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bellard80cabfa2004-03-14 12:20:30 +00001/*
2 * QEMU NE2000 emulation
3 *
4 * Copyright (c) 2003-2004 Fabrice Bellard
5 *
6 * Permission is hereby granted, free of charge, to any person obtaining a copy
7 * of this software and associated documentation files (the "Software"), to deal
8 * in the Software without restriction, including without limitation the rights
9 * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
10 * copies of the Software, and to permit persons to whom the Software is
11 * furnished to do so, subject to the following conditions:
12 *
13 * The above copyright notice and this permission notice shall be included in
14 * all copies or substantial portions of the Software.
15 *
16 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
17 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
18 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
19 * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
20 * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
21 * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
22 * THE SOFTWARE.
23 */
bellard80cabfa2004-03-14 12:20:30 +000024#include "vl.h"
25
26/* debug NE2000 card */
27//#define DEBUG_NE2000
28
bellardb41a2cd2004-03-14 21:46:48 +000029#define MAX_ETH_FRAME_SIZE 1514
bellard80cabfa2004-03-14 12:20:30 +000030
31#define E8390_CMD 0x00 /* The command register (for all pages) */
32/* Page 0 register offsets. */
33#define EN0_CLDALO 0x01 /* Low byte of current local dma addr RD */
34#define EN0_STARTPG 0x01 /* Starting page of ring bfr WR */
35#define EN0_CLDAHI 0x02 /* High byte of current local dma addr RD */
36#define EN0_STOPPG 0x02 /* Ending page +1 of ring bfr WR */
37#define EN0_BOUNDARY 0x03 /* Boundary page of ring bfr RD WR */
38#define EN0_TSR 0x04 /* Transmit status reg RD */
39#define EN0_TPSR 0x04 /* Transmit starting page WR */
40#define EN0_NCR 0x05 /* Number of collision reg RD */
41#define EN0_TCNTLO 0x05 /* Low byte of tx byte count WR */
42#define EN0_FIFO 0x06 /* FIFO RD */
43#define EN0_TCNTHI 0x06 /* High byte of tx byte count WR */
44#define EN0_ISR 0x07 /* Interrupt status reg RD WR */
45#define EN0_CRDALO 0x08 /* low byte of current remote dma address RD */
46#define EN0_RSARLO 0x08 /* Remote start address reg 0 */
47#define EN0_CRDAHI 0x09 /* high byte, current remote dma address RD */
48#define EN0_RSARHI 0x09 /* Remote start address reg 1 */
49#define EN0_RCNTLO 0x0a /* Remote byte count reg WR */
50#define EN0_RCNTHI 0x0b /* Remote byte count reg WR */
51#define EN0_RSR 0x0c /* rx status reg RD */
52#define EN0_RXCR 0x0c /* RX configuration reg WR */
53#define EN0_TXCR 0x0d /* TX configuration reg WR */
54#define EN0_COUNTER0 0x0d /* Rcv alignment error counter RD */
55#define EN0_DCFG 0x0e /* Data configuration reg WR */
56#define EN0_COUNTER1 0x0e /* Rcv CRC error counter RD */
57#define EN0_IMR 0x0f /* Interrupt mask reg WR */
58#define EN0_COUNTER2 0x0f /* Rcv missed frame error counter RD */
59
60#define EN1_PHYS 0x11
61#define EN1_CURPAG 0x17
62#define EN1_MULT 0x18
63
64/* Register accessed at EN_CMD, the 8390 base addr. */
65#define E8390_STOP 0x01 /* Stop and reset the chip */
66#define E8390_START 0x02 /* Start the chip, clear reset */
