| Index: src/ppc/code-stubs-ppc.cc
 | 
| diff --git a/src/ppc/code-stubs-ppc.cc b/src/ppc/code-stubs-ppc.cc
 | 
| index c2c27d6c999704721913ea5909a89de06f705240..21ac8206cfb0191a68e5e69e10ef4dc266a37075 100644
 | 
| --- a/src/ppc/code-stubs-ppc.cc
 | 
| +++ b/src/ppc/code-stubs-ppc.cc
 | 
| @@ -1373,7 +1373,7 @@ void RegExpExecStub::Generate(MacroAssembler* masm) {
 | 
|    // (6) External string.  Make it, offset-wise, look like a sequential string.
 | 
|    //     Go to (4).
 | 
|    // (7) Short external string or not a string?  If yes, bail out to runtime.
 | 
| -  // (8) Sliced string.  Replace subject with parent.  Go to (1).
 | 
| +  // (8) Sliced or thin string.  Replace subject with parent.  Go to (1).
 | 
|  
 | 
|    Label seq_string /* 4 */, external_string /* 6 */, check_underlying /* 1 */,
 | 
|        not_seq_nor_cons /* 5 */, not_long_external /* 7 */;
 | 
| @@ -1385,7 +1385,7 @@ void RegExpExecStub::Generate(MacroAssembler* masm) {
 | 
|    // (1) Sequential string?  If yes, go to (4).
 | 
|  
 | 
|    STATIC_ASSERT((kIsNotStringMask | kStringRepresentationMask |
 | 
| -                 kShortExternalStringMask) == 0x93);
 | 
| +                 kShortExternalStringMask) == 0xa7);
 | 
|    __ andi(r4, r3, Operand(kIsNotStringMask | kStringRepresentationMask |
 | 
|                            kShortExternalStringMask));
 | 
|    STATIC_ASSERT((kStringTag | kSeqStringTag) == 0);
 | 
| @@ -1394,6 +1394,7 @@ void RegExpExecStub::Generate(MacroAssembler* masm) {
 | 
|    // (2) Sequential or cons? If not, go to (5).
 | 
|    STATIC_ASSERT(kConsStringTag < kExternalStringTag);
 | 
|    STATIC_ASSERT(kSlicedStringTag > kExternalStringTag);
 | 
| +  STATIC_ASSERT(kThinStringTag > kExternalStringTag);
 | 
|    STATIC_ASSERT(kIsNotStringMask > kExternalStringTag);
 | 
|    STATIC_ASSERT(kShortExternalStringTag > kExternalStringTag);
 | 
|    STATIC_ASSERT(kExternalStringTag < 0xffffu);
 | 
| @@ -1422,9 +1423,9 @@ void RegExpExecStub::Generate(MacroAssembler* masm) {
 | 
|    __ ble(&runtime);
 | 
|    __ SmiUntag(r4);
 | 
|  
 | 
| -  STATIC_ASSERT(4 == kOneByteStringTag);
 | 
| +  STATIC_ASSERT(8 == kOneByteStringTag);
 | 
|    STATIC_ASSERT(kTwoByteStringTag == 0);
 | 
| -  STATIC_ASSERT(kStringEncodingMask == 4);
 | 
| +  STATIC_ASSERT(kStringEncodingMask == 8);
 | 
|    __ ExtractBitMask(r6, r3, kStringEncodingMask, SetRC);
 | 
|    __ beq(&encoding_type_UC16, cr0);
 | 
|    __ LoadP(code,
 | 
| @@ -1670,12 +1671,19 @@ void RegExpExecStub::Generate(MacroAssembler* masm) {
 | 
|    __ andi(r0, r4, Operand(kIsNotStringMask | kShortExternalStringMask));
 | 
|    __ bne(&runtime, cr0);
 | 
|  
 | 
| -  // (8) Sliced string.  Replace subject with parent.  Go to (4).
 | 
| +  // (8) Sliced or thin string.  Replace subject with parent.  Go to (4).
 | 
| +  Label thin_string;
 | 
| +  __ cmpi(r4, Operand(kThinStringTag));
 | 
| +  __ beq(&thin_string);
 | 
|    // Load offset into r11 and replace subject string with parent.
 | 
|    __ LoadP(r11, FieldMemOperand(subject, SlicedString::kOffsetOffset));
 | 
|    __ SmiUntag(r11);
 | 
|    __ LoadP(subject, FieldMemOperand(subject, SlicedString::kParentOffset));
 | 
|    __ b(&check_underlying);  // Go to (4).
 | 
| +
 | 
| +  __ bind(&thin_string);
 | 
| +  __ LoadP(subject, FieldMemOperand(subject, ThinString::kActualOffset));
 | 
| +  __ b(&check_underlying);  // Go to (4).
 | 
|  #endif  // V8_INTERPRETED_REGEXP
 | 
|  }
 | 
|  
 | 
| 
 |