1a912e80bSThomas Gleixner // SPDX-License-Identifier: GPL-2.0-or-later 21191828fSJohn Linn /* 31191828fSJohn Linn * Xilinx XPS PS/2 device driver 41191828fSJohn Linn * 51191828fSJohn Linn * (c) 2005 MontaVista Software, Inc. 61191828fSJohn Linn * (c) 2008 Xilinx, Inc. 71191828fSJohn Linn */ 81191828fSJohn Linn 91191828fSJohn Linn 101191828fSJohn Linn #include <linux/module.h> 111191828fSJohn Linn #include <linux/serio.h> 121191828fSJohn Linn #include <linux/interrupt.h> 131191828fSJohn Linn #include <linux/errno.h> 145a0e3ad6STejun Heo #include <linux/slab.h> 151191828fSJohn Linn #include <linux/list.h> 161191828fSJohn Linn #include <linux/io.h> 17dbce1a7dSRob Herring #include <linux/mod_devicetable.h> 185f9288afSMichal Simek #include <linux/of_address.h> 195af50730SRob Herring #include <linux/of_irq.h> 20dbce1a7dSRob Herring #include <linux/platform_device.h> 211191828fSJohn Linn 221191828fSJohn Linn #define DRIVER_NAME "xilinx_ps2" 231191828fSJohn Linn 241191828fSJohn Linn /* Register offsets for the xps2 device */ 251191828fSJohn Linn #define XPS2_SRST_OFFSET 0x00000000 /* Software Reset register */ 261191828fSJohn Linn #define XPS2_STATUS_OFFSET 0x00000004 /* Status register */ 271191828fSJohn Linn #define XPS2_RX_DATA_OFFSET 0x00000008 /* Receive Data register */ 281191828fSJohn Linn #define XPS2_TX_DATA_OFFSET 0x0000000C /* Transmit Data register */ 291191828fSJohn Linn #define XPS2_GIER_OFFSET 0x0000002C /* Global Interrupt Enable reg */ 301191828fSJohn Linn #define XPS2_IPISR_OFFSET 0x00000030 /* Interrupt Status register */ 311191828fSJohn Linn #define XPS2_IPIER_OFFSET 0x00000038 /* Interrupt Enable register */ 321191828fSJohn Linn 331191828fSJohn Linn /* Reset Register Bit Definitions */ 341191828fSJohn Linn #define XPS2_SRST_RESET 0x0000000A /* Software Reset */ 351191828fSJohn Linn 361191828fSJohn Linn /* Status Register Bit Positions */ 371191828fSJohn Linn #define XPS2_STATUS_RX_FULL 0x00000001 /* Receive Full */ 381191828fSJohn Linn #define XPS2_STATUS_TX_FULL 0x00000002 /* Transmit Full */ 391191828fSJohn Linn 40da1a42cdSMichal Simek /* 41da1a42cdSMichal Simek * Bit definitions for ISR/IER registers. Both the registers have the same bit 42da1a42cdSMichal Simek * definitions and are only defined once. 43da1a42cdSMichal Simek */ 441191828fSJohn Linn #define XPS2_IPIXR_WDT_TOUT 0x00000001 /* Watchdog Timeout Interrupt */ 451191828fSJohn Linn #define XPS2_IPIXR_TX_NOACK 0x00000002 /* Transmit No ACK Interrupt */ 461191828fSJohn Linn #define XPS2_IPIXR_TX_ACK 0x00000004 /* Transmit ACK (Data) Interrupt */ 471191828fSJohn Linn #define XPS2_IPIXR_RX_OVF 0x00000008 /* Receive Overflow Interrupt */ 481191828fSJohn Linn #define XPS2_IPIXR_RX_ERR 0x00000010 /* Receive Error Interrupt */ 491191828fSJohn Linn #define XPS2_IPIXR_RX_FULL 0x00000020 /* Receive Data Interrupt */ 501191828fSJohn Linn 511191828fSJohn Linn /* Mask for all the Transmit Interrupts */ 521191828fSJohn Linn #define XPS2_IPIXR_TX_ALL (XPS2_IPIXR_TX_NOACK | XPS2_IPIXR_TX_ACK) 531191828fSJohn Linn 541191828fSJohn Linn /* Mask for all the