xref: /qemu/hw/misc/macio/cuda.c (revision 1cdab104468d900c1ed0a2e689b944ec8e2d12d8)
1267002cdSbellard /*
23cbee15bSj_mayer  * QEMU PowerMac CUDA device support
3267002cdSbellard  *
43cbee15bSj_mayer  * Copyright (c) 2004-2007 Fabrice Bellard
53cbee15bSj_mayer  * Copyright (c) 2007 Jocelyn Mayer
6267002cdSbellard  *
7267002cdSbellard  * Permission is hereby granted, free of charge, to any person obtaining a copy
8267002cdSbellard  * of this software and associated documentation files (the "Software"), to deal
9267002cdSbellard  * in the Software without restriction, including without limitation the rights
10267002cdSbellard  * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
11267002cdSbellard  * copies of the Software, and to permit persons to whom the Software is
12267002cdSbellard  * furnished to do so, subject to the following conditions:
13267002cdSbellard  *
14267002cdSbellard  * The above copyright notice and this permission notice shall be included in
15267002cdSbellard  * all copies or substantial portions of the Software.
16267002cdSbellard  *
17267002cdSbellard  * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
18267002cdSbellard  * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
19267002cdSbellard  * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
20267002cdSbellard  * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
21267002cdSbellard  * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
22267002cdSbellard  * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
23267002cdSbellard  * THE SOFTWARE.
24267002cdSbellard  */
250d75590dSPeter Maydell #include "qemu/osdep.h"
2683c9f4caSPaolo Bonzini #include "hw/hw.h"
2783c9f4caSPaolo Bonzini #include "hw/ppc/mac.h"
280d09e41aSPaolo Bonzini #include "hw/input/adb.h"
291de7afc9SPaolo Bonzini #include "qemu/timer.h"
309c17d615SPaolo Bonzini #include "sysemu/sysemu.h"
31267002cdSbellard 
3261271e5cSbellard /* XXX: implement all timer modes */
3361271e5cSbellard 
34ea026b2fSblueswir1 /* debug CUDA */
35819e712bSbellard //#define DEBUG_CUDA
36ea026b2fSblueswir1 
37ea026b2fSblueswir1 /* debug CUDA packets */
38819e712bSbellard //#define DEBUG_CUDA_PACKET
39819e712bSbellard 
40ea026b2fSblueswir1 #ifdef DEBUG_CUDA
41001faf32SBlue Swirl #define CUDA_DPRINTF(fmt, ...)                                  \
42001faf32SBlue Swirl     do { printf("CUDA: " fmt , ## __VA_ARGS__); } while (0)
43ea026b2fSblueswir1 #else
44001faf32SBlue Swirl #define CUDA_DPRINTF(fmt, ...)
45ea026b2fSblueswir1 #endif
46ea026b2fSblueswir1 
47267002cdSbellard /* Bits in B data register: all active low */
48267002cdSbellard #define TREQ		0x08		/* Transfer request (input) */
49267002cdSbellard #define TACK		0x10		/* Transfer acknowledge (output) */
50267002cdSbellard #define TIP		0x20		/* Transfer in progress (output) */
51267002cdSbellard 
52267002cdSbellard /* Bits in ACR */
53267002cdSbellard #define SR_CTRL		0x1c		/* Shift register control bits */
54267002cdSbellard #define SR_EXT		0x0c		/* Shift on external clock */
55267002cdSbellard #define SR_OUT		0x10		/* Shift out if 1 */
56267002cdSbellard 
57267002cdSbellard /* Bits in IFR and IER */
58267002cdSbellard #define IER_SET		0x80		/* set bits in IER */
59267002cdSbellard #define IER_CLR		0		/* clear bits in IER */
60267002cdSbellard #define SR_INT		0x04		/* Shift register full/empty */
61d271ae36SMark Cave-Ayland #define SR_DATA_INT	0x08
62d271ae36SMark Cave-Ayland #define SR_CLOCK_INT	0x10
63267002cdSbellard #define T1_INT          0x40            /* Timer 1 interrupt */
6461271e5cSbellard #define T2_INT          0x20            /* Timer 2 interrupt */
65267002cdSbellard 
66267002cdSbellard /* Bits in ACR */
67267002cdSbellard #define T1MODE          0xc0            /* Timer 1 mode */
68267002cdSbellard #define T1MODE_CONT     0x40            /*  continuous interrupts */
69267002cdSbellard 
70267002cdSbellard /* commands (1st byte) */
71267002cdSbellard #define ADB_PACKET	0
72267002cdSbellard #define CUDA_PACKET	1
73267002cdSbellard #define ERROR_PACKET	2
74267002cdSbellard #define TIMER_PACKET	3
75267002cdSbellard #define POWER_PACKET	4
76267002cdSbellard #define MACIIC_PACKET	5
77267002cdSbellard #define PMU_PACKET	6
78267002cdSbellard 
79267002cdSbellard 
80267002cdSbellard /* CUDA commands (2nd byte) */
81267002cdSbellard #define CUDA_WARM_START			0x0
82267002cdSbellard #define CUDA_AUTOPOLL			0x1
83267002cdSbellard #define CUDA_GET_6805_ADDR		0x2
84267002cdSbellard #define CUDA_GET_TIME			0x3
85267002cdSbellard #define CUDA_GET_PRAM			0x7
86267002cdSbellard #define CUDA_SET_6805_ADDR		0x8
87267002cdSbellard #define CUDA_SET_TIME			0x9
88267002cdSbellard #define CUDA_POWERDOWN			0xa
89267002cdSbellard #define CUDA_POWERUP_TIME		0xb
90267002cdSbellard #define CUDA_SET_PRAM			0xc
91267002cdSbellard #define CUDA_MS_RESET			0xd
92267002cdSbellard #define CUDA_SEND_DFAC			0xe
93267002cdSbellard #define CUDA_BATTERY_SWAP_SENSE		0x10
94267002cdSbellard #define CUDA_RESET_SYSTEM		0x11
95267002cdSbellard #define CUDA_SET_IPL			0x12
96267002cdSbellard #define CUDA_FILE_SERVER_FLAG		0x13
97267002cdSbellard #define CUDA_SET_AUTO_RATE		0x14
98267002cdSbellard #define CUDA_GET_AUTO_RATE		0x16
99267002cdSbellard #define CUDA_SET_DEVICE_LIST		0x19
100267002cdSbellard #define CUDA_GET_DEVICE_LIST		0x1a
101267002cdSbellard #define CUDA_SET_ONE_SECOND_MODE	0x1b
102267002cdSbellard #define CUDA_SET_POWER_MESSAGES		0x21
103267002cdSbellard #define CUDA_GET_SET_IIC		0x22
104267002cdSbellard #define CUDA_WAKEUP			0x23
105267002cdSbellard #define CUDA_TIMER_TICKLE		0x24
106267002cdSbellard #define CUDA_COMBINED_FORMAT_IIC	0x25
107267002cdSbellard 
108267002cdSbellard #define CUDA_TIMER_FREQ (4700000 / 6)
109e2733d20Sbellard #define CUDA_ADB_POLL_FREQ 50
110267002cdSbellard 
