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-rw-r--r--lib/observer/src/observer_perf_wx.erl40
1 files changed, 25 insertions, 15 deletions
diff --git a/lib/observer/src/observer_perf_wx.erl b/lib/observer/src/observer_perf_wx.erl
index 1010a6af4c..6a1aac92c7 100644
--- a/lib/observer/src/observer_perf_wx.erl
+++ b/lib/observer/src/observer_perf_wx.erl
@@ -235,12 +235,14 @@ terminate(_Event, #state{appmon=Pid}) ->
code_change(_, _, State) ->
State.
-restart_fetcher(Node, #state{appmon=Old, panel=Panel, time=#ti{fetch=Freq}=Ti}=State) ->
+restart_fetcher(Node, #state{appmon=Old, panel=Panel, time=#ti{fetch=Freq}=Ti, wins=Wins0}=State) ->
catch Old ! exit,
Me = self(),
Pid = spawn_link(Node, observer_backend, fetch_stats, [Me, round(1000/Freq)]),
wxWindow:refresh(Panel),
- precalc(State#state{active=true, appmon=Pid, samples=reset_data(), time=Ti#ti{tick=0}}).
+ Wins = [W#win{state=undefined} || W <- Wins0],
+ precalc(State#state{active=true, appmon=Pid, samples=reset_data(),
+ wins=Wins, time=Ti#ti{tick=0}}).
reset_data() ->
{0, queue:new()}.
@@ -253,18 +255,25 @@ add_data(Stats, {N, Q}, Wins, _, Active) ->
add_data_1([#win{state={_,St}}|_]=Wins0, Last, N, {Drop, Q}, Active)
when St /= undefined ->
- {Wins, Stat} =
- lists:mapfoldl(fun(Win0, Entry) ->
- {Win1,Stat} = add_data_2(Win0, Last, Entry),
- case Active of
- true ->
- Win = add_data_3(Win1, N, Drop, Stat, Q),
- {Win, Stat};
- false ->
- {Win1, Stat}
- end
- end, #{}, Wins0),
- {Wins, {N,queue:in(Stat#{}, Q)}};
+ try
+ {Wins, Stat} =
+ lists:mapfoldl(fun(Win0, Entry) ->
+ {Win1,Stat} = add_data_2(Win0, Last, Entry),
+ case Active of
+ true ->
+ Win = add_data_3(Win1, N, Drop, Stat, Q),
+ {Win, Stat};
+ false ->
+ {Win1, Stat}
+ end
+ end, #{}, Wins0),
+ {Wins, {N,queue:in(Stat#{}, Q)}}
+ catch no_scheduler_change ->
+ {[Win#win{state=init_data(Id, Last),
+ info = info(Id, Last)}
+ || #win{name=Id}=Win <- Wins0], {0,queue:new()}}
+ end;
+
add_data_1(Wins, Stats, 1, {_, Q}, _) ->
{[Win#win{state=init_data(Id, Stats),
info = info(Id, Stats)}
@@ -409,7 +418,8 @@ collect_data(utilz, MemInfo, Max) ->
calc_delta([{Id, WN, TN}|Ss], [{Id, WP, TP}|Ps]) ->
[100*(WN-WP) div (TN-TP)|calc_delta(Ss, Ps)];
-calc_delta([], []) -> [].
+calc_delta([], []) -> [];
+calc_delta(_, _) -> throw(no_scheduler_change).
precalc(#state{samples=Data0, paint=Paint, time=Ti, wins=Wins0}=State) ->
Wins = [precalc(Ti, Data0, Paint, Win) || Win <- Wins0],