3 import pyramid.httpexceptions
4 import sqlalchemy as sa
5 import sqlalchemy.sql.functions as func
6 import sqlalchemy.sql.expression as expr
7 from calendar import timegm
8 from collections import namedtuple
9 from webhelpers.paginate import Page
10 from xonstat.models import *
11 from xonstat.util import page_url, to_json, pretty_date, datetime_seconds
12 from xonstat.util import is_cake_day, verify_request
13 from xonstat.views.helpers import RecentGame, recent_games_q
14 from urllib import unquote
16 log = logging.getLogger(__name__)
19 def player_index_data(request):
20 if request.params.has_key('page'):
21 current_page = request.params['page']
26 player_q = DBSession.query(Player).\
27 filter(Player.player_id > 2).\
28 filter(Player.active_ind == True).\
29 filter(sa.not_(Player.nick.like('Anonymous Player%'))).\
30 order_by(Player.player_id.desc())
32 players = Page(player_q, current_page, items_per_page=25, url=page_url)
34 except Exception as e:
38 return {'players':players
42 def player_index(request):
44 Provides a list of all the current players.
46 return player_index_data(request)
49 def player_index_json(request):
51 Provides a list of all the current players. JSON.
53 return [{'status':'not implemented'}]
56 def get_games_played(player_id):
58 Provides a breakdown by gametype of the games played by player_id.
60 Returns a list of namedtuples with the following members:
67 The list itself is ordered by the number of games played
69 GamesPlayed = namedtuple('GamesPlayed', ['game_type_cd', 'games', 'wins',
72 raw_games_played = DBSession.query('game_type_cd', 'wins', 'losses').\
74 "SELECT game_type_cd, "
77 "FROM (SELECT g.game_id, "
80 "WHEN g.winner = pgs.team THEN 1 "
81 "WHEN pgs.scoreboardpos = 1 THEN 1 "
85 "WHEN g.winner = pgs.team THEN 0 "
86 "WHEN pgs.scoreboardpos = 1 THEN 0 "
90 "player_game_stats pgs "
91 "WHERE g.game_id = pgs.game_id "
92 "AND pgs.player_id = :player_id) win_loss "
93 "GROUP BY game_type_cd "
94 ).params(player_id=player_id).all()
100 for row in raw_games_played:
101 games = row.wins + row.losses
102 overall_games += games
103 overall_wins += row.wins
104 overall_losses += row.losses
105 win_pct = float(row.wins)/games * 100
107 games_played.append(GamesPlayed(row.game_type_cd, games, row.wins,
108 row.losses, win_pct))
111 overall_win_pct = float(overall_wins)/overall_games * 100
113 overall_win_pct = 0.0
115 games_played.append(GamesPlayed('overall', overall_games, overall_wins,
116 overall_losses, overall_win_pct))
118 # sort the resulting list by # of games played
119 games_played = sorted(games_played, key=lambda x:x.games)
120 games_played.reverse()
124 def get_overall_stats(player_id):
126 Provides a breakdown of stats by gametype played by player_id.
128 Returns a dictionary of namedtuples with the following members:
132 - last_played (last time the player played the game type)
133 - last_played_epoch (same as above, but in seconds since epoch)
134 - last_played_fuzzy (same as above, but in relative date)
135 - total_playing_time (total amount of time played the game type)
136 - total_playing_time_secs (same as the above, but in seconds)
137 - total_pickups (ctf only)
138 - total_captures (ctf only)
139 - cap_ratio (ctf only)
140 - total_carrier_frags (ctf only)
144 The key to the dictionary is the game type code. There is also an
145 "overall" game_type_cd which sums the totals and computes the total ratios.
