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/*
* Copyright (C) 2014 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.
*/
// Don't edit this file! It is auto-generated by frameworks/rs/api/gen_runtime.
package android.renderscript.cts;
import android.renderscript.Allocation;
import android.renderscript.RSRuntimeException;
import android.renderscript.Element;
public class TestNativeDivide extends RSBaseCompute {
private ScriptC_TestNativeDivide script;
private ScriptC_TestNativeDivideRelaxed scriptRelaxed;
@Override
protected void setUp() throws Exception {
super.setUp();
script = new ScriptC_TestNativeDivide(mRS);
scriptRelaxed = new ScriptC_TestNativeDivideRelaxed(mRS);
}
public class ArgumentsFloatFloatFloat {
public float inLhs;
public float inRhs;
public Target.Floaty out;
}
private void checkNativeDivideFloatFloatFloat() {
Allocation inLhs = createRandomAllocation(mRS, Element.DataType.FLOAT_32, 1, 0xe2845ef0c23d02del, false);
Allocation inRhs = createRandomAllocation(mRS, Element.DataType.FLOAT_32, 1, 0xe2845ef0c23d2e34l, false);
try {
Allocation out = Allocation.createSized(mRS, getElement(mRS, Element.DataType.FLOAT_32, 1), INPUTSIZE);
script.set_gAllocInRhs(inRhs);
script.forEach_testNativeDivideFloatFloatFloat(inLhs, out);
verifyResultsNativeDivideFloatFloatFloat(inLhs, inRhs, out, false);
} catch (Exception e) {
throw new RSRuntimeException("RenderScript. Can't invoke forEach_testNativeDivideFloatFloatFloat: " + e.toString());
}
try {
Allocation out = Allocation.createSized(mRS, getElement(mRS, Element.DataType.FLOAT_32, 1), INPUTSIZE);
scriptRelaxed.set_gAllocInRhs(inRhs);
scriptRelaxed.forEach_testNativeDivideFloatFloatFloat(inLhs, out);
verifyResultsNativeDivideFloatFloatFloat(inLhs, inRhs, out, true);
} catch (Exception e) {
throw new RSRuntimeException("RenderScript. Can't invoke forEach_testNativeDivideFloatFloatFloat: " + e.toString());
}
}
private void verifyResultsNativeDivideFloatFloatFloat(Allocation inLhs, Allocation inRhs, Allocation out, boolean relaxed) {
float[] arrayInLhs = new float[INPUTSIZE * 1];
inLhs.copyTo(arrayInLhs);
float[] arrayInRhs = new float[INPUTSIZE * 1];
inRhs.copyTo(arrayInRhs);
float[] arrayOut = new float[INPUTSIZE * 1];
out.copyTo(arrayOut);
for (int i = 0; i < INPUTSIZE; i++) {
for (int j = 0; j < 1 ; j++) {
// Extract the inputs.
ArgumentsFloatFloatFloat args = new ArgumentsFloatFloatFloat();
args.inLhs = arrayInLhs[i];
args.inRhs = arrayInRhs[i];
// Figure out what the outputs should have been.
Target target = new Target(relaxed);
CoreMathVerifier.computeNativeDivide(args, target);
// Validate the outputs.
