
528  filename += ".txt";
529 
530  info() << "Filename:" << filename << endmsg;
531  FILE* outfile = fopen( filename.c_str(), "w" );
532  if ( nehalem ) {
533  fprintf( outfile, "NHM " );
534  } else if ( westmere ) {
535  fprintf( outfile, "WSM " );
536  } else if ( core ) {
537  fprintf( outfile, "CORE " );
538  }
539  fprintf( outfile, "%s %d %d %d\n", event_cstr[i], cmask[i], inv[i], sp[i] );
540  for ( std::map<std::string, std::vector<unsigned long int>>::iterator it = ( results[i] ).begin();
541  it != ( results[i] ).end(); it++ ) {
542  fprintf( outfile, "%s\n", ( it->first ).c_str() );
543  for ( std::vector<unsigned long int>::iterator j = ( it->second ).begin(); j != ( it->second ).end(); j++ ) {
544  fprintf( outfile, "%lu\n", *j );
545  }
546  }
547  fclose( outfile );
548  }
549 }
550 
552  if ( !m_pfm.loaded ) {
553  error() << "pfm library could not be loaded" << endmsg;
554  return StatusCode::FAILURE;
555  }
556 
557  info() << "Initializing..." << endmsg;
559  if ( sc.isFailure() ) { return sc; }
561  for ( int i = 0; i < MAX_NUMBER_OF_PROGRAMMABLE_COUNTERS; i++ ) {
562  if ( event_str[i].length() > 0 ) used_counters_number++;
563  }
564  for ( int i = 0; i < MAX_NUMBER_OF_PROGRAMMABLE_COUNTERS; i++ ) { strcpy( event_cstr[i], event_str[i].c_str() ); }
565  strcpy( prefix_cstr, prefix.c_str() );
566 
567  if ( m_pfm.pfm_initialize() != PFMLIB_SUCCESS ) { error() << "Cannot initialize perfmon!!" << endmsg; }
568  ph_ev_count = 0;
569  first_alg = true;
570  event_count_reached = false;
571  nehalem = false;
572  core = false;
573  westmere = false;
574  if ( family.compare( "CORE" ) == 0 )
575  core = true;
576  else if ( family.compare( "NEHALEM" ) == 0 )
577  nehalem = true;
578  else if ( family.compare( "WESTMERE" ) == 0 )
579  westmere = true;
580  else { error() << "ERROR: Unsupported processor family " << family << ". aborting..." << endmsg; }
581 
582  info() << "Initialized!" << endmsg;
583  return StatusCode::SUCCESS;
584 }
585 
586 // process_smpl_buf()
587 // pfm_dfl_smpl_hdr_t *hdr : pointer to header of the buffer containing addresses sampled during the sampling process
588 // size_t entry_size : size of each entry, used to navigate through the various entries
589 // called when the sampling buffer is full, saves the samples into memory ("samples" map)
590 void PerfMonAuditor::process_smpl_buf( pfm_dfl_smpl_hdr_t* hdr, size_t entry_size ) {
593  size_t pos, count;
594  uint64_t entry;
595  if ( hdr->hdr_overflows == last_overflow && hdr->hdr_count == last_count ) {
596  printf( "skipping identical set of samples...\n" );
597  return;
598  }
599  count = hdr->hdr_count;
600  ent = (pfm_dfl_smpl_entry_t*)( hdr + 1 );
601  pos = (unsigned long)ent;
602  entry = collected_samples;
603  while ( count-- ) {
604  // if(ent->ovfl_pmd>=0 && ent->ovfl_pmd<=3)
605  if ( ent->ovfl_pmd <= 3 ) {
606  ( ( samples[ent->ovfl_pmd] )[( alg_stack.top().first )->name()] )[(unsigned long)( ent->ip )]++;
607  }
608  pos += entry_size;
609  ent = (pfm_dfl_smpl_entry_t*)pos;
610  entry++;
611  }
612  collected_samples = entry;
613  last_overflow = hdr->hdr_overflows;