147 OverallStats = namedtuple('OverallStats', ['total_kills', 'total_deaths',
148 'k_d_ratio', 'last_played', 'last_played_epoch', 'last_played_fuzzy',
149 'total_playing_time', 'total_playing_time_secs', 'total_pickups', 'total_captures', 'cap_ratio',
150 'total_carrier_frags', 'game_type_cd', 'game_type_descr'])
152 raw_stats = DBSession.query('game_type_cd', 'game_type_descr',
153 'total_kills', 'total_deaths', 'last_played', 'total_playing_time',
154 'total_pickups', 'total_captures', 'total_carrier_frags').\
156 "SELECT g.game_type_cd, "
157 "gt.descr game_type_descr, "
158 "Sum(pgs.kills) total_kills, "
159 "Sum(pgs.deaths) total_deaths, "
160 "Max(pgs.create_dt) last_played, "
161 "Sum(pgs.alivetime) total_playing_time, "
162 "Sum(pgs.pickups) total_pickups, "
163 "Sum(pgs.captures) total_captures, "
164 "Sum(pgs.carrier_frags) total_carrier_frags "
167 "player_game_stats pgs "
168 "WHERE g.game_id = pgs.game_id "
169 "AND g.game_type_cd = gt.game_type_cd "
170 "AND pgs.player_id = :player_id "
171 "GROUP BY g.game_type_cd, game_type_descr "
173 "SELECT 'overall' game_type_cd, "
174 "'Overall' game_type_descr, "
175 "Sum(pgs.kills) total_kills, "
176 "Sum(pgs.deaths) total_deaths, "
177 "Max(pgs.create_dt) last_played, "
178 "Sum(pgs.alivetime) total_playing_time, "
179 "Sum(pgs.pickups) total_pickups, "
180 "Sum(pgs.captures) total_captures, "
181 "Sum(pgs.carrier_frags) total_carrier_frags "
182 "FROM player_game_stats pgs "
183 "WHERE pgs.player_id = :player_id "
184 ).params(player_id=player_id).all()
186 # to be indexed by game_type_cd
189 for row in raw_stats:
190 # individual gametype ratio calculations
192 k_d_ratio = float(row.total_kills)/row.total_deaths
197 cap_ratio = float(row.total_captures)/row.total_pickups
201 # everything else is untouched or "raw"
202 os = OverallStats(total_kills=row.total_kills,
203 total_deaths=row.total_deaths,
205 last_played=row.last_played,
206 last_played_epoch=timegm(row.last_played.timetuple()),
207 last_played_fuzzy=pretty_date(row.last_played),
208 total_playing_time=row.total_playing_time,
209 total_playing_time_secs=int(datetime_seconds(row.total_playing_time)),
210 total_pickups=row.total_pickups,
211 total_captures=row.total_captures,
213 total_carrier_frags=row.total_carrier_frags,
214 game_type_cd=row.game_type_cd,
215 game_type_descr=row.game_type_descr)
217 overall_stats[row.game_type_cd] = os
219 # We have to edit "overall" stats to exclude deaths in CTS.
220 # Although we still want to record deaths, they shouldn't
221 # count towards the overall K:D ratio.
222 if 'cts' in overall_stats:
223 os = overall_stats['overall']
226 k_d_ratio = float(os.total_kills)/(os.total_deaths - overall_stats['cts'].total_deaths)
230 non_cts_deaths = os.total_deaths - overall_stats['cts'].total_deaths
233 overall_stats['overall'] = OverallStats(
234 total_kills = os.total_kills,
235 total_deaths = non_cts_deaths,
236 k_d_ratio = k_d_ratio,
237 last_played = os.last_played,
238 last_played_epoch = os.last_played_epoch,
239 last_played_fuzzy = os.last_played_fuzzy,
240 total_playing_time = os.total_playing_time,
241 total_playing_time_secs = os.total_playing_time_secs,
242 total_pickups = os.total_pickups,
243 total_captures = os.total_captures,
244 cap_ratio = os.cap_ratio,
245 total_carrier_frags = os.total_carrier_frags,
246 game_type_cd = os.game_type_cd,
247 game_type_descr = os.game_type_descr)
252 def get_fav_maps(player_id, game_type_cd=None):
254 Provides a breakdown of favorite maps by gametype.
256 Returns a dictionary of namedtuples with the following members:
258 - map_name (map name)
262 The favorite map is defined as the map you've played the most
263 for the given game_type_cd.
