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 2283c9f4caSPaolo Bonzini #include "hw/sysbus.h" 239c17d615SPaolo Bonzini #include "sysemu/sysemu.h" 24dccfcd0eSPaolo Bonzini #include "sysemu/char.h" 25e5a4914eSMaksim Kozlov 260d09e41aSPaolo Bonzini #include "hw/arm/exynos4210.h" 27e5a4914eSMaksim Kozlov 28e5a4914eSMaksim Kozlov #undef DEBUG_UART 29e5a4914eSMaksim Kozlov #undef DEBUG_UART_EXTEND 30e5a4914eSMaksim Kozlov #undef DEBUG_IRQ 31e5a4914eSMaksim Kozlov #undef DEBUG_Rx_DATA 32e5a4914eSMaksim Kozlov #undef DEBUG_Tx_DATA 33e5a4914eSMaksim Kozlov 34e5a4914eSMaksim Kozlov #define DEBUG_UART 0 35e5a4914eSMaksim Kozlov #define DEBUG_UART_EXTEND 0 36e5a4914eSMaksim Kozlov #define DEBUG_IRQ 0 37e5a4914eSMaksim Kozlov #define DEBUG_Rx_DATA 0 38e5a4914eSMaksim Kozlov #define DEBUG_Tx_DATA 0 39e5a4914eSMaksim Kozlov 40e5a4914eSMaksim Kozlov #if DEBUG_UART 41e5a4914eSMaksim Kozlov #define PRINT_DEBUG(fmt, args...) \ 42e5a4914eSMaksim Kozlov do { \ 43e5a4914eSMaksim Kozlov fprintf(stderr, " [%s:%d] "fmt, __func__, __LINE__, ##args); \ 44e5a4914eSMaksim Kozlov } while (0) 45e5a4914eSMaksim Kozlov 46e5a4914eSMaksim Kozlov #if DEBUG_UART_EXTEND 47e5a4914eSMaksim Kozlov #define PRINT_DEBUG_EXTEND(fmt, args...) \ 48e5a4914eSMaksim Kozlov do { \ 49e5a4914eSMaksim Kozlov fprintf(stderr, " [%s:%d] "fmt, __func__, __LINE__, ##args); \ 50e5a4914eSMaksim Kozlov } while (0) 51e5a4914eSMaksim Kozlov #else 52e5a4914eSMaksim Kozlov #define PRINT_DEBUG_EXTEND(fmt, args...) \ 53e5a4914eSMaksim Kozlov do {} while (0) 54e5a4914eSMaksim Kozlov #endif /* EXTEND */ 55e5a4914eSMaksim Kozlov 56e5a4914eSMaksim Kozlov #else 57e5a4914eSMaksim Kozlov #define PRINT_DEBUG(fmt, args...) \ 58e5a4914eSMaksim Kozlov do {} while (0) 59e5a4914eSMaksim Kozlov #define PRINT_DEBUG_EXTEND(fmt, args...) \ 60e5a4914eSMaksim Kozlov do {} while (0) 61e5a4914eSMaksim Kozlov #endif 62e5a4914eSMaksim Kozlov 63e5a4914eSMaksim Kozlov #define PRINT_ERROR(fmt, args...) \ 64e5a4914eSMaksim Kozlov do { \ 65e5a4914eSMaksim Kozlov fprintf(stderr, " [%s:%d] "fmt, __func__, __LINE__, ##args); \ 66e5a4914eSMaksim Kozlov } while (0) 67e5a4914eSMaksim Kozlov 68e5a4914eSMaksim Kozlov /* 69e5a4914eSMaksim Kozlov * Offsets for UART registers relative to SFR base address 70e5a4914eSMaksim Kozlov * for UARTn 71e5a4914eSMaksim Kozlov * 72e5a4914eSMaksim Kozlov */ 73e5a4914eSMaksim Kozlov #define ULCON 0x0000 /* Line Control */ 74e5a4914eSMaksim Kozlov #define UCON 0x0004 /* Control */ 75e5a4914eSMaksim Kozlov #define UFCON 0x0008 /* FIFO Control */ 76e5a4914eSMaksim Kozlov #define UMCON 0x000C /* Modem Control */ 77e5a4914eSMaksim Kozlov #define UTRSTAT 0x0010 /* Tx/Rx Status */ 78e5a4914eSMaksim Kozlov #define UERSTAT 0x0014 /* UART Error Status */ 79e5a4914eSMaksim Kozlov #define UFSTAT 0x0018 /* FIFO Status */ 80e5a4914eSMaksim Kozlov #define UMSTAT 0x001C /* Modem Status */ 81e5a4914eSMaksim Kozlov #define UTXH 0x0020 /* Transmit Buffer */ 82e5a4914eSMaksim Kozlov #define URXH 0x0024 /* Receive Buffer */ 83e5a4914eSMaksim Kozlov #define UBRDIV 0x0028 /* Baud Rate Divisor */ 84e5a4914eSMaksim Kozlov #define UFRACVAL 0x002C /* Divisor Fractional Value */ 85e5a4914eSMaksim Kozlov #define UINTP 0x0030 /* Interrupt Pending */ 86e5a4914eSMaksim Kozlov #define UINTSP 0x0034 /* Interrupt Source Pending */ 87e5a4914eSMaksim Kozlov #define UINTM 0x0038 /* Interrupt Mask */ 88e5a4914eSMaksim Kozlov 89e5a4914eSMaksim Kozlov /* 90e5a4914eSMaksim Kozlov * for indexing register in the uint32_t array 91e5a4914eSMaksim Kozlov * 92e5a4914eSMaksim Kozlov * 'reg' - register offset (see offsets definitions above) 93e5a4914eSMaksim Kozlov * 94e5a4914eSMaksim Kozlov */ 95e5a4914eSMaksim Kozlov #define I_(reg) (reg / sizeof(uint32_t)) 96e5a4914eSMaksim Kozlov 97e5a4914eSMaksim Kozlov typedef struct Exynos4210UartReg { 98e5a4914eSMaksim Kozlov const char *name; /* the only reason is the debug output */ 99a8170e5eSAvi Kivity hwaddr offset; 100e5a4914eSMaksim Kozlov uint32_t reset_value; 101e5a4914eSMaksim Kozlov } Exynos4210UartReg; 102e5a4914eSMaksim Kozlov 103e5a4914eSMaksim Kozlov static