source: liacs/ca/opdr2b/src/memory.c@ 291

Last change on this file since 291 was 2, checked in by Rick van der Zwet, 15 years ago

Initial import of data of old repository ('data') worth keeping (e.g. tracking
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  • Property svn:executable set to *
File size: 2.4 KB
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[2]1/* Author : Rick van der Zwet
2 * S-number : 0433373
3 * Version : $Id: memory.c 365 2007-12-03 08:54:04Z rick $
4 * Copyright : FreeBSD Licence
5 * Description : Memory unit
6 */
7
8#include <stdlib.h>
9#include <stdio.h>
10#include <sysexits.h>
11#include "memory.h"
12
13/* Initial value */
14boolean mem_busy = FALSE;
15
16
17void
18readmem()
19{
20 int address = 0;
21 uint32_t input = 0;
22
23 //read 4-byte integer numbers in hexadecimal from input
24 while (scanf("%x", &input) != EOF) {
25 mem_operation(address * 4, input, WRITE_WORD);
26 address++;
27 }
28 //zero the end
29 for (; address < 1024; address++)
30 mem_operation(address * 4, 0, WRITE_WORD);
31}
32
33
34void
35writemem()
36{
37 int zeros = 0;
38 int address = 0;
39 word value = 0;
40 for (address = 0; address < 1024; address++) {
41 value = mem_operation(address * 4, 0, READ);
42 if (value == 0)
43 zeros++;
44 else {
45 for (; zeros > 0; zeros--)
46 printf("%#010x\n", 0);
47 printf("%#010x\n", value);
48 }
49 }
50}
51
52
53word
54mem_operation(const word address, const word value,
55 const mem_control_t action)
56{
57 static union memword_t memory[1024];
58
59 int coreAddress = address / 4;
60 int8_t offset = address % 4;
61
62 if (coreAddress > 1024) {
63 fprintf(stderr, "Memory which is greater than 1024 word, '%i'\n",
64 coreAddress);
65 exit(EX_SOFTWARE);
66 }
67
68 switch (action) {
69 case READ:
70 if (offset != 0) {
71 fprintf(stderr, "Read needs mod 4 bytes alligned\n");
72 exit(EX_SOFTWARE);
73 } else {
74 mem_busy = FALSE;
75 return(memory[coreAddress].fullword);
76 }
77 break;
78 case WRITE_BYTE:
79 memory[coreAddress].byte[offset] = (byte)value;
80 break;
81 case WRITE_HALFWORD:
82 if ((offset % 2) != 0) {
83 fprintf(stderr, "Halfword need mod 16 bits alligned\n");
84 exit(EX_SOFTWARE);
85 }
86 memory[coreAddress].halfword[offset / 2] = (halfword)value;
87 break;
88 case WRITE_WORD:
89 if (offset != 0) {
90 fprintf(stderr, "Write needs mod 4 bytes alligned\n");
91 exit(EX_SOFTWARE);
92 }
93 memory[coreAddress].fullword = value;
94 break;
95 default:
96 fprintf(stderr, "Memory control '%i' not implemented\n", action);
97 exit(EX_SOFTWARE);
98 break;
99 };
100 mem_busy = FALSE;
101 return(0);
102}
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