Files
renderdoc/qrenderdoc/Windows/ConstantBufferPreviewer.cpp
T
baldurk ebaefc82a9 Normalise and make python/public interface more consistent
* We enforce a naming scheme more strongly - types, member functions,
  and enum values must be UpperCaseCamel, and member variables must be
  lowerCaseCamel. No underscores allowed.
* eventId not eventID or EID, and Id preferred to ID in general. Also
  for resourceId.
* Removed some lingering hungarian m_Foo naming.
* Some pipeline state structs that are almost identical between the
  different APIs are pulled out into common structs. Where something
  doesn't make sense (e.g. viewport enable for vulkan) it will just be
  set to a sensible default (in that case always true).
* Changed scissors to be x/y & width/height instead of sometimes
  left/top/right/bottom
* Abbreviations are discouraged, e.g. operation not op, function not
  func.
2017-12-22 13:02:36 +00:00

384 lines
11 KiB
C++

/******************************************************************************
* The MIT License (MIT)
*
* Copyright (c) 2016-2017 Baldur Karlsson
*
* Permission is hereby granted, free of charge, to any person obtaining a copy
* of this software and associated documentation files (the "Software"), to deal
* in the Software without restriction, including without limitation the rights
* to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
* copies of the Software, and to permit persons to whom the Software is
* furnished to do so, subject to the following conditions:
*
* The above copyright notice and this permission notice shall be included in
* all copies or substantial portions of the Software.
*
* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
* IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
* FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
* AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
* LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
* OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
* THE SOFTWARE.
******************************************************************************/
#include "ConstantBufferPreviewer.h"
#include <QFontDatabase>
#include <QTextStream>
#include "3rdparty/toolwindowmanager/ToolWindowManager.h"
#include "ui_ConstantBufferPreviewer.h"
QList<ConstantBufferPreviewer *> ConstantBufferPreviewer::m_Previews;
ConstantBufferPreviewer::ConstantBufferPreviewer(ICaptureContext &ctx, const ShaderStage stage,
uint32_t slot, uint32_t idx, QWidget *parent)
: QFrame(parent), ui(new Ui::ConstantBufferPreviewer), m_Ctx(ctx)
{
ui->setupUi(this);
m_stage = stage;
m_slot = slot;
m_arrayIdx = idx;
QObject::connect(ui->formatSpecifier, &BufferFormatSpecifier::processFormat, this,
&ConstantBufferPreviewer::processFormat);
ui->formatSpecifier->showHelp(false);
ui->splitter->setCollapsible(1, true);
ui->splitter->setSizes({1, 0});
ui->splitter->handle(1)->setEnabled(false);
{
ui->variables->setColumns({tr("Name"), tr("Value"), tr("Type")});
ui->variables->header()->setSectionResizeMode(0, QHeaderView::ResizeToContents);
ui->variables->header()->setSectionResizeMode(1, QHeaderView::Stretch);
ui->variables->header()->setSectionResizeMode(2, QHeaderView::ResizeToContents);
}
ui->variables->setFont(QFontDatabase::systemFont(QFontDatabase::FixedFont));
m_Previews.push_back(this);
m_Ctx.AddCaptureViewer(this);
}
ConstantBufferPreviewer::~ConstantBufferPreviewer()
{
m_Ctx.RemoveCaptureViewer(this);
m_Previews.removeOne(this);
delete ui;
}
ConstantBufferPreviewer *ConstantBufferPreviewer::has(ShaderStage stage, uint32_t slot, uint32_t idx)
{
for(ConstantBufferPreviewer *c : m_Previews)
{
