496 lines
13 KiB
C
496 lines
13 KiB
C
/* $NetBSD: tegra_i2c.c,v 1.12 2015/12/22 22:12:08 jmcneill Exp $ */
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/*-
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* Copyright (c) 2015 Jared D. McNeill <jmcneill@invisible.ca>
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* All rights reserved.
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*
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* Redistribution and use in source and binary forms, with or without
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* modification, are permitted provided that the following conditions
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* are met:
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* 1. Redistributions of source code must retain the above copyright
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* notice, this list of conditions and the following disclaimer.
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* 2. Redistributions in binary form must reproduce the above copyright
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* notice, this list of conditions and the following disclaimer in the
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* documentation and/or other materials provided with the distribution.
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*
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* THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
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* IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
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* OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
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* IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
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* INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING,
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* BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
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* LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED
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* AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
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* OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
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* OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
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* SUCH DAMAGE.
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*/
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#include <sys/cdefs.h>
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__KERNEL_RCSID(0, "$NetBSD: tegra_i2c.c,v 1.12 2015/12/22 22:12:08 jmcneill Exp $");
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#include <sys/param.h>
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#include <sys/bus.h>
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#include <sys/device.h>
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#include <sys/intr.h>
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#include <sys/systm.h>
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#include <sys/kernel.h>
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#include <dev/i2c/i2cvar.h>
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#include <arm/nvidia/tegra_reg.h>
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#include <arm/nvidia/tegra_i2creg.h>
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#include <arm/nvidia/tegra_var.h>
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#include <dev/fdt/fdtvar.h>
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static int tegra_i2c_match(device_t, cfdata_t, void *);
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static void tegra_i2c_attach(device_t, device_t, void *);
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static i2c_tag_t tegra_i2c_get_tag(device_t);
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struct fdtbus_i2c_controller_func tegra_i2c_funcs = {
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.get_tag = tegra_i2c_get_tag
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};
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struct tegra_i2c_softc {
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device_t sc_dev;
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bus_space_tag_t sc_bst;
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bus_space_handle_t sc_bsh;
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void * sc_ih;
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struct clk * sc_clk;
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struct fdtbus_reset * sc_rst;
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u_int sc_cid;
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struct i2c_controller sc_ic;
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kmutex_t sc_lock;
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kcondvar_t sc_cv;
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device_t sc_i2cdev;
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};
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static void tegra_i2c_init(struct tegra_i2c_softc *);
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static int tegra_i2c_intr(void *);
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static int tegra_i2c_acquire_bus(void *, int);
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static void tegra_i2c_release_bus(void *, int);
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static int tegra_i2c_exec(void *, i2c_op_t, i2c_addr_t, const void *,
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size_t, void *, size_t, int);
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static int tegra_i2c_wait(struct tegra_i2c_softc *, int);
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static int tegra_i2c_write(struct tegra_i2c_softc *, i2c_addr_t,
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const uint8_t *, size_t, int, bool);
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static int tegra_i2c_read(struct tegra_i2c_softc *, i2c_addr_t, uint8_t *,
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size_t, int);
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CFATTACH_DECL_NEW(tegra_i2c, sizeof(struct tegra_i2c_softc),
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tegra_i2c_match, tegra_i2c_attach, NULL, NULL);