Exynos4210UartReg exynos4210_uart_regs[] = { 104e5a4914eSMaksim Kozlov {"ULCON", ULCON, 0x00000000}, 105e5a4914eSMaksim Kozlov {"UCON", UCON, 0x00003000}, 106e5a4914eSMaksim Kozlov {"UFCON", UFCON, 0x00000000}, 107e5a4914eSMaksim Kozlov {"UMCON", UMCON, 0x00000000}, 108e5a4914eSMaksim Kozlov {"UTRSTAT", UTRSTAT, 0x00000006}, /* RO */ 109e5a4914eSMaksim Kozlov {"UERSTAT", UERSTAT, 0x00000000}, /* RO */ 110e5a4914eSMaksim Kozlov {"UFSTAT", UFSTAT, 0x00000000}, /* RO */ 111e5a4914eSMaksim Kozlov {"UMSTAT", UMSTAT, 0x00000000}, /* RO */ 112e5a4914eSMaksim Kozlov {"UTXH", UTXH, 0x5c5c5c5c}, /* WO, undefined reset value*/ 113e5a4914eSMaksim Kozlov {"URXH", URXH, 0x00000000}, /* RO */ 114e5a4914eSMaksim Kozlov {"UBRDIV", UBRDIV, 0x00000000}, 115e5a4914eSMaksim Kozlov {"UFRACVAL", UFRACVAL, 0x00000000}, 116e5a4914eSMaksim Kozlov {"UINTP", UINTP, 0x00000000}, 117e5a4914eSMaksim Kozlov {"UINTSP", UINTSP, 0x00000000}, 118e5a4914eSMaksim Kozlov {"UINTM", UINTM, 0x00000000}, 119e5a4914eSMaksim Kozlov }; 120e5a4914eSMaksim Kozlov 121e5a4914eSMaksim Kozlov #define EXYNOS4210_UART_REGS_MEM_SIZE 0x3C 122e5a4914eSMaksim Kozlov 123e5a4914eSMaksim Kozlov /* UART FIFO Control */ 124e5a4914eSMaksim Kozlov #define UFCON_FIFO_ENABLE 0x1 125e5a4914eSMaksim Kozlov #define UFCON_Rx_FIFO_RESET 0x2 126e5a4914eSMaksim Kozlov #define UFCON_Tx_FIFO_RESET 0x4 127e5a4914eSMaksim Kozlov #define UFCON_Tx_FIFO_TRIGGER_LEVEL_SHIFT 8 128e5a4914eSMaksim Kozlov #define UFCON_Tx_FIFO_TRIGGER_LEVEL (7 << UFCON_Tx_FIFO_TRIGGER_LEVEL_SHIFT) 129e5a4914eSMaksim Kozlov #define UFCON_Rx_FIFO_TRIGGER_LEVEL_SHIFT 4 130e5a4914eSMaksim Kozlov #define UFCON_Rx_FIFO_TRIGGER_LEVEL (7 << UFCON_Rx_FIFO_TRIGGER_LEVEL_SHIFT) 131e5a4914eSMaksim Kozlov 132e5a4914eSMaksim Kozlov /* Uart FIFO Status */ 133e5a4914eSMaksim Kozlov #define UFSTAT_Rx_FIFO_COUNT 0xff 134e5a4914eSMaksim Kozlov #define UFSTAT_Rx_FIFO_FULL 0x100 135e5a4914eSMaksim Kozlov #define UFSTAT_Rx_FIFO_ERROR 0x200 136e5a4914eSMaksim Kozlov #define UFSTAT_Tx_FIFO_COUNT_SHIFT 16 137e5a4914eSMaksim Kozlov #define UFSTAT_Tx_FIFO_COUNT (0xff << UFSTAT_Tx_FIFO_COUNT_SHIFT) 138e5a4914eSMaksim Kozlov #define UFSTAT_Tx_FIFO_FULL_SHIFT 24 139e5a4914eSMaksim Kozlov #define UFSTAT_Tx_FIFO_FULL (1 << UFSTAT_Tx_FIFO_FULL_SHIFT) 140e5a4914eSMaksim Kozlov 141e5a4914eSMaksim Kozlov /* UART Interrupt Source Pending */ 142e5a4914eSMaksim Kozlov #define UINTSP_RXD 0x1 /* Receive interrupt */ 143e5a4914eSMaksim Kozlov #define UINTSP_ERROR 0x2 /* Error interrupt */ 144e5a4914eSMaksim Kozlov #define UINTSP_TXD 0x4 /* Transmit interrupt */ 145e5a4914eSMaksim Kozlov #define UINTSP_MODEM 0x8 /* Modem interrupt */ 146e5a4914eSMaksim Kozlov 147e5a4914eSMaksim Kozlov /* UART Line Control */ 148e5a4914eSMaksim Kozlov #define ULCON_IR_MODE_SHIFT 6 149e5a4914eSMaksim Kozlov #define ULCON_PARITY_SHIFT 3 150e5a4914eSMaksim Kozlov #define ULCON_STOP_BIT_SHIFT 1 151e5a4914eSMaksim Kozlov 152e5a4914eSMaksim Kozlov /* UART Tx/Rx Status */ 153e5a4914eSMaksim Kozlov #define UTRSTAT_TRANSMITTER_EMPTY 0x4 154e5a4914eSMaksim Kozlov #define UTRSTAT_Tx_BUFFER_EMPTY 0x2 155e5a4914eSMaksim Kozlov #define UTRSTAT_Rx_BUFFER_DATA_READY 0x1 156e5a4914eSMaksim Kozlov 157e5a4914eSMaksim Kozlov /* UART Error Status */ 158e5a4914eSMaksim Kozlov #define UERSTAT_OVERRUN 0x1 159e5a4914eSMaksim Kozlov #define UERSTAT_PARITY 0x2 160e5a4914eSMaksim Kozlov #define UERSTAT_FRAME 0x4 161e5a4914eSMaksim Kozlov #define UERSTAT_BREAK 0x8 162e5a4914eSMaksim Kozlov 163e5a4914eSMaksim Kozlov typedef struct { 164e5a4914eSMaksim Kozlov uint8_t *data; 165e5a4914eSMaksim Kozlov uint32_t sp, rp; /* store and retrieve pointers */ 166e5a4914eSMaksim Kozlov uint32_t size; 167e5a4914eSMaksim Kozlov } Exynos4210UartFIFO; 168e5a4914eSMaksim Kozlov 169*61149ff6SAndreas Färber #define TYPE_EXYNOS4210_UART "exynos4210.uart" 170*61149ff6SAndreas Färber #define EXYNOS4210_UART(obj) \ 171*61149ff6SAndreas Färber OBJECT_CHECK(Exynos4210UartState, (obj), TYPE_EXYNOS4210_UART) 172*61149ff6SAndreas Färber 173*61149ff6SAndreas Färber typedef struct Exynos4210UartState { 174*61149ff6SAndreas