RTL8139 - Fixed not clearing IO bit in BAR
[tpg/acess2.git] / Modules / Network / RTL8139 / rtl8139.c
1 /*
2  * Acess2 RTL8139 Driver
3  * - By John Hodge (thePowersGang)
4  */
5 #define DEBUG   0
6 #define VERSION ((0<<8)|20)
7 #include <acess.h>
8 #include <modules.h>
9 #include <fs_devfs.h>
10 #include <drv_pci.h>
11 #include <tpl_drv_network.h>
12 #include <semaphore.h>
13
14 // === CONSTANTS ===
15 #define VENDOR_ID       0x10EC
16 #define DEVICE_ID       0x8139
17
18 enum eRTL8139_Regs
19 {
20         // MAC Address
21         MAC0, MAC1, MAC2,
22         MAC3, MAC4, MAC5,
23         
24         // Multicast Registers
25         MAR0 = 0x08, MAR1, MAR2, MAR3,
26         MAR4, MAR5, MAR6, MAR7,
27         
28         // Transmit status of descriptors 0 - 3
29         TSD0 = 0x10,    TSD1 = 0x14,
30         TSD2 = 0x18,    TSD3 = 0x1C,
31         // Transmit start addresses
32         TSAD0 = 0x20,   TSAD1 = 0x24,
33         TSAD2 = 0x28,   TSAD3 = 0x2C,
34         
35         RBSTART = 0x30, //!< Recieve Buffer Start (DWord)
36         // Early Recieve Byte Count
37         ERBCR = 0x34,   // 16-bits
38         // Early RX Status Register
39         ERSR = 0x36,
40         
41         // ??, ??, ??, RST, RE, TE, ??, ??
42         CMD     = 0x37,
43         
44         CAPR    = 0x38, // Current address of packet read
45         CBA     = 0x3A, // Current Buffer Address - Total byte count in RX buffer
46         
47         IMR     = 0x3C, // Interrupt mask register
48         ISR     = 0x3E, // Interrupt status register
49         
50         TCR     = 0x40, // Transmit Configuration Register
51         RCR     = 0x44, // Recieve Configuration Register
52         TCTR    = 0x48, // 32-bit timer (count)
53         MPC     = 0x4C, // Missed packet count (due to RX overflow)
54         
55         CR_9346 = 0x50,
56         CONFIG0 = 0x51,
57         CONFIG1 = 0x52,
58         // 0x53 resvd
59         TIMERINT = 0x54,        // Fires a timeout when TCTR equals this value
60         
61 };
62
63 #define FLAG_ISR_TOK    0x04
64 #define FLAG_ISR_ROK    0x01
65
66 // === TYPES ===
67 typedef struct sCard
68 {
69         Uint16  IOBase;
70         Uint8   IRQ;
71         
72          int    NumWaitingPackets;
73         
74         char    *ReceiveBuffer;
75         tPAddr  PhysReceiveBuffer;
76          int    ReceiveBufferLength;
77          int    SeenOfs;        //!< End of the most recently seen packet (by IRQ)
78         tMutex  ReadMutex;
79         tSemaphore      ReadSemaphore;
80         
81         char    *TransmitBuffers[4];
82         tPAddr  PhysTransmitBuffers[4];
83         BOOL    TransmitInUse;  // Flags for each transmit descriptor
84          int    CurTXDecscriptor;
85         
86         char    Name[2];
87         tVFS_Node       Node;
88         Uint8   MacAddr[6];
89 }       tCard;
90
91 // === PROTOTYPES ===
92  int    RTL8139_Install(char **Options);
93 char    *RTL8139_ReadDir(tVFS_Node *Node, int Pos);
94 tVFS_Node       *RTL8139_FindDir(tVFS_Node *Node, const char *Filename);
95  int    RTL8139_RootIOCtl(tVFS_Node *Node, int ID, void *Arg);
96 Uint64  RTL8139_Read(tVFS_Node *Node, Uint64 Offset, Uint64 Length, void *Buffer);
97 Uint64  RTL8139_Write(tVFS_Node *Node, Uint64 Offset, Uint64 Length, void *Buffer);
98  int    RTL8139_IOCtl(tVFS_Node *Node, int ID, void *Arg);
99 void    RTL8139_IRQHandler(int Num);
100
101 // === GLOBALS ===
102 MODULE_DEFINE(0, VERSION, RTL8139, RTL8139_Install, NULL, NULL);
103 tDevFS_Driver   gRTL8139_DriverInfo = {
104         NULL, "RTL8139",
105         {
106         .NumACLs = 1,
107         .ACLs = &gVFS_ACL_EveryoneRX,
108         .Flags = VFS_FFLAG_DIRECTORY,
