1b738dafdSJared McNeill /*- 2b738dafdSJared McNeill * Copyright (c) 2016 Jared McNeill <jmcneill@invisible.ca> 3b738dafdSJared McNeill * 4b738dafdSJared McNeill * Redistribution and use in source and binary forms, with or without 5b738dafdSJared McNeill * modification, are permitted provided that the following conditions 6b738dafdSJared McNeill * are met: 7b738dafdSJared McNeill * 1. Redistributions of source code must retain the above copyright 8b738dafdSJared McNeill * notice, this list of conditions and the following disclaimer. 9b738dafdSJared McNeill * 2. Redistributions in binary form must reproduce the above copyright 10b738dafdSJared McNeill * notice, this list of conditions and the following disclaimer in the 11b738dafdSJared McNeill * documentation and/or other materials provided with the distribution. 12b738dafdSJared McNeill * 13b738dafdSJared McNeill * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR 14b738dafdSJared McNeill * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES 15b738dafdSJared McNeill * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. 16b738dafdSJared McNeill * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT, 17b738dafdSJared McNeill * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, 18b738dafdSJared McNeill * BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; 19b738dafdSJared McNeill * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED 20b738dafdSJared McNeill * AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, 21b738dafdSJared McNeill * OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY 22b738dafdSJared McNeill * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF 23b738dafdSJared McNeill * SUCH DAMAGE. 24b738dafdSJared McNeill */ 25b738dafdSJared McNeill 26b738dafdSJared McNeill #include <sys/param.h> 27b738dafdSJared McNeill #include <sys/systm.h> 28b738dafdSJared McNeill #include <sys/bus.h> 29b738dafdSJared McNeill #include <sys/kernel.h> 30b738dafdSJared McNeill #include <sys/module.h> 31b738dafdSJared McNeill #include <machine/bus.h> 32b738dafdSJared McNeill 33b738dafdSJared McNeill #include <dev/uart/uart.h> 34b738dafdSJared McNeill #include <dev/uart/uart_bus.h> 35b738dafdSJared McNeill #include <dev/uart/uart_cpu_fdt.h> 36b738dafdSJared McNeill #include <dev/uart/uart_dev_ns8250.h> 37b738dafdSJared McNeill 38b738dafdSJared McNeill #include <dev/ofw/ofw_bus.h> 39b738dafdSJared McNeill #include <dev/ofw/ofw_bus_subr.h> 40b738dafdSJared McNeill 41be82b3a0SEmmanuel Vadot #include <dev/clk/clk.h> 42*1f469a9fSEmmanuel Vadot #include <dev/hwreset/hwreset.h> 43b738dafdSJared McNeill 44b738dafdSJared McNeill #include "uart_if.h" 45b738dafdSJared McNeill 46b738dafdSJared McNeill struct snps_softc { 47b738dafdSJared McNeill struct ns8250_softc ns8250; 48b738dafdSJared McNeill 49b738dafdSJared McNeill clk_t baudclk; 50b738dafdSJared McNeill clk_t apb_pclk; 51b738dafdSJared McNeill hwreset_t reset; 52b738dafdSJared McNeill }; 53b738dafdSJared McNeill 54837db847SEmmanuel Vadot /* 55837db847SEmmanuel Vadot * To use early printf on 64 bits Allwinner SoC, add to kernel config 56837db847SEmmanuel Vadot * options SOCDEV_PA=0x0 57837db847SEmmanuel Vadot * options SOCDEV_VA=0x40000000 58837db847SEmmanuel Vadot * options EARLY_PRINTF 59837db847SEmmanuel Vadot * 60837db847SEmmanuel Vadot * To use early printf on 32 bits Allwinner SoC, add to kernel config 61837db847SEmmanuel Vadot * options SOCDEV_PA=0x01C00000 62837db847SEmmanuel Vadot * options SOCDEV_VA=0x10000000 63837db847SEmmanuel Vadot * options EARLY_PRINTF 