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Commit | Line | Data |
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80cabfad | 1 | /* |
81174dae | 2 | * QEMU 16550A UART emulation |
5fafdf24 | 3 | * |
80cabfad | 4 | * Copyright (c) 2003-2004 Fabrice Bellard |
81174dae | 5 | * Copyright (c) 2008 Citrix Systems, Inc. |
5fafdf24 | 6 | * |
80cabfad FB |
7 | * Permission is hereby granted, free of charge, to any person obtaining a copy |
8 | * of this software and associated documentation files (the "Software"), to deal | |
9 | * in the Software without restriction, including without limitation the rights | |
10 | * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell | |
11 | * copies of the Software, and to permit persons to whom the Software is | |
12 | * furnished to do so, subject to the following conditions: | |
13 | * | |
14 | * The above copyright notice and this permission notice shall be included in | |
15 | * all copies or substantial portions of the Software. | |
16 | * | |
17 | * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR | |
18 | * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, | |
19 | * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL | |
20 | * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER | |
21 | * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, | |
22 | * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN | |
23 | * THE SOFTWARE. | |
24 | */ | |
87ecb68b PB |
25 | #include "hw.h" |
26 | #include "qemu-char.h" | |
27 | #include "isa.h" | |
28 | #include "pc.h" | |
6936bfe5 | 29 | #include "qemu-timer.h" |
80cabfad FB |
30 | |
31 | //#define DEBUG_SERIAL | |
32 | ||
33 | #define UART_LCR_DLAB 0x80 /* Divisor latch access bit */ | |
34 | ||
35 | #define UART_IER_MSI 0x08 /* Enable Modem status interrupt */ | |
36 | #define UART_IER_RLSI 0x04 /* Enable receiver line status interrupt */ | |
37 | #define UART_IER_THRI 0x02 /* Enable Transmitter holding register int. */ | |
38 | #define UART_IER_RDI 0x01 /* Enable receiver data interrupt */ | |
39 | ||
40 | #define UART_IIR_NO_INT 0x01 /* No interrupts pending */ | |
41 | #define UART_IIR_ID 0x06 /* Mask for the interrupt ID */ | |
42 | ||
43 | #define UART_IIR_MSI 0x00 /* Modem status interrupt */ | |
44 | #define UART_IIR_THRI 0x02 /* Transmitter holding register empty */ | |
45 | #define UART_IIR_RDI 0x04 /* Receiver data interrupt */ | |
46 | #define UART_IIR_RLSI 0x06 /* Receiver line status interrupt */ | |
81174dae AL |
47 | #define UART_IIR_CTI 0x0C /* Character Timeout Indication */ |
48 | ||
49 | #define UART_IIR_FENF 0x80 /* Fifo enabled, but not functionning */ | |
50 | #define UART_IIR_FE 0xC0 /* Fifo enabled */ | |
80cabfad FB |
51 | |
52 | /* | |
53 | * These are the definitions for the Modem Control Register | |
54 | */ | |
55 | #define UART_MCR_LOOP 0x10 /* Enable loopback test mode */ | |
56 | #define UART_MCR_OUT2 0x08 /* Out2 complement */ | |
57 | #define UART_MCR_OUT1 0x04 /* Out1 complement */ | |
58 | #define UART_MCR_RTS 0x02 /* RTS complement */ | |
59 | #define UART_MCR_DTR 0x01 /* DTR complement */ | |
60 | ||
61 | /* | |
62 | * These are the definitions for the Modem Status Register | |
63 | */ | |
64 | #define UART_MSR_DCD 0x80 /* Data Carrier Detect */ | |
65 | #define UART_MSR_RI 0x40 /* Ring Indicator */ | |
66 | #define UART_MSR_DSR 0x20 /* Data Set Ready */ | |
67 | #define UART_MSR_CTS 0x10 /* Clear to Send */ | |
68 | #define UART_MSR_DDCD 0x08 /* Delta DCD */ | |
69 | #define UART_MSR_TERI 0x04 /* Trailing edge ring indicator */ | |
70 | #define UART_MSR_DDSR 0x02 /* Delta DSR */ | |
71 | #define UART_MSR_DCTS 0x01 /* Delta CTS */ | |
72 | #define UART_MSR_ANY_DELTA 0x0F /* Any of the delta bits! */ | |
73 | ||
74 | #define UART_LSR_TEMT 0x40 /* Transmitter empty */ | |
75 | #define UART_LSR_THRE 0x20 /* Transmit-hold-register empty */ | |