67#define E8390_TRANS 0x04 /* Transmit a frame */
68#define E8390_RREAD 0x08 /* Remote read */
69#define E8390_RWRITE 0x10 /* Remote write */
70#define E8390_NODMA 0x20 /* Remote DMA */
71#define E8390_PAGE0 0x00 /* Select page chip registers */
72#define E8390_PAGE1 0x40 /* using the two high-order bits */
73#define E8390_PAGE2 0x80 /* Page 3 is invalid. */
74
75/* Bits in EN0_ISR - Interrupt status register */
76#define ENISR_RX 0x01 /* Receiver, no error */
77#define ENISR_TX 0x02 /* Transmitter, no error */
78#define ENISR_RX_ERR 0x04 /* Receiver, with error */
79#define ENISR_TX_ERR 0x08 /* Transmitter, with error */
80#define ENISR_OVER 0x10 /* Receiver overwrote the ring */
81#define ENISR_COUNTERS 0x20 /* Counters need emptying */
82#define ENISR_RDC 0x40 /* remote dma complete */
83#define ENISR_RESET 0x80 /* Reset completed */
84#define ENISR_ALL 0x3f /* Interrupts we will enable */
85
86/* Bits in received packet status byte and EN0_RSR*/
87#define ENRSR_RXOK 0x01 /* Received a good packet */
88#define ENRSR_CRC 0x02 /* CRC error */
89#define ENRSR_FAE 0x04 /* frame alignment error */
90#define ENRSR_FO 0x08 /* FIFO overrun */
91#define ENRSR_MPA 0x10 /* missed pkt */
92#define ENRSR_PHY 0x20 /* physical/multicast address */
93#define ENRSR_DIS 0x40 /* receiver disable. set in monitor mode */
94#define ENRSR_DEF 0x80 /* deferring */
95
96/* Transmitted packet status, EN0_TSR. */
97#define ENTSR_PTX 0x01 /* Packet transmitted without error */
98#define ENTSR_ND 0x02 /* The transmit wasn't deferred. */
99#define ENTSR_COL 0x04 /* The transmit collided at least once. */
100#define ENTSR_ABT 0x08 /* The transmit collided 16 times, and was deferred. */
101#define ENTSR_CRS 0x10 /* The carrier sense was lost. */
102#define ENTSR_FU 0x20 /* A "FIFO underrun" occurred during transmit. */
103#define ENTSR_CDH 0x40 /* The collision detect "heartbeat" signal was lost. */
104#define ENTSR_OWC 0x80 /* There was an out-of-window collision. */
105
bellardee9dbb22004-04-21 23:29:33 +0000106#define NE2000_PMEM_SIZE (32*1024)
107#define NE2000_PMEM_START (16*1024)
108#define NE2000_PMEM_END (NE2000_PMEM_SIZE+NE2000_PMEM_START)
109#define NE2000_MEM_SIZE NE2000_PMEM_END
bellard80cabfa2004-03-14 12:20:30 +0000110
111typedef struct NE2000State {
112 uint8_t cmd;
113 uint32_t start;
114 uint32_t stop;
115 uint8_t boundary;
116 uint8_t tsr;
117 uint8_t tpsr;
118 uint16_t tcnt;
119 uint16_t rcnt;
120 uint32_t rsar;
bellard8d6c7eb2004-05-22 16:52:29 +0000121 uint8_t rsr;
bellard80cabfa2004-03-14 12:20:30 +0000122 uint8_t isr;
123 uint8_t dcfg;
124 uint8_t imr;
125 uint8_t phys[6]; /* mac address */
126 uint8_t curpag;
127 uint8_t mult[8]; /* multicast mask array */
128 int irq;
bellard4a9c9682004-05-20 12:43:25 +0000129 PCIDevice *pci_dev;
bellardb41a2cd2004-03-14 21:46:48 +0000130 NetDriverState *nd;
bellard80cabfa2004-03-14 12:20:30 +0000131 uint8_t mem[NE2000_MEM_SIZE];
132} NE2000State;
133
bellard80cabfa2004-03-14 12:20:30 +0000134static void ne2000_reset(NE2000State *s)
135{
136 int i;
137
138 s->isr = ENISR_RESET;
bellardb41a2cd2004-03-14 21:46:48 +0000139 memcpy(s->mem, s->nd->macaddr, 6);
bellard80cabfa2004-03-14 12:20:30 +0000140 s->mem[14] = 0x57;
