1// Copyright 2012 the V8 project authors. All rights reserved.
2// Redistribution and use in source and binary forms, with or without
3// modification, are permitted provided that the following conditions are
4// met:
5//
6//     * Redistributions of source code must retain the above copyright
7//       notice, this list of conditions and the following disclaimer.
8//     * Redistributions in binary form must reproduce the above
9//       copyright notice, this list of conditions and the following
10//       disclaimer in the documentation and/or other materials provided
11//       with the distribution.
12//     * Neither the name of Google Inc. nor the names of its
13//       contributors may be used to endorse or promote products derived
14//       from this software without specific prior written permission.
15//
16// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
17// "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
18// LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
19// A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
20// OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
21// SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
22// LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
23// DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
24// THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
25// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
26// OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
27
28// Flags: --allow-natives-syntax --expose-gc
29
30// This is a regression test for overlapping key and value registers.
31function f(a) {
32  a[0] = 0;
33  a[1] = 0;
34}
35
36var a = new Int32Array(2);
37for (var i = 0; i < 5; i++) {
38  f(a);
39}
40%OptimizeFunctionOnNextCall(f);
41f(a);
42
43assertEquals(0, a[0]);
44assertEquals(0, a[1]);
45
46// No-parameter constructor should fail right now.
47function abfunc1() {
48  return new ArrayBuffer();
49}
50assertThrows(abfunc1);
51
52// Test derivation from an ArrayBuffer
53var ab = new ArrayBuffer(12);
54var derived_uint8 = new Uint8Array(ab);
55assertEquals(12, derived_uint8.length);
56var derived_uint32 = new Uint32Array(ab);
57assertEquals(3, derived_uint32.length);
58var derived_uint32_2 = new Uint32Array(ab,4);
59assertEquals(2, derived_uint32_2.length);
60var derived_uint32_3 = new Uint32Array(ab,4,1);
61assertEquals(1, derived_uint32_3.length);
62
63// If a given byteOffset and length references an area beyond the end of the
64// ArrayBuffer an exception is raised.
65function abfunc3() {
66  new Uint32Array(ab,4,3);
67}
68assertThrows(abfunc3);
69function abfunc4() {
70  new Uint32Array(ab,16);
71}
72assertThrows(abfunc4);
73
74// The given byteOffset must be a multiple of the element size of the specific
75// type, otherwise an exception is raised.
76function abfunc5() {
77  new Uint32Array(ab,5);
78}
79assertThrows(abfunc5);
80
81// If length is not explicitly specified, the length of the ArrayBuffer minus
82// the byteOffset must be a multiple of the element size of the specific type,
83// or an exception is raised.
84var ab2 = new ArrayBuffer(13);
85function abfunc6() {
86  new Uint32Array(ab2,4);
87}
88assertThrows(abfunc6);
89
90// Test the correct behavior of the |BYTES_PER_ELEMENT| property (which is
91// "constant", but not read-only).
92a = new Int32Array(2);
93assertEquals(4, a.BYTES_PER_ELEMENT);
94a.BYTES_PER_ELEMENT = 42;
95assertEquals(42, a.BYTES_PER_ELEMENT);
96a = new Uint8Array(2);
97assertEquals(1, a.BYTES_PER_ELEMENT);
98a = new Int16Array(2);
99assertEquals(2, a.BYTES_PER_ELEMENT);
100
101// Test Float64Arrays.
102function get(a, index) {
103  return a[index];
104}
105function set(a, index, value) {
106  a[index] = value;
107}
108function temp() {
109var array = new Float64Array(2);
110for (var i = 0; i < 5; i++) {
111  set(array, 0, 2.5);
112  assertEquals(2.5, array[0]);
113}
114%OptimizeFunctionOnNextCall(set);
115set(array, 0, 2.5);
116assertEquals(2.5, array[0]);
117set(array, 1, 3.5);
118assertEquals(3.5, array[1]);
119for (var i = 0; i < 5; i++) {
120  assertEquals(2.5, get(array, 0));
121  assertEquals(3.5, array[1]);
122}
123%OptimizeFunctionOnNextCall(get);
124assertEquals(2.5, get(array, 0));
125assertEquals(3.5, get(array, 1));
126}
127
128// Test non-number parameters.