111d7ce296fSbellard /* CUDA returns time_t's offset from Jan 1, 1904, not 1970 */
112d7ce296fSbellard #define RTC_OFFSET                      2082844800
113d7ce296fSbellard 
114b5ac0410SMark Cave-Ayland /* CUDA registers */
115b5ac0410SMark Cave-Ayland #define CUDA_REG_B       0x00
116b5ac0410SMark Cave-Ayland #define CUDA_REG_A       0x01
117b5ac0410SMark Cave-Ayland #define CUDA_REG_DIRB    0x02
118b5ac0410SMark Cave-Ayland #define CUDA_REG_DIRA    0x03
119b5ac0410SMark Cave-Ayland #define CUDA_REG_T1CL    0x04
120b5ac0410SMark Cave-Ayland #define CUDA_REG_T1CH    0x05
121b5ac0410SMark Cave-Ayland #define CUDA_REG_T1LL    0x06
122b5ac0410SMark Cave-Ayland #define CUDA_REG_T1LH    0x07
123b5ac0410SMark Cave-Ayland #define CUDA_REG_T2CL    0x08
124b5ac0410SMark Cave-Ayland #define CUDA_REG_T2CH    0x09
125b5ac0410SMark Cave-Ayland #define CUDA_REG_SR      0x0a
126b5ac0410SMark Cave-Ayland #define CUDA_REG_ACR     0x0b
127b5ac0410SMark Cave-Ayland #define CUDA_REG_PCR     0x0c
128b5ac0410SMark Cave-Ayland #define CUDA_REG_IFR     0x0d
129b5ac0410SMark Cave-Ayland #define CUDA_REG_IER     0x0e
130b5ac0410SMark Cave-Ayland #define CUDA_REG_ANH     0x0f
131b5ac0410SMark Cave-Ayland 
132267002cdSbellard static void cuda_update(CUDAState *s);
133267002cdSbellard static void cuda_receive_packet_from_host(CUDAState *s,
134267002cdSbellard                                           const uint8_t *data, int len);
135819e712bSbellard static void cuda_timer_update(CUDAState *s, CUDATimer *ti,
136819e712bSbellard                               int64_t current_time);
137267002cdSbellard 
138267002cdSbellard static void cuda_update_irq(CUDAState *s)
139267002cdSbellard {
140a53cfdccSMark Cave-Ayland     if (s->ifr & s->ier & (SR_INT | T1_INT | T2_INT)) {
141d537cf6cSpbrook         qemu_irq_raise(s->irq);
142267002cdSbellard     } else {
143d537cf6cSpbrook         qemu_irq_lower(s->irq);
144267002cdSbellard     }
145267002cdSbellard }
146267002cdSbellard 
147eda14abbSMark Cave-Ayland static uint64_t get_tb(uint64_t time, uint64_t freq)
148b981289cSAlexander Graf {
149eda14abbSMark Cave-Ayland     return muldiv64(time, freq, get_ticks_per_sec());
150b981289cSAlexander Graf }
151b981289cSAlexander Graf 
1520174adb6SMark Cave-Ayland static unsigned int get_counter(CUDATimer *ti)
153267002cdSbellard {
154267002cdSbellard     int64_t d;
155267002cdSbellard     unsigned int counter;
156b981289cSAlexander Graf     uint64_t tb_diff;
157eda14abbSMark Cave-Ayland     uint64_t current_time = qemu_clock_get_ns(QEMU_CLOCK_VIRTUAL);
158267002cdSbellard 
159b981289cSAlexander Graf     /* Reverse of the tb calculation algorithm that Mac OS X uses on bootup. */
1600174adb6SMark Cave-Ayland     tb_diff = get_tb(current_time, ti->frequency) - ti->load_time;
1610174adb6SMark Cave-Ayland     d = (tb_diff * 0xBF401675E5DULL) / (ti->frequency << 24);
162b981289cSAlexander Graf 
1630174adb6SMark Cave-Ayland     if (ti->index == 0) {
16461271e5cSbellard         /* the timer goes down from latch to -1 (period of latch + 2) */
1650174adb6SMark Cave-Ayland         if (d <= (ti->counter_value + 1)) {
1660174adb6SMark Cave-Ayland             counter = (ti->counter_value - d) & 0xffff;
167267002cdSbellard         } else {
1680174adb6SMark Cave-Ayland             counter = (d - (ti->counter_value + 1)) % (ti->latch + 2);
1690174adb6SMark Cave-Ayland             counter = (ti->latch - counter) & 0xffff;
17061271e5cSbellard         }
17161271e5cSbellard     } else {
1720174adb6SMark Cave-Ayland         counter = (ti->counter_value - d) & 0xffff;
173267002cdSbellard     }
174267002cdSbellard     return counter;
175267002cdSbellard }
176267002cdSbellard 
177819e712bSbellard static void set_counter(CUDAState *s, CUDATimer *ti, unsigned int val)
178267002cdSbellard {
179a53cfdccSMark Cave-Ayland     CUDA_DPRINTF("T%d.counter=%d\n", 1 + ti->index, val);
180eda14abbSMark Cave-Ayland     ti->load_time = get_tb(qemu_clock_get_ns(QEMU_CLOCK_VIRTUAL),
181eda14abbSMark Cave-Ayland                            s->frequency);
182819e712bSbellard     ti->counter_value = val;
183819e712bSbellard     cuda_timer_update(s, ti, ti->load_time);
184267002cdSbellard }
185267002cdSbellard 
186267002cdSbellard static int64_t get_next_irq_time(CUDATimer *s, int64_t current_time)
187267002cdSbellard {
18861271e5cSbellard     int64_t d, next_time;
18961271e5cSbellard     unsigned int counter;
19061271e5cSbellard 
191267002cdSbellard     /* current counter value */
192267002cdSbellard     d = muldiv64(current_time - s->load_time,
1936ee093c9SJuan Quintela                  CUDA_TIMER_FREQ, get_ticks_per_sec());
19461271e5cSbellard     /* the timer goes down from latch to -1 (period of latch + 2) */
19561271e5cSbellard     if (d <= (s->counter_value + 1)) {
19661271e5cSbellard         counter = (s->counter_value - d) & 0xffff;
19761271e5cSbellard     } else {
19861271e5cSbellard         counter = (d - (s->counter_value + 1)) % (s->latch + 2);
19961271e5cSbellard         counter = (s->latch - counter) & 0xffff;
20061271e5cSbellard     }
20161271e5cSbellard 
20261271e5cSbellard     /* Note: we consider the irq is raised on 0 */
20361271e5cSbellard     if (counter == 0xffff) {
20461271e5cSbellard         next_time = d + s->latch + 1;
20561271e5cSbellard     } else if (counter == 0) {
20661271e5cSbellard         next_time = d + s->latch + 2;
20761271e5cSbellard     } else {
20861271e5cSbellard         next_time = d + counter;
209267002cdSbellard     }
210ea026b2fSblueswir1     CUDA_DPRINTF("latch=%d counter=%" PRId64 " delta_next=%" PRId64 "\n",
211819e712bSbellard                  s->latch, d, next_time - d);
2126ee093c9SJuan Quintela     next_time = muldiv64(next_time, get_ticks_per_sec(), CUDA_TIMER_FREQ) +
213267002cdSbellard         s->load_time;