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#define I2C_WRITE(sc, reg, val) \
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bus_space_write_4((sc)->sc_bst, (sc)->sc_bsh, (reg), (val))
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#define I2C_READ(sc, reg) \
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bus_space_read_4((sc)->sc_bst, (sc)->sc_bsh, (reg))
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#define I2C_SET_CLEAR(sc, reg, setval, clrval) \
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tegra_reg_set_clear((sc)->sc_bst, (sc)->sc_bsh, (reg), (setval), (clrval))
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static int
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tegra_i2c_match(device_t parent, cfdata_t cf, void *aux)
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{
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const char * const compatible[] = { "nvidia,tegra124-i2c", NULL };
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struct fdt_attach_args * const faa = aux;
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return of_match_compatible(faa->faa_phandle, compatible);
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}
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static void
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tegra_i2c_attach(device_t parent, device_t self, void *aux)
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{
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struct tegra_i2c_softc * const sc = device_private(self);
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struct fdt_attach_args * const faa = aux;
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const int phandle = faa->faa_phandle;
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struct i2cbus_attach_args iba;
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prop_dictionary_t devs;
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char intrstr[128];
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bus_addr_t addr;
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bus_size_t size;
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u_int address_cells;
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int error;
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if (fdtbus_get_reg(phandle, 0, &addr, &size) != 0) {
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aprint_error(": couldn't get registers\n");
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return;
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}
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sc->sc_clk = fdtbus_clock_get(phandle, "div-clk");
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if (sc->sc_clk == NULL) {
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aprint_error(": couldn't get clock div-clk\n");
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return;
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}
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sc->sc_rst = fdtbus_reset_get(phandle, "i2c");
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if (sc->sc_rst == NULL) {
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aprint_error(": couldn't get reset i2c\n");
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return;
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}
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sc->sc_dev = self;
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sc->sc_bst = faa->faa_bst;
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sc->sc_cid = device_unit(self);
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error = bus_space_map(sc->sc_bst, addr, size, 0, &sc->sc_bsh);
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if (error) {
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aprint_error(": couldn't map %#llx: %d", (uint64_t)addr, error);
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return;
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}
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mutex_init(&sc->sc_lock, MUTEX_DEFAULT, IPL_VM);
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cv_init(&sc->sc_cv, device_xname(self));
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aprint_naive("\n");
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aprint_normal(": I2C\n");
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if (!fdtbus_intr_str(phandle, 0, intrstr, sizeof(intrstr))) {
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aprint_error_dev(self, "failed to decode interrupt\n");
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return;
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}
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sc->sc_ih = fdtbus_intr_establish(phandle, 0, IPL_VM,
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FDT_INTR_MPSAFE, tegra_i2c_intr, sc);
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if (sc->sc_ih == NULL) {
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aprint_error_dev(self, "couldn't establish interrupt on %s\n",
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intrstr);
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return;
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}
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aprint_normal_dev(self, "interrupting on %s\n", intrstr);
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/*
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* Recommended setting for standard mode is to use an I2C source div
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* of 20 (Tegra K1 Technical Reference Manual, Table 137)
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*/
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fdtbus_reset_assert(sc->sc_rst);
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error = clk_set_rate(sc->sc_clk, 20400000);
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if (error) {
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aprint_error_dev(self, "couldn't set frequency: %d\n", error);
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return;
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}
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error = clk_enable(sc->sc_clk);
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if (error) {
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aprint_error_dev(self, "couldn't enable clock: %d\n", error);
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return;
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}