76 | #define UART_LSR_BI 0x10 /* Break interrupt indicator */ | |
77 | #define UART_LSR_FE 0x08 /* Frame error indicator */ | |
78 | #define UART_LSR_PE 0x04 /* Parity error indicator */ | |
79 | #define UART_LSR_OE 0x02 /* Overrun error indicator */ | |
80 | #define UART_LSR_DR 0x01 /* Receiver data ready */ | |
81174dae | 81 | #define UART_LSR_INT_ANY 0x1E /* Any of the lsr-interrupt-triggering status bits */ |
80cabfad | 82 | |
81174dae AL |
83 | /* Interrupt trigger levels. The byte-counts are for 16550A - in newer UARTs the byte-count for each ITL is higher. */ |
84 | ||
85 | #define UART_FCR_ITL_1 0x00 /* 1 byte ITL */ | |
86 | #define UART_FCR_ITL_2 0x40 /* 4 bytes ITL */ | |
87 | #define UART_FCR_ITL_3 0x80 /* 8 bytes ITL */ | |
88 | #define UART_FCR_ITL_4 0xC0 /* 14 bytes ITL */ | |
89 | ||
90 | #define UART_FCR_DMS 0x08 /* DMA Mode Select */ | |
91 | #define UART_FCR_XFR 0x04 /* XMIT Fifo Reset */ | |
92 | #define UART_FCR_RFR 0x02 /* RCVR Fifo Reset */ | |
93 | #define UART_FCR_FE 0x01 /* FIFO Enable */ | |
94 | ||
95 | #define UART_FIFO_LENGTH 16 /* 16550A Fifo Length */ | |
96 | ||
97 | #define XMIT_FIFO 0 | |
98 | #define RECV_FIFO 1 | |
99 | #define MAX_XMIT_RETRY 4 | |
100 | ||
101 | struct SerialFIFO { | |
102 | uint8_t data[UART_FIFO_LENGTH]; | |
103 | uint8_t count; | |
104 | uint8_t itl; /* Interrupt Trigger Level */ | |
105 | uint8_t tail; | |
106 | uint8_t head; | |
107 | } typedef SerialFIFO; | |
6936bfe5 | 108 | |
b41a2cd1 | 109 | struct SerialState { |
508d92d0 | 110 | uint16_t divider; |
80cabfad | 111 | uint8_t rbr; /* receive register */ |
81174dae AL |
112 | uint8_t thr; /* transmit holding register */ |
113 | uint8_t tsr; /* transmit shift register */ | |
80cabfad FB |
114 | uint8_t ier; |
115 | uint8_t iir; /* read only */ | |
116 | uint8_t lcr; | |
117 | uint8_t mcr; | |
118 | uint8_t lsr; /* read only */ | |
3e749fe1 | 119 | uint8_t msr; /* read only */ |
80cabfad | 120 | uint8_t scr; |
81174dae | 121 | uint8_t fcr; |
80cabfad FB |
122 | /* NOTE: this hidden state is necessary for tx irq generation as |
123 | it can be reset while reading iir */ | |
124 | int thr_ipending; | |
d537cf6c | 125 | qemu_irq irq; |
82c643ff | 126 | CharDriverState *chr; |
f8d179e3 | 127 | int last_break_enable; |
71db710f | 128 | target_phys_addr_t base; |
e5d13e2f | 129 | int it_shift; |
b6cd0ea1 | 130 | int baudbase; |
81174dae AL |
131 | int tsr_retry; |
132 | ||
133 | uint64_t last_xmit_ts; /* Time when the last byte was successfully sent out of the tsr */ | |
134 | SerialFIFO recv_fifo; | |
135 | SerialFIFO xmit_fifo; | |
136 | ||
137 | struct QEMUTimer *fifo_timeout_timer; | |
138 | int timeout_ipending; /* timeout interrupt pending state */ | |
139 | struct QEMUTimer *transmit_timer; | |
140 | ||
141 | ||
142 | uint64_t char_transmit_time; /* time to transmit a char in ticks*/ | |
143 | int poll_msl; | |
144 | ||
145 | struct QEMUTimer *modem_status_poll; | |
b41a2cd1 | 146 | }; |
80cabfad | 147 | |
81174dae | 148 | static void serial_receive1(void *opaque, const uint8_t *buf, int size); |
b2a5160c | 149 | |
81174dae | 150 | static void fifo_clear(SerialState *s, int fifo) |
80cabfad | 151 | { |
81174dae AL |
152 | SerialFIFO *f = (fifo) ? &s->recv_fifo : &s->xmit_fifo; |
153 | memset(f->data, 0, UART_FIFO_LENGTH); | |
154 | f->count = 0; | |
155 | f->head = 0; | |
156 | f->tail = 0; | |
80cabfad FB |
157 | } |
158 | ||
81174dae | 159 | static int fifo_put(SerialState *s, int fifo, uint8_t chr) |
6936bfe5 | 160 | { |
81174dae | 161 | SerialFIFO *f = (fifo) ? &s->recv_fifo : &s->xmit_fifo; |
6936bfe5 | 162 | |
81174dae | 163 | f->data[f->head++] = chr; |
6936bfe5 | 164 | |
81174dae AL |
165 | if (f->head == UART_FIFO_LENGTH) |
166 | f->head = 0; | |
167 | f->count++; | |
168 | ||
169 | return 1; | |
170 | } | |
171 | ||
172 | static uint8_t fifo_get(SerialState *s, int fifo) | |
173 | { | |
