1899fe063SPekka Enberg #include "kvm/8250-serial.h" 213a7760fSPekka Enberg 38eb47d29SSasha Levin #include "kvm/read-write.h" 413a7760fSPekka Enberg #include "kvm/ioport.h" 54ef0f4d6SPekka Enberg #include "kvm/mutex.h" 646aa8d69SPekka Enberg #include "kvm/util.h" 705d1a2a6SAsias He #include "kvm/term.h" 8e557eef9SPekka Enberg #include "kvm/kvm.h" 913a7760fSPekka Enberg 103fdf659dSSasha Levin #include <linux/types.h> 114e49b05bSCyrill Gorcunov #include <linux/serial_reg.h> 124e49b05bSCyrill Gorcunov 132932c9ebSPekka Enberg #include <pthread.h> 1413a7760fSPekka Enberg 15d4b02a37SThomas Gleixner /* 16d4b02a37SThomas Gleixner * This fakes a U6_16550A. The fifo len needs to be 64 as the kernel 17d4b02a37SThomas Gleixner * expects that for autodetection. 18d4b02a37SThomas Gleixner */ 19d4b02a37SThomas Gleixner #define FIFO_LEN 64 20d4b02a37SThomas Gleixner #define FIFO_MASK (FIFO_LEN - 1) 21d4b02a37SThomas Gleixner 22d4b02a37SThomas Gleixner #define UART_IIR_TYPE_BITS 0xc0 23d4b02a37SThomas Gleixner 2446aa8d69SPekka Enberg struct serial8250_device { 252932c9ebSPekka Enberg pthread_mutex_t mutex; 261add4b76SSasha Levin u8 id; 272932c9ebSPekka Enberg 283fdf659dSSasha Levin u16 iobase; 293fdf659dSSasha Levin u8 irq; 30f6b8ccc1SThomas Gleixner u8 irq_state; 318dfae8beSThomas Gleixner int txcnt; 32d4b02a37SThomas Gleixner int rxcnt; 33d4b02a37SThomas Gleixner int rxdone; 34d4b02a37SThomas Gleixner char txbuf[FIFO_LEN]; 35d4b02a37SThomas Gleixner char rxbuf[FIFO_LEN]; 3676b4a122SPekka Enberg 373fdf659dSSasha Levin u8 dll; 383fdf659dSSasha Levin u8 dlm; 393fdf659dSSasha Levin u8 iir; 403fdf659dSSasha Levin u8 ier; 413fdf659dSSasha Levin u8 fcr; 423fdf659dSSasha Levin u8 lcr; 433fdf659dSSasha Levin u8 mcr; 443fdf659dSSasha Levin u8 lsr; 453fdf659dSSasha Levin u8 msr; 463fdf659dSSasha Levin u8 scr; 4746aa8d69SPekka Enberg }; 4846aa8d69SPekka Enberg 49f3efa592SLiming Wang #define SERIAL_REGS_SETTING \ 50f3efa592SLiming Wang .iir = UART_IIR_NO_INT, \ 51f3efa592SLiming Wang .lsr = UART_LSR_TEMT | UART_LSR_THRE, \ 52f3efa592SLiming Wang .msr = UART_MSR_DCD | UART_MSR_DSR | UART_MSR_CTS, \ 53f3efa592SLiming Wang .mcr = UART_MCR_OUT2, 54f3efa592SLiming Wang 55e62c18deSPekka Enberg static struct serial8250_device devices[] = { 56c6a69c61SPekka Enberg /* ttyS0 */ 57c6a69c61SPekka Enberg [0] = { 582932c9ebSPekka Enberg .mutex = PTHREAD_MUTEX_INITIALIZER, 592932c9ebSPekka Enberg 601add4b76SSasha Levin .id = 0, 61c6a69c61SPekka Enberg .iobase = 0x3f8, 62e557eef9SPekka Enberg .irq = 4, 63e557eef9SPekka Enberg 64f3efa592SLiming Wang SERIAL_REGS_SETTING 65c6a69c61SPekka Enberg }, 66e62c18deSPekka Enberg /* ttyS1 */ 67e62c18deSPekka Enberg [1] = { 682932c9ebSPekka Enberg .mutex = PTHREAD_MUTEX_INITIALIZER, 692932c9ebSPekka Enberg 701add4b76SSasha Levin .id = 1, 71e62c18deSPekka Enberg .iobase = 0x2f8, 72e62c18deSPekka Enberg .irq = 3, 73133bedc1SPekka Enberg 74f3efa592SLiming Wang SERIAL_REGS_SETTING 75e62c18deSPekka Enberg }, 76e62c18deSPekka Enberg /* ttyS2 */ 77e62c18deSPekka Enberg [2] = { 782932c9ebSPekka Enberg .mutex = PTHREAD_MUTEX_INITIALIZER, 792932c9ebSPekka Enberg 801add4b76SSasha Levin .id = 2, 81e62c18deSPekka Enberg .iobase = 0x3e8, 82e62c18deSPekka Enberg .irq = 4, 83133bedc1SPekka Enberg 84f3efa592SLiming Wang SERIAL_REGS_SETTING 85e62c18deSPekka Enberg }, 86bf459c83SPekka Enberg /* ttyS3 */ 87bf459c83SPekka Enberg [3] = { 88bf459c83SPekka Enberg .mutex = PTHREAD_MUTEX_INITIALIZER, 89bf459c83SPekka Enberg 901add4b76SSasha Levin .id = 3, 91bf459c83SPekka Enberg .iobase = 0x2e8, 92bf459c83SPekka Enberg .irq = 3, 93bf459c83SPekka Enberg 94f3efa592SLiming Wang SERIAL_REGS_SETTING 95bf459c83SPekka Enberg }, 9646aa8d69SPekka Enberg }; 9746aa8d69SPekka Enberg 982651ea58SSasha Levin static void serial8250_flush_tx(struct kvm *kvm, struct serial8250_device *dev) 99d4b02a37SThomas Gleixner { 100d4b02a37SThomas Gleixner dev->lsr |= UART_LSR_TEMT | UART_LSR_THRE; 101d4b02a37SThomas Gleixner 102d4b02a37SThomas Gleixner if (dev->txcnt) { 1032651ea58SSasha Levin if (kvm->cfg.active_console == CONSOLE_8250) 1042651ea58SSasha Levin term_putc(dev->txbuf, dev->txcnt, dev->id); 105d4b02a37SThomas Gleixner dev->txcnt = 0; 106d4b02a37SThomas Gleixner } 107d4b02a37SThomas Gleixner } 108d4b02a37SThomas Gleixner 109f6b8ccc1SThomas Gleixner static void serial8250_update_irq(struct kvm *kvm, struct serial8250_device *dev) 110f6b8ccc1SThomas Gleixner { 111f6b8ccc1SThomas Gleixner u8 iir = 0; 112f6b8ccc1SThomas Gleixner 113d4b02a37SThomas Gleixner /* Handle clear rx */ 114d4b02a37SThomas Gleixner if (dev->lcr & UART_FCR_CLEAR_RCVR) { 115d4b02a37SThomas Gleixner dev->lcr &= ~UART_FCR_CLEAR_RCVR; 116d4b02a37SThomas Gleixner dev->rxcnt = dev->rxdone = 0; 117d4b02a37SThomas Gleixner dev->lsr &= ~UART_LSR_DR; 118d4b02a37SThomas Gleixner } 119d4b02a37SThomas Gleixner 120d4b02a37SThomas Gleixner /* Handle clear tx */ 121d4b02a37SThomas Gleixner if (dev->lcr & UART_FCR_CLEAR_XMIT) { 122d4b02a37SThomas Gleixner dev->lcr &= ~UART_FCR_CLEAR_XMIT; 123d4b02a37SThomas Gleixner dev->txcnt = 0; 124d4b02a37SThomas Gleixner dev->lsr |= UART_LSR_TEMT | UART_LSR_THRE; 125d4b02a37SThomas Gleixner } 126d4b02a37SThomas Gleixner 127f6b8ccc1SThomas Gleixner /* Data ready and rcv interrupt enabled ? */ 128f6b8ccc1SThomas Gleixner if ((dev->ier & UART_IER_RDI) && (dev->lsr & UART_LSR_DR)) 129f6b8ccc1SThomas Gleixner iir |= UART_IIR_RDI; 130f6b8ccc1SThomas Gleixner 131f6b8ccc1SThomas Gleixner /* Transmitter empty and interrupt enabled ? */ 132f6b8ccc1SThomas Gleixner if ((dev->ier & UART_IER_THRI) && (dev->lsr & UART_LSR_TEMT)) 133f6b8ccc1SThomas Gleixner iir |= UART_IIR_THRI; 