From: sashiko-bot@kernel.org
To: pankaj.gupta@oss.nxp.com
Cc: Frank.Li@kernel.org, conor+dt@kernel.org, imx@lists.linux.dev,
devicetree@vger.kernel.org, robh@kernel.org
Subject: Re: [PATCH v31 5/7] firmware: imx: adds miscdev
Date: Wed, 29 Jul 2026 10:11:50 +0000 [thread overview]
Message-ID: <20260729101151.103571F000E9@smtp.kernel.org> (raw)
In-Reply-To: <20260729-imx-se-if-v31-5-e59af7adb784@nxp.com>
Thank you for your contribution! Sashiko AI review found 7 potential issue(s) to consider:
New issues:
- [Critical] Kernel panic due to traversing an uninitialized list head (`mem_pool_buf_list`) during device context cleanup.
- [Critical] The driver allows user-space to construct raw command payloads and embed unvalidated DMA addresses, leading to a Confused Deputy vulnerability.
- [High] Firmware commands sent to the command receiver can overwrite unprocessed commands, leading to lost events and spurious `-ENODEV` failures.
- [High] The SE_IOCTL_CMD_SEND_RCV_RSP ioctl incorrectly returns a positive integer to userspace when the firmware command fails or the response validation fails, masking the failure and skipping subsequent cleanup error checks.
- [High] A TOCTOU race between `ele_msg_send_rcv()` checking the `going_away` flag and `se_if_probe_cleanup()` forcing a wakeup causes a lost wakeup during unbind, leading to a permanent deadlock.
- [High] A slab-out-of-bounds read occurs in `se_val_rsp_hdr_n_status` when handling specific debug commands with a small `rx_buf_sz`.
Pre-existing issues:
- [High] Internal kernel hardware operations (like IMEM save/restore during suspend/resume) fail spuriously if a signal is pending, breaking PM transitions.
--
--- Patch [5]: [PATCH v31 5/7] firmware: imx: adds miscdev ---
commit 81281c9d3b1f75f8ca39e2d84326a1eb70748f81
Author: Pankaj Gupta <pankaj.gupta@nxp.com>
firmware: imx: adds miscdev
This commit adds the character driver to enable communication with the NXP
secure enclave hardware from user-space applications. It introduces ioctls
for shared memory management and exchanging messages with the firmware.
Several checks are implemented on incoming message headers to block
restricted commands.
> diff --git a/drivers/firmware/imx/ele_common.c b/drivers/firmware/imx/ele_common.c
> --- a/drivers/firmware/imx/ele_common.c
> +++ b/drivers/firmware/imx/ele_common.c
> @@ -246,6 +246,14 @@ int ele_msg_send_rcv(struct se_if_device_ctx *dev_ctx, void *tx_msg,
> guard(mutex)(&priv->se_if_cmd_lock);
>
> + /*
> + * Teardown has begun: do not arm a new transaction. A thread that was
> + * blocked on se_if_cmd_lock while se_if_probe_cleanup() ran its
> + * complete_all() would otherwise miss that wake-up, re-arm the
> + * completion below and wait the full timeout, while unbind blocks
> + * indefinitely on this thread's fops_lock. Bail out instead.
> + */
> + if (atomic_read(&priv->going_away))
> + return -ENODEV;
> +
> if (atomic_read(&priv->fw_busy)) {
> dev_dbg(priv->dev, "%s: ELE became unresponsive.\n", dev_ctx->devname);
> return -EBUSY;
> }
> +
> reinit_completion(&priv->waiting_rsp_clbk_hdl.done);
[Severity: High]
Is there a TOCTOU race condition here with se_if_probe_cleanup()? If
se_if_probe_cleanup() sets going_away = 1 and calls complete_all() without
acquiring se_if_cmd_lock, could it execute complete_all() right after this
atomic_read() check but before reinit_completion() is called? Would this
erase the forced teardown wakeup and cause a permanent deadlock?
[ ... ]
> @@ -279,6 +284,14 @@ int ele_msg_send_rcv(struct se_if_device_ctx *dev_ctx, void *tx_msg,
> if (priv->waiting_rsp_clbk_hdl.signal_rcvd) {
> /*
> * Signal was deferred until the FW/kernel protocol resynchronized.
