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📄 mpeg_kc.uc

📁 H.264完整的C语言代码和DCT的代码
💻 UC
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    U6: OP: SPWRITE LINE:154 SP_BASE:100 SP_STAGE:-1:0:0 STAGE:-1, // D:\working\im_apps\h264\mpeg_kc.i:154
    B:23 = IN:1 STAGE:-1 LINE:154 VAR: tmp#17 DATATYPE: UNDEFINED,
    RF:1:IN:0:REG:1 = B:23 STAGE:-1 VAR: tmp#17 DATATYPE: UNDEFINED,
    B:7 = RF:17:OUT:0:REG:0 VAR: hw_const#0 DATATYPE: ANYINT,
    U6:IN:2 = B:7 VAR: hw_const#0 DATATYPE: ANYINT,
    B:6 = RF:1:OUT:0:REG:1 VAR: tmp#16 DATATYPE: UNDEFINED,
    U6:IN:1 = B:6 VAR: tmp#16 DATATYPE: UNDEFINED,
    B:30 = U1:OUT:0 INSTR_LOG:2|minus_one#||0 VAR: minus_one DATATYPE: INT,
    RF:3:IN:0:REG:1 = B:30 STAGE:-1 VAR: minus_one DATATYPE: INT,
    RF:7:IN:0:REG:1 = B:30 STAGE:-1 VAR: minus_one DATATYPE: INT,
    B:31 = U2:OUT:0 INSTR_LOG:2|three#||0 VAR: three DATATYPE: INT,
    RF:5:IN:0:REG:1 = B:31 STAGE:-1 VAR: three DATATYPE: INT,
    // OUT:INOUT_1: DATA_IN => ( tmp#17 == UNITRF_0_0[1] )
    //  IN:SP_SCHED_WRITE_0: ( K ) = SPWRITE( hw_const#0 == SPIDXRF_1[0], tmp#16 == UNITRF_0_0[1] )
    // OUT:SP_SCHED_WRITE_0: SPWRITE => ( K == SP_SCHED_RF_0[96] )
    // OUT:ADDER_1: ISUB32 => ( minus_one == UNITRF_0_2[1], minus_one == UNITRF_1_1[1] )
    //  IN:MC_0: ( tmp#21 ) = CHK_UCR( i == UCRF_0[3] )
    // OUT:MC_0: CHK_UCR => ( tmp#21 == UCONDRF_0[1] )
    // OUT:ADDER_2: IADD32 => ( three == UNITRF_0_4[1] )
    DEAD_REGS: {  };
instr: 17
    MC: OP: UC_DATA_IN LINE:96 IMM:0x76546420 UCRF_WR:1 STAGES:-1,
    U6: OP: SPWRITE LINE:154 SP_BASE:101 SP_STAGE:-1:0:0 STAGE:-1, // D:\working\im_apps\h264\mpeg_kc.i:154
    U2: OP: IADD32 LINE:134 STAGE:-1, // D:\working\im_apps\h264\mpeg_kc.i:134
    U5: OP: SELECT LINE:-1 STAGE:-1, // D:\working\im_apps\h264\mpeg_kc.i:-1
    B:23 = IN:1 STAGE:-1 LINE:154 VAR: tmp#18 DATATYPE: UNDEFINED,
    RF:1:IN:0:REG:1 = B:23 STAGE:-1 VAR: tmp#18 DATATYPE: UNDEFINED,
    B:7 = RF:17:OUT:0:REG:0 VAR: hw_const#0 DATATYPE: ANYINT,
    U6:IN:2 = B:7 VAR: hw_const#0 DATATYPE: ANYINT,
    B:6 = RF:1:OUT:0:REG:1 VAR: tmp#17 DATATYPE: UNDEFINED,
    U6:IN:1 = B:6 VAR: tmp#17 DATATYPE: UNDEFINED,
    B:17 = RF:9:OUT:0:REG:3 VAR: four DATATYPE: INT,
    U2:IN:1 = B:17 VAR: four DATATYPE: INT,
    B:16 = RF:5:OUT:0:REG:1 VAR: three DATATYPE: INT,
    U2:IN:0 = B:16 VAR: three DATATYPE: INT,