134f6b8ccc1SThomas Gleixner 135f6b8ccc1SThomas Gleixner /* Now update the irq line, if necessary */ 136f6b8ccc1SThomas Gleixner if (!iir) { 137f6b8ccc1SThomas Gleixner dev->iir = UART_IIR_NO_INT; 138f6b8ccc1SThomas Gleixner if (dev->irq_state) 139f6b8ccc1SThomas Gleixner kvm__irq_line(kvm, dev->irq, 0); 140f6b8ccc1SThomas Gleixner } else { 141f6b8ccc1SThomas Gleixner dev->iir = iir; 142f6b8ccc1SThomas Gleixner if (!dev->irq_state) 143f6b8ccc1SThomas Gleixner kvm__irq_line(kvm, dev->irq, 1); 144f6b8ccc1SThomas Gleixner } 145f6b8ccc1SThomas Gleixner dev->irq_state = iir; 1468dfae8beSThomas Gleixner 1478dfae8beSThomas Gleixner /* 1488dfae8beSThomas Gleixner * If the kernel disabled the tx interrupt, we know that there 1498dfae8beSThomas Gleixner * is nothing more to transmit, so we can reset our tx logic 1508dfae8beSThomas Gleixner * here. 1518dfae8beSThomas Gleixner */ 152d4b02a37SThomas Gleixner if (!(dev->ier & UART_IER_THRI)) 1532651ea58SSasha Levin serial8250_flush_tx(kvm, dev); 154f6b8ccc1SThomas Gleixner } 155f6b8ccc1SThomas Gleixner 156a428f72eSPekka Enberg #define SYSRQ_PENDING_NONE 0 157a428f72eSPekka Enberg 158a428f72eSPekka Enberg static int sysrq_pending; 159a428f72eSPekka Enberg 16043835ac9SSasha Levin static void serial8250__sysrq(struct kvm *kvm, struct serial8250_device *dev) 161a428f72eSPekka Enberg { 162a428f72eSPekka Enberg dev->lsr |= UART_LSR_DR | UART_LSR_BI; 163226e727bSSasha Levin dev->rxbuf[dev->rxcnt++] = sysrq_pending; 164a428f72eSPekka Enberg sysrq_pending = SYSRQ_PENDING_NONE; 165a428f72eSPekka Enberg } 166a428f72eSPekka Enberg 167d4b02a37SThomas Gleixner static void serial8250__receive(struct kvm *kvm, struct serial8250_device *dev, 168d4b02a37SThomas Gleixner bool handle_sysrq) 169251cf9a6SPekka Enberg { 170251cf9a6SPekka Enberg int c; 171251cf9a6SPekka Enberg 1728dfae8beSThomas Gleixner /* 173d4b02a37SThomas Gleixner * If the guest transmitted a full fifo, we clear the 1748dfae8beSThomas Gleixner * TEMT/THRE bits to let the kernel escape from the 8250 1758dfae8beSThomas Gleixner * interrupt handler. We come here only once a ms, so that 176d4b02a37SThomas Gleixner * should give the kernel the desired pause. That also flushes 177d4b02a37SThomas Gleixner * the tx fifo to the terminal. 1788dfae8beSThomas Gleixner */ 1792651ea58SSasha Levin serial8250_flush_tx(kvm, dev); 1808dfae8beSThomas Gleixner 181d4b02a37SThomas Gleixner if (dev->mcr & UART_MCR_LOOP) 182db34045cSPekka Enberg return; 183db34045cSPekka Enberg 184d4b02a37SThomas Gleixner if ((dev->lsr & UART_LSR_DR) || dev->rxcnt) 185d4b02a37SThomas Gleixner return; 186d4b02a37SThomas Gleixner 187d4b02a37SThomas Gleixner if (handle_sysrq && sysrq_pending) { 18843835ac9SSasha Levin serial8250__sysrq(kvm, dev); 189a428f72eSPekka Enberg return; 190a428f72eSPekka Enberg } 