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https://git.kernel.org/pub/scm/linux/kernel/git/torvalds/linux.git
synced 2026-08-30 02:59:05 -04:00
Add a default value for the function reset timeout since version 1.0
of the SDCA specification doesn't actually include this property, it
was added later.
Fixes: 7b6be935e7 ("ASoC: SDCA: Parse Function Reset max delay")
Reviewed-by: Pierre-Louis Bossart <pierre-louis.bossart@linux.dev>
Signed-off-by: Charles Keepax <ckeepax@opensource.cirrus.com>
Link: https://patch.msgid.link/20260225140118.402695-2-ckeepax@opensource.cirrus.com
Signed-off-by: Mark Brown <broonie@kernel.org>
502 lines
13 KiB
C
502 lines
13 KiB
C
// SPDX-License-Identifier: GPL-2.0
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// Copyright (C) 2025 Cirrus Logic, Inc. and
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// Cirrus Logic International Semiconductor Ltd.
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/*
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* The MIPI SDCA specification is available for public downloads at
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* https://www.mipi.org/mipi-sdca-v1-0-download
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*/
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#include <linux/acpi.h>
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#include <linux/device.h>
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#include <linux/dev_printk.h>
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#include <linux/dmi.h>
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#include <linux/firmware.h>
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#include <linux/module.h>
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#include <linux/pci.h>
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#include <linux/pm_runtime.h>
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#include <linux/regmap.h>
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#include <linux/sprintf.h>
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#include <linux/soundwire/sdw.h>
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#include <linux/soundwire/sdw_registers.h>
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#include <sound/sdca.h>
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#include <sound/sdca_fdl.h>
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#include <sound/sdca_function.h>
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#include <sound/sdca_interrupts.h>
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#include <sound/sdca_ump.h>
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/**
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* sdca_reset_function - send an SDCA function reset
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* @dev: Device pointer for error messages.
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* @function: Pointer to the SDCA Function.
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* @regmap: Pointer to the SDCA Function regmap.
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*
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* Return: Zero on success or a negative error code.
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*/
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int sdca_reset_function(struct device *dev, struct sdca_function_data *function,
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struct regmap *regmap)
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{
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unsigned int reg = SDW_SDCA_CTL(function->desc->adr,
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SDCA_ENTITY_TYPE_ENTITY_0,
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SDCA_CTL_ENTITY_0_FUNCTION_ACTION, 0);
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unsigned int val, poll_us;
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int ret;
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ret = regmap_write(regmap, reg, SDCA_CTL_ENTITY_0_RESET_FUNCTION_NOW);
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if (ret) // Allowed for function reset to not be implemented
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return 0;
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/*
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* Poll up to 16 times but no more than once per ms, these are just
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* arbitrarily selected values, so may be fine tuned in future.
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*/
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poll_us = umin(function->reset_max_delay >> 4, 1000);
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ret = regmap_read_poll_timeout(regmap, reg, val, !val, poll_us,
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function->reset_max_delay);
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if (ret) {
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dev_err(dev, "Failed waiting for function reset: %d\n", ret);
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return ret;
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}
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return 0;
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}
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EXPORT_SYMBOL_NS(sdca_reset_function, "SND_SOC_SDCA");
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/**
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* sdca_fdl_sync - wait for a function to finish FDL
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* @dev: Device pointer for error messages.
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* @function: Pointer to the SDCA Function.
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* @info: Pointer to the SDCA interrupt info for this device.
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*
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* Return: Zero on success or a negative error code.
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*/
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int sdca_fdl_sync(struct device *dev, struct sdca_function_data *function,
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struct sdca_interrupt_info *info)
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{
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static const int fdl_retries = 6;
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unsigned long begin_timeout = msecs_to_jiffies(100);
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unsigned long done_timeout = msecs_to_jiffies(4000);
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int nfdl;
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int i, j;
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for (i = 0; i < fdl_retries; i++) {
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nfdl = 0;
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for (j = 0; j < SDCA_MAX_INTERRUPTS; j++) {
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struct sdca_interrupt *interrupt = &info->irqs[j];
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struct fdl_state *fdl_state;
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unsigned long time;
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if (interrupt->function != function ||
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!interrupt->entity || !interrupt->control ||
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interrupt->entity->type != SDCA_ENTITY_TYPE_XU ||
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interrupt->control->sel != SDCA_CTL_XU_FDL_CURRENTOWNER)
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continue;
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fdl_state = interrupt->priv;
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nfdl++;
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/*
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* Looking for timeout without any new FDL requests
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* to imply the device has completed initial
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* firmware setup. Alas the specification doesn't
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* have any mechanism to detect this.
