| Index: net/quic/quic_data_writer.cc
|
| diff --git a/net/quic/quic_data_writer.cc b/net/quic/quic_data_writer.cc
|
| index 11b6b55042bc06a1fc5c850de3d1a5011a51dcd7..d48f89fe13661142aedd819df3d7b23425dba8f4 100644
|
| --- a/net/quic/quic_data_writer.cc
|
| +++ b/net/quic/quic_data_writer.cc
|
| @@ -11,9 +11,6 @@
|
| #include "base/basictypes.h"
|
| #include "base/logging.h"
|
|
|
| -using base::StringPiece;
|
| -using std::numeric_limits;
|
| -
|
| namespace net {
|
|
|
| QuicDataWriter::QuicDataWriter(size_t size)
|
| @@ -47,8 +44,8 @@ bool QuicDataWriter::WriteUInt32(uint32 value) {
|
| }
|
|
|
| bool QuicDataWriter::WriteUInt48(uint64 value) {
|
| - uint32 hi = value >> 32;
|
| - uint32 lo = value & GG_UINT64_C(0x00000000FFFFFFFF);
|
| + uint16 hi = static_cast<uint16>(value >> 32);
|
| + uint32 lo = static_cast<uint32>(value);
|
| return WriteUInt32(lo) && WriteUInt16(hi);
|
| }
|
|
|
| @@ -61,10 +58,10 @@ bool QuicDataWriter::WriteUFloat16(uint64 value) {
|
| if (value < (GG_UINT64_C(1) << kUFloat16MantissaEffectiveBits)) {
|
| // Fast path: either the value is denormalized, or has exponent zero.
|
| // Both cases are represented by the value itself.
|
| - result = value;
|
| + result = static_cast<uint16>(value);
|
| } else if (value >= kUFloat16MaxValue) {
|
| // Value is out of range; clamp it to the maximum representable.
|
| - result = numeric_limits<uint16>::max();
|
| + result = std::numeric_limits<uint16>::max();
|
| } else {
|
| // The highest bit is between position 13 and 42 (zero-based), which
|
| // corresponds to exponent 1-30. In the output, mantissa is from 0 to 10,
|
| @@ -89,17 +86,17 @@ bool QuicDataWriter::WriteUFloat16(uint64 value) {
|
| // Hidden bit (position 11) is set. We should remove it and increment the
|
| // exponent. Equivalently, we just add it to the exponent.
|
| // This hides the bit.
|
| - result = value + (exponent << kUFloat16MantissaBits);
|
| + result = static_cast<uint16>(value + (exponent << kUFloat16MantissaBits));
|
| }
|
|
|
| return WriteBytes(&result, sizeof(result));
|
| }
|
|
|
| -bool QuicDataWriter::WriteStringPiece16(StringPiece val) {
|
| - if (val.length() > numeric_limits<uint16>::max()) {
|
| +bool QuicDataWriter::WriteStringPiece16(base::StringPiece val) {
|
| + if (val.size() > std::numeric_limits<uint16>::max()) {
|
| return false;
|
| }
|
| - if (!WriteUInt16(val.size())) {
|
| + if (!WriteUInt16(static_cast<uint16>(val.size()))) {
|
| return false;
|
| }
|
| return WriteBytes(val.data(), val.size());
|
| @@ -127,7 +124,7 @@ char* QuicDataWriter::BeginWrite(size_t length) {
|
| }
|
|
|
| #ifdef ARCH_CPU_64_BITS
|
| - DCHECK_LE(length, numeric_limits<uint32>::max());
|
| + DCHECK_LE(length, std::numeric_limits<uint32>::max());
|
| #endif
|
|
|
| return buffer_ + length_;
|
|
|