boolean valid = true;
if (!args.out.couldBe(arrayOut[i * 1 + j])) {
valid = false;
}
if (!valid) {
StringBuilder message = new StringBuilder();
message.append("Input inLhs: ");
message.append(String.format("%14.8g {%8x} %15a",
args.inLhs, Float.floatToRawIntBits(args.inLhs), args.inLhs));
message.append("\n");
message.append("Input inRhs: ");
message.append(String.format("%14.8g {%8x} %15a",
args.inRhs, Float.floatToRawIntBits(args.inRhs), args.inRhs));
message.append("\n");
message.append("Expected output out: ");
message.append(args.out.toString());
message.append("\n");
message.append("Actual output out: ");
message.append(String.format("%14.8g {%8x} %15a",
arrayOut[i * 1 + j], Float.floatToRawIntBits(arrayOut[i * 1 + j]), arrayOut[i * 1 + j]));
if (!args.out.couldBe(arrayOut[i * 1 + j])) {
message.append(" FAIL");
}
message.append("\n");
assertTrue("Incorrect output for checkNativeDivideFloatFloatFloat" +
(relaxed ? "_relaxed" : "") + ":\n" + message.toString(), valid);
}
}
}
}
private void checkNativeDivideFloat2Float2Float2() {
Allocation inLhs = createRandomAllocation(mRS, Element.DataType.FLOAT_32, 2, 0x51c6d6ecaeab1c48l, false);
Allocation inRhs = createRandomAllocation(mRS, Element.DataType.FLOAT_32, 2, 0x51c6d6ecaeab479el, false);
try {
Allocation out = Allocation.createSized(mRS, getElement(mRS, Element.DataType.FLOAT_32, 2), INPUTSIZE);
script.set_gAllocInRhs(inRhs);
script.forEach_testNativeDivideFloat2Float2Float2(inLhs, out);
verifyResultsNativeDivideFloat2Float2Float2(inLhs, inRhs, out, false);
} catch (Exception e) {
throw new RSRuntimeException("RenderScript. Can't invoke forEach_testNativeDivideFloat2Float2Float2: " + e.toString());
}
try {
Allocation out = Allocation.createSized(mRS, getElement(mRS, Element.DataType.FLOAT_32, 2), INPUTSIZE);
scriptRelaxed.set_gAllocInRhs(inRhs);
scriptRelaxed.forEach_testNativeDivideFloat2Float2Float2(inLhs, out);
verifyResultsNativeDivideFloat2Float2Float2(inLhs, inRhs, out, true);
} catch (Exception e) {
throw new RSRuntimeException("RenderScript. Can't invoke forEach_testNativeDivideFloat2Float2Float2: " + e.toString());
}
}
private void verifyResultsNativeDivideFloat2Float2Float2(Allocation inLhs, Allocation inRhs, Allocation out, boolean relaxed) {
float[] arrayInLhs = new float[INPUTSIZE * 2];
inLhs.copyTo(arrayInLhs);
float[] arrayInRhs = new float[INPUTSIZE * 2];
inRhs.copyTo(arrayInRhs);
float[] arrayOut = new float[INPUTSIZE * 2];
out.copyTo(arrayOut);
for (int i = 0; i < INPUTSIZE; i++) {
for (int j = 0; j < 2 ; j++) {
// Extract the inputs.
ArgumentsFloatFloatFloat args = new ArgumentsFloatFloatFloat();
args.inLhs = arrayInLhs[i * 2 + j];
args.inRhs = arrayInRhs[i * 2 + j];
// Figure out what the outputs should have been.
Target target = new Target(relaxed);
CoreMathVerifier.computeNativeDivide(args, target);
// Validate the outputs.
