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[/] [openrisc/] [trunk/] [orpsocv2/] [sw/] [tests/] [or1200/] [sim/] [or1200-ffl1.S] - Rev 530

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/*
        OR1200 Find First/Last '1' Test

        Checks l.ff1 and l.fl1 outputs for every bit position

        Julius Baxter, julius.baxter@orsoc.se
        
*/
//////////////////////////////////////////////////////////////////////
////                                                              ////
//// Copyright (C) 2010 Authors and OPENCORES.ORG                 ////
////                                                              ////
//// This source file may be used and distributed without         ////
//// restriction provided that this copyright statement is not    ////
//// removed from the file and that any derivative work contains  ////
//// the original copyright notice and the associated disclaimer. ////
////                                                              ////
//// This source file is free software; you can redistribute it   ////
//// and/or modify it under the terms of the GNU Lesser General   ////
//// Public License as published by the Free Software Foundation; ////
//// either version 2.1 of the License, or (at your option) any   ////
//// later version.                                               ////
////                                                              ////
//// This source is distributed in the hope that it will be       ////
//// useful, but WITHOUT ANY WARRANTY; without even the implied   ////
//// warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR      ////
//// PURPOSE.  See the GNU Lesser General Public License for more ////
//// details.                                                     ////
////                                                              ////
//// You should have received a copy of the GNU Lesser General    ////
//// Public License along with this source; if not, download it   ////
//// from http://www.opencores.org/lgpl.shtml                     ////
////                                                              ////
//////////////////////////////////////////////////////////////////////
        
        
#include "spr-defs.h"
#include "board.h"
#include "or1200-defines.h"

        
/* =================================================== [ exceptions ] === */
        .section .vectors, "ax"


/* ---[ 0x100: RESET exception ]----------------------------------------- */
        .org 0x100      
        l.movhi r0, 0
        /* Clear status register */
        l.ori r1, r0, SPR_SR_SM
        l.mtspr r0, r1, SPR_SR
        /* Clear timer  */
        l.mtspr r0, r0, SPR_TTMR

        /* Jump to program initialisation code */
        .global _start
        l.movhi r4, hi(_start)
        l.ori r4, r4, lo(_start)
        l.jr    r4
        l.nop

/* ---[ 0x700: Illegal instruction exception ]-------------------------- */
        .org 0x700
#ifndef OR1200_IMPL_ALU_FFL1
        // No problem - instruction not supported
        l.movhi r3, hi(0x8000000d)
        l.ori   r3, r3, lo(0x8000000d)
        l.nop   0x2
        l.ori   r3, r0, 0
#else
        l.ori   r3, r0, 1
#endif
        l.nop   0x1

        
/* =================================================== [ text ] === */
        .section .text

/* =================================================== [ start ] === */ 

        .global _start
_start: 

        /* Instruction cache enable */
        /* Check if IC present and skip enabling otherwise */
        l.mfspr r24,r0,SPR_UPR
        l.andi  r26,r24,SPR_UPR_ICP
        l.sfeq  r26,r0
        l.bf    .L8
        l.nop
        
        /* Disable IC */
        l.mfspr r6,r0,SPR_SR
        l.addi  r5,r0,-1
        l.xori  r5,r5,SPR_SR_ICE
        l.and   r5,r6,r5
        l.mtspr r0,r5,SPR_SR
        
        /* Establish cache block size
        If BS=0, 16;
        If BS=1, 32;
        r14 contain block size
        */
        l.mfspr r24,r0,SPR_ICCFGR
        l.andi  r26,r24,SPR_ICCFGR_CBS
        l.srli  r28,r26,7
        l.ori   r30,r0,16
        l.sll   r14,r30,r28
        
        /* Establish number of cache sets
        r16 contains number of cache sets
        r28 contains log(# of cache sets)
        */
        l.andi  r26,r24,SPR_ICCFGR_NCS
        l.srli  r28,r26,3
        l.ori   r30,r0,1
        l.sll   r16,r30,r28
        
        /* Invalidate IC */
        l.addi  r6,r0,0
        l.sll   r5,r14,r28
        
.L7:
        l.mtspr r0,r6,SPR_ICBIR
        l.sfne  r6,r5
        l.bf    .L7
        l.add   r6,r6,r14
        
        /* Enable IC */
        l.mfspr r6,r0,SPR_SR
        l.ori   r6,r6,SPR_SR_ICE
        l.mtspr r0,r6,SPR_SR
        l.nop
        l.nop
        l.nop
        l.nop
        l.nop
        l.nop
        l.nop
        l.nop