> * On success report -ERESTARTSYS for the interrupted wait; the
> * command is not re-sent. Keep real errors like -ETIMEDOUT.
> */
> if (err > 0)
> err = -ERESTARTSYS;
> priv->waiting_rsp_clbk_hdl.signal_rcvd = false;
[Severity: High]
This isn't a bug introduced by this patch, but does this explicit override
of a successful hardware interaction with -ERESTARTSYS break Power Management
transitions? If a signal is pending during system suspend, could this cause
internal kernel hardware operations like se_save_imem_state() to fail
spuriously and permanently lose the enclave IMEM state required for proper
resume?
[ ... ]
> @@ -323,9 +395,13 @@ void se_if_rx_callback(struct mbox_client *mbox_cl, void *msg)
> /*
> * Clamp the copy length to the pre-allocated receiver buffer (MAX_NVM_MSG_LEN).
> */
> se_clbk_hdl->rx_msg_sz = min_t(u32, rx_msg_sz, MAX_NVM_MSG_LEN);
> devname = se_clbk_hdl->dev_ctx->devname;
> memcpy(se_clbk_hdl->rx_msg, msg, se_clbk_hdl->rx_msg_sz);
> complete(&se_clbk_hdl->done);
[Severity: High]
Does this unconditionally overwrite the shared rx_msg buffer and call
complete() upon receiving a firmware command? If the firmware issues a
second command before the userspace daemon executes a read() to consume the
first one, could the first command's payload be completely overwritten,
resulting in a spurious -ENODEV failure?
> diff --git a/drivers/firmware/imx/se_ctrl.c b/drivers/firmware/imx/se_ctrl.c
> --- a/drivers/firmware/imx/se_ctrl.c
> +++ b/drivers/firmware/imx/se_ctrl.c
> @@ -284,11 +292,308 @@ static int get_se_soc_info(struct se_if_priv *priv, const struct se_soc_info *se
> +static int init_se_shared_mem(struct se_if_device_ctx *dev_ctx)
> +{
> + struct se_shared_mem_mgmt_info *se_shared_mem_mgmt = &dev_ctx->se_shared_mem_mgmt;
> + struct se_if_priv *priv = dev_ctx->priv;
> +
> + INIT_LIST_HEAD(&se_shared_mem_mgmt->pending_out);
> + INIT_LIST_HEAD(&se_shared_mem_mgmt->pending_in);
> +
> + if (priv->mem_pool)
> + INIT_LIST_HEAD(&se_shared_mem_mgmt->mem_pool_buf_list);
[Severity: Critical]
If priv->mem_pool is NULL, the mem_pool_buf_list remains zero-initialized.
Will se_cleanup_mem_pool_buf() later unconditionally traverse this
uninitialized list head via list_for_each_entry_safe() and cause a kernel
panic when the file descriptor is closed?
[ ... ]
> +static int se_ioctl_cmd_snd_rcv_rsp_handler(struct se_if_device_ctx *dev_ctx,
> + void __user *uarg)
> +{
[ ... ]
> + struct se_api_msg *tx_msg __free(kfree) =
> + memdup_user(u64_to_user_ptr(cmd_snd_rcv_rsp_info.tx_buf),
> + cmd_snd_rcv_rsp_info.tx_buf_sz);
> + if (IS_ERR(tx_msg)) {
> + err = PTR_ERR(tx_msg);
> + se_ioctl_cmd_snd_rcv_cleanup(dev_ctx, uarg, &cmd_snd_rcv_rsp_info);
> + return err;
> + }
[Severity: Critical]
Does this allow user-space to construct raw command payloads and embed
unvalidated DMA addresses? Since these addresses are not validated to ensure
they point to memory allocated via SE_IOCTL_SETUP_IOBUF before calling
ele_msg_send(), could a malicious application embed spoofed physical
addresses (like kernel page tables) and instruct the hardware to access
them?
[ ... ]
> + struct se_api_msg *rx_msg __free(kfree) =
> + kzalloc(cmd_snd_rcv_rsp_info.rx_buf_sz, GFP_KERNEL);
> + if (!rx_msg) {
> + se_ioctl_cmd_snd_rcv_cleanup(dev_ctx, uarg, &cmd_snd_rcv_rsp_info);
> + return -ENOMEM;
> + }
[Severity: High]
Can this lead to a slab-out-of-bounds read in se_val_rsp_hdr_n_status()?