265 The key to the dictionary is the game type code. There is also an
266 "overall" game_type_cd which is the overall favorite map. This is
267 defined as the favorite map of the game type you've played the
268 most. The input parameter game_type_cd is for this.
270 FavMap = namedtuple('FavMap', ['map_name', 'map_id', 'times_played', 'game_type_cd'])
272 raw_favs = DBSession.query('game_type_cd', 'map_name',
273 'map_id', 'times_played').\
275 "SELECT game_type_cd, "
279 "FROM (SELECT g.game_type_cd, "
282 "Count(*) times_played, "
285 "partition BY g.game_type_cd "
286 "ORDER BY Count(*) DESC, m.map_id ASC) rank "
288 "player_game_stats pgs, "
290 "WHERE g.game_id = pgs.game_id "
291 "AND g.map_id = m.map_id "
292 "AND pgs.player_id = :player_id "
293 "GROUP BY g.game_type_cd, "
295 "m.name) most_played "
297 "ORDER BY times_played desc "
298 ).params(player_id=player_id).all()
303 fv = FavMap(map_name=row.map_name,
305 times_played=row.times_played,
306 game_type_cd=row.game_type_cd)
308 # if we aren't given a favorite game_type_cd
309 # then the overall favorite is the one we've
311 if overall_fav is None:
312 fav_maps['overall'] = fv
313 overall_fav = fv.game_type_cd
315 # otherwise it is the favorite map from the
316 # favorite game_type_cd (provided as a param)
317 # and we'll overwrite the first dict entry
318 if game_type_cd == fv.game_type_cd:
319 fav_maps['overall'] = fv
321 fav_maps[row.game_type_cd] = fv
326 def get_ranks(player_id):
328 Provides a breakdown of the player's ranks by game type.
330 Returns a dictionary of namedtuples with the following members:
335 The key to the dictionary is the game type code. There is also an
336 "overall" game_type_cd which is the overall best rank.
338 Rank = namedtuple('Rank', ['rank', 'max_rank', 'percentile', 'game_type_cd'])
340 raw_ranks = DBSession.query("game_type_cd", "rank", "max_rank").\
342 "select pr.game_type_cd, pr.rank, overall.max_rank "
343 "from player_ranks pr, "
344 "(select game_type_cd, max(rank) max_rank "
346 "group by game_type_cd) overall "
347 "where pr.game_type_cd = overall.game_type_cd "
349 "and player_id = :player_id "
351 params(player_id=player_id).all()
354 found_top_rank = False
355 for row in raw_ranks:
356 rank = Rank(rank=row.rank,
357 max_rank=row.max_rank,
358 percentile=100 - 100*float(row.rank-1)/(row.max_rank-1),
359 game_type_cd=row.game_type_cd)
362 if not found_top_rank:
363 ranks['overall'] = rank
364 found_top_rank = True
365 elif rank.percentile > ranks['overall'].percentile:
366 ranks['overall'] = rank
368 ranks[row.game_type_cd] = rank
373 def get_elos(player_id):
375 Provides a breakdown of the player's elos by game type.
377 Returns a dictionary of namedtuples with the following members:
383 The key to the dictionary is the game type code. There is also an
384 "overall" game_type_cd which is the overall best rank.
386 raw_elos = DBSession.query(PlayerElo).filter_by(player_id=player_id).\
387 order_by(PlayerElo.elo.desc()).all()
390 found_max_elo = False
392 if not found_max_elo:
393 elos['overall'] = row
396 elos[row.game_type_cd] = row
401 def get_recent_games(player_id, limit=10):
403 Provides a list of recent games for a player. Uses the recent_games_q helper.
405 # recent games played in descending order
406 rgs = recent_games_q(player_id=player_id, force_player_id=True).limit(limit).all()
407 recent_games = [RecentGame(row) for row in rgs]
412 def get_recent_weapons(player_id):
414 Returns the weapons that have been used in the past 90 days
415 and also used in 5 games or more.