174 | SerialFIFO *f = (fifo) ? &s->recv_fifo : &s->xmit_fifo; | |
175 | uint8_t c; | |
176 | ||
177 | if(f->count == 0) | |
178 | return 0; | |
179 | ||
180 | c = f->data[f->tail++]; | |
181 | if (f->tail == UART_FIFO_LENGTH) | |
182 | f->tail = 0; | |
183 | f->count--; | |
184 | ||
185 | return c; | |
186 | } | |
6936bfe5 | 187 | |
81174dae AL |
188 | static void serial_update_irq(SerialState *s) |
189 | { | |
190 | uint8_t tmp_iir = UART_IIR_NO_INT; | |
191 | ||
81174dae AL |
192 | if ((s->ier & UART_IER_RLSI) && (s->lsr & UART_LSR_INT_ANY)) { |
193 | tmp_iir = UART_IIR_RLSI; | |
194 | } else if (s->timeout_ipending) { | |
195 | tmp_iir = UART_IIR_CTI; | |
196 | } else if ((s->ier & UART_IER_RDI) && (s->lsr & UART_LSR_DR)) { | |
197 | if (!(s->fcr & UART_FCR_FE)) { | |
198 | tmp_iir = UART_IIR_RDI; | |
199 | } else if (s->recv_fifo.count >= s->recv_fifo.itl) { | |
200 | tmp_iir = UART_IIR_RDI; | |
201 | } | |
202 | } else if ((s->ier & UART_IER_THRI) && s->thr_ipending) { | |
203 | tmp_iir = UART_IIR_THRI; | |
204 | } else if ((s->ier & UART_IER_MSI) && (s->msr & UART_MSR_ANY_DELTA)) { | |
205 | tmp_iir = UART_IIR_MSI; | |
206 | } | |
207 | ||
208 | s->iir = tmp_iir | (s->iir & 0xF0); | |
209 | ||
210 | if (tmp_iir != UART_IIR_NO_INT) { | |
211 | qemu_irq_raise(s->irq); | |
212 | } else { | |
213 | qemu_irq_lower(s->irq); | |
6936bfe5 | 214 | } |
6936bfe5 AJ |
215 | } |
216 | ||
f8d179e3 FB |
217 | static void serial_update_parameters(SerialState *s) |
218 | { | |
81174dae | 219 | int speed, parity, data_bits, stop_bits, frame_size; |
2122c51a | 220 | QEMUSerialSetParams ssp; |
f8d179e3 | 221 | |
81174dae AL |
222 | if (s->divider == 0) |
223 | return; | |
224 | ||
225 | frame_size = 1; | |
f8d179e3 FB |
226 | if (s->lcr & 0x08) { |
227 | if (s->lcr & 0x10) | |
228 | parity = 'E'; | |
229 | else | |
230 | parity = 'O'; | |
231 | } else { | |
232 | parity = 'N'; | |
81174dae | 233 | frame_size = 0; |
f8d179e3 | 234 | } |
5fafdf24 | 235 | if (s->lcr & 0x04) |
f8d179e3 FB |
236 | stop_bits = 2; |
237 | else | |
238 | stop_bits = 1; | |
81174dae | 239 | |
f8d179e3 | 240 | data_bits = (s->lcr & 0x03) + 5; |
81174dae | 241 | frame_size += data_bits + stop_bits; |
b6cd0ea1 | 242 | speed = s->baudbase / s->divider; |
2122c51a FB |
243 | ssp.speed = speed; |
244 | ssp.parity = parity; | |
245 | ssp.data_bits = data_bits; | |
246 | ssp.stop_bits = stop_bits; | |
81174dae | 247 | s->char_transmit_time = (ticks_per_sec / speed) * frame_size; |
2122c51a FB |
248 | qemu_chr_ioctl(s->chr, CHR_IOCTL_SERIAL_SET_PARAMS, &ssp); |
249 | #if 0 | |
5fafdf24 | 250 | printf("speed=%d parity=%c data=%d stop=%d\n", |
f8d179e3 FB |
251 | speed, parity, data_bits, stop_bits); |
252 | #endif | |
253 | } | |
254 | ||
81174dae AL |
255 | static void serial_update_msl(SerialState *s) |
256 | { | |
257 | uint8_t omsr; | |
258 | int flags; | |
259 | ||
260 | qemu_del_timer(s->modem_status_poll); | |
261 | ||
262 | if (qemu_chr_ioctl(s->chr,CHR_IOCTL_SERIAL_GET_TIOCM, &flags) == -ENOTSUP) { | |
263 | s->poll_msl = -1; | |
264 | return; | |
265 | } | |
266 | ||
267 | omsr = s->msr; | |
268 | ||
269 | s->msr = (flags & CHR_TIOCM_CTS) ? s->msr | UART_MSR_CTS : s->msr & ~UART_MSR_CTS; | |
270 | s->msr = (flags & CHR_TIOCM_DSR) ? s->msr | UART_MSR_DSR : s->msr & ~UART_MSR_DSR; | |
271 | s->msr = (flags & CHR_TIOCM_CAR) ? s->msr | UART_MSR_DCD : s->msr & ~UART_MSR_DCD; | |
272 | s->msr = (flags & CHR_TIOCM_RI) ? s->msr | UART_MSR_RI : s->msr & ~UART_MSR_RI; | |
273 | ||
274 | if (s->msr != omsr) { | |
275 | /* Set delta bits */ | |
276 | s->msr = s->msr | ((s->msr >> 4) ^ (omsr >> 4)); | |
277 | /* UART_MSR_TERI only if change was from 1 -> 0 */ | |
278 | if ((s->msr & UART_MSR_TERI) && !(omsr & UART_MSR_RI)) | |
279 | s->msr &= ~UART_MSR_TERI; | |
280 | serial_update_irq(s); | |
281 | } | |
282 | ||
283 | /* The real 16550A apparently has a 250ns response latency to line status changes. | |