    B:39 = RF:18:OUT:2:REG:0 VAR: hw_const#0 DATATYPE: ANYINT,
    U5:IN:2 = B:39 VAR: hw_const#0 DATATYPE: ANYINT,
    B:11 = RF:14:OUT:0:REG:0 VAR: cluster#id DATATYPE: ANYINT,
    U5:IN:1 = B:11 VAR: cluster#id DATATYPE: ANYINT,
    B:28 = U5:OUT:0 INSTR_LOG:1|cluster#id#||0 VAR: cluster#id DATATYPE: ANYINT,
    RF:3:IN:0:REG:2 = B:28 STAGE:-1 VAR: cluster#id DATATYPE: ANYINT,
    B:32 = U3:OUT:0 INSTR_LOG:4|sixteen#||0 VAR: sixteen DATATYPE: INT,
    RF:8:IN:0:REG:1 = B:32 STAGE:-1 VAR: sixteen DATATYPE: INT,
    RF:7:IN:0:REG:4 = B:32 STAGE:-1 VAR: sixteen DATATYPE: INT,
    // OUT:INOUT_1: DATA_IN => ( tmp#18 == UNITRF_0_0[1] )
    //  IN:SP_SCHED_WRITE_0: ( K ) = SPWRITE( hw_const#0 == SPIDXRF_1[0], tmp#17 == UNITRF_0_0[1] )
    // OUT:SP_SCHED_WRITE_0: SPWRITE => ( K == SP_SCHED_RF_0[96] )
    //  IN:ADDER_2: ( seven ) = IADD32( four == UNITRF_1_3[3], three == UNITRF_0_4[1] )
    //  IN:DIVIDER_0: ( cluster#id ) = SELECT( hw_const#0 == CCRF_0[0], cluster#id == UNITRF_CID_0[0] )
    // OUT:DIVIDER_0: SELECT => ( cluster#id == UNITRF_0_2[2] )
    // OUT:MC_0: UC_DATA_IN => ( perm_A == UCRF_0[1] )
    // OUT:MULTIPLIER_0: IMUL32 => ( sixteen == UNITRF_1_2[1], sixteen == UNITRF_1_1[4] )
    DEAD_REGS: {  };
instr: 18
    MC: OP: NLOOP LINE:193 UCONDRF_RD:1 BR_OFF:13 LAST_STAGE:0,
    U6: OP: SPWRITE LINE:154 SP_BASE:102 SP_STAGE:-1:0:0 STAGE:-1, // D:\working\im_apps\h264\mpeg_kc.i:154
    U1: OP: ISUB32 LINE:90 STAGE:-1, // D:\working\im_apps\h264\mpeg_kc.i:90
    U0: OP: ILT32 LINE:99 STAGE:-1, // D:\working\im_apps\h264\mpeg_kc.i:99
    B:23 = IN:1 STAGE:-1 LINE:154 VAR: tmp#19 DATATYPE: UNDEFINED,
    RF:1:IN:0:REG:1 = B:23 STAGE:-1 VAR: tmp#19 DATATYPE: UNDEFINED,
    B:7 = RF:17:OUT:0:REG:0 VAR: hw_const#0 DATATYPE: ANYINT,
    U6:IN:2 = B:7 VAR: hw_const#0 DATATYPE: ANYINT,
    B:6 = RF:1:OUT:0:REG:1 VAR: tmp#18 DATATYPE: UNDEFINED,
    U6:IN:1 = B:6 VAR: tmp#18 DATATYPE: UNDEFINED,
    B:14 = RF:4:OUT:0:REG:0 VAR: hw_const#0 DATATYPE: ANYINT,
    U1:IN:0 = B:14 VAR: hw_const#0 DATATYPE: ANYINT,
    B:15 = RF:8:OUT:0:REG:1 VAR: sixteen DATATYPE: INT,
    U1:IN:1 = B:15 VAR: sixteen DATATYPE: INT,
    B:31 = U2:OUT:0 INSTR_LOG:2|seven#||0 VAR: seven DATATYPE: INT,
    RF:9:IN:0:REG:4 = B:31 STAGE:-1 VAR: seven DATATYPE: INT,
    RF:8:IN:0:REG:6 = B:31 STAGE:-1 VAR: seven DATATYPE: INT,
    RF:7:IN:0:REG:5 = B:31 STAGE:-1 VAR: seven DATATYPE: INT,