Receive Interrupts */ 551191828fSJohn Linn #define XPS2_IPIXR_RX_ALL (XPS2_IPIXR_RX_OVF | XPS2_IPIXR_RX_ERR | \ 561191828fSJohn Linn XPS2_IPIXR_RX_FULL) 571191828fSJohn Linn 581191828fSJohn Linn /* Mask for all the Interrupts */ 591191828fSJohn Linn #define XPS2_IPIXR_ALL (XPS2_IPIXR_TX_ALL | XPS2_IPIXR_RX_ALL | \ 601191828fSJohn Linn XPS2_IPIXR_WDT_TOUT) 611191828fSJohn Linn 621191828fSJohn Linn /* Global Interrupt Enable mask */ 631191828fSJohn Linn #define XPS2_GIER_GIE_MASK 0x80000000 641191828fSJohn Linn 651191828fSJohn Linn struct xps2data { 661191828fSJohn Linn int irq; 671191828fSJohn Linn spinlock_t lock; 681191828fSJohn Linn void __iomem *base_address; /* virt. address of control registers */ 69b4a3ac9aSJohn Linn unsigned int flags; 70271002caSDmitry Torokhov struct serio *serio; /* serio */ 71271002caSDmitry Torokhov struct device *dev; 721191828fSJohn Linn }; 731191828fSJohn Linn 741191828fSJohn Linn /************************************/ 751191828fSJohn Linn /* XPS PS/2 data transmission calls */ 761191828fSJohn Linn /************************************/ 771191828fSJohn Linn 78b4a3ac9aSJohn Linn /** 79b4a3ac9aSJohn Linn * xps2_recv() - attempts to receive a byte from the PS/2 port. 80b4a3ac9aSJohn Linn * @drvdata: pointer to ps2 device private data structure 81b4a3ac9aSJohn Linn * @byte: address where the read data will be copied 82b4a3ac9aSJohn Linn * 83b4a3ac9aSJohn Linn * If there is any data available in the PS/2 receiver, this functions reads 84b4a3ac9aSJohn Linn * the data, otherwise it returns error. 851191828fSJohn Linn */ 861191828fSJohn Linn static int xps2_recv(struct xps2data *drvdata, u8 *byte) 871191828fSJohn Linn { 881191828fSJohn Linn u32 sr; 891191828fSJohn Linn int status = -1; 901191828fSJohn Linn 911191828fSJohn Linn /* If there is data available in the PS/2 receiver, read it */ 921191828fSJohn Linn sr = in_be32(drvdata->base_address + XPS2_STATUS_OFFSET); 931191828fSJohn Linn if (sr & XPS2_STATUS_RX_FULL) { 941191828fSJohn Linn *byte = in_be32(drvdata->base_address + XPS2_RX_DATA_OFFSET); 951191828fSJohn Linn status = 0; 961191828fSJohn Linn } 971191828fSJohn Linn 981191828fSJohn Linn return status; 991191828fSJohn Linn } 1001191828fSJohn Linn 1011191828fSJohn Linn /*********************/ 1021191828fSJohn Linn /* Interrupt handler */ 1031191828fSJohn Linn /*********************/ 1041191828fSJohn Linn static irqreturn_t xps2_interrupt(int irq, void *dev_id) 1051191828fSJohn Linn { 1061191828fSJohn Linn struct xps2data *drvdata = dev_id; 1071191828fSJohn Linn u32 intr_sr; 1081191828fSJohn Linn u8 c; 1091191828fSJohn Linn int status; 1101191828fSJohn Linn 1111191828fSJohn Linn /* Get the PS/2 interrupts and clear them */ 1121191828fSJohn Linn intr_sr = in_be32(drvdata->base_address + XPS2_IPISR_OFFSET); 1131191828fSJohn Linn out_be32(drvdata->base_address + XPS2_IPISR_OFFSET, intr_sr); 1141191828fSJohn Linn 1151191828fSJohn Linn /* Check which interrupt is active */ 1161191828fSJohn Linn if (intr_sr & XPS2_IPIXR_RX_OVF) 117271002caSDmitry Torokhov dev_warn(drvdata->dev, "receive overrun