64837db847SEmmanuel Vadot * 65837db847SEmmanuel Vadot * remove the if 0 66837db847SEmmanuel Vadot */ 67837db847SEmmanuel Vadot #if 0 68837db847SEmmanuel Vadot #ifdef EARLY_PRINTF 69837db847SEmmanuel Vadot static void 70837db847SEmmanuel Vadot uart_snps_early_putc(int c) 71837db847SEmmanuel Vadot { 72837db847SEmmanuel Vadot volatile uint32_t *stat; 73837db847SEmmanuel Vadot volatile uint32_t *tx; 74837db847SEmmanuel Vadot 75837db847SEmmanuel Vadot #ifdef ALLWINNER_64 76837db847SEmmanuel Vadot stat = (uint32_t *) (SOCDEV_VA + 0x1C2807C); 77837db847SEmmanuel Vadot tx = (uint32_t *) (SOCDEV_VA + 0x1C28000); 78837db847SEmmanuel Vadot #endif 79837db847SEmmanuel Vadot #ifdef ALLWINNER_32 80837db847SEmmanuel Vadot stat = (uint32_t *) (SOCDEV_VA + 0x2807C); 81837db847SEmmanuel Vadot tx = (uint32_t *) (SOCDEV_VA + 0x28000); 82837db847SEmmanuel Vadot #endif 83837db847SEmmanuel Vadot 84837db847SEmmanuel Vadot while ((*stat & (1 << 2)) == 0) 85837db847SEmmanuel Vadot continue; 86837db847SEmmanuel Vadot *tx = c; 87837db847SEmmanuel Vadot } 88837db847SEmmanuel Vadot early_putc_t *early_putc = uart_snps_early_putc; 89837db847SEmmanuel Vadot #endif /* EARLY_PRINTF */ 90837db847SEmmanuel Vadot #endif 91837db847SEmmanuel Vadot 92b738dafdSJared McNeill static kobj_method_t snps_methods[] = { 93b738dafdSJared McNeill KOBJMETHOD(uart_probe, ns8250_bus_probe), 94381388b9SMatt Macy KOBJMETHOD(uart_attach, ns8250_bus_attach), 95b738dafdSJared McNeill KOBJMETHOD(uart_detach, ns8250_bus_detach), 96b738dafdSJared McNeill KOBJMETHOD(uart_flush, ns8250_bus_flush), 97b738dafdSJared McNeill KOBJMETHOD(uart_getsig, ns8250_bus_getsig), 98b738dafdSJared McNeill KOBJMETHOD(uart_ioctl, ns8250_bus_ioctl), 99b738dafdSJared McNeill KOBJMETHOD(uart_ipend, ns8250_bus_ipend), 100b738dafdSJared McNeill KOBJMETHOD(uart_param, ns8250_bus_param), 101b738dafdSJared McNeill KOBJMETHOD(uart_receive, ns8250_bus_receive), 102b738dafdSJared McNeill KOBJMETHOD(uart_setsig, ns8250_bus_setsig), 103b738dafdSJared McNeill KOBJMETHOD(uart_transmit, ns8250_bus_transmit), 104b738dafdSJared McNeill KOBJMETHOD(uart_grab, ns8250_bus_grab), 105b738dafdSJared McNeill KOBJMETHOD(uart_ungrab, ns8250_bus_ungrab), 106b738dafdSJared McNeill KOBJMETHOD_END 107b738dafdSJared McNeill }; 108b738dafdSJared McNeill 109b738dafdSJared McNeill struct uart_class uart_snps_class = { 110b738dafdSJared McNeill "snps", 111b738dafdSJared McNeill snps_methods, 112b738dafdSJared McNeill sizeof(struct snps_softc), 113b738dafdSJared McNeill .uc_ops = &uart_ns8250_ops, 114b738dafdSJared McNeill .uc_range = 8, 115b738dafdSJared McNeill .uc_rclk = 0, 116b738dafdSJared McNeill }; 117b738dafdSJared McNeill 118b738dafdSJared McNeill static struct ofw_compat_data compat_data[] = { 119b738dafdSJared McNeill { "snps,dw-apb-uart", (uintptr_t)&uart_snps_class }, 1200693b1d2SMarcin Wojtas { "marvell,armada-38x-uart", (uintptr_t)&uart_snps_class }, 121b738dafdSJared McNeill { NULL, (uintptr_t)NULL } 122b738dafdSJared McNeill }; 12327708858SRuslan Bukin UART_FDT_CLASS(compat_data); 124b738dafdSJared McNeill 125b738dafdSJared McNeill static int 126b738dafdSJared McNeill snps_get_clocks(device_t dev, clk_t *baudclk, clk_t *apb_pclk) 127b738dafdSJared McNeill { 128b738dafdSJared McNeill 129b738dafdSJared McNeill *baudclk = NULL; 130b738dafdSJared McNeill *apb_pclk = NULL; 131b738dafdSJared McNeill 132b738dafdSJared McNeill /* Baud clock is either named "baudclk", or there is a single 133b738dafdSJared McNeill * unnamed clock. 