8227260: JNI upcalls should bypass class initialization barrier in c2i adapter
Reviewed-by: eosterlund, dholmes, mdoerr
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#ifndef CPU_S390_C1_LINEARSCAN_S390_HPP
#define CPU_S390_C1_LINEARSCAN_S390_HPP
inline bool LinearScan::is_processed_reg_num(int reg_num) {
// unallocated: Z_thread, Z_fp, Z_SP, Z_R0_scratch, Z_R1_scratch, Z_R14
assert(FrameMap::Z_R14_opr->cpu_regnr() == 10, "wrong assumption below");
assert(FrameMap::Z_R0_opr->cpu_regnr() == 11, "wrong assumption below");
assert(FrameMap::Z_R1_opr->cpu_regnr() == 12, "wrong assumption below");
assert(FrameMap::Z_R8_opr->cpu_regnr() == 13, "wrong assumption below");
assert(FrameMap::Z_R9_opr->cpu_regnr() == 14, "wrong assumption below");
assert(FrameMap::Z_R15_opr->cpu_regnr() == 15, "wrong assumption below");
assert(reg_num >= 0, "invalid reg_num");
return reg_num <= FrameMap::last_cpu_reg() || reg_num >= pd_nof_cpu_regs_frame_map;
}
inline int LinearScan::num_physical_regs(BasicType type) {
// IBM Z requires one cpu registers for long,
// and one fpu register for double.
return 1;
}
inline bool LinearScan::requires_adjacent_regs(BasicType type) {
return false;
}
inline bool LinearScan::is_caller_save(int assigned_reg) {
assert(assigned_reg >= 0 && assigned_reg < nof_regs, "should call this only for registers");
return true; // No callee-saved registers on IBM Z.
}
inline void LinearScan::pd_add_temps(LIR_Op* op) {
// No special case behaviours.
}
inline bool LinearScanWalker::pd_init_regs_for_alloc(Interval* cur) {
return false; // No special case behaviours.
}
#endif // CPU_S390_C1_LINEARSCAN_S390_HPP