141 s->mem[15] = 0x57;
142
143 /* duplicate prom data */
144 for(i = 15;i >= 0; i--) {
145 s->mem[2 * i] = s->mem[i];
146 s->mem[2 * i + 1] = s->mem[i];
147 }
148}
149
150static void ne2000_update_irq(NE2000State *s)
151{
152 int isr;
153 isr = s->isr & s->imr;
bellarda541f292004-04-12 20:39:29 +0000154#if defined(DEBUG_NE2000)
155 printf("NE2000: Set IRQ line %d to %d (%02x %02x)\n",
156 s->irq, isr ? 1 : 0, s->isr, s->imr);
157#endif
bellard4a9c9682004-05-20 12:43:25 +0000158 if (s->irq == 16) {
159 /* PCI irq */
160 pci_set_irq(s->pci_dev, 0, (isr != 0));
161 } else {
162 /* ISA irq */
163 pic_set_irq(s->irq, (isr != 0));
164 }
bellard80cabfa2004-03-14 12:20:30 +0000165}
166
bellardb41a2cd2004-03-14 21:46:48 +0000167/* return the max buffer size if the NE2000 can receive more data */
168static int ne2000_can_receive(void *opaque)
bellard80cabfa2004-03-14 12:20:30 +0000169{
bellardb41a2cd2004-03-14 21:46:48 +0000170 NE2000State *s = opaque;
bellard80cabfa2004-03-14 12:20:30 +0000171 int avail, index, boundary;
172
173 if (s->cmd & E8390_STOP)
174 return 0;
175 index = s->curpag << 8;
176 boundary = s->boundary << 8;
177 if (index < boundary)
178 avail = boundary - index;
179 else
180 avail = (s->stop - s->start) - (index - boundary);
181 if (avail < (MAX_ETH_FRAME_SIZE + 4))
182 return 0;
bellardb41a2cd2004-03-14 21:46:48 +0000183 return MAX_ETH_FRAME_SIZE;
bellard80cabfa2004-03-14 12:20:30 +0000184}
185
bellardb41a2cd2004-03-14 21:46:48 +0000186#define MIN_BUF_SIZE 60
187
188static void ne2000_receive(void *opaque, const uint8_t *buf, int size)
bellard80cabfa2004-03-14 12:20:30 +0000189{
bellardb41a2cd2004-03-14 21:46:48 +0000190 NE2000State *s = opaque;
bellard80cabfa2004-03-14 12:20:30 +0000191 uint8_t *p;
192 int total_len, next, avail, len, index;
bellardb41a2cd2004-03-14 21:46:48 +0000193 uint8_t buf1[60];
194
bellard80cabfa2004-03-14 12:20:30 +0000195#if defined(DEBUG_NE2000)
196 printf("NE2000: received len=%d\n", size);
197#endif
198
bellardb41a2cd2004-03-14 21:46:48 +0000199 /* if too small buffer, then expand it */
200 if (size < MIN_BUF_SIZE) {
201 memcpy(buf1, buf, size);
202 memset(buf1 + size, 0, MIN_BUF_SIZE - size);
203 buf = buf1;
204 size = MIN_BUF_SIZE;
205 }
206
bellard80cabfa2004-03-14 12:20:30 +0000207 index = s->curpag << 8;
208 /* 4 bytes for header */
209 total_len = size + 4;
210 /* address for next packet (4 bytes for CRC) */
211 next = index + ((total_len + 4 + 255) & ~0xff);
212 if (next >= s->stop)
213 next -= (s->stop - s->start);
214 /* prepare packet header */
215 p = s->mem + index;
bellard8d6c7eb2004-05-22 16:52:29 +0000216 s->rsr = ENRSR_RXOK; /* receive status */
217 /* XXX: check this */
218 if (buf[0] & 0x01)
219 s->rsr |= ENRSR_PHY;
220 p[0] = s->rsr;
bellard80cabfa2004-03-14 12:20:30 +0000221 p[1] = next >> 8;
222 p[2] = total_len;
223 p[3] = total_len >> 8;
224 index += 4;
225
226 /* write packet data */
227 while (size > 0) {
228 avail = s->stop - index;
229 len = size;
230 if (len > avail)
231 len = avail;
232 memcpy(s->mem + index, buf, len);
233 buf += len;
234 index += len;
235 if (index == s->stop)
236 index = s->start;
237 size -= len;
238 }
239 s->curpag = next >> 8;
bellard8d6c7eb2004-05-22 16:52:29 +0000240
