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[/] [ao486/] [trunk/] [rtl/] [ao486/] [commands/] [CMD_CMPXCHG.txt] - Rev 2
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<defines>
`define CMD_CMPXCHG #AUTOGEN_NEXT_CMD
</defines>
<decode>
dec_ready_2byte_modregrm && { decoder[7:1], 1'b0 } == 8'hB0
prefix_group_1_lock && `DEC_MODREGRM_IS_MOD_11
`CMD_CMPXCHG
IF(decoder[0] == 1'b0); SET(dec_is_8bit); ENDIF();
SET(consume_modregrm_one);
</decode>
<read>
IF(rd_cmd == `CMD_CMPXCHG);
SET(rd_src_is_reg);
SET(rd_req_eflags);
SET(rd_req_eax);
// dst: reg, src: reg
IF(rd_modregrm_mod == 2'b11);
IF(rd_mutex_busy_modregrm_reg || rd_mutex_busy_modregrm_rm); SET(rd_waiting);
ELSE();
SET(rd_dst_is_rm);
SET(rd_req_rm);
ENDIF();
ENDIF();
// dst: memory, src: reg
IF(rd_modregrm_mod != 2'b11);
IF(rd_mutex_busy_modregrm_reg || rd_mutex_busy_memory); SET(rd_waiting);
ELSE();
SET(rd_dst_is_memory);
SET(rd_req_memory);
SET(read_rmw_virtual);
IF(~(read_for_rd_ready)); SET(rd_waiting); ENDIF();
ENDIF();
ENDIF();
ENDIF();
</read>
<execute_local>
//------------------------------- CMPXCHG
wire e_cmpxchg_eq;
wire [32:0] e_cmpxchg_sub;
wire [31:0] e_cmpxchg_result;
assign e_cmpxchg_eq =
(exe_is_8bit && eax[7:0] == dst[7:0]) ||
(exe_operand_16bit && eax[15:0] == dst[15:0]) ||
(exe_operand_32bit && eax[31:0] == dst[31:0]);
assign e_cmpxchg_sub = eax - dst;
assign e_cmpxchg_result = (e_cmpxchg_eq)? src : e_cmpxchg_sub[31:0];
</execute_local>
<execute>
IF(exe_cmd == `CMD_CMPXCHG);
SET(exe_arith_index, (`ARITH_VALID | `ARITH_SUB));
SET(exe_result, e_cmpxchg_result);
SET(exe_result2, dst);
SET(exe_result_signals, { 4'd0, e_cmpxchg_eq });
SET(exe_cmpxchg_switch);
SET(exe_cmpxchg_switch_carry, e_cmpxchg_sub[32]);
IF(exe_mutex_current[`MUTEX_EAX_BIT]); SET(exe_waiting); ENDIF();
ENDIF();
</execute>
<write>
IF(wr_cmd == `CMD_CMPXCHG);
IF(result_signals[0]); // eq -> write dst
IF(wr_dst_is_memory && ~(write_for_wr_ready)); SET(wr_waiting); ENDIF();
SET(write_regrm, wr_dst_is_rm);
SET(write_rmw_virtual, wr_dst_is_memory);
SAVE(zflag, `TRUE);
SAVE(sflag, `FALSE);
SAVE(pflag, `TRUE);
SAVE(aflag, `FALSE);
SAVE(cflag, `FALSE);
SAVE(oflag, `FALSE);
ELSE();
SAVE(eax, (wr_is_8bit)? { eax[31:8], result2[7:0] } : (wr_operand_16bit)? { eax[31:16], result2[15:0] } : result2);
SAVE(zflag, zflag_result);
SAVE(sflag, sflag_result);
SAVE(pflag, pflag_result);
SAVE(aflag, aflag_arith);
SAVE(cflag, cflag_arith);
SAVE(oflag, oflag_arith);
ENDIF();
ENDIF();
</write>