614  if ( last_count != hdr->hdr_count && ( last_count || last_overflow == 0 ) ) { collected_partial += hdr->hdr_count; }
615  last_count = hdr->hdr_count;
616  return;
617 }
618 
619 // sigio_handler()
620 // int n : signal number of the signal being delivered
621 // siginfo_t *info : pointer to a siginfo_t structure containing info about the signal
622 // signal handler used to catch sampling buffer overflows. When they occur it calls the process_smpl_buf() function
623 void PerfMonAuditor::sigio_handler( int /*n*/, siginfo_t* /*info*/, void* ) {
624  PFMon& pfm = PFMon::instance();
626  int fd = ctx_fd;
627  int r;
628  if ( fd != ctx_fd ) {
629  // error() << "ERROR: handler does not get valid file descriptor. Aborting..." << endmsg;
630  }
631  if ( pfm.pfm_read_pmds( fd, pd_smpl + 1, 1 ) == -1 ) {
632  // error() << "ERROR: pfm_read_pmds: " << strerror(errno) << ". Aborting..." << endmsg;
633  }
634  while ( true ) {
635  r = read( fd, &msg, sizeof( msg ) );
636  if ( r != sizeof( msg ) ) {
637  if ( r == -1 && errno == EINTR ) {
638  printf( "read interrupted, retrying\n" );
639  continue;
640  }
641  // error() << "ERROR: cannot read overflow message: " << strerror(errno) << ". Aborting..." << endmsg;
642  }
643  break;
644  }
645  switch ( msg.type ) {
646  case PFM_MSG_OVFL: // the sampling buffer is full
647  process_smpl_buf( hdr, entry_size );
648  ovfl_count++;
649  if ( pfm.pfm_restart( fd ) ) {
650  if ( errno != EBUSY ) {
651  // error() << "ERROR: pfm_restart error errno " << errno << ". Aborting..." << endmsg;
652  } else {
653  printf( "pfm_restart: task probably terminated \n" );
654  }
655  }
656  break;
657  default:
658  // error() << "ERROR: unknown message type " << msg.type << ". Aborting..." << endmsg;
659  break;
660  }
661 }
662 
663 // start_smpl()
664 // const ModuleDescription& desc : description of the module that is just starting its execution (we are only interested
665 // in its name)
666 // initializes all the necessary structures to start the sampling, calling pfm_self_start()
668  ovfl_count = 0;
669  num_smpl_pmds = 0;
670  last_overflow = ~0;
671  max_pmd = 0;
672  memset( &pfmlib_options, 0, sizeof( pfmlib_options ) );
675  m_pfm.pfm_set_options( &pfmlib_options );
676  ret = m_pfm.pfm_initialize();
677  if ( ret != PFMLIB_SUCCESS ) {
678  error() << "ERROR: Cannot initialize library: " << m_pfm.pfm_strerror( ret ) << ". Aborting..." << endmsg;
679  }
680  struct sigaction act;
681  memset( &act, 0, sizeof( act ) );
682  act.sa_sigaction = sigio_handler; // dlopen() ==>
683  // act.sa_handler = (sig_t)&sigio_handler;
684  sigaction( SIGIO, &act, 0 );
685  memset( &ctx, 0, sizeof( ctx ) );
686  memset( &buf_arg, 0, sizeof( buf_arg ) );
687  memset( &inp, 0, sizeof( inp ) );
688  memset( &outp, 0, sizeof( outp ) );
689  memset( pd_smpl, 0, sizeof( pd_smpl ) );
690  memset( pc, 0, sizeof( pc ) );
691  memset( &load_args, 0, sizeof( load_args ) );
692  m_pfm.pfm_get_num_counters( &num_counters );
693  memset( &params, 0, sizeof( params ) );
694  memset( &nhm_params, 0, sizeof( nhm_params ) );
695 
696  for ( int i = 0; i < used_counters_number; i++ ) {