    B:12 = RF:3:OUT:0:REG:2 VAR: cluster#id DATATYPE: ANYINT,
    U0:IN:0 = B:12 VAR: cluster#id DATATYPE: ANYINT,
    B:13 = RF:7:OUT:0:REG:2 VAR: four DATATYPE: INT,
    U0:IN:1 = B:13 VAR: four DATATYPE: INT,
    //  IN:MC_0: ( ) = NLOOP( tmp#21 == UCONDRF_0[1] )
    // OUT:INOUT_1: DATA_IN => ( tmp#19 == UNITRF_0_0[1] )
    //  IN:SP_SCHED_WRITE_0: ( K ) = SPWRITE( hw_const#0 == SPIDXRF_1[0], tmp#18 == UNITRF_0_0[1] )
    // OUT:SP_SCHED_WRITE_0: SPWRITE => ( K == SP_SCHED_RF_0[96] )
    //  IN:ADDER_1: ( minus_sixteen ) = ISUB32( hw_const#0 == UNITRF_0_3[0], sixteen == UNITRF_1_2[1] )
    // OUT:ADDER_2: IADD32 => ( seven == UNITRF_1_3[4], seven == UNITRF_1_2[6], seven == UNITRF_1_1[5] )
    //  IN:ADDER_0: ( low ) = ILT32( cluster#id == UNITRF_0_2[2], four == UNITRF_1_1[2] )
    DEAD_REGS: {  };
instr: 19
    MC: OP: UC_DATA_IN LINE:97 IMM:0x64203210 UCRF_WR:2 STAGES:-1,
    U6: OP: SPWRITE LINE:154 SP_BASE:103 SP_STAGE:-1:0:0 STAGE:-1, // D:\working\im_apps\h264\mpeg_kc.i:154
    U7: OP: NSELECT LINE:186 STAGE:-1, // D:\working\im_apps\h264\mpeg_kc.i:186
    B:7 = RF:17:OUT:0:REG:0 VAR: hw_const#0 DATATYPE: ANYINT,
    U6:IN:2 = B:7 VAR: hw_const#0 DATATYPE: ANYINT,
    B:6 = RF:1:OUT:0:REG:1 VAR: tmp#19 DATATYPE: UNDEFINED,
    U6:IN:1 = B:6 VAR: tmp#19 DATATYPE: UNDEFINED,
    B:30 = U1:OUT:0 INSTR_LOG:2|minus_sixteen#||0 VAR: minus_sixteen DATATYPE: INT,
    RF:7:IN:0:REG:2 = B:30 STAGE:-1 VAR: minus_sixteen DATATYPE: INT,
    RF:8:IN:0:REG:3 = B:30 STAGE:-1 VAR: minus_sixteen DATATYPE: INT,
    B:45 = U0:OUT:0 INSTR_LOG:2|low#||0 VAR: low DATATYPE: CC,
    RF:18:IN:0:REG:1 = B:45 STAGE:-1 VAR: low DATATYPE: CC,
    B:38 = RF:18:OUT:1:REG:0 VAR: hw_const#0 DATATYPE: ANYINT,
    U7:IN:2 = B:38 VAR: hw_const#0 DATATYPE: ANYINT,
    B:8 = RF:2:OUT:0:REG:0 VAR: hw_const#0 DATATYPE: ANYINT,
    U7:IN:0 = B:8 VAR: hw_const#0 DATATYPE: ANYINT,
    B:27 = U7:OUT:0 INSTR_LOG:1|quant_idx#||0 VAR: quant_idx DATATYPE: INT,
    RF:5:IN:0:REG:3 = B:27 STAGE:-1 VAR: quant_idx DATATYPE: INT,
    RF:17:IN:0:REG:2 = B:27 STAGE:-1 VAR: quant_idx DATATYPE: INT,
    RF:16:IN:0:REG:2 = B:27 STAGE:-1 VAR: quant_idx DATATYPE: INT,
    //  IN:SP_SCHED_WRITE_0: ( K ) = SPWRITE( hw_const#0 == SPIDXRF_1[0], tmp#19 == UNITRF_0_0[1] )
    // OUT:SP_SCHED_WRITE_0: SPWRITE => ( K == SP_SCHED_RF_0[96] )
