xref: /qemu/hw/char/exynos4210_uart.c (revision db1015e92e04835c9eb50c29625fe566d1202dbd)
1e5a4914eSMaksim Kozlov /*
2e5a4914eSMaksim Kozlov  *  Exynos4210 UART Emulation
3e5a4914eSMaksim Kozlov  *
4e5a4914eSMaksim Kozlov  *  Copyright (C) 2011 Samsung Electronics Co Ltd.
5e5a4914eSMaksim Kozlov  *    Maksim Kozlov, <m.kozlov@samsung.com>
6e5a4914eSMaksim Kozlov  *
7e5a4914eSMaksim Kozlov  *  This program is free software; you can redistribute it and/or modify it
8e5a4914eSMaksim Kozlov  *  under the terms of the GNU General Public License as published by the
9e5a4914eSMaksim Kozlov  *  Free Software Foundation; either version 2 of the License, or
10e5a4914eSMaksim Kozlov  *  (at your option) any later version.
11e5a4914eSMaksim Kozlov  *
12e5a4914eSMaksim Kozlov  *  This program is distributed in the hope that it will be useful, but WITHOUT
13e5a4914eSMaksim Kozlov  *  ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
14e5a4914eSMaksim Kozlov  *  FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
15e5a4914eSMaksim Kozlov  *  for more details.
16e5a4914eSMaksim Kozlov  *
17e5a4914eSMaksim Kozlov  *  You should have received a copy of the GNU General Public License along
18e5a4914eSMaksim Kozlov  *  with this program; if not, see <http://www.gnu.org/licenses/>.
19e5a4914eSMaksim Kozlov  *
20e5a4914eSMaksim Kozlov  */
21e5a4914eSMaksim Kozlov 
228ef94f0bSPeter Maydell #include "qemu/osdep.h"
2383c9f4caSPaolo Bonzini #include "hw/sysbus.h"
24d6454270SMarkus Armbruster #include "migration/vmstate.h"
253e80f690SMarkus Armbruster #include "qapi/error.h"
26c525436eSMarkus Armbruster #include "qemu/error-report.h"
270b8fa32fSMarkus Armbruster #include "qemu/module.h"
283a5d3a6fSGuenter Roeck #include "qemu/timer.h"
294d43a603SMarc-André Lureau #include "chardev/char-fe.h"
307566c6efSMarc-André Lureau #include "chardev/char-serial.h"
31e5a4914eSMaksim Kozlov 
320d09e41aSPaolo Bonzini #include "hw/arm/exynos4210.h"
3364552b6bSMarkus Armbruster #include "hw/irq.h"
34a27bd6c7SMarkus Armbruster #include "hw/qdev-properties.h"
35e5a4914eSMaksim Kozlov 
366804d230SGuenter Roeck #include "trace.h"
37*db1015e9SEduardo Habkost #include "qom/object.h"
38e5a4914eSMaksim Kozlov 
39e5a4914eSMaksim Kozlov /*
40e5a4914eSMaksim Kozlov  *  Offsets for UART registers relative to SFR base address
41e5a4914eSMaksim Kozlov  *  for UARTn
42e5a4914eSMaksim Kozlov  *
43e5a4914eSMaksim Kozlov  */
44e5a4914eSMaksim Kozlov #define ULCON      0x0000 /* Line Control             */
45e5a4914eSMaksim Kozlov #define UCON       0x0004 /* Control                  */
46e5a4914eSMaksim Kozlov #define UFCON      0x0008 /* FIFO Control             */
47e5a4914eSMaksim Kozlov #define UMCON      0x000C /* Modem Control            */
48e5a4914eSMaksim Kozlov #define UTRSTAT    0x0010 /* Tx/Rx Status             */
49e5a4914eSMaksim Kozlov #define UERSTAT    0x0014 /* UART Error Status        */
50e5a4914eSMaksim Kozlov #define UFSTAT     0x0018 /* FIFO Status              */
51e5a4914eSMaksim Kozlov #define UMSTAT     0x001C /* Modem Status             */
52e5a4914eSMaksim Kozlov #define UTXH       0x0020 /* Transmit Buffer          */
53e5a4914eSMaksim Kozlov #define URXH       0x0024 /* Receive Buffer           */
54e5a4914eSMaksim Kozlov #define UBRDIV     0x0028 /* Baud Rate Divisor        */
55e5a4914eSMaksim Kozlov #define UFRACVAL   0x002C /* Divisor Fractional Value */
56e5a4914eSMaksim Kozlov #define UINTP      0x0030 /* Interrupt Pending        */
57e5a4914eSMaksim Kozlov #define UINTSP     0x0034 /* Interrupt Source Pending */
58e5a4914eSMaksim Kozlov #define UINTM      0x0038 /* Interrupt Mask           */
59e5a4914eSMaksim Kozlov 
60e5a4914eSMaksim Kozlov /*
61e5a4914eSMaksim Kozlov  * for indexing register in the uint32_t array
62e5a4914eSMaksim Kozlov  *
63e5a4914eSMaksim Kozlov  * 'reg' - register offset (see offsets definitions above)
64e5a4914eSMaksim Kozlov  *
65e5a4914eSMaksim Kozlov  */
66e5a4914eSMaksim Kozlov #define I_(reg) (reg / sizeof(uint32_t))
67e5a4914eSMaksim Kozlov 
68e5a4914eSMaksim Kozlov typedef struct Exynos4210UartReg {
69e5a4914eSMaksim Kozlov     const char         *name; /* the only reason is the debug output */
70a8170e5eSAvi Kivity     hwaddr  offset;
71e5a4914eSMaksim Kozlov     uint32_t            reset_value;
72e5a4914eSMaksim Kozlov } Exynos4210UartReg;
73e5a4914eSMaksim Kozlov 
7475c6d92eSKrzysztof Kozlowski static const Exynos4210UartReg exynos4210_uart_regs[] = {
75e5a4914eSMaksim Kozlov     {"ULCON",    ULCON,    0x00000000},
76e5a4914eSMaksim Kozlov     {"UCON",     UCON,     0x00003000},
77e5a4914eSMaksim Kozlov     {"UFCON",    UFCON,    0x00000000},
78e5a4914eSMaksim Kozlov     {"UMCON",    UMCON,    0x00000000},
79e5a4914eSMaksim Kozlov     {"UTRSTAT",  UTRSTAT,  0x00000006}, /* RO */
80e5a4914eSMaksim Kozlov     {"UERSTAT",  UERSTAT,  0x00000000}, /* RO */
81e5a4914eSMaksim Kozlov     {"UFSTAT",   UFSTAT,   0x00000000}, /* RO */