boolean valid = true;
if (!args.out.couldBe(arrayOut[i * 2 + j])) {
valid = false;
}
if (!valid) {
StringBuilder message = new StringBuilder();
message.append("Input inLhs: ");
message.append(String.format("%14.8g {%8x} %15a",
args.inLhs, Float.floatToRawIntBits(args.inLhs), args.inLhs));
message.append("\n");
message.append("Input inRhs: ");
message.append(String.format("%14.8g {%8x} %15a",
args.inRhs, Float.floatToRawIntBits(args.inRhs), args.inRhs));
message.append("\n");
message.append("Expected output out: ");
message.append(args.out.toString());
message.append("\n");
message.append("Actual output out: ");
message.append(String.format("%14.8g {%8x} %15a",
arrayOut[i * 2 + j], Float.floatToRawIntBits(arrayOut[i * 2 + j]), arrayOut[i * 2 + j]));
if (!args.out.couldBe(arrayOut[i * 2 + j])) {
message.append(" FAIL");
}
message.append("\n");
assertTrue("Incorrect output for checkNativeDivideFloat2Float2Float2" +
(relaxed ? "_relaxed" : "") + ":\n" + message.toString(), valid);
}
}
}
}
private void checkNativeDivideFloat3Float3Float3() {
Allocation inLhs = createRandomAllocation(mRS, Element.DataType.FLOAT_32, 3, 0xde4f2c1a2b24e021l, false);
Allocation inRhs = createRandomAllocation(mRS, Element.DataType.FLOAT_32, 3, 0xde4f2c1a2b250b77l, false);
try {
Allocation out = Allocation.createSized(mRS, getElement(mRS, Element.DataType.FLOAT_32, 3), INPUTSIZE);
script.set_gAllocInRhs(inRhs);
script.forEach_testNativeDivideFloat3Float3Float3(inLhs, out);
verifyResultsNativeDivideFloat3Float3Float3(inLhs, inRhs, out, false);
} catch (Exception e) {
throw new RSRuntimeException("RenderScript. Can't invoke forEach_testNativeDivideFloat3Float3Float3: " + e.toString());
}
try {
Allocation out = Allocation.createSized(mRS, getElement(mRS, Element.DataType.FLOAT_32, 3), INPUTSIZE);
scriptRelaxed.set_gAllocInRhs(inRhs);
scriptRelaxed.forEach_testNativeDivideFloat3Float3Float3(inLhs, out);
verifyResultsNativeDivideFloat3Float3Float3(inLhs, inRhs, out, true);
} catch (Exception e) {
throw new RSRuntimeException("RenderScript. Can't invoke forEach_testNativeDivideFloat3Float3Float3: " + e.toString());
}
}
private void verifyResultsNativeDivideFloat3Float3Float3(Allocation inLhs, Allocation inRhs, Allocation out, boolean relaxed) {
float[] arrayInLhs = new float[INPUTSIZE * 4];
inLhs.copyTo(arrayInLhs);
float[] arrayInRhs = new float[INPUTSIZE * 4];
inRhs.copyTo(arrayInRhs);
float[] arrayOut = new float[INPUTSIZE * 4];
out.copyTo(arrayOut);
for (int i = 0; i < INPUTSIZE; i++) {
for (int j = 0; j < 3 ; j++) {
// Extract the inputs.
ArgumentsFloatFloatFloat args = new ArgumentsFloatFloatFloat();
args.inLhs = arrayInLhs[i * 4 + j];
args.inRhs = arrayInRhs[i * 4 + j];
// Figure out what the outputs should have been.
Target target = new Target(relaxed);
CoreMathVerifier.computeNativeDivide(args, target);
// Validate the outputs.
boolean valid = true;
if (!args.out.couldBe(arrayOut[i * 4 + j])) {
valid = false;
}
if (!valid) {
StringBuilder message = new StringBuilder();
message.append("Input inLhs: ");
message.append(String.format("%14.8g {%8x} %15a",
args.inLhs, Float.floatToRawIntBits(args.inLhs), args.inLhs));
message.append("\n");
message.append("Input inRhs: ");
message.append(String.format("%14.8g {%8x} %15a",
args.inRhs, Float.floatToRawIntBits(args.inRhs), args.inRhs));
message.append("\n");
message.append("Expected output out: ");
message.append(args.out.toString());
message.append("\n");