bellard80cabfa2004-03-14 12:20:30 +0000241 /* now we can signal we have receive something */
242 s->isr |= ENISR_RX;
243 ne2000_update_irq(s);
244}
245
bellardb41a2cd2004-03-14 21:46:48 +0000246static void ne2000_ioport_write(void *opaque, uint32_t addr, uint32_t val)
bellard80cabfa2004-03-14 12:20:30 +0000247{
bellardb41a2cd2004-03-14 21:46:48 +0000248 NE2000State *s = opaque;
bellard40545f82005-04-10 14:51:41 +0000249 int offset, page, index;
bellard80cabfa2004-03-14 12:20:30 +0000250
251 addr &= 0xf;
252#ifdef DEBUG_NE2000
253 printf("NE2000: write addr=0x%x val=0x%02x\n", addr, val);
254#endif
255 if (addr == E8390_CMD) {
256 /* control register */
257 s->cmd = val;
258 if (val & E8390_START) {
bellardee9dbb22004-04-21 23:29:33 +0000259 s->isr &= ~ENISR_RESET;
bellard80cabfa2004-03-14 12:20:30 +0000260 /* test specific case: zero length transfert */
261 if ((val & (E8390_RREAD | E8390_RWRITE)) &&
262 s->rcnt == 0) {
263 s->isr |= ENISR_RDC;
264 ne2000_update_irq(s);
265 }
266 if (val & E8390_TRANS) {
bellard40545f82005-04-10 14:51:41 +0000267 index = (s->tpsr << 8);
268 /* XXX: next 2 lines are a hack to make netware 3.11 work */
269 if (index >= NE2000_PMEM_END)
270 index -= NE2000_PMEM_SIZE;
271 /* fail safe: check range on the transmitted length */
272 if (index + s->tcnt <= NE2000_PMEM_END) {
273 qemu_send_packet(s->nd, s->mem + index, s->tcnt);
274 }
bellard80cabfa2004-03-14 12:20:30 +0000275 /* signal end of transfert */
276 s->tsr = ENTSR_PTX;
277 s->isr |= ENISR_TX;
bellard40545f82005-04-10 14:51:41 +0000278 s->cmd &= ~E8390_TRANS;
bellard80cabfa2004-03-14 12:20:30 +0000279 ne2000_update_irq(s);
280 }
281 }
282 } else {
283 page = s->cmd >> 6;
284 offset = addr | (page << 4);
285 switch(offset) {
286 case EN0_STARTPG:
287 s->start = val << 8;
288 break;
289 case EN0_STOPPG:
290 s->stop = val << 8;
291 break;
292 case EN0_BOUNDARY:
293 s->boundary = val;
294 break;
295 case EN0_IMR:
296 s->imr = val;
297 ne2000_update_irq(s);
298 break;
299 case EN0_TPSR:
300 s->tpsr = val;
301 break;
302 case EN0_TCNTLO:
303 s->tcnt = (s->tcnt & 0xff00) | val;
304 break;
305 case EN0_TCNTHI:
306 s->tcnt = (s->tcnt & 0x00ff) | (val << 8);
307 break;
308 case EN0_RSARLO:
309 s->rsar = (s->rsar & 0xff00) | val;
310 break;
311 case EN0_RSARHI:
312 s->rsar = (s->rsar & 0x00ff) | (val << 8);
313 break;
314 case EN0_RCNTLO:
315 s->rcnt = (s->rcnt & 0xff00) | val;
316 break;
317 case EN0_RCNTHI:
318 s->rcnt = (s->rcnt & 0x00ff) | (val << 8);
319 break;
320 case EN0_DCFG:
321 s->dcfg = val;
322 break;
323 case EN0_ISR:
bellardee9dbb22004-04-21 23:29:33 +0000324 s->isr &= ~(val & 0x7f);
bellard80cabfa2004-03-14 12:20:30 +0000325 ne2000_update_irq(s);
326 break;
327 case EN1_PHYS ... EN1_PHYS + 5:
328 s->phys[offset - EN1_PHYS] = val;
329 break;
330 case EN1_CURPAG:
331 s->curpag = val;
332 break;
333 case EN1_MULT ... EN1_MULT + 7:
334 s->mult[offset - EN1_MULT] = val;
335 break;
336 }
337 }
338}
339
bellardb41a2cd2004-03-14 21:46:48 +0000340static uint32_t ne2000_ioport_read(void *opaque, uint32_t addr)
bellard80cabfa2004-03-14 12:20:30 +0000341{
bellardb41a2cd2004-03-14 21:46:48 +0000342 NE2000State *s = opaque;
bellard80cabfa2004-03-14 12:20:30 +0000343 int offset, page, ret;
344
345 addr &= 0xf;