417 cutoff = datetime.datetime.utcnow() - datetime.timedelta(days=90)
419 for weapon in DBSession.query(PlayerWeaponStat.weapon_cd, func.count()).\
420 filter(PlayerWeaponStat.player_id == player_id).\
421 filter(PlayerWeaponStat.create_dt > cutoff).\
422 group_by(PlayerWeaponStat.weapon_cd).\
423 having(func.count() > 4).\
425 recent_weapons.append(weapon[0])
427 return recent_weapons
430 def get_accuracy_stats(player_id, weapon_cd, games):
432 Provides accuracy for weapon_cd by player_id for the past N games.
434 # Reaching back 90 days should give us an accurate enough average
435 # We then multiply this out for the number of data points (games) to
436 # create parameters for a flot graph
438 raw_avg = DBSession.query(func.sum(PlayerWeaponStat.hit),
439 func.sum(PlayerWeaponStat.fired)).\
440 filter(PlayerWeaponStat.player_id == player_id).\
441 filter(PlayerWeaponStat.weapon_cd == weapon_cd).\
444 avg = round(float(raw_avg[0])/raw_avg[1]*100, 2)
446 # Determine the raw accuracy (hit, fired) numbers for $games games
447 # This is then enumerated to create parameters for a flot graph
448 raw_accs = DBSession.query(PlayerWeaponStat.game_id,
449 PlayerWeaponStat.hit, PlayerWeaponStat.fired).\
450 filter(PlayerWeaponStat.player_id == player_id).\
451 filter(PlayerWeaponStat.weapon_cd == weapon_cd).\
452 order_by(PlayerWeaponStat.game_id.desc()).\
456 # they come out in opposite order, so flip them in the right direction
460 for i in range(len(raw_accs)):
461 accs.append((raw_accs[i][0], round(float(raw_accs[i][1])/raw_accs[i][2]*100, 2)))
469 def get_damage_stats(player_id, weapon_cd, games):
471 Provides damage info for weapon_cd by player_id for the past N games.
474 raw_avg = DBSession.query(func.sum(PlayerWeaponStat.actual),
475 func.sum(PlayerWeaponStat.hit)).\
476 filter(PlayerWeaponStat.player_id == player_id).\
477 filter(PlayerWeaponStat.weapon_cd == weapon_cd).\
480 avg = round(float(raw_avg[0])/raw_avg[1], 2)
482 # Determine the damage efficiency (hit, fired) numbers for $games games
483 # This is then enumerated to create parameters for a flot graph
484 raw_dmgs = DBSession.query(PlayerWeaponStat.game_id,
485 PlayerWeaponStat.actual, PlayerWeaponStat.hit).\
486 filter(PlayerWeaponStat.player_id == player_id).\
487 filter(PlayerWeaponStat.weapon_cd == weapon_cd).\
488 order_by(PlayerWeaponStat.game_id.desc()).\
492 # they come out in opposite order, so flip them in the right direction
496 for i in range(len(raw_dmgs)):
497 # try to derive, unless we've hit nothing then set to 0!
499 dmg = round(float(raw_dmgs[i][1])/raw_dmgs[i][2], 2)
503 dmgs.append((raw_dmgs[i][0], dmg))
504 except Exception as e:
511 def player_info_data(request):
512 player_id = int(request.matchdict['id'])
517 player = DBSession.query(Player).filter_by(player_id=player_id).\
518 filter(Player.active_ind == True).one()
520 games_played = get_games_played(player_id)
521 overall_stats = get_overall_stats(player_id)
522 fav_maps = get_fav_maps(player_id)
523 elos = get_elos(player_id)
524 ranks = get_ranks(player_id)
525 recent_games = get_recent_games(player_id)
526 recent_weapons = get_recent_weapons(player_id)
527 cake_day = is_cake_day(player.create_dt)
529 except Exception as e:
530 raise pyramid.httpexceptions.HTTPNotFound
532 ## do not raise application exceptions here (only for debugging)
535 return {'player':player,
536 'games_played':games_played,
537 'overall_stats':overall_stats,
541 'recent_games':recent_games,
542 'recent_weapons':recent_weapons,
547 def player_info(request):
549 Provides detailed information on a specific player
551 return player_info_data(request)
554 def player_info_json(request):