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fdtbus_reset_deassert(sc->sc_rst);
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tegra_i2c_init(sc);
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sc->sc_ic.ic_cookie = sc;
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sc->sc_ic.ic_acquire_bus = tegra_i2c_acquire_bus;
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sc->sc_ic.ic_release_bus = tegra_i2c_release_bus;
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sc->sc_ic.ic_exec = tegra_i2c_exec;
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fdtbus_register_i2c_controller(self, phandle, &tegra_i2c_funcs);
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devs = prop_dictionary_create();
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if (of_getprop_uint32(phandle, "#address-cells", &address_cells))
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address_cells = 1;
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of_enter_i2c_devs(devs, faa->faa_phandle, address_cells * 4, 0);
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iba.iba_tag = &sc->sc_ic;
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iba.iba_child_devices = prop_dictionary_get(devs, "i2c-child-devices");
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if (iba.iba_child_devices != NULL) {
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prop_object_retain(iba.iba_child_devices);
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} else {
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iba.iba_child_devices = prop_array_create();
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}
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prop_object_release(devs);
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sc->sc_i2cdev = config_found_ia(self, "i2cbus", &iba, iicbus_print);
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}
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static i2c_tag_t
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tegra_i2c_get_tag(device_t dev)
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{
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struct tegra_i2c_softc * const sc = device_private(dev);
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return &sc->sc_ic;
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}
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static void
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tegra_i2c_init(struct tegra_i2c_softc *sc)
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{
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int retry = 10000;
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I2C_WRITE(sc, I2C_CLK_DIVISOR_REG,
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__SHIFTIN(0x19, I2C_CLK_DIVISOR_STD_FAST_MODE) |
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__SHIFTIN(0x1, I2C_CLK_DIVISOR_HSMODE));
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I2C_WRITE(sc, I2C_INTERRUPT_MASK_REG, 0);
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I2C_WRITE(sc, I2C_CNFG_REG,
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I2C_CNFG_NEW_MASTER_FSM | I2C_CNFG_PACKET_MODE_EN);
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I2C_SET_CLEAR(sc, I2C_SL_CNFG_REG, I2C_SL_CNFG_NEWSL, 0);
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I2C_WRITE(sc, I2C_FIFO_CONTROL_REG,
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__SHIFTIN(7, I2C_FIFO_CONTROL_TX_FIFO_TRIG) |
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__SHIFTIN(0, I2C_FIFO_CONTROL_RX_FIFO_TRIG));
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I2C_WRITE(sc, I2C_BUS_CONFIG_LOAD_REG,
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I2C_BUS_CONFIG_LOAD_MSTR_CONFIG_LOAD);
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while (--retry > 0) {
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if (I2C_READ(sc, I2C_BUS_CONFIG_LOAD_REG) == 0)
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break;
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delay(10);
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}
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if (retry == 0) {
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device_printf(sc->sc_dev, "config load timeout\n");
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}
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}
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static int
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tegra_i2c_intr(void *priv)
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{
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struct tegra_i2c_softc * const sc = priv;
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const uint32_t istatus = I2C_READ(sc, I2C_INTERRUPT_STATUS_REG);
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if (istatus == 0)
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return 0;
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I2C_WRITE(sc, I2C_INTERRUPT_STATUS_REG, istatus);
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mutex_enter(&sc->sc_lock);
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cv_broadcast(&sc->sc_cv);
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mutex_exit(&sc->sc_lock);
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return 1;
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}
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static int
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tegra_i2c_acquire_bus(void *priv, int flags)
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{
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struct tegra_i2c_softc * const sc = priv;
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mutex_enter(&sc->sc_lock);
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return 0;
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}
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static void
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tegra_i2c_release_bus(void *priv, int flags)
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{
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struct tegra_i2c_softc * const sc = priv;
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mutex_exit(&sc->sc_lock);
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}
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static int
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tegra_i2c_exec(void *priv, i2c_op_t op, i2c_addr_t addr, const void *cmdbuf,