191a428f72eSPekka Enberg 1922651ea58SSasha Levin if (kvm->cfg.active_console != CONSOLE_8250) 1932651ea58SSasha Levin return; 1942651ea58SSasha Levin 1952651ea58SSasha Levin while (term_readable(dev->id) && 196d4b02a37SThomas Gleixner dev->rxcnt < FIFO_LEN) { 197251cf9a6SPekka Enberg 198*4346fd8fSSasha Levin c = term_getc(kvm, dev->id); 19905d1a2a6SAsias He 200251cf9a6SPekka Enberg if (c < 0) 201d4b02a37SThomas Gleixner break; 202d4b02a37SThomas Gleixner dev->rxbuf[dev->rxcnt++] = c; 203251cf9a6SPekka Enberg dev->lsr |= UART_LSR_DR; 204251cf9a6SPekka Enberg } 205d4b02a37SThomas Gleixner } 206251cf9a6SPekka Enberg 207f6b8ccc1SThomas Gleixner void serial8250__update_consoles(struct kvm *kvm) 2088bb34e0dSPekka Enberg { 209479de16fSCyrill Gorcunov unsigned int i; 2101add4b76SSasha Levin 211479de16fSCyrill Gorcunov for (i = 0; i < ARRAY_SIZE(devices); i++) { 2121add4b76SSasha Levin struct serial8250_device *dev = &devices[i]; 213934c193bSPekka Enberg 2144ef0f4d6SPekka Enberg mutex_lock(&dev->mutex); 2152932c9ebSPekka Enberg 216d4b02a37SThomas Gleixner /* Restrict sysrq injection to the first port */ 217d4b02a37SThomas Gleixner serial8250__receive(kvm, dev, i == 0); 218251cf9a6SPekka Enberg 219f6b8ccc1SThomas Gleixner serial8250_update_irq(kvm, dev); 2202932c9ebSPekka Enberg 2214ef0f4d6SPekka Enberg mutex_unlock(&dev->mutex); 2228bb34e0dSPekka Enberg } 2231add4b76SSasha Levin } 2248bb34e0dSPekka Enberg 225226e727bSSasha Levin void serial8250__inject_sysrq(struct kvm *kvm, char sysrq) 226a428f72eSPekka Enberg { 227226e727bSSasha Levin sysrq_pending = sysrq; 228a428f72eSPekka Enberg } 229a428f72eSPekka Enberg 2303fdf659dSSasha Levin static struct serial8250_device *find_device(u16 port) 231c6a69c61SPekka Enberg { 232c6a69c61SPekka Enberg unsigned int i; 233c6a69c61SPekka Enberg 234c6a69c61SPekka Enberg for (i = 0; i < ARRAY_SIZE(devices); i++) { 235c6a69c61SPekka Enberg struct serial8250_device *dev = &devices[i]; 236c6a69c61SPekka Enberg 237c6a69c61SPekka Enberg if (dev->iobase == (port & ~0x7)) 238c6a69c61SPekka Enberg return dev; 239c6a69c61SPekka Enberg } 240c6a69c61SPekka Enberg return NULL; 241c6a69c61SPekka Enberg } 242c6a69c61SPekka Enberg 243d4b02a37SThomas Gleixner static bool serial8250_out(struct ioport *ioport, struct kvm *kvm, u16 port, 244d4b02a37SThomas Gleixner void *data, int size) 24513a7760fSPekka Enberg { 246c6a69c61SPekka Enberg struct serial8250_device *dev; 2473fdf659dSSasha Levin u16 offset; 2482932c9ebSPekka Enberg bool ret = true; 249d4b02a37SThomas Gleixner char *addr = data; 25046aa8d69SPekka Enberg 251c6a69c61SPekka Enberg dev = find_device(port); 252c6a69c61SPekka Enberg if (!dev) 253c6a69c61SPekka Enberg return false; 254c6a69c61SPekka Enberg 2554ef0f4d6SPekka Enberg mutex_lock(&dev->mutex); 2562932c9ebSPekka Enberg 257c6a69c61SPekka