]> Joshua Wise's Git repositories - netwatch.git/blob - ich2/smram-ich2.c
Move much more logic out into smi.c again.
[netwatch.git] / ich2 / smram-ich2.c
1 #include "reg-82815.h"
2 #include <pci.h>
3 #include <smram.h>
4
5 #ifndef __RAW__
6
7 static unsigned long memsz[] = {
8         0,                      // 0
9         32*1024*1024,           // 1
10         32*1024*1024,           // 2
11         48*1024*1024,           // 3
12         64*1024*1024,           // 4
13         64*1024*1024,           // 5
14         96*1024*1024,           // 6
15         128*1024*1024,          // 7
16         128*1024*1024,          // 8
17         128*1024*1024,          // 9
18         128*1024*1024,          // A
19         192*1024*1024,          // B
20         256*1024*1024,          // C
21         256*1024*1024,          // D
22         256*1024*1024,          // E
23         512*1024*1024           // F
24 };
25
26 void smram_aseg_dump(void) {
27
28         unsigned char smramc, drp, drp2;
29         unsigned int tom = 0;
30         int usmm, lsmm;
31
32         smramc = pci_read8(0, 0, 0, SMRAMC);
33         drp = pci_read8(0, 0, 0, DRP);
34         drp2 = pci_read8(0, 0, 0, DRP2);
35
36         printf("SMRAMC: %02x\n", smramc);
37
38         tom += memsz[drp & 0xF];
39         tom += memsz[drp >> 4];
40         tom += memsz[drp2 & 0xF];
41         
42         printf("Top of DRAM: %08x\n", tom);
43         
44         usmm = (smramc >> 4) & 0x3;
45         lsmm = (smramc >> 2) & 0x3;
46         
47         switch (usmm)
48         {
49         case 0:
50                 printf("TSEG and HSEG both off\n");
51                 break;
52         case 1:
53                 printf("TSEG off, HSEG %s\n", lsmm ? "off" : "on");
54                 break;
55         case 2:
56                 printf("TSEG 512KB (%08x - %08x), HSEG %s\n",
57                         tom - 512 * 1024, tom - 1, lsmm ? "off" : "on");
58                 break;
59         case 3:
60                 printf("TSEG 1MB (%08x - %08x), HSEG %s\n",
61                         tom - 1 * 1024 * 1024, tom - 1, lsmm ? "off" : "on");
62                 break;
63         }
64         
65         switch (lsmm)
66         {
67         case 0:
68                 printf("ABSEG disabled\n");
69                 break;
70         case 1:
71                 printf("ABSEG enabled as system RAM\n");
72                 break;
73         case 2:
74                 printf("ABSEG enabled for SMM code only\n");
75                 break;
76         case 3:
77                 printf("ABSEG enabled for both SMM code and data\n");
78                 break;
79         }
80 }
81 #endif
82
83 int smram_locked()
84 {
85         unsigned char smramc = pci_read8(0, 0, 0, SMRAMC);
86         
87         return (smramc & SMRAMC_LOCK) ? 1 : 0;
88 }
89
90 smram_state_t smram_save_state()
91 {
92         return pci_read8(0, 0, 0, SMRAMC);
93 }
94
95 void smram_restore_state(smram_state_t state)
96 {
97         pci_write8(0, 0, 0, SMRAMC, state); 
98 }
99
100 int smram_aseg_set_state (int open) {
101         unsigned char smramc;
102
103         if (smram_locked())
104                 return -1;
105                 
106         smramc = pci_read8(0, 0, 0, SMRAMC);
107
108         switch (open)
109         {
110         case SMRAM_ASEG_CLOSED:
111                 smramc = (smramc & 0xF0) | 0x00;
112                 break;
113         case SMRAM_ASEG_OPEN:
114                 smramc = (smramc & 0xF0) | 0x04;
115                 break;
116         case SMRAM_ASEG_SMMCODE:
117                 smramc = (smramc & 0xF0) | 0x08;
118                 break;
119         case SMRAM_ASEG_SMMONLY:
120                 smramc = (smramc & 0xF0) | 0x0C;
121                 break;
122         default:
123                 return -1;
124         }
125
126         pci_write8(0, 0, 0, SMRAMC, smramc);
127
128         return 0;
129 }
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