Färber SysBusDevice parent_obj; 175*61149ff6SAndreas Färber 176e5a4914eSMaksim Kozlov MemoryRegion iomem; 177e5a4914eSMaksim Kozlov 178e5a4914eSMaksim Kozlov uint32_t reg[EXYNOS4210_UART_REGS_MEM_SIZE / sizeof(uint32_t)]; 179e5a4914eSMaksim Kozlov Exynos4210UartFIFO rx; 180e5a4914eSMaksim Kozlov Exynos4210UartFIFO tx; 181e5a4914eSMaksim Kozlov 182e5a4914eSMaksim Kozlov CharDriverState *chr; 183e5a4914eSMaksim Kozlov qemu_irq irq; 184e5a4914eSMaksim Kozlov 185e5a4914eSMaksim Kozlov uint32_t channel; 186e5a4914eSMaksim Kozlov 187e5a4914eSMaksim Kozlov } Exynos4210UartState; 188e5a4914eSMaksim Kozlov 189e5a4914eSMaksim Kozlov 190e5a4914eSMaksim Kozlov #if DEBUG_UART 191e5a4914eSMaksim Kozlov /* Used only for debugging inside PRINT_DEBUG_... macros */ 192a8170e5eSAvi Kivity static const char *exynos4210_uart_regname(hwaddr offset) 193e5a4914eSMaksim Kozlov { 194e5a4914eSMaksim Kozlov 195e5a4914eSMaksim Kozlov int regs_number = sizeof(exynos4210_uart_regs) / sizeof(Exynos4210UartReg); 196e5a4914eSMaksim Kozlov int i; 197e5a4914eSMaksim Kozlov 198e5a4914eSMaksim Kozlov for (i = 0; i < regs_number; i++) { 199e5a4914eSMaksim Kozlov if (offset == exynos4210_uart_regs[i].offset) { 200e5a4914eSMaksim Kozlov return exynos4210_uart_regs[i].name; 201e5a4914eSMaksim Kozlov } 202e5a4914eSMaksim Kozlov } 203e5a4914eSMaksim Kozlov 204e5a4914eSMaksim Kozlov return NULL; 205e5a4914eSMaksim Kozlov } 206e5a4914eSMaksim Kozlov #endif 207e5a4914eSMaksim Kozlov 208e5a4914eSMaksim Kozlov 209e5a4914eSMaksim Kozlov static void fifo_store(Exynos4210UartFIFO *q, uint8_t ch) 210e5a4914eSMaksim Kozlov { 211e5a4914eSMaksim Kozlov q->data[q->sp] = ch; 212e5a4914eSMaksim Kozlov q->sp = (q->sp + 1) % q->size; 213e5a4914eSMaksim Kozlov } 214e5a4914eSMaksim Kozlov 215e5a4914eSMaksim Kozlov static uint8_t fifo_retrieve(Exynos4210UartFIFO *q) 216e5a4914eSMaksim Kozlov { 217e5a4914eSMaksim Kozlov uint8_t ret = q->data[q->rp]; 218e5a4914eSMaksim Kozlov q->rp = (q->rp + 1) % q->size; 219e5a4914eSMaksim Kozlov return ret; 220e5a4914eSMaksim Kozlov } 221e5a4914eSMaksim Kozlov 222e5a4914eSMaksim Kozlov static int fifo_elements_number(Exynos4210UartFIFO *q) 223e5a4914eSMaksim Kozlov { 224e5a4914eSMaksim Kozlov if (q->sp < q->rp) { 225e5a4914eSMaksim Kozlov return q->size - q->rp + q->sp; 226e5a4914eSMaksim Kozlov } 227e5a4914eSMaksim Kozlov 228e5a4914eSMaksim Kozlov return q->sp - q->rp; 229e5a4914eSMaksim Kozlov } 230e5a4914eSMaksim Kozlov 231e5a4914eSMaksim Kozlov static int fifo_empty_elements_number(Exynos4210UartFIFO *q) 232e5a4914eSMaksim Kozlov { 233e5a4914eSMaksim Kozlov return q->size - fifo_elements_number(q); 234e5a4914eSMaksim Kozlov } 235e5a4914eSMaksim Kozlov 236e5a4914eSMaksim Kozlov static void fifo_reset(Exynos4210UartFIFO *q) 237e5a4914eSMaksim Kozlov { 238e5a4914eSMaksim Kozlov if (q->data != NULL) { 239e5a4914eSMaksim Kozlov g_free(q->data); 240e5a4914eSMaksim Kozlov q->data = NULL; 241e5a4914eSMaksim Kozlov } 242e5a4914eSMaksim Kozlov 243e5a4914eSMaksim Kozlov q->data = (uint8_t *)g_malloc0(q->size); 244e5a4914eSMaksim Kozlov 245e5a4914eSMaksim Kozlov q->sp = 0; 246e5a4914eSMaksim Kozlov q->rp = 0; 247e5a4914eSMaksim Kozlov } 248e5a4914eSMaksim Kozlov 249e5a4914eSMaksim Kozlov static uint32_t exynos4210_uart_Tx_FIFO_trigger_level(Exynos4210UartState *s) 250e5a4914eSMaksim Kozlov { 251e5a4914eSMaksim Kozlov uint32_t level = 0; 252e5a4914eSMaksim Kozlov uint32_t reg; 253e5a4914eSMaksim Kozlov 254b85f62d7SDaniel P. Berrange reg = (s->reg[I_(UFCON)] & UFCON_Tx_FIFO_TRIGGER_LEVEL) >> 255e5a4914eSMaksim Kozlov UFCON_Tx_FIFO_TRIGGER_LEVEL_SHIFT; 256e5a4914eSMaksim Kozlov 257e5a4914eSMaksim Kozlov switch (s->channel) { 258e5a4914eSMaksim Kozlov case 0: 259e5a4914eSMaksim Kozlov level = reg * 32; 260e5a4914eSMaksim Kozlov break; 261e5a4914eSMaksim Kozlov case 1: 262e5a4914eSMaksim Kozlov case 4: 263e5a4914eSMaksim Kozlov level = reg * 8; 264e5a4914eSMaksim Kozlov break; 265e5a4914eSMaksim Kozlov case 2: 266e5a4914eSMaksim Kozlov case 3: 267e5a4914eSMaksim Kozlov level = reg * 2; 268e5a4914eSMaksim Kozlov break; 269e5a4914eSMaksim Kozlov default: 270e5a4914eSMaksim Kozlov level = 0; 271e5a4914eSMaksim Kozlov PRINT_ERROR("Wrong UART channel number: %d\n", s->channel); 272e5a4914eSMaksim Kozlov } 273e5a4914eSMaksim Kozlov 274e5a4914eSMaksim Kozlov return level; 275e5a4914eSMaksim Kozlov } 276e5a4914eSMaksim Kozlov 277e5a4914eSMaksim Kozlov static void exynos4210_uart_update_irq(Exynos4210UartState *s) 278e5a4914eSMaksim Kozlov { 279e5a4914eSMaksim Kozlov /* 280e5a4914eSMaksim Kozlov * The Tx interrupt is always requested if the number of data in the 281e5a4914eSMaksim Kozlov * transmit FIFO is smaller than the trigger level. 