error\n"); 1181191828fSJohn Linn 1191191828fSJohn Linn if (intr_sr & XPS2_IPIXR_RX_ERR) 120b4a3ac9aSJohn Linn drvdata->flags |= SERIO_PARITY; 1211191828fSJohn Linn 1221191828fSJohn Linn if (intr_sr & (XPS2_IPIXR_TX_NOACK | XPS2_IPIXR_WDT_TOUT)) 123b4a3ac9aSJohn Linn drvdata->flags |= SERIO_TIMEOUT; 1241191828fSJohn Linn 1251191828fSJohn Linn if (intr_sr & XPS2_IPIXR_RX_FULL) { 126b4a3ac9aSJohn Linn status = xps2_recv(drvdata, &c); 1271191828fSJohn Linn 1281191828fSJohn Linn /* Error, if a byte is not received */ 1291191828fSJohn Linn if (status) { 130271002caSDmitry Torokhov dev_err(drvdata->dev, 131b4a3ac9aSJohn Linn "wrong rcvd byte count (%d)\n", status); 1321191828fSJohn Linn } else { 133271002caSDmitry Torokhov serio_interrupt(drvdata->serio, c, drvdata->flags); 134b4a3ac9aSJohn Linn drvdata->flags = 0; 1351191828fSJohn Linn } 1361191828fSJohn Linn } 1371191828fSJohn Linn 1381191828fSJohn Linn return IRQ_HANDLED; 1391191828fSJohn Linn } 1401191828fSJohn Linn 1411191828fSJohn Linn /*******************/ 1421191828fSJohn Linn /* serio callbacks */ 1431191828fSJohn Linn /*******************/ 1441191828fSJohn Linn 145b4a3ac9aSJohn Linn /** 146b4a3ac9aSJohn Linn * sxps2_write() - sends a byte out through the PS/2 port. 147b4a3ac9aSJohn Linn * @pserio: pointer to the serio structure of the PS/2 port 148b4a3ac9aSJohn Linn * @c: data that needs to be written to the PS/2 port 149b4a3ac9aSJohn Linn * 150b4a3ac9aSJohn Linn * This function checks if the PS/2 transmitter is empty and sends a byte. 151b4a3ac9aSJohn Linn * Otherwise it returns error. Transmission fails only when nothing is connected 152b4a3ac9aSJohn Linn * to the PS/2 port. Thats why, we do not try to resend the data in case of a 153b4a3ac9aSJohn Linn * failure. 1541191828fSJohn Linn */ 1551191828fSJohn Linn static int sxps2_write(struct serio *pserio, unsigned char c) 1561191828fSJohn Linn { 1571191828fSJohn Linn struct xps2data *drvdata = pserio->port_data; 1581191828fSJohn Linn unsigned long flags; 1591191828fSJohn Linn u32 sr; 1601191828fSJohn Linn int status = -1; 1611191828fSJohn Linn 1621191828fSJohn Linn spin_lock_irqsave(&drvdata->lock, flags); 1631191828fSJohn Linn 1641191828fSJohn Linn /* If the PS/2 transmitter is empty send a byte of data */ 1651191828fSJohn Linn sr = in_be32(drvdata->base_address + XPS2_STATUS_OFFSET); 1661191828fSJohn Linn if (!(sr & XPS2_STATUS_TX_FULL)) { 1671191828fSJohn Linn out_be32(drvdata->base_address + XPS2_TX_DATA_OFFSET, c); 1681191828fSJohn Linn status = 0; 1691191828fSJohn Linn } 1701191828fSJohn Linn 1711191828fSJohn Linn spin_unlock_irqrestore(&drvdata->lock, flags); 1721191828fSJohn Linn 1731191828fSJohn Linn return status; 1741191828fSJohn Linn } 1751191828fSJohn Linn 176b4a3ac9aSJohn Linn /** 177b4a3ac9aSJohn Linn * sxps2_open() - called when a port is opened by the higher layer. 178b4a3ac9aSJohn Linn * @pserio: pointer to the serio structure of the PS/2 device 179b4a3ac9aSJohn Linn * 180b4a3ac9aSJohn Linn * This function requests irq and enables interrupts for the PS/2 device. 