556 Provides detailed information on a specific player. JSON.
559 # All player_info fields are converted into JSON-formattable dictionaries
560 player_info = player_info_data(request)
562 player = player_info['player'].to_dict()
565 for game in player_info['games_played']:
566 games_played[game.game_type_cd] = to_json(game)
569 for gt,stats in player_info['overall_stats'].items():
570 overall_stats[gt] = to_json(stats)
573 for gt,elo in player_info['elos'].items():
574 elos[gt] = to_json(elo.to_dict())
577 for gt,rank in player_info['ranks'].items():
578 ranks[gt] = to_json(rank)
581 for gt,mapinfo in player_info['fav_maps'].items():
582 fav_maps[gt] = to_json(mapinfo)
585 for game in player_info['recent_games']:
586 recent_games.append(to_json(game))
588 #recent_weapons = player_info['recent_weapons']
592 'games_played': games_played,
593 'overall_stats': overall_stats,
594 'fav_maps': fav_maps,
597 'recent_games': recent_games,
598 # 'recent_weapons': recent_weapons,
599 'recent_weapons': ['not implemented'],
601 #return [{'status':'not implemented'}]
604 def player_game_index_data(request):
605 player_id = request.matchdict['player_id']
608 game_type_descr = None
610 if request.params.has_key('type'):
611 game_type_cd = request.params['type']
613 game_type_descr = DBSession.query(GameType.descr).\
614 filter(GameType.game_type_cd == game_type_cd).\
616 except Exception as e:
621 game_type_descr = None
623 if request.params.has_key('page'):
624 current_page = request.params['page']
629 player = DBSession.query(Player).\
630 filter_by(player_id=player_id).\
631 filter(Player.active_ind == True).\
634 rgs_q = recent_games_q(player_id=player.player_id,
635 force_player_id=True, game_type_cd=game_type_cd)
637 games = Page(rgs_q, current_page, items_per_page=20, url=page_url)
639 # replace the items in the canned pagination class with more rich ones
640 games.items = [RecentGame(row) for row in games.items]
642 games_played = get_games_played(player_id)
644 except Exception as e:
648 game_type_descr = None
652 'player_id':player.player_id,
655 'game_type_cd':game_type_cd,
656 'game_type_descr':game_type_descr,
657 'games_played':games_played,
661 def player_game_index(request):
663 Provides an index of the games in which a particular
664 player was involved. This is ordered by game_id, with
665 the most recent game_ids first. Paginated.
667 return player_game_index_data(request)
670 def player_game_index_json(request):
672 Provides an index of the games in which a particular
673 player was involved. This is ordered by game_id, with
674 the most recent game_ids first. Paginated. JSON.
676 return [{'status':'not implemented'}]
679 def player_accuracy_data(request):
680 player_id = request.matchdict['id']
681 allowed_weapons = ['nex', 'rifle', 'shotgun', 'uzi', 'minstanex']
685 if request.params.has_key('weapon'):
686 if request.params['weapon'] in allowed_weapons:
687 weapon_cd = request.params['weapon']
689 if request.params.has_key('games'):
691 games = request.params['games']
700 (avg, accs) = get_accuracy_stats(player_id, weapon_cd, games)
702 # if we don't have enough data for the given weapon
703 if len(accs) < games:
707 'player_id':player_id,
708 'player_url':request.route_url('player_info', id=player_id),
716 def player_accuracy(request):
718 Provides the accuracy for the given weapon. (JSON only)
720 return player_accuracy_data(request)
723 def player_accuracy_json(request):
725 Provides a JSON response representing the accuracy for the given weapon.
728 weapon = which weapon to display accuracy for. Valid values are 'nex',
729 'shotgun', 'uzi', and 'minstanex'.