284 | We'll be lazy and poll only every 10ms, and only poll it at all if MSI interrupts are turned on */ | |
285 | ||
286 | if (s->poll_msl) | |
287 | qemu_mod_timer(s->modem_status_poll, qemu_get_clock(vm_clock) + ticks_per_sec / 100); | |
288 | } | |
289 | ||
290 | static void serial_xmit(void *opaque) | |
291 | { | |
292 | SerialState *s = opaque; | |
293 | uint64_t new_xmit_ts = qemu_get_clock(vm_clock); | |
294 | ||
295 | if (s->tsr_retry <= 0) { | |
296 | if (s->fcr & UART_FCR_FE) { | |
297 | s->tsr = fifo_get(s,XMIT_FIFO); | |
298 | if (!s->xmit_fifo.count) | |
299 | s->lsr |= UART_LSR_THRE; | |
300 | } else { | |
301 | s->tsr = s->thr; | |
302 | s->lsr |= UART_LSR_THRE; | |
303 | } | |
304 | } | |
305 | ||
306 | if (s->mcr & UART_MCR_LOOP) { | |
307 | /* in loopback mode, say that we just received a char */ | |
308 | serial_receive1(s, &s->tsr, 1); | |
309 | } else if (qemu_chr_write(s->chr, &s->tsr, 1) != 1) { | |
310 | if ((s->tsr_retry > 0) && (s->tsr_retry <= MAX_XMIT_RETRY)) { | |
311 | s->tsr_retry++; | |
312 | qemu_mod_timer(s->transmit_timer, new_xmit_ts + s->char_transmit_time); | |
313 | return; | |
314 | } else if (s->poll_msl < 0) { | |
315 | /* If we exceed MAX_XMIT_RETRY and the backend is not a real serial port, then | |
316 | drop any further failed writes instantly, until we get one that goes through. | |
317 | This is to prevent guests that log to unconnected pipes or pty's from stalling. */ | |
318 | s->tsr_retry = -1; | |
319 | } | |
320 | } | |
321 | else { | |
322 | s->tsr_retry = 0; | |
323 | } | |
324 | ||
325 | s->last_xmit_ts = qemu_get_clock(vm_clock); | |
326 | if (!(s->lsr & UART_LSR_THRE)) | |
327 | qemu_mod_timer(s->transmit_timer, s->last_xmit_ts + s->char_transmit_time); | |
328 | ||
329 | if (s->lsr & UART_LSR_THRE) { | |
330 | s->lsr |= UART_LSR_TEMT; | |
331 | s->thr_ipending = 1; | |
332 | serial_update_irq(s); | |
333 | } | |
334 | } | |
335 | ||
336 | ||
b41a2cd1 | 337 | static void serial_ioport_write(void *opaque, uint32_t addr, uint32_t val) |
80cabfad | 338 | { |
b41a2cd1 | 339 | SerialState *s = opaque; |
3b46e624 | 340 | |
80cabfad FB |
341 | addr &= 7; |
342 | #ifdef DEBUG_SERIAL | |
343 | printf("serial: write addr=0x%02x val=0x%02x\n", addr, val); | |
344 | #endif | |
345 | switch(addr) { | |
346 | default: | |
347 | case 0: | |
348 | if (s->lcr & UART_LCR_DLAB) { | |
349 | s->divider = (s->divider & 0xff00) | val; | |
f8d179e3 | 350 | serial_update_parameters(s); |
80cabfad | 351 | } else { |
81174dae AL |
352 | s->thr = (uint8_t) val; |
353 | if(s->fcr & UART_FCR_FE) { | |
354 | fifo_put(s, XMIT_FIFO, s->thr); | |
80cabfad | 355 | s->thr_ipending = 0; |
81174dae | 356 | s->lsr &= ~UART_LSR_TEMT; |
80cabfad | 357 | s->lsr &= ~UART_LSR_THRE; |
b41a2cd1 | 358 | serial_update_irq(s); |
6936bfe5 | 359 | } else { |
81174dae AL |
360 | s->thr_ipending = 0; |
361 | s->lsr &= ~UART_LSR_THRE; | |
362 | serial_update_irq(s); | |
6936bfe5 | 363 | } |
81174dae | 364 | serial_xmit(s); |
80cabfad FB |
365 | } |
366 | break; | |
367 | case 1: | |
368 | if (s->lcr & UART_LCR_DLAB) { | |
369 | s->divider = (s->divider & 0x00ff) | (val << 8); | |
f8d179e3 | 370 | serial_update_parameters(s); |
80cabfad | 371 | } else { |
60e336db | 372 | s->ier = val & 0x0f; |
81174dae AL |
373 | /* If the backend device is a real serial port, turn polling of the modem |
374 | status lines on physical port on or off depending on UART_IER_MSI state */ | |
375 | if (s->poll_msl >= 0) { | |
376 | if (s->ier & UART_IER_MSI) { | |
377 | s->poll_msl = 1; | |
378 | serial_update_msl(s); | |
379 | } else { | |
380 | qemu_del_timer(s->modem_status_poll); | |
381 | s->poll_msl = 0; | |
382 | } | |
383 | } | |
60e336db FB |
384 | if (s->lsr & UART_LSR_THRE) { |
385 | s->thr_ipending = 1; | |
81174dae | 386 | serial_update_irq(s); |
60e336db | 387 | } |
80cabfad FB |
388 | } |
389 | break; | |