346 if (addr == E8390_CMD) {
347 ret = s->cmd;
348 } else {
349 page = s->cmd >> 6;
350 offset = addr | (page << 4);
351 switch(offset) {
352 case EN0_TSR:
353 ret = s->tsr;
354 break;
355 case EN0_BOUNDARY:
356 ret = s->boundary;
357 break;
358 case EN0_ISR:
359 ret = s->isr;
360 break;
bellardee9dbb22004-04-21 23:29:33 +0000361 case EN0_RSARLO:
362 ret = s->rsar & 0x00ff;
363 break;
364 case EN0_RSARHI:
365 ret = s->rsar >> 8;
366 break;
bellard80cabfa2004-03-14 12:20:30 +0000367 case EN1_PHYS ... EN1_PHYS + 5:
368 ret = s->phys[offset - EN1_PHYS];
369 break;
370 case EN1_CURPAG:
371 ret = s->curpag;
372 break;
373 case EN1_MULT ... EN1_MULT + 7:
374 ret = s->mult[offset - EN1_MULT];
375 break;
bellard8d6c7eb2004-05-22 16:52:29 +0000376 case EN0_RSR:
377 ret = s->rsr;
378 break;
bellard80cabfa2004-03-14 12:20:30 +0000379 default:
380 ret = 0x00;
381 break;
382 }
383 }
384#ifdef DEBUG_NE2000
385 printf("NE2000: read addr=0x%x val=%02x\n", addr, ret);
386#endif
387 return ret;
388}
389
bellardee9dbb22004-04-21 23:29:33 +0000390static inline void ne2000_mem_writeb(NE2000State *s, uint32_t addr,
bellard69b91032004-05-18 23:05:28 +0000391 uint32_t val)
bellardee9dbb22004-04-21 23:29:33 +0000392{
393 if (addr < 32 ||
394 (addr >= NE2000_PMEM_START && addr < NE2000_MEM_SIZE)) {
395 s->mem[addr] = val;
396 }
397}
398
399static inline void ne2000_mem_writew(NE2000State *s, uint32_t addr,
400 uint32_t val)
401{
402 addr &= ~1; /* XXX: check exact behaviour if not even */
403 if (addr < 32 ||
404 (addr >= NE2000_PMEM_START && addr < NE2000_MEM_SIZE)) {
bellard69b91032004-05-18 23:05:28 +0000405 *(uint16_t *)(s->mem + addr) = cpu_to_le16(val);
406 }
407}
408
409static inline void ne2000_mem_writel(NE2000State *s, uint32_t addr,
410 uint32_t val)
411{
bellard57ccbab2004-06-07 20:45:42 +0000412 addr &= ~1; /* XXX: check exact behaviour if not even */
bellard69b91032004-05-18 23:05:28 +0000413 if (addr < 32 ||
414 (addr >= NE2000_PMEM_START && addr < NE2000_MEM_SIZE)) {
bellard57ccbab2004-06-07 20:45:42 +0000415 cpu_to_le32wu((uint32_t *)(s->mem + addr), val);
bellardee9dbb22004-04-21 23:29:33 +0000416 }
417}
418
419static inline uint32_t ne2000_mem_readb(NE2000State *s, uint32_t addr)
420{
421 if (addr < 32 ||
422 (addr >= NE2000_PMEM_START && addr < NE2000_MEM_SIZE)) {
423 return s->mem[addr];
424 } else {
425 return 0xff;
426 }
427}
428
429static inline uint32_t ne2000_mem_readw(NE2000State *s, uint32_t addr)
430{
431 addr &= ~1; /* XXX: check exact behaviour if not even */
432 if (addr < 32 ||
433 (addr >= NE2000_PMEM_START && addr < NE2000_MEM_SIZE)) {
bellard69b91032004-05-18 23:05:28 +0000434 return le16_to_cpu(*(uint16_t *)(s->mem + addr));
bellardee9dbb22004-04-21 23:29:33 +0000435 } else {
436 return 0xffff;
437 }
438}
439
bellard69b91032004-05-18 23:05:28 +0000440static inline uint32_t ne2000_mem_readl(NE2000State *s, uint32_t addr)
441{
bellard57ccbab2004-06-07 20:45:42 +0000442 addr &= ~1; /* XXX: check exact behaviour if not even */
bellard69b91032004-05-18 23:05:28 +0000443 if (addr < 32 ||
444 (addr >= NE2000_PMEM_START && addr < NE2000_MEM_SIZE)) {
bellard57ccbab2004-06-07 20:45:42 +0000445 return le32_to_cpupu((uint32_t *)(s->mem + addr));
bellard69b91032004-05-18 23:05:28 +0000446 } else {