730 games = over how many games to display accuracy. Can be up to 50.
732 return player_accuracy_data(request)
735 def player_damage_data(request):
736 player_id = request.matchdict['id']
737 allowed_weapons = ['grenadelauncher', 'electro', 'crylink', 'hagar',
738 'rocketlauncher', 'laser']
739 weapon_cd = 'rocketlauncher'
742 if request.params.has_key('weapon'):
743 if request.params['weapon'] in allowed_weapons:
744 weapon_cd = request.params['weapon']
746 if request.params.has_key('games'):
748 games = request.params['games']
757 (avg, dmgs) = get_damage_stats(player_id, weapon_cd, games)
759 # if we don't have enough data for the given weapon
760 if len(dmgs) < games:
764 'player_id':player_id,
765 'player_url':request.route_url('player_info', id=player_id),
773 def player_damage_json(request):
775 Provides a JSON response representing the damage for the given weapon.
778 weapon = which weapon to display damage for. Valid values are
779 'grenadelauncher', 'electro', 'crylink', 'hagar', 'rocketlauncher',
781 games = over how many games to display damage. Can be up to 50.
783 return player_damage_data(request)
786 def player_hashkey_info_data(request):
787 # hashkey = request.matchdict['hashkey']
789 # the incoming hashkey is double quoted, and WSGI unquotes once...
790 # hashkey = unquote(hashkey)
792 # if using request verification to obtain the hashkey
793 (idfp, status) = verify_request(request)
794 log.debug("d0_blind_id verification: idfp={0} status={1}\n".format(idfp, status))
796 log.debug("\n----- BEGIN REQUEST BODY -----\n" + request.body +
797 "----- END REQUEST BODY -----\n\n")
799 # if config is to *not* verify requests and we get nothing back, this
800 # query will return nothing and we'll 404.
802 player = DBSession.query(Player).\
803 filter(Player.player_id == Hashkey.player_id).\
804 filter(Player.active_ind == True).\
805 filter(Hashkey.hashkey == idfp).one()
807 games_played = get_games_played(player.player_id)
808 overall_stats = get_overall_stats(player.player_id)
809 fav_maps = get_fav_maps(player.player_id)
810 elos = get_elos(player.player_id)
811 ranks = get_ranks(player.player_id)
812 most_recent_game = get_recent_games(player.player_id, 1)[0]
814 except Exception as e:
815 raise pyramid.httpexceptions.HTTPNotFound
817 return {'player':player,
819 'games_played':games_played,
820 'overall_stats':overall_stats,
824 'most_recent_game':most_recent_game,
828 def player_hashkey_info_json(request):
830 Provides detailed information on a specific player. JSON.
833 # All player_info fields are converted into JSON-formattable dictionaries
834 player_info = player_hashkey_info_data(request)
836 player = player_info['player'].to_dict()
839 for game in player_info['games_played']:
840 games_played[game.game_type_cd] = to_json(game)
843 for gt,stats in player_info['overall_stats'].items():
844 overall_stats[gt] = to_json(stats)
847 for gt,elo in player_info['elos'].items():
848 elos[gt] = to_json(elo.to_dict())
851 for gt,rank in player_info['ranks'].items():
852 ranks[gt] = to_json(rank)
855 for gt,mapinfo in player_info['fav_maps'].items():
856 fav_maps[gt] = to_json(mapinfo)
858 most_recent_game = to_json(player_info['most_recent_game'])
863 'games_played': games_played,
864 'overall_stats': overall_stats,
865 'fav_maps': fav_maps,
868 'most_recent_game': most_recent_game,
872 def player_hashkey_info_text(request):