129var array_with_length_from_non_number = new Int32Array("2");
130assertEquals(2, array_with_length_from_non_number.length);
131array_with_length_from_non_number = new Int32Array(undefined);
132assertEquals(0, array_with_length_from_non_number.length);
133var foo = { valueOf: function() { return 3; } };
134array_with_length_from_non_number = new Int32Array(foo);
135assertEquals(3, array_with_length_from_non_number.length);
136foo = { toString: function() { return "4"; } };
137array_with_length_from_non_number = new Int32Array(foo);
138assertEquals(4, array_with_length_from_non_number.length);
139
140
141// Test loads and stores.
142types = [Array, Int8Array, Uint8Array, Int16Array, Uint16Array, Int32Array,
143         Uint32Array, PixelArray, Float32Array, Float64Array];
144
145test_result_nan = [NaN, 0, 0, 0, 0, 0, 0, 0, NaN, NaN];
146test_result_low_int = [-1, -1, 255, -1, 65535, -1, 0xFFFFFFFF, 0, -1, -1];
147test_result_low_double = [-1.25, -1, 255, -1, 65535, -1, 0xFFFFFFFF, 0, -1.25, -1.25];
148test_result_middle = [253.75, -3, 253, 253, 253, 253, 253, 254, 253.75, 253.75];
149test_result_high_int = [256, 0, 0, 256, 256, 256, 256, 255, 256, 256];
150test_result_high_double = [256.25, 0, 0, 256, 256, 256, 256, 255, 256.25, 256.25];
151
152const kElementCount = 40;
153
154function test_load(array, sum) {
155  for (var i = 0; i < kElementCount; i++) {
156    sum += array[i];
157  }
158  return sum;
159}
160
161function test_load_const_key(array, sum) {
162  sum += array[0];
163  sum += array[1];
164  sum += array[2];
165  return sum;
166}
167
168function test_store(array, sum) {
169  for (var i = 0; i < kElementCount; i++) {
170    sum += array[i] = i+1;
171  }
172  return sum;
173}
174
175function test_store_const_key(array, sum) {
176  sum += array[0] = 1;
177  sum += array[1] = 2;
178  sum += array[2] = 3;
179  return sum;
180}
181
182function zero() {
183  return 0.0;
184}
185
186function test_store_middle_tagged(array, sum) {
187  array[0] = 253.75;
188  return array[0];
189}
190
191function test_store_high_tagged(array, sum) {
192  array[0] = 256.25;
193  return array[0];
194}
195
196function test_store_middle_double(array, sum) {
197  array[0] = 253.75 + zero(); // + forces double type feedback
198  return array[0];
199}
200
201function test_store_high_double(array, sum) {
202  array[0] = 256.25 + zero(); // + forces double type feedback
203  return array[0];
204}
205
206function test_store_high_double(array, sum) {
207  array[0] = 256.25;
208  return array[0];
209}
210
211function test_store_low_int(array, sum) {
212  array[0] = -1;
213  return array[0];
214}
215
216function test_store_low_tagged(array, sum) {
217  array[0] = -1.25;
218  return array[0];
219}
220
221function test_store_low_double(array, sum) {
222  array[0] = -1.25 + zero(); // + forces double type feedback
223  return array[0];
224}
225
226function test_store_high_int(array, sum) {
227  array[0] = 256;
228  return array[0];
229}
230
231function test_store_nan(array, sum) {
232  array[0] = NaN;
233  return array[0];
234}
235
236const kRuns = 10;
237
238function run_test(test_func, array, expected_result) {
239  for (var i = 0; i < 5; i++) test_func(array, 0);
240  %OptimizeFunctionOnNextCall(test_func);
241  var sum = 0;
242  for (var i = 0; i < kRuns; i++) {
243    sum = test_func(array, sum);
244  }
245  assertEquals(expected_result, sum);
246  %DeoptimizeFunction(test_func);
247  gc();  // Makes V8 forget about type information for test_func.