390 | case 2: | |
81174dae AL |
391 | val = val & 0xFF; |
392 | ||
393 | if (s->fcr == val) | |
394 | break; | |
395 | ||
396 | /* Did the enable/disable flag change? If so, make sure FIFOs get flushed */ | |
397 | if ((val ^ s->fcr) & UART_FCR_FE) | |
398 | val |= UART_FCR_XFR | UART_FCR_RFR; | |
399 | ||
400 | /* FIFO clear */ | |
401 | ||
402 | if (val & UART_FCR_RFR) { | |
403 | qemu_del_timer(s->fifo_timeout_timer); | |
404 | s->timeout_ipending=0; | |
405 | fifo_clear(s,RECV_FIFO); | |
406 | } | |
407 | ||
408 | if (val & UART_FCR_XFR) { | |
409 | fifo_clear(s,XMIT_FIFO); | |
410 | } | |
411 | ||
412 | if (val & UART_FCR_FE) { | |
413 | s->iir |= UART_IIR_FE; | |
414 | /* Set RECV_FIFO trigger Level */ | |
415 | switch (val & 0xC0) { | |
416 | case UART_FCR_ITL_1: | |
417 | s->recv_fifo.itl = 1; | |
418 | break; | |
419 | case UART_FCR_ITL_2: | |
420 | s->recv_fifo.itl = 4; | |
421 | break; | |
422 | case UART_FCR_ITL_3: | |
423 | s->recv_fifo.itl = 8; | |
424 | break; | |
425 | case UART_FCR_ITL_4: | |
426 | s->recv_fifo.itl = 14; | |
427 | break; | |
428 | } | |
429 | } else | |
430 | s->iir &= ~UART_IIR_FE; | |
431 | ||
432 | /* Set fcr - or at least the bits in it that are supposed to "stick" */ | |
433 | s->fcr = val & 0xC9; | |
434 | serial_update_irq(s); | |
80cabfad FB |
435 | break; |
436 | case 3: | |
f8d179e3 FB |
437 | { |
438 | int break_enable; | |
439 | s->lcr = val; | |
440 | serial_update_parameters(s); | |
441 | break_enable = (val >> 6) & 1; | |
442 | if (break_enable != s->last_break_enable) { | |
443 | s->last_break_enable = break_enable; | |
5fafdf24 | 444 | qemu_chr_ioctl(s->chr, CHR_IOCTL_SERIAL_SET_BREAK, |
2122c51a | 445 | &break_enable); |
f8d179e3 FB |
446 | } |
447 | } | |
80cabfad FB |
448 | break; |
449 | case 4: | |
81174dae AL |
450 | { |
451 | int flags; | |
452 | int old_mcr = s->mcr; | |
453 | s->mcr = val & 0x1f; | |
454 | if (val & UART_MCR_LOOP) | |
455 | break; | |
456 | ||
457 | if (s->poll_msl >= 0 && old_mcr != s->mcr) { | |
458 | ||
459 | qemu_chr_ioctl(s->chr,CHR_IOCTL_SERIAL_GET_TIOCM, &flags); | |
460 | ||
461 | flags &= ~(CHR_TIOCM_RTS | CHR_TIOCM_DTR); | |
462 | ||
463 | if (val & UART_MCR_RTS) | |
464 | flags |= CHR_TIOCM_RTS; | |
465 | if (val & UART_MCR_DTR) | |
466 | flags |= CHR_TIOCM_DTR; | |
467 | ||
468 | qemu_chr_ioctl(s->chr,CHR_IOCTL_SERIAL_SET_TIOCM, &flags); | |
469 | /* Update the modem status after a one-character-send wait-time, since there may be a response | |
470 | from the device/computer at the other end of the serial line */ | |
471 | qemu_mod_timer(s->modem_status_poll, qemu_get_clock(vm_clock) + s->char_transmit_time); | |
472 | } | |
473 | } | |
80cabfad FB |
474 | break; |
475 | case 5: | |
476 | break; | |
477 | case 6: | |
80cabfad FB |
478 | break; |
479 | case 7: | |
480 | s->scr = val; | |
481 | break; | |
482 | } | |
483 | } | |
484 | ||
b41a2cd1 | 485 | static uint32_t serial_ioport_read(void *opaque, uint32_t addr) |
80cabfad | 486 | { |
b41a2cd1 | 487 | SerialState *s = opaque; |
80cabfad FB |
488 | uint32_t ret; |
489 | ||
490 | addr &= 7; | |
491 | switch(addr) { | |
492 | default: | |
493 | case 0: | |
494 | if (s->lcr & UART_LCR_DLAB) { | |
5fafdf24 | 495 | ret = s->divider & 0xff; |
80cabfad | 496 | } else { |
81174dae AL |
497 | if(s->fcr & UART_FCR_FE) { |
498 | ret = fifo_get(s,RECV_FIFO); | |
499 | if (s->recv_fifo.count == 0) | |
500 | s->lsr &= ~(UART_LSR_DR | UART_LSR_BI); | |
501 | else | |
502 | qemu_mod_timer(s->fifo_timeout_timer, qemu_get_clock (vm_clock) + s->char_transmit_time * 4); | |
503 | s->timeout_ipending = 0; | |
504 | } else { | |
505 | ret = s->rbr; | |
506 | s->lsr &= ~(UART_LSR_DR | UART_LSR_BI); | |
507 | } | |
b41a2cd1 | 508 | serial_update_irq(s); |
b2a5160c AZ |
509 | if (!(s->mcr & UART_MCR_LOOP)) { |
510 | /* in loopback mode, don't receive any data */ | |
511 | qemu_chr_accept_input(s->chr); | |