Enberg offset = port - dev->iobase; 258c6a69c61SPekka Enberg 25946aa8d69SPekka Enberg switch (offset) { 260c59fa0c4SThomas Gleixner case UART_TX: 261d4b02a37SThomas Gleixner if (dev->lcr & UART_LCR_DLAB) { 262c59fa0c4SThomas Gleixner dev->dll = ioport__read8(data); 263d4b02a37SThomas Gleixner break; 264d4b02a37SThomas Gleixner } 265d4b02a37SThomas Gleixner 266d4b02a37SThomas Gleixner /* Loopback mode */ 267d4b02a37SThomas Gleixner if (dev->mcr & UART_MCR_LOOP) { 268d4b02a37SThomas Gleixner if (dev->rxcnt < FIFO_LEN) { 269d4b02a37SThomas Gleixner dev->rxbuf[dev->rxcnt++] = *addr; 270d4b02a37SThomas Gleixner dev->lsr |= UART_LSR_DR; 271d4b02a37SThomas Gleixner } 272d4b02a37SThomas Gleixner break; 273d4b02a37SThomas Gleixner } 274d4b02a37SThomas Gleixner 275d4b02a37SThomas Gleixner if (dev->txcnt < FIFO_LEN) { 276d4b02a37SThomas Gleixner dev->txbuf[dev->txcnt++] = *addr; 277d4b02a37SThomas Gleixner dev->lsr &= ~UART_LSR_TEMT; 278d4b02a37SThomas Gleixner if (dev->txcnt == FIFO_LEN / 2) 279d4b02a37SThomas Gleixner dev->lsr &= ~UART_LSR_THRE; 280d4b02a37SThomas Gleixner } else { 281d4b02a37SThomas Gleixner /* Should never happpen */ 282d4b02a37SThomas Gleixner dev->lsr &= ~(UART_LSR_TEMT | UART_LSR_THRE); 28346aa8d69SPekka Enberg } 284369c01c0SPekka Enberg break; 2854e49b05bSCyrill Gorcunov case UART_IER: 286f6b8ccc1SThomas Gleixner if (!(dev->lcr & UART_LCR_DLAB)) 287d4b02a37SThomas Gleixner dev->ier = ioport__read8(data) & 0x0f; 288f6b8ccc1SThomas Gleixner else 289c59fa0c4SThomas Gleixner dev->dlm = ioport__read8(data); 290c59fa0c4SThomas Gleixner break; 291c59fa0c4SThomas Gleixner case UART_FCR: 292c59fa0c4SThomas Gleixner dev->fcr = ioport__read8(data); 29346aa8d69SPekka Enberg break; 294369c01c0SPekka Enberg case UART_LCR: 295369c01c0SPekka Enberg dev->lcr = ioport__read8(data); 296369c01c0SPekka Enberg break; 297369c01c0SPekka Enberg case UART_MCR: 298369c01c0SPekka Enberg dev->mcr = ioport__read8(data); 299369c01c0SPekka Enberg break; 300369c01c0SPekka Enberg case UART_LSR: 301369c01c0SPekka Enberg /* Factory test */ 302369c01c0SPekka Enberg break; 303369c01c0SPekka Enberg case UART_MSR: 304369c01c0SPekka Enberg /* Not used */ 305369c01c0SPekka Enberg break; 306369c01c0SPekka Enberg case UART_SCR: 307369c01c0SPekka Enberg dev->scr = ioport__read8(data); 308369c01c0SPekka Enberg break; 309369c01c0SPekka Enberg default: 3102932c9ebSPekka Enberg ret = false; 311d2ea115dSThomas Gleixner break; 31246aa8d69SPekka Enberg } 3132932c9ebSPekka Enberg 314f6b8ccc1SThomas Gleixner serial8250_update_irq(kvm, dev); 315f6b8ccc1SThomas Gleixner 3164ef0f4d6SPekka Enberg mutex_unlock(&dev->mutex); 3172932c9ebSPekka Enberg 3182932c9ebSPekka Enberg return ret; 31913a7760fSPekka Enberg } 32013a7760fSPekka Enberg 321d4b02a37SThomas Gleixner static void serial8250_rx(struct