message.append("Actual output out: ");
message.append(String.format("%14.8g {%8x} %15a",
arrayOut[i * 4 + j], Float.floatToRawIntBits(arrayOut[i * 4 + j]), arrayOut[i * 4 + j]));
if (!args.out.couldBe(arrayOut[i * 4 + j])) {
message.append(" FAIL");
}
message.append("\n");
assertTrue("Incorrect output for checkNativeDivideFloat3Float3Float3" +
(relaxed ? "_relaxed" : "") + ":\n" + message.toString(), valid);
}
}
}
}
private void checkNativeDivideFloat4Float4Float4() {
Allocation inLhs = createRandomAllocation(mRS, Element.DataType.FLOAT_32, 4, 0x6ad78147a79ea3fal, false);
Allocation inRhs = createRandomAllocation(mRS, Element.DataType.FLOAT_32, 4, 0x6ad78147a79ecf50l, false);
try {
Allocation out = Allocation.createSized(mRS, getElement(mRS, Element.DataType.FLOAT_32, 4), INPUTSIZE);
script.set_gAllocInRhs(inRhs);
script.forEach_testNativeDivideFloat4Float4Float4(inLhs, out);
verifyResultsNativeDivideFloat4Float4Float4(inLhs, inRhs, out, false);
} catch (Exception e) {
throw new RSRuntimeException("RenderScript. Can't invoke forEach_testNativeDivideFloat4Float4Float4: " + e.toString());
}
try {
Allocation out = Allocation.createSized(mRS, getElement(mRS, Element.DataType.FLOAT_32, 4), INPUTSIZE);
scriptRelaxed.set_gAllocInRhs(inRhs);
scriptRelaxed.forEach_testNativeDivideFloat4Float4Float4(inLhs, out);
verifyResultsNativeDivideFloat4Float4Float4(inLhs, inRhs, out, true);
} catch (Exception e) {
throw new RSRuntimeException("RenderScript. Can't invoke forEach_testNativeDivideFloat4Float4Float4: " + e.toString());
}
}
private void verifyResultsNativeDivideFloat4Float4Float4(Allocation inLhs, Allocation inRhs, Allocation out, boolean relaxed) {
float[] arrayInLhs = new float[INPUTSIZE * 4];
inLhs.copyTo(arrayInLhs);
float[] arrayInRhs = new float[INPUTSIZE * 4];
inRhs.copyTo(arrayInRhs);
float[] arrayOut = new float[INPUTSIZE * 4];
out.copyTo(arrayOut);
for (int i = 0; i < INPUTSIZE; i++) {
for (int j = 0; j < 4 ; j++) {
// Extract the inputs.
ArgumentsFloatFloatFloat args = new ArgumentsFloatFloatFloat();
args.inLhs = arrayInLhs[i * 4 + j];
args.inRhs = arrayInRhs[i * 4 + j];
// Figure out what the outputs should have been.
Target target = new Target(relaxed);
CoreMathVerifier.computeNativeDivide(args, target);
// Validate the outputs.
boolean valid = true;
if (!args.out.couldBe(arrayOut[i * 4 + j])) {
valid = false;
}
if (!valid) {
StringBuilder message = new StringBuilder();
message.append("Input inLhs: ");
message.append(String.format("%14.8g {%8x} %15a",
args.inLhs, Float.floatToRawIntBits(args.inLhs), args.inLhs));
message.append("\n");
message.append("Input inRhs: ");
message.append(String.format("%14.8g {%8x} %15a",
args.inRhs, Float.floatToRawIntBits(args.inRhs), args.inRhs));
message.append("\n");
message.append("Expected output out: ");
message.append(args.out.toString());
message.append("\n");
message.append("Actual output out: ");
message.append(String.format("%14.8g {%8x} %15a",
arrayOut[i * 4 + j], Float.floatToRawIntBits(arrayOut[i * 4 + j]), arrayOut[i * 4 + j]));
if (!args.out.couldBe(arrayOut[i * 4 + j])) {
message.append(" FAIL");
}
message.append("\n");
assertTrue("Incorrect output for checkNativeDivideFloat4Float4Float4" +
(relaxed ? "_relaxed" : "") + ":\n" + message.toString(), valid);
}
}
}
}
public void testNativeDivide() {
checkNativeDivideFloatFloatFloat();
checkNativeDivideFloat2Float2Float2();
checkNativeDivideFloat3Float3Float3();
checkNativeDivideFloat4Float4Float4();
}
}