Kernel/syscalls - Fixed LogF format error causing TID to be zero in SYS_DEBUG
[tpg/acess2.git] / Kernel / syscalls.c
1 /*
2  * AcessOS Microkernel Version
3  * syscalls.c
4  */
5 #define DEBUG   0
6
7 #include <acess.h>
8 #include <syscalls.h>
9 #include <proc.h>
10 #include <hal_proc.h>
11 #include <errno.h>
12 #include <threads.h>
13
14 #define CHECK_NUM_NULLOK(v,size)        \
15         if((v)&&!Syscall_Valid((size),(v))){ret=-1;err=-EINVAL;break;}
16 #define CHECK_STR_NULLOK(v)     \
17         if((v)&&!Syscall_ValidString((v))){ret=-1;err=-EINVAL;break;}
18 #define CHECK_NUM_NONULL(v,size)        \
19         if(!(v)||!Syscall_Valid((size),(v))){ret=-1;err=-EINVAL;break;}
20 #define CHECK_STR_NONULL(v)     \
21         if(!(v)||!Syscall_ValidString((v))){ret=-1;err=-EINVAL;break;}
22
23 // === IMPORTS ===
24 extern int      Proc_Execve(char *File, char **ArgV, char **EnvP);
25 extern Uint     Binary_Load(const char *file, Uint *entryPoint);
26
27 // === PROTOTYPES ===
28 void    SyscallHandler(tSyscallRegs *Regs);
29  int    Syscall_ValidString(const char *Addr);
30  int    Syscall_Valid(int Size, const void *Addr);
31
32 // === CODE ===
33 // TODO: Do sanity checking on arguments, ATM the user can really fuck with the kernel
34 void SyscallHandler(tSyscallRegs *Regs)
35 {
36         Uint64  ret = 0;
37         Uint    err = -EOK;
38          int    callNum = Regs->Num;
39         
40         #if DEBUG < 2
41         if(callNum != SYS_READ && callNum != SYS_WRITE) {
42         #endif
43         ENTER("iThread iNum", Threads_GetTID(), callNum);
44         if(callNum < NUM_SYSCALLS)
45                 LOG("Syscall %s", cSYSCALL_NAMES[callNum]);
46         LOG("Arg1: 0x%x, Arg2: 0x%x, Arg3: 0x%x, Arg4: 0x%x", Regs->Arg1, Regs->Arg2, Regs->Arg3, Regs->Arg4);
47         #if DEBUG < 2
48         }
49         #endif
50         
51         switch(Regs->Num)
52         {
53         // -- Exit the current thread
54         case SYS_EXIT:  Threads_Exit(0, Regs->Arg1);    break;
55         
56         // -- Put the current thread to sleep
57         case SYS_SLEEP: Threads_Sleep();        break;
58         
59         // -- Yield current timeslice
60         case SYS_YIELD: Threads_Yield();        break;
61         
62         // -- Set Error Handler
63         case SYS_SETFAULTHANDLER:
64                 Threads_SetFaultHandler(Regs->Arg1);
65                 break;
66         
67         // -- Clone the current thread
68         case SYS_CLONE:
69                 // Call clone system call
70                 ret = Proc_Clone(Regs->Arg1);
71                 break;
72         
73         // -- Send a signal
74         case SYS_KILL:
75                 err = -ENOSYS;
76                 ret = -1;
77                 break;
78         
79         // -- Wait for a thread
80         case SYS_WAITTID:
81                 // Sanity Check (Status can be NULL)
82                 CHECK_NUM_NULLOK( (int*)Regs->Arg2, sizeof(int) );
83                 // TID, *Status
84                 ret = Threads_WaitTID(Regs->Arg1, (int*)Regs->Arg2);
85                 break;
86         
87         // -- Get the physical address of a page
88         case SYS_GETPHYS:
89                 ret = MM_GetPhysAddr(Regs->Arg1);
90                 break;
91         
92         // -- Map an address
93         case SYS_MAP:   MM_Map(Regs->Arg1, Regs->Arg2); break;
94         
95         // -- Allocate an address
96         case SYS_ALLOCATE:      ret = MM_Allocate(Regs->Arg1);  break;
97         
98         // -- Unmap an address
99         case SYS_UNMAP:         MM_Deallocate(Regs->Arg1);      break;
100         
101         // -- Get Thread/Process IDs
102         case SYS_GETTID:        ret = Threads_GetTID(); break;
103         case SYS_GETPID:        ret = Threads_GetPID(); break;
104         
105         // -- Get User/Group IDs
106         case SYS_GETUID:        ret = Threads_GetUID(); break;