82e5a4914eSMaksim Kozlov     {"UMSTAT",   UMSTAT,   0x00000000}, /* RO */
83e5a4914eSMaksim Kozlov     {"UTXH",     UTXH,     0x5c5c5c5c}, /* WO, undefined reset value*/
84e5a4914eSMaksim Kozlov     {"URXH",     URXH,     0x00000000}, /* RO */
85e5a4914eSMaksim Kozlov     {"UBRDIV",   UBRDIV,   0x00000000},
86e5a4914eSMaksim Kozlov     {"UFRACVAL", UFRACVAL, 0x00000000},
87e5a4914eSMaksim Kozlov     {"UINTP",    UINTP,    0x00000000},
88e5a4914eSMaksim Kozlov     {"UINTSP",   UINTSP,   0x00000000},
89e5a4914eSMaksim Kozlov     {"UINTM",    UINTM,    0x00000000},
90e5a4914eSMaksim Kozlov };
91e5a4914eSMaksim Kozlov 
92e5a4914eSMaksim Kozlov #define EXYNOS4210_UART_REGS_MEM_SIZE    0x3C
93e5a4914eSMaksim Kozlov 
94e5a4914eSMaksim Kozlov /* UART FIFO Control */
95e5a4914eSMaksim Kozlov #define UFCON_FIFO_ENABLE                    0x1
96e5a4914eSMaksim Kozlov #define UFCON_Rx_FIFO_RESET                  0x2
97e5a4914eSMaksim Kozlov #define UFCON_Tx_FIFO_RESET                  0x4
98e5a4914eSMaksim Kozlov #define UFCON_Tx_FIFO_TRIGGER_LEVEL_SHIFT    8
99e5a4914eSMaksim Kozlov #define UFCON_Tx_FIFO_TRIGGER_LEVEL (7 << UFCON_Tx_FIFO_TRIGGER_LEVEL_SHIFT)
100e5a4914eSMaksim Kozlov #define UFCON_Rx_FIFO_TRIGGER_LEVEL_SHIFT    4
101e5a4914eSMaksim Kozlov #define UFCON_Rx_FIFO_TRIGGER_LEVEL (7 << UFCON_Rx_FIFO_TRIGGER_LEVEL_SHIFT)
102e5a4914eSMaksim Kozlov 
103e5a4914eSMaksim Kozlov /* Uart FIFO Status */
104e5a4914eSMaksim Kozlov #define UFSTAT_Rx_FIFO_COUNT        0xff
105e5a4914eSMaksim Kozlov #define UFSTAT_Rx_FIFO_FULL         0x100
106e5a4914eSMaksim Kozlov #define UFSTAT_Rx_FIFO_ERROR        0x200
107e5a4914eSMaksim Kozlov #define UFSTAT_Tx_FIFO_COUNT_SHIFT  16
108e5a4914eSMaksim Kozlov #define UFSTAT_Tx_FIFO_COUNT        (0xff << UFSTAT_Tx_FIFO_COUNT_SHIFT)
109e5a4914eSMaksim Kozlov #define UFSTAT_Tx_FIFO_FULL_SHIFT   24
110e5a4914eSMaksim Kozlov #define UFSTAT_Tx_FIFO_FULL         (1 << UFSTAT_Tx_FIFO_FULL_SHIFT)
111e5a4914eSMaksim Kozlov 
112e5a4914eSMaksim Kozlov /* UART Interrupt Source Pending */
113e5a4914eSMaksim Kozlov #define UINTSP_RXD      0x1 /* Receive interrupt  */
114e5a4914eSMaksim Kozlov #define UINTSP_ERROR    0x2 /* Error interrupt    */
115e5a4914eSMaksim Kozlov #define UINTSP_TXD      0x4 /* Transmit interrupt */
116e5a4914eSMaksim Kozlov #define UINTSP_MODEM    0x8 /* Modem interrupt    */
117e5a4914eSMaksim Kozlov 
118e5a4914eSMaksim Kozlov /* UART Line Control */
119e5a4914eSMaksim Kozlov #define ULCON_IR_MODE_SHIFT   6
120e5a4914eSMaksim Kozlov #define ULCON_PARITY_SHIFT    3
121e5a4914eSMaksim Kozlov #define ULCON_STOP_BIT_SHIFT  1
122e5a4914eSMaksim Kozlov 
123e5a4914eSMaksim Kozlov /* UART Tx/Rx Status */
1243a5d3a6fSGuenter Roeck #define UTRSTAT_Rx_TIMEOUT              0x8
125e5a4914eSMaksim Kozlov #define UTRSTAT_TRANSMITTER_EMPTY       0x4
126e5a4914eSMaksim Kozlov #define UTRSTAT_Tx_BUFFER_EMPTY         0x2
127e5a4914eSMaksim Kozlov #define UTRSTAT_Rx_BUFFER_DATA_READY    0x1
128e5a4914eSMaksim Kozlov 
129e5a4914eSMaksim Kozlov /* UART Error Status */
130e5a4914eSMaksim Kozlov #define UERSTAT_OVERRUN  0x1
131e5a4914eSMaksim Kozlov #define UERSTAT_PARITY   0x2
132e5a4914eSMaksim Kozlov #define UERSTAT_FRAME    0x4
133e5a4914eSMaksim Kozlov #define UERSTAT_BREAK    0x8
134e5a4914eSMaksim Kozlov 
135e5a4914eSMaksim Kozlov typedef struct {
136e5a4914eSMaksim Kozlov     uint8_t    *data;
137e5a4914eSMaksim Kozlov     uint32_t    sp, rp; /* store and retrieve pointers */
138e5a4914eSMaksim Kozlov     uint32_t    size;
139e5a4914eSMaksim Kozlov } Exynos4210UartFIFO;
140e5a4914eSMaksim Kozlov 
14161149ff6SAndreas Färber #define TYPE_EXYNOS4210_UART "exynos4210.uart"
142*db1015e9SEduardo Habkost typedef struct Exynos4210UartState Exynos4210UartState;
14361149ff6SAndreas Färber #define EXYNOS4210_UART(obj) \
14461149ff6SAndreas Färber     OBJECT_CHECK(Exynos4210UartState, (obj), TYPE_EXYNOS4210_UART)
14561149ff6SAndreas Färber 
146*db1015e9SEduardo Habkost struct Exynos4210UartState {
14761149ff6SAndreas Färber     SysBusDevice parent_obj;
14861149ff6SAndreas Färber 
149e5a4914eSMaksim Kozlov     MemoryRegion iomem;
150e5a4914eSMaksim Kozlov 
151e5a4914eSMaksim Kozlov     uint32_t             reg[EXYNOS4210_UART_REGS_MEM_SIZE / sizeof(uint32_t)];
152e5a4914eSMaksim Kozlov     Exynos4210UartFIFO   rx;
153e5a4914eSMaksim Kozlov     Exynos4210UartFIFO   tx;
154e5a4914eSMaksim Kozlov 
1553a5d3a6fSGuenter Roeck     QEMUTimer *fifo_timeout_timer;
1563a5d3a6fSGuenter Roeck     uint64_t wordtime;        /* word time in ns */
1573a5d3a6fSGuenter Roeck 
158becdfa00SMarc-André Lureau     CharBackend       chr;
159e5a4914eSMaksim Kozlov     qemu_irq          irq;
1603c77412bSGuenter Roeck     qemu_irq          dmairq;
161e5a4914eSMaksim Kozlov 
162e5a4914eSMaksim Kozlov     uint32_t channel;
163e5a4914eSMaksim Kozlov 
164*db1015e9SEduardo Habkost };
165e5a4914eSMaksim Kozlov 
166e5a4914eSMaksim Kozlov 