874 Provides detailed information on a specific player. Plain text.
877 now = timegm(datetime.datetime.utcnow().timetuple())
879 # All player_info fields are converted into JSON-formattable dictionaries
880 player_info = player_hashkey_info_data(request)
882 # gather all of the data up into aggregate structures
883 player = player_info['player']
884 games_played = player_info['games_played']
885 overall_stats = player_info['overall_stats']
886 elos = player_info['elos']
887 ranks = player_info['ranks']
888 fav_maps = player_info['fav_maps']
889 most_recent_game = player_info['most_recent_game']
891 # one-offs for things needing conversion for text/plain
892 player_joined = timegm(player.create_dt.timetuple())
893 player_joined_dt = player.create_dt
894 alivetime = int(datetime_seconds(overall_stats['overall'].total_playing_time))
896 # this is a plain text response, if we don't do this here then
897 # Pyramid will assume html
898 request.response.content_type = 'text/plain'
904 'hashkey': player_info['hashkey'],
905 'player_joined': player_joined,
906 'player_joined_dt': player_joined_dt,
907 'games_played': games_played,
908 'overall_stats': overall_stats,
909 'alivetime': alivetime,
910 'fav_maps': fav_maps,
913 'most_recent_game': most_recent_game,
917 def player_elo_info_data(request):
919 Provides elo information on a specific player. Raw data is returned.
921 (idfp, status) = verify_request(request)
922 log.debug("d0_blind_id verification: idfp={0} status={1}\n".format(idfp, status))
924 log.debug("\n----- BEGIN REQUEST BODY -----\n" + request.body +
925 "----- END REQUEST BODY -----\n\n")
927 hashkey = request.matchdict['hashkey']
929 # the incoming hashkey is double quoted, and WSGI unquotes once...
930 hashkey = unquote(hashkey)
933 player = DBSession.query(Player).\
934 filter(Player.player_id == Hashkey.player_id).\
935 filter(Player.active_ind == True).\
936 filter(Hashkey.hashkey == hashkey).one()
938 elos = get_elos(player.player_id)
940 except Exception as e:
942 raise pyramid.httpexceptions.HTTPNotFound
951 def player_elo_info_json(request):
953 Provides elo information on a specific player. JSON.
955 elo_info = player_elo_info_data(request)
957 player = player_info['player'].to_dict()
960 for gt, elo in elo_info['elos'].items():
961 elos[gt] = to_json(elo.to_dict())
970 def player_elo_info_text(request):
972 Provides elo information on a specific player. Plain text.
975 now = timegm(datetime.datetime.utcnow().timetuple())
977 # All player_info fields are converted into JSON-formattable dictionaries
978 elo_info = player_elo_info_data(request)
980 # this is a plain text response, if we don't do this here then
981 # Pyramid will assume html
982 request.response.content_type = 'text/plain'
987 'hashkey': elo_info['hashkey'],
988 'player': elo_info['player'],
989 'elos': elo_info['elos'],
993 def player_captimes_data(request):
994 player_id = int(request.matchdict['player_id'])
998 if request.params.has_key('page'):
999 current_page = request.params['page']
1003 PlayerCaptimes = namedtuple('PlayerCaptimes', ['fastest_cap',
1004 'create_dt', 'create_dt_epoch', 'create_dt_fuzzy',
1005 'player_id', 'game_id', 'map_id', 'map_name', 'server_id', 'server_name'])
1007 player = DBSession.query(Player).filter_by(player_id=player_id).one()
1009 #pct_q = DBSession.query('fastest_cap', 'create_dt', 'player_id', 'game_id', 'map_id',
1010 # 'map_name', 'server_id', 'server_name').\
1012 # "SELECT ct.fastest_cap, "
1017 # "m.name map_name, "
1019 # "s.name server_name "
1020 # "FROM player_map_captimes ct, "
1024 # "WHERE ct.player_id = :player_id "