447 return 0xffffffff;
448 }
449}
450
bellard3df3f6f2004-07-10 14:45:19 +0000451static inline void ne2000_dma_update(NE2000State *s, int len)
452{
453 s->rsar += len;
454 /* wrap */
455 /* XXX: check what to do if rsar > stop */
456 if (s->rsar == s->stop)
457 s->rsar = s->start;
458
459 if (s->rcnt <= len) {
460 s->rcnt = 0;
461 /* signal end of transfert */
462 s->isr |= ENISR_RDC;
463 ne2000_update_irq(s);
464 } else {
465 s->rcnt -= len;
466 }
467}
468
bellardb41a2cd2004-03-14 21:46:48 +0000469static void ne2000_asic_ioport_write(void *opaque, uint32_t addr, uint32_t val)
bellard80cabfa2004-03-14 12:20:30 +0000470{
bellardb41a2cd2004-03-14 21:46:48 +0000471 NE2000State *s = opaque;
bellard80cabfa2004-03-14 12:20:30 +0000472
473#ifdef DEBUG_NE2000
474 printf("NE2000: asic write val=0x%04x\n", val);
475#endif
bellardee9dbb22004-04-21 23:29:33 +0000476 if (s->rcnt == 0)
bellard3df3f6f2004-07-10 14:45:19 +0000477 return;
bellard80cabfa2004-03-14 12:20:30 +0000478 if (s->dcfg & 0x01) {
479 /* 16 bit access */
bellardee9dbb22004-04-21 23:29:33 +0000480 ne2000_mem_writew(s, s->rsar, val);
bellard3df3f6f2004-07-10 14:45:19 +0000481 ne2000_dma_update(s, 2);
bellard80cabfa2004-03-14 12:20:30 +0000482 } else {
483 /* 8 bit access */
bellardee9dbb22004-04-21 23:29:33 +0000484 ne2000_mem_writeb(s, s->rsar, val);
bellard3df3f6f2004-07-10 14:45:19 +0000485 ne2000_dma_update(s, 1);
bellard80cabfa2004-03-14 12:20:30 +0000486 }
487}
488
bellardb41a2cd2004-03-14 21:46:48 +0000489static uint32_t ne2000_asic_ioport_read(void *opaque, uint32_t addr)
bellard80cabfa2004-03-14 12:20:30 +0000490{
bellardb41a2cd2004-03-14 21:46:48 +0000491 NE2000State *s = opaque;
bellard80cabfa2004-03-14 12:20:30 +0000492 int ret;
493
bellard80cabfa2004-03-14 12:20:30 +0000494 if (s->dcfg & 0x01) {
495 /* 16 bit access */
bellardee9dbb22004-04-21 23:29:33 +0000496 ret = ne2000_mem_readw(s, s->rsar);
bellard3df3f6f2004-07-10 14:45:19 +0000497 ne2000_dma_update(s, 2);
bellard80cabfa2004-03-14 12:20:30 +0000498 } else {
499 /* 8 bit access */
bellardee9dbb22004-04-21 23:29:33 +0000500 ret = ne2000_mem_readb(s, s->rsar);
bellard3df3f6f2004-07-10 14:45:19 +0000501 ne2000_dma_update(s, 1);
bellard80cabfa2004-03-14 12:20:30 +0000502 }
503#ifdef DEBUG_NE2000
504 printf("NE2000: asic read val=0x%04x\n", ret);
505#endif
506 return ret;
507}
508
bellard69b91032004-05-18 23:05:28 +0000509static void ne2000_asic_ioport_writel(void *opaque, uint32_t addr, uint32_t val)
510{
511 NE2000State *s = opaque;
512
513#ifdef DEBUG_NE2000
514 printf("NE2000: asic writel val=0x%04x\n", val);
515#endif
516 if (s->rcnt == 0)
bellard3df3f6f2004-07-10 14:45:19 +0000517 return;
bellard69b91032004-05-18 23:05:28 +0000518 /* 32 bit access */
519 ne2000_mem_writel(s, s->rsar, val);
bellard3df3f6f2004-07-10 14:45:19 +0000520 ne2000_dma_update(s, 4);
bellard69b91032004-05-18 23:05:28 +0000521}
522
523static uint32_t ne2000_asic_ioport_readl(void *opaque, uint32_t addr)
524{
525 NE2000State *s = opaque;
526 int ret;
527
528 /* 32 bit access */
529 ret = ne2000_mem_readl(s, s->rsar);
bellard3df3f6f2004-07-10 14:45:19 +0000530 ne2000_dma_update(s, 4);
bellard69b91032004-05-18 23:05:28 +0000531#ifdef DEBUG_NE2000
532 printf("NE2000: asic readl val=0x%04x\n", ret);
