LookingGlass/client/src/overlay/graphs.c
Quantum 134829cbf2 [client] imgui: make graph y-axis configurable
The default of [0, 50] makes sense for FPS/UPS graphs, but does not for
things like the import graph. The latter should not take more than 5 ms
for sure.

This commit allows the min/max y-axis value to be specified when registering
the graph.
2021-07-29 15:54:15 +10:00

175 lines
4.0 KiB
C

/**
* Looking Glass
* Copyright (C) 2017-2021 The Looking Glass Authors
* https://looking-glass.io
*
* This program is free software; you can redistribute it and/or modify it
* under the terms of the GNU General Public License as published by the Free
* Software Foundation; either version 2 of the License, or (at your option)
* any later version.
*
* This program is distributed in the hope that it will be useful, but WITHOUT
* ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
* FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
* more details.
*
* You should have received a copy of the GNU General Public License along
* with this program; if not, write to the Free Software Foundation, Inc., 59
* Temple Place, Suite 330, Boston, MA 02111-1307 USA
*/
#include "interface/overlay.h"
#include "cimgui.h"
#include "../main.h"
#include "ll.h"
#include "common/debug.h"
#include "overlay_utils.h"
struct GraphState
{
struct ll * graphs;
};
static struct GraphState gs = {0};
struct OverlayGraph
{
const char * name;
RingBuffer buffer;
bool enabled;
float min;
float max;
};
static bool graphs_init(void ** udata, void * params)
{
gs.graphs = ll_new();
return true;
}
static void graphs_free(void * udata)
{
struct OverlayGraph * graph;
while(ll_shift(gs.graphs, (void **)&graph))
free(graph);
ll_free(gs.graphs);
}
struct BufferMetrics
{
float min;
float max;
float sum;
float avg;
float freq;
};
static bool rbCalcMetrics(int index, void * value_, void * udata_)
{
float * value = value_;
struct BufferMetrics * udata = udata_;
if (index == 0)
{
udata->min = *value;
udata->max = *value;
udata->sum = *value;
return true;
}
if (udata->min > *value)
udata->min = *value;
if (udata->max < *value)
udata->max = *value;
udata->sum += *value;
return true;
}
static int graphs_render(void * udata, bool interactive,
struct Rect * windowRects, int maxRects)
{
if (!g_state.showTiming)
return 0;
float fontSize = igGetFontSize();
ImVec2 pos = {0.0f, 0.0f};
igSetNextWindowBgAlpha(0.4f);
igSetNextWindowPos(pos, 0, pos);
igBegin(
"Performance Metrics",
NULL,
ImGuiWindowFlags_NoDecoration | ImGuiWindowFlags_AlwaysAutoResize |
ImGuiWindowFlags_NoSavedSettings | ImGuiWindowFlags_NoFocusOnAppearing |
ImGuiWindowFlags_NoNav | ImGuiWindowFlags_NoTitleBar
);
GraphHandle graph;
for (ll_reset(gs.graphs); ll_walk(gs.graphs, (void **)&graph); )
{
if (!graph->enabled)
continue;
struct BufferMetrics metrics = {};
ringbuffer_forEach(graph->buffer, rbCalcMetrics, &metrics);
if (metrics.sum > 0.0f)
{
metrics.avg = metrics.sum / ringbuffer_getCount(graph->buffer);
metrics.freq = 1000.0f / metrics.avg;
}
char title[64];
const ImVec2 size = {28.0f * fontSize, 7.0f * fontSize};
snprintf(title, sizeof(title),
"%s: min:%4.2f max:%4.2f avg:%4.2f/%4.2fHz",
graph->name, metrics.min, metrics.max, metrics.avg, metrics.freq);
igPlotLinesFloatPtr(
"",
(float *)ringbuffer_getValues(graph->buffer),
ringbuffer_getLength(graph->buffer),
ringbuffer_getStart (graph->buffer),
title,
graph->min,
graph->max,
size,
sizeof(float));
};
overlayGetImGuiRect(windowRects);
igEnd();
return 1;
}
struct LG_OverlayOps LGOverlayGraphs =
{
.name = "Graphs",
.init = graphs_init,
.free = graphs_free,
.render = graphs_render
};
GraphHandle overlayGraph_register(const char * name, RingBuffer buffer, float min, float max)
{
struct OverlayGraph * graph = malloc(sizeof(struct OverlayGraph));
graph->name = name;
graph->buffer = buffer;
graph->enabled = true;
graph->min = min;
graph->max = max;
ll_push(gs.graphs, graph);
return graph;
}
void overlayGraph_unregister(GraphHandle handle)
{
handle->enabled = false;
}