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#ifndef CPU_X86_INTELJCCERRATUM_X86_HPP
#define CPU_X86_INTELJCCERRATUM_X86_HPP
#include "memory/allStatic.hpp"
#include "utilities/globalDefinitions.hpp"
class Block;
class Compile;
class MachNode;
class MacroAssembler;
class PhaseCFG;
class PhaseRegAlloc;
class IntelJccErratum : public AllStatic {
private :
// Compute which 32 byte boundary an address corresponds to
static uintptr_t boundary(uintptr_t addr);
static int jcc_erratum_taint_node(MachNode* node, PhaseRegAlloc* regalloc);
public :
static bool is_crossing_or_ending_at_32_byte_boundary(uintptr_t start_pc, uintptr_t end_pc);
static bool is_jcc_erratum_branch(const MachNode* node);
// Analyze JCC erratum branches. Affected nodes get tagged with Flag_intel_jcc_erratum.
// The function returns a conservative estimate of all required nops on all mach nodes.
static int tag_affected_machnodes(Compile* C, PhaseCFG* cfg, PhaseRegAlloc* regalloc);
// Computes the exact padding for a mach node
static int compute_padding(uintptr_t current_offset, const MachNode* mach, Block* block, uint index_in_block, PhaseRegAlloc* regalloc);
static int largest_jcc_size() { return 20 ; }
};
class IntelJccErratumAlignment {
private :
MacroAssembler& _masm;
uintptr_t _start_pc;
uintptr_t pc();
public :
IntelJccErratumAlignment(MacroAssembler& masm, int jcc_size);
~IntelJccErratumAlignment();
};
#endif // CPU_X86_INTELJCCERRATUM_X86_HPP
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