533#endif
534 return ret;
535}
536
bellardb41a2cd2004-03-14 21:46:48 +0000537static void ne2000_reset_ioport_write(void *opaque, uint32_t addr, uint32_t val)
bellard80cabfa2004-03-14 12:20:30 +0000538{
539 /* nothing to do (end of reset pulse) */
540}
541
bellardb41a2cd2004-03-14 21:46:48 +0000542static uint32_t ne2000_reset_ioport_read(void *opaque, uint32_t addr)
bellard80cabfa2004-03-14 12:20:30 +0000543{
bellardb41a2cd2004-03-14 21:46:48 +0000544 NE2000State *s = opaque;
bellard80cabfa2004-03-14 12:20:30 +0000545 ne2000_reset(s);
546 return 0;
547}
548
bellard30ca2aa2004-10-03 13:56:00 +0000549static void ne2000_save(QEMUFile* f,void* opaque)
550{
551 NE2000State* s=(NE2000State*)opaque;
552
553 qemu_put_8s(f, &s->cmd);
554 qemu_put_be32s(f, &s->start);
555 qemu_put_be32s(f, &s->stop);
556 qemu_put_8s(f, &s->boundary);
557 qemu_put_8s(f, &s->tsr);
558 qemu_put_8s(f, &s->tpsr);
559 qemu_put_be16s(f, &s->tcnt);
560 qemu_put_be16s(f, &s->rcnt);
561 qemu_put_be32s(f, &s->rsar);
562 qemu_put_8s(f, &s->rsr);
563 qemu_put_8s(f, &s->isr);
564 qemu_put_8s(f, &s->dcfg);
565 qemu_put_8s(f, &s->imr);
566 qemu_put_buffer(f, s->phys, 6);
567 qemu_put_8s(f, &s->curpag);
568 qemu_put_buffer(f, s->mult, 8);
569 qemu_put_be32s(f, &s->irq);
570 qemu_put_buffer(f, s->mem, NE2000_MEM_SIZE);
571}
572
573static int ne2000_load(QEMUFile* f,void* opaque,int version_id)
574{
575 NE2000State* s=(NE2000State*)opaque;
576
577 if (version_id != 1)
578 return -EINVAL;
579
580 qemu_get_8s(f, &s->cmd);
581 qemu_get_be32s(f, &s->start);
582 qemu_get_be32s(f, &s->stop);
583 qemu_get_8s(f, &s->boundary);
584 qemu_get_8s(f, &s->tsr);
585 qemu_get_8s(f, &s->tpsr);
586 qemu_get_be16s(f, &s->tcnt);
587 qemu_get_be16s(f, &s->rcnt);
588 qemu_get_be32s(f, &s->rsar);
589 qemu_get_8s(f, &s->rsr);
590 qemu_get_8s(f, &s->isr);
591 qemu_get_8s(f, &s->dcfg);
592 qemu_get_8s(f, &s->imr);
593 qemu_get_buffer(f, s->phys, 6);
594 qemu_get_8s(f, &s->curpag);
595 qemu_get_buffer(f, s->mult, 8);
596 qemu_get_be32s(f, &s->irq);
597 qemu_get_buffer(f, s->mem, NE2000_MEM_SIZE);
598
599 return 0;
600}
601
bellard69b91032004-05-18 23:05:28 +0000602void isa_ne2000_init(int base, int irq, NetDriverState *nd)
bellard80cabfa2004-03-14 12:20:30 +0000603{
bellardb41a2cd2004-03-14 21:46:48 +0000604 NE2000State *s;
bellard80cabfa2004-03-14 12:20:30 +0000605
bellardb41a2cd2004-03-14 21:46:48 +0000606 s = qemu_mallocz(sizeof(NE2000State));
607 if (!s)
608 return;
609
610 register_ioport_write(base, 16, 1, ne2000_ioport_write, s);
611 register_ioport_read(base, 16, 1, ne2000_ioport_read, s);
bellard80cabfa2004-03-14 12:20:30 +0000612
bellardb41a2cd2004-03-14 21:46:48 +0000613 register_ioport_write(base + 0x10, 1, 1, ne2000_asic_ioport_write, s);
614 register_ioport_read(base + 0x10, 1, 1, ne2000_asic_ioport_read, s);
615 register_ioport_write(base + 0x10, 2, 2, ne2000_asic_ioport_write, s);
616 register_ioport_read(base + 0x10, 2, 2, ne2000_asic_ioport_read, s);
bellard80cabfa2004-03-14 12:20:30 +0000617
bellardb41a2cd2004-03-14 21:46:48 +0000618 register_ioport_write(base + 0x1f, 1, 1, ne2000_reset_ioport_write, s);
619 register_ioport_read(base + 0x1f, 1, 1, ne2000_reset_ioport_read, s);
bellard80cabfa2004-03-14 12:20:30 +0000620 s->irq = irq;
