Commit 4f8b7fab authored by Jérôme Pouiller's avatar Jérôme Pouiller Committed by Greg Kroah-Hartman

staging: wfx: allow to send commands to chip

Chip has multiple input buffers and can handle multiple 802.11 frames
in parallel. However, other HIF command must be sent sequentially.
wsm_send_cmd() handles these requests.

This commit also add send_hif_cmd in debugfs. This file allows to send
arbitrary commands to chip. It can be used for debug and testing.
Signed-off-by: default avatarJérôme Pouiller <jerome.pouiller@silabs.com>
Link: https://lore.kernel.org/r/20190919142527.31797-12-Jerome.Pouiller@silabs.comSigned-off-by: default avatarGreg Kroah-Hartman <gregkh@linuxfoundation.org>
parent e16e7f07
......@@ -7,6 +7,7 @@ wfx-y := \
bh.o \
hwio.o \
fwio.o \
hif_tx.o \
hif_rx.o \
main.o \
sta.o \
......
......@@ -190,7 +190,10 @@ static int bh_work_tx(struct wfx_dev *wdev, int max_msg)
for (i = 0; i < max_msg; i++) {
hif = NULL;
if (wdev->hif.tx_buffers_used < wdev->hw_caps.num_inp_ch_bufs) {
/* FIXME: get queued data */
if (try_wait_for_completion(&wdev->hif_cmd.ready)) {
WARN(!mutex_is_locked(&wdev->hif_cmd.lock), "data locking error");
hif = wdev->hif_cmd.buf_send;
}
}
if (!hif)
return i;
......
......@@ -7,16 +7,146 @@
*/
#include <linux/debugfs.h>
#include "debug.h"
#include "wfx.h"
#define CREATE_TRACE_POINTS
#include "traces.h"
static const struct trace_print_flags hif_msg_print_map[] = {
hif_msg_list,
};
static const struct trace_print_flags hif_mib_print_map[] = {
hif_mib_list,
};
static const struct trace_print_flags wfx_reg_print_map[] = {
wfx_reg_list,
};
static const char *get_symbol(unsigned long val,
const struct trace_print_flags *symbol_array)
{
int i;
for (i = 0; symbol_array[i].mask != -1; i++) {
if (val == symbol_array[i].mask)
return symbol_array[i].name;
}
return "unknown";
}
const char *get_hif_name(unsigned long id)
{
return get_symbol(id, hif_msg_print_map);
}
const char *get_mib_name(unsigned long id)
{
return get_symbol(id, hif_mib_print_map);
}
const char *get_reg_name(unsigned long id)
{
return get_symbol(id, wfx_reg_print_map);
}
struct dbgfs_hif_msg {
struct wfx_dev *wdev;
struct completion complete;
u8 reply[1024];
int ret;
};
static ssize_t wfx_send_hif_msg_write(struct file *file, const char __user *user_buf,
size_t count, loff_t *ppos)
{
struct dbgfs_hif_msg *context = file->private_data;
struct wfx_dev *wdev = context->wdev;
struct hif_msg *request;
if (completion_done(&context->complete)) {
dev_dbg(wdev->dev, "read previous result before start a new one\n");
return -EBUSY;
}
if (count < sizeof(struct hif_msg))
return -EINVAL;
// wfx_cmd_send() chekc that reply buffer is wide enough, but do not
// return precise length read. User have to know how many bytes should
// be read. Filling reply buffer with a memory pattern may help user.
