14 #ifndef LLVM_SUPPORT_OUTPUTBUFFER_H
15 #define LLVM_SUPPORT_OUTPUTBUFFER_H
25 std::vector<unsigned char> &Output;
29 bool is64Bit, isLittleEndian;
32 bool is64bit,
bool le)
33 : Output(Out), is64Bit(is64bit), isLittleEndian(le) {}
38 assert(Boundary && (Boundary & (Boundary - 1)) == 0 &&
39 "Must align to 2^k boundary");
40 size_t Size = Output.size();
42 if (Size & (Boundary - 1)) {
44 size_t Pad = Boundary - (Size & (Boundary - 1));
45 Output.resize(Size + Pad);
57 Output.push_back(X & 255);
58 Output.push_back(X >> 8);
60 Output.push_back(X >> 8);
61 Output.push_back(X & 255);
66 Output.push_back((X >> 0) & 255);
67 Output.push_back((X >> 8) & 255);
68 Output.push_back((X >> 16) & 255);
69 Output.push_back((X >> 24) & 255);
71 Output.push_back((X >> 24) & 255);
72 Output.push_back((X >> 16) & 255);
73 Output.push_back((X >> 8) & 255);
74 Output.push_back((X >> 0) & 255);
79 Output.push_back(
unsigned(X >> 0) & 255);
80 Output.push_back(
unsigned(X >> 8) & 255);
81 Output.push_back(
unsigned(X >> 16) & 255);
82 Output.push_back(
unsigned(X >> 24) & 255);
83 Output.push_back(
unsigned(X >> 32) & 255);
84 Output.push_back(
unsigned(X >> 40) & 255);
85 Output.push_back(
unsigned(X >> 48) & 255);
86 Output.push_back(
unsigned(X >> 56) & 255);
88 Output.push_back(
unsigned(X >> 56) & 255);
89 Output.push_back(
unsigned(X >> 48) & 255);
90 Output.push_back(
unsigned(X >> 40) & 255);
91 Output.push_back(
unsigned(X >> 32) & 255);
92 Output.push_back(
unsigned(X >> 24) & 255);
93 Output.push_back(
unsigned(X >> 16) & 255);
94 Output.push_back(
unsigned(X >> 8) & 255);
95 Output.push_back(
unsigned(X >> 0) & 255);
111 unsigned len_to_copy =
static_cast<unsigned>(S.length()) < Length
112 ? static_cast<unsigned>(S.length()) : Length;
113 unsigned len_to_fill =
static_cast<unsigned>(S.length()) < Length
114 ? Length - static_cast<unsigned>(S.length()) : 0;
116 for (
unsigned i = 0; i < len_to_copy; ++i)
119 for (
unsigned i = 0; i < len_to_fill; ++i)
127 unsigned char *
P = &Output[Offset];
128 P[0] = (X >> (isLittleEndian ? 0 : 8)) & 255;
129 P[1] = (X >> (isLittleEndian ? 8 : 0)) & 255;
132 unsigned char *
P = &Output[Offset];
133 P[0] = (X >> (isLittleEndian ? 0 : 24)) & 255;
134 P[1] = (X >> (isLittleEndian ? 8 : 16)) & 255;
135 P[2] = (X >> (isLittleEndian ? 16 : 8)) & 255;
136 P[3] = (X >> (isLittleEndian ? 24 : 0)) & 255;
139 unsigned char *
P = &Output[Offset];
140 P[0] = (X >> (isLittleEndian ? 0 : 56)) & 255;
141 P[1] = (X >> (isLittleEndian ? 8 : 48)) & 255;
142 P[2] = (X >> (isLittleEndian ? 16 : 40)) & 255;
143 P[3] = (X >> (isLittleEndian ? 24 : 32)) & 255;
144 P[4] = (X >> (isLittleEndian ? 32 : 24)) & 255;
145 P[5] = (X >> (isLittleEndian ? 40 : 16)) & 255;
146 P[6] = (X >> (isLittleEndian ? 48 : 8)) & 255;
147 P[7] = (X >> (isLittleEndian ? 56 : 0)) & 255;
157 return Output[Index];
160 return Output[Index];
166 #endif // LLVM_SUPPORT_OUTPUTBUFFER_H
void align(unsigned Boundary)
void outhalf(unsigned short X)
void outstring(const std::string &S, unsigned Length)
unsigned char & operator[](unsigned Index)
OutputBuffer(std::vector< unsigned char > &Out, bool is64bit, bool le)
void fixaddr(uint64_t X, unsigned Offset)
void outbyte(unsigned char X)
void fixxword(uint64_t X, unsigned Offset)
void outaddr64(uint64_t X)
void fixword(unsigned X, unsigned Offset)
void outaddr32(unsigned X)
void fixhalf(unsigned short X, unsigned Offset)
void outxword(uint64_t X)
const unsigned char & operator[](unsigned Index) const
static RegisterPass< NVPTXAllocaHoisting > X("alloca-hoisting","Hoisting alloca instructions in non-entry ""blocks to the entry block")