512 | } | |
80cabfad FB |
513 | } |
514 | break; | |
515 | case 1: | |
516 | if (s->lcr & UART_LCR_DLAB) { | |
517 | ret = (s->divider >> 8) & 0xff; | |
518 | } else { | |
519 | ret = s->ier; | |
520 | } | |
521 | break; | |
522 | case 2: | |
523 | ret = s->iir; | |
80cabfad | 524 | s->thr_ipending = 0; |
b41a2cd1 | 525 | serial_update_irq(s); |
80cabfad FB |
526 | break; |
527 | case 3: | |
528 | ret = s->lcr; | |
529 | break; | |
530 | case 4: | |
531 | ret = s->mcr; | |
532 | break; | |
533 | case 5: | |
534 | ret = s->lsr; | |
81174dae AL |
535 | /* Clear break interrupt */ |
536 | if (s->lsr & UART_LSR_BI) { | |
537 | s->lsr &= ~UART_LSR_BI; | |
538 | serial_update_irq(s); | |
539 | } | |
80cabfad FB |
540 | break; |
541 | case 6: | |
542 | if (s->mcr & UART_MCR_LOOP) { | |
543 | /* in loopback, the modem output pins are connected to the | |
544 | inputs */ | |
545 | ret = (s->mcr & 0x0c) << 4; | |
546 | ret |= (s->mcr & 0x02) << 3; | |
547 | ret |= (s->mcr & 0x01) << 5; | |
548 | } else { | |
81174dae AL |
549 | if (s->poll_msl >= 0) |
550 | serial_update_msl(s); | |
80cabfad | 551 | ret = s->msr; |
81174dae AL |
552 | /* Clear delta bits & msr int after read, if they were set */ |
553 | if (s->msr & UART_MSR_ANY_DELTA) { | |
554 | s->msr &= 0xF0; | |
555 | serial_update_irq(s); | |
556 | } | |
80cabfad FB |
557 | } |
558 | break; | |
559 | case 7: | |
560 | ret = s->scr; | |
561 | break; | |
562 | } | |
563 | #ifdef DEBUG_SERIAL | |
564 | printf("serial: read addr=0x%02x val=0x%02x\n", addr, ret); | |
565 | #endif | |
566 | return ret; | |
567 | } | |
568 | ||
82c643ff | 569 | static int serial_can_receive(SerialState *s) |
80cabfad | 570 | { |
81174dae AL |
571 | if(s->fcr & UART_FCR_FE) { |
572 | if(s->recv_fifo.count < UART_FIFO_LENGTH) | |
573 | /* Advertise (fifo.itl - fifo.count) bytes when count < ITL, and 1 if above. If UART_FIFO_LENGTH - fifo.count is | |
574 | advertised the effect will be to almost always fill the fifo completely before the guest has a chance to respond, | |
575 | effectively overriding the ITL that the guest has set. */ | |
576 | return (s->recv_fifo.count <= s->recv_fifo.itl) ? s->recv_fifo.itl - s->recv_fifo.count : 1; | |
577 | else | |
578 | return 0; | |
579 | } else { | |
80cabfad | 580 | return !(s->lsr & UART_LSR_DR); |
81174dae | 581 | } |
80cabfad FB |
582 | } |
583 | ||
82c643ff | 584 | static void serial_receive_break(SerialState *s) |
80cabfad | 585 | { |
80cabfad FB |
586 | s->rbr = 0; |
587 | s->lsr |= UART_LSR_BI | UART_LSR_DR; | |
b41a2cd1 | 588 | serial_update_irq(s); |
80cabfad FB |
589 | } |
590 | ||
81174dae AL |
591 | /* There's data in recv_fifo and s->rbr has not been read for 4 char transmit times */ |
592 | static void fifo_timeout_int (void *opaque) { | |
593 | SerialState *s = opaque; | |
594 | if (s->recv_fifo.count) { | |
595 | s->timeout_ipending = 1; | |
596 | serial_update_irq(s); | |
597 | } | |
598 | } | |
599 | ||
b41a2cd1 | 600 | static int serial_can_receive1(void *opaque) |
80cabfad | 601 | { |
b41a2cd1 FB |
602 | SerialState *s = opaque; |
603 | return serial_can_receive(s); | |
604 | } | |
605 | ||
606 | static void serial_receive1(void *opaque, const uint8_t *buf, int size) | |
607 | { | |
608 | SerialState *s = opaque; | |
81174dae AL |
609 | if(s->fcr & UART_FCR_FE) { |
610 | int i; | |
611 | for (i = 0; i < size; i++) { | |
612 | fifo_put(s, RECV_FIFO, buf[i]); | |
613 | } | |
614 | s->lsr |= UART_LSR_DR; | |
615 | /* call the timeout receive callback in 4 char transmit time */ | |
616 | qemu_mod_timer(s->fifo_timeout_timer, qemu_get_clock (vm_clock) + s->char_transmit_time * 4); | |
617 | } else { | |
618 | s->rbr = buf[0]; | |
619 | s->lsr |= UART_LSR_DR; | |
620 | } | |
621 | serial_update_irq(s); | |
b41a2cd1 | 622 | } |
80cabfad | 623 | |
82c643ff FB |
624 | static void serial_event(void *opaque, int event) |
625 | { | |
