Compare commits
1
Commits
| Author | SHA1 | Date | |
|---|---|---|---|
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|
23f4810c46 |
@@ -611,7 +611,7 @@ public class Byte128VectorLoadStoreTests extends AbstractVectorLoadStoreTest {
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}
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}
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}
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}
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int index = fi.apply((int) a.byteSize());
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int index = fi.apply((int) a.byteSize()) & (~(SPECIES.elementSize() - 1));
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boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
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boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
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try {
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try {
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fromMemorySegment(a, index, ByteOrder.nativeOrder(), vmask);
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fromMemorySegment(a, index, ByteOrder.nativeOrder(), vmask);
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@@ -642,7 +642,7 @@ public class Byte128VectorLoadStoreTests extends AbstractVectorLoadStoreTest {
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}
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}
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}
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}
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|
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int index = fi.apply((int) a.byteSize());
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int index = fi.apply((int) a.byteSize()) & (~(SPECIES.elementSize() - 1));
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boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
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boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
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try {
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try {
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ByteVector av = ByteVector.fromMemorySegment(SPECIES, a, 0, ByteOrder.nativeOrder());
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ByteVector av = ByteVector.fromMemorySegment(SPECIES, a, 0, ByteOrder.nativeOrder());
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@@ -611,7 +611,7 @@ public class Byte256VectorLoadStoreTests extends AbstractVectorLoadStoreTest {
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}
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}
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}
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}
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int index = fi.apply((int) a.byteSize());
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int index = fi.apply((int) a.byteSize()) & (~(SPECIES.elementSize() - 1));
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boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
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boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
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try {
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try {
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fromMemorySegment(a, index, ByteOrder.nativeOrder(), vmask);
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fromMemorySegment(a, index, ByteOrder.nativeOrder(), vmask);
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@@ -642,7 +642,7 @@ public class Byte256VectorLoadStoreTests extends AbstractVectorLoadStoreTest {
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}
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}
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}
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}
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int index = fi.apply((int) a.byteSize());
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int index = fi.apply((int) a.byteSize()) & (~(SPECIES.elementSize() - 1));
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boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
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boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
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try {
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try {
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ByteVector av = ByteVector.fromMemorySegment(SPECIES, a, 0, ByteOrder.nativeOrder());
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ByteVector av = ByteVector.fromMemorySegment(SPECIES, a, 0, ByteOrder.nativeOrder());
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@@ -611,7 +611,7 @@ public class Byte512VectorLoadStoreTests extends AbstractVectorLoadStoreTest {
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}
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}
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}
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}
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int index = fi.apply((int) a.byteSize());
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int index = fi.apply((int) a.byteSize()) & (~(SPECIES.elementSize() - 1));
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boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