1676804d230SGuenter Roeck /* Used only for tracing */
168a8170e5eSAvi Kivity static const char *exynos4210_uart_regname(hwaddr  offset)
169e5a4914eSMaksim Kozlov {
170e5a4914eSMaksim Kozlov 
171e5a4914eSMaksim Kozlov     int i;
172e5a4914eSMaksim Kozlov 
173c46b07f0SStefan Weil     for (i = 0; i < ARRAY_SIZE(exynos4210_uart_regs); i++) {
174e5a4914eSMaksim Kozlov         if (offset == exynos4210_uart_regs[i].offset) {
175e5a4914eSMaksim Kozlov             return exynos4210_uart_regs[i].name;
176e5a4914eSMaksim Kozlov         }
177e5a4914eSMaksim Kozlov     }
178e5a4914eSMaksim Kozlov 
179e5a4914eSMaksim Kozlov     return NULL;
180e5a4914eSMaksim Kozlov }
181e5a4914eSMaksim Kozlov 
182e5a4914eSMaksim Kozlov 
183e5a4914eSMaksim Kozlov static void fifo_store(Exynos4210UartFIFO *q, uint8_t ch)
184e5a4914eSMaksim Kozlov {
185e5a4914eSMaksim Kozlov     q->data[q->sp] = ch;
186e5a4914eSMaksim Kozlov     q->sp = (q->sp + 1) % q->size;
187e5a4914eSMaksim Kozlov }
188e5a4914eSMaksim Kozlov 
189e5a4914eSMaksim Kozlov static uint8_t fifo_retrieve(Exynos4210UartFIFO *q)
190e5a4914eSMaksim Kozlov {
191e5a4914eSMaksim Kozlov     uint8_t ret = q->data[q->rp];
192e5a4914eSMaksim Kozlov     q->rp = (q->rp + 1) % q->size;
193e5a4914eSMaksim Kozlov     return  ret;
194e5a4914eSMaksim Kozlov }
195e5a4914eSMaksim Kozlov 
19675c6d92eSKrzysztof Kozlowski static int fifo_elements_number(const Exynos4210UartFIFO *q)
197e5a4914eSMaksim Kozlov {
198e5a4914eSMaksim Kozlov     if (q->sp < q->rp) {
199e5a4914eSMaksim Kozlov         return q->size - q->rp + q->sp;
200e5a4914eSMaksim Kozlov     }
201e5a4914eSMaksim Kozlov 
202e5a4914eSMaksim Kozlov     return q->sp - q->rp;
203e5a4914eSMaksim Kozlov }
204e5a4914eSMaksim Kozlov 
20575c6d92eSKrzysztof Kozlowski static int fifo_empty_elements_number(const Exynos4210UartFIFO *q)
206e5a4914eSMaksim Kozlov {
207e5a4914eSMaksim Kozlov     return q->size - fifo_elements_number(q);
208e5a4914eSMaksim Kozlov }
209e5a4914eSMaksim Kozlov 
210e5a4914eSMaksim Kozlov static void fifo_reset(Exynos4210UartFIFO *q)
211e5a4914eSMaksim Kozlov {
212e5a4914eSMaksim Kozlov     g_free(q->data);
213e5a4914eSMaksim Kozlov     q->data = NULL;
214e5a4914eSMaksim Kozlov 
215e5a4914eSMaksim Kozlov     q->data = (uint8_t *)g_malloc0(q->size);
216e5a4914eSMaksim Kozlov 
217e5a4914eSMaksim Kozlov     q->sp = 0;
218e5a4914eSMaksim Kozlov     q->rp = 0;
219e5a4914eSMaksim Kozlov }
220e5a4914eSMaksim Kozlov 
2213a5d3a6fSGuenter Roeck static uint32_t exynos4210_uart_FIFO_trigger_level(uint32_t channel,
2223a5d3a6fSGuenter Roeck                                                    uint32_t reg)
223e5a4914eSMaksim Kozlov {
2243a5d3a6fSGuenter Roeck     uint32_t level;
225e5a4914eSMaksim Kozlov 
2263a5d3a6fSGuenter Roeck     switch (channel) {
227e5a4914eSMaksim Kozlov     case 0:
228e5a4914eSMaksim Kozlov         level = reg * 32;
229e5a4914eSMaksim Kozlov         break;
230e5a4914eSMaksim Kozlov     case 1:
231e5a4914eSMaksim Kozlov     case 4:
232e5a4914eSMaksim Kozlov         level = reg * 8;
233e5a4914eSMaksim Kozlov         break;
234e5a4914eSMaksim Kozlov     case 2:
235e5a4914eSMaksim Kozlov     case 3:
236e5a4914eSMaksim Kozlov         level = reg * 2;
237e5a4914eSMaksim Kozlov         break;
238e5a4914eSMaksim Kozlov     default:
239e5a4914eSMaksim Kozlov         level = 0;
2403a5d3a6fSGuenter Roeck         trace_exynos_uart_channel_error(channel);
2413a5d3a6fSGuenter Roeck         break;
2423a5d3a6fSGuenter Roeck     }
2433a5d3a6fSGuenter Roeck     return level;
244e5a4914eSMaksim Kozlov }
245e5a4914eSMaksim Kozlov 
2463a5d3a6fSGuenter Roeck static uint32_t
2473a5d3a6fSGuenter Roeck exynos4210_uart_Tx_FIFO_trigger_level(const Exynos4210UartState *s)
2483a5d3a6fSGuenter Roeck {
2493a5d3a6fSGuenter Roeck     uint32_t reg;
2503a5d3a6fSGuenter Roeck 
2513a5d3a6fSGuenter Roeck     reg = (s->reg[I_(UFCON)] & UFCON_Tx_FIFO_TRIGGER_LEVEL) >>
2523a5d3a6fSGuenter Roeck             UFCON_Tx_FIFO_TRIGGER_LEVEL_SHIFT;
2533a5d3a6fSGuenter Roeck 
2543a5d3a6fSGuenter Roeck     return exynos4210_uart_FIFO_trigger_level(s->channel, reg);
2553a5d3a6fSGuenter Roeck }
2563a5d3a6fSGuenter Roeck 
2573a5d3a6fSGuenter Roeck static uint32_t
2583a5d3a6fSGuenter Roeck exynos4210_uart_Rx_FIFO_trigger_level(const Exynos4210UartState *s)
2593a5d3a6fSGuenter Roeck {
2603a5d3a6fSGuenter Roeck     uint32_t reg;
2613a5d3a6fSGuenter Roeck 
2623a5d3a6fSGuenter Roeck     reg = ((s->reg[I_(UFCON)] & UFCON_Rx_FIFO_TRIGGER_LEVEL) >>
2633a5d3a6fSGuenter Roeck             UFCON_Rx_FIFO_TRIGGER_LEVEL_SHIFT) + 1;
2643a5d3a6fSGuenter Roeck 
2653a5d3a6fSGuenter Roeck     return exynos4210_uart_FIFO_trigger_level(s->channel, reg);
266e5a4914eSMaksim Kozlov }
267e5a4914eSMaksim Kozlov 
2683c77412bSGuenter Roeck /*
2693c77412bSGuenter Roeck  * Update Rx DMA busy signal if Rx DMA is enabled. For simplicity,
2703c77412bSGuenter Roeck  * mark DMA as busy if DMA is enabled and the receive buffer is empty.
