ClangFormat: apply to source, most of intern

Apply clang format as proposed in T53211.

For details on usage and instructions for migrating branches
without conflicts, see:

https://wiki.blender.org/wiki/Tools/ClangFormat
This commit is contained in:
2019-04-17 06:17:24 +02:00
parent b3dabc200a
commit e12c08e8d1
4481 changed files with 1230080 additions and 1155401 deletions

View File

@@ -20,92 +20,93 @@
#include "COM_MathBaseOperation.h"
#include "COM_ExecutionSystem.h"
void MathNode::convertToOperations(NodeConverter &converter, const CompositorContext &/*context*/) const
void MathNode::convertToOperations(NodeConverter &converter,
const CompositorContext & /*context*/) const
{
MathBaseOperation *operation = NULL;
MathBaseOperation *operation = NULL;
switch (this->getbNode()->custom1) {
case NODE_MATH_ADD:
operation = new MathAddOperation();
break;
case NODE_MATH_SUB:
operation = new MathSubtractOperation();
break;
case NODE_MATH_MUL:
operation = new MathMultiplyOperation();
break;
case NODE_MATH_DIVIDE:
operation = new MathDivideOperation();
break;
case NODE_MATH_SIN:
operation = new MathSineOperation();
break;
case NODE_MATH_COS:
operation = new MathCosineOperation();
break;
case NODE_MATH_TAN:
operation = new MathTangentOperation();
break;
case NODE_MATH_ASIN:
operation = new MathArcSineOperation();
break;
case NODE_MATH_ACOS:
operation = new MathArcCosineOperation();
break;
case NODE_MATH_ATAN:
operation = new MathArcTangentOperation();
break;
case NODE_MATH_POW:
operation = new MathPowerOperation();
break;
case NODE_MATH_LOG:
operation = new MathLogarithmOperation();
break;
case NODE_MATH_MIN:
operation = new MathMinimumOperation();
break;
case NODE_MATH_MAX:
operation = new MathMaximumOperation();
break;
case NODE_MATH_ROUND:
operation = new MathRoundOperation();
break;
case NODE_MATH_LESS:
operation = new MathLessThanOperation();
break;
case NODE_MATH_GREATER:
operation = new MathGreaterThanOperation();
break;
case NODE_MATH_MOD:
operation = new MathModuloOperation();
break;
case NODE_MATH_ABS:
operation = new MathAbsoluteOperation();
break;
case NODE_MATH_ATAN2:
operation = new MathArcTan2Operation();
break;
case NODE_MATH_FLOOR:
operation = new MathFloorOperation();
break;
case NODE_MATH_CEIL:
operation = new MathCeilOperation();
break;
case NODE_MATH_FRACT:
operation = new MathFractOperation();
break;
case NODE_MATH_SQRT:
operation = new MathSqrtOperation();
break;
}
switch (this->getbNode()->custom1) {
case NODE_MATH_ADD:
operation = new MathAddOperation();
break;
case NODE_MATH_SUB:
operation = new MathSubtractOperation();
break;
case NODE_MATH_MUL:
operation = new MathMultiplyOperation();
break;
case NODE_MATH_DIVIDE:
operation = new MathDivideOperation();
break;
case NODE_MATH_SIN:
operation = new MathSineOperation();
break;
case NODE_MATH_COS:
operation = new MathCosineOperation();
break;
case NODE_MATH_TAN:
operation = new MathTangentOperation();
break;
case NODE_MATH_ASIN:
operation = new MathArcSineOperation();
break;
case NODE_MATH_ACOS:
operation = new MathArcCosineOperation();
break;
case NODE_MATH_ATAN:
operation = new MathArcTangentOperation();
break;
case NODE_MATH_POW:
operation = new MathPowerOperation();
break;
case NODE_MATH_LOG:
operation = new MathLogarithmOperation();
break;
case NODE_MATH_MIN:
operation = new MathMinimumOperation();
break;
case NODE_MATH_MAX:
operation = new MathMaximumOperation();
break;
case NODE_MATH_ROUND:
operation = new MathRoundOperation();
break;
case NODE_MATH_LESS:
operation = new MathLessThanOperation();
break;
case NODE_MATH_GREATER:
operation = new MathGreaterThanOperation();
break;
case NODE_MATH_MOD:
operation = new MathModuloOperation();
break;
case NODE_MATH_ABS:
operation = new MathAbsoluteOperation();
break;
case NODE_MATH_ATAN2:
operation = new MathArcTan2Operation();
break;
case NODE_MATH_FLOOR:
operation = new MathFloorOperation();
break;
case NODE_MATH_CEIL:
operation = new MathCeilOperation();
break;
case NODE_MATH_FRACT:
operation = new MathFractOperation();
break;
case NODE_MATH_SQRT:
operation = new MathSqrtOperation();
break;
}
if (operation) {
bool useClamp = getbNode()->custom2;
operation->setUseClamp(useClamp);
converter.addOperation(operation);
if (operation) {
bool useClamp = getbNode()->custom2;
operation->setUseClamp(useClamp);
converter.addOperation(operation);
converter.mapInputSocket(getInputSocket(0), operation->getInputSocket(0));
converter.mapInputSocket(getInputSocket(1), operation->getInputSocket(1));
converter.mapOutputSocket(getOutputSocket(0), operation->getOutputSocket());
}
converter.mapInputSocket(getInputSocket(0), operation->getInputSocket(0));
converter.mapInputSocket(getInputSocket(1), operation->getInputSocket(1));
converter.mapOutputSocket(getOutputSocket(0), operation->getOutputSocket());
}
}