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boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
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try {
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try {
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fromMemorySegment(a, index, ByteOrder.nativeOrder(), vmask);
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fromMemorySegment(a, index, ByteOrder.nativeOrder(), vmask);
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@@ -642,7 +642,7 @@ public class Byte512VectorLoadStoreTests extends AbstractVectorLoadStoreTest {
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}
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}
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}
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}
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int index = fi.apply((int) a.byteSize());
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int index = fi.apply((int) a.byteSize()) & (~(SPECIES.elementSize() - 1));
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boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
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boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
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try {
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try {
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ByteVector av = ByteVector.fromMemorySegment(SPECIES, a, 0, ByteOrder.nativeOrder());
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ByteVector av = ByteVector.fromMemorySegment(SPECIES, a, 0, ByteOrder.nativeOrder());
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@@ -611,7 +611,7 @@ public class Byte64VectorLoadStoreTests extends AbstractVectorLoadStoreTest {
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}
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}
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}
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}
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int index = fi.apply((int) a.byteSize());
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int index = fi.apply((int) a.byteSize()) & (~(SPECIES.elementSize() - 1));
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boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
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boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
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try {
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try {
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fromMemorySegment(a, index, ByteOrder.nativeOrder(), vmask);
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fromMemorySegment(a, index, ByteOrder.nativeOrder(), vmask);
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@@ -642,7 +642,7 @@ public class Byte64VectorLoadStoreTests extends AbstractVectorLoadStoreTest {
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}
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}
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}
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}
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|
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int index = fi.apply((int) a.byteSize());
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int index = fi.apply((int) a.byteSize()) & (~(SPECIES.elementSize() - 1));
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boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
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boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
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try {
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try {
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ByteVector av = ByteVector.fromMemorySegment(SPECIES, a, 0, ByteOrder.nativeOrder());
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ByteVector av = ByteVector.fromMemorySegment(SPECIES, a, 0, ByteOrder.nativeOrder());
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@@ -618,7 +618,7 @@ public class ByteMaxVectorLoadStoreTests extends AbstractVectorLoadStoreTest {
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}
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}
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}
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}
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int index = fi.apply((int) a.byteSize());
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int index = fi.apply((int) a.byteSize()) & (~(SPECIES.elementSize() - 1));
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boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
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boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
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try {
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try {
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fromMemorySegment(a, index, ByteOrder.nativeOrder(), vmask);
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fromMemorySegment(a, index, ByteOrder.nativeOrder(), vmask);
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@@ -649,7 +649,7 @@ public class ByteMaxVectorLoadStoreTests extends AbstractVectorLoadStoreTest {
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}
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}