109         .ReadDir = RTL8139_ReadDir,
110         .FindDir = RTL8139_FindDir,
111         .IOCtl = RTL8139_RootIOCtl
112         }
113 };
114  int    giRTL8139_CardCount;
115 tCard   *gaRTL8139_Cards;
116
117 // === CODE ===
118 /**
119  * \brief Installs the RTL8139 Driver
120  */
121 int RTL8139_Install(char **Options)
122 {
123          int    id = -1;
124          int    i = 0;
125         Uint16  base;
126         tCard   *card;
127         
128         giRTL8139_CardCount = PCI_CountDevices(VENDOR_ID, DEVICE_ID);
129         Log_Debug("RTL8139", "%i cards", giRTL8139_CardCount);
130         
131         if( giRTL8139_CardCount == 0 )  return MODULE_ERR_NOTNEEDED;
132         
133         gaRTL8139_Cards = calloc( giRTL8139_CardCount, sizeof(tCard) );
134         
135         //while( (id = PCI_GetDevice(0x10EC, 0x8139, 0, id)) != -1 )
136         while( (id = PCI_GetDevice(VENDOR_ID, DEVICE_ID, i)) != -1 )
137         {
138                 card = &gaRTL8139_Cards[i];
139                 base = PCI_GetBAR( id, 0 );
140                 if( !(base & 1) ) {
141                         Log_Warning("RTL8139", "Driver does not support MMIO, skipping card");
142                         card->IOBase = 0;
143                         card->IRQ = 0;
144                         continue ;
145                 }
146                 base &= ~1;
147                 card->IOBase = base;
148                 card->IRQ = PCI_GetIRQ( id );
149                 
150                 // Install IRQ Handler
151                 IRQ_AddHandler(card->IRQ, RTL8139_IRQHandler);
152                 
153                 // Power on
154                 outb( base + CONFIG1, 0x00 );
155
156                 // Reset (0x10 to CMD)
157                 outb( base + CMD, 0x10 );       
158                 while( inb(base + CMD) & 0x10 ) ;
159                 
160                 // Set up recieve buffer
161                 // - Allocate 3 pages below 4GiB for the recieve buffer (Allows 8k+16+1500)
162                 card->ReceiveBuffer = (void*)MM_AllocDMA( 3, 32, &card->PhysReceiveBuffer );
163                 card->ReceiveBufferLength = 8*1024+16;
164                 outd(base + RBSTART, (Uint32)card->PhysReceiveBuffer);
165                 outd(base + CBA, 0);
166                 outd(base + CAPR, 0);
167                 // Set IMR to Transmit OK and Receive OK
168                 outw(base + IMR, 0x5);
169                 
170                 // Set up transmit buffers
171                 // - 2 non-contiguous pages (each page can fit 2 1500 byte packets)
172                 card->TransmitBuffers[0] = (void*)MM_AllocDMA( 1, 32, &card->PhysTransmitBuffers[0] );
173                 card->TransmitBuffers[1] = card->TransmitBuffers[0] + 0x800;
174                 card->PhysTransmitBuffers[1] = card->PhysTransmitBuffers[0] + 0x800;
175                 
176                 card->TransmitBuffers[2] = (void*)MM_AllocDMA( 1, 32, &card->PhysTransmitBuffers[2] );
177                 card->TransmitBuffers[3] = card->TransmitBuffers[2] + 0x800;
178                 card->PhysTransmitBuffers[3] = card->PhysTransmitBuffers[2] + 0x800;
179                 
180                 outd(base + TSAD0, card->PhysTransmitBuffers[0]);
181                 outd(base + TSAD1, card->PhysTransmitBuffers[1]);
182                 outd(base + TSAD2, card->PhysTransmitBuffers[2]);
183                 outd(base + TSAD3, card->PhysTransmitBuffers[3]);
184                 
185                 // Set recieve buffer size and recieve mask
186                 // - Bit 7 being unset tells the card to overflow the recieve buffer if needed
