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Line 36... |
#include "stats.h"
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#include "stats.h"
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#include "except.h"
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#include "except.h"
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#include "dumpverilog.h"
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#include "dumpverilog.h"
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#include "opcode/or32.h"
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#include "opcode/or32.h"
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extern struct mem_entry mem[MEMORY_LEN];
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extern char rcsrev[];
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extern char rcsrev[];
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extern char *disassembled;
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extern char *disassembled;
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void dumpverilog(char *verilog_modname, unsigned int from, unsigned int to)
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void dumpverilog(char *verilog_modname, unsigned int from, unsigned int to)
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{
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{
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unsigned int i, done = 0;
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unsigned int i, done = 0;
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struct label_entry *tmp;
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struct label_entry *tmp;
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char dis[DISWIDTH + 100];
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char dis[DISWIDTH + 100];
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int breakpoint = 0;
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struct mem_entry *entry;
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printf("// This file was generated by or1ksim %s\n", rcsrev);
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printf("// This file was generated by or1ksim %s\n", rcsrev);
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printf(OR1K_MEM_VERILOG_HEADER(verilog_modname, from/DWQ, to/DWQ, (DISWIDTH*8)));
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printf(OR1K_MEM_VERILOG_HEADER(verilog_modname, from/DWQ, to/DWQ, (DISWIDTH*8)));
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for(i = from; i < to && i < (MEMORY_START + MEMORY_LEN); i++)
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for(i = from; i < to; i++)
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{
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{
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int bp;
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unsigned int _insn = evalsim_mem32 (i);
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unsigned int _insn = evalsim_mem32 (i, &bp);
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int index = insn_decode(_insn);
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int index = insn_decode(_insn);
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if (index >= 0)
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if (index >= 0)
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{
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{
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tmp = mem[i].label;
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if (verify_memoryarea(i) && cur_area->getentry && (entry = cur_area->getentry(i)))
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tmp = entry->label;
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for(; tmp; tmp = tmp->next)
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for(; tmp; tmp = tmp->next)
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printf("\n//\t%s%s", tmp->name, LABELEND_CHAR);
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printf("\n//\t%s%s", tmp->name, LABELEND_CHAR);
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printf("\n\tmem['h%x] = %d'h%.2x%.2x", i/DWQ, DW, mem[i].data, mem[i+1].data);
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printf("\n\tmem['h%x] = %d'h%.2x%.2x", i/DWQ, DW, evalsim_mem8(i), evalsim_mem8(i + 1));
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printf("%.2x%.2x;", mem[i+2].data, mem[i+3].data);
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printf("%.2x%.2x;", evalsim_mem8(i + 2), evalsim_mem8(i + 3));
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disassemble_insn (_insn);
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disassemble_insn (_insn);
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strcpy (dis, disassembled);
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strcpy (dis, disassembled);
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if (strlen(dis) < DISWIDTH)
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if (strlen(dis) < DISWIDTH)
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memset(dis + strlen(dis), ' ', DISWIDTH);
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memset(dis + strlen(dis), ' ', DISWIDTH);
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dis[DISWIDTH] = '\0';
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dis[DISWIDTH] = '\0';
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printf("\n\tdis['h%x] = {\"%s\"};", i/DWQ, dis);
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printf("\n\tdis['h%x] = {\"%s\"};", i/DWQ, dis);
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dis[0] = '\0';
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dis[0] = '\0';
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i += insn_len(index) - 1;
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i += insn_len(index) - 1;
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}
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} else {
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else
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{
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if (i % 64 == 0)
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if (i % 64 == 0)
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printf("\n");
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printf("\n");
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printf("\n\tmem['h%x] = 'h%.2x;", i/DWQ, (unsigned char)mem[i].data);
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printf("\n\tmem['h%x] = 'h%.2x;", i/DWQ, evalsim_mem8(i));
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}
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}
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done = 1;
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done = 1;
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}
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}
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if (done)
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if (done)
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Line 98... |
Line 94... |
{
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{
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if (i % 8 == 0)
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if (i % 8 == 0)
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printf("\n%.8x: ", i);
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printf("\n%.8x: ", i);
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/* don't print ascii chars below 0x20. */
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/* don't print ascii chars below 0x20. */
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if (evalsim_mem32(i,&breakpoint) < 0x20)
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if (evalsim_mem32(i) < 0x20)
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printf("0x%.2x ", (unsigned char)evalsim_mem32(i,&breakpoint));
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printf("0x%.2x ", (unsigned char)evalsim_mem32(i));
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else
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else
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printf("0x%.2x'%c' ", (unsigned char)evalsim_mem32(i,&breakpoint), (unsigned char)evalsim_mem32(i,&breakpoint));
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printf("0x%.2x'%c' ", (unsigned char)evalsim_mem32(i), (unsigned char)evalsim_mem32(i));
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}
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}
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printf(OR1K_MEM_VERILOG_FOOTER);
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printf(OR1K_MEM_VERILOG_FOOTER);
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}
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}
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void dumphex(unsigned int from, unsigned int to)
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void dumphex(unsigned int from, unsigned int to)
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{
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{
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unsigned int i, done = 0;
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unsigned int i, done = 0;
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int breakpoint = 0;
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for(i = from; i < to && i < (MEMORY_START + MEMORY_LEN); i++) {
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for(i = from; i < to; i++) {
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unsigned int _insn = evalsim_mem32 (i, &breakpoint);
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unsigned int _insn = evalsim_mem32 (i);
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int index = insn_decode(_insn);
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int index = insn_decode(_insn);
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if (index >= 0)
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if (index >= 0)
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{
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{
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printf("%.2x%.2x", mem[i].data, mem[i+1].data);
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printf("%.2x%.2x", evalsim_mem8(i), evalsim_mem8(i + 1));
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printf("%.2x%.2x\n", mem[i+2].data, mem[i+3].data);
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printf("%.2x%.2x\n", evalsim_mem8(i + 2), evalsim_mem8(i + 3));
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i += insn_len(index) - 1;
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i += insn_len(index) - 1;
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}
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}
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else
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else
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printf("%.2x\n", (unsigned char)mem[i].data);
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printf("%.2x\n", evalsim_mem8(i));
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}
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}
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}
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}
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No newline at end of file
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No newline at end of file
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