if(c->m_stage == stage && c->m_slot == slot && c->m_arrayIdx == idx)
return c;
}
return NULL;
}
ConstantBufferPreviewer *ConstantBufferPreviewer::getOne()
{
for(ConstantBufferPreviewer *c : m_Previews)
{
if(ToolWindowManager::managerOf(c))
return c;
}
return NULL;
}
void ConstantBufferPreviewer::OnCaptureLoaded()
{
OnCaptureClosed();
}
void ConstantBufferPreviewer::OnCaptureClosed()
{
ui->variables->clear();
ui->saveCSV->setEnabled(false);
ToolWindowManager::closeToolWindow(this);
}
void ConstantBufferPreviewer::OnEventChanged(uint32_t eventId)
{
BoundCBuffer cb = m_Ctx.CurPipelineState().GetConstantBuffer(m_stage, m_slot, m_arrayIdx);
m_cbuffer = cb.resourceId;
uint64_t offs = cb.byteOffset;
uint64_t size = cb.byteSize;
m_shader = m_Ctx.CurPipelineState().GetShader(m_stage);
QString entryPoint = m_Ctx.CurPipelineState().GetShaderEntryPoint(m_stage);
const ShaderReflection *reflection = m_Ctx.CurPipelineState().GetShaderReflection(m_stage);
updateLabels();
if(reflection == NULL || m_slot >= reflection->constantBlocks.size())
{
setVariables({});
return;
}
if(!m_formatOverride.empty())
{
m_Ctx.Replay().AsyncInvoke([this, offs, size](IReplayController *r) {
bytebuf data = r->GetBufferData(m_cbuffer, offs, size);
rdcarray<ShaderVariable> vars = applyFormatOverride(data);
GUIInvoke::call([this, vars] { setVariables(vars); });
});
}
else
{
m_Ctx.Replay().AsyncInvoke([this, entryPoint, offs](IReplayController *r) {
rdcarray<ShaderVariable> vars = r->GetCBufferVariableContents(
m_shader, entryPoint.toUtf8().data(), m_slot, m_cbuffer, offs);
GUIInvoke::call([this, vars] { setVariables(vars); });
});
}
}
void ConstantBufferPreviewer::on_setFormat_toggled(bool checked)
{
if(!checked)
{
ui->splitter->setCollapsible(1, true);
ui->splitter->setSizes({1, 0});
ui->splitter->handle(1)->setEnabled(false);
processFormat(QString());
return;
}
ui->splitter->setCollapsible(1, false);
ui->splitter->setSizes({1, 1});
ui->splitter->handle(1)->setEnabled(true);
}
void ConstantBufferPreviewer::on_resourceDetails_clicked()
{
if(!m_Ctx.HasResourceInspector())
m_Ctx.ShowResourceInspector();
m_Ctx.GetResourceInspector()->Inspect(m_cbuffer);
ToolWindowManager::raiseToolWindow(m_Ctx.GetResourceInspector()->Widget());
}
void ConstantBufferPreviewer::on_saveCSV_clicked()
{
QString filename = RDDialog::getSaveFileName(this, tr("Export buffer data as CSV"), QString(),
tr("CSV Files (*.csv)"));
if(!filename.isEmpty())
{
QDir dirinfo = QFileInfo(filename).dir();
if(dirinfo.exists())
{
QFile f(filename, this);
if(f.open(QIODevice::WriteOnly | QIODevice::Truncate))
{
QTextStream ts(&f);
ts << tr("Name,Value,Type\n");
for(int i = 0; i < ui->variables->topLevelItemCount(); i++)
exportCSV(ts, QString(), ui->variables->topLevelItem(i));
return;
}
RDDialog::critical(
this, tr("Error exporting buffer data"),
tr("Couldn't open path %1 for write.\n%2").arg(filename).arg(f.errorString()));
}
else
{
RDDialog::critical(this, tr("Invalid directory"),
tr("Cannot find target directory to save to"));
}
}
}
void ConstantBufferPreviewer::exportCSV(QTextStream &ts, const QString &prefix, RDTreeWidgetItem *item)
{
if(item->childCount() == 0)
{
ts << QFormatStr("%1,\"%2\",%3\n").arg(item->text(0)).arg(item->text(1)).arg(item->text(2));
}
else
{
ts << QFormatStr("%1,,%2\n").arg(item->text(0)).arg(item->text(2));
for(int i = 0; i < item->childCount(); i++)
exportCSV(ts, item->text(0) + lit("."), item->child(i));
}
}
void ConstantBufferPreviewer::processFormat(const QString &format)
{
if(format.isEmpty())
{
m_formatOverride.clear();
ui->formatSpecifier->setErrors(QString());
}
else
{
QString errors;
m_formatOverride = FormatElement::ParseFormatString(format, 0, false, errors);