187                 //   (i.e. when the packet starts at the end of the bufffer, it overflows up
188                 //    to 1500 bytes)
189                 outd(base + RCR, 0x0F);
190         
191                 // Recive Enable and Transmit Enable    
192                 outb(base + CMD, 0x0C);
193                 
194                 // Get the card's MAC address
195                 card->MacAddr[0] = inb(base+MAC0);
196                 card->MacAddr[1] = inb(base+MAC1);
197                 card->MacAddr[2] = inb(base+MAC2);
198                 card->MacAddr[3] = inb(base+MAC3);
199                 card->MacAddr[4] = inb(base+MAC4);
200                 card->MacAddr[5] = inb(base+MAC5);
201                 
202                 // Set VFS Node
203                 card->Name[0] = '0'+i;
204                 card->Name[1] = '\0';
205                 card->Node.ImplPtr = card;
206                 card->Node.NumACLs = 0;
207                 card->Node.CTime = now();
208                 card->Node.Write = RTL8139_Write;
209                 card->Node.Read = RTL8139_Read;
210                 card->Node.IOCtl = RTL8139_IOCtl;
211                 
212                 Log_Log("RTL8139", "Card %i 0x%04x, IRQ %i %02x:%02x:%02x:%02x:%02x:%02x",
213                         i, card->IOBase, card->IRQ,
214                         card->MacAddr[0], card->MacAddr[1], card->MacAddr[2],
215                         card->MacAddr[3], card->MacAddr[4], card->MacAddr[5]
216                         );
217                 
218                 i ++;
219         }
220         
221         gRTL8139_DriverInfo.RootNode.Size = giRTL8139_CardCount;
222         DevFS_AddDevice( &gRTL8139_DriverInfo );
223         
224         return MODULE_ERR_OK;
225 }
226
227 // --- Root Functions ---
228 char *RTL8139_ReadDir(tVFS_Node *Node, int Pos)
229 {
230         if( Pos < 0 || Pos >= giRTL8139_CardCount )     return NULL;
231         
232         return strdup( gaRTL8139_Cards[Pos].Name );
233 }
234
235 tVFS_Node *RTL8139_FindDir(tVFS_Node *Node, const char *Filename)
236 {
237         //TODO: It might be an idea to supprt >10 cards
238         if(Filename[0] == '\0' || Filename[1] != '\0')  return NULL;
239         if(Filename[0] < '0' || Filename[0] > '9')      return NULL;
240         return &gaRTL8139_Cards[ Filename[0]-'0' ].Node;
241 }
242
243 const char *csaRTL8139_RootIOCtls[] = {DRV_IOCTLNAMES, NULL};
244 int RTL8139_RootIOCtl(tVFS_Node *Node, int ID, void *Data)
245 {
246         ENTER("pNode iID pData", Node, ID, Data);
247         switch(ID)
248         {
249         BASE_IOCTLS(DRV_TYPE_NETWORK, "RTL8139", VERSION, csaRTL8139_RootIOCtls);
250         }
251         LEAVE('i', 0);
252         return 0;
253 }
254
255 // --- File Functions ---
256 Uint64 RTL8139_Read(tVFS_Node *Node, Uint64 Offset, Uint64 Length, void *Buffer)
257 {
258         tCard   *card = Node->ImplPtr;
259         Uint16  read_ofs, pkt_length;
260          int    new_read_ofs;
261
262         ENTER("pNode XOffset XLength pBuffer", Node, Offset, Length, Buffer);
263
264 retry:
265         if( Semaphore_Wait( &card->ReadSemaphore, 1 ) != 1 )
266         {
267                 LEAVE_RET('i', 0);
268         }
269         
270         Mutex_Acquire( &card->ReadMutex );
271         
272         read_ofs = (inw( card->IOBase + CAPR ) + 0x10) & 0xFFFF;
273         LOG("read_ofs = %i", read_ofs);
274         
275         pkt_length = *(Uint16*)&card->ReceiveBuffer[read_ofs+2];
276         
277         // Calculate new read offset
278         new_read_ofs = read_ofs + pkt_length + 4;
279         new_read_ofs = (new_read_ofs + 3) & ~3; // Align
280         if(new_read_ofs > card->ReceiveBufferLength)    new_read_ofs = 0;