memset(context->reply, sizeof(context->reply), 0xFF);
request = memdup_user(user_buf, count);
if (IS_ERR(request))
return PTR_ERR(request);
if (request->len != count) {
kfree(request);
return -EINVAL;
}
context->ret = wfx_cmd_send(wdev, request, context->reply, sizeof(context->reply), false);
kfree(request);
complete(&context->complete);
return count;
}
static ssize_t wfx_send_hif_msg_read(struct file *file, char __user *user_buf,
size_t count, loff_t *ppos)
{
struct dbgfs_hif_msg *context = file->private_data;
int ret;
if (count > sizeof(context->reply))
return -EINVAL;
ret = wait_for_completion_interruptible(&context->complete);
if (ret)
return ret;
if (context->ret < 0)
return context->ret;
// Be carefull, write() is waiting for a full message while read()
// only return a payload
ret = copy_to_user(user_buf, context->reply, count);
if (ret)
return ret;
return count;
}
static int wfx_send_hif_msg_open(struct inode *inode, struct file *file)
{
struct dbgfs_hif_msg *context = kzalloc(sizeof(*context), GFP_KERNEL);
if (!context)
return -ENOMEM;
context->wdev = inode->i_private;
init_completion(&context->complete);
file->private_data = context;
return 0;
}
static int wfx_send_hif_msg_release(struct inode *inode, struct file *file)
{
struct dbgfs_hif_msg *context = file->private_data;
kfree(context);
return 0;
}
static const struct file_operations wfx_send_hif_msg_fops = {
.open = wfx_send_hif_msg_open,
.release = wfx_send_hif_msg_release,
.write = wfx_send_hif_msg_write,
.read = wfx_send_hif_msg_read,
};
int wfx_debug_init(struct wfx_dev *wdev)
{
struct dentry *d;
d = debugfs_create_dir("wfx", wdev->hw->wiphy->debugfsdir);
debugfs_create_file("send_hif_msg", 0600, d, wdev, &wfx_send_hif_msg_fops);
return 0;
}
......@@ -12,4 +12,8 @@ struct wfx_dev;
int wfx_debug_init(struct wfx_dev *wdev);
const char *get_hif_name(unsigned long id);
const char *get_mib_name(unsigned long id);
const char *get_reg_name(unsigned long id);
#endif /* WFX_DEBUG_H */
......@@ -13,6 +13,43 @@
#include "wfx.h"
#include "hif_api_cmd.h"
static int hif_generic_confirm(struct wfx_dev *wdev, struct hif_msg *hif, void *buf)
{
// All confirm messages start with status
int status = le32_to_cpu(*((__le32 *) buf));
int cmd = hif->id;
int len = hif->len - 4; // drop header
WARN(!mutex_is_locked(&wdev->hif_cmd.lock), "data locking error");
if (!wdev->hif_cmd.buf_send) {
dev_warn(wdev->dev, "unexpected confirmation: 0x%.2x\n", cmd);
return -EINVAL;
}
if (cmd != wdev->hif_cmd.buf_send->id) {
dev_warn(wdev->dev, "chip response mismatch request: 0x%.2x vs 0x%.2x\n",
cmd, wdev->hif_cmd.buf_send->id);
return -EINVAL;
}
if (wdev->hif_cmd.buf_recv) {
if (wdev->hif_cmd.len_recv >= len)
memcpy(wdev->hif_cmd.buf_recv, buf, len);
else
status = -ENOMEM;
}
wdev->hif_cmd.ret = status;
if (!wdev->hif_cmd.async) {
complete(&wdev->hif_cmd.done);
} else {
wdev->hif_cmd.buf_send = NULL;
mutex_unlock(&wdev->hif_cmd.lock);
}
return status;
}
static int hif_startup_indication(struct wfx_dev *wdev, struct hif_msg *hif, void *buf)
{
struct hif_ind_startup *body = buf;
......@@ -44,6 +81,14 @@ void wfx_handle_rx(struct wfx_dev *wdev, struct sk_buff *skb)
struct hif_msg *hif = (struct hif_msg *) skb->data;
int hif_id = hif->id;
// Note: mutex_is_lock cause an implicit memory barrier that protect
// buf_send
if (mutex_is_locked(&wdev->hif_cmd.lock)
&& wdev->hif_cmd.buf_send
&& wdev->hif_cmd.buf_send->id == hif_id) {
hif_generic_confirm(wdev, hif, hif->body);
goto free;
}
for (i = 0; i < ARRAY_SIZE(hif_handlers); i++) {
if (hif_handlers[i].msg_id == hif_id) {
if (hif_handlers[i].handler)
......
// SPDX-License-Identifier: GPL-2.0-only
/*
* Implementation of host-to-chip commands (aka request/confirmation) of WFxxx
* Split Mac (WSM) API.
*
* Copyright (c) 2017-2019, Silicon Laboratories, Inc.
