%% @doc
%%
%% Serializes Prometheus registry using the latest
%% [text format](http://bit.ly/2cxSuJP).
%%
%% Example output:
%%
%% # TYPE http_request_duration_milliseconds histogram
%% # HELP http_request_duration_milliseconds Http Request execution time
%% http_request_duration_milliseconds_bucket{method="post",le="100"} 0
%% http_request_duration_milliseconds_bucket{method="post",le="300"} 1
%% http_request_duration_milliseconds_bucket{method="post",le="500"} 3
%% http_request_duration_milliseconds_bucket{method="post",le="750"} 4
%% http_request_duration_milliseconds_bucket{method="post",le="1000"} 5
%% http_request_duration_milliseconds_bucket{method="post",le="+Inf"} 6
%% http_request_duration_milliseconds_count{method="post"} 6
%% http_request_duration_milliseconds_sum{method="post"} 4350
%%
%% @end
-module(prometheus_text_format).
-export([content_type/0,
format/0,
format/1]).
-ifdef(TEST).
-export([escape_metric_help/1,
escape_label_value/1,
emit_mf_prologue/2,
emit_mf_metrics/2
]).
-endif.
-include("prometheus_model.hrl").
-behaviour(prometheus_format).
-compile({inline, [add_brackets/1, render_label_pair/1]}).
%%====================================================================
%% Macros
%%====================================================================
%%====================================================================
%% Format API
%%====================================================================
-spec content_type() -> binary().
%% @doc
%% Returns content type of the latest [text format](http://bit.ly/2cxSuJP).
%% @end
content_type() ->
<<"text/plain; version=0.0.4">>.
%% @equiv format(default)
-spec format() -> binary().
%% @doc
%% Formats `default' registry using the latest text format.
%% @end
format() ->
format(default).
-spec format(Registry :: prometheus_registry:registry()) -> binary().
%% @doc
%% Formats `Registry' using the latest text format.
%% @end
format(Registry) ->
{ok, Fd} = ram_file:open("", [write, read, binary]),
Callback = fun (_, Collector) ->
registry_collect_callback(Fd, Registry, Collector)
end,
prometheus_registry:collect(Registry, Callback),
file:write(Fd, "\n"),
{ok, Size} = ram_file:get_size(Fd),
{ok, Str} = file:pread(Fd, 0, Size),
ok = file:close(Fd),
Str.
%%====================================================================
%% Private Parts
%%====================================================================
registry_collect_callback(Fd, Registry, Collector) ->
Callback = fun (MF) ->
emit_mf_prologue(Fd, MF),
emit_mf_metrics(Fd, MF)
end,
prometheus_collector:collect_mf(Registry, Collector, Callback).
%% @private
emit_mf_prologue(Fd, #'MetricFamily'{name=Name, help=Help, type=Type}) ->
Bytes = ["# TYPE ", Name, " ", string_type(Type), "\n# HELP ",
Name, " ", escape_metric_help(Help), "\n"],
file:write(Fd, Bytes).
%% @private
emit_mf_metrics(Fd, #'MetricFamily'{name=Name, metric = Metrics}) ->
%% file:write/2 is an expensive operation, as it goes through a port driver.
%% Instead a large chunk of bytes is being collected here, in a
%% way that triggers binary append optimization in ERTS.
Bytes = lists:foldl(fun (Metric, Blob) ->
<>
end, <<>>, Metrics),
file:write(Fd, Bytes).
render_metric(Name, #'Metric'{label=Labels,
counter=#'Counter'{value=Value}}) ->
render_series(Name, render_labels(Labels), Value);
render_metric(Name, #'Metric'{label=Labels,
gauge=#'Gauge'{value=Value}}) ->
render_series(Name, render_labels(Labels), Value);
render_metric(Name, #'Metric'{label=Labels,
untyped=#'Untyped'{value=Value}}) ->
render_series(Name, render_labels(Labels), Value);
render_metric(Name, #'Metric'{label=Labels,
summary=#'Summary'{sample_count=Count,
sample_sum=Sum,
quantile=Quantiles}}) ->
LString = render_labels(Labels),
Bytes1 = render_series([Name, "_count"], LString, Count),
Bytes2 = <>,
Bytes3 = lists:foldl(fun (#'Quantile'{quantile = QN, value = QV}, Blob) ->
Val = render_series(
[Name],
render_labels(
[LString,
#'LabelPair'{name="quantile",
value=io_lib:format("~p", [QN])}]),
QV),
<>
end, Bytes2, Quantiles),
Bytes3;
render_metric(Name, #'Metric'{label=Labels,
histogram=#'Histogram'{sample_count=Count,
sample_sum=Sum,
bucket=Buckets}}) ->
%% StringLabels = labels_stringify(Labels),
LString = render_labels(Labels),
Bytes1 = lists:foldl(fun (Bucket, Blob) ->
<>
end, << >>, Buckets),
Bytes2 = <>,
Bytes3 = <>,
Bytes3.