282e5a4914eSMaksim Kozlov */ 283b85f62d7SDaniel P. Berrange if (s->reg[I_(UFCON)] & UFCON_FIFO_ENABLE) { 284e5a4914eSMaksim Kozlov 285b85f62d7SDaniel P. Berrange uint32_t count = (s->reg[I_(UFSTAT)] & UFSTAT_Tx_FIFO_COUNT) >> 286e5a4914eSMaksim Kozlov UFSTAT_Tx_FIFO_COUNT_SHIFT; 287e5a4914eSMaksim Kozlov 288e5a4914eSMaksim Kozlov if (count <= exynos4210_uart_Tx_FIFO_trigger_level(s)) { 289e5a4914eSMaksim Kozlov s->reg[I_(UINTSP)] |= UINTSP_TXD; 290e5a4914eSMaksim Kozlov } 291e5a4914eSMaksim Kozlov } 292e5a4914eSMaksim Kozlov 293e5a4914eSMaksim Kozlov s->reg[I_(UINTP)] = s->reg[I_(UINTSP)] & ~s->reg[I_(UINTM)]; 294e5a4914eSMaksim Kozlov 295e5a4914eSMaksim Kozlov if (s->reg[I_(UINTP)]) { 296e5a4914eSMaksim Kozlov qemu_irq_raise(s->irq); 297e5a4914eSMaksim Kozlov 298e5a4914eSMaksim Kozlov #if DEBUG_IRQ 299e5a4914eSMaksim Kozlov fprintf(stderr, "UART%d: IRQ has been raised: %08x\n", 300e5a4914eSMaksim Kozlov s->channel, s->reg[I_(UINTP)]); 301e5a4914eSMaksim Kozlov #endif 302e5a4914eSMaksim Kozlov 303e5a4914eSMaksim Kozlov } else { 304e5a4914eSMaksim Kozlov qemu_irq_lower(s->irq); 305e5a4914eSMaksim Kozlov } 306e5a4914eSMaksim Kozlov } 307e5a4914eSMaksim Kozlov 308e5a4914eSMaksim Kozlov static void exynos4210_uart_update_parameters(Exynos4210UartState *s) 309e5a4914eSMaksim Kozlov { 310e5a4914eSMaksim Kozlov int speed, parity, data_bits, stop_bits, frame_size; 311e5a4914eSMaksim Kozlov QEMUSerialSetParams ssp; 312e5a4914eSMaksim Kozlov uint64_t uclk_rate; 313e5a4914eSMaksim Kozlov 314e5a4914eSMaksim Kozlov if (s->reg[I_(UBRDIV)] == 0) { 315e5a4914eSMaksim Kozlov return; 316e5a4914eSMaksim Kozlov } 317e5a4914eSMaksim Kozlov 318e5a4914eSMaksim Kozlov frame_size = 1; /* start bit */ 319e5a4914eSMaksim Kozlov if (s->reg[I_(ULCON)] & 0x20) { 320e5a4914eSMaksim Kozlov frame_size++; /* parity bit */ 321e5a4914eSMaksim Kozlov if (s->reg[I_(ULCON)] & 0x28) { 322e5a4914eSMaksim Kozlov parity = 'E'; 323e5a4914eSMaksim Kozlov } else { 324e5a4914eSMaksim Kozlov parity = 'O'; 325e5a4914eSMaksim Kozlov } 326e5a4914eSMaksim Kozlov } else { 327e5a4914eSMaksim Kozlov parity = 'N'; 328e5a4914eSMaksim Kozlov } 329e5a4914eSMaksim Kozlov 330e5a4914eSMaksim Kozlov if (s->reg[I_(ULCON)] & 0x4) { 331e5a4914eSMaksim Kozlov stop_bits = 2; 332e5a4914eSMaksim Kozlov } else { 333e5a4914eSMaksim Kozlov stop_bits = 1; 334e5a4914eSMaksim Kozlov } 335e5a4914eSMaksim Kozlov 336e5a4914eSMaksim Kozlov data_bits = (s->reg[I_(ULCON)] & 0x3) + 5; 337e5a4914eSMaksim Kozlov 338e5a4914eSMaksim Kozlov frame_size += data_bits + stop_bits; 339e5a4914eSMaksim Kozlov 340e5a4914eSMaksim Kozlov uclk_rate = 24000000; 341e5a4914eSMaksim Kozlov 342e5a4914eSMaksim Kozlov speed = uclk_rate / ((16 * (s->reg[I_(UBRDIV)]) & 0xffff) + 343e5a4914eSMaksim Kozlov (s->reg[I_(UFRACVAL)] & 0x7) + 16); 344e5a4914eSMaksim Kozlov 345e5a4914eSMaksim Kozlov ssp.speed = speed; 346e5a4914eSMaksim Kozlov ssp.parity = parity; 347e5a4914eSMaksim Kozlov ssp.data_bits = data_bits; 348e5a4914eSMaksim Kozlov ssp.stop_bits = stop_bits; 349e5a4914eSMaksim Kozlov 350e5a4914eSMaksim Kozlov qemu_chr_fe_ioctl(s->chr, CHR_IOCTL_SERIAL_SET_PARAMS, &ssp); 351e5a4914eSMaksim Kozlov 352e5a4914eSMaksim Kozlov PRINT_DEBUG("UART%d: speed: %d, parity: %c, data: %d, stop: %d\n", 353e5a4914eSMaksim Kozlov s->channel, speed, parity, data_bits, stop_bits); 354e5a4914eSMaksim Kozlov } 355e5a4914eSMaksim Kozlov 356a8170e5eSAvi Kivity static void exynos4210_uart_write(void *opaque, hwaddr offset, 357e5a4914eSMaksim