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}
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}
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int index = fi.apply((int) a.byteSize());
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int index = fi.apply((int) a.byteSize()) & (~(SPECIES.elementSize() - 1));
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boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
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boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
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try {
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try {
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ByteVector av = ByteVector.fromMemorySegment(SPECIES, a, 0, ByteOrder.nativeOrder());
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ByteVector av = ByteVector.fromMemorySegment(SPECIES, a, 0, ByteOrder.nativeOrder());
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@@ -611,7 +611,7 @@ public class Double128VectorLoadStoreTests extends AbstractVectorLoadStoreTest {
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}
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}
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}
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}
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|
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int index = fi.apply((int) a.byteSize());
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int index = fi.apply((int) a.byteSize()) & (~(SPECIES.elementSize() - 1));
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boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
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boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
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try {
|
try {
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fromMemorySegment(a, index, ByteOrder.nativeOrder(), vmask);
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fromMemorySegment(a, index, ByteOrder.nativeOrder(), vmask);
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@@ -642,7 +642,7 @@ public class Double128VectorLoadStoreTests extends AbstractVectorLoadStoreTest {
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}
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}
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}
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}
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|
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int index = fi.apply((int) a.byteSize());
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int index = fi.apply((int) a.byteSize()) & (~(SPECIES.elementSize() - 1));
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boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
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boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
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try {
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try {
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DoubleVector av = DoubleVector.fromMemorySegment(SPECIES, a, 0, ByteOrder.nativeOrder());
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DoubleVector av = DoubleVector.fromMemorySegment(SPECIES, a, 0, ByteOrder.nativeOrder());
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@@ -611,7 +611,7 @@ public class Double256VectorLoadStoreTests extends AbstractVectorLoadStoreTest {
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}
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}
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}
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}
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|
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int index = fi.apply((int) a.byteSize());
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int index = fi.apply((int) a.byteSize()) & (~(SPECIES.elementSize() - 1));
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||||||
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
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boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
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try {
|
try {
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fromMemorySegment(a, index, ByteOrder.nativeOrder(), vmask);
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fromMemorySegment(a, index, ByteOrder.nativeOrder(), vmask);
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@@ -642,7 +642,7 @@ public class Double256VectorLoadStoreTests extends AbstractVectorLoadStoreTest {
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}
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}
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}
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}
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|
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int index = fi.apply((int) a.byteSize());
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int index = fi.apply((int) a.byteSize()) & (~(SPECIES.elementSize() - 1));
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||||||
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
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boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
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try {
|
try {