2713c77412bSGuenter Roeck  */
2723c77412bSGuenter Roeck static void exynos4210_uart_update_dmabusy(Exynos4210UartState *s)
2733c77412bSGuenter Roeck {
2743c77412bSGuenter Roeck     bool rx_dma_enabled = (s->reg[I_(UCON)] & 0x03) == 0x02;
2753c77412bSGuenter Roeck     uint32_t count = fifo_elements_number(&s->rx);
2763c77412bSGuenter Roeck 
2773c77412bSGuenter Roeck     if (rx_dma_enabled && !count) {
2783c77412bSGuenter Roeck         qemu_irq_raise(s->dmairq);
2793c77412bSGuenter Roeck         trace_exynos_uart_dmabusy(s->channel);
2803c77412bSGuenter Roeck     } else {
2813c77412bSGuenter Roeck         qemu_irq_lower(s->dmairq);
2823c77412bSGuenter Roeck         trace_exynos_uart_dmaready(s->channel);
2833c77412bSGuenter Roeck     }
2843c77412bSGuenter Roeck }
2853c77412bSGuenter Roeck 
286e5a4914eSMaksim Kozlov static void exynos4210_uart_update_irq(Exynos4210UartState *s)
287e5a4914eSMaksim Kozlov {
288e5a4914eSMaksim Kozlov     /*
289e5a4914eSMaksim Kozlov      * The Tx interrupt is always requested if the number of data in the
290e5a4914eSMaksim Kozlov      * transmit FIFO is smaller than the trigger level.
291e5a4914eSMaksim Kozlov      */
292b85f62d7SDaniel P. Berrange     if (s->reg[I_(UFCON)] & UFCON_FIFO_ENABLE) {
293b85f62d7SDaniel P. Berrange         uint32_t count = (s->reg[I_(UFSTAT)] & UFSTAT_Tx_FIFO_COUNT) >>
294e5a4914eSMaksim Kozlov                 UFSTAT_Tx_FIFO_COUNT_SHIFT;
295e5a4914eSMaksim Kozlov 
296e5a4914eSMaksim Kozlov         if (count <= exynos4210_uart_Tx_FIFO_trigger_level(s)) {
297e5a4914eSMaksim Kozlov             s->reg[I_(UINTSP)] |= UINTSP_TXD;
298e5a4914eSMaksim Kozlov         }
2993a5d3a6fSGuenter Roeck 
3003a5d3a6fSGuenter Roeck         /*
3013a5d3a6fSGuenter Roeck          * Rx interrupt if trigger level is reached or if rx timeout
3023a5d3a6fSGuenter Roeck          * interrupt is disabled and there is data in the receive buffer
3033a5d3a6fSGuenter Roeck          */
3043a5d3a6fSGuenter Roeck         count = fifo_elements_number(&s->rx);
3053a5d3a6fSGuenter Roeck         if ((count && !(s->reg[I_(UCON)] & 0x80)) ||
3063a5d3a6fSGuenter Roeck             count >= exynos4210_uart_Rx_FIFO_trigger_level(s)) {
3073c77412bSGuenter Roeck             exynos4210_uart_update_dmabusy(s);
3083a5d3a6fSGuenter Roeck             s->reg[I_(UINTSP)] |= UINTSP_RXD;
3093a5d3a6fSGuenter Roeck             timer_del(s->fifo_timeout_timer);
3103a5d3a6fSGuenter Roeck         }
3113a5d3a6fSGuenter Roeck     } else if (s->reg[I_(UTRSTAT)] & UTRSTAT_Rx_BUFFER_DATA_READY) {
3123c77412bSGuenter Roeck         exynos4210_uart_update_dmabusy(s);
3133a5d3a6fSGuenter Roeck         s->reg[I_(UINTSP)] |= UINTSP_RXD;
314e5a4914eSMaksim Kozlov     }
315e5a4914eSMaksim Kozlov 
316e5a4914eSMaksim Kozlov     s->reg[I_(UINTP)] = s->reg[I_(UINTSP)] & ~s->reg[I_(UINTM)];
317e5a4914eSMaksim Kozlov 
318e5a4914eSMaksim Kozlov     if (s->reg[I_(UINTP)]) {
319e5a4914eSMaksim Kozlov         qemu_irq_raise(s->irq);
3206804d230SGuenter Roeck         trace_exynos_uart_irq_raised(s->channel, s->reg[I_(UINTP)]);
321e5a4914eSMaksim Kozlov     } else {
322e5a4914eSMaksim Kozlov         qemu_irq_lower(s->irq);
3236804d230SGuenter Roeck         trace_exynos_uart_irq_lowered(s->channel);
324e5a4914eSMaksim Kozlov     }
325e5a4914eSMaksim Kozlov }
326e5a4914eSMaksim Kozlov 
3273a5d3a6fSGuenter Roeck static void exynos4210_uart_timeout_int(void *opaque)
3283a5d3a6fSGuenter Roeck {
3293a5d3a6fSGuenter Roeck     Exynos4210UartState *s = opaque;
3303a5d3a6fSGuenter Roeck 
3313a5d3a6fSGuenter Roeck     trace_exynos_uart_rx_timeout(s->channel, s->reg[I_(UTRSTAT)],
3323a5d3a6fSGuenter Roeck                                  s->reg[I_(UINTSP)]);
3333a5d3a6fSGuenter Roeck 
3343a5d3a6fSGuenter Roeck     if ((s->reg[I_(UTRSTAT)] & UTRSTAT_Rx_BUFFER_DATA_READY) ||
3353a5d3a6fSGuenter Roeck         (s->reg[I_(UCON)] & (1 << 11))) {
3363a5d3a6fSGuenter Roeck         s->reg[I_(UINTSP)] |= UINTSP_RXD;
3373a5d3a6fSGuenter Roeck         s->reg[I_(UTRSTAT)] |= UTRSTAT_Rx_TIMEOUT;
3383c77412bSGuenter Roeck         exynos4210_uart_update_dmabusy(s);
3393a5d3a6fSGuenter Roeck         exynos4210_uart_update_irq(s);
3403a5d3a6fSGuenter Roeck     }
3413a5d3a6fSGuenter Roeck }
3423a5d3a6fSGuenter Roeck 
343e5a4914eSMaksim Kozlov static void exynos4210_uart_update_parameters(Exynos4210UartState *s)
344e5a4914eSMaksim Kozlov {
345e62694a0SPeter Maydell     int speed, parity, data_bits, stop_bits;
346e5a4914eSMaksim Kozlov     QEMUSerialSetParams ssp;
347e5a4914eSMaksim Kozlov     uint64_t uclk_rate;
348e5a4914eSMaksim Kozlov 
349e5a4914eSMaksim Kozlov     if (s->reg[I_(UBRDIV)] == 0) {
350e5a4914eSMaksim Kozlov         return;
351e5a4914eSMaksim Kozlov     }
352e5a4914eSMaksim Kozlov 
353e5a4914eSMaksim Kozlov     if (s->reg[I_(ULCON)] & 0x20) {
354e5a4914eSMaksim Kozlov         if (s->reg[I_(ULCON)] & 0x28) {
355e5a4914eSMaksim Kozlov             parity = 'E';
356e5a4914eSMaksim Kozlov         } else {
357e5a4914eSMaksim Kozlov             parity = 'O';
358e5a4914eSMaksim Kozlov         }
359e5a4914eSMaksim Kozlov     } else {
360e5a4914eSMaksim Kozlov         parity = 'N';
361e5a4914eSMaksim Kozlov     }
362e5a4914eSMaksim Kozlov 
363e5a4914eSMaksim Kozlov     if (s->reg[I_(ULCON)] & 0x4) {
364e5a4914eSMaksim Kozlov         stop_bits = 2;
365e5a4914eSMaksim Kozlov     } else {