* Copyright (c) 2010, ST-Ericsson
*/
#include <linux/skbuff.h>
#include <linux/etherdevice.h>
#include "hif_tx.h"
#include "wfx.h"
#include "bh.h"
#include "debug.h"
void wfx_init_hif_cmd(struct wfx_hif_cmd *hif_cmd)
{
init_completion(&hif_cmd->ready);
init_completion(&hif_cmd->done);
mutex_init(&hif_cmd->lock);
}
int wfx_cmd_send(struct wfx_dev *wdev, struct hif_msg *request, void *reply, size_t reply_len, bool async)
{
const char *mib_name = "";
const char *mib_sep = "";
int cmd = request->id;
int vif = request->interface;
int ret;
WARN(wdev->hif_cmd.buf_recv && wdev->hif_cmd.async, "API usage error");
// Do not wait for any reply if chip is frozen
if (wdev->chip_frozen)
return -ETIMEDOUT;
mutex_lock(&wdev->hif_cmd.lock);
WARN(wdev->hif_cmd.buf_send, "data locking error");
// Note: call to complete() below has an implicit memory barrier that
// hopefully protect buf_send
wdev->hif_cmd.buf_send = request;
wdev->hif_cmd.buf_recv = reply;
wdev->hif_cmd.len_recv = reply_len;
wdev->hif_cmd.async = async;
complete(&wdev->hif_cmd.ready);
wfx_bh_request_tx(wdev);
// NOTE: no timeout is catched async is enabled
if (async)
return 0;
ret = wait_for_completion_timeout(&wdev->hif_cmd.done, 1 * HZ);
if (!ret) {
dev_err(wdev->dev, "chip is abnormally long to answer\n");
reinit_completion(&wdev->hif_cmd.ready);
ret = wait_for_completion_timeout(&wdev->hif_cmd.done, 3 * HZ);
}
if (!ret) {
dev_err(wdev->dev, "chip did not answer\n");
wdev->chip_frozen = 1;
reinit_completion(&wdev->hif_cmd.done);
ret = -ETIMEDOUT;
} else {
ret = wdev->hif_cmd.ret;
}
wdev->hif_cmd.buf_send = NULL;
mutex_unlock(&wdev->hif_cmd.lock);
if (ret && (cmd == HIF_REQ_ID_READ_MIB || cmd == HIF_REQ_ID_WRITE_MIB)) {
mib_name = get_mib_name(((u16 *) request)[2]);
mib_sep = "/";
}
if (ret < 0)
dev_err(wdev->dev,
"WSM request %s%s%s (%#.2x) on vif %d returned error %d\n",
get_hif_name(cmd), mib_sep, mib_name, cmd, vif, ret);
if (ret > 0)
dev_warn(wdev->dev,
"WSM request %s%s%s (%#.2x) on vif %d returned status %d\n",
get_hif_name(cmd), mib_sep, mib_name, cmd, vif, ret);
return ret;
}
/* SPDX-License-Identifier: GPL-2.0-only */
/*
* Implementation of host-to-chip commands (aka request/confirmation) of WFxxx
* Split Mac (WSM) API.
*
* Copyright (c) 2017-2019, Silicon Laboratories, Inc.
* Copyright (c) 2010, ST-Ericsson
* Copyright (C) 2010, ST-Ericsson SA
*/
#ifndef WFX_HIF_TX_H
#define WFX_HIF_TX_H
#include "hif_api_cmd.h"
struct wfx_dev;
struct wfx_vif;
struct wfx_hif_cmd {
struct mutex lock;
struct completion ready;
struct completion done;
bool async;
struct hif_msg *buf_send;
void *buf_recv;
size_t len_recv;
int ret;
};
void wfx_init_hif_cmd(struct wfx_hif_cmd *wfx_hif_cmd);
int wfx_cmd_send(struct wfx_dev *wdev, struct hif_msg *request,
void *reply, size_t reply_len, bool async);
#endif
......@@ -115,6 +115,7 @@ struct wfx_dev *wfx_init_common(struct device *dev,
memcpy(&wdev->pdata, pdata, sizeof(*pdata));
init_completion(&wdev->firmware_ready);
wfx_init_hif_cmd(&wdev->hif_cmd);
return wdev;
}
......
......@@ -15,6 +15,7 @@
#include "bh.h"
#include "main.h"
#include "hif_tx.h"
#include "hif_api_general.h"
struct hwbus_ops;
......@@ -32,6 +33,9 @@ struct wfx_dev {
struct completion firmware_ready;
struct hif_ind_startup hw_caps;
struct wfx_hif hif;
int chip_frozen;
struct wfx_hif_cmd hif_cmd;
};
struct wfx_vif {
......
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