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size_t cmdlen, void *buf, size_t buflen, int flags)
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{
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struct tegra_i2c_softc * const sc = priv;
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int retry, error;
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#if notyet
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if (cold)
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#endif
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flags |= I2C_F_POLL;
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KASSERT(mutex_owned(&sc->sc_lock));
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if ((flags & I2C_F_POLL) == 0) {
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I2C_WRITE(sc, I2C_INTERRUPT_MASK_REG,
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I2C_INTERRUPT_MASK_NOACK | I2C_INTERRUPT_MASK_ARB_LOST |
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I2C_INTERRUPT_MASK_TIMEOUT |
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I2C_INTERRUPT_MASK_ALL_PACKETS_XFER_COMPLETE);
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}
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const uint32_t flush_mask =
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I2C_FIFO_CONTROL_TX_FIFO_FLUSH | I2C_FIFO_CONTROL_RX_FIFO_FLUSH;
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I2C_SET_CLEAR(sc, I2C_FIFO_CONTROL_REG, flush_mask, 0);
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for (retry = 10000; retry > 0; retry--) {
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const uint32_t v = I2C_READ(sc, I2C_FIFO_CONTROL_REG);
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if ((v & flush_mask) == 0)
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break;
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delay(1);
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}
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if (retry == 0) {
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device_printf(sc->sc_dev, "timeout flushing FIFO\n");
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return EIO;
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}
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if (cmdlen > 0) {
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error = tegra_i2c_write(sc, addr, cmdbuf, cmdlen, flags,
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I2C_OP_READ_P(op) ? true : false);
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if (error) {
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goto done;
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}
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}
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if (I2C_OP_READ_P(op)) {
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error = tegra_i2c_read(sc, addr, buf, buflen, flags);
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} else {
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error = tegra_i2c_write(sc, addr, buf, buflen, flags, false);
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}
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done:
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if ((flags & I2C_F_POLL) == 0) {
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I2C_WRITE(sc, I2C_INTERRUPT_MASK_REG, 0);
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}
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if (error) {
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tegra_i2c_init(sc);
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}
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return error;
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}
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static int
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tegra_i2c_wait(struct tegra_i2c_softc *sc, int flags)
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{
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int error, retry;
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uint32_t stat = 0;
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retry = (flags & I2C_F_POLL) ? 100000 : 100;
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while (--retry > 0) {
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if ((flags & I2C_F_POLL) == 0) {
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error = cv_timedwait_sig(&sc->sc_cv, &sc->sc_lock,
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max(mstohz(10), 1));
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if (error) {
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return error;
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}
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}
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stat = I2C_READ(sc, I2C_INTERRUPT_STATUS_REG);
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if (stat & I2C_INTERRUPT_STATUS_PACKET_XFER_COMPLETE) {
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break;
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}
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if (flags & I2C_F_POLL) {
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delay(10);
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}
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}
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if (retry == 0) {
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stat = I2C_READ(sc, I2C_INTERRUPT_STATUS_REG);
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device_printf(sc->sc_dev, "timed out, status = %#x\n", stat);
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return ETIMEDOUT;
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}
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const uint32_t err_mask =
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I2C_INTERRUPT_STATUS_NOACK |
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I2C_INTERRUPT_STATUS_ARB_LOST |
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I2C_INTERRUPT_MASK_TIMEOUT;
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if (stat & err_mask) {
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device_printf(sc->sc_dev, "error, status = %#x\n", stat);
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return EIO;
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}
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return 0;
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}