366e5a4914eSMaksim Kozlov         stop_bits = 1;
367e5a4914eSMaksim Kozlov     }
368e5a4914eSMaksim Kozlov 
369e5a4914eSMaksim Kozlov     data_bits = (s->reg[I_(ULCON)] & 0x3) + 5;
370e5a4914eSMaksim Kozlov 
371e5a4914eSMaksim Kozlov     uclk_rate = 24000000;
372e5a4914eSMaksim Kozlov 
373e5a4914eSMaksim Kozlov     speed = uclk_rate / ((16 * (s->reg[I_(UBRDIV)]) & 0xffff) +
374e5a4914eSMaksim Kozlov             (s->reg[I_(UFRACVAL)] & 0x7) + 16);
375e5a4914eSMaksim Kozlov 
376e5a4914eSMaksim Kozlov     ssp.speed     = speed;
377e5a4914eSMaksim Kozlov     ssp.parity    = parity;
378e5a4914eSMaksim Kozlov     ssp.data_bits = data_bits;
379e5a4914eSMaksim Kozlov     ssp.stop_bits = stop_bits;
380e5a4914eSMaksim Kozlov 
3813a5d3a6fSGuenter Roeck     s->wordtime = NANOSECONDS_PER_SECOND * (data_bits + stop_bits + 1) / speed;
3823a5d3a6fSGuenter Roeck 
3835345fdb4SMarc-André Lureau     qemu_chr_fe_ioctl(&s->chr, CHR_IOCTL_SERIAL_SET_PARAMS, &ssp);
384e5a4914eSMaksim Kozlov 
3856804d230SGuenter Roeck     trace_exynos_uart_update_params(
3863a5d3a6fSGuenter Roeck                 s->channel, speed, parity, data_bits, stop_bits, s->wordtime);
3873a5d3a6fSGuenter Roeck }
3883a5d3a6fSGuenter Roeck 
3893a5d3a6fSGuenter Roeck static void exynos4210_uart_rx_timeout_set(Exynos4210UartState *s)
3903a5d3a6fSGuenter Roeck {
3913a5d3a6fSGuenter Roeck     if (s->reg[I_(UCON)] & 0x80) {
3923a5d3a6fSGuenter Roeck         uint32_t timeout = ((s->reg[I_(UCON)] >> 12) & 0x0f) * s->wordtime;
3933a5d3a6fSGuenter Roeck 
3943a5d3a6fSGuenter Roeck         timer_mod(s->fifo_timeout_timer,
3953a5d3a6fSGuenter Roeck                   qemu_clock_get_ns(QEMU_CLOCK_VIRTUAL) + timeout);
3963a5d3a6fSGuenter Roeck     } else {
3973a5d3a6fSGuenter Roeck         timer_del(s->fifo_timeout_timer);
3983a5d3a6fSGuenter Roeck     }
399e5a4914eSMaksim Kozlov }
400e5a4914eSMaksim Kozlov 
401a8170e5eSAvi Kivity static void exynos4210_uart_write(void *opaque, hwaddr offset,
402e5a4914eSMaksim Kozlov                                uint64_t val, unsigned size)
403e5a4914eSMaksim Kozlov {
404e5a4914eSMaksim Kozlov     Exynos4210UartState *s = (Exynos4210UartState *)opaque;
405e5a4914eSMaksim Kozlov     uint8_t ch;
406e5a4914eSMaksim Kozlov 
4076804d230SGuenter Roeck     trace_exynos_uart_write(s->channel, offset,
4086804d230SGuenter Roeck                             exynos4210_uart_regname(offset), val);
409e5a4914eSMaksim Kozlov 
410e5a4914eSMaksim Kozlov     switch (offset) {
411e5a4914eSMaksim Kozlov     case ULCON:
412e5a4914eSMaksim Kozlov     case UBRDIV:
413e5a4914eSMaksim Kozlov     case UFRACVAL:
414e5a4914eSMaksim Kozlov         s->reg[I_(offset)] = val;
415e5a4914eSMaksim Kozlov         exynos4210_uart_update_parameters(s);
416e5a4914eSMaksim Kozlov         break;
417e5a4914eSMaksim Kozlov     case UFCON:
418e5a4914eSMaksim Kozlov         s->reg[I_(UFCON)] = val;
419e5a4914eSMaksim Kozlov         if (val & UFCON_Rx_FIFO_RESET) {
420e5a4914eSMaksim Kozlov             fifo_reset(&s->rx);
421e5a4914eSMaksim Kozlov             s->reg[I_(UFCON)] &= ~UFCON_Rx_FIFO_RESET;
4226804d230SGuenter Roeck             trace_exynos_uart_rx_fifo_reset(s->channel);
423e5a4914eSMaksim Kozlov         }
424e5a4914eSMaksim Kozlov         if (val & UFCON_Tx_FIFO_RESET) {
425e5a4914eSMaksim Kozlov             fifo_reset(&s->tx);
426e5a4914eSMaksim Kozlov             s->reg[I_(UFCON)] &= ~UFCON_Tx_FIFO_RESET;
4276804d230SGuenter Roeck             trace_exynos_uart_tx_fifo_reset(s->channel);
428e5a4914eSMaksim Kozlov         }
429e5a4914eSMaksim Kozlov         break;
430e5a4914eSMaksim Kozlov 
431e5a4914eSMaksim Kozlov     case UTXH:
43230650701SAnton Nefedov         if (qemu_chr_fe_backend_connected(&s->chr)) {
433e5a4914eSMaksim Kozlov             s->reg[I_(UTRSTAT)] &= ~(UTRSTAT_TRANSMITTER_EMPTY |
434e5a4914eSMaksim Kozlov                     UTRSTAT_Tx_BUFFER_EMPTY);
435e5a4914eSMaksim Kozlov             ch = (uint8_t)val;
4366ab3fc32SDaniel P. Berrange             /* XXX this blocks entire thread. Rewrite to use
4376ab3fc32SDaniel P. Berrange              * qemu_chr_fe_write and background I/O callbacks */
4385345fdb4SMarc-André Lureau             qemu_chr_fe_write_all(&s->chr, &ch, 1);
4396804d230SGuenter Roeck             trace_exynos_uart_tx(s->channel, ch);
440e5a4914eSMaksim Kozlov             s->reg[I_(UTRSTAT)] |= UTRSTAT_TRANSMITTER_EMPTY |
441e5a4914eSMaksim Kozlov                     UTRSTAT_Tx_BUFFER_EMPTY;
442e5a4914eSMaksim Kozlov             s->reg[I_(UINTSP)]  |= UINTSP_TXD;
443e5a4914eSMaksim Kozlov             exynos4210_uart_update_irq(s);
444e5a4914eSMaksim Kozlov         }
445e5a4914eSMaksim Kozlov         break;
446e5a4914eSMaksim Kozlov 
447e5a4914eSMaksim Kozlov     case UINTP:
448e5a4914eSMaksim Kozlov         s->reg[I_(UINTP)] &= ~val;
449e5a4914eSMaksim Kozlov         s->reg[I_(UINTSP)] &= ~val;
4506804d230SGuenter Roeck         trace_exynos_uart_intclr(s->channel, s->reg[I_(UINTP)]);
451e5a4914eSMaksim Kozlov         exynos4210_uart_update_irq(s);
452e5a4914eSMaksim Kozlov         break;
453e5a4914eSMaksim Kozlov     case UTRSTAT:
4543a5d3a6fSGuenter Roeck         if (val & UTRSTAT_Rx_TIMEOUT) {
4553a5d3a6fSGuenter Roeck             s->reg[I_(UTRSTAT)] &= ~UTRSTAT_Rx_TIMEOUT;
4563a5d3a6fSGuenter Roeck         }