134b738dafdSJared McNeill */ 135dac93553SMichal Meloun if (clk_get_by_ofw_name(dev, 0, "baudclk", baudclk) != 0 && 136dac93553SMichal Meloun clk_get_by_ofw_index(dev, 0, 0, baudclk) != 0) 137b738dafdSJared McNeill return (ENOENT); 138b738dafdSJared McNeill 139b738dafdSJared McNeill /* APB peripheral clock is optional */ 140dac93553SMichal Meloun (void)clk_get_by_ofw_name(dev, 0, "apb_pclk", apb_pclk); 141b738dafdSJared McNeill 142b738dafdSJared McNeill return (0); 143b738dafdSJared McNeill } 144b738dafdSJared McNeill 145b738dafdSJared McNeill static int 146b738dafdSJared McNeill snps_probe(device_t dev) 147b738dafdSJared McNeill { 148b738dafdSJared McNeill struct snps_softc *sc; 149b738dafdSJared McNeill struct uart_class *uart_class; 150b738dafdSJared McNeill phandle_t node; 151c214a270SRuslan Bukin uint32_t shift, iowidth, clock; 152b738dafdSJared McNeill uint64_t freq; 153b738dafdSJared McNeill int error; 154b738dafdSJared McNeill clk_t baudclk, apb_pclk; 155b738dafdSJared McNeill hwreset_t reset; 156b738dafdSJared McNeill 157b738dafdSJared McNeill if (!ofw_bus_status_okay(dev)) 158b738dafdSJared McNeill return (ENXIO); 159b738dafdSJared McNeill 160b738dafdSJared McNeill uart_class = (struct uart_class *)ofw_bus_search_compatible(dev, 161b738dafdSJared McNeill compat_data)->ocd_data; 162b738dafdSJared McNeill if (uart_class == NULL) 163b738dafdSJared McNeill return (ENXIO); 164b738dafdSJared McNeill 165b738dafdSJared McNeill freq = 0; 166b738dafdSJared McNeill sc = device_get_softc(dev); 167b738dafdSJared McNeill sc->ns8250.base.sc_class = uart_class; 168b738dafdSJared McNeill 169b738dafdSJared McNeill node = ofw_bus_get_node(dev); 170b738dafdSJared McNeill if (OF_getencprop(node, "reg-shift", &shift, sizeof(shift)) <= 0) 171b738dafdSJared McNeill shift = 0; 172c214a270SRuslan Bukin if (OF_getencprop(node, "reg-io-width", &iowidth, sizeof(iowidth)) <= 0) 173c214a270SRuslan Bukin iowidth = 1; 174b738dafdSJared McNeill if (OF_getencprop(node, "clock-frequency", &clock, sizeof(clock)) <= 0) 175b738dafdSJared McNeill clock = 0; 176b738dafdSJared McNeill 177dac93553SMichal Meloun if (hwreset_get_by_ofw_idx(dev, 0, 0, &reset) == 0) { 178b738dafdSJared McNeill error = hwreset_deassert(reset); 179b738dafdSJared McNeill if (error != 0) { 180b738dafdSJared McNeill device_printf(dev, "cannot de-assert reset\n"); 181b738dafdSJared McNeill return (error); 182b738dafdSJared McNeill } 183b738dafdSJared McNeill } 184b738dafdSJared McNeill 185b738dafdSJared McNeill if (snps_get_clocks(dev, &baudclk, &apb_pclk) == 0) { 186b738dafdSJared McNeill error = clk_enable(baudclk); 187b738dafdSJared McNeill if (error != 0) { 188b738dafdSJared McNeill device_printf(dev, "cannot enable baud clock\n"); 189b738dafdSJared McNeill return (error); 190b738dafdSJared McNeill } 191b738dafdSJared McNeill if (apb_pclk != NULL) { 192b738dafdSJared McNeill error = clk_enable(apb_pclk); 193b738dafdSJared McNeill if (error != 0) { 194b738dafdSJared McNeill device_printf(dev, 195b738dafdSJared McNeill "cannot enable peripheral clock\n"); 196b738dafdSJared McNeill return (error); 197b738dafdSJared McNeill } 198b738dafdSJared McNeill } 199b738dafdSJared McNeill 200b738dafdSJared McNeill if (clock == 0) { 201b738dafdSJared McNeill error = clk_get_freq(baudclk, &freq); 202b738dafdSJared McNeill if (error != 0) { 203b738dafdSJared McNeill device_printf(dev, "cannot get frequency\n"); 204b738dafdSJared McNeill return (error); 205b738dafdSJared McNeill } 206b738dafdSJared McNeill clock = (uint32_t)freq; 207b738dafdSJared McNeill } 208b738dafdSJared McNeill } 209b738dafdSJared