Kozlov uint64_t val, unsigned size) 358e5a4914eSMaksim Kozlov { 359e5a4914eSMaksim Kozlov Exynos4210UartState *s = (Exynos4210UartState *)opaque; 360e5a4914eSMaksim Kozlov uint8_t ch; 361e5a4914eSMaksim Kozlov 362e5a4914eSMaksim Kozlov PRINT_DEBUG_EXTEND("UART%d: <0x%04x> %s <- 0x%08llx\n", s->channel, 363e5a4914eSMaksim Kozlov offset, exynos4210_uart_regname(offset), (long long unsigned int)val); 364e5a4914eSMaksim Kozlov 365e5a4914eSMaksim Kozlov switch (offset) { 366e5a4914eSMaksim Kozlov case ULCON: 367e5a4914eSMaksim Kozlov case UBRDIV: 368e5a4914eSMaksim Kozlov case UFRACVAL: 369e5a4914eSMaksim Kozlov s->reg[I_(offset)] = val; 370e5a4914eSMaksim Kozlov exynos4210_uart_update_parameters(s); 371e5a4914eSMaksim Kozlov break; 372e5a4914eSMaksim Kozlov case UFCON: 373e5a4914eSMaksim Kozlov s->reg[I_(UFCON)] = val; 374e5a4914eSMaksim Kozlov if (val & UFCON_Rx_FIFO_RESET) { 375e5a4914eSMaksim Kozlov fifo_reset(&s->rx); 376e5a4914eSMaksim Kozlov s->reg[I_(UFCON)] &= ~UFCON_Rx_FIFO_RESET; 377e5a4914eSMaksim Kozlov PRINT_DEBUG("UART%d: Rx FIFO Reset\n", s->channel); 378e5a4914eSMaksim Kozlov } 379e5a4914eSMaksim Kozlov if (val & UFCON_Tx_FIFO_RESET) { 380e5a4914eSMaksim Kozlov fifo_reset(&s->tx); 381e5a4914eSMaksim Kozlov s->reg[I_(UFCON)] &= ~UFCON_Tx_FIFO_RESET; 382e5a4914eSMaksim Kozlov PRINT_DEBUG("UART%d: Tx FIFO Reset\n", s->channel); 383e5a4914eSMaksim Kozlov } 384e5a4914eSMaksim Kozlov break; 385e5a4914eSMaksim Kozlov 386e5a4914eSMaksim Kozlov case UTXH: 387e5a4914eSMaksim Kozlov if (s->chr) { 388e5a4914eSMaksim Kozlov s->reg[I_(UTRSTAT)] &= ~(UTRSTAT_TRANSMITTER_EMPTY | 389e5a4914eSMaksim Kozlov UTRSTAT_Tx_BUFFER_EMPTY); 390e5a4914eSMaksim Kozlov ch = (uint8_t)val; 391e5a4914eSMaksim Kozlov qemu_chr_fe_write(s->chr, &ch, 1); 392e5a4914eSMaksim Kozlov #if DEBUG_Tx_DATA 393e5a4914eSMaksim Kozlov fprintf(stderr, "%c", ch); 394e5a4914eSMaksim Kozlov #endif 395e5a4914eSMaksim Kozlov s->reg[I_(UTRSTAT)] |= UTRSTAT_TRANSMITTER_EMPTY | 396e5a4914eSMaksim Kozlov UTRSTAT_Tx_BUFFER_EMPTY; 397e5a4914eSMaksim Kozlov s->reg[I_(UINTSP)] |= UINTSP_TXD; 398e5a4914eSMaksim Kozlov exynos4210_uart_update_irq(s); 399e5a4914eSMaksim Kozlov } 400e5a4914eSMaksim Kozlov break; 401e5a4914eSMaksim Kozlov 402e5a4914eSMaksim Kozlov case UINTP: 403e5a4914eSMaksim Kozlov s->reg[I_(UINTP)] &= ~val; 404e5a4914eSMaksim Kozlov s->reg[I_(UINTSP)] &= ~val; 405e5a4914eSMaksim Kozlov PRINT_DEBUG("UART%d: UINTP [%04x] have been cleared: %08x\n", 406e5a4914eSMaksim Kozlov s->channel, offset, s->reg[I_(UINTP)]); 407e5a4914eSMaksim Kozlov exynos4210_uart_update_irq(s); 408e5a4914eSMaksim Kozlov break; 409e5a4914eSMaksim Kozlov case UTRSTAT: 410e5a4914eSMaksim Kozlov case UERSTAT: 411e5a4914eSMaksim Kozlov case UFSTAT: 412e5a4914eSMaksim Kozlov case UMSTAT: 413e5a4914eSMaksim Kozlov case URXH: 414e5a4914eSMaksim Kozlov PRINT_DEBUG("UART%d: Trying to write into RO register: %s [%04x]\n", 415e5a4914eSMaksim Kozlov s->channel, exynos4210_uart_regname(offset), offset); 416e5a4914eSMaksim Kozlov break; 417e5a4914eSMaksim Kozlov case UINTSP: 418e5a4914eSMaksim Kozlov s->reg[I_(UINTSP)] &= ~val; 419e5a4914eSMaksim Kozlov break; 420e5a4914eSMaksim Kozlov case UINTM: 421e5a4914eSMaksim Kozlov s->reg[I_(UINTM)] = val; 422e5a4914eSMaksim Kozlov exynos4210_uart_update_irq(s); 423e5a4914eSMaksim Kozlov break; 424e5a4914eSMaksim Kozlov case UCON: 425e5a4914eSMaksim Kozlov case UMCON: 426e5a4914eSMaksim Kozlov default: 427e5a4914eSMaksim Kozlov s->reg[I_(offset)] = val; 428e5a4914eSMaksim Kozlov break; 429e5a4914eSMaksim Kozlov } 430e5a4914eSMaksim Kozlov } 431a8170e5eSAvi Kivity static uint64_t exynos4210_uart_read(void *opaque, hwaddr offset, 432e5a4914eSMaksim Kozlov unsigned size) 433e5a4914eSMaksim Kozlov { 434e5a4914eSMaksim Kozlov Exynos4210UartState *s = (Exynos4210UartState *)opaque; 435e5a4914eSMaksim Kozlov uint32_t res; 436e5a4914eSMaksim Kozlov 437e5a4914eSMaksim Kozlov switch (offset) { 438e5a4914eSMaksim Kozlov case UERSTAT: /* Read Only */ 439e5a4914eSMaksim Kozlov res = s->reg[I_(UERSTAT)]; 440e5a4914eSMaksim Kozlov s->reg[I_(UERSTAT)] = 0; 