248}
249
250function run_bounds_test(test_func, array, expected_result) {
251  assertEquals(undefined, a[kElementCount]);
252  a[kElementCount] = 456;
253  assertEquals(undefined, a[kElementCount]);
254  assertEquals(undefined, a[kElementCount+1]);
255  a[kElementCount+1] = 456;
256  assertEquals(undefined, a[kElementCount+1]);
257}
258
259for (var t = 0; t < types.length; t++) {
260  var type = types[t];
261  var a = new type(kElementCount);
262
263  for (var i = 0; i < kElementCount; i++) {
264    a[i] = i;
265  }
266
267  // Run test functions defined above.
268  run_test(test_load, a, 780 * kRuns);
269  run_test(test_load_const_key, a, 3 * kRuns);
270  run_test(test_store, a, 820 * kRuns);
271  run_test(test_store_const_key, a, 6 * kRuns);
272  run_test(test_store_low_int, a, test_result_low_int[t]);
273  run_test(test_store_low_double, a, test_result_low_double[t]);
274  run_test(test_store_low_tagged, a, test_result_low_double[t]);
275  run_test(test_store_high_int, a, test_result_high_int[t]);
276  run_test(test_store_nan, a, test_result_nan[t]);
277  run_test(test_store_middle_double, a, test_result_middle[t]);
278  run_test(test_store_middle_tagged, a, test_result_middle[t]);
279  run_test(test_store_high_double, a, test_result_high_double[t]);
280  run_test(test_store_high_tagged, a, test_result_high_double[t]);
281
282  // Test the correct behavior of the |length| property (which is read-only).
283  if (t != 0) {
284    assertEquals(kElementCount, a.length);
285    a.length = 2;
286    assertEquals(kElementCount, a.length);
287    assertTrue(delete a.length);
288    a.length = 2;
289    assertEquals(2, a.length);
290
291    // Make sure bounds checks are handled correctly for external arrays.
292    run_bounds_test(a);
293    run_bounds_test(a);
294    run_bounds_test(a);
295    %OptimizeFunctionOnNextCall(run_bounds_test);
296    run_bounds_test(a);
297    %DeoptimizeFunction(run_bounds_test);
298    gc();  // Makes V8 forget about type information for test_func.
299
300  }
301
302  function array_load_set_smi_check(a) {
303    return a[0] = a[0] = 1;
304  }
305
306  array_load_set_smi_check(a);
307  array_load_set_smi_check(0);
308
309  function array_load_set_smi_check2(a) {
310    return a[0] = a[0] = 1;
311  }
312
313  array_load_set_smi_check2(a);
314  %OptimizeFunctionOnNextCall(array_load_set_smi_check2);
315  array_load_set_smi_check2(a);
316  array_load_set_smi_check2(0);
317  %DeoptimizeFunction(array_load_set_smi_check2);
318  gc();  // Makes V8 forget about type information for array_load_set_smi_check.
319}
320
321// Check handling of undefined in 32- and 64-bit external float arrays.
322
323function store_float32_undefined(ext_array) {
324  ext_array[0] = undefined;
325}
326
327var float32_array = new Float32Array(1);
328// Make sure runtime does it right
329store_float32_undefined(float32_array);
330assertTrue(isNaN(float32_array[0]));
331// Make sure the ICs do it right
332store_float32_undefined(float32_array);
333assertTrue(isNaN(float32_array[0]));
334// Make sure that Cranskshft does it right.
335%OptimizeFunctionOnNextCall(store_float32_undefined);
336store_float32_undefined(float32_array);
337assertTrue(isNaN(float32_array[0]));
338
339function store_float64_undefined(ext_array) {
340  ext_array[0] = undefined;
341}
342
343var float64_array = new Float64Array(1);
344// Make sure runtime does it right
345store_float64_undefined(float64_array);
346assertTrue(isNaN(float64_array[0]));
347// Make sure the ICs do it right
348store_float64_undefined(float64_array);
349assertTrue(isNaN(float64_array[0]));
350// Make sure that Cranskshft does it right.
351%OptimizeFunctionOnNextCall(store_float64_undefined);
352store_float64_undefined(float64_array);
353assertTrue(isNaN(float64_array[0]));
354