emit_histogram_bucket(Name, LString, #'Bucket'{cumulative_count=BCount,
upper_bound=BBound}) ->
BLValue = bound_to_label_value(BBound),
render_series([Name, "_bucket"],
render_labels([LString, #'LabelPair'{name="le", value=BLValue}]),
BCount).
string_type('COUNTER') ->
"counter";
string_type('GAUGE') ->
"gauge";
string_type('SUMMARY') ->
"summary";
string_type('HISTOGRAM') ->
"histogram";
string_type('UNTYPED') ->
"untyped".
%% binary() in spec means 0 or more already rendered labels (name,
%% escaped value), joined with "," in between
-spec render_labels(binary() | [prometheus_model:'LabelPair'() | binary()]) -> binary().
-dialyzer({no_match, render_labels/1}).
render_labels([]) ->
<<>>;
%% This clause is the reason for `-dialyzer` attr. It's an
%% optimization, but it slightly violates the types automatically
%% generated from protobufs.
render_labels(B) when is_binary(B) ->
B;
render_labels([<<>>|Labels]) ->
render_labels(Labels);
render_labels([FirstLabel|Labels]) ->
Start = << (render_label_pair(FirstLabel))/binary >>,
B = lists:foldl(fun
(<<>>, Acc) ->
Acc;
(Label, Acc) ->
<>
end, Start, Labels),
<>.
-spec render_label_pair(prometheus_model:'LabelPair'() | binary()) -> binary().
render_label_pair(B) when is_binary(B) ->
B;
render_label_pair(#'LabelPair'{name=Name, value=Value}) ->
<< (iolist_to_binary(Name))/binary, "=\"", (escape_label_value(Value))/binary, "\"" >>.
add_brackets(<<>>) ->
<<>>;
add_brackets(LString) ->
<<"{", LString/binary, "}">>.
render_series(Name, LString, undefined) ->
<<(iolist_to_binary(Name))/binary, (add_brackets(LString))/binary, " NaN\n">>;
render_series(Name, LString, Value) when is_integer(Value) ->
<<(iolist_to_binary(Name))/binary,
(add_brackets(LString))/binary,
" ",
(integer_to_binary(Value))/binary , "\n">>;
render_series(Name, LString, Value) ->
<<(iolist_to_binary(Name))/binary,
(add_brackets(LString))/binary,
" ",
(iolist_to_binary(io_lib:format("~p", [Value])))/binary , "\n">>.
%% @private
escape_metric_help(Help) ->
escape_string(fun escape_help_char/1, Help).
%% @private
escape_help_char($\\ = X) ->
<>;
escape_help_char($\n) ->
<<$\\, $n>>;
escape_help_char(X) ->
<>.
bound_to_label_value(Bound) when is_integer(Bound) ->
integer_to_list(Bound);
bound_to_label_value(Bound) when is_float(Bound) ->
float_to_list(Bound);
bound_to_label_value(infinity) ->
"+Inf".
-spec escape_label_value(binary() | iolist() | undefined) -> binary().
%% @private
escape_label_value(LValue) when is_list(LValue); is_binary(LValue) ->
escape_string(fun escape_label_char/1, LValue);
escape_label_value(Value) ->
erlang:error({wtf, Value}).
%% @private
escape_label_char($\\ = X) ->
<>;
escape_label_char($\n) ->
<<$\\, $n>>;
escape_label_char($" = X) ->
<<$\\, X>>;
escape_label_char(X) ->
<>.
%% @private
escape_string(Fun, Str) when is_binary(Str) ->
<< <<(Fun(X))/binary>> || <> <= Str >>;
escape_string(Fun, Str) ->
escape_string(Fun, iolist_to_binary(Str)).