ui->formatSpecifier->setErrors(errors);
}
OnEventChanged(m_Ctx.CurEvent());
}
void ConstantBufferPreviewer::addVariables(RDTreeWidgetItem *root,
const rdcarray<ShaderVariable> &vars)
{
for(const ShaderVariable &v : vars)
{
RDTreeWidgetItem *n = new RDTreeWidgetItem({v.name, VarString(v), TypeString(v)});
root->addChild(n);
if(v.rows > 1)
{
for(uint32_t i = 0; i < v.rows; i++)
n->addChild(new RDTreeWidgetItem(
{QFormatStr("%1.row%2").arg(v.name).arg(i), RowString(v, i), RowTypeString(v)}));
}
if(!v.members.isEmpty())
addVariables(n, v.members);
}
}
bool ConstantBufferPreviewer::updateVariables(RDTreeWidgetItem *root,
const rdcarray<ShaderVariable> &prevVars,
const rdcarray<ShaderVariable> &newVars)
{
// mismatched child count? can't update
if(prevVars.size() != newVars.size())
return false;
for(int i = 0; i < prevVars.count(); i++)
{
const ShaderVariable &a = prevVars[i];
const ShaderVariable &b = newVars[i];
// different names? can't update
if(strcmp(a.name.c_str(), b.name.c_str()))
return false;
// different size or type? can't update
if(a.rows != b.rows || a.columns != b.columns || a.displayAsHex != b.displayAsHex ||
a.isStruct != b.isStruct || a.type != b.type)
return false;
// update this node's value column
RDTreeWidgetItem *node = root->child(i);
node->setText(1, VarString(b));
if(a.rows > 1)
{
for(uint32_t r = 0; r < a.rows; r++)
node->child(r)->setText(1, RowString(b, r));
}
if(!a.members.isEmpty())
{
// recurse to update child members. This handles a and b having different number of variables
bool updated = updateVariables(node, a.members, b.members);
if(!updated)
return false;
}
}
// got this far without bailing? we updated!
return true;
}
void ConstantBufferPreviewer::setVariables(const rdcarray<ShaderVariable> &vars)
{
ui->variables->beginUpdate();
// try to update the variables in-place by only changing their values, if the set of variables
// matches *exactly* to what we had before.
//
// This keeps things like expanded structs and matrices when moving between drawcalls
bool updated = updateVariables(ui->variables->invisibleRootItem(), m_Vars, vars);
// update the variables either way
m_Vars = vars;
if(updated)
{
ui->variables->endUpdate();
return;
}
ui->variables->clear();
ui->saveCSV->setEnabled(false);
if(!vars.isEmpty())
{
addVariables(ui->variables->invisibleRootItem(), vars);
ui->saveCSV->setEnabled(true);
}
ui->variables->endUpdate();
}
void ConstantBufferPreviewer::updateLabels()
{
QString bufName = m_Ctx.GetResourceName(m_cbuffer);
const ShaderReflection *reflection = m_Ctx.CurPipelineState().GetShaderReflection(m_stage);
if(reflection != NULL)
{
if(m_Ctx.IsAutogeneratedName(m_cbuffer) && m_slot < reflection->constantBlocks.size() &&
!reflection->constantBlocks[m_slot].name.isEmpty())
bufName = QFormatStr("<%1>").arg(reflection->constantBlocks[m_slot].name);
}
ui->nameLabel->setText(bufName);
GraphicsAPI pipeType = m_Ctx.APIProps().pipelineType;
QString title = QFormatStr("%1 %2 %3")
.arg(ToQStr(m_stage, pipeType))
.arg(IsD3D(pipeType) ? lit("CB") : lit("UBO"))
.arg(m_slot);
if(m_Ctx.CurPipelineState().SupportsResourceArrays())
title += QFormatStr(" [%1]").arg(m_arrayIdx);
ui->slotLabel->setText(title);
setWindowTitle(title);
}
rdcarray<ShaderVariable> ConstantBufferPreviewer::applyFormatOverride(const bytebuf &bytes)
{
QVector<ShaderVariable> variables;
variables.resize(m_formatOverride.length());
for(int i = 0; i < m_formatOverride.length(); i++)
{
const byte *b = bytes.begin() + m_formatOverride[i].offset;
variables[i] = m_formatOverride[i].GetShaderVar(b, bytes.end());
}
rdcarray<ShaderVariable> ret;
ret = variables.toStdVector();
return ret;
}