214267002cdSbellard     if (next_time <= current_time)
215267002cdSbellard         next_time = current_time + 1;
216267002cdSbellard     return next_time;
217267002cdSbellard }
218267002cdSbellard 
219819e712bSbellard static void cuda_timer_update(CUDAState *s, CUDATimer *ti,
220819e712bSbellard                               int64_t current_time)
221819e712bSbellard {
222819e712bSbellard     if (!ti->timer)
223819e712bSbellard         return;
224a53cfdccSMark Cave-Ayland     if (ti->index == 0 && (s->acr & T1MODE) != T1MODE_CONT) {
225bc72ad67SAlex Bligh         timer_del(ti->timer);
226819e712bSbellard     } else {
227819e712bSbellard         ti->next_irq_time = get_next_irq_time(ti, current_time);
228bc72ad67SAlex Bligh         timer_mod(ti->timer, ti->next_irq_time);
229819e712bSbellard     }
230819e712bSbellard }
231819e712bSbellard 
232267002cdSbellard static void cuda_timer1(void *opaque)
233267002cdSbellard {
234267002cdSbellard     CUDAState *s = opaque;
235267002cdSbellard     CUDATimer *ti = &s->timers[0];
236267002cdSbellard 
237819e712bSbellard     cuda_timer_update(s, ti, ti->next_irq_time);
238267002cdSbellard     s->ifr |= T1_INT;
239267002cdSbellard     cuda_update_irq(s);
240267002cdSbellard }
241267002cdSbellard 
242a53cfdccSMark Cave-Ayland static void cuda_timer2(void *opaque)
243a53cfdccSMark Cave-Ayland {
244a53cfdccSMark Cave-Ayland     CUDAState *s = opaque;
245a53cfdccSMark Cave-Ayland     CUDATimer *ti = &s->timers[1];
246a53cfdccSMark Cave-Ayland 
247a53cfdccSMark Cave-Ayland     cuda_timer_update(s, ti, ti->next_irq_time);
248a53cfdccSMark Cave-Ayland     s->ifr |= T2_INT;
249a53cfdccSMark Cave-Ayland     cuda_update_irq(s);
250a53cfdccSMark Cave-Ayland }
251a53cfdccSMark Cave-Ayland 
252cffc331aSMark Cave-Ayland static void cuda_set_sr_int(void *opaque)
253cffc331aSMark Cave-Ayland {
254cffc331aSMark Cave-Ayland     CUDAState *s = opaque;
255cffc331aSMark Cave-Ayland 
256cffc331aSMark Cave-Ayland     CUDA_DPRINTF("CUDA: %s:%d\n", __func__, __LINE__);
257cffc331aSMark Cave-Ayland     s->ifr |= SR_INT;
258cffc331aSMark Cave-Ayland     cuda_update_irq(s);
259cffc331aSMark Cave-Ayland }
260cffc331aSMark Cave-Ayland 
261cffc331aSMark Cave-Ayland static void cuda_delay_set_sr_int(CUDAState *s)
262cffc331aSMark Cave-Ayland {
263cffc331aSMark Cave-Ayland     int64_t expire;
264cffc331aSMark Cave-Ayland 
265cffc331aSMark Cave-Ayland     if (s->dirb == 0xff) {
266cffc331aSMark Cave-Ayland         /* Not in Mac OS, fire the IRQ directly */
267cffc331aSMark Cave-Ayland         cuda_set_sr_int(s);
268cffc331aSMark Cave-Ayland         return;
269cffc331aSMark Cave-Ayland     }
270cffc331aSMark Cave-Ayland 
271cffc331aSMark Cave-Ayland     CUDA_DPRINTF("CUDA: %s:%d\n", __func__, __LINE__);
272cffc331aSMark Cave-Ayland 
273cffc331aSMark Cave-Ayland     expire = qemu_clock_get_ns(QEMU_CLOCK_VIRTUAL) + 300 * SCALE_US;
274cffc331aSMark Cave-Ayland     timer_mod(s->sr_delay_timer, expire);
275cffc331aSMark Cave-Ayland }
276cffc331aSMark Cave-Ayland 
277a8170e5eSAvi Kivity static uint32_t cuda_readb(void *opaque, hwaddr addr)
278267002cdSbellard {
279267002cdSbellard     CUDAState *s = opaque;
280267002cdSbellard     uint32_t val;
281267002cdSbellard 
282267002cdSbellard     addr = (addr >> 9) & 0xf;
283267002cdSbellard     switch(addr) {
284b5ac0410SMark Cave-Ayland     case CUDA_REG_B:
285267002cdSbellard         val = s->b;
286267002cdSbellard         break;
287b5ac0410SMark Cave-Ayland     case CUDA_REG_A:
288267002cdSbellard         val = s->a;
289267002cdSbellard         break;
290b5ac0410SMark Cave-Ayland     case CUDA_REG_DIRB:
291267002cdSbellard         val = s->dirb;
292267002cdSbellard         break;
293b5ac0410SMark Cave-Ayland     case CUDA_REG_DIRA:
294267002cdSbellard         val = s->dira;
295267002cdSbellard         break;
296b5ac0410SMark Cave-Ayland     case CUDA_REG_T1CL:
297267002cdSbellard         val = get_counter(&s->timers[0]) & 0xff;
298267002cdSbellard         s->ifr &= ~T1_INT;
299267002cdSbellard         cuda_update_irq(s);
300267002cdSbellard         break;
301b5ac0410SMark Cave-Ayland     case CUDA_REG_T1CH:
302267002cdSbellard         val = get_counter(&s->timers[0]) >> 8;
303267002cdSbellard         cuda_update_irq(s);
304267002cdSbellard         break;
305b5ac0410SMark Cave-Ayland     case CUDA_REG_T1LL:
306267002cdSbellard         val = s->timers[0].latch & 0xff;
307267002cdSbellard         break;
308b5ac0410SMark Cave-Ayland     case CUDA_REG_T1LH:
30961271e5cSbellard         /* XXX: check this */
310267002cdSbellard         val = (s->timers[0].latch >> 8) & 0xff;
311267002cdSbellard         break;
312b5ac0410SMark Cave-Ayland     case CUDA_REG_T2CL:
313267002cdSbellard         val = get_counter(&s->timers[1]) & 0xff;
31461271e5cSbellard         s->ifr &= ~T2_INT;
315a53cfdccSMark Cave-Ayland         cuda_update_irq(s);
316267002cdSbellard         break;
317b5ac0410SMark Cave-Ayland     case CUDA_REG_T2CH:
318267002cdSbellard         val = get_counter(&s->timers[1]) >> 8;
319267002cdSbellard         break;
320b5ac0410SMark Cave-Ayland     case CUDA_REG_SR:
321819e712bSbellard         val = s->sr;
322d271ae36SMark Cave-Ayland         s->ifr &= ~(SR_INT | SR_CLOCK_INT | SR_DATA_INT);
323819e712bSbellard         cuda_update_irq(s);
324267002cdSbellard         break;
325b5ac0410SMark Cave-Ayland     case CUDA_REG_ACR:
326267002cdSbellard         val = s->acr;
327267002cdSbellard         break;
328b5ac0410SMark Cave-Ayland     case CUDA_REG_PCR:
329267002cdSbellard         val = s->pcr;
330267002cdSbellard         break;
331b5ac0410SMark Cave-Ayland     case CUDA_REG_IFR:
332267002cdSbellard         val = s->ifr;
333b5ac0410SMark Cave-Ayland         if (s->ifr & s->ier) {
334b7c7b181Sbellard             val |= 0x80;