    // OUT:ADDER_1: ISUB32 => ( minus_sixteen == UNITRF_1_1[2], minus_sixteen == UNITRF_1_2[3] )
    // OUT:ADDER_0: ILT32 => ( low == CCRF_0[1] )
    // OUT:MC_0: UC_DATA_IN => ( perm_B == UCRF_0[2] )
    //  IN:COMM_SCHED_0: ( quant_idx ) = NSELECT( hw_const#0 == CCRF_0[0], hw_const#0 == UNITRF_0_1[0] )
    // OUT:COMM_SCHED_0: NSELECT => ( quant_idx == UNITRF_0_4[3], quant_idx == SPIDXRF_1[2], quant_idx == SPIDXRF_0[2] )
    DEAD_REGS: {  };
instr: 20
    MC: OP: NONE LINE:-1,
    U4: OP: NSELECT LINE:-1 STAGE:-1, // D:\working\im_apps\h264\mpeg_kc.i:-1
    U0: OP: SHIFT32 LINE:100 STAGE:-1, // D:\working\im_apps\h264\mpeg_kc.i:100
    U8: OP: INIT_COSTATE LINE:73 STR_ID:4 STAGE:-1, // D:\working\im_apps\h264\mpeg_kc.i:73
    U2: OP: SELECT LINE:-1 STAGE:-1, // D:\working\im_apps\h264\mpeg_kc.i:-1
    U5: OP: SELECT LINE:-1 STAGE:-1, // D:\working\im_apps\h264\mpeg_kc.i:-1
    B:44 = RF:18:OUT:7:REG:0 VAR: hw_const#0 DATATYPE: ANYINT,
    U4:IN:2 = B:44 VAR: hw_const#0 DATATYPE: ANYINT,
    B:20 = RF:11:OUT:0:REG:0 VAR: hw_const#0 DATATYPE: ANYINT,
    U4:IN:0 = B:20 VAR: hw_const#0 DATATYPE: ANYINT,
    B:35 = U4:OUT:1 INSTR_LOG:1|const#0#||1 VAR: const#0 DATATYPE: ANYINT,
    RF:8:IN:0:REG:1 = B:35 STAGE:-1 VAR: const#0 DATATYPE: ANYINT,
    RF:6:IN:0:REG:1 = B:35 STAGE:-1 VAR: const#0 DATATYPE: ANYINT,
    RF:9:IN:0:REG:1 = B:35 STAGE:-1 VAR: const#0 DATATYPE: ANYINT,
    RF:7:IN:0:REG:4 = B:35 STAGE:-1 VAR: const#0 DATATYPE: ANYINT,
    B:23 = IN:1 STAGE:-1 LINE:183 VAR: quant_scale DATATYPE: UHALF2,
    RF:12:IN:0:REG:11 = B:23 STAGE:-1 VAR: quant_scale DATATYPE: UHALF2,
    B:12 = RF:3:OUT:0:REG:1 VAR: minus_one DATATYPE: INT,
    U0:IN:0 = B:12 VAR: minus_one DATATYPE: INT,
    B:13 = RF:7:OUT:0:REG:4 VAR: sixteen DATATYPE: INT,
    U0:IN:1 = B:13 VAR: sixteen DATATYPE: INT,
    B:45 = U0:OUT:0 INSTR_LOG:1|Y_combine#||0 VAR: Y_combine DATATYPE: CC,
    RF:18:IN:0:REG:2 = B:45 STAGE:-1 VAR: Y_combine DATATYPE: CC,
    B:49 = U8:OUT:0 INSTR_LOG:1|jb_out#4#||0 VAR: jb_out#4 DATATYPE: UNDEFINED,
    RF:19:IN:0:REG:1 = B:49 STAGE:-1 VAR: jb_out#4 DATATYPE: UNDEFINED,
    B:42 = RF:18:OUT:5:REG:0 VAR: hw_const#0 DATATYPE: ANYINT,
    U2:IN:2 = B:42 VAR: hw_const#0 DATATYPE: ANYINT,
    B:17 = RF:9:OUT:0:REG:0 VAR: hw_const#1 DATATYPE: ANYINT,
    U2:IN:1 = B:17 VAR: hw_const#1 DATATYPE: ANYINT,
    B:31 = U2:OUT:0 INSTR_LOG:1|const#1#||0 VAR: const#1 DATATYPE: ANYINT,