bellardb41a2cd2004-03-14 21:46:48 +0000621 s->nd = nd;
bellard80cabfa2004-03-14 12:20:30 +0000622
623 ne2000_reset(s);
bellardb41a2cd2004-03-14 21:46:48 +0000624
bellardee9dbb22004-04-21 23:29:33 +0000625 qemu_add_read_packet(nd, ne2000_can_receive, ne2000_receive, s);
bellard30ca2aa2004-10-03 13:56:00 +0000626
627 register_savevm("ne2000", 0, 1, ne2000_save, ne2000_load, s);
628
bellard80cabfa2004-03-14 12:20:30 +0000629}
bellard69b91032004-05-18 23:05:28 +0000630
631/***********************************************************/
632/* PCI NE2000 definitions */
633
634typedef struct PCINE2000State {
635 PCIDevice dev;
636 NE2000State ne2000;
637} PCINE2000State;
638
bellard69b91032004-05-18 23:05:28 +0000639static void ne2000_map(PCIDevice *pci_dev, int region_num,
640 uint32_t addr, uint32_t size, int type)
641{
642 PCINE2000State *d = (PCINE2000State *)pci_dev;
643 NE2000State *s = &d->ne2000;
644
645 register_ioport_write(addr, 16, 1, ne2000_ioport_write, s);
646 register_ioport_read(addr, 16, 1, ne2000_ioport_read, s);
647
648 register_ioport_write(addr + 0x10, 1, 1, ne2000_asic_ioport_write, s);
649 register_ioport_read(addr + 0x10, 1, 1, ne2000_asic_ioport_read, s);
650 register_ioport_write(addr + 0x10, 2, 2, ne2000_asic_ioport_write, s);
651 register_ioport_read(addr + 0x10, 2, 2, ne2000_asic_ioport_read, s);
652 register_ioport_write(addr + 0x10, 4, 4, ne2000_asic_ioport_writel, s);
653 register_ioport_read(addr + 0x10, 4, 4, ne2000_asic_ioport_readl, s);
654
655 register_ioport_write(addr + 0x1f, 1, 1, ne2000_reset_ioport_write, s);
656 register_ioport_read(addr + 0x1f, 1, 1, ne2000_reset_ioport_read, s);
657}
658
bellard46e50e92004-06-21 19:43:00 +0000659void pci_ne2000_init(PCIBus *bus, NetDriverState *nd)
bellard69b91032004-05-18 23:05:28 +0000660{
661 PCINE2000State *d;
662 NE2000State *s;
663 uint8_t *pci_conf;
664
bellard46e50e92004-06-21 19:43:00 +0000665 d = (PCINE2000State *)pci_register_device(bus,
666 "NE2000", sizeof(PCINE2000State),
667 -1,
bellard4a9c9682004-05-20 12:43:25 +0000668 NULL, NULL);
bellard69b91032004-05-18 23:05:28 +0000669 pci_conf = d->dev.config;
670 pci_conf[0x00] = 0xec; // Realtek 8029
671 pci_conf[0x01] = 0x10;
672 pci_conf[0x02] = 0x29;
673 pci_conf[0x03] = 0x80;
674 pci_conf[0x0a] = 0x00; // ethernet network controller
675 pci_conf[0x0b] = 0x02;
676 pci_conf[0x0e] = 0x00; // header_type
bellard4a9c9682004-05-20 12:43:25 +0000677 pci_conf[0x3d] = 1; // interrupt pin 0
bellard69b91032004-05-18 23:05:28 +0000678
bellard30ca2aa2004-10-03 13:56:00 +0000679 pci_register_io_region(&d->dev, 0, 0x100,
bellard69b91032004-05-18 23:05:28 +0000680 PCI_ADDRESS_SPACE_IO, ne2000_map);
681 s = &d->ne2000;
bellard4a9c9682004-05-20 12:43:25 +0000682 s->irq = 16; // PCI interrupt
683 s->pci_dev = (PCIDevice *)d;
bellard69b91032004-05-18 23:05:28 +0000684 s->nd = nd;
685 ne2000_reset(s);
686 qemu_add_read_packet(nd, ne2000_can_receive, ne2000_receive, s);
bellard30ca2aa2004-10-03 13:56:00 +0000687
688 /* XXX: instance number ? */
689 register_savevm("ne2000", 0, 1, ne2000_save, ne2000_load, s);
690 register_savevm("ne2000_pci", 0, 1, generic_pci_save, generic_pci_load,
691 &d->dev);
bellard69b91032004-05-18 23:05:28 +0000692}