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*/
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time = wait_for_completion_timeout(&fdl_state->begin,
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begin_timeout);
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if (!time) {
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dev_dbg(dev, "no new FDL starts\n");
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nfdl--;
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continue;
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}
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time = wait_for_completion_timeout(&fdl_state->done,
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done_timeout);
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if (!time) {
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dev_err(dev, "timed out waiting for FDL to complete\n");
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goto error;
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}
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}
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if (!nfdl)
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return 0;
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}
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dev_err(dev, "too many FDL requests\n");
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error:
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for (j = 0; j < SDCA_MAX_INTERRUPTS; j++) {
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struct sdca_interrupt *interrupt = &info->irqs[j];
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struct fdl_state *fdl_state;
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if (interrupt->function != function ||
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!interrupt->entity || !interrupt->control ||
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interrupt->entity->type != SDCA_ENTITY_TYPE_XU ||
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interrupt->control->sel != SDCA_CTL_XU_FDL_CURRENTOWNER)
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continue;
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disable_irq(interrupt->irq);
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fdl_state = interrupt->priv;
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sdca_ump_cancel_timeout(&fdl_state->timeout);
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}
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return -ETIMEDOUT;
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}
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EXPORT_SYMBOL_NS_GPL(sdca_fdl_sync, "SND_SOC_SDCA");
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static char *fdl_get_sku_filename(struct device *dev,
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struct sdca_fdl_file *fdl_file)
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{
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struct device *parent = dev;
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const char *product_vendor;
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const char *product_sku;
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/*
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* Try to find pci_dev manually because the card may not be ready to be
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* used for snd_soc_card_get_pci_ssid yet
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*/
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while (parent) {
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if (dev_is_pci(parent)) {
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struct pci_dev *pci_dev = to_pci_dev(parent);
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return kasprintf(GFP_KERNEL, "sdca/%x/%x/%x/%x.bin",
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fdl_file->vendor_id,
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pci_dev->subsystem_vendor,
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pci_dev->subsystem_device,
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fdl_file->file_id);
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} else {
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parent = parent->parent;
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}
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}
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product_vendor = dmi_get_system_info(DMI_SYS_VENDOR);
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if (!product_vendor || !strcmp(product_vendor, "Default string"))
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product_vendor = dmi_get_system_info(DMI_BOARD_VENDOR);
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if (!product_vendor || !strcmp(product_vendor, "Default string"))
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product_vendor = dmi_get_system_info(DMI_CHASSIS_VENDOR);
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if (!product_vendor)
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product_vendor = "unknown";
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product_sku = dmi_get_system_info(DMI_PRODUCT_SKU);
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if (!product_sku || !strcmp(product_sku, "Default string"))
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product_sku = dmi_get_system_info(DMI_PRODUCT_NAME);
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if (!product_sku)
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product_sku = "unknown";
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return kasprintf(GFP_KERNEL, "sdca/%x/%s/%s/%x.bin", fdl_file->vendor_id,
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product_vendor, product_sku, fdl_file->file_id);
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}
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static int fdl_load_file(struct sdca_interrupt *interrupt,
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struct sdca_fdl_set *set, int file_index)
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{
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struct device *dev = interrupt->dev;
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struct sdca_fdl_data *fdl_data = &interrupt->function->fdl_data;
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const struct firmware *firmware = NULL;
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struct acpi_sw_file *swf = NULL, *tmp;
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struct sdca_fdl_file *fdl_file;
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char *disk_filename;
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int ret;
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int i;
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if (!set) {
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dev_err(dev, "request to load SWF with no set\n");
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return -EINVAL;
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}
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fdl_file = &set->files[file_index];
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if (fdl_data->swft) {
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tmp = fdl_data->swft->files;
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for (i = 0; i < fdl_data->swft->header.length; i += tmp->file_length,
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tmp = ACPI_ADD_PTR(struct acpi_sw_file, tmp, tmp->file_length)) {
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if (tmp->vendor_id == fdl_file->vendor_id &&
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tmp->file_id == fdl_file->file_id) {
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dev_dbg(dev, "located SWF in ACPI: %x-%x-%x\n",
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tmp->vendor_id, tmp->file_id,
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tmp->file_version);
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swf = tmp;
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break;
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}
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}
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}
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disk_filename = fdl_get_sku_filename(dev, fdl_file);
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if (!disk_filename)
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return -ENOMEM;
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dev_dbg(dev, "FDL disk filename: %s\n", disk_filename);
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ret = firmware_request_nowarn(&firmware, disk_filename, dev);
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kfree(disk_filename);
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if (ret) {
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disk_filename = kasprintf(GFP_KERNEL, "sdca/%x/%x.bin",
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fdl_file->vendor_id, fdl_file->file_id);
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if (!disk_filename)
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return -ENOMEM;
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dev_dbg(dev, "FDL disk filename: %s\n", disk_filename);
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ret = firmware_request_nowarn(&firmware, disk_filename, dev);
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kfree(disk_filename);
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}
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if (!ret) {
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tmp = (struct acpi_sw_file *)&firmware->data[0];