    RF:3:IN:0:REG:1 = B:31 STAGE:-1 VAR: const#1 DATATYPE: ANYINT,
    RF:14:IN:0:REG:1 = B:31 STAGE:-1 VAR: const#1 DATATYPE: ANYINT,
    RF:2:IN:0:REG:1 = B:31 STAGE:-1 VAR: const#1 DATATYPE: ANYINT,
    B:39 = RF:18:OUT:2:REG:0 VAR: hw_const#0 DATATYPE: ANYINT,
    U5:IN:2 = B:39 VAR: hw_const#0 DATATYPE: ANYINT,
    B:11 = RF:14:OUT:0:REG:0 VAR: cluster#id DATATYPE: ANYINT,
    U5:IN:1 = B:11 VAR: cluster#id DATATYPE: ANYINT,
    B:28 = U5:OUT:0 INSTR_LOG:1|cluster#id#||0 VAR: cluster#id DATATYPE: ANYINT,
    RF:5:IN:0:REG:1 = B:28 STAGE:-1 VAR: cluster#id DATATYPE: ANYINT,
    RF:4:IN:0:REG:1 = B:28 STAGE:-1 VAR: cluster#id DATATYPE: ANYINT,
    RF:16:IN:0:REG:1 = B:28 STAGE:-1 VAR: cluster#id DATATYPE: ANYINT,
    RF:17:IN:0:REG:1 = B:28 STAGE:-1 VAR: cluster#id DATATYPE: ANYINT,
    //  IN:MULTIPLIER_1: ( const#0 ) = NSELECT( hw_const#0 == CCRF_0[0], hw_const#0 == MULRF_0_1[0] )
    // OUT:MULTIPLIER_1: NSELECT => ( const#0 == UNITRF_1_2[1], const#0 == UNITRF_1_0[1], const#0 == UNITRF_1_3[1], const#0 == UNITRF_1_1[4] )
    // OUT:INOUT_1: DATA_IN => ( quant_scale == MULRF_1_0[11] )
    // OUT:SP_SCHED_WRITE_0: SPWRITE => ( K == SP_SCHED_RF_0[96] )
    //  IN:ADDER_0: ( Y_combine ) = SHIFT32( minus_one == UNITRF_0_2[1], sixteen == UNITRF_1_1[4] )
    // OUT:ADDER_0: SHIFT32 => ( Y_combine == CCRF_0[2] )
    // OUT:JUKEBOX_SCHED_0: INIT_COSTATE => ( jb_out#4 == JBRF_0[1] )
    //  IN:ADDER_2: ( const#1 ) = SELECT( hw_const#0 == CCRF_0[0], hw_const#1 == UNITRF_1_3[0] )
    // OUT:ADDER_2: SELECT => ( const#1 == UNITRF_0_2[1], const#1 == UNITRF_CID_0[1], const#1 == UNITRF_0_1[1] )
    //  IN:DIVIDER_0: ( cluster#id ) = SELECT( hw_const#0 == CCRF_0[0], cluster#id == UNITRF_CID_0[0] )
    // OUT:DIVIDER_0: SELECT => ( cluster#id == UNITRF_0_4[1], cluster#id == UNITRF_0_3[1], cluster#id == SPIDXRF_0[1], cluster#id == SPIDXRF_1[1] )
    DEAD_REGS: {  };
instr: 21
    MC: OP: NONE LINE:-1,
    B:23 = IN:1 STAGE:-1 LINE:194 VAR: utmp DATATYPE: UHALF2,
    RF:10:IN:0:REG:2 = B:23 STAGE:-1 VAR: utmp DATATYPE: UHALF2,
    // OUT:INOUT_1: DATA_IN => ( utmp == MULRF_0_0[2] )
    DEAD_REGS: {  };
instr: 22
    MC: OP: NONE LINE:-1,
    U3: OP: UMUL16 LINE:198 STAGE:-1, // D:\working\im_apps\h264\mpeg_kc.i:198
    B:19 = RF:12:OUT:0:REG:11 VAR: quant_scale DATATYPE: UHALF2,
    U3:IN:1 = B:19 VAR: quant_scale DATATYPE: UHALF2,