107         case SYS_GETGID:        ret = Threads_GetGID(); break;
108         
109         // -- Set User/Group IDs
110         case SYS_SETUID:        ret = Threads_SetUID(&err, Regs->Arg1); break;
111         case SYS_SETGID:        ret = Threads_SetGID(&err, Regs->Arg1); break;
112         
113         // -- Send Message
114         case SYS_SENDMSG:
115                 CHECK_NUM_NONULL( (void*)Regs->Arg3, Regs->Arg2 );
116                 // Destination, Size, *Data
117                 ret = Proc_SendMessage(&err, Regs->Arg1, Regs->Arg2, (void*)Regs->Arg3);
118                 break;
119         // -- Check for messages
120         case SYS_GETMSG:
121                 CHECK_NUM_NULLOK( (Uint*)Regs->Arg1, sizeof(Uint) );
122                 // NOTE: Can't do range checking as we don't know the size
123                 // - Should be done by Proc_GetMessage
124                 if( Regs->Arg2 && Regs->Arg2 != -1 && !MM_IsUser(Regs->Arg2) ) {
125                         err = -EINVAL;  ret = -1;       break;
126                 }
127                 // *Source, *Data
128                 ret = Proc_GetMessage(&err, (Uint*)Regs->Arg1, (void*)Regs->Arg2);
129                 break;
130         
131         // -- Get the current timestamp
132         case SYS_GETTIME:
133                 ret = now();
134                 break;
135         
136         // -- Set the thread's name
137         case SYS_SETNAME:
138                 CHECK_STR_NONULL( (char*) Regs->Arg1);
139                 Threads_SetName( (char*)Regs->Arg1 );
140                 break;
141         
142         // ---
143         // Binary Control
144         // ---
145         // -- Replace the current process with another
146         case SYS_EXECVE:
147                 CHECK_STR_NONULL((char*)Regs->Arg1);
148                 // Check the argument arrays
149                 {
150                          int    i;
151                         char    **tmp = (char**)Regs->Arg2;
152                         // Check ArgV (traverse array checking all string pointers)
153                         CHECK_NUM_NONULL( tmp, sizeof(char**) );
154                         //Log("tmp = %p", tmp);
155                         for(i=0;tmp[i];i++) {
156                                 CHECK_NUM_NONULL( &tmp[i], sizeof(char*) );
157                                 CHECK_STR_NONULL( tmp[i] );
158                         }
159                         if(ret == -1) break;
160                         // Check EnvP also
161                         // - EnvP can be NULL
162                         if( Regs->Arg3 )
163                         {
164                                 tmp = (char**)Regs->Arg3;
165                                 CHECK_NUM_NONULL(tmp, sizeof(char**));
166                                 Log("tmp = %p", tmp);
167                                 for(i=0;tmp[i];i++) {
168                                         CHECK_NUM_NONULL( &tmp[i], sizeof(char*) );
169                                         CHECK_STR_NONULL( tmp[i] );
170                                 }
171                                 if(ret == -1) break;
172                         }
173                 }
174                 LEAVE('s', "Assuming 0");
175                 // Path, **Argv, **Envp
176                 ret = Proc_Execve( (char*)Regs->Arg1, (char**)Regs->Arg2, (char**)Regs->Arg3 );
177                 break;
178         // -- Load a binary into the current process
179         case SYS_LOADBIN:
180                 if( !Syscall_ValidString( (char*) Regs->Arg1)
181                 ||  !Syscall_Valid(sizeof(Uint), (Uint*)Regs->Arg2) ) {
182                         err = -EINVAL;
183                         ret = 0;
184                         break;
185                 }
186                 // Path, *Entrypoint
187                 ret = Binary_Load((char*)Regs->Arg1, (Uint*)Regs->Arg2);
188                 break;
