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[netwatch.git] / netwatch / main.c
1 /* main.c
2  * Main post-paging entry point.  Actually, this is a lie.
3  * NetWatch system management mode administration console
4  *
5  * Copyright (c) 2008 Jacob Potter and Joshua Wise.  All rights reserved.
6  * This program is free software; you can redistribute and/or modify it under
7  * the terms found in the file LICENSE in the root of this source tree.
8  *
9  */
10
11 #include <io.h>
12 #include <smram.h>
13 #include <video_defines.h>
14 #include <minilib.h>
15 #include <smi.h>
16 #include <pci-bother.h>
17 #include <fb.h>
18 #include <output.h>
19 #include "../net/net.h"
20 #include "vga-overlay.h"
21 #include "packet.h"
22 #include "keyboard.h"
23
24 unsigned int lastctr = 0;
25 extern unsigned int counter;
26
27 static int _ibf_ready = 0;
28 static int _waiting_for_data = 0;
29 static int curdev = 0;
30 static int adding_locks_from_time_to_time = 0;
31
32 static int _inject_ready()
33 {
34         return _ibf_ready && !_waiting_for_data && !adding_locks_from_time_to_time;
35 }
36
37 void _try_inject()
38 {
39         if (kbd_has_injected_scancode() && _inject_ready())
40         {
41                 smi_disable_event(SMI_EVENT_DEVTRAP_KBC);
42                 int i = 1000;
43                 while (inb(0x64) & 0x02)        /* Busy? */
44                         ;
45                 outb(0x64, 0xD2);       /* "Inject, please!" */
46                 while (inb(0x64) & 0x02)        /* Busy? */
47                         ;
48                 outb(0x60, kbd_get_injected_scancode());        /* data */
49                 while ((inb(0x64) & 0x02) && i--)       /* wait for completion */
50                         ;
51                 outl(0x844, 0x1000);
52                 adding_locks_from_time_to_time++;
53                 smi_enable_event(SMI_EVENT_DEVTRAP_KBC);
54         } else if (kbd_has_injected_scancode())
55                 outputf("Would like to inject, but %d %d", _ibf_ready, _waiting_for_data);
56 }
57
58 void pci_dump() {
59         unsigned long cts;
60                 
61         cts = inl(0x84C);
62         
63         outl(0x840, 0x0);
64         outl(0x848, 0x0);
65         switch(cts&0xF0000)
66         {
67         case 0x20000:
68         {
69                 unsigned char b;
70                 
71                 switch (cts & 0xFFFF)
72                 {
73                 case 0x64:
74                         /* Read the real hardware and mask in our OBF if need be. */
75                         b = inb(0x64);
76                         
77                         curdev = (b & 0x20 /* KBD_STAT_MOUSE_OBF */) ? 1 : 0;
78                         
79                         if ((curdev == 0) && kbd_has_injected_scancode())
80                                 b |= 0x1;
81
82                         _ibf_ready = (b & 0x2 /* IBF */) ? 0 : 1;
83                         
84                         break;
85                 case 0x60:
86                         if ((curdev == 0) && kbd_has_injected_scancode() && !adding_locks_from_time_to_time)
87                                 b = kbd_get_injected_scancode();
88                         else
89                                 b = inb(0x60);
90                         if (adding_locks_from_time_to_time)
91                                 adding_locks_from_time_to_time--;
92                         if ((curdev == 0) && (b == 0x01)) {     /* Escape */
93                                 outb(0xCF9, 0x4);       /* Reboot */
94                                 return;
95                         }
96                         break;
97
98                 default:
99                         b = inb(cts & 0xFFFF);
100                 }
101                 
102                 dologf("READ : %08x (%02x)", cts, b);
103                 *(unsigned char*)0xAFFD0 /* EAX */ = b;
104                 break;
105         }
106         case 0x30000:
107         {
108                 unsigned char b;
109                 
110                 b = *(unsigned char*)0xAFFD0 /* EAX */;
111                 dologf("WRITE: %08x (%02x)", cts, b);
112                 if ((cts & 0xFFFF) == 0x64)
113                         switch(b)
114                         {
115                         case 0x60 /*KBD_CCMD_WRITE_MODE*/:
116                         case 0xD2 /*KBD_CCMD_WRITE_OBUF*/:
117                         case 0xD3 /*KBD_CCMD_WRITE_AUX_OBUF*/:
118                         case 0xD4 /*KBD_CCMD_WRITE_MOUSE*/:
119                         case 0xD1 /*KBD_CCMD_WRITE_OUTPORT*/:
120                                 _waiting_for_data = 1;  /* These all should not be interrupted. */
121                         }
122                 else if ((cts & 0xFFFF) == 0x60)
123                         _waiting_for_data = 0;
124                 outb(cts & 0xFFFF, b);
125                 break;
126         }
127         default:
128                 dolog("Unhandled PCI cycle");
129         }
130         
131         outl(0x840, 0x0);
132         outl(0x844, 0x1000);
133         outl(0x848, 0x1000);
134 }
135
136 void timer_handler(smi_event_t ev)
137 {
138         static unsigned int ticks = 0;
139         
140         smi_disable_event(SMI_EVENT_FAST_TIMER);
141         smi_enable_event(SMI_EVENT_FAST_TIMER);
142         
143         _try_inject();
144         
145         outb(0x80, (ticks++) & 0xFF);
146         
147         if (!fb || fb->curmode.text)
148                 outlog();
149 }
150
151 void kbc_handler(smi_event_t ev)
152 {
153         pci_dump();
154 }
155
156 void gbl_rls_handler(smi_event_t ev)
157 {
158         unsigned long ecx;
159         
160         ecx = *(unsigned long*)0xAFFD4;
161
162         packet_t * packet = check_packet(ecx);
163         if (!packet)
164         {
165                 dologf("WARN: bad packet at %08x", ecx);
166                 return;
167         }
168
169         outputf("Got packet: type %08x", packet->type);
170
171         if (packet->type == 42) {
172                 dump_log((char *)packet->data);
173                 *(unsigned long*)0xAFFD4 = 42;
174         } else if (packet->type == 0xAA) {
175                 kbd_inject_keysym('A', 1);
176                 kbd_inject_keysym('A', 0);
177         } else {
178                 *(unsigned long*)0xAFFD4 = 0x2BADD00D;
179         }
180 }
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