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DoubleVector av = DoubleVector.fromMemorySegment(SPECIES, a, 0, ByteOrder.nativeOrder());
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DoubleVector av = DoubleVector.fromMemorySegment(SPECIES, a, 0, ByteOrder.nativeOrder());
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@@ -611,7 +611,7 @@ public class Double512VectorLoadStoreTests extends AbstractVectorLoadStoreTest {
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}
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}
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}
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}
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|
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int index = fi.apply((int) a.byteSize());
|
int index = fi.apply((int) a.byteSize()) & (~(SPECIES.elementSize() - 1));
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||||||
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
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boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
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try {
|
try {
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fromMemorySegment(a, index, ByteOrder.nativeOrder(), vmask);
|
fromMemorySegment(a, index, ByteOrder.nativeOrder(), vmask);
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@@ -642,7 +642,7 @@ public class Double512VectorLoadStoreTests extends AbstractVectorLoadStoreTest {
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}
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}
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}
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}
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||||||
|
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||||||
int index = fi.apply((int) a.byteSize());
|
int index = fi.apply((int) a.byteSize()) & (~(SPECIES.elementSize() - 1));
|
||||||
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
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||||||
try {
|
try {
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DoubleVector av = DoubleVector.fromMemorySegment(SPECIES, a, 0, ByteOrder.nativeOrder());
|
DoubleVector av = DoubleVector.fromMemorySegment(SPECIES, a, 0, ByteOrder.nativeOrder());
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||||||
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|||||||
@@ -611,7 +611,7 @@ public class Double64VectorLoadStoreTests extends AbstractVectorLoadStoreTest {
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}
|
}
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}
|
}
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||||||
|
|
||||||
int index = fi.apply((int) a.byteSize());
|
int index = fi.apply((int) a.byteSize()) & (~(SPECIES.elementSize() - 1));
|
||||||
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
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||||||
try {
|
try {
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fromMemorySegment(a, index, ByteOrder.nativeOrder(), vmask);
|
fromMemorySegment(a, index, ByteOrder.nativeOrder(), vmask);
|
||||||
@@ -642,7 +642,7 @@ public class Double64VectorLoadStoreTests extends AbstractVectorLoadStoreTest {
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|||||||
}
|
}
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}
|
}
|
||||||
|
|
||||||
int index = fi.apply((int) a.byteSize());
|
int index = fi.apply((int) a.byteSize()) & (~(SPECIES.elementSize() - 1));
|
||||||
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
||||||
try {
|
try {
|
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DoubleVector av = DoubleVector.fromMemorySegment(SPECIES, a, 0, ByteOrder.nativeOrder());
|
DoubleVector av = DoubleVector.fromMemorySegment(SPECIES, a, 0, ByteOrder.nativeOrder());
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||||||
|
|||||||
@@ -618,7 +618,7 @@ public class DoubleMaxVectorLoadStoreTests extends AbstractVectorLoadStoreTest {
|
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}
|
}
|
||||||
}
|
}
|
||||||
|
|
||||||
int index = fi.apply((int) a.byteSize());
|
int index = fi.apply((int) a.byteSize()) & (~(SPECIES.elementSize() - 1));
|
||||||
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
||||||
try {
|
try {
|
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fromMemorySegment(a, index, ByteOrder.nativeOrder(), vmask);
|
fromMemorySegment(a, index, ByteOrder.nativeOrder(), vmask);
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||||||
@@ -649,7 +649,7 @@ public class DoubleMaxVectorLoadStoreTests extends AbstractVectorLoadStoreTest {
|
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}
|
}
|
||||||
}
|
}
|
||||||
|
|
||||||
int index = fi.apply((int) a.byteSize());
|
int index = fi.apply((int) a.byteSize()) & (~(SPECIES.elementSize() - 1));
|
||||||
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
||||||
try {
|
try {
|
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DoubleVector av = DoubleVector.fromMemorySegment(SPECIES, a, 0, ByteOrder.nativeOrder());
|
DoubleVector av = DoubleVector.fromMemorySegment(SPECIES, a, 0, ByteOrder.nativeOrder());
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|
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@@ -611,7 +611,7 @@ public class Float128VectorLoadStoreTests extends AbstractVectorLoadStoreTest {
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}
|
}
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}
|
}
|
||||||
|
|
||||||
int index = fi.apply((int) a.byteSize());