189         
190         // ---
191         // Virtual Filesystem
192         // ---
193         case SYS_OPEN:
194                 CHECK_STR_NONULL( (char*)Regs->Arg1 );
195                 LOG("VFS_Open(\"%s\", 0x%x)", (char*)Regs->Arg1, Regs->Arg2 | VFS_OPENFLAG_USER);
196                 ret = VFS_Open((char*)Regs->Arg1, Regs->Arg2 | VFS_OPENFLAG_USER);
197                 break;
198         
199         case SYS_CLOSE:
200                 LOG("VFS_Close(%i)", Regs->Arg1);
201                 VFS_Close( Regs->Arg1 );
202                 break;
203         
204         case SYS_SEEK:
205                 #if BITS == 64
206                 ret = VFS_Seek( Regs->Arg1, Regs->Arg2, Regs->Arg3 );
207                 #else
208                 ret = VFS_Seek( Regs->Arg1, Regs->Arg2|(((Uint64)Regs->Arg3)<<32), Regs->Arg4 );
209                 #endif
210                 break;
211                 
212         case SYS_TELL:
213                 ret = VFS_Tell( Regs->Arg1 );
214                 break;
215         
216         case SYS_WRITE:
217                 CHECK_NUM_NONULL( (void*)Regs->Arg2, Regs->Arg3 );
218                 ret = VFS_Write( Regs->Arg1, Regs->Arg3, (void*)Regs->Arg2 );
219                 break;
220         
221         case SYS_READ:
222                 CHECK_NUM_NONULL( (void*)Regs->Arg2, Regs->Arg3 );
223                 ret = VFS_Read( Regs->Arg1, Regs->Arg3, (void*)Regs->Arg2 );
224                 break;
225         
226         case SYS_FINFO:
227                 CHECK_NUM_NONULL( (void*)Regs->Arg2, sizeof(tFInfo) + Regs->Arg3*sizeof(tVFS_ACL) );
228                 // FP, Dest, MaxACLs
229                 ret = VFS_FInfo( Regs->Arg1, (void*)Regs->Arg2, Regs->Arg3 );
230                 break;
231         
232         // Get ACL Value
233         case SYS_GETACL:
234                 CHECK_NUM_NONULL( (void*)Regs->Arg2, sizeof(tVFS_ACL) );
235                 ret = VFS_GetACL( Regs->Arg1, (void*)Regs->Arg2 );
236                 break;
237         
238         // Read Directory
239         case SYS_READDIR:
240                 // TODO: What if the filename is longer?
241                 // Maybe force it to be a 256 byte buffer
242                 CHECK_NUM_NONULL( (void*)Regs->Arg2, 256 );
243                 ret = VFS_ReadDir( Regs->Arg1, (void*)Regs->Arg2 );
244                 break;
245         
246         // Open a file that is a entry in an open directory
247         case SYS_OPENCHILD:
248                 CHECK_STR_NONULL( (char*)Regs->Arg2 );
249                 ret = VFS_OpenChild( Regs->Arg1, (char*)Regs->Arg2, Regs->Arg3);
250                 break;
251         
252         // Change Directory
253         case SYS_CHDIR:
254                 CHECK_STR_NONULL( (const char*)Regs->Arg1 );
255                 ret = VFS_ChDir( (const char*)Regs->Arg1 );
256                 break;
257         
258         // IO Control
259         case SYS_IOCTL:
260                 // All sanity checking should be done by the driver
261                 if( Regs->Arg3 && !MM_IsUser(Regs->Arg3) ) {
262                         err = -EINVAL;  ret = -1;       break;
263                 }
264                 ret = VFS_IOCtl( Regs->Arg1, Regs->Arg2, (void*)Regs->Arg3 );
265                 break;
266         
267         // Mount a filesystem
268         case SYS_MOUNT:
269                 // Only root can mount filesystems
270                 if(Threads_GetUID() != 0) {
271                         err = -EACCES;
272                         ret = -1;
273                         break;
274                 }
275                 // Sanity check the paths
276                 if(!Syscall_ValidString((char*)Regs->Arg1)
277                 || !Syscall_ValidString((char*)Regs->Arg2)
278                 || !Syscall_ValidString((char*)Regs->Arg3)
279                 || !Syscall_ValidString((char*)Regs->Arg4) ) {
280                         err = -EINVAL;