335b5ac0410SMark Cave-Ayland         }
336267002cdSbellard         break;
337b5ac0410SMark Cave-Ayland     case CUDA_REG_IER:
338b7c7b181Sbellard         val = s->ier | 0x80;
339267002cdSbellard         break;
340267002cdSbellard     default:
341b5ac0410SMark Cave-Ayland     case CUDA_REG_ANH:
342267002cdSbellard         val = s->anh;
343267002cdSbellard         break;
344267002cdSbellard     }
345b5ac0410SMark Cave-Ayland     if (addr != CUDA_REG_IFR || val != 0) {
346ea026b2fSblueswir1         CUDA_DPRINTF("read: reg=0x%x val=%02x\n", (int)addr, val);
3473c83eb4fSBlue Swirl     }
3483c83eb4fSBlue Swirl 
349267002cdSbellard     return val;
350267002cdSbellard }
351267002cdSbellard 
352a8170e5eSAvi Kivity static void cuda_writeb(void *opaque, hwaddr addr, uint32_t val)
353267002cdSbellard {
354267002cdSbellard     CUDAState *s = opaque;
355267002cdSbellard 
356267002cdSbellard     addr = (addr >> 9) & 0xf;
357ea026b2fSblueswir1     CUDA_DPRINTF("write: reg=0x%x val=%02x\n", (int)addr, val);
358267002cdSbellard 
359267002cdSbellard     switch(addr) {
360b5ac0410SMark Cave-Ayland     case CUDA_REG_B:
361267002cdSbellard         s->b = val;
362267002cdSbellard         cuda_update(s);
363267002cdSbellard         break;
364b5ac0410SMark Cave-Ayland     case CUDA_REG_A:
365267002cdSbellard         s->a = val;
366267002cdSbellard         break;
367b5ac0410SMark Cave-Ayland     case CUDA_REG_DIRB:
368267002cdSbellard         s->dirb = val;
369267002cdSbellard         break;
370b5ac0410SMark Cave-Ayland     case CUDA_REG_DIRA:
371267002cdSbellard         s->dira = val;
372267002cdSbellard         break;
373b5ac0410SMark Cave-Ayland     case CUDA_REG_T1CL:
37461271e5cSbellard         s->timers[0].latch = (s->timers[0].latch & 0xff00) | val;
375bc72ad67SAlex Bligh         cuda_timer_update(s, &s->timers[0], qemu_clock_get_ns(QEMU_CLOCK_VIRTUAL));
376267002cdSbellard         break;
377b5ac0410SMark Cave-Ayland     case CUDA_REG_T1CH:
37861271e5cSbellard         s->timers[0].latch = (s->timers[0].latch & 0xff) | (val << 8);
37961271e5cSbellard         s->ifr &= ~T1_INT;
38061271e5cSbellard         set_counter(s, &s->timers[0], s->timers[0].latch);
381267002cdSbellard         break;
382b5ac0410SMark Cave-Ayland     case CUDA_REG_T1LL:
383267002cdSbellard         s->timers[0].latch = (s->timers[0].latch & 0xff00) | val;
384bc72ad67SAlex Bligh         cuda_timer_update(s, &s->timers[0], qemu_clock_get_ns(QEMU_CLOCK_VIRTUAL));
385267002cdSbellard         break;
386b5ac0410SMark Cave-Ayland     case CUDA_REG_T1LH:
387267002cdSbellard         s->timers[0].latch = (s->timers[0].latch & 0xff) | (val << 8);
38861271e5cSbellard         s->ifr &= ~T1_INT;
389bc72ad67SAlex Bligh         cuda_timer_update(s, &s->timers[0], qemu_clock_get_ns(QEMU_CLOCK_VIRTUAL));
390267002cdSbellard         break;
391b5ac0410SMark Cave-Ayland     case CUDA_REG_T2CL:
392a53cfdccSMark Cave-Ayland         s->timers[1].latch = (s->timers[1].latch & 0xff00) | val;
393267002cdSbellard         break;
394b5ac0410SMark Cave-Ayland     case CUDA_REG_T2CH:
395a53cfdccSMark Cave-Ayland         /* To ensure T2 generates an interrupt on zero crossing with the
396a53cfdccSMark Cave-Ayland            common timer code, write the value directly from the latch to
397a53cfdccSMark Cave-Ayland            the counter */
398a53cfdccSMark Cave-Ayland         s->timers[1].latch = (s->timers[1].latch & 0xff) | (val << 8);
399a53cfdccSMark Cave-Ayland         s->ifr &= ~T2_INT;
400a53cfdccSMark Cave-Ayland         set_counter(s, &s->timers[1], s->timers[1].latch);
401267002cdSbellard         break;
402b5ac0410SMark Cave-Ayland     case CUDA_REG_SR:
403267002cdSbellard         s->sr = val;
404267002cdSbellard         break;
405b5ac0410SMark Cave-Ayland     case CUDA_REG_ACR:
406267002cdSbellard         s->acr = val;
407bc72ad67SAlex Bligh         cuda_timer_update(s, &s->timers[0], qemu_clock_get_ns(QEMU_CLOCK_VIRTUAL));
408267002cdSbellard         cuda_update(s);
409267002cdSbellard         break;
410b5ac0410SMark Cave-Ayland     case CUDA_REG_PCR:
411267002cdSbellard         s->pcr = val;
412267002cdSbellard         break;
413b5ac0410SMark Cave-Ayland     case CUDA_REG_IFR:
414267002cdSbellard         /* reset bits */
415267002cdSbellard         s->ifr &= ~val;
416267002cdSbellard         cuda_update_irq(s);
417267002cdSbellard         break;
418b5ac0410SMark Cave-Ayland     case CUDA_REG_IER:
419267002cdSbellard         if (val & IER_SET) {
420267002cdSbellard             /* set bits */
421267002cdSbellard             s->ier |= val & 0x7f;
422267002cdSbellard         } else {
423267002cdSbellard             /* reset bits */
424267002cdSbellard             s->ier &= ~val;
425267002cdSbellard         }
426267002cdSbellard         cuda_update_irq(s);
427267002cdSbellard         break;
428267002cdSbellard     default:
429b5ac0410SMark Cave-Ayland     case CUDA_REG_ANH:
430267002cdSbellard         s->anh = val;
431267002cdSbellard         break;
432267002cdSbellard     }
433267002cdSbellard }
434267002cdSbellard 
435267002cdSbellard /* NOTE: TIP and TREQ are negated */
436267002cdSbellard static void cuda_update(CUDAState *s)
437267002cdSbellard {
438819e712bSbellard     int packet_received, len;
439819e712bSbellard 
440819e712bSbellard     packet_received = 0;
441819e712bSbellard     if (!(s->b & TIP)) {
442819e712bSbellard         /* transfer requested from host */
443267002cdSbellard 
444267002cdSbellard         if (s->acr & SR_OUT) {
445267002cdSbellard             /* data output */
446819e712bSbellard             if ((s->b & (TACK | TIP)) != (s->last_b & (TACK | TIP))) {
447267002cdSbellard                 if (s->data_out_index < sizeof(s->data_out)) {
448ea026b2fSblueswir1                     CUDA_DPRINTF("send: %02x\n", s->sr);