697  ret = m_pfm.pfm_find_full_event( event_cstr[i], &inp.pfp_events[i] );
698  if ( ret != PFMLIB_SUCCESS ) {
699  error() << "ERROR: cannot find event: " << event_cstr[i] << ". Aborting..." << endmsg;
700  }
701  }
703  inp.pfp_event_count = 4;
704  for ( int i = 0; i < used_counters_number; i++ ) {
705  if ( inv[i] ) {
708  }
709  if ( cmask[i] > 0 ) {
710  ( params.pfp_core_counters[i] ).cnt_mask = cmask[i];
711  ( nhm_params.pfp_nhm_counters[i] ).cnt_mask = cmask[i];
712  }
713  }
714  if ( nehalem || westmere ) {
715  ret = m_pfm.pfm_dispatch_events( &inp, &nhm_params, &outp, NULL );
716  } else {
717  ret = m_pfm.pfm_dispatch_events( &inp, &params, &outp, NULL );
718  }
719  if ( ret != PFMLIB_SUCCESS ) {
720  error() << "ERROR: cannot configure events: " << m_pfm.pfm_strerror( ret ) << ". Aborting..." << endmsg;
721  }
722  for ( unsigned int i = 0; i < outp.pfp_pmc_count; i++ ) {
725  }
726  for ( unsigned int i = 0; i < outp.pfp_pmd_count; i++ ) {
727  pd_smpl[i].reg_num = outp.pfp_pmds[i].reg_num;
728  if ( i ) {
729  pfm_bv_set( pd_smpl[0].reg_smpl_pmds, pd_smpl[i].reg_num );
730  if ( pd_smpl[i].reg_num > max_pmd ) { max_pmd = pd_smpl[i].reg_num; }
731  num_smpl_pmds++;
732  }
733  }
734  for ( int i = 0; i < used_counters_number; i++ ) {
736  pfm_bv_copy( pd_smpl[i].reg_reset_pmds, pd_smpl[i].reg_smpl_pmds, max_pmd );
737  pd_smpl[i].reg_value = (uint64_t)( sp[i] * -1 );
738  pd_smpl[i].reg_short_reset = (uint64_t)( sp[i] * -1 );
739  pd_smpl[i].reg_long_reset = (uint64_t)( sp[i] * -1 );
740  pd_smpl[i].reg_random_seed = 5; // tocheck
741  pd_smpl[i].reg_random_mask = 0xff; // tocheck
742  }
743  entry_size = sizeof( pfm_dfl_smpl_entry_t ) + ( num_smpl_pmds << 3 );
744  ctx.ctx_flags = 0;
745  buf_arg.buf_size = 3 * getpagesize() + 512;
746  ctx_fd = m_pfm.pfm_create_context( &ctx, (char*)FMT_NAME, &buf_arg, sizeof( buf_arg ) );
747  if ( ctx_fd == -1 ) {
748  if ( errno == ENOSYS ) {
749  error() << "ERROR: Your kernel does not have performance monitoring support! Aborting..." << endmsg;
750  }
751  error() << "ERROR: Can't create PFM context " << strerror( errno ) << ". Aborting..." << endmsg;
752  }
753  buf_addr = mmap( NULL, buf_arg.buf_size, PROT_READ, MAP_PRIVATE, ctx_fd, 0 );
754  if ( buf_addr == MAP_FAILED ) {
755  error() << "ERROR: cannot mmap sampling buffer: " << strerror( errno ) << ". Aborting..." << endmsg;
756  }
758  if ( PFM_VERSION_MAJOR( hdr->hdr_version ) < 1 ) {
759  error() << "ERROR: invalid buffer format version. Aborting..." << endmsg;
760  }
761  if ( m_pfm.pfm_write_pmcs( ctx_fd, pc, outp.pfp_pmc_count ) ) {
762  error() << "ERROR: pfm_write_pmcs error errno " << strerror( errno ) << ". Aborting..." << endmsg;
763  }
764  if ( m_pfm.pfm_write_pmds( ctx_fd, pd_smpl, outp.pfp_pmd_count ) ) {
765  error() << "ERROR: pfm_write_pmds error errno " << strerror( errno ) << ". Aborting..." << endmsg;
766  }
767  load_args.load_pid = getpid();
768  if ( m_pfm.pfm_load_context( ctx_fd, &load_args ) ) {
769  error() << "ERROR: pfm_load_context error errno " << strerror( errno ) << ". Aborting..." << endmsg;
770  }
771  ret = fcntl( ctx_fd, F_SETFL, fcntl( ctx_fd, F_GETFL, 0 ) | O_ASYNC );