281         new_read_ofs -= 0x10;   // I dunno
282         
283         // Check for errors
284         if( *(Uint16*)&card->ReceiveBuffer[read_ofs] & 0x1E ) {
285                 // Update CAPR
286                 outd(card->IOBase + CAPR, new_read_ofs);
287                 Mutex_Release( &card->ReadMutex );
288                 goto retry;     // I feel evil
289         }
290         
291         // Get packet
292         if( Length > pkt_length )       Length = pkt_length;
293         memcpy(Buffer, &card->ReceiveBuffer[read_ofs+4], Length);
294         
295         // Update CAPR
296         outw(card->IOBase + CAPR, new_read_ofs);
297         
298         Mutex_Release( &card->ReadMutex );
299         
300         LEAVE('i', Length);
301         
302         return Length;
303 }
304
305 Uint64 RTL8139_Write(tVFS_Node *Node, Uint64 Offset, Uint64 Length, void *Buffer)
306 {
307          int    td;
308         Uint32  status;
309         tCard   *card = Node->ImplPtr;
310         
311         if( Length > 1500 )     return 0;       // MTU exceeded
312         
313         ENTER("pNode XLength pBuffer", Node, Length, Buffer);
314         
315         // TODO: Implement a semaphore for avaliable transmit buffers
316         
317         td = card->CurTXDecscriptor;
318         
319         // Find an avaliable descriptor
320         while( card->TransmitInUse & (1 << td) )
321                 Threads_Yield();
322         
323         LOG("td = %i", td);
324         
325         // Transmit using descriptor `td`
326         LOG("card->PhysTransmitBuffers[td] = %P", card->PhysTransmitBuffers[td]);
327         card->TransmitInUse |= (1 << td);
328         outd(card->IOBase + TSAD0 + td*4, card->PhysTransmitBuffers[td]);
329         LOG("card->TransmitBuffers[td] = %p", card->TransmitBuffers[td]);
330         // Copy to buffer
331         memcpy(card->TransmitBuffers[td], Buffer, Length);
332         // Start
333         status = 0;
334         status |= Length & 0x1FFF;      // 0-12: Length
335         status |= 0 << 13;      // 13: OWN bit
336         status |= (0 & 0x3F) << 16;     // 16-21: Early TX threshold (zero atm, TODO: check)
337         LOG("status = 0x%08x", status);
338         outd(card->IOBase + TSD0 + td*4, status);
339         
340         card->CurTXDecscriptor ++;
341         card->CurTXDecscriptor %= 4;
342         
343         LEAVE('i', (int)Length);
344         
345         return Length;
346 }
347
348 const char *csaRTL8139_NodeIOCtls[] = {DRV_IOCTLNAMES, NULL};
349 int RTL8139_IOCtl(tVFS_Node *Node, int ID, void *Data)
350 {
351         tCard   *card = Node->ImplPtr;
352         ENTER("pNode iID pData", Node, ID, Data);
353         switch(ID)
354         {
355         BASE_IOCTLS(DRV_TYPE_NETWORK, "RTL8139", VERSION, csaRTL8139_NodeIOCtls);
356         case NET_IOCTL_GETMAC:
357                 if( !CheckMem(Data, 6) ) {
358                         LEAVE('i', -1);
359                         return -1;
360                 }
361                 memcpy( Data, card->MacAddr, 6 );
362                 LEAVE('i', 1);
363                 return 1;
364         }
365         LEAVE('i', 0);
366         return 0;
367 }
368
369 void RTL8139_IRQHandler(int Num)
370 {
371          int    i, j;
372         tCard   *card;
373         Uint16  status;
374
375         LOG("Num = %i", Num);
376         
377         for( i = 0; i < giRTL8139_CardCount; i ++ )
378         {
379                 card = &gaRTL8139_Cards[i];
380                 if( Num != card->IRQ )  break;
381                 
382                 status = inw(card->IOBase + ISR);
383                 LOG("status = 0x%02x", status);
384                 