449267002cdSbellard                     s->data_out[s->data_out_index++] = s->sr;
450cffc331aSMark Cave-Ayland                     cuda_delay_set_sr_int(s);
451819e712bSbellard                 }
452819e712bSbellard             }
453819e712bSbellard         } else {
454819e712bSbellard             if (s->data_in_index < s->data_in_size) {
455819e712bSbellard                 /* data input */
456819e712bSbellard                 if ((s->b & (TACK | TIP)) != (s->last_b & (TACK | TIP))) {
457819e712bSbellard                     s->sr = s->data_in[s->data_in_index++];
458ea026b2fSblueswir1                     CUDA_DPRINTF("recv: %02x\n", s->sr);
459819e712bSbellard                     /* indicate end of transfer */
460819e712bSbellard                     if (s->data_in_index >= s->data_in_size) {
461819e712bSbellard                         s->b = (s->b | TREQ);
462267002cdSbellard                     }
463cffc331aSMark Cave-Ayland                     cuda_delay_set_sr_int(s);
464267002cdSbellard                 }
465267002cdSbellard             }
466267002cdSbellard         }
467819e712bSbellard     } else {
468819e712bSbellard         /* no transfer requested: handle sync case */
469819e712bSbellard         if ((s->last_b & TIP) && (s->b & TACK) != (s->last_b & TACK)) {
470819e712bSbellard             /* update TREQ state each time TACK change state */
471819e712bSbellard             if (s->b & TACK)
472819e712bSbellard                 s->b = (s->b | TREQ);
473819e712bSbellard             else
474819e712bSbellard                 s->b = (s->b & ~TREQ);
475cffc331aSMark Cave-Ayland             cuda_delay_set_sr_int(s);
476819e712bSbellard         } else {
477819e712bSbellard             if (!(s->last_b & TIP)) {
478e91c8a77Sths                 /* handle end of host to cuda transfer */
479819e712bSbellard                 packet_received = (s->data_out_index > 0);
480e91c8a77Sths                 /* always an IRQ at the end of transfer */
481cffc331aSMark Cave-Ayland                 cuda_delay_set_sr_int(s);
482819e712bSbellard             }
483819e712bSbellard             /* signal if there is data to read */
484819e712bSbellard             if (s->data_in_index < s->data_in_size) {
485819e712bSbellard                 s->b = (s->b & ~TREQ);
486819e712bSbellard             }
487819e712bSbellard         }
488819e712bSbellard     }
489819e712bSbellard 
490267002cdSbellard     s->last_acr = s->acr;
491267002cdSbellard     s->last_b = s->b;
492819e712bSbellard 
493819e712bSbellard     /* NOTE: cuda_receive_packet_from_host() can call cuda_update()
494819e712bSbellard        recursively */
495819e712bSbellard     if (packet_received) {
496819e712bSbellard         len = s->data_out_index;
497819e712bSbellard         s->data_out_index = 0;
498819e712bSbellard         cuda_receive_packet_from_host(s, s->data_out, len);
499819e712bSbellard     }
500267002cdSbellard }
501267002cdSbellard 
502267002cdSbellard static void cuda_send_packet_to_host(CUDAState *s,
503267002cdSbellard                                      const uint8_t *data, int len)
504267002cdSbellard {
505819e712bSbellard #ifdef DEBUG_CUDA_PACKET
506819e712bSbellard     {
507819e712bSbellard         int i;
508819e712bSbellard         printf("cuda_send_packet_to_host:\n");
509819e712bSbellard         for(i = 0; i < len; i++)
510819e712bSbellard             printf(" %02x", data[i]);
511819e712bSbellard         printf("\n");
512819e712bSbellard     }
513819e712bSbellard #endif
514267002cdSbellard     memcpy(s->data_in, data, len);
515267002cdSbellard     s->data_in_size = len;
516267002cdSbellard     s->data_in_index = 0;
517267002cdSbellard     cuda_update(s);
518cffc331aSMark Cave-Ayland     cuda_delay_set_sr_int(s);
519267002cdSbellard }
520267002cdSbellard 
5217db4eea6Sbellard static void cuda_adb_poll(void *opaque)
522e2733d20Sbellard {
523e2733d20Sbellard     CUDAState *s = opaque;
524e2733d20Sbellard     uint8_t obuf[ADB_MAX_OUT_LEN + 2];
525e2733d20Sbellard     int olen;
526e2733d20Sbellard 
527293c867dSAndreas Färber     olen = adb_poll(&s->adb_bus, obuf + 2);
528e2733d20Sbellard     if (olen > 0) {
529e2733d20Sbellard         obuf[0] = ADB_PACKET;
530e2733d20Sbellard         obuf[1] = 0x40; /* polled data */
531e2733d20Sbellard         cuda_send_packet_to_host(s, obuf, olen + 2);
532e2733d20Sbellard     }
533bc72ad67SAlex Bligh     timer_mod(s->adb_poll_timer,
534bc72ad67SAlex Bligh                    qemu_clock_get_ns(QEMU_CLOCK_VIRTUAL) +
5356ee093c9SJuan Quintela                    (get_ticks_per_sec() / CUDA_ADB_POLL_FREQ));
536e2733d20Sbellard }
537e2733d20Sbellard 
538d20efaebSHervé Poussineau /* description of commands */
539d20efaebSHervé Poussineau typedef struct CudaCommand {
540d20efaebSHervé Poussineau     uint8_t command;
541d20efaebSHervé Poussineau     const char *name;
542d20efaebSHervé Poussineau     bool (*handler)(CUDAState *s,
543d20efaebSHervé Poussineau                     const uint8_t *in_args, int in_len,
544d20efaebSHervé Poussineau                     uint8_t *out_args, int *out_len);
545d20efaebSHervé Poussineau } CudaCommand;
546d20efaebSHervé Poussineau 
547*1cdab104SHervé Poussineau static bool cuda_cmd_autopoll(CUDAState *s,
548*1cdab104SHervé Poussineau                               const uint8_t *in_data, int in_len,
549*1cdab104SHervé Poussineau                               uint8_t *out_data, int *out_len)
550*1cdab104SHervé Poussineau {
551*1cdab104SHervé Poussineau     int autopoll;
552*1cdab104SHervé Poussineau 
553*1cdab104SHervé Poussineau     if (in_len != 1) {
554*1cdab104SHervé Poussineau         return false;
555*1cdab104SHervé Poussineau     }
556*1cdab104SHervé Poussineau 
557*1cdab104SHervé Poussineau     autopoll = (in_data[0] != 0);
558*1cdab104SHervé Poussineau     if (autopoll != s->autopoll) {