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if (firmware->size < sizeof(*tmp) ||
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tmp->file_length != firmware->size) {
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dev_err(dev, "bad disk SWF size\n");
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} else if (!swf || swf->file_version <= tmp->file_version) {
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dev_dbg(dev, "using SWF from disk\n");
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swf = tmp;
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}
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}
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if (!swf) {
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dev_err(dev, "failed to locate SWF\n");
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return -ENOENT;
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}
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dev_info(dev, "loading SWF: %x-%x-%x\n",
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swf->vendor_id, swf->file_id, swf->file_version);
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ret = sdca_ump_write_message(dev, interrupt->device_regmap,
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interrupt->function_regmap,
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interrupt->function, interrupt->entity,
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SDCA_CTL_XU_FDL_MESSAGEOFFSET, fdl_file->fdl_offset,
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SDCA_CTL_XU_FDL_MESSAGELENGTH, swf->data,
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swf->file_length - offsetof(struct acpi_sw_file, data));
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release_firmware(firmware);
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return ret;
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}
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static struct sdca_fdl_set *fdl_get_set(struct sdca_interrupt *interrupt)
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{
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struct device *dev = interrupt->dev;
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struct sdca_fdl_data *fdl_data = &interrupt->function->fdl_data;
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struct sdca_entity *xu = interrupt->entity;
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struct sdca_control_range *range;
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unsigned int val;
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int i, ret;
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ret = regmap_read(interrupt->function_regmap,
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SDW_SDCA_CTL(interrupt->function->desc->adr, xu->id,
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SDCA_CTL_XU_FDL_SET_INDEX, 0),
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&val);
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if (ret < 0) {
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dev_err(dev, "failed to read FDL set index: %d\n", ret);
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return NULL;
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}
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range = sdca_selector_find_range(dev, xu, SDCA_CTL_XU_FDL_SET_INDEX,
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SDCA_FDL_SET_INDEX_NCOLS, 0);
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val = sdca_range_search(range, SDCA_FDL_SET_INDEX_SET_NUMBER,
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val, SDCA_FDL_SET_INDEX_FILE_SET_ID);
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for (i = 0; i < fdl_data->num_sets; i++) {
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if (fdl_data->sets[i].id == val)
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return &fdl_data->sets[i];
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}
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dev_err(dev, "invalid fileset id: %d\n", val);
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return NULL;
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}
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static void fdl_end(struct sdca_interrupt *interrupt)
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{
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struct fdl_state *fdl_state = interrupt->priv;
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if (!fdl_state->set)
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return;
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fdl_state->set = NULL;
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pm_runtime_put(interrupt->dev);
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complete(&fdl_state->done);
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dev_dbg(interrupt->dev, "completed FDL process\n");
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}
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static void sdca_fdl_timeout_work(struct work_struct *work)
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{
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struct fdl_state *fdl_state = container_of(work, struct fdl_state,
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timeout.work);
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struct sdca_interrupt *interrupt = fdl_state->interrupt;
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struct device *dev = interrupt->dev;
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dev_err(dev, "FDL transaction timed out\n");
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guard(mutex)(&fdl_state->lock);
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fdl_end(interrupt);
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sdca_reset_function(dev, interrupt->function, interrupt->function_regmap);
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}
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static int fdl_status_process(struct sdca_interrupt *interrupt, unsigned int status)
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{
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struct fdl_state *fdl_state = interrupt->priv;
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int ret;
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switch (status) {
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case SDCA_CTL_XU_FDLD_NEEDS_SET:
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dev_dbg(interrupt->dev, "starting FDL process...\n");
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pm_runtime_get(interrupt->dev);
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complete(&fdl_state->begin);
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fdl_state->file_index = 0;
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fdl_state->set = fdl_get_set(interrupt);
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fallthrough;
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case SDCA_CTL_XU_FDLD_MORE_FILES_OK:
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ret = fdl_load_file(interrupt, fdl_state->set, fdl_state->file_index);
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if (ret) {
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fdl_end(interrupt);
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return SDCA_CTL_XU_FDLH_REQ_ABORT;
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}
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return SDCA_CTL_XU_FDLH_FILE_AVAILABLE;
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case SDCA_CTL_XU_FDLD_FILE_OK:
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if (!fdl_state->set) {
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fdl_end(interrupt);
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return SDCA_CTL_XU_FDLH_REQ_ABORT;
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}
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fdl_state->file_index++;
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if (fdl_state->file_index < fdl_state->set->num_files)
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return SDCA_CTL_XU_FDLH_MORE_FILES;
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fallthrough;
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case SDCA_CTL_XU_FDLD_COMPLETE:
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fdl_end(interrupt);
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return SDCA_CTL_XU_FDLH_COMPLETE;
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default:
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fdl_end(interrupt);
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if (status & SDCA_CTL_XU_FDLD_REQ_RESET)
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return SDCA_CTL_XU_FDLH_RESET_ACK;
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else if (status & SDCA_CTL_XU_FDLD_REQ_ABORT)
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return SDCA_CTL_XU_FDLH_COMPLETE;
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dev_err(interrupt->dev, "invalid FDL status: %x\n", status);
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return -EINVAL;
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}
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}
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/**
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* sdca_fdl_process - Process the FDL state machine
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* @interrupt: SDCA interrupt structure
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*
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* Based on section 13.2.5 Flow Diagram for File Download, Host side.