772  if ( ret == -1 ) { error() << "ERROR: cannot set ASYNC: " << strerror( errno ) << ". Aborting..." << endmsg; }
773  ret = fcntl( ctx_fd, F_SETOWN, getpid() );
774  if ( ret == -1 ) { error() << "ERROR: cannot setown: " << strerror( errno ) << ". Aborting..." << endmsg; }
775  // pfm_self_start(ctx_fd); ==>
776  m_pfm.pfm_start( ctx_fd, NULL );
777 }
778 
779 // stop_smpl()
780 // const ModuleDescription& desc : description of the module that just finished its execution (we are only interested in
781 // its name)
782 // stops the sampling and calls process_smpl_buf() one last time to process all the remaining samples
784  m_pfm.pfm_self_stop( ctx_fd );
785  process_smpl_buf( hdr, entry_size );
786  close( ctx_fd );
787  ret = munmap( hdr, buf_arg.buf_size );
788  if ( ret ) { error() << "Cannot unmap buffer: %s" << strerror( errno ) << endmsg; }
789  return;
790 }
791 
792 // finalize_smpl()
793 // processes the sampling results in order to find library and offset of each sampled address, using the symbol() and
794 // tosymbol() functions,
795 // and then dumps the new found information into gzipped output files, to be processed later
797  int err;
798  for ( int i = 0; i < used_counters_number; i++ ) {
800  filename += '_';
801  filename += event_cstr[i];
802 
803  for ( auto& c : filename )
804  if ( c == ':' ) c = '-';
805 
806  if ( inv[i] ) filename += "_INV_1";
807  if ( cmask[i] > 0 ) filename += "_CMASK_" + std::to_string( cmask[i] );
808  filename += ".txt.gz";
809 
810  gzFile outfile = gzopen( filename.c_str(), "wb" );
811  if ( outfile != NULL ) {
812  if ( nehalem ) {
813  gzprintf( outfile, "NHM " );
814  } else if ( westmere ) {
815  gzprintf( outfile, "WSM " );
816  } else if ( core ) {
817  gzprintf( outfile, "CORE " );
818  }
819  if ( gzprintf( outfile, "%s %d %d %d\n", event_cstr[i], cmask[i], inv[i], sp[i] ) <
820  (int)strlen( event_cstr[i] ) ) {
821  error() << "ERROR: gzputs err: " << gzerror( outfile, &err ) << ". Aborting..." << endmsg;
822  }
823  for ( std::map<std::string, std::map<unsigned long, unsigned int>>::iterator it = samples[i].begin();
824  it != samples[i].end(); it++ ) {
825  unsigned long long sum = 0;
826  for ( std::map<unsigned long, unsigned int>::iterator jt = ( it->second ).begin(); jt != ( it->second ).end();
827  jt++ ) {
828  sum += jt->second;
829  }
830  if ( gzprintf( outfile, "%s%%%llu\n", ( it->first ).c_str(), sum ) < (int)( ( it->first ).length() ) ) {
831  error() << "ERROR: gzputs err: " << gzerror( outfile, &err ) << ". Aborting..." << endmsg;
832  }
833  for ( std::map<unsigned long, unsigned int>::iterator jt = ( it->second ).begin(); jt != ( it->second ).end();
834  jt++ ) {
835  char sym_name[SYM_NAME_MAX_LENGTH];
836  bzero( sym_name, SYM_NAME_MAX_LENGTH );
837  const char* libName;
838  const char* symbolName;
839  int libOffset = 0;
840  int offset = 0;
841  void* sym_addr = IgHookTrace::tosymbol( (void*)( jt->first ) );
842  if ( sym_addr != NULL ) {
843  bool success = IgHookTrace::symbol( sym_addr, symbolName, libName, offset, libOffset );
844  if ( success ) {
845  if ( symbolName != NULL && strlen( symbolName ) > 0 ) {