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static int
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tegra_i2c_write(struct tegra_i2c_softc *sc, i2c_addr_t addr, const uint8_t *buf,
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size_t buflen, int flags, bool repeat_start)
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{
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const uint8_t *p = buf;
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size_t n, resid = buflen;
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uint32_t data;
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int retry;
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const uint32_t istatus = I2C_READ(sc, I2C_INTERRUPT_STATUS_REG);
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I2C_WRITE(sc, I2C_INTERRUPT_STATUS_REG, istatus);
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/* Generic Header 0 */
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I2C_WRITE(sc, I2C_TX_PACKET_FIFO_REG,
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__SHIFTIN(I2C_IOPACKET_WORD0_PROTHDRSZ_REQ,
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I2C_IOPACKET_WORD0_PROTHDRSZ) |
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__SHIFTIN(sc->sc_cid, I2C_IOPACKET_WORD0_CONTROLLERID) |
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__SHIFTIN(1, I2C_IOPACKET_WORD0_PKTID) |
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__SHIFTIN(I2C_IOPACKET_WORD0_PROTOCOL_I2C,
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I2C_IOPACKET_WORD0_PROTOCOL) |
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__SHIFTIN(I2C_IOPACKET_WORD0_PKTTYPE_REQ,
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I2C_IOPACKET_WORD0_PKTTYPE));
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/* Generic Header 1 */
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I2C_WRITE(sc, I2C_TX_PACKET_FIFO_REG,
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__SHIFTIN(buflen - 1, I2C_IOPACKET_WORD1_PAYLOADSIZE));
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/* I2C Master Transmit Packet Header */
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I2C_WRITE(sc, I2C_TX_PACKET_FIFO_REG,
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I2C_IOPACKET_XMITHDR_IE |
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(repeat_start ? I2C_IOPACKET_XMITHDR_REPEAT_STARTSTOP : 0) |
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__SHIFTIN((addr << 1), I2C_IOPACKET_XMITHDR_SLAVE_ADDR));
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/* Transmit data */
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while (resid > 0) {
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retry = 10000;
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while (--retry > 0) {
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const uint32_t fs = I2C_READ(sc, I2C_FIFO_STATUS_REG);
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const u_int cnt =
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__SHIFTOUT(fs, I2C_FIFO_STATUS_TX_FIFO_EMPTY_CNT);
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if (cnt > 0)
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break;
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delay(10);
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}
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if (retry == 0) {
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device_printf(sc->sc_dev, "TX FIFO timeout\n");
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return ETIMEDOUT;
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}
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for (n = 0, data = 0; n < min(resid, 4); n++) {
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data |= (uint32_t)p[n] << (n * 8);
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}
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I2C_WRITE(sc, I2C_TX_PACKET_FIFO_REG, data);
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resid -= min(resid, 4);
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p += min(resid, 4);
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}
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return tegra_i2c_wait(sc, flags);
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}
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static int
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tegra_i2c_read(struct tegra_i2c_softc *sc, i2c_addr_t addr, uint8_t *buf,
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size_t buflen, int flags)
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{
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uint8_t *p = buf;
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size_t n, resid = buflen;
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uint32_t data;
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int retry;
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const uint32_t istatus = I2C_READ(sc, I2C_INTERRUPT_STATUS_REG);
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I2C_WRITE(sc, I2C_INTERRUPT_STATUS_REG, istatus);
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/* Generic Header 0 */
|
|
I2C_WRITE(sc, I2C_TX_PACKET_FIFO_REG,
|
|
__SHIFTIN(I2C_IOPACKET_WORD0_PROTHDRSZ_REQ,
|
|
I2C_IOPACKET_WORD0_PROTHDRSZ) |
|
|
__SHIFTIN(sc->sc_cid, I2C_IOPACKET_WORD0_CONTROLLERID) |
|
|
__SHIFTIN(1, I2C_IOPACKET_WORD0_PKTID) |
|
|
__SHIFTIN(I2C_IOPACKET_WORD0_PROTOCOL_I2C,
|
|
I2C_IOPACKET_WORD0_PROTOCOL) |
|
|
__SHIFTIN(I2C_IOPACKET_WORD0_PKTTYPE_REQ,
|
|
I2C_IOPACKET_WORD0_PKTTYPE));
|
|
/* Generic Header 1 */
|
|
I2C_WRITE(sc, I2C_TX_PACKET_FIFO_REG,
|
|
__SHIFTIN(buflen - 1, I2C_IOPACKET_WORD1_PAYLOADSIZE));
|
|
/* I2C Master Transmit Packet Header */
|
|
I2C_WRITE(sc, I2C_TX_PACKET_FIFO_REG,
|
|
I2C_IOPACKET_XMITHDR_IE | I2C_IOPACKET_XMITHDR_READ |
|
|
__SHIFTIN((addr << 1) | 1, I2C_IOPACKET_XMITHDR_SLAVE_ADDR));
|
|
|
|
while (resid > 0) {
|
|
retry = 10000;
|
|
while (--retry > 0) {
|
|
const uint32_t fs = I2C_READ(sc, I2C_FIFO_STATUS_REG);
|
|
const u_int cnt =
|
|
__SHIFTOUT(fs, I2C_FIFO_STATUS_RX_FIFO_FULL_CNT);
|
|
if (cnt > 0)
|
|
break;
|
|
delay(10);
|
|
}
|
|
if (retry == 0) {
|
|
device_printf(sc->sc_dev, "RX FIFO timeout\n");
|
|
return ETIMEDOUT;
|
|
}
|
|
|
|
data = I2C_READ(sc, I2C_RX_FIFO_REG);
|
|
for (n = 0; n < min(resid, 4); n++) {
|
|
p[n] = (data >> (n * 8)) & 0xff;
|
|
}
|
|
resid -= min(resid, 4);
|
|
p += min(resid, 4);
|
|
}
|
|
|
|
return tegra_i2c_wait(sc, flags);
|
|
}
|