559*1cdab104SHervé Poussineau         s->autopoll = autopoll;
560*1cdab104SHervé Poussineau         if (autopoll) {
561*1cdab104SHervé Poussineau             timer_mod(s->adb_poll_timer,
562*1cdab104SHervé Poussineau                       qemu_clock_get_ns(QEMU_CLOCK_VIRTUAL) +
563*1cdab104SHervé Poussineau                       (get_ticks_per_sec() / CUDA_ADB_POLL_FREQ));
564*1cdab104SHervé Poussineau         } else {
565*1cdab104SHervé Poussineau             timer_del(s->adb_poll_timer);
566*1cdab104SHervé Poussineau         }
567*1cdab104SHervé Poussineau     }
568*1cdab104SHervé Poussineau     return true;
569*1cdab104SHervé Poussineau }
570*1cdab104SHervé Poussineau 
571d20efaebSHervé Poussineau static const CudaCommand handlers[] = {
572*1cdab104SHervé Poussineau     { CUDA_AUTOPOLL, "AUTOPOLL", cuda_cmd_autopoll },
573d20efaebSHervé Poussineau };
574d20efaebSHervé Poussineau 
575267002cdSbellard static void cuda_receive_packet(CUDAState *s,
576267002cdSbellard                                 const uint8_t *data, int len)
577267002cdSbellard {
5784202e63cSMark Cave-Ayland     uint8_t obuf[16] = { CUDA_PACKET, 0, data[0] };
579d20efaebSHervé Poussineau     int i, out_len = 0;
5805703c174Saurel32     uint32_t ti;
581267002cdSbellard 
582d20efaebSHervé Poussineau     for (i = 0; i < ARRAY_SIZE(handlers); i++) {
583d20efaebSHervé Poussineau         const CudaCommand *desc = &handlers[i];
584d20efaebSHervé Poussineau         if (desc->command == data[0]) {
585d20efaebSHervé Poussineau             CUDA_DPRINTF("handling command %s\n", desc->name);
586d20efaebSHervé Poussineau             out_len = 0;
587d20efaebSHervé Poussineau             if (desc->handler(s, data + 1, len - 1, obuf + 3, &out_len)) {
588d20efaebSHervé Poussineau                 cuda_send_packet_to_host(s, obuf, 3 + out_len);
589d20efaebSHervé Poussineau             } else {
590d20efaebSHervé Poussineau                 qemu_log_mask(LOG_GUEST_ERROR,
591d20efaebSHervé Poussineau                               "CUDA: %s: wrong parameters %d\n",
592d20efaebSHervé Poussineau                               desc->name, len);
593d20efaebSHervé Poussineau                 obuf[0] = ERROR_PACKET;
594d20efaebSHervé Poussineau                 obuf[1] = 0x5; /* bad parameters */
595d20efaebSHervé Poussineau                 obuf[2] = CUDA_PACKET;
596d20efaebSHervé Poussineau                 obuf[3] = data[0];
597d20efaebSHervé Poussineau                 cuda_send_packet_to_host(s, obuf, 4);
598d20efaebSHervé Poussineau             }
599d20efaebSHervé Poussineau             return;
600d20efaebSHervé Poussineau         }
601d20efaebSHervé Poussineau     }
602d20efaebSHervé Poussineau 
603267002cdSbellard     switch(data[0]) {
604f1f46f74SMark Cave-Ayland     case CUDA_GET_6805_ADDR:
605f1f46f74SMark Cave-Ayland         cuda_send_packet_to_host(s, obuf, 3);
6060e8176e8SHervé Poussineau         return;
607dccfafc4Sbellard     case CUDA_SET_TIME:
6085703c174Saurel32         ti = (((uint32_t)data[1]) << 24) + (((uint32_t)data[2]) << 16) + (((uint32_t)data[3]) << 8) + data[4];
609bc72ad67SAlex Bligh         s->tick_offset = ti - (qemu_clock_get_ns(QEMU_CLOCK_VIRTUAL) / get_ticks_per_sec());
6105703c174Saurel32         cuda_send_packet_to_host(s, obuf, 3);
6110e8176e8SHervé Poussineau         return;
6125703c174Saurel32     case CUDA_GET_TIME:
613bc72ad67SAlex Bligh         ti = s->tick_offset + (qemu_clock_get_ns(QEMU_CLOCK_VIRTUAL) / get_ticks_per_sec());
614267002cdSbellard         obuf[3] = ti >> 24;
615267002cdSbellard         obuf[4] = ti >> 16;
616267002cdSbellard         obuf[5] = ti >> 8;
617267002cdSbellard         obuf[6] = ti;
618267002cdSbellard         cuda_send_packet_to_host(s, obuf, 7);
6190e8176e8SHervé Poussineau         return;
620267002cdSbellard     case CUDA_FILE_SERVER_FLAG:
621267002cdSbellard     case CUDA_SET_DEVICE_LIST:
622267002cdSbellard     case CUDA_SET_AUTO_RATE:
623267002cdSbellard     case CUDA_SET_POWER_MESSAGES:
6244202e63cSMark Cave-Ayland         cuda_send_packet_to_host(s, obuf, 3);
6250e8176e8SHervé Poussineau         return;
626d7ce296fSbellard     case CUDA_POWERDOWN:
6274202e63cSMark Cave-Ayland         cuda_send_packet_to_host(s, obuf, 3);
628d7ce296fSbellard         qemu_system_shutdown_request();
6290e8176e8SHervé Poussineau         return;
6300686970fSj_mayer     case CUDA_RESET_SYSTEM:
6314202e63cSMark Cave-Ayland         cuda_send_packet_to_host(s, obuf, 3);
6320686970fSj_mayer         qemu_system_reset_request();
6330e8176e8SHervé Poussineau         return;
634ce8d3b64SMark Cave-Ayland     case CUDA_COMBINED_FORMAT_IIC:
635ce8d3b64SMark Cave-Ayland         obuf[0] = ERROR_PACKET;
636ce8d3b64SMark Cave-Ayland         obuf[1] = 0x5;
637ce8d3b64SMark Cave-Ayland         obuf[2] = CUDA_PACKET;
638ce8d3b64SMark Cave-Ayland         obuf[3] = data[0];
639ce8d3b64SMark Cave-Ayland         cuda_send_packet_to_host(s, obuf, 4);
6400e8176e8SHervé Poussineau         return;
641ce8d3b64SMark Cave-Ayland     case CUDA_GET_SET_IIC:
642ce8d3b64SMark Cave-Ayland         if (len == 4) {
643ce8d3b64SMark Cave-Ayland             cuda_send_packet_to_host(s, obuf, 3);
644ce8d3b64SMark Cave-Ayland         } else {
645ce8d3b64SMark Cave-Ayland             obuf[0] = ERROR_PACKET;
646ce8d3b64SMark Cave-Ayland             obuf[1] = 0x2;
647ce8d3b64SMark Cave-Ayland             obuf[2] = CUDA_PACKET;
648ce8d3b64SMark Cave-Ayland             obuf[3] = data[0];
649ce8d3b64SMark Cave-Ayland             cuda_send_packet_to_host(s, obuf, 4);
650ce8d3b64SMark Cave-Ayland         }
6510e8176e8SHervé Poussineau         return;
652267002cdSbellard     default:
6530e8176e8SHervé Poussineau         break;
6540e8176e8SHervé Poussineau     }
6550e8176e8SHervé Poussineau 