McNeill 210b738dafdSJared McNeill if (bootverbose && clock == 0) 211b738dafdSJared McNeill device_printf(dev, "could not determine frequency\n"); 212b738dafdSJared McNeill 213381388b9SMatt Macy error = uart_bus_probe(dev, (int)shift, (int)iowidth, (int)clock, 0, 0, UART_F_BUSY_DETECT); 2146bdc3988SKornel Dulęba if (error > 0) 215b738dafdSJared McNeill return (error); 216b738dafdSJared McNeill 217b738dafdSJared McNeill /* XXX uart_bus_probe has changed the softc, so refresh it */ 218b738dafdSJared McNeill sc = device_get_softc(dev); 219b738dafdSJared McNeill 220b738dafdSJared McNeill /* Store clock and reset handles for detach */ 221b738dafdSJared McNeill sc->baudclk = baudclk; 222b738dafdSJared McNeill sc->apb_pclk = apb_pclk; 223b738dafdSJared McNeill sc->reset = reset; 224b738dafdSJared McNeill 2256bdc3988SKornel Dulęba return (BUS_PROBE_VENDOR); 226b738dafdSJared McNeill } 227b738dafdSJared McNeill 228b738dafdSJared McNeill static int 229b738dafdSJared McNeill snps_detach(device_t dev) 230b738dafdSJared McNeill { 231b738dafdSJared McNeill struct snps_softc *sc; 232b738dafdSJared McNeill clk_t baudclk, apb_pclk; 233b738dafdSJared McNeill hwreset_t reset; 234b738dafdSJared McNeill int error; 235b738dafdSJared McNeill 236b738dafdSJared McNeill sc = device_get_softc(dev); 237b738dafdSJared McNeill baudclk = sc->baudclk; 238b738dafdSJared McNeill apb_pclk = sc->apb_pclk; 239b738dafdSJared McNeill reset = sc->reset; 240b738dafdSJared McNeill 241b738dafdSJared McNeill error = uart_bus_detach(dev); 242b738dafdSJared McNeill if (error != 0) 243b738dafdSJared McNeill return (error); 244b738dafdSJared McNeill 245b738dafdSJared McNeill if (reset != NULL) { 246b738dafdSJared McNeill error = hwreset_assert(reset); 247b738dafdSJared McNeill if (error != 0) { 248b738dafdSJared McNeill device_printf(dev, "cannot assert reset\n"); 249b738dafdSJared McNeill return (error); 250b738dafdSJared McNeill } 251b738dafdSJared McNeill hwreset_release(reset); 252b738dafdSJared McNeill } 253b738dafdSJared McNeill if (apb_pclk != NULL) { 254b738dafdSJared McNeill error = clk_release(apb_pclk); 255b738dafdSJared McNeill if (error != 0) { 256b738dafdSJared McNeill device_printf(dev, "cannot release peripheral clock\n"); 257b738dafdSJared McNeill return (error); 258b738dafdSJared McNeill } 259b738dafdSJared McNeill } 260b738dafdSJared McNeill if (baudclk != NULL) { 261b738dafdSJared McNeill error = clk_release(baudclk); 262b738dafdSJared McNeill if (error != 0) { 263b738dafdSJared McNeill device_printf(dev, "cannot release baud clock\n"); 264b738dafdSJared McNeill return (error); 265b738dafdSJared McNeill } 266b738dafdSJared McNeill } 267b738dafdSJared McNeill 268b738dafdSJared McNeill return (0); 269b738dafdSJared McNeill } 270b738dafdSJared McNeill 271b738dafdSJared McNeill static device_method_t snps_bus_methods[] = { 272b738dafdSJared McNeill /* Device interface */ 273b738dafdSJared McNeill DEVMETHOD(device_probe, snps_probe), 274b738dafdSJared McNeill DEVMETHOD(device_attach, uart_bus_attach), 275b738dafdSJared McNeill DEVMETHOD(device_detach, snps_detach), 276b738dafdSJared McNeill DEVMETHOD_END 277b738dafdSJared McNeill }; 278b738dafdSJared McNeill 279b738dafdSJared McNeill static driver_t snps_uart_driver = { 280b738dafdSJared McNeill uart_driver_name, 281b738dafdSJared McNeill snps_bus_methods, 282b738dafdSJared McNeill sizeof(struct snps_softc) 283b738dafdSJared McNeill }; 284b738dafdSJared McNeill 285c90ea831SJohn Baldwin DRIVER_MODULE(uart_snps, simplebus, snps_uart_driver, 0, 0); 286