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| 1 // Copyright 2012 the V8 project authors. All rights reserved. | 1 // Copyright 2012 the V8 project authors. All rights reserved. |
| 2 // Redistribution and use in source and binary forms, with or without | 2 // Redistribution and use in source and binary forms, with or without |
| 3 // modification, are permitted provided that the following conditions are | 3 // modification, are permitted provided that the following conditions are |
| 4 // met: | 4 // met: |
| 5 // | 5 // |
| 6 // * Redistributions of source code must retain the above copyright | 6 // * Redistributions of source code must retain the above copyright |
| 7 // notice, this list of conditions and the following disclaimer. | 7 // notice, this list of conditions and the following disclaimer. |
| 8 // * Redistributions in binary form must reproduce the above | 8 // * Redistributions in binary form must reproduce the above |
| 9 // copyright notice, this list of conditions and the following | 9 // copyright notice, this list of conditions and the following |
| 10 // disclaimer in the documentation and/or other materials provided | 10 // disclaimer in the documentation and/or other materials provided |
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| 7844 isolate->counters()->math_tan()->Increment(); | 7844 isolate->counters()->math_tan()->Increment(); |
| 7845 | 7845 |
| 7846 CONVERT_DOUBLE_ARG_CHECKED(x, 0); | 7846 CONVERT_DOUBLE_ARG_CHECKED(x, 0); |
| 7847 return isolate->transcendental_cache()->Get(TranscendentalCache::TAN, x); | 7847 return isolate->transcendental_cache()->Get(TranscendentalCache::TAN, x); |
| 7848 } | 7848 } |
| 7849 | 7849 |
| 7850 | 7850 |
| 7851 RUNTIME_FUNCTION(MaybeObject*, Runtime_PopulateTrigonometricTable) { | 7851 RUNTIME_FUNCTION(MaybeObject*, Runtime_PopulateTrigonometricTable) { |
| 7852 HandleScope scope(isolate); | 7852 HandleScope scope(isolate); |
| 7853 ASSERT(args.length() == 3); | 7853 ASSERT(args.length() == 3); |
| 7854 CONVERT_ARG_HANDLE_CHECKED(JSTypedArray, sin_table, 0); | 7854 CONVERT_ARG_HANDLE_CHECKED(JSArray, sin_table, 0); |
| 7855 CONVERT_ARG_HANDLE_CHECKED(JSTypedArray, cos_table, 1); | 7855 CONVERT_ARG_HANDLE_CHECKED(JSArray, cos_table, 1); |
| 7856 CONVERT_SMI_ARG_CHECKED(samples, 2); | 7856 CONVERT_SMI_ARG_CHECKED(samples, 2); |
| 7857 RUNTIME_ASSERT(sin_table->type() == kExternalDoubleArray); | 7857 RUNTIME_ASSERT(sin_table->HasFastDoubleElements()); |
| 7858 RUNTIME_ASSERT(cos_table->type() == kExternalDoubleArray); | 7858 RUNTIME_ASSERT(cos_table->HasFastDoubleElements()); |
| 7859 double* sin_buffer = reinterpret_cast<double*>( | 7859 // Run only when bootstrapping. |
| 7860 JSArrayBuffer::cast(sin_table->buffer())->backing_store()); | 7860 RUNTIME_ASSERT(isolate->bootstrapper()->IsActive()); |
| 7861 double* cos_buffer = reinterpret_cast<double*>( | 7861 |
| 7862 JSArrayBuffer::cast(cos_table->buffer())->backing_store()); | 7862 Handle<FixedDoubleArray> sin_elements( |
| 7863 FixedDoubleArray::cast(sin_table->elements())); |
| 7864 Handle<FixedDoubleArray> cos_elements( |
| 7865 FixedDoubleArray::cast(cos_table->elements())); |
| 7866 |
| 7867 RUNTIME_ASSERT(sin_elements->length() >= samples); |
| 7868 RUNTIME_ASSERT(cos_elements->length() >= samples); |
| 7863 | 7869 |
| 7864 static const double pi_half = 3.1415926535897932 / 2; | 7870 static const double pi_half = 3.1415926535897932 / 2; |
| 7865 double interval = pi_half / samples; | 7871 double interval = pi_half / samples; |
| 7866 for (int i = 0; i < samples + 1; i++) { | 7872 for (int i = 0; i < samples + 1; i++) { |
| 7867 double sample = sin(i * interval); | 7873 double sample = sin(i * interval); |
| 7868 sin_buffer[i] = sample; | 7874 sin_elements->set(i, sample); |
| 7869 cos_buffer[samples - i] = sample * interval; | 7875 cos_elements->set(samples - i, sample * interval); |
| 7870 } | 7876 } |
| 7871 | 7877 |
| 7872 // Fill this to catch out of bound accesses when calculating Math.sin(pi/2). | 7878 // Fill this to catch out of bound accesses when calculating Math.sin(pi/2). |
| 7873 sin_buffer[samples + 1] = sin(pi_half + interval); | 7879 sin_elements->set(samples + 1, sin(pi_half + interval)); |
| 7874 cos_buffer[samples + 1] = cos(pi_half + interval) * interval; | 7880 cos_elements->set(samples + 1, cos(pi_half + interval) * interval); |
| 7875 | 7881 |
| 7876 return isolate->heap()->undefined_value(); | 7882 return isolate->heap()->undefined_value(); |
| 7877 } | 7883 } |
| 7878 | 7884 |
| 7879 | 7885 |
| 7880 RUNTIME_FUNCTION(MaybeObject*, Runtime_DateMakeDay) { | 7886 RUNTIME_FUNCTION(MaybeObject*, Runtime_DateMakeDay) { |
| 7881 SealHandleScope shs(isolate); | 7887 SealHandleScope shs(isolate); |
| 7882 ASSERT(args.length() == 2); | 7888 ASSERT(args.length() == 2); |
| 7883 | 7889 |
| 7884 CONVERT_SMI_ARG_CHECKED(year, 0); | 7890 CONVERT_SMI_ARG_CHECKED(year, 0); |
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| 14917 // Handle last resort GC and make sure to allow future allocations | 14923 // Handle last resort GC and make sure to allow future allocations |
| 14918 // to grow the heap without causing GCs (if possible). | 14924 // to grow the heap without causing GCs (if possible). |
| 14919 isolate->counters()->gc_last_resort_from_js()->Increment(); | 14925 isolate->counters()->gc_last_resort_from_js()->Increment(); |
| 14920 isolate->heap()->CollectAllGarbage(Heap::kNoGCFlags, | 14926 isolate->heap()->CollectAllGarbage(Heap::kNoGCFlags, |
| 14921 "Runtime::PerformGC"); | 14927 "Runtime::PerformGC"); |
| 14922 } | 14928 } |
| 14923 } | 14929 } |
| 14924 | 14930 |
| 14925 | 14931 |
| 14926 } } // namespace v8::internal | 14932 } } // namespace v8::internal |
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