4573a5d3a6fSGuenter Roeck         break;
458e5a4914eSMaksim Kozlov     case UERSTAT:
459e5a4914eSMaksim Kozlov     case UFSTAT:
460e5a4914eSMaksim Kozlov     case UMSTAT:
461e5a4914eSMaksim Kozlov     case URXH:
4626804d230SGuenter Roeck         trace_exynos_uart_ro_write(
463e5a4914eSMaksim Kozlov                     s->channel, exynos4210_uart_regname(offset), offset);
464e5a4914eSMaksim Kozlov         break;
465e5a4914eSMaksim Kozlov     case UINTSP:
466e5a4914eSMaksim Kozlov         s->reg[I_(UINTSP)]  &= ~val;
467e5a4914eSMaksim Kozlov         break;
468e5a4914eSMaksim Kozlov     case UINTM:
469e5a4914eSMaksim Kozlov         s->reg[I_(UINTM)] = val;
470e5a4914eSMaksim Kozlov         exynos4210_uart_update_irq(s);
471e5a4914eSMaksim Kozlov         break;
472e5a4914eSMaksim Kozlov     case UCON:
473e5a4914eSMaksim Kozlov     case UMCON:
474e5a4914eSMaksim Kozlov     default:
475e5a4914eSMaksim Kozlov         s->reg[I_(offset)] = val;
476e5a4914eSMaksim Kozlov         break;
477e5a4914eSMaksim Kozlov     }
478e5a4914eSMaksim Kozlov }
4793a5d3a6fSGuenter Roeck 
480a8170e5eSAvi Kivity static uint64_t exynos4210_uart_read(void *opaque, hwaddr offset,
481e5a4914eSMaksim Kozlov                                   unsigned size)
482e5a4914eSMaksim Kozlov {
483e5a4914eSMaksim Kozlov     Exynos4210UartState *s = (Exynos4210UartState *)opaque;
484e5a4914eSMaksim Kozlov     uint32_t res;
485e5a4914eSMaksim Kozlov 
486e5a4914eSMaksim Kozlov     switch (offset) {
487e5a4914eSMaksim Kozlov     case UERSTAT: /* Read Only */
488e5a4914eSMaksim Kozlov         res = s->reg[I_(UERSTAT)];
489e5a4914eSMaksim Kozlov         s->reg[I_(UERSTAT)] = 0;
4906804d230SGuenter Roeck         trace_exynos_uart_read(s->channel, offset,
4916804d230SGuenter Roeck                                exynos4210_uart_regname(offset), res);
492e5a4914eSMaksim Kozlov         return res;
493e5a4914eSMaksim Kozlov     case UFSTAT: /* Read Only */
494e5a4914eSMaksim Kozlov         s->reg[I_(UFSTAT)] = fifo_elements_number(&s->rx) & 0xff;
495e5a4914eSMaksim Kozlov         if (fifo_empty_elements_number(&s->rx) == 0) {
496e5a4914eSMaksim Kozlov             s->reg[I_(UFSTAT)] |= UFSTAT_Rx_FIFO_FULL;
497e5a4914eSMaksim Kozlov             s->reg[I_(UFSTAT)] &= ~0xff;
498e5a4914eSMaksim Kozlov         }
4996804d230SGuenter Roeck         trace_exynos_uart_read(s->channel, offset,
5006804d230SGuenter Roeck                                exynos4210_uart_regname(offset),
5016804d230SGuenter Roeck                                s->reg[I_(UFSTAT)]);
502e5a4914eSMaksim Kozlov         return s->reg[I_(UFSTAT)];
503e5a4914eSMaksim Kozlov     case URXH:
504e5a4914eSMaksim Kozlov         if (s->reg[I_(UFCON)] & UFCON_FIFO_ENABLE) {
505e5a4914eSMaksim Kozlov             if (fifo_elements_number(&s->rx)) {
506e5a4914eSMaksim Kozlov                 res = fifo_retrieve(&s->rx);
5076804d230SGuenter Roeck                 trace_exynos_uart_rx(s->channel, res);
508e5a4914eSMaksim Kozlov                 if (!fifo_elements_number(&s->rx)) {
509e5a4914eSMaksim Kozlov                     s->reg[I_(UTRSTAT)] &= ~UTRSTAT_Rx_BUFFER_DATA_READY;
510e5a4914eSMaksim Kozlov                 } else {
511e5a4914eSMaksim Kozlov                     s->reg[I_(UTRSTAT)] |= UTRSTAT_Rx_BUFFER_DATA_READY;
512e5a4914eSMaksim Kozlov                 }
513e5a4914eSMaksim Kozlov             } else {
5146804d230SGuenter Roeck                 trace_exynos_uart_rx_error(s->channel);
515e5a4914eSMaksim Kozlov                 s->reg[I_(UINTSP)] |= UINTSP_ERROR;
516e5a4914eSMaksim Kozlov                 exynos4210_uart_update_irq(s);
517e5a4914eSMaksim Kozlov                 res = 0;
518e5a4914eSMaksim Kozlov             }
519e5a4914eSMaksim Kozlov         } else {
520e5a4914eSMaksim Kozlov             s->reg[I_(UTRSTAT)] &= ~UTRSTAT_Rx_BUFFER_DATA_READY;
521e5a4914eSMaksim Kozlov             res = s->reg[I_(URXH)];
522e5a4914eSMaksim Kozlov         }
5233c77412bSGuenter Roeck         exynos4210_uart_update_dmabusy(s);
5246804d230SGuenter Roeck         trace_exynos_uart_read(s->channel, offset,
5256804d230SGuenter Roeck                                exynos4210_uart_regname(offset), res);
526e5a4914eSMaksim Kozlov         return res;
527e5a4914eSMaksim Kozlov     case UTXH:
5286804d230SGuenter Roeck         trace_exynos_uart_wo_read(s->channel, exynos4210_uart_regname(offset),
5296804d230SGuenter Roeck                                   offset);
530e5a4914eSMaksim Kozlov         break;
531e5a4914eSMaksim Kozlov     default:
5326804d230SGuenter Roeck         trace_exynos_uart_read(s->channel, offset,
5336804d230SGuenter Roeck                                exynos4210_uart_regname(offset),
5346804d230SGuenter Roeck                                s->reg[I_(offset)]);
535e5a4914eSMaksim Kozlov         return s->reg[I_(offset)];
536e5a4914eSMaksim Kozlov     }
537e5a4914eSMaksim Kozlov 
5386804d230SGuenter Roeck     trace_exynos_uart_read(s->channel, offset, exynos4210_uart_regname(offset),
5396804d230SGuenter Roeck                            0);
540e5a4914eSMaksim Kozlov     return 0;
541e5a4914eSMaksim Kozlov }
542e5a4914eSMaksim Kozlov 
543e5a4914eSMaksim Kozlov static const MemoryRegionOps exynos4210_uart_ops = {
544e5a4914eSMaksim Kozlov     .read = exynos4210_uart_read,
545e5a4914eSMaksim Kozlov     .write = exynos4210_uart_write,