441e5a4914eSMaksim Kozlov return res; 442e5a4914eSMaksim Kozlov case UFSTAT: /* Read Only */ 443e5a4914eSMaksim Kozlov s->reg[I_(UFSTAT)] = fifo_elements_number(&s->rx) & 0xff; 444e5a4914eSMaksim Kozlov if (fifo_empty_elements_number(&s->rx) == 0) { 445e5a4914eSMaksim Kozlov s->reg[I_(UFSTAT)] |= UFSTAT_Rx_FIFO_FULL; 446e5a4914eSMaksim Kozlov s->reg[I_(UFSTAT)] &= ~0xff; 447e5a4914eSMaksim Kozlov } 448e5a4914eSMaksim Kozlov return s->reg[I_(UFSTAT)]; 449e5a4914eSMaksim Kozlov case URXH: 450e5a4914eSMaksim Kozlov if (s->reg[I_(UFCON)] & UFCON_FIFO_ENABLE) { 451e5a4914eSMaksim Kozlov if (fifo_elements_number(&s->rx)) { 452e5a4914eSMaksim Kozlov res = fifo_retrieve(&s->rx); 453e5a4914eSMaksim Kozlov #if DEBUG_Rx_DATA 454e5a4914eSMaksim Kozlov fprintf(stderr, "%c", res); 455e5a4914eSMaksim Kozlov #endif 456e5a4914eSMaksim Kozlov if (!fifo_elements_number(&s->rx)) { 457e5a4914eSMaksim Kozlov s->reg[I_(UTRSTAT)] &= ~UTRSTAT_Rx_BUFFER_DATA_READY; 458e5a4914eSMaksim Kozlov } else { 459e5a4914eSMaksim Kozlov s->reg[I_(UTRSTAT)] |= UTRSTAT_Rx_BUFFER_DATA_READY; 460e5a4914eSMaksim Kozlov } 461e5a4914eSMaksim Kozlov } else { 462e5a4914eSMaksim Kozlov s->reg[I_(UINTSP)] |= UINTSP_ERROR; 463e5a4914eSMaksim Kozlov exynos4210_uart_update_irq(s); 464e5a4914eSMaksim Kozlov res = 0; 465e5a4914eSMaksim Kozlov } 466e5a4914eSMaksim Kozlov } else { 467e5a4914eSMaksim Kozlov s->reg[I_(UTRSTAT)] &= ~UTRSTAT_Rx_BUFFER_DATA_READY; 468e5a4914eSMaksim Kozlov res = s->reg[I_(URXH)]; 469e5a4914eSMaksim Kozlov } 470e5a4914eSMaksim Kozlov return res; 471e5a4914eSMaksim Kozlov case UTXH: 472e5a4914eSMaksim Kozlov PRINT_DEBUG("UART%d: Trying to read from WO register: %s [%04x]\n", 473e5a4914eSMaksim Kozlov s->channel, exynos4210_uart_regname(offset), offset); 474e5a4914eSMaksim Kozlov break; 475e5a4914eSMaksim Kozlov default: 476e5a4914eSMaksim Kozlov return s->reg[I_(offset)]; 477e5a4914eSMaksim Kozlov } 478e5a4914eSMaksim Kozlov 479e5a4914eSMaksim Kozlov return 0; 480e5a4914eSMaksim Kozlov } 481e5a4914eSMaksim Kozlov 482e5a4914eSMaksim Kozlov static const MemoryRegionOps exynos4210_uart_ops = { 483e5a4914eSMaksim Kozlov .read = exynos4210_uart_read, 484e5a4914eSMaksim Kozlov .write = exynos4210_uart_write, 485e5a4914eSMaksim Kozlov .endianness = DEVICE_NATIVE_ENDIAN, 486e5a4914eSMaksim Kozlov .valid = { 487e5a4914eSMaksim Kozlov .max_access_size = 4, 488e5a4914eSMaksim Kozlov .unaligned = false 489e5a4914eSMaksim Kozlov }, 490e5a4914eSMaksim Kozlov }; 491e5a4914eSMaksim Kozlov 492e5a4914eSMaksim Kozlov static int exynos4210_uart_can_receive(void *opaque) 493e5a4914eSMaksim Kozlov { 494e5a4914eSMaksim Kozlov Exynos4210UartState *s = (Exynos4210UartState *)opaque; 495e5a4914eSMaksim Kozlov 496e5a4914eSMaksim Kozlov return fifo_empty_elements_number(&s->rx); 497e5a4914eSMaksim Kozlov } 498e5a4914eSMaksim Kozlov 499e5a4914eSMaksim Kozlov 500e5a4914eSMaksim Kozlov static void exynos4210_uart_receive(void *opaque, const uint8_t *buf, int size) 501e5a4914eSMaksim Kozlov { 502e5a4914eSMaksim Kozlov Exynos4210UartState *s = (Exynos4210UartState *)opaque; 503e5a4914eSMaksim Kozlov int i; 504e5a4914eSMaksim Kozlov 505e5a4914eSMaksim Kozlov if (s->reg[I_(UFCON)] & UFCON_FIFO_ENABLE) { 506e5a4914eSMaksim Kozlov if (fifo_empty_elements_number(&s->rx) < size) { 507e5a4914eSMaksim Kozlov for (i = 0; i < fifo_empty_elements_number(&s->rx); i++) { 508e5a4914eSMaksim Kozlov fifo_store(&s->rx, buf[i]); 509e5a4914eSMaksim Kozlov } 510e5a4914eSMaksim Kozlov s->reg[I_(UINTSP)] |= UINTSP_ERROR; 511e5a4914eSMaksim Kozlov s->reg[I_(UTRSTAT)] |= UTRSTAT_Rx_BUFFER_DATA_READY; 512e5a4914eSMaksim Kozlov } else { 513e5a4914eSMaksim Kozlov for (i = 0; i < size; i++) { 514e5a4914eSMaksim Kozlov fifo_store(&s->rx, buf[i]); 515e5a4914eSMaksim Kozlov } 516e5a4914eSMaksim Kozlov s->reg[I_(UTRSTAT)] |= UTRSTAT_Rx_BUFFER_DATA_READY; 517e5a4914eSMaksim Kozlov } 518e5a4914eSMaksim Kozlov /* XXX: Around here we maybe should check Rx trigger level */ 519e5a4914eSMaksim Kozlov s->reg[I_(UINTSP)] |= UINTSP_RXD; 520e5a4914eSMaksim Kozlov } else { 521e5a4914eSMaksim Kozlov