    B:18 = RF:10:OUT:0:REG:2 VAR: utmp DATATYPE: UHALF2,
    U3:IN:0 = B:18 VAR: utmp DATATYPE: UHALF2,
    //  IN:MULTIPLIER_0: ( tmp#23, tmp#24 ) = UMUL16( quant_scale == MULRF_1_0[11], utmp == MULRF_0_0[2] )
    DEAD_REGS: {  };
instr: 23
    MC: OP: NONE LINE:-1,
    DEAD_REGS: {  };
instr: 24
    MC: OP: NONE LINE:-1,
    U6: OP: SPREAD LINE:201 SP_BASE:96 STAGE:-1, // D:\working\im_apps\h264\mpeg_kc.i:201
    B:5 = RF:16:OUT:0:REG:2 VAR: quant_idx DATATYPE: INT,
    U6:IN:0 = B:5 VAR: quant_idx DATATYPE: INT,
    //  IN:SP_SCHED_READ_0: ( tmp#25 ) = SPREAD( quant_idx == SPIDXRF_0[2], K == SP_SCHED_RF_0[96] )
    DEAD_REGS: {  };
instr: 25
    MC: OP: NONE LINE:-1,
    B:33 = U3:OUT:1 INSTR_LOG:4|tmp#23#||1 VAR: tmp#23 DATATYPE: UHALF2,
    RF:3:IN:0:REG:2 = B:33 STAGE:-1 VAR: tmp#23 DATATYPE: UHALF2,
    B:26 = U6:OUT:0 INSTR_LOG:2|tmp#25#||0 VAR: tmp#25 DATATYPE: HALF2,
    RF:4:IN:0:REG:2 = B:26 STAGE:-1 VAR: tmp#25 DATATYPE: HALF2,
    // OUT:MULTIPLIER_0: UMUL16 => ( tmp#23 == UNITRF_0_2[2] )
    // OUT:SP_SCHED_READ_0: SPREAD => ( tmp#25 == UNITRF_0_3[2] )
    DEAD_REGS: {  };
instr: 26
    MC: OP: NONE LINE:-1,
    U0: OP: SHIFT16 LINE:198 STAGE:-1, // D:\working\im_apps\h264\mpeg_kc.i:198
    U1: OP: SHIFT16 LINE:201 STAGE:-1, // D:\working\im_apps\h264\mpeg_kc.i:201
    B:12 = RF:3:OUT:0:REG:2 VAR: tmp#23 DATATYPE: UHALF2,
    U0:IN:0 = B:12 VAR: tmp#23 DATATYPE: UHALF2,
    B:13 = RF:7:OUT:0:REG:0 VAR: hw_const#1 DATATYPE: ANYINT,
    U0:IN:1 = B:13 VAR: hw_const#1 DATATYPE: ANYINT,
    B:29 = U0:OUT:0 INSTR_LOG:1|utmp#||0 VAR: utmp DATATYPE: UHALF2,
    RF:11:IN:0:REG:1 = B:29 STAGE:-1 VAR: utmp DATATYPE: UHALF2,
    B:14 = RF:4:OUT:0:REG:2 VAR: tmp#25 DATATYPE: HALF2,
    U1:IN:0 = B:14 VAR: tmp#25 DATATYPE: HALF2,
    B:15 = RF:8:OUT:0:REG:0 VAR: hw_const#1 DATATYPE: ANYINT,
    U1:IN:1 = B:15 VAR: hw_const#1 DATATYPE: ANYINT,
    B:30 = U1:OUT:0 INSTR_LOG:1|tmp#26#||0 VAR: tmp#26 DATATYPE: UHALF2,
    RF:13:IN:0:REG:10 = B:30 STAGE:-1 VAR: tmp#26 DATATYPE: UHALF2,
    //  IN:ADDER_0: ( utmp ) = SHIFT16( tmp#23 == UNITRF_0_2[2], hw_const#1 == UNITRF_1_1[0] )
    // OUT:ADDER_0: SHIFT16 => ( utmp == MULRF_0_1[1] )
    //  IN:ADDER_1: ( tmp#26 ) = SHIFT16( tmp#25 == UNITRF_0_3[2], hw_const#1 == UNITRF_1_2[0] )
    // OUT:ADDER_1: SHIFT16 => ( tmp#26 == MULRF_1_1[10] )
    DEAD_REGS: {  };

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