1811191828fSJohn Linn */ 1821191828fSJohn Linn static int sxps2_open(struct serio *pserio) 1831191828fSJohn Linn { 1841191828fSJohn Linn struct xps2data *drvdata = pserio->port_data; 185b4a3ac9aSJohn Linn int error; 186b4a3ac9aSJohn Linn u8 c; 1871191828fSJohn Linn 188b4a3ac9aSJohn Linn error = request_irq(drvdata->irq, &xps2_interrupt, 0, 1891191828fSJohn Linn DRIVER_NAME, drvdata); 190b4a3ac9aSJohn Linn if (error) { 191271002caSDmitry Torokhov dev_err(drvdata->dev, 192b4a3ac9aSJohn Linn "Couldn't allocate interrupt %d\n", drvdata->irq); 193b4a3ac9aSJohn Linn return error; 1941191828fSJohn Linn } 1951191828fSJohn Linn 1961191828fSJohn Linn /* start reception by enabling the interrupts */ 1971191828fSJohn Linn out_be32(drvdata->base_address + XPS2_GIER_OFFSET, XPS2_GIER_GIE_MASK); 1981191828fSJohn Linn out_be32(drvdata->base_address + XPS2_IPIER_OFFSET, XPS2_IPIXR_RX_ALL); 199b4a3ac9aSJohn Linn (void)xps2_recv(drvdata, &c); 2001191828fSJohn Linn 2011191828fSJohn Linn return 0; /* success */ 2021191828fSJohn Linn } 2031191828fSJohn Linn 204b4a3ac9aSJohn Linn /** 205b4a3ac9aSJohn Linn * sxps2_close() - frees the interrupt. 206b4a3ac9aSJohn Linn * @pserio: pointer to the serio structure of the PS/2 device 207b4a3ac9aSJohn Linn * 208b4a3ac9aSJohn Linn * This function frees the irq and disables interrupts for the PS/2 device. 2091191828fSJohn Linn */ 2101191828fSJohn Linn static void sxps2_close(struct serio *pserio) 2111191828fSJohn Linn { 2121191828fSJohn Linn struct xps2data *drvdata = pserio->port_data; 2131191828fSJohn Linn 2141191828fSJohn Linn /* Disable the PS2 interrupts */ 2151191828fSJohn Linn out_be32(drvdata->base_address + XPS2_GIER_OFFSET, 0x00); 2161191828fSJohn Linn out_be32(drvdata->base_address + XPS2_IPIER_OFFSET, 0x00); 2171191828fSJohn Linn free_irq(drvdata->irq, drvdata); 2181191828fSJohn Linn } 2191191828fSJohn Linn 220b4a3ac9aSJohn Linn /** 221b4a3ac9aSJohn Linn * xps2_of_probe - probe method for the PS/2 device. 222d49193beSYang Li * @ofdev: pointer to OF device structure 223b4a3ac9aSJohn Linn * 224b4a3ac9aSJohn Linn * This function probes the PS/2 device in the device tree. 225b4a3ac9aSJohn Linn * It initializes the driver data structure and the hardware. 226b4a3ac9aSJohn Linn * It returns 0, if the driver is bound to the PS/2 device, or a negative 227b4a3ac9aSJohn Linn * value if there is an error. 228b4a3ac9aSJohn Linn */ 2295298cc4cSBill Pemberton static int xps2_of_probe(struct platform_device *ofdev) 2301191828fSJohn Linn { 231b4a3ac9aSJohn Linn struct resource r_mem; /* IO mem resources */ 2321191828fSJohn Linn struct xps2data *drvdata; 2331191828fSJohn Linn struct serio *serio; 234b4a3ac9aSJohn Linn struct device *dev = &ofdev->dev; 235b4a3ac9aSJohn Linn resource_size_t remap_size, phys_addr; 236f7578496SThierry Reding unsigned int irq; 237b4a3ac9aSJohn Linn int error; 2381191828fSJohn Linn 2395d68fa58SRob Herring dev_info(dev, "Device Tree Probing \'%pOFn\'\n", dev->of_node); 2401191828fSJohn Linn 241b4a3ac9aSJohn Linn /* Get iospace for the device */ 24232237677SGuenter Roeck error = of_address_to_resource(dev->of_node, 