546e5a4914eSMaksim Kozlov     .endianness = DEVICE_NATIVE_ENDIAN,
547e5a4914eSMaksim Kozlov     .valid = {
548e5a4914eSMaksim Kozlov         .max_access_size = 4,
549e5a4914eSMaksim Kozlov         .unaligned = false
550e5a4914eSMaksim Kozlov     },
551e5a4914eSMaksim Kozlov };
552e5a4914eSMaksim Kozlov 
553e5a4914eSMaksim Kozlov static int exynos4210_uart_can_receive(void *opaque)
554e5a4914eSMaksim Kozlov {
555e5a4914eSMaksim Kozlov     Exynos4210UartState *s = (Exynos4210UartState *)opaque;
556e5a4914eSMaksim Kozlov 
557e5a4914eSMaksim Kozlov     return fifo_empty_elements_number(&s->rx);
558e5a4914eSMaksim Kozlov }
559e5a4914eSMaksim Kozlov 
560e5a4914eSMaksim Kozlov static void exynos4210_uart_receive(void *opaque, const uint8_t *buf, int size)
561e5a4914eSMaksim Kozlov {
562e5a4914eSMaksim Kozlov     Exynos4210UartState *s = (Exynos4210UartState *)opaque;
563e5a4914eSMaksim Kozlov     int i;
564e5a4914eSMaksim Kozlov 
565e5a4914eSMaksim Kozlov     if (s->reg[I_(UFCON)] & UFCON_FIFO_ENABLE) {
566e5a4914eSMaksim Kozlov         if (fifo_empty_elements_number(&s->rx) < size) {
5673a5d3a6fSGuenter Roeck             size = fifo_empty_elements_number(&s->rx);
568e5a4914eSMaksim Kozlov             s->reg[I_(UINTSP)] |= UINTSP_ERROR;
5693a5d3a6fSGuenter Roeck         }
570e5a4914eSMaksim Kozlov         for (i = 0; i < size; i++) {
571e5a4914eSMaksim Kozlov             fifo_store(&s->rx, buf[i]);
572e5a4914eSMaksim Kozlov         }
5733a5d3a6fSGuenter Roeck         exynos4210_uart_rx_timeout_set(s);
574e5a4914eSMaksim Kozlov     } else {
575e5a4914eSMaksim Kozlov         s->reg[I_(URXH)] = buf[0];
576e5a4914eSMaksim Kozlov     }
5773a5d3a6fSGuenter Roeck     s->reg[I_(UTRSTAT)] |= UTRSTAT_Rx_BUFFER_DATA_READY;
578e5a4914eSMaksim Kozlov 
579e5a4914eSMaksim Kozlov     exynos4210_uart_update_irq(s);
580e5a4914eSMaksim Kozlov }
581e5a4914eSMaksim Kozlov 
582e5a4914eSMaksim Kozlov 
583083b266fSPhilippe Mathieu-Daudé static void exynos4210_uart_event(void *opaque, QEMUChrEvent event)
584e5a4914eSMaksim Kozlov {
585e5a4914eSMaksim Kozlov     Exynos4210UartState *s = (Exynos4210UartState *)opaque;
586e5a4914eSMaksim Kozlov 
587e5a4914eSMaksim Kozlov     if (event == CHR_EVENT_BREAK) {
588e5a4914eSMaksim Kozlov         /* When the RxDn is held in logic 0, then a null byte is pushed into the
589e5a4914eSMaksim Kozlov          * fifo */
590e5a4914eSMaksim Kozlov         fifo_store(&s->rx, '\0');
591e5a4914eSMaksim Kozlov         s->reg[I_(UERSTAT)] |= UERSTAT_BREAK;
592e5a4914eSMaksim Kozlov         exynos4210_uart_update_irq(s);
593e5a4914eSMaksim Kozlov     }
594e5a4914eSMaksim Kozlov }
595e5a4914eSMaksim Kozlov 
596e5a4914eSMaksim Kozlov 
597e5a4914eSMaksim Kozlov static void exynos4210_uart_reset(DeviceState *dev)
598e5a4914eSMaksim Kozlov {
59961149ff6SAndreas Färber     Exynos4210UartState *s = EXYNOS4210_UART(dev);
600e5a4914eSMaksim Kozlov     int i;
601e5a4914eSMaksim Kozlov 
602c46b07f0SStefan Weil     for (i = 0; i < ARRAY_SIZE(exynos4210_uart_regs); i++) {
603e5a4914eSMaksim Kozlov         s->reg[I_(exynos4210_uart_regs[i].offset)] =
604e5a4914eSMaksim Kozlov                 exynos4210_uart_regs[i].reset_value;
605e5a4914eSMaksim Kozlov     }
606e5a4914eSMaksim Kozlov 
607e5a4914eSMaksim Kozlov     fifo_reset(&s->rx);
608e5a4914eSMaksim Kozlov     fifo_reset(&s->tx);
609e5a4914eSMaksim Kozlov 
6106804d230SGuenter Roeck     trace_exynos_uart_rxsize(s->channel, s->rx.size);
611e5a4914eSMaksim Kozlov }
612e5a4914eSMaksim Kozlov 
613c9d3396dSGuenter Roeck static int exynos4210_uart_post_load(void *opaque, int version_id)
614c9d3396dSGuenter Roeck {
615c9d3396dSGuenter Roeck     Exynos4210UartState *s = (Exynos4210UartState *)opaque;
616c9d3396dSGuenter Roeck 
617c9d3396dSGuenter Roeck     exynos4210_uart_update_parameters(s);
6183a5d3a6fSGuenter Roeck     exynos4210_uart_rx_timeout_set(s);
619c9d3396dSGuenter Roeck 
620c9d3396dSGuenter Roeck     return 0;
621c9d3396dSGuenter Roeck }
622c9d3396dSGuenter Roeck 
623e5a4914eSMaksim Kozlov static const VMStateDescription vmstate_exynos4210_uart_fifo = {
624e5a4914eSMaksim Kozlov     .name = "exynos4210.uart.fifo",
625e5a4914eSMaksim Kozlov     .version_id = 1,
626e5a4914eSMaksim Kozlov     .minimum_version_id = 1,
627c9d3396dSGuenter Roeck     .post_load = exynos4210_uart_post_load,
628e5a4914eSMaksim Kozlov     .fields = (VMStateField[]) {
629e5a4914eSMaksim Kozlov         VMSTATE_UINT32(sp, Exynos4210UartFIFO),
630e5a4914eSMaksim Kozlov         VMSTATE_UINT32(rp, Exynos4210UartFIFO),
63159046ec2SHalil Pasic         VMSTATE_VBUFFER_UINT32(data, Exynos4210UartFIFO, 1, NULL, size),
632e5a4914eSMaksim Kozlov         VMSTATE_END_OF_LIST()
633e5a4914eSMaksim Kozlov     }
634e5a4914eSMaksim Kozlov };
635e5a4914eSMaksim Kozlov 
636e5a4914eSMaksim Kozlov static const VMStateDescription vmstate_exynos4210_uart = {
637e5a4914eSMaksim Kozlov     .name = "exynos4210.uart",
638e5a4914eSMaksim Kozlov     .version_id = 1,
639e5a4914eSMaksim Kozlov     .minimum_version_id = 1,
640e5a4914eSMaksim Kozlov     .fields = (VMStateField[]) {
641e5a4914eSMaksim Kozlov         VMSTATE_STRUCT(rx, Exynos4210UartState, 1,
642e5a4914eSMaksim Kozlov                        vmstate_exynos4210_uart_fifo, Exynos4210UartFIFO),
643e5a4914eSMaksim Kozlov         VMSTATE_UINT32_ARRAY(reg, Exynos4210UartState,
