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📄 model2.c

📁 这个是LINUX下的GDB调度工具的源码
💻 C
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  {    int referenced = 0;    int UNUSED insn_referenced = abuf->written;    INT in_sr = -1;    INT in_dr = -1;    INT out_dr = -1;    in_sr = FLD (in_src1);    cycles += m32r2f_model_m32r2_u_exec (current_cpu, idesc, 0, referenced, in_sr, in_dr, out_dr);  }  return cycles;#undef FLD}static intmodel_m32r2_mvtaclo_a (SIM_CPU *current_cpu, void *sem_arg){#define FLD(f) abuf->fields.sfmt_mvtachi_a.f  const ARGBUF * UNUSED abuf = SEM_ARGBUF ((SEM_ARG) sem_arg);  const IDESC * UNUSED idesc = abuf->idesc;  int cycles = 0;  {    int referenced = 0;    int UNUSED insn_referenced = abuf->written;    INT in_sr = -1;    INT in_dr = -1;    INT out_dr = -1;    in_sr = FLD (in_src1);    cycles += m32r2f_model_m32r2_u_exec (current_cpu, idesc, 0, referenced, in_sr, in_dr, out_dr);  }  return cycles;#undef FLD}static intmodel_m32r2_mvtc (SIM_CPU *current_cpu, void *sem_arg){#define FLD(f) abuf->fields.sfmt_ld_plus.f  const ARGBUF * UNUSED abuf = SEM_ARGBUF ((SEM_ARG) sem_arg);  const IDESC * UNUSED idesc = abuf->idesc;  int cycles = 0;  {    int referenced = 0;    int UNUSED insn_referenced = abuf->written;    INT in_sr = -1;    INT in_dr = -1;    INT out_dr = -1;    in_sr = FLD (in_sr);    referenced |= 1 << 0;    cycles += m32r2f_model_m32r2_u_exec (current_cpu, idesc, 0, referenced, in_sr, in_dr, out_dr);  }  return cycles;#undef FLD}static intmodel_m32r2_neg (SIM_CPU *current_cpu, void *sem_arg){#define FLD(f) abuf->fields.sfmt_ld_plus.f  const ARGBUF * UNUSED abuf = SEM_ARGBUF ((SEM_ARG) sem_arg);  const IDESC * UNUSED idesc = abuf->idesc;  int cycles = 0;  {    int referenced = 0;    int UNUSED insn_referenced = abuf->written;    INT in_sr = -1;    INT in_dr = -1;    INT out_dr = -1;    in_sr = FLD (in_sr);    out_dr = FLD (out_dr);    referenced |= 1 << 0;    referenced |= 1 << 2;    cycles += m32r2f_model_m32r2_u_exec (current_cpu, idesc, 0, referenced, in_sr, in_dr, out_dr);  }  return cycles;#undef FLD}static intmodel_m32r2_nop (SIM_CPU *current_cpu, void *sem_arg){#define FLD(f) abuf->fields.fmt_empty.f  const ARGBUF * UNUSED abuf = SEM_ARGBUF ((SEM_ARG) sem_arg);  const IDESC * UNUSED idesc = abuf->idesc;  int cycles = 0;  {    int referenced = 0;    int UNUSED insn_referenced = abuf->written;    INT in_sr = -1;    INT in_dr = -1;    INT out_dr = -1;    cycles += m32r2f_model_m32r2_u_exec (current_cpu, idesc, 0, referenced, in_sr, in_dr, out_dr);  }  return cycles;#undef FLD}static intmodel_m32r2_not (SIM_CPU *current_cpu, void *sem_arg){#define FLD(f) abuf->fields.sfmt_ld_plus.f  const ARGBUF * UNUSED abuf = SEM_ARGBUF ((SEM_ARG) sem_arg);  const IDESC * UNUSED idesc = abuf->idesc;  int cycles = 0;  {    int referenced = 0;    int UNUSED insn_referenced = abuf->written;    INT in_sr = -1;    INT in_dr = -1;    INT out_dr = -1;    in_sr = FLD (in_sr);    out_dr = FLD (out_dr);    referenced |= 1 << 0;    referenced |= 1 << 2;    cycles += m32r2f_model_m32r2_u_exec (current_cpu, idesc, 0, referenced, in_sr, in_dr, out_dr);  }  return cycles;#undef FLD}static intmodel_m32r2_rac_dsi (SIM_CPU *current_cpu, void *sem_arg){#define FLD(f) abuf->fields.sfmt_rac_dsi.f  const ARGBUF * UNUSED abuf = SEM_ARGBUF ((SEM_ARG) sem_arg);  const IDESC * UNUSED idesc = abuf->idesc;  int cycles = 0;  {    int referenced = 0;    int UNUSED insn_referenced = abuf->written;    INT in_src1 = -1;    INT in_src2 = -1;    cycles += m32r2f_model_m32r2_u_mac (current_cpu, idesc, 0, referenced, in_src1, in_src2);  }  return cycles;#undef FLD}static intmodel_m32r2_rach_dsi (SIM_CPU *current_cpu, void *sem_arg){#define FLD(f) abuf->fields.sfmt_rac_dsi.f  const ARGBUF * UNUSED abuf = SEM_ARGBUF ((SEM_ARG) sem_arg);  const IDESC * UNUSED idesc = abuf->idesc;  int cycles = 0;  {    int referenced = 0;    int UNUSED insn_referenced = abuf->written;    INT in_src1 = -1;    INT in_src2 = -1;    cycles += m32r2f_model_m32r2_u_mac (current_cpu, idesc, 0, referenced, in_src1, in_src2);  }  return cycles;#undef FLD}static intmodel_m32r2_rte (SIM_CPU *current_cpu, void *sem_arg){#define FLD(f) abuf->fields.fmt_empty.f  const ARGBUF * UNUSED abuf = SEM_ARGBUF ((SEM_ARG) sem_arg);  const IDESC * UNUSED idesc = abuf->idesc;  int cycles = 0;  {    int referenced = 0;    int UNUSED insn_referenced = abuf->written;    INT in_sr = -1;    INT in_dr = -1;    INT out_dr = -1;    cycles += m32r2f_model_m32r2_u_exec (current_cpu, idesc, 0, referenced, in_sr, in_dr, out_dr);  }  return cycles;#undef FLD}static intmodel_m32r2_seth (SIM_CPU *current_cpu, void *sem_arg){#define FLD(f) abuf->fields.sfmt_seth.f  const ARGBUF * UNUSED abuf = SEM_ARGBUF ((SEM_ARG) sem_arg);  const IDESC * UNUSED idesc = abuf->idesc;  int cycles = 0;  {    int referenced = 0;    int UNUSED insn_referenced = abuf->written;    INT in_sr = -1;    INT in_dr = -1;    INT out_dr = -1;    out_dr = FLD (out_dr);    referenced |= 1 << 2;    cycles += m32r2f_model_m32r2_u_exec (current_cpu, idesc, 0, referenced, in_sr, in_dr, out_dr);  }  return cycles;#undef FLD}static intmodel_m32r2_sll (SIM_CPU *current_cpu, void *sem_arg){#define FLD(f) abuf->fields.sfmt_add.f  const ARGBUF * UNUSED abuf = SEM_ARGBUF ((SEM_ARG) sem_arg);  const IDESC * UNUSED idesc = abuf->idesc;  int cycles = 0;  {    int referenced = 0;    int UNUSED insn_referenced = abuf->written;    INT in_sr = -1;    INT in_dr = -1;    INT out_dr = -1;    in_sr = FLD (in_sr);    in_dr = FLD (in_dr);    out_dr = FLD (out_dr);    referenced |= 1 << 0;    referenced |= 1 << 1;    referenced |= 1 << 2;    cycles += m32r2f_model_m32r2_u_exec (current_cpu, idesc, 0, referenced, in_sr, in_dr, out_dr);  }  return cycles;#undef FLD}static intmodel_m32r2_sll3 (SIM_CPU *current_cpu, void *sem_arg){#define FLD(f) abuf->fields.sfmt_add3.f  const ARGBUF * UNUSED abuf = SEM_ARGBUF ((SEM_ARG) sem_arg);  const IDESC * UNUSED idesc = abuf->idesc;  int cycles = 0;  {    int referenced = 0;    int UNUSED insn_referenced = abuf->written;    INT in_sr = -1;    INT in_dr = -1;    INT out_dr = -1;    in_sr = FLD (in_sr);    out_dr = FLD (out_dr);    referenced |= 1 << 0;    referenced |= 1 << 2;    cycles += m32r2f_model_m32r2_u_exec (current_cpu, idesc, 0, referenced, in_sr, in_dr, out_dr);  }  return cycles;#undef FLD}static intmodel_m32r2_slli (SIM_CPU *current_cpu, void *sem_arg){#define FLD(f) abuf->fields.sfmt_slli.f  const ARGBUF * UNUSED abuf = SEM_ARGBUF ((SEM_ARG) sem_arg);  const IDESC * UNUSED idesc = abuf->idesc;  int cycles = 0;  {    int referenced = 0;    int UNUSED insn_referenced = abuf->written;    INT in_sr = -1;    INT in_dr = -1;    INT out_dr = -1;    in_dr = FLD (in_dr);    out_dr = FLD (out_dr);    referenced |= 1 << 1;    referenced |= 1 << 2;    cycles += m32r2f_model_m32r2_u_exec (current_cpu, idesc, 0, referenced, in_sr, in_dr, out_dr);  }  return cycles;#undef FLD}static intmodel_m32r2_sra (SIM_CPU *current_cpu, void *sem_arg){#define FLD(f) abuf->fields.sfmt_add.f  const ARGBUF * UNUSED abuf = SEM_ARGBUF ((SEM_ARG) sem_arg);  const IDESC * UNUSED idesc = abuf->idesc;  int cycles = 0;  {    int referenced = 0;    int UNUSED insn_referenced = abuf->written;    INT in_sr = -1;    INT in_dr = -1;    INT out_dr = -1;    in_sr = FLD (in_sr);    in_dr = FLD (in_dr);    out_dr = FLD (out_dr);    referenced |= 1 << 0;    referenced |= 1 << 1;    referenced |= 1 << 2;    cycles += m32r2f_model_m32r2_u_exec (current_cpu, idesc, 0, referenced, in_sr, in_dr, out_dr);  }  return cycles;#undef FLD}static intmodel_m32r2_sra3 (SIM_CPU *current_cpu, void *sem_arg){#define FLD(f) abuf->fields.sfmt_add3.f  const ARGBUF * UNUSED abuf = SEM_ARGBUF ((SEM_ARG) sem_arg);  const IDESC * UNUSED idesc = abuf->idesc;  int cycles = 0;  {    int referenced = 0;    int UNUSED insn_referenced = abuf->written;    INT in_sr = -1;    INT in_dr = -1;    INT out_dr = -1;    in_sr = FLD (in_sr);    out_dr = FLD (out_dr);    referenced |= 1 << 0;    referenced |= 1 << 2;    cycles += m32r2f_model_m32r2_u_exec (current_cpu, idesc, 0, referenced, in_sr, in_dr, out_dr);  }  return cycles;#undef FLD}static intmodel_m32r2_srai (SIM_CPU *current_cpu, void *sem_arg){#define FLD(f) abuf->fields.sfmt_slli.f  const ARGBUF * UNUSED abuf = SEM_ARGBUF ((SEM_ARG) sem_arg);  const IDESC * UNUSED idesc = abuf->idesc;  int cycles = 0;  {    int referenced = 0;    int UNUSED insn_referenced = abuf->written;    INT in_sr = -1;    INT in_dr = -1;    INT out_dr = -1;    in_dr = FLD (in_dr);    out_dr = FLD (out_dr);    referenced |= 1 << 1;    referenced |= 1 << 2;    cycles += m32r2f_model_m32r2_u_exec (current_cpu, idesc, 0, referenced, in_sr, in_dr, out_dr);  }  return cycles;#undef FLD}static intmodel_m32r2_srl (SIM_CPU *current_cpu, void *sem_arg){#define FLD(f) abuf->fields.sfmt_add.f  const ARGBUF * UNUSED abuf = SEM_ARGBUF ((SEM_ARG) sem_arg);  const IDESC * UNUSED idesc = abuf->idesc;  int cycles = 0;  {    int referenced = 0;    int UNUSED insn_referenced = abuf->written;    INT in_sr = -1;    INT in_dr = -1;    INT out_dr = -1;    in_sr = FLD (in_sr);    in_dr = FLD (in_dr);    out_dr = FLD (out_dr);    referenced |= 1 << 0;    referenced |= 1 << 1;    referenced |= 1 << 2;    cycles += m32r2f_model_m32r2_u_exec (current_cpu, idesc, 0, referenced, in_sr, in_dr, out_dr);  }  return