0, &r_mem); 243b4a3ac9aSJohn Linn if (error) { 244b4a3ac9aSJohn Linn dev_err(dev, "invalid address\n"); 245b4a3ac9aSJohn Linn return error; 246b4a3ac9aSJohn Linn } 247b4a3ac9aSJohn Linn 248b4a3ac9aSJohn Linn /* Get IRQ for the device */ 24932237677SGuenter Roeck irq = irq_of_parse_and_map(dev->of_node, 0); 250f7578496SThierry Reding if (!irq) { 251b4a3ac9aSJohn Linn dev_err(dev, "no IRQ found\n"); 252b4a3ac9aSJohn Linn return -ENODEV; 2531191828fSJohn Linn } 2541191828fSJohn Linn 255*06b449d7SErick Archer drvdata = kzalloc(sizeof(*drvdata), GFP_KERNEL); 256*06b449d7SErick Archer serio = kzalloc(sizeof(*serio), GFP_KERNEL); 257271002caSDmitry Torokhov if (!drvdata || !serio) { 258271002caSDmitry Torokhov error = -ENOMEM; 259271002caSDmitry Torokhov goto failed1; 2601191828fSJohn Linn } 2611191828fSJohn Linn 2621191828fSJohn Linn spin_lock_init(&drvdata->lock); 263f7578496SThierry Reding drvdata->irq = irq; 264271002caSDmitry Torokhov drvdata->serio = serio; 265271002caSDmitry Torokhov drvdata->dev = dev; 2661191828fSJohn Linn 267b4a3ac9aSJohn Linn phys_addr = r_mem.start; 268ce841b94STobias Klauser remap_size = resource_size(&r_mem); 269b4a3ac9aSJohn Linn if (!request_mem_region(phys_addr, remap_size, DRIVER_NAME)) { 270b4a3ac9aSJohn Linn dev_err(dev, "Couldn't lock memory region at 0x%08llX\n", 271b4a3ac9aSJohn Linn (unsigned long long)phys_addr); 272b4a3ac9aSJohn Linn error = -EBUSY; 2731191828fSJohn Linn goto failed1; 2741191828fSJohn Linn } 2751191828fSJohn Linn 2761191828fSJohn Linn /* Fill in configuration data and add them to the list */ 277b4a3ac9aSJohn Linn drvdata->base_address = ioremap(phys_addr, remap_size); 2781191828fSJohn Linn if (drvdata->base_address == NULL) { 279b4a3ac9aSJohn Linn dev_err(dev, "Couldn't ioremap memory at 0x%08llX\n", 280b4a3ac9aSJohn Linn (unsigned long long)phys_addr); 281b4a3ac9aSJohn Linn error = -EFAULT; 2821191828fSJohn Linn goto failed2; 2831191828fSJohn Linn } 2841191828fSJohn Linn 2851191828fSJohn Linn /* Disable all the interrupts, just in case */ 2861191828fSJohn Linn out_be32(drvdata->base_address + XPS2_IPIER_OFFSET, 0); 2871191828fSJohn Linn 288da1a42cdSMichal Simek /* 289da1a42cdSMichal Simek * Reset the PS2 device and abort any current transaction, 290da1a42cdSMichal Simek * to make sure we have the PS2 in a good state. 291da1a42cdSMichal Simek */ 2921191828fSJohn Linn out_be32(drvdata->base_address + XPS2_SRST_OFFSET, XPS2_SRST_RESET); 2931191828fSJohn Linn 294b4a3ac9aSJohn Linn dev_info(dev, "Xilinx PS2 at 0x%08llX mapped to 0x%p, irq=%d\n", 295b4a3ac9aSJohn Linn (unsigned long long)phys_addr, drvdata->base_address, 296b4a3ac9aSJohn Linn drvdata->irq); 2971191828fSJohn Linn 2981191828fSJohn Linn serio->id.type = SERIO_8042; 2991191828fSJohn Linn serio->write = sxps2_write; 3001191828fSJohn Linn serio->open = sxps2_open; 3011191828fSJohn Linn serio->close = sxps2_close; 3021191828fSJohn Linn serio->port_data = drvdata; 3031191828fSJohn Linn serio->dev.parent = dev; 3041191828fSJohn Linn snprintf(serio->name, sizeof(serio->name), 305b4a3ac9aSJohn Linn "Xilinx XPS PS/2 at %08llX", (unsigned long long)phys_addr); 3061191828fSJohn Linn snprintf(serio->phys, sizeof(serio->phys), 307b4a3ac9aSJohn Linn "xilinxps2/serio at %08llX", (unsigned long long)phys_addr); 308b4a3ac9aSJohn Linn 3091191828fSJohn Linn serio_register_port(serio); 3101191828fSJohn Linn 311271002caSDmitry Torokhov platform_set_drvdata(ofdev, drvdata); 3121191828fSJohn Linn return 0; /* success */ 3131191828fSJohn Linn 3141191828fSJohn Linn failed2: 315b4a3ac9aSJohn Linn release_mem_region(phys_addr, remap_size); 3161191828fSJohn Linn failed1: 317271002caSDmitry Torokhov kfree(serio); 3181191828fSJohn Linn kfree(drvdata); 3191191828fSJohn Linn 320b4a3ac9aSJohn Linn return error; 3211191828fSJohn Linn } 3221191828fSJohn Linn 323b4a3ac9aSJohn Linn /** 324b4a3ac9aSJohn Linn * xps2_of_remove - unbinds the driver from the PS/2 device. 325b4a3ac9aSJohn Linn * @of_dev: pointer to OF device structure 326b4a3ac9aSJohn Linn * 327b4a3ac9aSJohn Linn * This function is called if a device is physically removed from the system or 328b4a3ac9aSJohn Linn * if the driver module is being unloaded. It frees any resources allocated to 329b4a3ac9aSJohn Linn * the device. 330b4a3ac9aSJohn Linn */ 3318df82842SUwe Kleine-König static void xps2_of_remove(struct platform_device *of_dev) 3321191828fSJohn Linn { 333271002caSDmitry Torokhov struct xps2data *drvdata = platform_get_drvdata(of_dev); 334b4a3ac9aSJohn Linn struct resource r_mem; /* IO mem resources */ 3351191828fSJohn Linn 336271002caSDmitry Torokhov serio_unregister_port(drvdata->serio); 3371191828fSJohn Linn iounmap(drvdata->base_address); 338b4a3ac9aSJohn Linn 339b4a3ac9aSJohn Linn /* Get iospace of the device */ 34061c7a080SGrant Likely if (of_address_to_resource(of_dev->dev.of_node, 0, &r_mem)) 341271002caSDmitry Torokhov dev_err(drvdata->dev, "invalid address\n"); 342b4a3ac9aSJohn Linn else 343ce841b94STobias Klauser release_mem_region(r_mem.start, resource_size(&r_mem)); 344b4a3ac9aSJohn Linn 3451191828fSJohn Linn kfree(drvdata); 3461191828fSJohn Linn } 3471191828fSJohn Linn 3481191828fSJohn Linn /* Match table for of_platform binding */ 34978f50c24SBill Pemberton static const struct of_device_id xps2_of_match[] = { 3501191828fSJohn Linn { .compatible = "xlnx,xps-ps2-1.00.a", }, 3511191828fSJohn Linn { /* end of list */ }, 3521191828fSJohn Linn }; 3531191828fSJohn Linn MODULE_DEVICE_TABLE(of, xps2_of_match); 3541191828fSJohn Linn 3551c48a5c9SGrant Likely static struct platform_driver xps2_of_driver = { 3564018294bSGrant Likely .driver = { 3571191828fSJohn Linn .name = DRIVER_NAME, 3584018294bSGrant Likely .of_match_table = xps2_of_match, 3594018294bSGrant Likely }, 3601191828fSJohn Linn .probe = xps2_of_probe, 3618df82842SUwe Kleine-König .remove_new = xps2_of_remove, 3621191828fSJohn Linn }; 36324d2469aSJJ Ding module_platform_driver(xps2_of_driver); 3641191828fSJohn Linn 3651191828fSJohn Linn MODULE_AUTHOR("Xilinx, Inc."); 3661191828fSJohn Linn MODULE_DESCRIPTION("Xilinx XPS PS/2 driver"); 3671191828fSJohn Linn MODULE_LICENSE("GPL"); 3681191828fSJohn Linn 369