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680cb3991c
At the start of some IOCTLs we check if the device is disabled or in reset. If it is, we return -EBUSY and print a message to kernel log. Because these IOCTLs can be called at very high frequency, use ratelimit to avoid spamming the kernel log. Also use the same type of message - dev_warn - in all the relevant IOCTLs. Signed-off-by: Oded Gabbay <oded.gabbay@gmail.com>
235 lines
5.9 KiB
C
235 lines
5.9 KiB
C
// SPDX-License-Identifier: GPL-2.0
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/*
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* Copyright 2016-2019 HabanaLabs, Ltd.
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* All Rights Reserved.
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*/
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#include <uapi/misc/habanalabs.h>
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#include "habanalabs.h"
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#include <linux/fs.h>
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#include <linux/uaccess.h>
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#include <linux/slab.h>
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static int hw_ip_info(struct hl_device *hdev, struct hl_info_args *args)
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{
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struct hl_info_hw_ip_info hw_ip = {0};
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u32 size = args->return_size;
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void __user *out = (void __user *) (uintptr_t) args->return_pointer;
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struct asic_fixed_properties *prop = &hdev->asic_prop;
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u64 sram_kmd_size, dram_kmd_size;
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if ((!size) || (!out))
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return -EINVAL;
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sram_kmd_size = (prop->sram_user_base_address -
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prop->sram_base_address);
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dram_kmd_size = (prop->dram_user_base_address -
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prop->dram_base_address);
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hw_ip.device_id = hdev->asic_funcs->get_pci_id(hdev);
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hw_ip.sram_base_address = prop->sram_user_base_address;
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hw_ip.dram_base_address = prop->dram_user_base_address;
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hw_ip.tpc_enabled_mask = prop->tpc_enabled_mask;
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hw_ip.sram_size = prop->sram_size - sram_kmd_size;
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hw_ip.dram_size = prop->dram_size - dram_kmd_size;
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if (hw_ip.dram_size > 0)
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hw_ip.dram_enabled = 1;
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hw_ip.num_of_events = prop->num_of_events;
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memcpy(hw_ip.armcp_version,
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prop->armcp_info.armcp_version, VERSION_MAX_LEN);
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hw_ip.armcp_cpld_version = __le32_to_cpu(prop->armcp_info.cpld_version);
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hw_ip.psoc_pci_pll_nr = prop->psoc_pci_pll_nr;
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hw_ip.psoc_pci_pll_nf = prop->psoc_pci_pll_nf;
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hw_ip.psoc_pci_pll_od = prop->psoc_pci_pll_od;
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hw_ip.psoc_pci_pll_div_factor = prop->psoc_pci_pll_div_factor;
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return copy_to_user(out, &hw_ip,
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min((size_t)size, sizeof(hw_ip))) ? -EFAULT : 0;
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}
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static int hw_events_info(struct hl_device *hdev, struct hl_info_args *args)
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{
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u32 size, max_size = args->return_size;
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void __user *out = (void __user *) (uintptr_t) args->return_pointer;
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void *arr;
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if ((!max_size) || (!out))
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return -EINVAL;
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arr = hdev->asic_funcs->get_events_stat(hdev, &size);
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return copy_to_user(out, arr, min(max_size, size)) ? -EFAULT : 0;
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}
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static int dram_usage_info(struct hl_device *hdev, struct hl_info_args *args)
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{
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struct hl_info_dram_usage dram_usage = {0};
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u32 max_size = args->return_size;
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void __user *out = (void __user *) (uintptr_t) args->return_pointer;
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struct asic_fixed_properties *prop = &hdev->asic_prop;
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u64 dram_kmd_size;
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if ((!max_size) || (!out))
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return -EINVAL;
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dram_kmd_size = (prop->dram_user_base_address -
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prop->dram_base_address);
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dram_usage.dram_free_mem = (prop->dram_size - dram_kmd_size) -
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atomic64_read(&hdev->dram_used_mem);
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dram_usage.ctx_dram_mem = atomic64_read(&hdev->user_ctx->dram_phys_mem);
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return copy_to_user(out, &dram_usage,
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min((size_t) max_size, sizeof(dram_usage))) ? -EFAULT : 0;
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}
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static int hw_idle(struct hl_device *hdev, struct hl_info_args *args)
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{
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struct hl_info_hw_idle hw_idle = {0};
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u32 max_size = args->return_size;
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void __user *out = (void __user *) (uintptr_t) args->return_pointer;
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if ((!max_size) || (!out))
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return -EINVAL;
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hw_idle.is_idle = hdev->asic_funcs->is_device_idle(hdev);
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return copy_to_user(out, &hw_idle,
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min((size_t) max_size, sizeof(hw_idle))) ? -EFAULT : 0;
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}
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static int hl_info_ioctl(struct hl_fpriv *hpriv, void *data)
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{
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struct hl_info_args *args = data;
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struct hl_device *hdev = hpriv->hdev;
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int rc;