.L8:
        /* Data cache enable */
        /* Check if DC present and skip enabling otherwise */
        l.mfspr r24,r0,SPR_UPR
        l.andi  r26,r24,SPR_UPR_DCP
        l.sfeq  r26,r0
        l.bf    .L10
        l.nop
        /* Disable DC */
        l.mfspr r6,r0,SPR_SR
        l.addi  r5,r0,-1
        l.xori  r5,r5,SPR_SR_DCE
        l.and   r5,r6,r5
        l.mtspr r0,r5,SPR_SR
        /* Establish cache block size
           If BS=0, 16;
           If BS=1, 32;
           r14 contain block size
        */
        l.mfspr r24,r0,SPR_DCCFGR
        l.andi  r26,r24,SPR_DCCFGR_CBS
        l.srli  r28,r26,7
        l.ori   r30,r0,16
        l.sll   r14,r30,r28
        /* Establish number of cache sets
           r16 contains number of cache sets
           r28 contains log(# of cache sets)
        */
        l.andi  r26,r24,SPR_DCCFGR_NCS
        l.srli  r28,r26,3
        l.ori   r30,r0,1
        l.sll   r16,r30,r28
        /* Invalidate DC */
        l.addi  r6,r0,0
        l.sll   r5,r14,r28
.L9:
        l.mtspr r0,r6,SPR_DCBIR
        l.sfne  r6,r5
        l.bf    .L9
        l.add   r6,r6,r14
        /* Enable DC */
        l.mfspr r6,r0,SPR_SR
        l.ori   r6,r6,SPR_SR_DCE
        l.mtspr r0,r6,SPR_SR
.L10:
        // Kick off test
        l.jal   _main
        l.nop
        


/* =================================================== [ main ] === */
        
        .global _main   
_main:
        l.movhi r3, 0
        l.movhi r4, 0 // Bit we're checking works
        l.movhi r5, 0
        l.ori   r6, r0, 32
        l.movhi r7, 0 // Register we'll put a value in to check with l.ff1

#define REPORT(reg)     l.or r3, reg, r0 ; \
                        l.nop 0x2
        
        
ff1_loop:       
        // Set a loop going, creating a register with a '1' in a known position
        // and checking the output of the l.ff1
        l.ori   r7, r0, 1       // Put  1 in bit 0
        l.sll   r7, r7, r4      // Shift '1' by r4
        REPORT(r7)              // Report value
        l.ff1   r5, r7          // Do Find First '1' op
        l.fl1   r8, r7          // Do Find Last '1' op
        REPORT(r5)              // Report value
        REPORT(r8)              // Report value
        l.addi  r4, r4, 1       // Increment bit we're checking (will also be
                                // result from l.ff1)
        REPORT(r4)              // Report value
        l.sfne  r5, r4          // r5 should = r4
        l.bf    ff1_error
        l.sfne  r8, r4          // r8 should = r4
        l.bf    fl1_error
        l.sfne  r6, r4          // Check if loop is finished
        l.bf    ff1_loop        // Keep checking
        l.nop
        l.j     ffl1_test2      // All OK, next test
        l.nop   

ffl1_test2:
        // Try 3 values - all '0', all '1' and a block of values in between
        l.movhi r4, 0
        l.movhi r5, 0xffff
        l.ori   r5, r5,  0xffff
        l.movhi r6, 0x00ff
        l.ori   r6, r6,  0xff00
        // Test '0'
        REPORT(r4)
        l.ff1   r7, r4
        l.fl1   r8, r4
        REPORT(r7)
        REPORT(r8)
        l.sfnei r7, 0
        l.bf    ff1_error
        l.sfnei r8, 0
        l.bf    fl1_error

        // Test '0xffffffff'
        REPORT(r5)
        l.ff1   r7, r5
        l.fl1   r8, r5
        REPORT(r7)
        REPORT(r8)
        l.sfnei r7, 1
        l.bf    ff1_error
        l.sfnei r8, 32
        l.bf    fl1_error

        // Test '0x00ffff00'
        REPORT(r6)
        l.ff1   r7, r6
        l.fl1   r8, r6
        REPORT(r7)
        REPORT(r8)
        l.sfnei r7, 9
        l.bf    ff1_error
        l.sfnei r8, 24
        l.bf    fl1_error
        l.nop
        l.j ffl1_ok     // Tests OK

ff1_error:
        l.movhi r3, hi(0xbaaadff1)
        l.ori    r3, r3, lo(0xbaaadff1)
        l.nop   0x1


fl1_error:
        l.movhi r3, hi(0xbaaadf11)
        l.ori   r3, r3, lo(0xbaaadf11)
        l.nop   0x1
        
        
ffl1_ok:
        
        l.movhi r3, hi(0x8000000d)
        l.ori   r3, r3, lo(0x8000000d)
        l.nop   0x2 /* Report */
        l.ori   r3, r0, 0 /* Return 0 */
        l.nop   0x1
        

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