281                         ret = -1;
282                         break;
283                 }
284                 ret = VFS_Mount(
285                         (char*)Regs->Arg1,      // Device
286                         (char*)Regs->Arg2,      // Mount point
287                         (char*)Regs->Arg3,      // Filesystem
288                         (char*)Regs->Arg4       // Options
289                         );
290                 break;
291                 
292         // Wait on a set of handles
293         case SYS_SELECT:
294                 // Sanity checks
295                 if( (Regs->Arg2 && !Syscall_Valid(sizeof(fd_set), (void*)Regs->Arg2))
296                  || (Regs->Arg3 && !Syscall_Valid(sizeof(fd_set), (void*)Regs->Arg3))
297                  || (Regs->Arg4 && !Syscall_Valid(sizeof(fd_set), (void*)Regs->Arg4))
298                  || (Regs->Arg5 && !Syscall_Valid(sizeof(tTime), (void*)Regs->Arg5)) )
299                 {
300                         err = -EINVAL;
301                         ret = -1;
302                         break;
303                 }
304                 // Perform the call
305                 ret = VFS_Select(
306                         Regs->Arg1,     // Max handle
307                         (fd_set *)Regs->Arg2,   // Read
308                         (fd_set *)Regs->Arg3,   // Write
309                         (fd_set *)Regs->Arg4,   // Errors
310                         (tTime *)Regs->Arg5,    // Timeout
311                         0       // User handles
312                         );
313                 break;
314         
315         // -- Debug
316         //#if DEBUG_BUILD
317         case SYS_DEBUG:
318                 CHECK_STR_NONULL( (char*)Regs->Arg1 );
319                 LogF("Log: %08lli [%i] ", now(), Threads_GetTID());
320                 LogF((const char*)Regs->Arg1,
321                         Regs->Arg2, Regs->Arg3, Regs->Arg4, Regs->Arg5, Regs->Arg6);
322                 LogF("\r\n");
323                 break;
324         //#endif
325         
326         // -- Default (Return Error)
327         default:
328                 Log_Warning("Syscalls", "Unknown System Call %i", Regs->Num);
329                 if(Regs->Num < NUM_SYSCALLS)
330                         Log_Warning("Syscall", " named '%s'", cSYSCALL_NAMES[Regs->Num]);
331                 err = -ENOSYS;
332                 ret = -1;
333                 break;
334         }
335
336         if(err == 0)    err = errno;
337         
338         if(err != 0) {
339                 LOG("ID: %i, Return errno = %i", Regs->Num, err);
340         }
341         
342         #if BITS < 64
343         Regs->Return = ret&0xFFFFFFFF;
344         Regs->RetHi = ret >> 32;
345         #else
346         Regs->Return = ret;
347         #endif
348         Regs->Error = err;
349         #if DEBUG
350         # if DEBUG < 2
351         if( callNum != SYS_READ && callNum != SYS_WRITE ) {
352         # endif
353         LOG("err = %i", err);
354         if( callNum == SYS_EXECVE )
355                 LOG("Actual %i", ret);
356         else
357                 LEAVE('x', ret);
358         # if DEBUG < 2
359         }
360         # endif
361         #endif
362 }
363
364 /**
365  * \fn int Syscall_ValidString(const char *Addr)
366  * \brief Checks if a memory address contains a valid string
367  */
368 int Syscall_ValidString(const char *Addr)
369 {
370         // Check if the memory is user memory
371         if(!MM_IsUser( (tVAddr) Addr))  return 0;
372         
373         return CheckString( Addr );
374 }
375
376 /**
377  * \fn int Syscall_Valid(int Size, const void *Addr)
378  * \brief Checks if a memory address is valid
379  */
380 int Syscall_Valid(int Size, const void *Addr)
381 {
382         if(!MM_IsUser( (tVAddr)Addr ))  return 0;
383         
384         return CheckMem( Addr, Size );
385 }

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