serial8250_device *dev, void *data) 322d4b02a37SThomas Gleixner { 323d4b02a37SThomas Gleixner if (dev->rxdone == dev->rxcnt) 324d4b02a37SThomas Gleixner return; 325d4b02a37SThomas Gleixner 326d4b02a37SThomas Gleixner /* Break issued ? */ 327d4b02a37SThomas Gleixner if (dev->lsr & UART_LSR_BI) { 328d4b02a37SThomas Gleixner dev->lsr &= ~UART_LSR_BI; 329d4b02a37SThomas Gleixner ioport__write8(data, 0); 330d4b02a37SThomas Gleixner return; 331d4b02a37SThomas Gleixner } 332d4b02a37SThomas Gleixner 333d4b02a37SThomas Gleixner ioport__write8(data, dev->rxbuf[dev->rxdone++]); 334d4b02a37SThomas Gleixner if (dev->rxcnt == dev->rxdone) { 335d4b02a37SThomas Gleixner dev->lsr &= ~UART_LSR_DR; 336d4b02a37SThomas Gleixner dev->rxcnt = dev->rxdone = 0; 337d4b02a37SThomas Gleixner } 338d4b02a37SThomas Gleixner } 339d4b02a37SThomas Gleixner 340c9f6a037SXiao Guangrong static bool serial8250_in(struct ioport *ioport, struct kvm *kvm, u16 port, void *data, int size) 34125af6674SPekka Enberg { 342c6a69c61SPekka Enberg struct serial8250_device *dev; 3433fdf659dSSasha Levin u16 offset; 3442932c9ebSPekka Enberg bool ret = true; 34546aa8d69SPekka Enberg 346c6a69c61SPekka Enberg dev = find_device(port); 347c6a69c61SPekka Enberg if (!dev) 348c6a69c61SPekka Enberg return false; 349c6a69c61SPekka Enberg 3504ef0f4d6SPekka Enberg mutex_lock(&dev->mutex); 3512932c9ebSPekka Enberg 352c6a69c61SPekka Enberg offset = port - dev->iobase; 353c6a69c61SPekka Enberg 35446aa8d69SPekka Enberg switch (offset) { 355251cf9a6SPekka Enberg case UART_RX: 356d4b02a37SThomas Gleixner if (dev->lcr & UART_LCR_DLAB) 357c59fa0c4SThomas Gleixner ioport__write8(data, dev->dll); 358d4b02a37SThomas Gleixner else 359d4b02a37SThomas Gleixner serial8250_rx(dev, data); 360369c01c0SPekka Enberg break; 361c59fa0c4SThomas Gleixner case UART_IER: 362c59fa0c4SThomas Gleixner if (dev->lcr & UART_LCR_DLAB) 363c59fa0c4SThomas Gleixner ioport__write8(data, dev->dlm); 364c59fa0c4SThomas Gleixner else 365c59fa0c4SThomas Gleixner ioport__write8(data, dev->ier); 366c59fa0c4SThomas Gleixner break; 367f6b8ccc1SThomas Gleixner case UART_IIR: 368d4b02a37SThomas Gleixner ioport__write8(data, dev->iir | UART_IIR_TYPE_BITS); 36946aa8d69SPekka Enberg break; 3704e49b05bSCyrill Gorcunov case UART_LCR: 371c6a69c61SPekka Enberg ioport__write8(data, dev->lcr); 37246aa8d69SPekka Enberg break; 3734e49b05bSCyrill Gorcunov case UART_MCR: 374c6a69c61SPekka Enberg ioport__write8(data, dev->mcr); 37546aa8d69SPekka Enberg break; 3764e49b05bSCyrill Gorcunov case UART_LSR: 377c6a69c61SPekka Enberg ioport__write8(data, dev->lsr); 37846aa8d69SPekka Enberg break; 3794e49b05bSCyrill Gorcunov case UART_MSR: 380369c01c0SPekka Enberg ioport__write8(data, dev->msr); 38146aa8d69SPekka Enberg break; 3824e49b05bSCyrill Gorcunov case UART_SCR: 383369c01c0SPekka Enberg