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if (hl_device_disabled_or_in_reset(hdev)) {
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dev_warn_ratelimited(hdev->dev,
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"Device is disabled or in reset. Can't execute INFO IOCTL\n");
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return -EBUSY;
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}
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switch (args->op) {
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case HL_INFO_HW_IP_INFO:
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rc = hw_ip_info(hdev, args);
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break;
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case HL_INFO_HW_EVENTS:
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rc = hw_events_info(hdev, args);
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break;
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case HL_INFO_DRAM_USAGE:
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rc = dram_usage_info(hdev, args);
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break;
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case HL_INFO_HW_IDLE:
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rc = hw_idle(hdev, args);
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break;
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default:
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dev_err(hdev->dev, "Invalid request %d\n", args->op);
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rc = -ENOTTY;
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break;
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}
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return rc;
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}
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#define HL_IOCTL_DEF(ioctl, _func) \
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[_IOC_NR(ioctl)] = {.cmd = ioctl, .func = _func}
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static const struct hl_ioctl_desc hl_ioctls[] = {
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HL_IOCTL_DEF(HL_IOCTL_INFO, hl_info_ioctl),
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HL_IOCTL_DEF(HL_IOCTL_CB, hl_cb_ioctl),
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HL_IOCTL_DEF(HL_IOCTL_CS, hl_cs_ioctl),
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HL_IOCTL_DEF(HL_IOCTL_WAIT_CS, hl_cs_wait_ioctl),
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HL_IOCTL_DEF(HL_IOCTL_MEMORY, hl_mem_ioctl)
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};
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#define HL_CORE_IOCTL_COUNT ARRAY_SIZE(hl_ioctls)
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long hl_ioctl(struct file *filep, unsigned int cmd, unsigned long arg)
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{
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struct hl_fpriv *hpriv = filep->private_data;
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struct hl_device *hdev = hpriv->hdev;
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hl_ioctl_t *func;
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const struct hl_ioctl_desc *ioctl = NULL;
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unsigned int nr = _IOC_NR(cmd);
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char stack_kdata[128] = {0};
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char *kdata = NULL;
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unsigned int usize, asize;
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int retcode;
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if (hdev->hard_reset_pending) {
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dev_crit_ratelimited(hdev->dev,
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"Device HARD reset pending! Please close FD\n");
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return -ENODEV;
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}
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if ((nr >= HL_COMMAND_START) && (nr < HL_COMMAND_END)) {
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u32 hl_size;
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ioctl = &hl_ioctls[nr];
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hl_size = _IOC_SIZE(ioctl->cmd);
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usize = asize = _IOC_SIZE(cmd);
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if (hl_size > asize)
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asize = hl_size;
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cmd = ioctl->cmd;
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} else {
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dev_err(hdev->dev, "invalid ioctl: pid=%d, nr=0x%02x\n",
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task_pid_nr(current), nr);
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return -ENOTTY;
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}
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/* Do not trust userspace, use our own definition */
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func = ioctl->func;
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if (unlikely(!func)) {
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dev_dbg(hdev->dev, "no function\n");
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retcode = -ENOTTY;
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goto out_err;
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}
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if (cmd & (IOC_IN | IOC_OUT)) {
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if (asize <= sizeof(stack_kdata)) {
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kdata = stack_kdata;
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} else {
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kdata = kzalloc(asize, GFP_KERNEL);
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if (!kdata) {
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retcode = -ENOMEM;
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goto out_err;
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}
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}
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}
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if (cmd & IOC_IN) {
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if (copy_from_user(kdata, (void __user *)arg, usize)) {
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retcode = -EFAULT;
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goto out_err;
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}
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} else if (cmd & IOC_OUT) {
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memset(kdata, 0, usize);
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}
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retcode = func(hpriv, kdata);
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if (cmd & IOC_OUT)
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if (copy_to_user((void __user *)arg, kdata, usize))
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retcode = -EFAULT;
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out_err:
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if (retcode)
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dev_dbg(hdev->dev,
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"error in ioctl: pid=%d, cmd=0x%02x, nr=0x%02x\n",
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task_pid_nr(current), cmd, nr);
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if (kdata != stack_kdata)
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kfree(kdata);
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return retcode;
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}
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