If rx_buf_sz is small (e.g., 4 bytes) but the firmware returns a header size
larger than SE_MU_HDR_WORD_SZ for debug commands, will
check_hdr_exception_for_sz() bypass the mismatch check and cause
se_val_rsp_hdr_n_status() to read past the 4-byte allocated rx_msg buffer?
[ ... ]
> + rsp_status_err =
> + se_val_rsp_hdr_n_status(priv, rx_msg, tx_msg->header.command,
> + cmd_snd_rcv_rsp_info.rx_buf_sz,
> + tx_msg->header.ver == priv->if_defs->base_api_ver);
> +
> + if (!rsp_status_err) {
> + err = se_dev_ctx_cpy_out_data(dev_ctx);
> + if (err < 0) {
> + se_ioctl_cmd_snd_rcv_cleanup(dev_ctx, uarg, &cmd_snd_rcv_rsp_info);
> + return err;
> + }
> + }
[Severity: High]
Does this mask the failure when the firmware command fails? If
se_val_rsp_hdr_n_status() sets a negative error code in rsp_status_err,
it skips se_dev_ctx_cpy_out_data(), but the positive message size from
ele_msg_send_rcv() stored in err isn't updated. Could this cause the ioctl
to return a positive value to userspace, falsely indicating success?
--
Sashiko AI review · https://sashiko.dev/#/patchset/20260729-imx-se-if-v31-0-e59af7adb784@nxp.com?part=5
next prev parent reply other threads:[~2026-07-29 10:11 UTC|newest]
Thread overview: 13+ messages / expand[flat|nested] mbox.gz Atom feed top
2026-07-29 10:40 [PATCH v31 0/7] firmware: imx: driver for NXP secure-enclave pankaj.gupta
2026-07-29 10:40 ` [PATCH v31 1/7] Documentation/firmware: add imx/se to other_interfaces pankaj.gupta
2026-07-29 9:55 ` sashiko-bot
2026-07-29 10:40 ` [PATCH v31 2/7] dt-bindings: arm: fsl: add imx-se-fw binding doc pankaj.gupta
2026-07-29 10:40 ` [PATCH v31 3/7] firmware: imx: add driver for NXP EdgeLock Enclave pankaj.gupta
2026-07-29 10:03 ` sashiko-bot
2026-07-29 10:40 ` [PATCH v31 4/7] firmware: imx: device context dedicated to priv pankaj.gupta
2026-07-29 10:03 ` sashiko-bot
2026-07-29 10:40 ` [PATCH v31 5/7] firmware: imx: adds miscdev pankaj.gupta
2026-07-29 10:11 ` sashiko-bot [this message]
2026-07-29 10:40 ` [PATCH v31 6/7] arm64: dts: imx8ulp: add secure enclave node pankaj.gupta
2026-07-29 9:59 ` sashiko-bot
2026-07-29 10:40 ` [PATCH v31 7/7] arm64: dts: imx8ulp: add reserved memory for EdgeLock Enclave pankaj.gupta
Reply instructions:
You may reply publicly to this message via plain-text email
using any one of the following methods:
* Save the following mbox file, import it into your mail client,
and reply-to-all from there: mbox
Avoid top-posting and favor interleaved quoting:
https://en.wikipedia.org/wiki/Posting_style#Interleaved_style
* Reply using the --to, --cc, and --in-reply-to
switches of git-send-email(1):
git send-email \
--in-reply-to=20260729101151.103571F000E9@smtp.kernel.org \
--to=sashiko-bot@kernel.org \
--cc=Frank.Li@kernel.org \
--cc=conor+dt@kernel.org \
--cc=devicetree@vger.kernel.org \
--cc=imx@lists.linux.dev \
--cc=pankaj.gupta@oss.nxp.com \
--cc=robh@kernel.org \
--cc=sashiko-reviews@lists.linux.dev \
/path/to/YOUR_REPLY
https://kernel.org/pub/software/scm/git/docs/git-send-email.html
* If your mail client supports setting the In-Reply-To header
via mailto: links, try the mailto: link
Be sure your reply has a Subject: header at the top and a blank line
before the message body.
This is a public inbox, see mirroring instructions
for how to clone and mirror all data and code used for this inbox