s->reg[I_(URXH)] = buf[0]; 522e5a4914eSMaksim Kozlov s->reg[I_(UINTSP)] |= UINTSP_RXD; 523e5a4914eSMaksim Kozlov s->reg[I_(UTRSTAT)] |= UTRSTAT_Rx_BUFFER_DATA_READY; 524e5a4914eSMaksim Kozlov } 525e5a4914eSMaksim Kozlov 526e5a4914eSMaksim Kozlov exynos4210_uart_update_irq(s); 527e5a4914eSMaksim Kozlov } 528e5a4914eSMaksim Kozlov 529e5a4914eSMaksim Kozlov 530e5a4914eSMaksim Kozlov static void exynos4210_uart_event(void *opaque, int event) 531e5a4914eSMaksim Kozlov { 532e5a4914eSMaksim Kozlov Exynos4210UartState *s = (Exynos4210UartState *)opaque; 533e5a4914eSMaksim Kozlov 534e5a4914eSMaksim Kozlov if (event == CHR_EVENT_BREAK) { 535e5a4914eSMaksim Kozlov /* When the RxDn is held in logic 0, then a null byte is pushed into the 536e5a4914eSMaksim Kozlov * fifo */ 537e5a4914eSMaksim Kozlov fifo_store(&s->rx, '\0'); 538e5a4914eSMaksim Kozlov s->reg[I_(UERSTAT)] |= UERSTAT_BREAK; 539e5a4914eSMaksim Kozlov exynos4210_uart_update_irq(s); 540e5a4914eSMaksim Kozlov } 541e5a4914eSMaksim Kozlov } 542e5a4914eSMaksim Kozlov 543e5a4914eSMaksim Kozlov 544e5a4914eSMaksim Kozlov static void exynos4210_uart_reset(DeviceState *dev) 545e5a4914eSMaksim Kozlov { 546*61149ff6SAndreas Färber Exynos4210UartState *s = EXYNOS4210_UART(dev); 547e5a4914eSMaksim Kozlov int regs_number = sizeof(exynos4210_uart_regs)/sizeof(Exynos4210UartReg); 548e5a4914eSMaksim Kozlov int i; 549e5a4914eSMaksim Kozlov 550e5a4914eSMaksim Kozlov for (i = 0; i < regs_number; i++) { 551e5a4914eSMaksim Kozlov s->reg[I_(exynos4210_uart_regs[i].offset)] = 552e5a4914eSMaksim Kozlov exynos4210_uart_regs[i].reset_value; 553e5a4914eSMaksim Kozlov } 554e5a4914eSMaksim Kozlov 555e5a4914eSMaksim Kozlov fifo_reset(&s->rx); 556e5a4914eSMaksim Kozlov fifo_reset(&s->tx); 557e5a4914eSMaksim Kozlov 558e5a4914eSMaksim Kozlov PRINT_DEBUG("UART%d: Rx FIFO size: %d\n", s->channel, s->rx.size); 559e5a4914eSMaksim Kozlov } 560e5a4914eSMaksim Kozlov 561e5a4914eSMaksim Kozlov static const VMStateDescription vmstate_exynos4210_uart_fifo = { 562e5a4914eSMaksim Kozlov .name = "exynos4210.uart.fifo", 563e5a4914eSMaksim Kozlov .version_id = 1, 564e5a4914eSMaksim Kozlov .minimum_version_id = 1, 565e5a4914eSMaksim Kozlov .minimum_version_id_old = 1, 566e5a4914eSMaksim Kozlov .fields = (VMStateField[]) { 567e5a4914eSMaksim Kozlov VMSTATE_UINT32(sp, Exynos4210UartFIFO), 568e5a4914eSMaksim Kozlov VMSTATE_UINT32(rp, Exynos4210UartFIFO), 569e5a4914eSMaksim Kozlov VMSTATE_VBUFFER_UINT32(data, Exynos4210UartFIFO, 1, NULL, 0, size), 570e5a4914eSMaksim Kozlov VMSTATE_END_OF_LIST() 571e5a4914eSMaksim Kozlov } 572e5a4914eSMaksim Kozlov }; 573e5a4914eSMaksim Kozlov 574e5a4914eSMaksim Kozlov static const VMStateDescription vmstate_exynos4210_uart = { 575e5a4914eSMaksim Kozlov .name = "exynos4210.uart", 576e5a4914eSMaksim Kozlov .version_id = 1, 577e5a4914eSMaksim Kozlov .minimum_version_id = 1, 578e5a4914eSMaksim Kozlov .minimum_version_id_old = 1, 579e5a4914eSMaksim Kozlov .fields = (VMStateField[]) { 580e5a4914eSMaksim Kozlov VMSTATE_STRUCT(rx, Exynos4210UartState, 1, 581e5a4914eSMaksim Kozlov vmstate_exynos4210_uart_fifo, Exynos4210UartFIFO), 582e5a4914eSMaksim Kozlov VMSTATE_UINT32_ARRAY(reg, Exynos4210UartState, 583e5a4914eSMaksim Kozlov EXYNOS4210_UART_REGS_MEM_SIZE / sizeof(uint32_t)), 584e5a4914eSMaksim Kozlov VMSTATE_END_OF_LIST() 585e5a4914eSMaksim Kozlov } 586e5a4914eSMaksim Kozlov }; 587e5a4914eSMaksim Kozlov 588a8170e5eSAvi Kivity DeviceState *exynos4210_uart_create(hwaddr addr, 589e5a4914eSMaksim Kozlov int fifo_size, 590e5a4914eSMaksim Kozlov int channel, 591e5a4914eSMaksim Kozlov CharDriverState *chr, 592e5a4914eSMaksim Kozlov qemu_irq irq) 593e5a4914eSMaksim Kozlov { 594e5a4914eSMaksim Kozlov DeviceState *dev; 595e5a4914eSMaksim Kozlov SysBusDevice *bus; 596e5a4914eSMaksim Kozlov 597e5a4914eSMaksim Kozlov const char chr_name[] = "serial"; 598e5a4914eSMaksim Kozlov char label[ARRAY_SIZE(chr_name) + 1]; 599e5a4914eSMaksim Kozlov 600*61149ff6SAndreas Färber dev = qdev_create(NULL, TYPE_EXYNOS4210_UART); 601e5a4914eSMaksim Kozlov 602e5a4914eSMaksim Kozlov if (!chr) { 603e5a4914eSMaksim Kozlov if (channel >= MAX_SERIAL_PORTS) { 604e5a4914eSMaksim Kozlov hw_error("Only %d serial ports are supported by QEMU.