644e5a4914eSMaksim Kozlov                              EXYNOS4210_UART_REGS_MEM_SIZE / sizeof(uint32_t)),
645e5a4914eSMaksim Kozlov         VMSTATE_END_OF_LIST()
646e5a4914eSMaksim Kozlov     }
647e5a4914eSMaksim Kozlov };
648e5a4914eSMaksim Kozlov 
649a8170e5eSAvi Kivity DeviceState *exynos4210_uart_create(hwaddr addr,
650e5a4914eSMaksim Kozlov                                     int fifo_size,
651e5a4914eSMaksim Kozlov                                     int channel,
6520ec7b3e7SMarc-André Lureau                                     Chardev *chr,
653e5a4914eSMaksim Kozlov                                     qemu_irq irq)
654e5a4914eSMaksim Kozlov {
655e5a4914eSMaksim Kozlov     DeviceState  *dev;
656e5a4914eSMaksim Kozlov     SysBusDevice *bus;
657e5a4914eSMaksim Kozlov 
6583e80f690SMarkus Armbruster     dev = qdev_new(TYPE_EXYNOS4210_UART);
659e5a4914eSMaksim Kozlov 
660e5a4914eSMaksim Kozlov     qdev_prop_set_chr(dev, "chardev", chr);
661e5a4914eSMaksim Kozlov     qdev_prop_set_uint32(dev, "channel", channel);
662e5a4914eSMaksim Kozlov     qdev_prop_set_uint32(dev, "rx-size", fifo_size);
663e5a4914eSMaksim Kozlov     qdev_prop_set_uint32(dev, "tx-size", fifo_size);
664e5a4914eSMaksim Kozlov 
6651356b98dSAndreas Färber     bus = SYS_BUS_DEVICE(dev);
6663c6ef471SMarkus Armbruster     sysbus_realize_and_unref(bus, &error_fatal);
667a8170e5eSAvi Kivity     if (addr != (hwaddr)-1) {
668e5a4914eSMaksim Kozlov         sysbus_mmio_map(bus, 0, addr);
669e5a4914eSMaksim Kozlov     }
670e5a4914eSMaksim Kozlov     sysbus_connect_irq(bus, 0, irq);
671e5a4914eSMaksim Kozlov 
672e5a4914eSMaksim Kozlov     return dev;
673e5a4914eSMaksim Kozlov }
674e5a4914eSMaksim Kozlov 
6755b982482Sxiaoqiang zhao static void exynos4210_uart_init(Object *obj)
676e5a4914eSMaksim Kozlov {
6775b982482Sxiaoqiang zhao     SysBusDevice *dev = SYS_BUS_DEVICE(obj);
67861149ff6SAndreas Färber     Exynos4210UartState *s = EXYNOS4210_UART(dev);
679e5a4914eSMaksim Kozlov 
6803a5d3a6fSGuenter Roeck     s->wordtime = NANOSECONDS_PER_SECOND * 10 / 9600;
6813a5d3a6fSGuenter Roeck 
682e5a4914eSMaksim Kozlov     /* memory mapping */
6835b982482Sxiaoqiang zhao     memory_region_init_io(&s->iomem, obj, &exynos4210_uart_ops, s,
684300b1fc6SPaolo Bonzini                           "exynos4210.uart", EXYNOS4210_UART_REGS_MEM_SIZE);
685e5a4914eSMaksim Kozlov     sysbus_init_mmio(dev, &s->iomem);
686e5a4914eSMaksim Kozlov 
687e5a4914eSMaksim Kozlov     sysbus_init_irq(dev, &s->irq);
6883c77412bSGuenter Roeck     sysbus_init_irq(dev, &s->dmairq);
6895b982482Sxiaoqiang zhao }
6905b982482Sxiaoqiang zhao 
6915b982482Sxiaoqiang zhao static void exynos4210_uart_realize(DeviceState *dev, Error **errp)
6925b982482Sxiaoqiang zhao {
6935b982482Sxiaoqiang zhao     Exynos4210UartState *s = EXYNOS4210_UART(dev);
694e5a4914eSMaksim Kozlov 
6958bbc394cSChen Qun     s->fifo_timeout_timer = timer_new_ns(QEMU_CLOCK_VIRTUAL,
6968bbc394cSChen Qun                                          exynos4210_uart_timeout_int, s);
6978bbc394cSChen Qun 
6985345fdb4SMarc-André Lureau     qemu_chr_fe_set_handlers(&s->chr, exynos4210_uart_can_receive,
6995345fdb4SMarc-André Lureau                              exynos4210_uart_receive, exynos4210_uart_event,
70081517ba3SAnton Nefedov                              NULL, s, NULL, true);
701e5a4914eSMaksim Kozlov }
702e5a4914eSMaksim Kozlov 
703e5a4914eSMaksim Kozlov static Property exynos4210_uart_properties[] = {
704e5a4914eSMaksim Kozlov     DEFINE_PROP_CHR("chardev", Exynos4210UartState, chr),
705e5a4914eSMaksim Kozlov     DEFINE_PROP_UINT32("channel", Exynos4210UartState, channel, 0),
706e5a4914eSMaksim Kozlov     DEFINE_PROP_UINT32("rx-size", Exynos4210UartState, rx.size, 16),
707e5a4914eSMaksim Kozlov     DEFINE_PROP_UINT32("tx-size", Exynos4210UartState, tx.size, 16),
708e5a4914eSMaksim Kozlov     DEFINE_PROP_END_OF_LIST(),
709e5a4914eSMaksim Kozlov };
710e5a4914eSMaksim Kozlov 
711e5a4914eSMaksim Kozlov static void exynos4210_uart_class_init(ObjectClass *klass, void *data)
712e5a4914eSMaksim Kozlov {
713e5a4914eSMaksim Kozlov     DeviceClass *dc = DEVICE_CLASS(klass);
714e5a4914eSMaksim Kozlov 
7155b982482Sxiaoqiang zhao     dc->realize = exynos4210_uart_realize;
716e5a4914eSMaksim Kozlov     dc->reset = exynos4210_uart_reset;
7174f67d30bSMarc-André Lureau     device_class_set_props(dc, exynos4210_uart_properties);
718e5a4914eSMaksim Kozlov     dc->vmsd = &vmstate_exynos4210_uart;
719e5a4914eSMaksim Kozlov }
720e5a4914eSMaksim Kozlov 
7218c43a6f0SAndreas Färber static const TypeInfo exynos4210_uart_info = {
72261149ff6SAndreas Färber     .name          = TYPE_EXYNOS4210_UART,
723e5a4914eSMaksim Kozlov     .parent        = TYPE_SYS_BUS_DEVICE,
724e5a4914eSMaksim Kozlov     .instance_size = sizeof(Exynos4210UartState),
7255b982482Sxiaoqiang zhao     .instance_init = exynos4210_uart_init,
726e5a4914eSMaksim Kozlov     .class_init    = exynos4210_uart_class_init,
727e5a4914eSMaksim Kozlov };
728e5a4914eSMaksim Kozlov 
729e5a4914eSMaksim Kozlov static void exynos4210_uart_register(void)
730e5a4914eSMaksim Kozlov {
731e5a4914eSMaksim Kozlov     type_register_static(&exynos4210_uart_info);
732e5a4914eSMaksim Kozlov }
733e5a4914eSMaksim Kozlov 
734e5a4914eSMaksim Kozlov type_init(exynos4210_uart_register)
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