blob: ea87d0e0004f670258137ff84fd220a98c2ac7ed [file] [log] [blame]
// Copyright (C) 2024 The Android Open Source Project
//
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// http://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
import {duration, Time, time} from '../../base/time';
import {colorForFtrace} from '../../public/lib/colorizer';
import {LIMIT} from '../../common/track_data';
import {Store, TimelineFetcher} from '../../common/track_helper';
import {checkerboardExcept} from '../../frontend/checkerboard';
import {TrackData} from '../../common/track_data';
import {Engine} from '../../trace_processor/engine';
import {Track} from '../../public/track';
import {LONG, NUM, STR} from '../../trace_processor/query_result';
import {FtraceFilter} from './common';
import {Monitor} from '../../base/monitor';
import {TrackRenderContext} from '../../public/track';
import {SourceDataset, Dataset} from '../../trace_processor/dataset';
const MARGIN = 2;
const RECT_HEIGHT = 18;
const RECT_WIDTH = 8;
const TRACK_HEIGHT = RECT_HEIGHT + 2 * MARGIN;
interface Data extends TrackData {
events: Array<{
timestamp: time;
color: string;
}>;
}
export interface Config {
cpu?: number;
}
export class FtraceRawTrack implements Track {
private fetcher = new TimelineFetcher(this.onBoundsChange.bind(this));
private engine: Engine;
private cpu: number;
private store: Store<FtraceFilter>;
private readonly monitor: Monitor;
constructor(engine: Engine, cpu: number, store: Store<FtraceFilter>) {
this.engine = engine;
this.cpu = cpu;
this.store = store;
this.monitor = new Monitor([() => store.state]);
}
getDataset(): Dataset {
return new SourceDataset({
// 'ftrace_event' doesn't have a dur column, but injecting dur=0 (all
// ftrace events are effectively 'instant') allows us to participate in
// generic slice aggregations
src: 'select id, ts, 0 as dur, name, cpu from ftrace_event',
schema: {
id: NUM,
name: STR,
ts: LONG,
dur: LONG,
},
filter: {
col: 'cpu',
eq: this.cpu,
},
});
}
async onUpdate({
visibleWindow,
resolution,
}: TrackRenderContext): Promise<void> {
this.monitor.ifStateChanged(() => {
this.fetcher.invalidate();
});
await this.fetcher.requestData(visibleWindow.toTimeSpan(), resolution);
}
async onDestroy?(): Promise<void> {
this.fetcher[Symbol.dispose]();
}
getHeight(): number {
return TRACK_HEIGHT;
}
async onBoundsChange(
start: time,
end: time,
resolution: duration,
): Promise<Data> {
const excludeList = Array.from(this.store.state.excludeList);
const excludeListSql = excludeList.map((s) => `'${s}'`).join(',');
const cpuFilter = this.cpu === undefined ? '' : `and cpu = ${this.cpu}`;
const queryRes = await this.engine.query(`
select
cast(ts / ${resolution} as integer) * ${resolution} as tsQuant,
name
from ftrace_event
where
name not in (${excludeListSql}) and
ts >= ${start} and ts <= ${end} ${cpuFilter}
group by tsQuant
order by tsQuant limit ${LIMIT};`);
const rowCount = queryRes.numRows();
const it = queryRes.iter({tsQuant: LONG, name: STR});
const events = [];
for (let row = 0; it.valid(); it.next(), row++) {
events.push({
timestamp: Time.fromRaw(it.tsQuant),
color: colorForFtrace(it.name).base.cssString,
});
}
return {
start,
end,
resolution,
length: rowCount,
events,
};
}
render({ctx, size, timescale}: TrackRenderContext): void {
const data = this.fetcher.data;
if (data === undefined) return; // Can't possibly draw anything.
const dataStartPx = timescale.timeToPx(data.start);
const dataEndPx = timescale.timeToPx(data.end);
checkerboardExcept(
ctx,
this.getHeight(),
0,
size.width,
dataStartPx,
dataEndPx,
);
for (const e of data.events) {
ctx.fillStyle = e.color;
const xPos = Math.floor(timescale.timeToPx(e.timestamp));
ctx.fillRect(xPos - RECT_WIDTH / 2, MARGIN, RECT_WIDTH, RECT_HEIGHT);
}
}
}