cycles;#undef FLD}static intmodel_m32r2_srl3 (SIM_CPU *current_cpu, void *sem_arg){#define FLD(f) abuf->fields.sfmt_add3.f  const ARGBUF * UNUSED abuf = SEM_ARGBUF ((SEM_ARG) sem_arg);  const IDESC * UNUSED idesc = abuf->idesc;  int cycles = 0;  {    int referenced = 0;    int UNUSED insn_referenced = abuf->written;    INT in_sr = -1;    INT in_dr = -1;    INT out_dr = -1;    in_sr = FLD (in_sr);    out_dr = FLD (out_dr);    referenced |= 1 << 0;    referenced |= 1 << 2;    cycles += m32r2f_model_m32r2_u_exec (current_cpu, idesc, 0, referenced, in_sr, in_dr, out_dr);  }  return cycles;#undef FLD}static intmodel_m32r2_srli (SIM_CPU *current_cpu, void *sem_arg){#define FLD(f) abuf->fields.sfmt_slli.f  const ARGBUF * UNUSED abuf = SEM_ARGBUF ((SEM_ARG) sem_arg);  const IDESC * UNUSED idesc = abuf->idesc;  int cycles = 0;  {    int referenced = 0;    int UNUSED insn_referenced = abuf->written;    INT in_sr = -1;    INT in_dr = -1;    INT out_dr = -1;    in_dr = FLD (in_dr);    out_dr = FLD (out_dr);    referenced |= 1 << 1;    referenced |= 1 << 2;    cycles += m32r2f_model_m32r2_u_exec (current_cpu, idesc, 0, referenced, in_sr, in_dr, out_dr);  }  return cycles;#undef FLD}static intmodel_m32r2_st (SIM_CPU *current_cpu, void *sem_arg){#define FLD(f) abuf->fields.sfmt_st_plus.f  const ARGBUF * UNUSED abuf = SEM_ARGBUF ((SEM_ARG) sem_arg);  const IDESC * UNUSED idesc = abuf->idesc;  int cycles = 0;  {    int referenced = 0;    int UNUSED insn_referenced = abuf->written;    INT in_src1 = 0;    INT in_src2 = 0;    in_src1 = FLD (in_src1);    in_src2 = FLD (in_src2);    referenced |= 1 << 0;    referenced |= 1 << 1;    cycles += m32r2f_model_m32r2_u_store (current_cpu, idesc, 0, referenced, in_src1, in_src2);  }  return cycles;#undef FLD}static intmodel_m32r2_st_d (SIM_CPU *current_cpu, void *sem_arg){#define FLD(f) abuf->fields.sfmt_st_d.f  const ARGBUF * UNUSED abuf = SEM_ARGBUF ((SEM_ARG) sem_arg);  const IDESC * UNUSED idesc = abuf->idesc;  int cycles = 0;  {    int referenced = 0;    int UNUSED insn_referenced = abuf->written;    INT in_src1 = 0;    INT in_src2 = 0;    in_src1 = FLD (in_src1);    in_src2 = FLD (in_src2);    referenced |= 1 << 0;    referenced |= 1 << 1;    cycles += m32r2f_model_m32r2_u_store (current_cpu, idesc, 0, referenced, in_src1, in_src2);  }  return cycles;#undef FLD}static intmodel_m32r2_stb (SIM_CPU *current_cpu, void *sem_arg){#define FLD(f) abuf->fields.sfmt_st_plus.f  const ARGBUF * UNUSED abuf = SEM_ARGBUF ((SEM_ARG) sem_arg);  const IDESC * UNUSED idesc = abuf->idesc;  int cycles = 0;  {    int referenced = 0;    int UNUSED insn_referenced = abuf->written;    INT in_src1 = 0;    INT in_src2 = 0;    in_src1 = FLD (in_src1);    in_src2 = FLD (in_src2);    referenced |= 1 << 0;    referenced |= 1 << 1;    cycles += m32r2f_model_m32r2_u_store (current_cpu, idesc, 0, referenced, in_src1, in_src2);  }  return cycles;#undef FLD}static intmodel_m32r2_stb_d (SIM_CPU *current_cpu, void *sem_arg){#define FLD(f) abuf->fields.sfmt_st_d.f  const ARGBUF * UNUSED abuf = SEM_ARGBUF ((S

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