6560e8176e8SHervé Poussineau     qemu_log_mask(LOG_GUEST_ERROR, "CUDA: unknown command 0x%02x\n", data[0]);
657ff472a5bSAlyssa Milburn     obuf[0] = ERROR_PACKET;
6580e8176e8SHervé Poussineau     obuf[1] = 0x2; /* unknown command */
659ff472a5bSAlyssa Milburn     obuf[2] = CUDA_PACKET;
660ff472a5bSAlyssa Milburn     obuf[3] = data[0];
661ff472a5bSAlyssa Milburn     cuda_send_packet_to_host(s, obuf, 4);
662267002cdSbellard }
663267002cdSbellard 
664267002cdSbellard static void cuda_receive_packet_from_host(CUDAState *s,
665267002cdSbellard                                           const uint8_t *data, int len)
666267002cdSbellard {
667819e712bSbellard #ifdef DEBUG_CUDA_PACKET
668819e712bSbellard     {
669819e712bSbellard         int i;
670cadae95fSbellard         printf("cuda_receive_packet_from_host:\n");
671819e712bSbellard         for(i = 0; i < len; i++)
672819e712bSbellard             printf(" %02x", data[i]);
673819e712bSbellard         printf("\n");
674819e712bSbellard     }
675819e712bSbellard #endif
676267002cdSbellard     switch(data[0]) {
677267002cdSbellard     case ADB_PACKET:
678e2733d20Sbellard         {
6796729aa40SMark Cave-Ayland             uint8_t obuf[ADB_MAX_OUT_LEN + 3];
680e2733d20Sbellard             int olen;
681293c867dSAndreas Färber             olen = adb_request(&s->adb_bus, obuf + 2, data + 1, len - 1);
68238f0b147Sbellard             if (olen > 0) {
683e2733d20Sbellard                 obuf[0] = ADB_PACKET;
684e2733d20Sbellard                 obuf[1] = 0x00;
6856729aa40SMark Cave-Ayland                 cuda_send_packet_to_host(s, obuf, olen + 2);
686e2733d20Sbellard             } else {
68738f0b147Sbellard                 /* error */
688e2733d20Sbellard                 obuf[0] = ADB_PACKET;
68938f0b147Sbellard                 obuf[1] = -olen;
6906729aa40SMark Cave-Ayland                 obuf[2] = data[1];
69138f0b147Sbellard                 olen = 0;
6926729aa40SMark Cave-Ayland                 cuda_send_packet_to_host(s, obuf, olen + 3);
693e2733d20Sbellard             }
694e2733d20Sbellard         }
695267002cdSbellard         break;
696267002cdSbellard     case CUDA_PACKET:
697267002cdSbellard         cuda_receive_packet(s, data + 1, len - 1);
698267002cdSbellard         break;
699267002cdSbellard     }
700267002cdSbellard }
701267002cdSbellard 
702a8170e5eSAvi Kivity static void cuda_writew (void *opaque, hwaddr addr, uint32_t value)
703267002cdSbellard {
704267002cdSbellard }
705267002cdSbellard 
706a8170e5eSAvi Kivity static void cuda_writel (void *opaque, hwaddr addr, uint32_t value)
707267002cdSbellard {
708267002cdSbellard }
709267002cdSbellard 
710a8170e5eSAvi Kivity static uint32_t cuda_readw (void *opaque, hwaddr addr)
711267002cdSbellard {
712267002cdSbellard     return 0;
713267002cdSbellard }
714267002cdSbellard 
715a8170e5eSAvi Kivity static uint32_t cuda_readl (void *opaque, hwaddr addr)
716267002cdSbellard {
717267002cdSbellard     return 0;
718267002cdSbellard }
719267002cdSbellard 
720a348f108SStefan Weil static const MemoryRegionOps cuda_ops = {
721ea0a7eb4SAlexander Graf     .old_mmio = {
722ea0a7eb4SAlexander Graf         .write = {
723ea0a7eb4SAlexander Graf             cuda_writeb,
724ea0a7eb4SAlexander Graf             cuda_writew,
725ea0a7eb4SAlexander Graf             cuda_writel,
726ea0a7eb4SAlexander Graf         },
727ea0a7eb4SAlexander Graf         .read = {
728ea0a7eb4SAlexander Graf             cuda_readb,
729ea0a7eb4SAlexander Graf             cuda_readw,
730ea0a7eb4SAlexander Graf             cuda_readl,
731ea0a7eb4SAlexander Graf         },
732ea0a7eb4SAlexander Graf     },
733ea0a7eb4SAlexander Graf     .endianness = DEVICE_NATIVE_ENDIAN,
734267002cdSbellard };
735267002cdSbellard 
736c0a93a9eSJuan Quintela static bool cuda_timer_exist(void *opaque, int version_id)
7379b64997fSblueswir1 {
738c0a93a9eSJuan Quintela     CUDATimer *s = opaque;
739c0a93a9eSJuan Quintela 
740c0a93a9eSJuan Quintela     return s->timer != NULL;
7419b64997fSblueswir1 }
7429b64997fSblueswir1 
743c0a93a9eSJuan Quintela static const VMStateDescription vmstate_cuda_timer = {
744c0a93a9eSJuan Quintela     .name = "cuda_timer",
745c0a93a9eSJuan Quintela     .version_id = 0,
746c0a93a9eSJuan Quintela     .minimum_version_id = 0,
747c0a93a9eSJuan Quintela     .fields = (VMStateField[]) {
748c0a93a9eSJuan Quintela         VMSTATE_UINT16(latch, CUDATimer),
749c0a93a9eSJuan Quintela         VMSTATE_UINT16(counter_value, CUDATimer),
750c0a93a9eSJuan Quintela         VMSTATE_INT64(load_time, CUDATimer),
751c0a93a9eSJuan Quintela         VMSTATE_INT64(next_irq_time, CUDATimer),
752e720677eSPaolo Bonzini         VMSTATE_TIMER_PTR_TEST(timer, CUDATimer, cuda_timer_exist),
753c0a93a9eSJuan Quintela         VMSTATE_END_OF_LIST()
7549b64997fSblueswir1     }
755c0a93a9eSJuan Quintela };
7569b64997fSblueswir1 
757c0a93a9eSJuan Quintela static const VMStateDescription vmstate_cuda = {
758c0a93a9eSJuan Quintela     .name = "cuda",
759ff57eae5SMark Cave-Ayland     .version_id = 3,
760ff57eae5SMark Cave-Ayland     .minimum_version_id = 3,
761c0a93a9eSJuan Quintela     .fields = (VMStateField[]) {
762c0a93a9eSJuan Quintela         VMSTATE_UINT8(a, CUDAState),
763c0a93a9eSJuan Quintela         VMSTATE_UINT8(b, CUDAState),
764ff57eae5SMark Cave-Ayland         VMSTATE_UINT8(last_b, CUDAState),
765c0a93a9eSJuan Quintela         VMSTATE_UINT8(dira, CUDAState),
766c0a93a9eSJuan Quintela         VMSTATE_UINT8(dirb, CUDAState),
767c0a93a9eSJuan Quintela         VMSTATE_UINT8(sr, CUDAState),
768c0a93a9eSJuan Quintela         VMSTATE_UINT8(acr, CUDAState),
769ff57eae5SMark Cave-Ayland         VMSTATE_UINT8(last_acr, CUDAState),
770c0a93a9eSJuan Quintela         VMSTATE_UINT8(pcr, CUDAState),
771c0a93a9eSJuan Quintela         VMSTATE_UINT8(ifr, CUDAState),