846  strcpy( sym_name, symbolName );
847  strcat( sym_name, " " );
848  } else {
849  strcpy( sym_name, "??? " );
850  }
851  if ( libName != NULL && strlen( libName ) > 0 ) {
852  strcat( sym_name, libName );
853  strcat( sym_name, " " );
854  } else {
855  strcat( sym_name, "??? " );
856  }
857  sprintf( sym_name + strlen( sym_name ), "%d ", libOffset );
858  if ( strlen( sym_name ) <= 0 ) { error() << "ERROR: Symbol name length is zero. Aborting..." << endmsg; }
859  } else {
860  strcpy( sym_name, "??? ??? 0 " );
861  }
862  } else {
863  strcpy( sym_name, "??? ??? 0 " );
864  }
865  if ( gzprintf( outfile, "%s %d\n", sym_name, jt->second ) < (int)strlen( sym_name ) ) {
866  error() << "ERROR: gzputs err: " << gzerror( outfile, &err ) << endmsg;
867  }
868  }
869  }
870  } else {
871  error() << "ERROR: Could not open file: " << filename << ". Aborting..." << endmsg;
872  }
873  gzclose( outfile );
874  }
875 }
876 
878  if ( sampling == 0 )
879  finalizepm();
880  else
881  finalize_smpl();
882  return Auditor::finalize();
883 }
884 
885 void PerfMonAuditor::before( StandardEventType evt, INamedInterface* alg ) {
886  switch ( evt ) {
889  break;
890  case IAuditor::Execute:
891  i_beforeExecute( alg );
892  break;
893  default:
894  break;
895  }
896  return;
897 }
898 
899 void PerfMonAuditor::after( StandardEventType evt, INamedInterface* alg, const StatusCode& ) {
900  switch ( evt ) {
903  break;
904  case IAuditor::Execute:
905  i_afterExecute( alg );
906  break;
907  default:
908  break;
909  }
910  return;
911 }
912 
914 
916 
918  if ( !alg ) return;
919  // info() << "before:inside! " << alg->name() << endmsg;
920  if ( first_alg ) {
921  first_alg = false;
922  first_alg_name = alg->name();
923  // info() << "first_alg_name= " << alg->name() << endmsg;
924  }
925  if ( !event_count_reached ) {
926  if ( !first_alg_name.compare( alg->name() ) ) {
927  ph_ev_count++;
928  // info() << "EVENT COUNT: " << ph_ev_count << endmsg;
929  if ( ph_ev_count == start_at_event ) {
930  event_count_reached = true;
931  // info() << "!!! EVENT COUNT REACHED: " << ph_ev_count << endmsg;
932  }
933  }
934  }
935  if ( event_count_reached ) {
936  // info() << "before:inside! " << alg->name() << endmsg;
937 
938  if ( !alg_stack.empty() ) {
939  if ( sampling == 0 )
940  pausepm(); // pausing father algorithm counting
941  else
942  stop_smpl();
943  }
944  ++m_indent;
945  std::vector<unsigned long int> zeroes( 4, 0 );
946  alg_stack.push( std::make_pair( alg, zeroes ) );
947  if ( sampling == 0 )
948  startpm();
949  else
950  start_smpl();
951  }
952 }
953 
955  if ( !alg ) { return; } // info() << "after:inside! " << alg->name() << endmsg;
956 
957  if ( event_count_reached ) {
958  // info() << "after:inside! " << alg->name() << endmsg;
959 
960  if ( sampling == 0 )
961  stoppm();
962  else
963  stop_smpl();
964  alg_stack.pop();
965  --m_indent;
966  if ( !alg_stack.empty() ) {
967  if ( sampling == 0 )
968  startpm();
969  else
970  start_smpl(); // resuming father algorithm counting
971  }
972  }
973 }
974 
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