|
int index = fi.apply((int) a.byteSize()) & (~(SPECIES.elementSize() - 1));
|
||||||
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
||||||
try {
|
try {
|
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fromMemorySegment(a, index, ByteOrder.nativeOrder(), vmask);
|
fromMemorySegment(a, index, ByteOrder.nativeOrder(), vmask);
|
||||||
@@ -642,7 +642,7 @@ public class Float128VectorLoadStoreTests extends AbstractVectorLoadStoreTest {
|
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}
|
}
|
||||||
}
|
}
|
||||||
|
|
||||||
int index = fi.apply((int) a.byteSize());
|
int index = fi.apply((int) a.byteSize()) & (~(SPECIES.elementSize() - 1));
|
||||||
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
||||||
try {
|
try {
|
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FloatVector av = FloatVector.fromMemorySegment(SPECIES, a, 0, ByteOrder.nativeOrder());
|
FloatVector av = FloatVector.fromMemorySegment(SPECIES, a, 0, ByteOrder.nativeOrder());
|
||||||
|
|||||||
@@ -611,7 +611,7 @@ public class Float256VectorLoadStoreTests extends AbstractVectorLoadStoreTest {
|
|||||||
}
|
}
|
||||||
}
|
}
|
||||||
|
|
||||||
int index = fi.apply((int) a.byteSize());
|
int index = fi.apply((int) a.byteSize()) & (~(SPECIES.elementSize() - 1));
|
||||||
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
||||||
try {
|
try {
|
||||||
fromMemorySegment(a, index, ByteOrder.nativeOrder(), vmask);
|
fromMemorySegment(a, index, ByteOrder.nativeOrder(), vmask);
|
||||||
@@ -642,7 +642,7 @@ public class Float256VectorLoadStoreTests extends AbstractVectorLoadStoreTest {
|
|||||||
}
|
}
|
||||||
}
|
}
|
||||||
|
|
||||||
int index = fi.apply((int) a.byteSize());
|
int index = fi.apply((int) a.byteSize()) & (~(SPECIES.elementSize() - 1));
|
||||||
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
||||||
try {
|
try {
|
||||||
FloatVector av = FloatVector.fromMemorySegment(SPECIES, a, 0, ByteOrder.nativeOrder());
|
FloatVector av = FloatVector.fromMemorySegment(SPECIES, a, 0, ByteOrder.nativeOrder());
|
||||||
|
|||||||
@@ -611,7 +611,7 @@ public class Float512VectorLoadStoreTests extends AbstractVectorLoadStoreTest {
|
|||||||
}
|
}
|
||||||
}
|
}
|
||||||
|
|
||||||
int index = fi.apply((int) a.byteSize());
|
int index = fi.apply((int) a.byteSize()) & (~(SPECIES.elementSize() - 1));
|
||||||
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
||||||
try {
|
try {
|
||||||
fromMemorySegment(a, index, ByteOrder.nativeOrder(), vmask);
|
fromMemorySegment(a, index, ByteOrder.nativeOrder(), vmask);
|
||||||
@@ -642,7 +642,7 @@ public class Float512VectorLoadStoreTests extends AbstractVectorLoadStoreTest {
|
|||||||
}
|
}
|
||||||
}
|
}
|
||||||
|
|
||||||
int index = fi.apply((int) a.byteSize());
|
int index = fi.apply((int) a.byteSize()) & (~(SPECIES.elementSize() - 1));
|
||||||
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
||||||
try {
|
try {
|
||||||
FloatVector av = FloatVector.fromMemorySegment(SPECIES, a, 0, ByteOrder.nativeOrder());
|
FloatVector av = FloatVector.fromMemorySegment(SPECIES, a, 0, ByteOrder.nativeOrder());
|
||||||
|
|||||||
@@ -611,7 +611,7 @@ public class Float64VectorLoadStoreTests extends AbstractVectorLoadStoreTest {
|
|||||||
}
|
}
|
||||||
}
|
}
|
||||||
|
|
||||||
int index = fi.apply((int) a.byteSize());
|
int index = fi.apply((int) a.byteSize()) & (~(SPECIES.elementSize() - 1));
|
||||||
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
||||||
try {
|
try {
|
||||||
fromMemorySegment(a, index, ByteOrder.nativeOrder(), vmask);
|
fromMemorySegment(a, index, ByteOrder.nativeOrder(), vmask);
|
||||||
@@ -642,7 +642,7 @@ public class Float64VectorLoadStoreTests extends AbstractVectorLoadStoreTest {
|
|||||||
}
|
}
|
||||||
}
|
}
|
||||||
|
|
||||||
int index = fi.apply((int) a.byteSize());
|
int index = fi.apply((int) a.byteSize()) & (~(SPECIES.elementSize() - 1));
|
||||||
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
||||||
try {
|
try {
|
||||||
FloatVector av = FloatVector.fromMemorySegment(SPECIES, a, 0, ByteOrder.nativeOrder());
|
FloatVector av = FloatVector.fromMemorySegment(SPECIES, a, 0, ByteOrder.nativeOrder());
|
||||||
|
|||||||
@@ -618,7 +618,7 @@ public class FloatMaxVectorLoadStoreTests extends AbstractVectorLoadStoreTest {
|
|||||||
}
|
}
|
||||||
}
|
}
|
||||||
|
|
||||||
int index = fi.apply((int) a.byteSize());
|
int index = fi.apply((int) a.byteSize()) & (~(SPECIES.elementSize() - 1));
|
||||||
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
||||||
try {
|
try {
|
||||||
fromMemorySegment(a, index, ByteOrder.nativeOrder(), vmask);
|
fromMemorySegment(a, index, ByteOrder.nativeOrder(), vmask);
|
||||||
@@ -649,7 +649,7 @@ public class FloatMaxVectorLoadStoreTests extends AbstractVectorLoadStoreTest {
|
|||||||
}
|
}
|
||||||
}
|
}
|
||||||
|
|
||||||
int index = fi.apply((int) a.byteSize());
|
int index = fi.apply((int) a.byteSize()) & (~(SPECIES.elementSize() - 1));
|
||||||
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
||||||
try {
|
try {
|
||||||
FloatVector av = FloatVector.fromMemorySegment(SPECIES, a, 0, ByteOrder.nativeOrder());
|
FloatVector av = FloatVector.fromMemorySegment(SPECIES, a, 0, ByteOrder.nativeOrder());
|
||||||
|
|||||||
@@ -611,7 +611,7 @@ public class Int128VectorLoadStoreTests extends AbstractVectorLoadStoreTest {
|
|||||||
}
|
}
|
||||||
}
|
}
|
||||||
|
|
||||||
int index = fi.apply((int) a.byteSize());
|
int index = fi.apply((int) a.byteSize()) & (~(SPECIES.elementSize() - 1));
|
||||||
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