626 | SerialState *s = opaque; | |
81174dae AL |
627 | #ifdef DEBUG_SERIAL |
628 | printf("serial: event %x\n", event); | |
629 | #endif | |
82c643ff FB |
630 | if (event == CHR_EVENT_BREAK) |
631 | serial_receive_break(s); | |
632 | } | |
633 | ||
8738a8d0 FB |
634 | static void serial_save(QEMUFile *f, void *opaque) |
635 | { | |
636 | SerialState *s = opaque; | |
637 | ||
508d92d0 | 638 | qemu_put_be16s(f,&s->divider); |
8738a8d0 FB |
639 | qemu_put_8s(f,&s->rbr); |
640 | qemu_put_8s(f,&s->ier); | |
641 | qemu_put_8s(f,&s->iir); | |
642 | qemu_put_8s(f,&s->lcr); | |
643 | qemu_put_8s(f,&s->mcr); | |
644 | qemu_put_8s(f,&s->lsr); | |
645 | qemu_put_8s(f,&s->msr); | |
646 | qemu_put_8s(f,&s->scr); | |
81174dae | 647 | qemu_put_8s(f,&s->fcr); |
8738a8d0 FB |
648 | } |
649 | ||
650 | static int serial_load(QEMUFile *f, void *opaque, int version_id) | |
651 | { | |
652 | SerialState *s = opaque; | |
81174dae | 653 | uint8_t fcr = 0; |
8738a8d0 | 654 | |
81174dae | 655 | if(version_id > 3) |
8738a8d0 FB |
656 | return -EINVAL; |
657 | ||
508d92d0 FB |
658 | if (version_id >= 2) |
659 | qemu_get_be16s(f, &s->divider); | |
660 | else | |
661 | s->divider = qemu_get_byte(f); | |
8738a8d0 FB |
662 | qemu_get_8s(f,&s->rbr); |
663 | qemu_get_8s(f,&s->ier); | |
664 | qemu_get_8s(f,&s->iir); | |
665 | qemu_get_8s(f,&s->lcr); | |
666 | qemu_get_8s(f,&s->mcr); | |
667 | qemu_get_8s(f,&s->lsr); | |
668 | qemu_get_8s(f,&s->msr); | |
669 | qemu_get_8s(f,&s->scr); | |
670 | ||
81174dae AL |
671 | if (version_id >= 3) |
672 | qemu_get_8s(f,&fcr); | |
673 | ||
674 | /* Initialize fcr via setter to perform essential side-effects */ | |
675 | serial_ioport_write(s, 0x02, fcr); | |
8738a8d0 FB |
676 | return 0; |
677 | } | |
678 | ||
b2a5160c AZ |
679 | static void serial_reset(void *opaque) |
680 | { | |
681 | SerialState *s = opaque; | |
682 | ||
b2a5160c AZ |
683 | s->rbr = 0; |
684 | s->ier = 0; | |
685 | s->iir = UART_IIR_NO_INT; | |
686 | s->lcr = 0; | |
b2a5160c AZ |
687 | s->lsr = UART_LSR_TEMT | UART_LSR_THRE; |
688 | s->msr = UART_MSR_DCD | UART_MSR_DSR | UART_MSR_CTS; | |
81174dae AL |
689 | /* Default to 9600 baud, no parity, one stop bit */ |
690 | s->divider = 0x0C; | |
691 | s->mcr = UART_MCR_OUT2; | |
b2a5160c | 692 | s->scr = 0; |
81174dae AL |
693 | s->tsr_retry = 0; |
694 | s->char_transmit_time = (ticks_per_sec / 9600) * 9; | |
695 | s->poll_msl = 0; | |
696 | ||
697 | fifo_clear(s,RECV_FIFO); | |
698 | fifo_clear(s,XMIT_FIFO); | |
699 | ||
700 | s->last_xmit_ts = qemu_get_clock(vm_clock); | |
b2a5160c AZ |
701 | |
702 | s->thr_ipending = 0; | |
703 | s->last_break_enable = 0; | |
704 | qemu_irq_lower(s->irq); | |
705 | } | |
706 | ||
81174dae AL |
707 | static void serial_init_core(SerialState *s, qemu_irq irq, int baudbase, |
708 | CharDriverState *chr) | |
709 | { | |
710 | s->irq = irq; | |
711 | s->baudbase = baudbase; | |
712 | s->chr = chr; | |
713 | ||
714 | s->modem_status_poll = qemu_new_timer(vm_clock, (QEMUTimerCB *) serial_update_msl, s); | |
715 | ||
716 | s->fifo_timeout_timer = qemu_new_timer(vm_clock, (QEMUTimerCB *) fifo_timeout_int, s); | |
717 | s->transmit_timer = qemu_new_timer(vm_clock, (QEMUTimerCB *) serial_xmit, s); | |
718 | ||
719 | qemu_register_reset(serial_reset, s); | |
720 | serial_reset(s); | |
721 | ||
722 | } | |
723 | ||
b41a2cd1 | 724 | /* If fd is zero, it means that the serial device uses the console */ |
b6cd0ea1 AJ |
725 | SerialState *serial_init(int base, qemu_irq irq, int baudbase, |
726 | CharDriverState *chr) | |
b41a2cd1 FB |
727 | { |
728 | SerialState *s; | |
729 | ||
730 | s = qemu_mallocz(sizeof(SerialState)); | |
731 | if (!s) | |
732 | return NULL; | |
6936bfe5 | 733 | |
81174dae | 734 | serial_init_core(s, irq, baudbase, chr); |
b41a2cd1 | 735 | |
81174dae | 736 | register_savevm("serial", base, 3, serial_save, serial_load, s); |
8738a8d0 | 737 | |
b41a2cd1 FB |