1025 # "AND g.game_id = ct.game_id "
1026 # "AND g.server_id = s.server_id "
1027 # "AND m.map_id = ct.map_id "
1028 # #"ORDER BY ct.fastest_cap "
1029 # "ORDER BY ct.create_dt desc"
1030 # ).params(player_id=player_id)
1033 pct_q = DBSession.query(PlayerCaptime.fastest_cap, PlayerCaptime.create_dt,
1034 PlayerCaptime.player_id, PlayerCaptime.game_id, PlayerCaptime.map_id,
1035 Map.name.label('map_name'), Game.server_id, Server.name.label('server_name')).\
1036 filter(PlayerCaptime.player_id==player_id).\
1037 filter(PlayerCaptime.game_id==Game.game_id).\
1038 filter(PlayerCaptime.map_id==Map.map_id).\
1039 filter(Game.server_id==Server.server_id).\
1040 order_by(expr.desc(PlayerCaptime.create_dt))
1042 player_captimes = Page(pct_q, current_page, items_per_page=20, url=page_url)
1044 # replace the items in the canned pagination class with more rich ones
1045 player_captimes.items = [PlayerCaptimes(
1046 fastest_cap=row.fastest_cap,
1047 create_dt=row.create_dt,
1048 create_dt_epoch=timegm(row.create_dt.timetuple()),
1049 create_dt_fuzzy=pretty_date(row.create_dt),
1050 player_id=row.player_id,
1051 game_id=row.game_id,
1053 map_name=row.map_name,
1054 server_id=row.server_id,
1055 server_name=row.server_name
1056 ) for row in player_captimes.items]
1058 except Exception as e:
1060 player_captimes = None
1063 'player_id':player_id,
1065 'captimes':player_captimes,
1066 #'player_url':request.route_url('player_info', id=player_id),
1070 def player_captimes(request):
1071 return player_captimes_data(request)
1074 def player_captimes_json(request):
1075 return player_captimes_data(request)
1078 def player_weaponstats_data_json(request):
1079 player_id = request.matchdict["id"]
1083 game_type_cd = request.params.get("game_type", None)
1084 if game_type_cd == "overall":
1088 if request.params.has_key("limit"):
1089 limit = int(request.params["limit"])
1096 games_raw = DBSession.query(sa.distinct(Game.game_id)).\
1097 filter(Game.game_id == PlayerWeaponStat.game_id).\
1098 filter(PlayerWeaponStat.player_id == player_id)
1100 if game_type_cd is not None:
1101 games_raw = games_raw.filter(Game.game_type_cd == game_type_cd)
1103 games_raw = games_raw.order_by(Game.game_id.desc()).limit(limit).all()
1105 weapon_stats_raw = DBSession.query(PlayerWeaponStat).\
1106 filter(PlayerWeaponStat.player_id == player_id).\
1107 filter(PlayerWeaponStat.game_id.in_(games_raw)).all()
1109 games_to_weapons = {}
1112 for ws in weapon_stats_raw:
1113 if ws.game_id not in games_to_weapons:
1114 games_to_weapons[ws.game_id] = [ws.weapon_cd]
1116 games_to_weapons[ws.game_id].append(ws.weapon_cd)
1118 weapons_used[ws.weapon_cd] = weapons_used.get(ws.weapon_cd, 0) + 1
1119 sum_avgs[ws.weapon_cd] = sum_avgs.get(ws.weapon_cd, 0) + float(ws.hit)/float(ws.fired)
1121 # Creating zero-valued weapon stat entries for games where a weapon was not
1122 # used in that game, but was used in another game for the set. This makes
1123 # the charts look smoother
1124 for game_id in games_to_weapons.keys():
1125 for weapon_cd in set(weapons_used.keys()) - set(games_to_weapons[game_id]):
1126 weapon_stats_raw.append(PlayerWeaponStat(player_id=player_id,
1127 game_id=game_id, weapon_cd=weapon_cd))
1129 # averages for the weapons used in the range
1131 for w in weapons_used.keys():
1132 avgs[w] = round(sum_avgs[w]/float(weapons_used[w])*100, 2)
1134 weapon_stats_raw = sorted(weapon_stats_raw, key = lambda x: x.game_id)
1135 games = sorted(games_to_weapons.keys())
1136 weapon_stats = [ws.to_dict() for ws in weapon_stats_raw]
1139 "weapon_stats": weapon_stats,
1140 "weapons_used": weapons_used.keys(),