||||||
try {
|
try {
|
||||||
fromMemorySegment(a, index, ByteOrder.nativeOrder(), vmask);
|
fromMemorySegment(a, index, ByteOrder.nativeOrder(), vmask);
|
||||||
@@ -642,7 +642,7 @@ public class Int128VectorLoadStoreTests extends AbstractVectorLoadStoreTest {
|
|||||||
}
|
}
|
||||||
}
|
}
|
||||||
|
|
||||||
int index = fi.apply((int) a.byteSize());
|
int index = fi.apply((int) a.byteSize()) & (~(SPECIES.elementSize() - 1));
|
||||||
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
||||||
try {
|
try {
|
||||||
IntVector av = IntVector.fromMemorySegment(SPECIES, a, 0, ByteOrder.nativeOrder());
|
IntVector av = IntVector.fromMemorySegment(SPECIES, a, 0, ByteOrder.nativeOrder());
|
||||||
|
|||||||
@@ -611,7 +611,7 @@ public class Int256VectorLoadStoreTests extends AbstractVectorLoadStoreTest {
|
|||||||
}
|
}
|
||||||
}
|
}
|
||||||
|
|
||||||
int index = fi.apply((int) a.byteSize());
|
int index = fi.apply((int) a.byteSize()) & (~(SPECIES.elementSize() - 1));
|
||||||
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
||||||
try {
|
try {
|
||||||
fromMemorySegment(a, index, ByteOrder.nativeOrder(), vmask);
|
fromMemorySegment(a, index, ByteOrder.nativeOrder(), vmask);
|
||||||
@@ -642,7 +642,7 @@ public class Int256VectorLoadStoreTests extends AbstractVectorLoadStoreTest {
|
|||||||
}
|
}
|
||||||
}
|
}
|
||||||
|
|
||||||
int index = fi.apply((int) a.byteSize());
|
int index = fi.apply((int) a.byteSize()) & (~(SPECIES.elementSize() - 1));
|
||||||
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
||||||
try {
|
try {
|
||||||
IntVector av = IntVector.fromMemorySegment(SPECIES, a, 0, ByteOrder.nativeOrder());
|
IntVector av = IntVector.fromMemorySegment(SPECIES, a, 0, ByteOrder.nativeOrder());
|
||||||
|
|||||||
@@ -611,7 +611,7 @@ public class Int512VectorLoadStoreTests extends AbstractVectorLoadStoreTest {
|
|||||||
}
|
}
|
||||||
}
|
}
|
||||||
|
|
||||||
int index = fi.apply((int) a.byteSize());
|
int index = fi.apply((int) a.byteSize()) & (~(SPECIES.elementSize() - 1));
|
||||||
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
||||||
try {
|
try {
|
||||||
fromMemorySegment(a, index, ByteOrder.nativeOrder(), vmask);
|
fromMemorySegment(a, index, ByteOrder.nativeOrder(), vmask);
|
||||||
@@ -642,7 +642,7 @@ public class Int512VectorLoadStoreTests extends AbstractVectorLoadStoreTest {
|
|||||||
}
|
}
|
||||||
}
|
}
|
||||||
|
|
||||||
int index = fi.apply((int) a.byteSize());
|
int index = fi.apply((int) a.byteSize()) & (~(SPECIES.elementSize() - 1));
|
||||||
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
||||||
try {
|
try {
|
||||||
IntVector av = IntVector.fromMemorySegment(SPECIES, a, 0, ByteOrder.nativeOrder());
|
IntVector av = IntVector.fromMemorySegment(SPECIES, a, 0, ByteOrder.nativeOrder());
|
||||||
|
|||||||
@@ -611,7 +611,7 @@ public class Int64VectorLoadStoreTests extends AbstractVectorLoadStoreTest {
|
|||||||
}
|
}
|
||||||
}
|
}
|
||||||
|
|
||||||
int index = fi.apply((int) a.byteSize());
|
int index = fi.apply((int) a.byteSize()) & (~(SPECIES.elementSize() - 1));
|
||||||
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
||||||
try {
|
try {
|
||||||
fromMemorySegment(a, index, ByteOrder.nativeOrder(), vmask);
|
fromMemorySegment(a, index, ByteOrder.nativeOrder(), vmask);
|
||||||
@@ -642,7 +642,7 @@ public class Int64VectorLoadStoreTests extends AbstractVectorLoadStoreTest {
|
|||||||
}
|
}
|
||||||
}
|
}
|
||||||
|
|
||||||
int index = fi.apply((int) a.byteSize());
|
int index = fi.apply((int) a.byteSize()) & (~(SPECIES.elementSize() - 1));
|
||||||
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
||||||
try {
|
try {
|
||||||
IntVector av = IntVector.fromMemorySegment(SPECIES, a, 0, ByteOrder.nativeOrder());
|
IntVector av = IntVector.fromMemorySegment(SPECIES, a, 0, ByteOrder.nativeOrder());
|
||||||
|
|||||||
@@ -618,7 +618,7 @@ public class IntMaxVectorLoadStoreTests extends AbstractVectorLoadStoreTest {
|
|||||||
}
|
}
|
||||||
}
|
}
|
||||||
|
|
||||||
int index = fi.apply((int) a.byteSize());
|
int index = fi.apply((int) a.byteSize()) & (~(SPECIES.elementSize() - 1));
|
||||||
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
||||||
try {
|
try {
|
||||||
fromMemorySegment(a, index, ByteOrder.nativeOrder(), vmask);
|
fromMemorySegment(a, index, ByteOrder.nativeOrder(), vmask);
|
||||||
@@ -649,7 +649,7 @@ public class IntMaxVectorLoadStoreTests extends AbstractVectorLoadStoreTest {
|
|||||||
}
|
}
|
||||||
}
|
}
|
||||||
|
|
||||||
int index = fi.apply((int) a.byteSize());
|
int index = fi.apply((int) a.byteSize()) & (~(SPECIES.elementSize() - 1));
|
||||||
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
||||||
try {
|
try {
|
||||||
IntVector av = IntVector.fromMemorySegment(SPECIES, a, 0, ByteOrder.nativeOrder());
|
IntVector av = IntVector.fromMemorySegment(SPECIES, a, 0, ByteOrder.nativeOrder());
|
||||||
|
|||||||
@@ -611,7 +611,7 @@ public class Long128VectorLoadStoreTests extends AbstractVectorLoadStoreTest {
|
|||||||
}
|
}
|
||||||
}
|
}
|
||||||
|
|
||||||
int index = fi.apply((int) a.byteSize());
|
int index = fi.apply((int) a.byteSize()) & (~(SPECIES.elementSize() - 1));
|
||||||
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
||||||
try {
|
try {
|
||||||
fromMemorySegment(a, index, ByteOrder.nativeOrder(), vmask);
|
fromMemorySegment(a, index, ByteOrder.nativeOrder(), vmask);
|
||||||
@@ -642,7 +642,7 @@ public class Long128VectorLoadStoreTests extends AbstractVectorLoadStoreTest {
|
|||||||
}
|
}
|
||||||
}
|
}
|
||||||
|
|
||||||