772c0a93a9eSJuan Quintela         VMSTATE_UINT8(ier, CUDAState),
773c0a93a9eSJuan Quintela         VMSTATE_UINT8(anh, CUDAState),
774c0a93a9eSJuan Quintela         VMSTATE_INT32(data_in_size, CUDAState),
775c0a93a9eSJuan Quintela         VMSTATE_INT32(data_in_index, CUDAState),
776c0a93a9eSJuan Quintela         VMSTATE_INT32(data_out_index, CUDAState),
777c0a93a9eSJuan Quintela         VMSTATE_UINT8(autopoll, CUDAState),
778c0a93a9eSJuan Quintela         VMSTATE_BUFFER(data_in, CUDAState),
779c0a93a9eSJuan Quintela         VMSTATE_BUFFER(data_out, CUDAState),
780c0a93a9eSJuan Quintela         VMSTATE_UINT32(tick_offset, CUDAState),
781c0a93a9eSJuan Quintela         VMSTATE_STRUCT_ARRAY(timers, CUDAState, 2, 1,
782c0a93a9eSJuan Quintela                              vmstate_cuda_timer, CUDATimer),
7836cb577ddSMark Cave-Ayland         VMSTATE_TIMER_PTR(adb_poll_timer, CUDAState),
784ff57eae5SMark Cave-Ayland         VMSTATE_TIMER_PTR(sr_delay_timer, CUDAState),
785c0a93a9eSJuan Quintela         VMSTATE_END_OF_LIST()
7869b64997fSblueswir1     }
787c0a93a9eSJuan Quintela };
7889b64997fSblueswir1 
78945fa67fbSAndreas Färber static void cuda_reset(DeviceState *dev)
7906e6b7363Sblueswir1 {
79145fa67fbSAndreas Färber     CUDAState *s = CUDA(dev);
7926e6b7363Sblueswir1 
7936e6b7363Sblueswir1     s->b = 0;
7946e6b7363Sblueswir1     s->a = 0;
795cffc331aSMark Cave-Ayland     s->dirb = 0xff;
7966e6b7363Sblueswir1     s->dira = 0;
7976e6b7363Sblueswir1     s->sr = 0;
7986e6b7363Sblueswir1     s->acr = 0;
7996e6b7363Sblueswir1     s->pcr = 0;
8006e6b7363Sblueswir1     s->ifr = 0;
8016e6b7363Sblueswir1     s->ier = 0;
8026e6b7363Sblueswir1     //    s->ier = T1_INT | SR_INT;
8036e6b7363Sblueswir1     s->anh = 0;
8046e6b7363Sblueswir1     s->data_in_size = 0;
8056e6b7363Sblueswir1     s->data_in_index = 0;
8066e6b7363Sblueswir1     s->data_out_index = 0;
8076e6b7363Sblueswir1     s->autopoll = 0;
8086e6b7363Sblueswir1 
8096e6b7363Sblueswir1     s->timers[0].latch = 0xffff;
8106e6b7363Sblueswir1     set_counter(s, &s->timers[0], 0xffff);
8116e6b7363Sblueswir1 
812a53cfdccSMark Cave-Ayland     s->timers[1].latch = 0xffff;
813cffc331aSMark Cave-Ayland 
814cffc331aSMark Cave-Ayland     s->sr_delay_timer = timer_new_ns(QEMU_CLOCK_VIRTUAL, cuda_set_sr_int, s);
8156e6b7363Sblueswir1 }
8166e6b7363Sblueswir1 
81745fa67fbSAndreas Färber static void cuda_realizefn(DeviceState *dev, Error **errp)
818267002cdSbellard {
81945fa67fbSAndreas Färber     CUDAState *s = CUDA(dev);
8205703c174Saurel32     struct tm tm;
821267002cdSbellard 
822bc72ad67SAlex Bligh     s->timers[0].timer = timer_new_ns(QEMU_CLOCK_VIRTUAL, cuda_timer1, s);
823b981289cSAlexander Graf     s->timers[0].frequency = s->frequency;
824a53cfdccSMark Cave-Ayland     s->timers[1].timer = timer_new_ns(QEMU_CLOCK_VIRTUAL, cuda_timer2, s);
825a53cfdccSMark Cave-Ayland     s->timers[1].frequency = (SCALE_US * 6000) / 4700;
82661271e5cSbellard 
8279c554c1cSaurel32     qemu_get_timedate(&tm, 0);
8289c554c1cSaurel32     s->tick_offset = (uint32_t)mktimegm(&tm) + RTC_OFFSET;
8295703c174Saurel32 
830bc72ad67SAlex Bligh     s->adb_poll_timer = timer_new_ns(QEMU_CLOCK_VIRTUAL, cuda_adb_poll, s);
831267002cdSbellard }
83245fa67fbSAndreas Färber 
83345fa67fbSAndreas Färber static void cuda_initfn(Object *obj)
83445fa67fbSAndreas Färber {
83545fa67fbSAndreas Färber     SysBusDevice *d = SYS_BUS_DEVICE(obj);
83645fa67fbSAndreas Färber     CUDAState *s = CUDA(obj);
83745fa67fbSAndreas Färber     int i;
83845fa67fbSAndreas Färber 
83981e0ab48SPaolo Bonzini     memory_region_init_io(&s->mem, obj, &cuda_ops, s, "cuda", 0x2000);
84045fa67fbSAndreas Färber     sysbus_init_mmio(d, &s->mem);
84145fa67fbSAndreas Färber     sysbus_init_irq(d, &s->irq);
84245fa67fbSAndreas Färber 
84345fa67fbSAndreas Färber     for (i = 0; i < ARRAY_SIZE(s->timers); i++) {
84445fa67fbSAndreas Färber         s->timers[i].index = i;
84545fa67fbSAndreas Färber     }
84684ede329SAndreas Färber 
847fb17dfe0SAndreas Färber     qbus_create_inplace(&s->adb_bus, sizeof(s->adb_bus), TYPE_ADB_BUS,
848fb17dfe0SAndreas Färber                         DEVICE(obj), "adb.0");
84945fa67fbSAndreas Färber }
85045fa67fbSAndreas Färber 
851b981289cSAlexander Graf static Property cuda_properties[] = {
852b981289cSAlexander Graf     DEFINE_PROP_UINT64("frequency", CUDAState, frequency, 0),
853b981289cSAlexander Graf     DEFINE_PROP_END_OF_LIST()
854b981289cSAlexander Graf };
855b981289cSAlexander Graf 
85645fa67fbSAndreas Färber static void cuda_class_init(ObjectClass *oc, void *data)
85745fa67fbSAndreas Färber {
85845fa67fbSAndreas Färber     DeviceClass *dc = DEVICE_CLASS(oc);
85945fa67fbSAndreas Färber 
86045fa67fbSAndreas Färber     dc->realize = cuda_realizefn;
86145fa67fbSAndreas Färber     dc->reset = cuda_reset;
86245fa67fbSAndreas Färber     dc->vmsd = &vmstate_cuda;
863b981289cSAlexander Graf     dc->props = cuda_properties;
864599d7326SLaurent Vivier     set_bit(DEVICE_CATEGORY_BRIDGE, dc->categories);
86545fa67fbSAndreas Färber }
86645fa67fbSAndreas Färber 
86745fa67fbSAndreas Färber static const TypeInfo cuda_type_info = {
86845fa67fbSAndreas Färber     .name = TYPE_CUDA,
86945fa67fbSAndreas Färber     .parent = TYPE_SYS_BUS_DEVICE,
87045fa67fbSAndreas Färber     .instance_size = sizeof(CUDAState),
87145fa67fbSAndreas Färber     .instance_init = cuda_initfn,
87245fa67fbSAndreas Färber     .class_init = cuda_class_init,
87345fa67fbSAndreas Färber };
87445fa67fbSAndreas Färber 
87545fa67fbSAndreas Färber static void cuda_register_types(void)
87645fa67fbSAndreas Färber {
87745fa67fbSAndreas Färber     type_register_static(&cuda_type_info);
87845fa67fbSAndreas Färber }
87945fa67fbSAndreas Färber 
88045fa67fbSAndreas Färber type_init(cuda_register_types)
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