ioport__write8(data, dev->scr); 38446aa8d69SPekka Enberg break; 385369c01c0SPekka Enberg default: 3862932c9ebSPekka Enberg ret = false; 387c59fa0c4SThomas Gleixner break; 38825af6674SPekka Enberg } 389f6b8ccc1SThomas Gleixner 390f6b8ccc1SThomas Gleixner serial8250_update_irq(kvm, dev); 391f6b8ccc1SThomas Gleixner 3924ef0f4d6SPekka Enberg mutex_unlock(&dev->mutex); 3932932c9ebSPekka Enberg 3942932c9ebSPekka Enberg return ret; 39513a7760fSPekka Enberg } 39613a7760fSPekka Enberg 39746aa8d69SPekka Enberg static struct ioport_operations serial8250_ops = { 39846aa8d69SPekka Enberg .io_in = serial8250_in, 39946aa8d69SPekka Enberg .io_out = serial8250_out, 400a93ec68bSPekka Enberg }; 401a93ec68bSPekka Enberg 40220715a22SSasha Levin static int serial8250__device_init(struct kvm *kvm, struct serial8250_device *dev) 403bc4b0ffeSPekka Enberg { 40420715a22SSasha Levin int r; 40520715a22SSasha Levin 406*4346fd8fSSasha Levin r = ioport__register(kvm, dev->iobase, &serial8250_ops, 8, NULL); 407bc4b0ffeSPekka Enberg kvm__irq_line(kvm, dev->irq, 0); 40820715a22SSasha Levin 40920715a22SSasha Levin return r; 410bc4b0ffeSPekka Enberg } 411bc4b0ffeSPekka Enberg 41220715a22SSasha Levin int serial8250__init(struct kvm *kvm) 41313a7760fSPekka Enberg { 41420715a22SSasha Levin unsigned int i, j; 41520715a22SSasha Levin int r = 0; 416c6a69c61SPekka Enberg 417c6a69c61SPekka Enberg for (i = 0; i < ARRAY_SIZE(devices); i++) { 418c6a69c61SPekka Enberg struct serial8250_device *dev = &devices[i]; 419c6a69c61SPekka Enberg 42020715a22SSasha Levin r = serial8250__device_init(kvm, dev); 42120715a22SSasha Levin if (r < 0) 42220715a22SSasha Levin goto cleanup; 423c6a69c61SPekka Enberg } 42420715a22SSasha Levin 42520715a22SSasha Levin return r; 42620715a22SSasha Levin cleanup: 42720715a22SSasha Levin for (j = 0; j <= i; j++) { 42820715a22SSasha Levin struct serial8250_device *dev = &devices[j]; 42920715a22SSasha Levin 430*4346fd8fSSasha Levin ioport__unregister(kvm, dev->iobase); 43120715a22SSasha Levin } 43220715a22SSasha Levin 43320715a22SSasha Levin return r; 43420715a22SSasha Levin } 43549a8afd1SSasha Levin dev_init(serial8250__init); 43620715a22SSasha Levin 43720715a22SSasha Levin int serial8250__exit(struct kvm *kvm) 43820715a22SSasha Levin { 43920715a22SSasha Levin unsigned int i; 44020715a22SSasha Levin int r; 44120715a22SSasha Levin 44220715a22SSasha Levin for (i = 0; i < ARRAY_SIZE(devices); i++) { 44320715a22SSasha Levin struct serial8250_device *dev = &devices[i]; 44420715a22SSasha Levin 445*4346fd8fSSasha Levin r = ioport__unregister(kvm, dev->iobase); 44620715a22SSasha Levin if (r < 0) 44720715a22SSasha Levin return r; 44820715a22SSasha Levin } 44920715a22SSasha Levin 45020715a22SSasha Levin return 0; 45113a7760fSPekka Enberg } 45249a8afd1SSasha Levin dev_exit(serial8250__exit); 453