int index = fi.apply((int) a.byteSize());
|
int index = fi.apply((int) a.byteSize()) & (~(SPECIES.elementSize() - 1));
|
||||||
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
||||||
try {
|
try {
|
||||||
LongVector av = LongVector.fromMemorySegment(SPECIES, a, 0, ByteOrder.nativeOrder());
|
LongVector av = LongVector.fromMemorySegment(SPECIES, a, 0, ByteOrder.nativeOrder());
|
||||||
|
|||||||
@@ -611,7 +611,7 @@ public class Long256VectorLoadStoreTests extends AbstractVectorLoadStoreTest {
|
|||||||
}
|
}
|
||||||
}
|
}
|
||||||
|
|
||||||
int index = fi.apply((int) a.byteSize());
|
int index = fi.apply((int) a.byteSize()) & (~(SPECIES.elementSize() - 1));
|
||||||
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
||||||
try {
|
try {
|
||||||
fromMemorySegment(a, index, ByteOrder.nativeOrder(), vmask);
|
fromMemorySegment(a, index, ByteOrder.nativeOrder(), vmask);
|
||||||
@@ -642,7 +642,7 @@ public class Long256VectorLoadStoreTests extends AbstractVectorLoadStoreTest {
|
|||||||
}
|
}
|
||||||
}
|
}
|
||||||
|
|
||||||
int index = fi.apply((int) a.byteSize());
|
int index = fi.apply((int) a.byteSize()) & (~(SPECIES.elementSize() - 1));
|
||||||
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
||||||
try {
|
try {
|
||||||
LongVector av = LongVector.fromMemorySegment(SPECIES, a, 0, ByteOrder.nativeOrder());
|
LongVector av = LongVector.fromMemorySegment(SPECIES, a, 0, ByteOrder.nativeOrder());
|
||||||
|
|||||||
@@ -611,7 +611,7 @@ public class Long512VectorLoadStoreTests extends AbstractVectorLoadStoreTest {
|
|||||||
}
|
}
|
||||||
}
|
}
|
||||||
|
|
||||||
int index = fi.apply((int) a.byteSize());
|
int index = fi.apply((int) a.byteSize()) & (~(SPECIES.elementSize() - 1));
|
||||||
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
||||||
try {
|
try {
|
||||||
fromMemorySegment(a, index, ByteOrder.nativeOrder(), vmask);
|
fromMemorySegment(a, index, ByteOrder.nativeOrder(), vmask);
|
||||||
@@ -642,7 +642,7 @@ public class Long512VectorLoadStoreTests extends AbstractVectorLoadStoreTest {
|
|||||||
}
|
}
|
||||||
}
|
}
|
||||||
|
|
||||||
int index = fi.apply((int) a.byteSize());
|
int index = fi.apply((int) a.byteSize()) & (~(SPECIES.elementSize() - 1));
|
||||||
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
||||||
try {
|
try {
|
||||||
LongVector av = LongVector.fromMemorySegment(SPECIES, a, 0, ByteOrder.nativeOrder());
|
LongVector av = LongVector.fromMemorySegment(SPECIES, a, 0, ByteOrder.nativeOrder());
|
||||||
|
|||||||
@@ -611,7 +611,7 @@ public class Long64VectorLoadStoreTests extends AbstractVectorLoadStoreTest {
|
|||||||
}
|
}
|
||||||
}
|
}
|
||||||
|
|
||||||
int index = fi.apply((int) a.byteSize());
|
int index = fi.apply((int) a.byteSize()) & (~(SPECIES.elementSize() - 1));
|
||||||
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
||||||
try {
|
try {
|
||||||
fromMemorySegment(a, index, ByteOrder.nativeOrder(), vmask);
|
fromMemorySegment(a, index, ByteOrder.nativeOrder(), vmask);
|
||||||
@@ -642,7 +642,7 @@ public class Long64VectorLoadStoreTests extends AbstractVectorLoadStoreTest {
|
|||||||
}
|
}
|
||||||
}
|
}
|
||||||
|
|
||||||
int index = fi.apply((int) a.byteSize());
|
int index = fi.apply((int) a.byteSize()) & (~(SPECIES.elementSize() - 1));
|
||||||
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
||||||
try {
|
try {
|
||||||
LongVector av = LongVector.fromMemorySegment(SPECIES, a, 0, ByteOrder.nativeOrder());
|
LongVector av = LongVector.fromMemorySegment(SPECIES, a, 0, ByteOrder.nativeOrder());
|
||||||
|
|||||||
@@ -618,7 +618,7 @@ public class LongMaxVectorLoadStoreTests extends AbstractVectorLoadStoreTest {
|
|||||||
}
|
}
|
||||||
}
|
}
|
||||||
|
|
||||||
int index = fi.apply((int) a.byteSize());
|
int index = fi.apply((int) a.byteSize()) & (~(SPECIES.elementSize() - 1));
|
||||||
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
||||||
try {
|
try {
|
||||||
fromMemorySegment(a, index, ByteOrder.nativeOrder(), vmask);
|
fromMemorySegment(a, index, ByteOrder.nativeOrder(), vmask);
|
||||||
@@ -649,7 +649,7 @@ public class LongMaxVectorLoadStoreTests extends AbstractVectorLoadStoreTest {
|
|||||||
}
|
}
|
||||||
}
|
}
|
||||||
|
|
||||||
int index = fi.apply((int) a.byteSize());
|
int index = fi.apply((int) a.byteSize()) & (~(SPECIES.elementSize() - 1));
|
||||||
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
||||||
try {
|
try {
|
||||||
LongVector av = LongVector.fromMemorySegment(SPECIES, a, 0, ByteOrder.nativeOrder());
|
LongVector av = LongVector.fromMemorySegment(SPECIES, a, 0, ByteOrder.nativeOrder());
|
||||||
|
|||||||
@@ -611,7 +611,7 @@ public class Short128VectorLoadStoreTests extends AbstractVectorLoadStoreTest {
|
|||||||
}
|
}
|
||||||
}
|
}
|
||||||
|
|
||||||
int index = fi.apply((int) a.byteSize());
|
int index = fi.apply((int) a.byteSize()) & (~(SPECIES.elementSize() - 1));
|
||||||
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
||||||
try {
|
try {
|
||||||
fromMemorySegment(a, index, ByteOrder.nativeOrder(), vmask);
|
fromMemorySegment(a, index, ByteOrder.nativeOrder(), vmask);
|
||||||
@@ -642,7 +642,7 @@ public class Short128VectorLoadStoreTests extends AbstractVectorLoadStoreTest {
|
|||||||
}
|
}
|
||||||
}
|
}
|
||||||
|
|
||||||
int index = fi.apply((int) a.byteSize());
|
int index = fi.apply((int) a.byteSize()) & (~(SPECIES.elementSize() - 1));
|
||||||
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
||||||
try {
|
try {
|
||||||
ShortVector av = ShortVector.fromMemorySegment(SPECIES, a, 0, ByteOrder.nativeOrder());