385                 // Transmit OK, a transmit descriptor is now free
386                 if( status & FLAG_ISR_TOK )
387                 {
388                         for( j = 0; j < 4; j ++ )
389                         {
390                                 if( ind(card->IOBase + TSD0 + j*4) & 0x8000 ) { // TSD TOK
391                                         card->TransmitInUse &= ~(1 << j);
392                                         // TODO: Update semaphore once implemented
393                                 }
394                         }
395                         outw(card->IOBase + ISR, FLAG_ISR_TOK);
396                 }
397                 
398                 // Recieve OK, inform read
399                 if( status & FLAG_ISR_ROK )
400                 {
401                          int    read_ofs, end_ofs;
402                          int    packet_count = 0;
403                         
404                         // Scan recieve buffer for packets
405                         end_ofs = inw(card->IOBase + CBA);
406                         read_ofs = card->SeenOfs;
407                         LOG("read_ofs = %i, end_ofs = %i", read_ofs, end_ofs);
408                         if( read_ofs > end_ofs )
409                         {
410                                 while( read_ofs < card->ReceiveBufferLength )
411                                 {
412                                         packet_count ++;
413                                         LOG("%i 0x%x Pkt Hdr: 0x%04x, len: 0x%04x",
414                                                 packet_count, read_ofs,
415                                                 *(Uint16*)&card->ReceiveBuffer[read_ofs],
416                                                 *(Uint16*)&card->ReceiveBuffer[read_ofs+2]
417                                                 );
418                                         read_ofs += *(Uint16*)&card->ReceiveBuffer[read_ofs+2] + 4;
419                                         read_ofs = (read_ofs + 3) & ~3; // Align
420                                         
421                                 }
422                                 read_ofs = 0;
423                         }
424                         while( read_ofs < end_ofs )
425                         {
426                                 LOG("%i 0x%x Pkt Hdr: 0x%04x, len: 0x%04x",
427                                         packet_count, read_ofs,
428                                         *(Uint16*)&card->ReceiveBuffer[read_ofs],
429                                         *(Uint16*)&card->ReceiveBuffer[read_ofs+2]
430                                         );
431                                 packet_count ++;
432                                 read_ofs += *(Uint16*)&card->ReceiveBuffer[read_ofs+2] + 4;
433                                 read_ofs = (read_ofs + 3) & ~3; // Align
434                         }
435                         card->SeenOfs = read_ofs;
436                         
437                         LOG("packet_count = %i, read_ofs = 0x%x", packet_count, read_ofs);
438                         
439                         if( packet_count )
440                         {
441                                 if( Semaphore_Signal( &card->ReadSemaphore, packet_count ) != packet_count ) {
442                                         // Oops?
443                                 }
444                                 VFS_MarkAvaliable( &card->Node, 1 );
445                         }
446                         
447                         outw(card->IOBase + ISR, FLAG_ISR_ROK);
448                 }
449         }
450 }

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