\n", 605e5a4914eSMaksim Kozlov MAX_SERIAL_PORTS); 606e5a4914eSMaksim Kozlov } 607e5a4914eSMaksim Kozlov chr = serial_hds[channel]; 608e5a4914eSMaksim Kozlov if (!chr) { 609e5a4914eSMaksim Kozlov snprintf(label, ARRAY_SIZE(label), "%s%d", chr_name, channel); 610e5a4914eSMaksim Kozlov chr = qemu_chr_new(label, "null", NULL); 611e5a4914eSMaksim Kozlov if (!(chr)) { 612e5a4914eSMaksim Kozlov hw_error("Can't assign serial port to UART%d.\n", channel); 613e5a4914eSMaksim Kozlov } 614e5a4914eSMaksim Kozlov } 615e5a4914eSMaksim Kozlov } 616e5a4914eSMaksim Kozlov 617e5a4914eSMaksim Kozlov qdev_prop_set_chr(dev, "chardev", chr); 618e5a4914eSMaksim Kozlov qdev_prop_set_uint32(dev, "channel", channel); 619e5a4914eSMaksim Kozlov qdev_prop_set_uint32(dev, "rx-size", fifo_size); 620e5a4914eSMaksim Kozlov qdev_prop_set_uint32(dev, "tx-size", fifo_size); 621e5a4914eSMaksim Kozlov 6221356b98dSAndreas Färber bus = SYS_BUS_DEVICE(dev); 623e5a4914eSMaksim Kozlov qdev_init_nofail(dev); 624a8170e5eSAvi Kivity if (addr != (hwaddr)-1) { 625e5a4914eSMaksim Kozlov sysbus_mmio_map(bus, 0, addr); 626e5a4914eSMaksim Kozlov } 627e5a4914eSMaksim Kozlov sysbus_connect_irq(bus, 0, irq); 628e5a4914eSMaksim Kozlov 629e5a4914eSMaksim Kozlov return dev; 630e5a4914eSMaksim Kozlov } 631e5a4914eSMaksim Kozlov 632e5a4914eSMaksim Kozlov static int exynos4210_uart_init(SysBusDevice *dev) 633e5a4914eSMaksim Kozlov { 634*61149ff6SAndreas Färber Exynos4210UartState *s = EXYNOS4210_UART(dev); 635e5a4914eSMaksim Kozlov 636e5a4914eSMaksim Kozlov /* memory mapping */ 637300b1fc6SPaolo Bonzini memory_region_init_io(&s->iomem, OBJECT(s), &exynos4210_uart_ops, s, 638300b1fc6SPaolo Bonzini "exynos4210.uart", EXYNOS4210_UART_REGS_MEM_SIZE); 639e5a4914eSMaksim Kozlov sysbus_init_mmio(dev, &s->iomem); 640e5a4914eSMaksim Kozlov 641e5a4914eSMaksim Kozlov sysbus_init_irq(dev, &s->irq); 642e5a4914eSMaksim Kozlov 643e5a4914eSMaksim Kozlov qemu_chr_add_handlers(s->chr, exynos4210_uart_can_receive, 644e5a4914eSMaksim Kozlov exynos4210_uart_receive, exynos4210_uart_event, s); 645e5a4914eSMaksim Kozlov 646e5a4914eSMaksim Kozlov return 0; 647e5a4914eSMaksim Kozlov } 648e5a4914eSMaksim Kozlov 649e5a4914eSMaksim Kozlov static Property exynos4210_uart_properties[] = { 650e5a4914eSMaksim Kozlov DEFINE_PROP_CHR("chardev", Exynos4210UartState, chr), 651e5a4914eSMaksim Kozlov DEFINE_PROP_UINT32("channel", Exynos4210UartState, channel, 0), 652e5a4914eSMaksim Kozlov DEFINE_PROP_UINT32("rx-size", Exynos4210UartState, rx.size, 16), 653e5a4914eSMaksim Kozlov DEFINE_PROP_UINT32("tx-size", Exynos4210UartState, tx.size, 16), 654e5a4914eSMaksim Kozlov DEFINE_PROP_END_OF_LIST(), 655e5a4914eSMaksim Kozlov }; 656e5a4914eSMaksim Kozlov 657e5a4914eSMaksim Kozlov static void exynos4210_uart_class_init(ObjectClass *klass, void *data) 658e5a4914eSMaksim Kozlov { 659e5a4914eSMaksim Kozlov DeviceClass *dc = DEVICE_CLASS(klass); 660e5a4914eSMaksim Kozlov SysBusDeviceClass *k = SYS_BUS_DEVICE_CLASS(klass); 661e5a4914eSMaksim Kozlov 662e5a4914eSMaksim Kozlov k->init = exynos4210_uart_init; 663e5a4914eSMaksim Kozlov dc->reset = exynos4210_uart_reset; 664e5a4914eSMaksim Kozlov dc->props = exynos4210_uart_properties; 665e5a4914eSMaksim Kozlov dc->vmsd = &vmstate_exynos4210_uart; 666e5a4914eSMaksim Kozlov } 667e5a4914eSMaksim Kozlov 6688c43a6f0SAndreas Färber static const TypeInfo exynos4210_uart_info = { 669*61149ff6SAndreas Färber .name = TYPE_EXYNOS4210_UART, 670e5a4914eSMaksim Kozlov .parent = TYPE_SYS_BUS_DEVICE, 671e5a4914eSMaksim Kozlov .instance_size = sizeof(Exynos4210UartState), 672e5a4914eSMaksim Kozlov .class_init = exynos4210_uart_class_init, 673e5a4914eSMaksim Kozlov }; 674e5a4914eSMaksim Kozlov 675e5a4914eSMaksim Kozlov static void exynos4210_uart_register(void) 676e5a4914eSMaksim Kozlov { 677e5a4914eSMaksim Kozlov type_register_static(&exynos4210_uart_info); 678e5a4914eSMaksim Kozlov } 679e5a4914eSMaksim Kozlov 680e5a4914eSMaksim Kozlov type_init(exynos4210_uart_register) 681