|
ShortVector av = ShortVector.fromMemorySegment(SPECIES, a, 0, ByteOrder.nativeOrder());
|
||||||
|
|||||||
@@ -611,7 +611,7 @@ public class Short256VectorLoadStoreTests extends AbstractVectorLoadStoreTest {
|
|||||||
}
|
}
|
||||||
}
|
}
|
||||||
|
|
||||||
int index = fi.apply((int) a.byteSize());
|
int index = fi.apply((int) a.byteSize()) & (~(SPECIES.elementSize() - 1));
|
||||||
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
||||||
try {
|
try {
|
||||||
fromMemorySegment(a, index, ByteOrder.nativeOrder(), vmask);
|
fromMemorySegment(a, index, ByteOrder.nativeOrder(), vmask);
|
||||||
@@ -642,7 +642,7 @@ public class Short256VectorLoadStoreTests extends AbstractVectorLoadStoreTest {
|
|||||||
}
|
}
|
||||||
}
|
}
|
||||||
|
|
||||||
int index = fi.apply((int) a.byteSize());
|
int index = fi.apply((int) a.byteSize()) & (~(SPECIES.elementSize() - 1));
|
||||||
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
||||||
try {
|
try {
|
||||||
ShortVector av = ShortVector.fromMemorySegment(SPECIES, a, 0, ByteOrder.nativeOrder());
|
ShortVector av = ShortVector.fromMemorySegment(SPECIES, a, 0, ByteOrder.nativeOrder());
|
||||||
|
|||||||
@@ -611,7 +611,7 @@ public class Short512VectorLoadStoreTests extends AbstractVectorLoadStoreTest {
|
|||||||
}
|
}
|
||||||
}
|
}
|
||||||
|
|
||||||
int index = fi.apply((int) a.byteSize());
|
int index = fi.apply((int) a.byteSize()) & (~(SPECIES.elementSize() - 1));
|
||||||
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
||||||
try {
|
try {
|
||||||
fromMemorySegment(a, index, ByteOrder.nativeOrder(), vmask);
|
fromMemorySegment(a, index, ByteOrder.nativeOrder(), vmask);
|
||||||
@@ -642,7 +642,7 @@ public class Short512VectorLoadStoreTests extends AbstractVectorLoadStoreTest {
|
|||||||
}
|
}
|
||||||
}
|
}
|
||||||
|
|
||||||
int index = fi.apply((int) a.byteSize());
|
int index = fi.apply((int) a.byteSize()) & (~(SPECIES.elementSize() - 1));
|
||||||
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
||||||
try {
|
try {
|
||||||
ShortVector av = ShortVector.fromMemorySegment(SPECIES, a, 0, ByteOrder.nativeOrder());
|
ShortVector av = ShortVector.fromMemorySegment(SPECIES, a, 0, ByteOrder.nativeOrder());
|
||||||
|
|||||||
@@ -611,7 +611,7 @@ public class Short64VectorLoadStoreTests extends AbstractVectorLoadStoreTest {
|
|||||||
}
|
}
|
||||||
}
|
}
|
||||||
|
|
||||||
int index = fi.apply((int) a.byteSize());
|
int index = fi.apply((int) a.byteSize()) & (~(SPECIES.elementSize() - 1));
|
||||||
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
||||||
try {
|
try {
|
||||||
fromMemorySegment(a, index, ByteOrder.nativeOrder(), vmask);
|
fromMemorySegment(a, index, ByteOrder.nativeOrder(), vmask);
|
||||||
@@ -642,7 +642,7 @@ public class Short64VectorLoadStoreTests extends AbstractVectorLoadStoreTest {
|
|||||||
}
|
}
|
||||||
}
|
}
|
||||||
|
|
||||||
int index = fi.apply((int) a.byteSize());
|
int index = fi.apply((int) a.byteSize()) & (~(SPECIES.elementSize() - 1));
|
||||||
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
||||||
try {
|
try {
|
||||||
ShortVector av = ShortVector.fromMemorySegment(SPECIES, a, 0, ByteOrder.nativeOrder());
|
ShortVector av = ShortVector.fromMemorySegment(SPECIES, a, 0, ByteOrder.nativeOrder());
|
||||||
|
|||||||
@@ -618,7 +618,7 @@ public class ShortMaxVectorLoadStoreTests extends AbstractVectorLoadStoreTest {
|
|||||||
}
|
}
|
||||||
}
|
}
|
||||||
|
|
||||||
int index = fi.apply((int) a.byteSize());
|
int index = fi.apply((int) a.byteSize()) & (~(SPECIES.elementSize() - 1));
|
||||||
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
||||||
try {
|
try {
|
||||||
fromMemorySegment(a, index, ByteOrder.nativeOrder(), vmask);
|
fromMemorySegment(a, index, ByteOrder.nativeOrder(), vmask);
|
||||||
@@ -649,7 +649,7 @@ public class ShortMaxVectorLoadStoreTests extends AbstractVectorLoadStoreTest {
|
|||||||
}
|
}
|
||||||
}
|
}
|
||||||
|
|
||||||
int index = fi.apply((int) a.byteSize());
|
int index = fi.apply((int) a.byteSize()) & (~(SPECIES.elementSize() - 1));
|
||||||
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
||||||
try {
|
try {
|
||||||
ShortVector av = ShortVector.fromMemorySegment(SPECIES, a, 0, ByteOrder.nativeOrder());
|
ShortVector av = ShortVector.fromMemorySegment(SPECIES, a, 0, ByteOrder.nativeOrder());
|
||||||
|
|||||||
@@ -631,7 +631,7 @@ public class $vectorteststype$ extends AbstractVectorLoadStoreTest {
|
|||||||
}
|
}
|
||||||
}
|
}
|
||||||
|
|
||||||
int index = fi.apply((int) a.byteSize());
|
int index = fi.apply((int) a.byteSize()) & (~(SPECIES.elementSize() - 1));
|
||||||
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
||||||
try {
|
try {
|
||||||
fromMemorySegment(a, index, ByteOrder.nativeOrder(), vmask);
|
fromMemorySegment(a, index, ByteOrder.nativeOrder(), vmask);
|
||||||
@@ -662,7 +662,7 @@ public class $vectorteststype$ extends AbstractVectorLoadStoreTest {
|
|||||||
}
|
}
|
||||||
}
|
}
|
||||||
|
|
||||||
int index = fi.apply((int) a.byteSize());
|
int index = fi.apply((int) a.byteSize()) & (~(SPECIES.elementSize() - 1));
|
||||||
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
boolean shouldFail = isIndexOutOfBoundsForMask(mask, index, (int) a.byteSize(), SPECIES.elementSize() / 8);
|
||||||
try {
|
try {
|
||||||
$abstractvectortype$ av = $abstractvectortype$.fromMemorySegment(SPECIES, a, 0, ByteOrder.nativeOrder());
|
$abstractvectortype$ av = $abstractvectortype$.fromMemorySegment(SPECIES, a, 0, ByteOrder.nativeOrder());
|
||||||
|
|||||||
Reference in New Issue
Block a user