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*
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* Return: Zero on success or a negative error code.
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*/
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int sdca_fdl_process(struct sdca_interrupt *interrupt)
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{
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struct device *dev = interrupt->dev;
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struct sdca_entity_xu *xu = &interrupt->entity->xu;
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struct fdl_state *fdl_state = interrupt->priv;
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unsigned int reg, status;
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int response, ret;
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ret = sdca_ump_get_owner_host(dev, interrupt->function_regmap,
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interrupt->function, interrupt->entity,
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interrupt->control);
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if (ret)
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goto reset_function;
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sdca_ump_cancel_timeout(&fdl_state->timeout);
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scoped_guard(mutex, &fdl_state->lock) {
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reg = SDW_SDCA_CTL(interrupt->function->desc->adr,
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interrupt->entity->id, SDCA_CTL_XU_FDL_STATUS, 0);
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ret = regmap_read(interrupt->function_regmap, reg, &status);
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if (ret < 0) {
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dev_err(dev, "failed to read FDL status: %d\n", ret);
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return ret;
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}
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dev_dbg(dev, "FDL status: %#x\n", status);
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ret = fdl_status_process(interrupt, status);
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if (ret < 0)
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goto reset_function;
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response = ret;
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dev_dbg(dev, "FDL response: %#x\n", response);
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ret = regmap_write(interrupt->function_regmap, reg,
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response | (status & ~SDCA_CTL_XU_FDLH_MASK));
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if (ret < 0) {
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dev_err(dev, "failed to set FDL status signal: %d\n", ret);
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return ret;
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}
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ret = sdca_ump_set_owner_device(dev, interrupt->function_regmap,
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interrupt->function,
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interrupt->entity,
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interrupt->control);
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if (ret)
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return ret;
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switch (response) {
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case SDCA_CTL_XU_FDLH_RESET_ACK:
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dev_dbg(dev, "FDL request reset\n");
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switch (xu->reset_mechanism) {
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default:
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dev_warn(dev, "Requested reset mechanism not implemented\n");
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fallthrough;
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case SDCA_XU_RESET_FUNCTION:
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goto reset_function;
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}
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case SDCA_CTL_XU_FDLH_COMPLETE:
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if (status & SDCA_CTL_XU_FDLD_REQ_ABORT ||
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status == SDCA_CTL_XU_FDLD_COMPLETE)
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return 0;
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fallthrough;
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default:
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sdca_ump_schedule_timeout(&fdl_state->timeout, xu->max_delay);
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return 0;
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}
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}
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reset_function:
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sdca_reset_function(dev, interrupt->function, interrupt->function_regmap);
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return ret;
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}
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EXPORT_SYMBOL_NS_GPL(sdca_fdl_process, "SND_SOC_SDCA");
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/**
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* sdca_fdl_alloc_state - allocate state for an FDL interrupt
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* @interrupt: SDCA interrupt structure.
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*
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* Return: Zero on success or a negative error code.
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*/
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int sdca_fdl_alloc_state(struct sdca_interrupt *interrupt)
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|
{
|
|
struct device *dev = interrupt->dev;
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|
struct fdl_state *fdl_state;
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|
|
|
fdl_state = devm_kzalloc(dev, sizeof(*fdl_state), GFP_KERNEL);
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|
if (!fdl_state)
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return -ENOMEM;
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|
|
|
INIT_DELAYED_WORK(&fdl_state->timeout, sdca_fdl_timeout_work);
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|
init_completion(&fdl_state->begin);
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|
init_completion(&fdl_state->done);
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|
mutex_init(&fdl_state->lock);
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|
fdl_state->interrupt = interrupt;
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|
|
|
interrupt->priv = fdl_state;
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|
|
|
return 0;
|
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}
|
|
EXPORT_SYMBOL_NS_GPL(sdca_fdl_alloc_state, "SND_SOC_SDCA");
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