738 | register_ioport_write(base, 8, 1, serial_ioport_write, s); |
739 | register_ioport_read(base, 8, 1, serial_ioport_read, s); | |
e5b0bc44 PB |
740 | qemu_chr_add_handlers(chr, serial_can_receive1, serial_receive1, |
741 | serial_event, s); | |
b41a2cd1 | 742 | return s; |
80cabfad | 743 | } |
e5d13e2f FB |
744 | |
745 | /* Memory mapped interface */ | |
a4bc3afc | 746 | uint32_t serial_mm_readb (void *opaque, target_phys_addr_t addr) |
e5d13e2f FB |
747 | { |
748 | SerialState *s = opaque; | |
749 | ||
750 | return serial_ioport_read(s, (addr - s->base) >> s->it_shift) & 0xFF; | |
751 | } | |
752 | ||
a4bc3afc TS |
753 | void serial_mm_writeb (void *opaque, |
754 | target_phys_addr_t addr, uint32_t value) | |
e5d13e2f FB |
755 | { |
756 | SerialState *s = opaque; | |
757 | ||
758 | serial_ioport_write(s, (addr - s->base) >> s->it_shift, value & 0xFF); | |
759 | } | |
760 | ||
a4bc3afc | 761 | uint32_t serial_mm_readw (void *opaque, target_phys_addr_t addr) |
e5d13e2f FB |
762 | { |
763 | SerialState *s = opaque; | |
e918ee04 | 764 | uint32_t val; |
e5d13e2f | 765 | |
e918ee04 TS |
766 | val = serial_ioport_read(s, (addr - s->base) >> s->it_shift) & 0xFFFF; |
767 | #ifdef TARGET_WORDS_BIGENDIAN | |
768 | val = bswap16(val); | |
769 | #endif | |
770 | return val; | |
e5d13e2f FB |
771 | } |
772 | ||
a4bc3afc TS |
773 | void serial_mm_writew (void *opaque, |
774 | target_phys_addr_t addr, uint32_t value) | |
e5d13e2f FB |
775 | { |
776 | SerialState *s = opaque; | |
e918ee04 TS |
777 | #ifdef TARGET_WORDS_BIGENDIAN |
778 | value = bswap16(value); | |
779 | #endif | |
e5d13e2f FB |
780 | serial_ioport_write(s, (addr - s->base) >> s->it_shift, value & 0xFFFF); |
781 | } | |
782 | ||
a4bc3afc | 783 | uint32_t serial_mm_readl (void *opaque, target_phys_addr_t addr) |
e5d13e2f FB |
784 | { |
785 | SerialState *s = opaque; | |
e918ee04 | 786 | uint32_t val; |
e5d13e2f | 787 | |
e918ee04 TS |
788 | val = serial_ioport_read(s, (addr - s->base) >> s->it_shift); |
789 | #ifdef TARGET_WORDS_BIGENDIAN | |
790 | val = bswap32(val); | |
791 | #endif | |
792 | return val; | |
e5d13e2f FB |
793 | } |
794 | ||
a4bc3afc TS |
795 | void serial_mm_writel (void *opaque, |
796 | target_phys_addr_t addr, uint32_t value) | |
e5d13e2f FB |
797 | { |
798 | SerialState *s = opaque; | |
e918ee04 TS |
799 | #ifdef TARGET_WORDS_BIGENDIAN |
800 | value = bswap32(value); | |
801 | #endif | |
e5d13e2f FB |
802 | serial_ioport_write(s, (addr - s->base) >> s->it_shift, value); |
803 | } | |
804 | ||
805 | static CPUReadMemoryFunc *serial_mm_read[] = { | |
806 | &serial_mm_readb, | |
807 | &serial_mm_readw, | |
808 | &serial_mm_readl, | |
809 | }; | |
810 | ||
811 | static CPUWriteMemoryFunc *serial_mm_write[] = { | |
812 | &serial_mm_writeb, | |
813 | &serial_mm_writew, | |
814 | &serial_mm_writel, | |
815 | }; | |
816 | ||
71db710f | 817 | SerialState *serial_mm_init (target_phys_addr_t base, int it_shift, |
b6cd0ea1 AJ |
818 | qemu_irq irq, int baudbase, |
819 | CharDriverState *chr, int ioregister) | |
e5d13e2f FB |
820 | { |
821 | SerialState *s; | |
822 | int s_io_memory; | |
823 | ||
824 | s = qemu_mallocz(sizeof(SerialState)); | |
825 | if (!s) | |
826 | return NULL; | |
81174dae | 827 | |
e5d13e2f FB |
828 | s->base = base; |
829 | s->it_shift = it_shift; | |
830 | ||
81174dae AL |
831 | serial_init_core(s, irq, baudbase, chr); |
832 | register_savevm("serial", base, 3, serial_save, serial_load, s); | |
e5d13e2f | 833 | |
a4bc3afc TS |
834 | if (ioregister) { |
835 | s_io_memory = cpu_register_io_memory(0, serial_mm_read, | |
836 | serial_mm_write, s); | |
837 | cpu_register_physical_memory(base, 8 << it_shift, s_io_memory); | |
838 | } | |
e5b0bc44 PB |
839 | qemu_chr_add_handlers(chr, serial_can_receive1, serial_receive1, |
840 | serial_event, s); | |
81174dae | 841 | serial_update_msl(s); |
e5d13e2f FB |
842 | return s; |
843 | } |